Fusa_Medini/FuSa_BMS_2W/commons/_HOJeYRTdEe-dDYDkEPKO1w.frc

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<?xml version="1.1" encoding="UTF-8"?>
<failureratecatalogs:FailureRateCatalog xmi:version="2.0" xmlns:xmi="http://www.omg.org/XMI" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:failureratecatalogs="http://www.ikv.de/medini/failureratecatalogs/1.0" xmlns:mexp="http://www.ikv.de/medini/expressions" xmi:id="_DoL2oF1WEeG0ye9uJ_Wj4w" mediniIdentifier="_DoL2oF1WEeG0ye9uJ_Wj4w" name="IEC 61709 (Edition 3.0, 2017)" version="1.0" sourceInfo="Edition 3.0, 2017-02" description="IEC 61709 - Reference conditions for failure rates and stress models for conversion" alias="medini_analyze_iec61709">
<data xmi:id="_J9KX0IV7EeGtctRo0dX6mA" name="IEC 61709">
<subDecisions xmi:id="_J9KX0YV7EeGtctRo0dX6mA" name="Generic stress models (Section 5)" description="" kind="CATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KX0oV7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_U * pi_I * pi_T * pi_E * pi_S * pi_ES;&#xD;&#xA;&#xD;&#xA;pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref/U_rat, C_2)));&#xD;&#xA;&#xD;&#xA;pi_I = exp(C_4 * (pow(I/I_rat, C_5) - pow(I_ref/I_rat, C_5)));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;pi_S = ifThenElse(less(S,0.01), 1, ifThenElse(lessEq(S, S_ref), 1, S/S_ref));&#xD;&#xA;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_DitnMEb4Eem-Gsw_PW9Gww" name="k_0" valueAsString="8.616e-5" unit="eV/K"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KX64V7EeGtctRo0dX6mA" name="T_0" valueAsString="313" unit="K"/>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_Bmw3gCSAEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_Bmw3gSSAEemdfMifRXAxMQ" name="lambda_ref" valueAsString="10" unit="FIT"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KX34V7EeGtctRo0dX6mA" name="Constant C_3">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KX4IV7EeGtctRo0dX6mA" name="C_3" valueAsString="1"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KX4YV7EeGtctRo0dX6mA" name="Constant C_2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KX4oV7EeGtctRo0dX6mA" name="C_2" valueAsString="1"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KX44V7EeGtctRo0dX6mA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KX5IV7EeGtctRo0dX6mA" name="U_ref" valueAsString="5" unit="V"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KX5YV7EeGtctRo0dX6mA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KX5oV7EeGtctRo0dX6mA" name="U_op" valueAsString="5" unit="V"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KX54V7EeGtctRo0dX6mA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KX6IV7EeGtctRo0dX6mA" name="U_rat" valueAsString="15" unit="V"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KX7IV7EeGtctRo0dX6mA" name="Ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KX7YV7EeGtctRo0dX6mA" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KX7oV7EeGtctRo0dX6mA" name="Constant A">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KX74V7EeGtctRo0dX6mA" name="A" valueAsString="1"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KX8IV7EeGtctRo0dX6mA" name="Constant Ea1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KX8YV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KX8oV7EeGtctRo0dX6mA" name="Constant Ea2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KX84V7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.3" unit="eV"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KX9IV7EeGtctRo0dX6mA" name="Reference Temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KX9YV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="40" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KX9oV7EeGtctRo0dX6mA" name="Actual Temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KX94V7EeGtctRo0dX6mA" name="Theta_op" valueAsString="40" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KX-YV7EeGtctRo0dX6mA" name="Reference current">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KX-oV7EeGtctRo0dX6mA" name="I_ref" valueAsString="1" unit="A"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KX-4V7EeGtctRo0dX6mA" name="Operating current">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KX_IV7EeGtctRo0dX6mA" name="I" valueAsString="1" unit="A"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KX_YV7EeGtctRo0dX6mA" name="Rated current">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KX_oV7EeGtctRo0dX6mA" name="I_rat" valueAsString="1" unit="A"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KX_4V7EeGtctRo0dX6mA" name="Constant C_4">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYAIV7EeGtctRo0dX6mA" name="C_4" valueAsString="1"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KYAYV7EeGtctRo0dX6mA" name="Constant C_5">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYAoV7EeGtctRo0dX6mA" name="C_5" valueAsString="1"/>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_cSQUoCR-EemdfMifRXAxMQ" name="Environmental application factor" kind="DETAIL">
<options xmi:id="_e45mwCR-EemdfMifRXAxMQ" name="Stationary use at weather-protected locations (E1)">
<expressions xsi:type="mexp:MVariable" xmi:id="_r0cQICR-EemdfMifRXAxMQ" name="pi_E" valueAsString="1"/>
</options>
<options xmi:id="_fExfkCR-EemdfMifRXAxMQ" name="Stationary use at partially weather-protected or non-weather-protected locations (E2)">
<expressions xsi:type="mexp:MVariable" xmi:id="_tRe14CR-EemdfMifRXAxMQ" name="pi_E" valueAsString="2"/>
</options>
<options xmi:id="_fOs3oCR-EemdfMifRXAxMQ" name="Portable and non-stationary use, ground vehicle installation (E3)">
<expressions xsi:type="mexp:MVariable" xmi:id="_tZVxYCR-EemdfMifRXAxMQ" name="pi_E" valueAsString="4"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_y4KKgCR-EemdfMifRXAxMQ" name="Number of operating cycles/hour">
<expressions xsi:type="mexp:MVariable" xmi:id="_5HQKACR-EemdfMifRXAxMQ" name="S" valueAsString="1" unit="1/h"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="__O4PkCR-EemdfMifRXAxMQ" name="Reference number of cycles/hour">
<expressions xsi:type="mexp:MVariable" xmi:id="__O4PkSR-EemdfMifRXAxMQ" name="S_ref" valueAsString="1" unit="1/h"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_2ACE8CR_EemdfMifRXAxMQ" name="Electrical stress factor">
<expressions xsi:type="mexp:MVariable" xmi:id="_6U-E4CR_EemdfMifRXAxMQ" name="pi_ES" valueAsString="1"/>
</subDecisions>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KYBYV7EeGtctRo0dX6mA" name="Integrated Semiconductor Circuits (Section 6)" description="" kind="CATEGORY">
<expressions xsi:type="mexp:MVariable" xmi:id="_vEcTMCR8EemdfMifRXAxMQ" name="k_0" valueAsString="8.616e-5" unit="eV/K"/>
<subDecisions xmi:id="_J9KYBoV7EeGtctRo0dX6mA" name="Memory" kind="SUBCATEGORY">
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KYCoV7EeGtctRo0dX6mA" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYC4V7EeGtctRo0dX6mA" name="deltaTheta" valueAsString="0" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_2bPEACOfEemgrYzXW4wSzQ" name="Technology" description="see Table 5">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_FI6rgCPDEemdfMifRXAxMQ" name="Bipolar" kind="TYPE">
<expressions xsi:type="mexp:MExpression" xmi:id="_8MQmkCSTEemdfMifRXAxMQ" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYEoV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="75" unit="°C"/>
<options xmi:id="_4Nq9ECPCEemdfMifRXAxMQ" name="RAM, FIFO (static)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYE4V7EeGtctRo0dX6mA" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYFIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYFYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.7" unit="eV"/>
<changeableData xmi:id="_cqZZUEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_cqZZUUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_7NpVMCPCEemdfMifRXAxMQ" name="PROM">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYHIV7EeGtctRo0dX6mA" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYHYV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYHoV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.7" unit="eV"/>
<changeableData xmi:id="_c8kucEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_c8kucUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_JhGMsCPDEemdfMifRXAxMQ" name="MOS, CMOS, BICMOS" kind="TYPE">
<expressions xsi:type="mexp:MExpression" xmi:id="_88BPkCSTEemdfMifRXAxMQ" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref/U_rat, C_2)));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_LkvnIEb8Eemqr_-H9PXpQA" name="Theta_ref" valueAsString="55" unit="°C"/>
<options xmi:id="_Lr2NACPDEemdfMifRXAxMQ" name="RAM (dynamic)">
<expressions xsi:type="mexp:MVariable" xmi:id="_eNzRUEcaEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYMIV7EeGtctRo0dX6mA" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYMYV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYMoV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.7" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_vzt3wEcdEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_P2xOQEcCEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_P2xOQUcCEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_P2xOQkcCEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_P2xOQ0cCEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_P2xOREcCEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_P2xORUcCEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_eWl1YEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_eWl1YUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_MQyGECPDEemdfMifRXAxMQ" name="RAM, FIFO (static, slow &gt;= 30ns)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYVIV7EeGtctRo0dX6mA" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYVYV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYVoV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.7" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_Boyt0EccEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_2vcTwEcdEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_JxFyAEcZEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_JxFyAUcZEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_JxFyAkcZEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_JxFyA0cZEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_JxFyBEcZEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_JxFyBUcZEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_efSeYEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_efSeYUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_MhyWgCPDEemdfMifRXAxMQ" name="RAM, FIFO (static fast &lt; 30ns)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYaoV7EeGtctRo0dX6mA" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYa4V7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYbIV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.7" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_B_XawEccEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_298CwEcdEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_KAMlAEcZEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_KAMlAUcZEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_KAMlAkcZEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_KAMlA0cZEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_KAMlBEcZEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_KAMlBUcZEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_en1WYEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_en1WYUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_M-rt4CPDEemdfMifRXAxMQ" name="ROM mask">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYgIV7EeGtctRo0dX6mA" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYgYV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYgoV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.7" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_CL4MwEccEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_3KmlwEcdEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_KNVCEEcZEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_KNVCEUcZEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_KNVCEkcZEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_KNVCE0cZEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_KNVCFEcZEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_KNVCFUcZEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_ezIAYEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_ezIAYUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_M-rt4SPDEemdfMifRXAxMQ" name="EPROM, OTPROM (UV erasable)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYloV7EeGtctRo0dX6mA" name="A" valueAsString="0.3"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYl4V7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYmIV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.6" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_CZ6owEccEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_3cdKwEcdEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_Kb0KAEcZEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_Kb0KAUcZEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_Kb0KAkcZEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_Kb0KA0cZEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_Kb0KBEcZEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_Kb0KBUcZEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_fHa1YEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_fHa1YUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_M-rt4iPDEemdfMifRXAxMQ" name="FLASH-EPROM">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYq4V7EeGtctRo0dX6mA" name="A" valueAsString="0.3"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYrIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYrYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.6" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_Coug0EccEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_3wmOwEcdEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_KsS2AEcZEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_KsS2AUcZEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_KsS2AkcZEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_KsS2A0cZEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_KsS2BEcZEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_KsS2BUcZEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_fVwzYEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_fVwzYUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_YnOeUCPDEemdfMifRXAxMQ" name="EEPROM, EAROM">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYyoV7EeGtctRo0dX6mA" name="A" valueAsString="0.3"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYy4V7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYzIV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.6" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_C3sJ4EccEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_4BiNwEcdEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_K9FEAEcZEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_K9FEAUcZEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_K9FEAkcZEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_K9FEA0cZEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_K9FEBEcZEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_K9FEBUcZEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_fkRJcEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_fkRJcUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KYCIV7EeGtctRo0dX6mA" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KYCYV7EeGtctRo0dX6mA" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9KY24V7EeGtctRo0dX6mA" name="Microprocessors, peripherals, microcontroller, signal processors" description="" kind="SUBCATEGORY">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KY3YV7EeGtctRo0dX6mA" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KY3oV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KY34V7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.7" unit="eV"/>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KY4oV7EeGtctRo0dX6mA" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KY44V7EeGtctRo0dX6mA" name="deltaTheta" valueAsString="0" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KY5IV7EeGtctRo0dX6mA" name="Technology" description="see Table 6" kind="TYPE">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KY5YV7EeGtctRo0dX6mA" name="NMOS">
<expressions xsi:type="mexp:MExpression" xmi:id="_-3Z-MCSTEemdfMifRXAxMQ" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<options xmi:id="_J9KY5oV7EeGtctRo0dX6mA" name="No. of transistors ≤ 50 000">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KY6IV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="70" unit="°C"/>
<changeableData xmi:id="_QfHvQEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_QfHvQUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9KY6YV7EeGtctRo0dX6mA" name="No. of transistors &gt; 50 000">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KY64V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="90" unit="°C"/>
<changeableData xmi:id="_QY3WQEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_QY3WQUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KY74V7EeGtctRo0dX6mA" name="CMOS">
<expressions xsi:type="mexp:MExpression" xmi:id="_AAqFQCSUEemdfMifRXAxMQ" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref/U_rat, C_2)));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<options xmi:id="_J9KY8IV7EeGtctRo0dX6mA" name="No. of transistors ≤ 5 000">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KY8oV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="50" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_7PTU0EceEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_7PTU0UceEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_Y3U6sEcAEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_Y3U6sUcAEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_AKyTAEcBEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_AKyTAUcBEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_AVwz8EcBEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_AVwz8UcBEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_MYgfMEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_MYgfMUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9KY84V7EeGtctRo0dX6mA" name="No. of transistors &gt; 5 000 to 50 000">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KY9YV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="60" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_7naS0EceEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_7naS0UceEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_y_Cu0EceEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_y_Cu0UceEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_y_Cu0kceEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_y_Cu00ceEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_y_Cu1EceEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_y_Cu1UceEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_MpwAMEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_MpwAMUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9KY9oV7EeGtctRo0dX6mA" name="No. of transistors &gt; 50 000 to 500 000" description="">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KY-IV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="80" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_7-JX0EceEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_7-JX0UceEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_zMKk0EceEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_zMKk0UceEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_zMKk0kceEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_zMKk00ceEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_zMKk1EceEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_zMKk1UceEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_M4GlQEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_M4GlQUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9KY-YV7EeGtctRo0dX6mA" name="No. of transistors &gt; 500 000" description="">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KY-4V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="90" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_8MpG0EceEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_8MpG0UceEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_zWsZ0EceEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_zWsZ0UceEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_zWsZ0kceEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_zWsZ00ceEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_zWsZ1EceEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_zWsZ1UceEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_NOhhMEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_NOhhMUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
<options xmi:id="_J9KZA4V7EeGtctRo0dX6mA" name="Bipolar" description="Degree of integration: valid for Gates: &lt;= 1k/Transistors: &lt;= 5k">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZBYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="70" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_Ahs80CSUEemdfMifRXAxMQ" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<changeableData xmi:id="_GKZXIEckEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_GKZXIUckEemqr_-H9PXpQA" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9KZBoV7EeGtctRo0dX6mA" name="BICMOS" description="Degree of integration: valid for Gates: &gt;100k-1M/Transistors: &gt;500k-5M">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZCIV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="75" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_BEaoUCSUEemdfMifRXAxMQ" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref/U_rat, C_2)));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_9D4Q0EceEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_9D4Q0UceEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_1TW60EceEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_1TW60UceEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_1TW60kceEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_1TW600ceEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_1TW61EceEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_1TW61UceEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_POTKoCPEEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_POTKoSPEEemdfMifRXAxMQ" name="lambda_ref" valueAsString="100" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_aX5u4Eb7Eem-Gsw_PW9Gww" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_aX5u4Ub7Eem-Gsw_PW9Gww" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9KZCYV7EeGtctRo0dX6mA" name="Digital families and bus interfaces, bus driver and receiver circuits" description="" kind="SUBCATEGORY">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZCoV7EeGtctRo0dX6mA" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZC4V7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZDIV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.7" unit="eV"/>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KZD4V7EeGtctRo0dX6mA" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZEIV7EeGtctRo0dX6mA" name="deltaTheta" valueAsString="0" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_hJtAQCPEEemdfMifRXAxMQ" name="Technology" description="see Table 7">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_mI-9sCPEEemdfMifRXAxMQ" name="Bipolar" kind="TYPE">
<expressions xsi:type="mexp:MExpression" xmi:id="_et7D0CSUEemdfMifRXAxMQ" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<options xmi:id="_0vkzoCPEEemdfMifRXAxMQ" name="TTL, -LS, -A(L)S, -F (Logic)">
<expressions xsi:type="mexp:MVariable" xmi:id="_HnriECPFEemdfMifRXAxMQ" name="Theta_ref" valueAsString="45" unit="°C"/>
</options>
<options xmi:id="_1KX5QCPEEemdfMifRXAxMQ" name="Bus interface">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZHYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
<options xmi:id="_1aUZwCPEEemdfMifRXAxMQ" name="TTL S (Logic + Bus interface)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZJoV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="80" unit="°C"/>
</options>
<options xmi:id="_1zS6cCPEEemdfMifRXAxMQ" name="ECL 10k">
<expressions xsi:type="mexp:MVariable" xmi:id="_NrzAoCPFEemdfMifRXAxMQ" name="Theta_ref" valueAsString="65" unit="°C"/>
</options>
<options xmi:id="_3YA1gCPEEemdfMifRXAxMQ" name="ECL 100k">
<expressions xsi:type="mexp:MVariable" xmi:id="_Owh0ECPFEemdfMifRXAxMQ" name="Theta_ref" valueAsString="75" unit="°C"/>
</options>
<options xmi:id="_3eVf8CPEEemdfMifRXAxMQ" name="ECL 10(LV)E(L) / 100(LV)E(L)(P)">
<expressions xsi:type="mexp:MVariable" xmi:id="_PYFjUCPFEemdfMifRXAxMQ" name="Theta_ref" valueAsString="60" unit="°C"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_nhMGwCPEEemdfMifRXAxMQ" name="CMOS" kind="TYPE">
<expressions xsi:type="mexp:MExpression" xmi:id="_cnxPoCSUEemdfMifRXAxMQ" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref/U_rat, C_2)));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;U_ref =5;"/>
<options xmi:id="_4yM7kCPEEemdfMifRXAxMQ" name="HCMOS, CMOS B, ACMOS" description="(FCT, HC, A(U),C, LVX), (LVC, LCX, LV) (VCX, ALVC, AVC, AHC, VHC)">
<expressions xsi:type="mexp:MVariable" xmi:id="_sR_G0CPFEemdfMifRXAxMQ" name="Theta_ref" valueAsString="45" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_rBnv0EcfEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_rBnv0UcfEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_xqgkIiYJEemuvY1pb5VrOw" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_xqgkIyYJEemuvY1pb5VrOw" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_xqgkJCYJEemuvY1pb5VrOw" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_xqgkJSYJEemuvY1pb5VrOw" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
</options>
<options xmi:id="_5BO2ECPEEemdfMifRXAxMQ" name="Logic">
<expressions xsi:type="mexp:MVariable" xmi:id="_sbXFQCPFEemdfMifRXAxMQ" name="Theta_ref" valueAsString="45" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_rLig0EcfEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_rLig0UcfEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_khXu4EcfEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_khXu4UcfEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_khXu4kcfEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_khXu40cfEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
</options>
<options xmi:id="_47R_ECPEEemdfMifRXAxMQ" name="Analog switches, Bus interface">
<expressions xsi:type="mexp:MVariable" xmi:id="_skqyQCPFEemdfMifRXAxMQ" name="Theta_ref" valueAsString="45" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_rVdR0EcfEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_rVdR0UcfEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_krSf4EcfEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_krSf4UcfEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_krSf4kcfEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_krSf40cfEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
</options>
<options xmi:id="_vOqTUCPFEemdfMifRXAxMQ" name="Bus interface, GTL(p)">
<expressions xsi:type="mexp:MVariable" xmi:id="_6Foc4CPFEemdfMifRXAxMQ" name="Theta_ref" valueAsString="50" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_rf1V0EcfEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_rf1V0UcfEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_k1Df4EcfEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_k1Df4UcfEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_k1Df4kcfEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_k1Df40cfEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
</options>
<options xmi:id="_v52lYCPFEemdfMifRXAxMQ" name="Bus driver / receiver" description="RS422, RS423, RS485, CAN, etc. and RS232, RS644/899, CML, etc.">
<expressions xsi:type="mexp:MVariable" xmi:id="_87EY8CPFEemdfMifRXAxMQ" name="Theta_ref" valueAsString="55" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_r05m4EcfEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_r05m4UcfEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_lH-b4EcfEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_lH-b4UcfEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_lH-b4kcfEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_lH-b40cfEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_qyb1ECPEEemdfMifRXAxMQ" name="BICMOS" kind="TYPE">
<expressions xsi:type="mexp:MExpression" xmi:id="_c2gPMCSUEemdfMifRXAxMQ" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref/U_rat, C_2)));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<options xmi:id="_50k-kCPEEemdfMifRXAxMQ" name="Logic">
<expressions xsi:type="mexp:MVariable" xmi:id="_LbOHUCPUEemdfMifRXAxMQ" name="Theta_ref" valueAsString="45" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_sM2M0EcfEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_sM2M0UcfEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_mimm0EcfEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_mimm0UcfEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_mimm0kcfEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_mimm00cfEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_mimm1EcfEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_mimm1UcfEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
</options>
<options xmi:id="_6A3uICPEEemdfMifRXAxMQ" name="Bus interface - ABT, BCT">
<expressions xsi:type="mexp:MVariable" xmi:id="_M_CqgCPUEemdfMifRXAxMQ" name="Theta_ref" valueAsString="50" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_sUee0EcfEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_sUee0UcfEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_myeO0EcfEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_myeO0UcfEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_myeO0kcfEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_myeO00cfEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_myeO1EcfEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_myeO1UcfEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
</options>
<options xmi:id="_6NYgICPEEemdfMifRXAxMQ" name="Bus interface - LVT, ALVT">
<expressions xsi:type="mexp:MVariable" xmi:id="_OcmNoCPUEemdfMifRXAxMQ" name="Theta_ref" valueAsString="50" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_se3J4EcfEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_se3J4UcfEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_nBuy0EcfEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_nBuy0UcfEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_nBuy0kcfEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_nBuy00cfEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_nBuy1EcfEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_nBuy1UcfEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
</options>
<options xmi:id="_6WYrICPEEemdfMifRXAxMQ" name="Bus interface GTL(p)">
<expressions xsi:type="mexp:MVariable" xmi:id="_PlhkkCPUEemdfMifRXAxMQ" name="Theta_ref" valueAsString="50" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_sxnt0EcfEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_sxnt0UcfEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_nMaY0EcfEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_nMaY0UcfEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_nMaY0kcfEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_nMaY00cfEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_nMaY1EcfEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_nMaY1UcfEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
</options>
<options xmi:id="_6feVsCPEEemdfMifRXAxMQ" name="Bus interface BTL, ETL">
<expressions xsi:type="mexp:MVariable" xmi:id="_RAGsMCPUEemdfMifRXAxMQ" name="Theta_ref" valueAsString="95" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_tBNB8EcfEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_tBNB8UcfEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_nVaj0EcfEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_nVaj0UcfEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_nVaj0kcfEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_nVaj00cfEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_nVaj1EcfEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_nVaj1UcfEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
</options>
<options xmi:id="_6motoCPEEemdfMifRXAxMQ" name="Bus driver / receiver">
<expressions xsi:type="mexp:MVariable" xmi:id="_SS7mACPUEemdfMifRXAxMQ" name="Theta_ref" valueAsString="55" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_tKCN0EcfEemqr_-H9PXpQA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_tKCN0UcfEemqr_-H9PXpQA" name="C_3" valueAsString="1"/>
<changeableData xmi:id="_nlSy4EcfEemqr_-H9PXpQA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_nlSy4UcfEemqr_-H9PXpQA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_nlSy4kcfEemqr_-H9PXpQA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_nlSy40cfEemqr_-H9PXpQA" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_nlSy5EcfEemqr_-H9PXpQA" name="Reference voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_nlSy5UcfEemqr_-H9PXpQA" name="U_ref" valueAsString="5" unit="V"/>
</changeableData>
</options>
</subDecisions>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_alLV4Eb7Eem-Gsw_PW9Gww" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_alLV4Ub7Eem-Gsw_PW9Gww" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_Za6VUCPUEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_Za6VUSPUEemdfMifRXAxMQ" name="lambda_ref" valueAsString="10" unit="FIT"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9KZtIV7EeGtctRo0dX6mA" name="Analog ICs" description="" kind="SUBCATEGORY">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZtYV7EeGtctRo0dX6mA" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZtoV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZt4V7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.7" unit="eV"/>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KZuoV7EeGtctRo0dX6mA" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZu4V7EeGtctRo0dX6mA" name="deltaTheta" valueAsString="0" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KZvIV7EeGtctRo0dX6mA" name="Type of circuit" description="see Table 8">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_osS0sCPUEemdfMifRXAxMQ" name="Amplifiers and others" description="see Table 8" kind="TYPE">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_PPh2UCYMEemuvY1pb5VrOw" name="Reference elements">
<expressions xsi:type="mexp:MVariable" xmi:id="_R6WRcCPVEemdfMifRXAxMQ" name="Theta_ref" valueAsString="45" unit="°C"/>
<options xmi:id="_PPh2VSYMEemuvY1pb5VrOw" name="Bipolar Analog IC">
<expressions xsi:type="mexp:MExpression" xmi:id="_PPh2ViYMEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2)));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;C_2 = 4.4;&#xD;&#xA;C_3 = 1.4;&#xD;&#xA;U_ref_div_U_rat = 0.7;"/>
<changeableData xmi:id="_PPh2VyYMEemuvY1pb5VrOw" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_PPh2WCYMEemuvY1pb5VrOw" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_PPh2WSYMEemuvY1pb5VrOw" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_PPh2WiYMEemuvY1pb5VrOw" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_kkvEkEciEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_kkvEkUciEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_PPh2WyYMEemuvY1pb5VrOw" name="Other IC">
<expressions xsi:type="mexp:MExpression" xmi:id="_PPh2XCYMEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<changeableData xmi:id="_kWPVkEciEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_kWPVkUciEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_UEO7cCYMEemuvY1pb5VrOw" name="Switched regulators">
<expressions xsi:type="mexp:MVariable" xmi:id="_TCAdECPVEemdfMifRXAxMQ" name="Theta_ref" valueAsString="55" unit="°C"/>
<options xmi:id="_UEO7dSYMEemuvY1pb5VrOw" name="Bipolar Analog IC">
<expressions xsi:type="mexp:MExpression" xmi:id="_UEO7diYMEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2)));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;C_2 = 4.4;&#xD;&#xA;C_3 = 1.4;&#xD;&#xA;U_ref_div_U_rat = 0.7;"/>
<changeableData xmi:id="_UEO7dyYMEemuvY1pb5VrOw" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_UEO7eCYMEemuvY1pb5VrOw" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_UEO7eSYMEemuvY1pb5VrOw" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_UEO7eiYMEemuvY1pb5VrOw" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_jONWgEciEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_jONWgUciEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_UEO7eyYMEemuvY1pb5VrOw" name="Other IC">
<expressions xsi:type="mexp:MExpression" xmi:id="_UEO7fCYMEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<changeableData xmi:id="_jCTogEciEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_jCTogUciEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_bHcfgCYMEemuvY1pb5VrOw" name="Power amplifiers and regulators, &lt;= 1 Watt">
<expressions xsi:type="mexp:MVariable" xmi:id="_T6F7oCPVEemdfMifRXAxMQ" name="Theta_ref" valueAsString="70" unit="°C"/>
<options xmi:id="_bHcfhSYMEemuvY1pb5VrOw" name="Bipolar Analog IC">
<expressions xsi:type="mexp:MExpression" xmi:id="_bHcfhiYMEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2)));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;C_2 = 4.4;&#xD;&#xA;C_3 = 1.4;&#xD;&#xA;U_ref_div_U_rat = 0.7;"/>
<changeableData xmi:id="_bHcfhyYMEemuvY1pb5VrOw" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_bHcfiCYMEemuvY1pb5VrOw" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_bHcfiSYMEemuvY1pb5VrOw" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_bHcfiiYMEemuvY1pb5VrOw" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_iAipgEciEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_iAipgUciEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_bHcfiyYMEemuvY1pb5VrOw" name="Other IC">
<expressions xsi:type="mexp:MExpression" xmi:id="_bHcfjCYMEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<changeableData xmi:id="_hvANkEciEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_hvANkUciEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_fNoRwCYMEemuvY1pb5VrOw" name="Power amplifiers and regulators, &gt; 1 Watt">
<expressions xsi:type="mexp:MVariable" xmi:id="_Veu-MCPVEemdfMifRXAxMQ" name="Theta_ref" valueAsString="90" unit="°C"/>
<options xmi:id="_fNoRxSYMEemuvY1pb5VrOw" name="Bipolar Analog IC">
<expressions xsi:type="mexp:MExpression" xmi:id="_fNoRxiYMEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2)));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;C_2 = 4.4;&#xD;&#xA;C_3 = 1.4;&#xD;&#xA;U_ref_div_U_rat = 0.7;"/>
<changeableData xmi:id="_fNoRxyYMEemuvY1pb5VrOw" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_fNoRyCYMEemuvY1pb5VrOw" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_fNoRySYMEemuvY1pb5VrOw" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_fNoRyiYMEemuvY1pb5VrOw" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_hfbggEciEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_hfbggUciEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_fNoRyyYMEemuvY1pb5VrOw" name="Other IC">
<expressions xsi:type="mexp:MExpression" xmi:id="_fNoRzCYMEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<changeableData xmi:id="_fq2kgEciEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_fq2kgUciEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
<options xmi:id="_8vwjACPUEemdfMifRXAxMQ" name="Operational amplifiers, comparators and voltage monitors - Bipolar, BIFET">
<expressions xsi:type="mexp:MVariable" xmi:id="_PFRhwCPVEemdfMifRXAxMQ" name="Theta_ref" valueAsString="55" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_tubowCYMEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2)));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;C_2 = 4.4;&#xD;&#xA;C_3 = 1.4;&#xD;&#xA;U_ref_div_U_rat = 0.7;"/>
<changeableData xmi:id="_tubowSYMEemuvY1pb5VrOw" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_tubowiYMEemuvY1pb5VrOw" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_tubowyYMEemuvY1pb5VrOw" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_tuboxCYMEemuvY1pb5VrOw" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_sBKPUEchEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_sBKPUUchEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_9IQikCPUEemdfMifRXAxMQ" name="Operational amplifiers, comparators and voltage monitors - CMOS">
<expressions xsi:type="mexp:MVariable" xmi:id="_Qz18YCPVEemdfMifRXAxMQ" name="Theta_ref" valueAsString="45" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_0V5E8CYMEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<changeableData xmi:id="_si4cUEchEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_si4cUUchEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_Y4FfoCPVEemdfMifRXAxMQ" name="High frequency IC (&gt; 100MHz)" description="see Table 8" kind="TYPE">
<options xmi:id="_epXhwCPVEemdfMifRXAxMQ" name="HF-Modulator, demodulator, PLL, VCO - Bipolar">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZxYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="65" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_uomK8CYMEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2)));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;C_2 = 4.4;&#xD;&#xA;C_3 = 1.4;&#xD;&#xA;U_ref_div_U_rat = 0.7;"/>
<changeableData xmi:id="_uomK8SYMEemuvY1pb5VrOw" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_uomK8iYMEemuvY1pb5VrOw" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_uomK8yYMEemuvY1pb5VrOw" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_uomK9CYMEemuvY1pb5VrOw" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_bNDjgEciEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_bNDjgUciEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_io6ggCPVEemdfMifRXAxMQ" name="HF-Modulator, demodulator, PLL, VCO - CMOS, BICMOS">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZzYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="45" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_wC0tQCYMEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<changeableData xmi:id="_aX9HgEciEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_aX9HgUciEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_fEcUMCPVEemdfMifRXAxMQ" name="Transmitter, Receiver - bipolar">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZ1oV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="70" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_xWJ9YCYMEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2)));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;C_2 = 4.4;&#xD;&#xA;C_3 = 1.4;&#xD;&#xA;U_ref_div_U_rat = 0.7;"/>
<changeableData xmi:id="_xWJ9YSYMEemuvY1pb5VrOw" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_xWJ9YiYMEemuvY1pb5VrOw" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_xWJ9YyYMEemuvY1pb5VrOw" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_xWJ9ZCYMEemuvY1pb5VrOw" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_aQd_cEciEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_aQd_cUciEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_nxF7QCPVEemdfMifRXAxMQ" name="Transmitter, Receiver - CMOS, BICMOS">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZ3oV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="45" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_yc6xICYMEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<changeableData xmi:id="_Z4N3gEciEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_Z4N3gUciEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_qCn5ACPVEemdfMifRXAxMQ" name="Power Amplifier/Receiver GaAs">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KZ5YV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="80" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_y5AQMCYMEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<changeableData xmi:id="_ZVlEgEciEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_ZVlEgUciEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_aueb0Eb7Eem-Gsw_PW9Gww" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_aueb0Ub7Eem-Gsw_PW9Gww" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9KaRIV7EeGtctRo0dX6mA" name="Application-specific ICs (ASICs)" kind="SUBCATEGORY">
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KaR4V7EeGtctRo0dX6mA" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KaSIV7EeGtctRo0dX6mA" name="deltaTheta" valueAsString="0" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_LW2xECYLEemuvY1pb5VrOw" name="Technology (Voltage dependence factor)">
<options xmi:id="_LW2xESYLEemuvY1pb5VrOw" name="Digital CMOS-family">
<expressions xsi:type="mexp:MExpression" xmi:id="_LW2xEiYLEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = exp(C_1 * (pow(U_op, C_2) - pow(U_ref, C_2)));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;U_ref = 5;&#xD;&#xA;C_1 = 0.1;&#xD;&#xA;C_2 = 1;&#xD;&#xA;"/>
<changeableData xmi:id="_LW2xEyYLEemuvY1pb5VrOw" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_LW2xFCYLEemuvY1pb5VrOw" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_KaJfoEclEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_KaJfoUclEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_LW2xFSYLEemuvY1pb5VrOw" name="Bipolar Analog IC">
<expressions xsi:type="mexp:MExpression" xmi:id="_LW2xFiYLEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2)));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;C_2 = 4.4;&#xD;&#xA;C_3 = 1.4;&#xD;&#xA;U_ref_div_U_rat = 0.7;"/>
<changeableData xmi:id="_LW2xFyYLEemuvY1pb5VrOw" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_LW2xGCYLEemuvY1pb5VrOw" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
<changeableData xmi:id="_LW2xGSYLEemuvY1pb5VrOw" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_LW2xGiYLEemuvY1pb5VrOw" name="U_rat" valueAsString="15" unit="V"/>
</changeableData>
<changeableData xmi:id="_4ylTYEchEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_4ylTYUchEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_LW2xGyYLEemuvY1pb5VrOw" name="Other IC">
<expressions xsi:type="mexp:MExpression" xmi:id="_LW2xHCYLEemuvY1pb5VrOw" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<changeableData xmi:id="_yAxBUEchEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_yAxBUUchEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KaSYV7EeGtctRo0dX6mA" name="ASIC Type" description="see Table 5" kind="TYPE">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_RdTeMCPXEemdfMifRXAxMQ" name="Programmable ASICs (PLD) erasable">
<options xmi:id="_ScZjsCPXEemdfMifRXAxMQ" name="MOS, CMOS - RAM basis">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KawYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="80" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KawoV7EeGtctRo0dX6mA" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kaw4V7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KaxIV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.7" unit="eV"/>
</options>
<options xmi:id="_Sz2aYCPXEemdfMifRXAxMQ" name="NMOS, CMOS - EPROM basis (No. of transistors &lt;= 5000)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ka04V7EeGtctRo0dX6mA" name="A" valueAsString="0.3"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ka1IV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ka1YV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.6" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_ebNfECPXEemdfMifRXAxMQ" name="Theta_ref" valueAsString="70" unit="°C"/>
</options>
<options xmi:id="_S5o5UCPXEemdfMifRXAxMQ" name="NMOS, CMOS - EEPROM basis (No. of transistors &gt; 5000)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ka44V7EeGtctRo0dX6mA" name="A" valueAsString="0.3"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ka5IV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ka5YV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.6" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_c4GGgCPXEemdfMifRXAxMQ" name="Theta_ref" valueAsString="80" unit="°C"/>
</options>
<options xmi:id="_hJ4EwCPXEemdfMifRXAxMQ" name="NMOS, CMOS - FLASH-EPROM">
<expressions xsi:type="mexp:MVariable" xmi:id="_hJ4EwSPXEemdfMifRXAxMQ" name="A" valueAsString="0.3"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_hJ4EwiPXEemdfMifRXAxMQ" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_hJ4EwyPXEemdfMifRXAxMQ" name="Ea2" valueAsString="0.6" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_hJ4ExCPXEemdfMifRXAxMQ" name="Theta_ref" valueAsString="80" unit="°C"/>
</options>
</subDecisions>
<subDecisions xmi:id="_NpFMgGHOEemnvOt3U3Q71g" name="Programmable ASICs (PLD) non-erasable">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="__utVgCPWEemdfMifRXAxMQ" name="ASIC Technology" kind="DETAIL">
<options xmi:id="_F4c68CPXEemdfMifRXAxMQ" name="Bipolar - TTL">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KaVIV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="80" unit="°C"/>
</options>
<options xmi:id="_GQHNACPXEemdfMifRXAxMQ" name="Bipolar - ECL">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KaW4V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="85" unit="°C"/>
</options>
<options xmi:id="_GlQ9oCPXEemdfMifRXAxMQ" name="CMOS (anti-fuses)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KaYoV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="80" unit="°C"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_wa-eIGHOEemnvOt3U3Q71g" name="Temperature dependence" description="see table 13" kind="DETAIL">
<options xmi:id="_wa-eIWHOEemnvOt3U3Q71g" name="Uses EPROM, OTPROM, EEPROM, EAROM">
<expressions xsi:type="mexp:MVariable" xmi:id="_wa-eImHOEemnvOt3U3Q71g" name="A" valueAsString="0.3"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_wa-eI2HOEemnvOt3U3Q71g" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_wa-eJGHOEemnvOt3U3Q71g" name="Ea2" valueAsString="0.6" unit="eV"/>
</options>
<options xmi:id="_wa-eJWHOEemnvOt3U3Q71g" name="Other/None">
<expressions xsi:type="mexp:MVariable" xmi:id="_wa-eJmHOEemnvOt3U3Q71g" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_wa-eJ2HOEemnvOt3U3Q71g" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_wa-eKGHOEemnvOt3U3Q71g" name="Ea2" valueAsString="0.7" unit="eV"/>
</options>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_LA4bMGHOEemnvOt3U3Q71g" name="ASICs, Full Custom, Gate Arrays, Telecom ICs, A/D Converters">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_-A4XMCPVEemdfMifRXAxMQ" name="ASIC Technology" kind="DETAIL">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_QzlBMCPWEemdfMifRXAxMQ" name="CMOS, BICMOS - digital, analog/mixed">
<options xmi:id="_U4rOUCPWEemdfMifRXAxMQ" name="No. of transistors &lt;= 50k">
<expressions xsi:type="mexp:MVariable" xmi:id="_nY3zECPWEemdfMifRXAxMQ" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
<options xmi:id="_VOz2YCPWEemdfMifRXAxMQ" name="No. of transistors &gt; 50k to 50M">
<expressions xsi:type="mexp:MVariable" xmi:id="_oFCVgCPWEemdfMifRXAxMQ" name="Theta_ref" valueAsString="70" unit="°C"/>
</options>
<options xmi:id="_VThXQCPWEemdfMifRXAxMQ" name="No. of transistors &gt; 50M">
<expressions xsi:type="mexp:MVariable" xmi:id="_pl32ICPWEemdfMifRXAxMQ" name="Theta_ref" valueAsString="80" unit="°C"/>
</options>
</subDecisions>
<options xmi:id="__1LmYCPVEemdfMifRXAxMQ" name="Bipolar TTL">
<expressions xsi:type="mexp:MVariable" xmi:id="_t5zJcCPWEemdfMifRXAxMQ" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
<options xmi:id="_AMTs8CPWEemdfMifRXAxMQ" name="Bipolar ECL">
<expressions xsi:type="mexp:MVariable" xmi:id="_utrdcCPWEemdfMifRXAxMQ" name="Theta_ref" valueAsString="70" unit="°C"/>
</options>
<options xmi:id="_ATLJ8CPWEemdfMifRXAxMQ" name="Bipolar HV (&gt; 50 Volt)">
<expressions xsi:type="mexp:MVariable" xmi:id="_wp-yECPWEemdfMifRXAxMQ" name="Theta_ref" valueAsString="80" unit="°C"/>
</options>
<options xmi:id="_A62N8CPWEemdfMifRXAxMQ" name="NMOS">
<expressions xsi:type="mexp:MVariable" xmi:id="_x7XhcCPWEemdfMifRXAxMQ" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
<options xmi:id="_DDcSICPWEemdfMifRXAxMQ" name="CMOS, BICMOS - HV (&gt; 50 Volt)">
<expressions xsi:type="mexp:MVariable" xmi:id="_z8NX0CPWEemdfMifRXAxMQ" name="Theta_ref" valueAsString="75" unit="°C"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_Y8VCYGHOEemnvOt3U3Q71g" name="Temperature dependence" description="see table 13" kind="DETAIL">
<options xmi:id="_d5m0sGHOEemnvOt3U3Q71g" name="Uses EPROM, OTPROM, EEPROM, EAROM">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kaa4V7EeGtctRo0dX6mA" name="A" valueAsString="0.3"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KabIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KabYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.6" unit="eV"/>
</options>
<options xmi:id="_itidwGHOEemnvOt3U3Q71g" name="Other/None">
<expressions xsi:type="mexp:MVariable" xmi:id="_qcBzcGHOEemnvOt3U3Q71g" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_qcBzcWHOEemnvOt3U3Q71g" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_qcBzcmHOEemnvOt3U3Q71g" name="Ea2" valueAsString="0.7" unit="eV"/>
</options>
</subDecisions>
</subDecisions>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_a7mR0Eb7Eem-Gsw_PW9Gww" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_a7mR0Ub7Eem-Gsw_PW9Gww" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
</subDecisions>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9Ka_YV7EeGtctRo0dX6mA" name="Discrete Semiconductors (Section 7)" description="" kind="CATEGORY">
<expressions xsi:type="mexp:MVariable" xmi:id="_4HPiwCYkEemuvY1pb5VrOw" name="k_0" valueAsString="8.616e-5" unit="eV/K"/>
<subDecisions xmi:id="_J9Ka_oV7EeGtctRo0dX6mA" name="Transistors common, low frequency" kind="SUBCATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9Ka_4V7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = ifThenElse(lessEq(U_op/U_rat, 0.6), 1, exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2))));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;C_2 = 8;&#xD;&#xA;C_3 = 1.4;&#xD;&#xA;U_ref_div_U_rat = 0.5;&#xD;&#xA;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbAIV7EeGtctRo0dX6mA" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbAYV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbAoV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.7" unit="eV"/>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KbA4V7EeGtctRo0dX6mA" name="Type" description="see Table 16" kind="TYPE">
<options xmi:id="_J9KbC4V7EeGtctRo0dX6mA" name="Bipolar, universal">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbDYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
<options xmi:id="_J9KbDoV7EeGtctRo0dX6mA" name="Transistor arrays">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbEIV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
<options xmi:id="_J9KbEYV7EeGtctRo0dX6mA" name="Bipolar, low power">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbE4V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="85" unit="°C"/>
</options>
<options xmi:id="_J9KbFIV7EeGtctRo0dX6mA" name="Bipolar, power">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbFoV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="100" unit="°C"/>
</options>
<options xmi:id="_J9KbBYV7EeGtctRo0dX6mA" name="FET - junction">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbB4V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
<options xmi:id="_J9KbCIV7EeGtctRo0dX6mA" name="FET - MOS">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbCoV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
<options xmi:id="_J9KbF4V7EeGtctRo0dX6mA" name="MOS, power (SIPMOS)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbGYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="100" unit="°C"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KbNoV7EeGtctRo0dX6mA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbN4V7EeGtctRo0dX6mA" name="U_op" valueAsString="5" unit="V"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KbOIV7EeGtctRo0dX6mA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbOYV7EeGtctRo0dX6mA" name="U_rat" valueAsString="15" unit="V"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KbOoV7EeGtctRo0dX6mA" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbO4V7EeGtctRo0dX6mA" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KbPIV7EeGtctRo0dX6mA" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbPYV7EeGtctRo0dX6mA" name="deltaTheta" valueAsString="0" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_ydAAICPcEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_ydAAISPcEemdfMifRXAxMQ" name="lambda_ref" valueAsString="100" unit="FIT"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_DPPDsCPcEemdfMifRXAxMQ" name="Transistor, microwave (e.g. RF &gt; 800MHz)" kind="SUBCATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_DPPDsSPcEemdfMifRXAxMQ" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = ifThenElse(lessEq(U_op/U_rat, 0.6), 1, exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2))));&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;C_2 = 8;&#xD;&#xA;C_3 = 1.4;&#xD;&#xA;U_ref_div_U_rat = 0.5;&#xD;&#xA;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_DPPDsiPcEemdfMifRXAxMQ" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_DPPDsyPcEemdfMifRXAxMQ" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_DPPDtCPcEemdfMifRXAxMQ" name="Ea2" valueAsString="0.7" unit="eV"/>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_DPPDtSPcEemdfMifRXAxMQ" name="Type" description="see Table 17" kind="TYPE">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_DPPDzSPcEemdfMifRXAxMQ" name="Bipolar">
<options xmi:id="_DPPDziPcEemdfMifRXAxMQ" name="wide band, small signal">
<expressions xsi:type="mexp:MVariable" xmi:id="_DPPD0CPcEemdfMifRXAxMQ" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
<options xmi:id="_DPPD0SPcEemdfMifRXAxMQ" name="power">
<expressions xsi:type="mexp:MVariable" xmi:id="_DPPD0yPcEemdfMifRXAxMQ" name="Theta_ref" valueAsString="125" unit="°C"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_DPPD1CPcEemdfMifRXAxMQ" name="GaAs FET">
<options xmi:id="_DPPD1SPcEemdfMifRXAxMQ" name="small signal, low noise">
<expressions xsi:type="mexp:MVariable" xmi:id="_DPPD1yPcEemdfMifRXAxMQ" name="Theta_ref" valueAsString="95" unit="°C"/>
</options>
<options xmi:id="_DPPD2CPcEemdfMifRXAxMQ" name="medium power">
<expressions xsi:type="mexp:MVariable" xmi:id="_DPPD2iPcEemdfMifRXAxMQ" name="Theta_ref" valueAsString="110" unit="°C"/>
</options>
<options xmi:id="_DPPD2yPcEemdfMifRXAxMQ" name="high power">
<expressions xsi:type="mexp:MVariable" xmi:id="_DPPD3SPcEemdfMifRXAxMQ" name="Theta_ref" valueAsString="145" unit="°C"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_DPPD3iPcEemdfMifRXAxMQ" name="MOSFET">
<options xmi:id="_DPPD3yPcEemdfMifRXAxMQ" name="wide band, small signal">
<expressions xsi:type="mexp:MVariable" xmi:id="_DPPD4SPcEemdfMifRXAxMQ" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
<options xmi:id="_DPPD4iPcEemdfMifRXAxMQ" name="power">
<expressions xsi:type="mexp:MVariable" xmi:id="_DPPD5CPcEemdfMifRXAxMQ" name="Theta_ref" valueAsString="125" unit="°C"/>
</options>
</subDecisions>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_DPPD5SPcEemdfMifRXAxMQ" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_DPPD5iPcEemdfMifRXAxMQ" name="U_op" valueAsString="5" unit="V"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_DPPD5yPcEemdfMifRXAxMQ" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_DPPD6CPcEemdfMifRXAxMQ" name="U_rat" valueAsString="15" unit="V"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_DPPD6SPcEemdfMifRXAxMQ" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_DPPD6iPcEemdfMifRXAxMQ" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_DPPD6yPcEemdfMifRXAxMQ" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_DPPD7CPcEemdfMifRXAxMQ" name="deltaTheta" valueAsString="0" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_y-Q6ICPcEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_y-Q6ISPcEemdfMifRXAxMQ" name="lambda_ref" valueAsString="100" unit="FIT"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9KbQ4V7EeGtctRo0dX6mA" name="Diode" kind="SUBCATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KbRIV7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KbRYV7EeGtctRo0dX6mA" name="Type" description="see Table 18" kind="TYPE">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KbRoV7EeGtctRo0dX6mA" name="Microwave diode, small signal">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbR4V7EeGtctRo0dX6mA" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbSIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbSYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.7" unit="eV"/>
<options xmi:id="_J9KbSoV7EeGtctRo0dX6mA" name="detector diode">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbTIV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="45" unit="°C"/>
</options>
<options xmi:id="_J9KbTYV7EeGtctRo0dX6mA" name="capacitance diode">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbT4V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="45" unit="°C"/>
</options>
<options xmi:id="_J9KbUIV7EeGtctRo0dX6mA" name="mixer diode">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbUoV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="70" unit="°C"/>
</options>
<options xmi:id="_J9KbU4V7EeGtctRo0dX6mA" name="pin diode">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbVYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KbVoV7EeGtctRo0dX6mA" name="Microwave diode, power">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbV4V7EeGtctRo0dX6mA" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbWIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbWYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.7" unit="eV"/>
<options xmi:id="_J9KbWoV7EeGtctRo0dX6mA" name="storage varactor">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbXIV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="100" unit="°C"/>
</options>
<options xmi:id="_J9KbXYV7EeGtctRo0dX6mA" name="Gunn diode">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbX4V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="160" unit="°C"/>
</options>
<options xmi:id="_J9KbYIV7EeGtctRo0dX6mA" name="Impatt diode">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbYYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="180" unit="°C"/>
</options>
<options xmi:id="_J9KbZIV7EeGtctRo0dX6mA" name="pin diode">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbZoV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="100" unit="°C"/>
</options>
</subDecisions>
<options xmi:id="_J9KbZ4V7EeGtctRo0dX6mA" name="Universal diode">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbaYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbaoV7EeGtctRo0dX6mA" name="A" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kba4V7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.4" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbbIV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.0" unit="eV"/>
</options>
<options xmi:id="_J9KbbYV7EeGtctRo0dX6mA" name="Schottky diode">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kbb4V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbcIV7EeGtctRo0dX6mA" name="A" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbcYV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.4" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbcoV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.0" unit="eV"/>
</options>
<options xmi:id="_J9Kbc4V7EeGtctRo0dX6mA" name="Limiting diode (suppressor diode)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbdYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbdoV7EeGtctRo0dX6mA" name="A" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kbd4V7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.4" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbeIV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.0" unit="eV"/>
</options>
<options xmi:id="_J9KbeYV7EeGtctRo0dX6mA" name="Zener Diode (Ptot &lt; 1W), voltage protection">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kbe4V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbfIV7EeGtctRo0dX6mA" name="A" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbfYV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.4" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbfoV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.0" unit="eV"/>
</options>
<options xmi:id="_J9Kbf4V7EeGtctRo0dX6mA" name="Zener Diode, power, stabilization">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbgYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="100" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbgoV7EeGtctRo0dX6mA" name="A" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kbg4V7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.4" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbhIV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.0" unit="eV"/>
</options>
<options xmi:id="_J9KbhYV7EeGtctRo0dX6mA" name="High-voltage rectifier diode">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbhoV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="85" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kbh4V7EeGtctRo0dX6mA" name="A" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbiIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.4" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbiYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.0" unit="eV"/>
</options>
<options xmi:id="_J9KbjIV7EeGtctRo0dX6mA" name="Reference diode">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbjoV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="45" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kbj4V7EeGtctRo0dX6mA" name="A" valueAsString="0.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbkIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbkYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.7" unit="eV"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KbkoV7EeGtctRo0dX6mA" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kbk4V7EeGtctRo0dX6mA" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KblIV7EeGtctRo0dX6mA" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KblYV7EeGtctRo0dX6mA" name="deltaTheta" valueAsString="0" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_zbuSMCPcEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_zbuSMSPcEemdfMifRXAxMQ" name="lambda_ref" valueAsString="100" unit="FIT"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9Kbm4V7EeGtctRo0dX6mA" name="Power semiconductors" kind="SUBCATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KbnIV7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbnYV7EeGtctRo0dX6mA" name="A" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbnoV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.4" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kbn4V7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.0" unit="eV"/>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KboIV7EeGtctRo0dX6mA" name="Type" description="see Table 19" kind="TYPE">
<options xmi:id="_J9KboYV7EeGtctRo0dX6mA" name="Rectifier diode" description="">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kbo4V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="70" unit="°C"/>
</options>
<options xmi:id="_J9KbpIV7EeGtctRo0dX6mA" name="Rectifier bridge">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbpoV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="85" unit="°C"/>
</options>
<options xmi:id="_J9Kbp4V7EeGtctRo0dX6mA" name="Schottky diode">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbqYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="85" unit="°C"/>
</options>
<options xmi:id="_J9KbqoV7EeGtctRo0dX6mA" name="Thyristors">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbrIV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="85" unit="°C"/>
</options>
<options xmi:id="_J9KbrYV7EeGtctRo0dX6mA" name="Triac's, Diac's">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kbr4V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="85" unit="°C"/>
</options>
<options xmi:id="_J9KbvIV7EeGtctRo0dX6mA" name="Specialized and custom-made power semiconductors">
<changeableData xmi:id="_J9Kbv4V7EeGtctRo0dX6mA" name="Reference virtual (equivalent) junction temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbwIV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="40" unit="°C"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KbwYV7EeGtctRo0dX6mA" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbwoV7EeGtctRo0dX6mA" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9Kbw4V7EeGtctRo0dX6mA" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbxIV7EeGtctRo0dX6mA" name="deltaTheta" valueAsString="0" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_0DPlMCPcEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_0DPlMSPcEemdfMifRXAxMQ" name="lambda_ref" valueAsString="100" unit="FIT"/>
</subDecisions>
</subDecisions>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KfMoV7EeGtctRo0dX6mA" name="Optoelectronic components (Section 8)" description="" kind="CATEGORY">
<subDecisions xmi:id="_J9KfM4V7EeGtctRo0dX6mA" name="Optoelectronic semiconductor signal receivers" description="see Table 25" kind="SUBCATEGORY">
<expressions xsi:type="mexp:MVariable" xmi:id="_6Z13gCYkEemuvY1pb5VrOw" name="k_0" valueAsString="8.616e-5" unit="eV/K"/>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KfNIV7EeGtctRo0dX6mA" name="Type" description="" kind="TYPE">
<options xmi:id="_J9KfWoV7EeGtctRo0dX6mA" name="Phototransistor (plastic and hermetically enclosed)">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KfXIV7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_U = ifThenElse(lessEq(U_op/U_rat, 0.6), 1, exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2))));&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;U_ref_div_U_rat = 0.5;&#xD;&#xA;C_2 = 8.0;&#xD;&#xA;C_3 = 1.4;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KfXYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="45" unit="°C"/>
<changeableData xmi:id="_J9KfXoV7EeGtctRo0dX6mA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KfX4V7EeGtctRo0dX6mA" name="U_rat" valueAsString="10" unit="V"/>
</changeableData>
<changeableData xmi:id="_J9KfYIV7EeGtctRo0dX6mA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KfYYV7EeGtctRo0dX6mA" name="U_op" valueAsString="5" unit="V"/>
</changeableData>
</options>
<options xmi:id="_VgKA4CPdEemdfMifRXAxMQ" name="Photodiode (Si and Si PIN, InP, InP APD, Ge, Ge APD)">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KfNoV7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KfN4V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="45" unit="°C"/>
</options>
<options xmi:id="_J9KfUYV7EeGtctRo0dX6mA" name="Photo element">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KfU4V7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KfVIV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="45" unit="°C"/>
</options>
<options xmi:id="_J9KfVYV7EeGtctRo0dX6mA" name="Detector module">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KfVoV7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KfV4V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="40" unit="°C"/>
</options>
<options xmi:id="_J9KfUIV7EeGtctRo0dX6mA" name="Solar component" description="">
<expressions xsi:type="mexp:MVariable" xmi:id="_kduzcCPdEemdfMifRXAxMQ" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_sW0PkCPdEemdfMifRXAxMQ" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KfYoV7EeGtctRo0dX6mA" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KfY4V7EeGtctRo0dX6mA" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KfZIV7EeGtctRo0dX6mA" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KfZYV7EeGtctRo0dX6mA" name="deltaTheta" valueAsString="0" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KfZoV7EeGtctRo0dX6mA" name="Material" description="see Table 10" kind="DETAIL">
<options xmi:id="_J9KfZ4V7EeGtctRo0dX6mA" name="Si">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KfaIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.3" unit="eV"/>
</options>
<options xmi:id="_J9KfaYV7EeGtctRo0dX6mA" name="InP">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KfaoV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.7" unit="eV"/>
</options>
<options xmi:id="_J9Kfa4V7EeGtctRo0dX6mA" name="Ge">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KfbIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.6" unit="eV"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KfWIV7EeGtctRo0dX6mA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KfWYV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="30" unit="FIT"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9KfbYV7EeGtctRo0dX6mA" name="LED, IREDs, laser diodes and transmitter components" description="see Table 26" kind="SUBCATEGORY">
<expressions xsi:type="mexp:MVariable" xmi:id="_6ukxYCYkEemuvY1pb5VrOw" name="k_0" valueAsString="8.616e-5" unit="eV/K"/>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9Kfb4V7EeGtctRo0dX6mA" name="Type" description="" kind="TYPE">
<options xmi:id="_2kb6ICPdEemdfMifRXAxMQ" name="LED visible light (radial and SMT, large power packages (&gt; 100 mA DC))">
<expressions xsi:type="mexp:MVariable" xmi:id="_75OYECPeEemdfMifRXAxMQ" name="Theta_ref" valueAsString="45" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_k78b8UcoEemqr_-H9PXpQA" name="I_ref_div_I_rat" valueAsString="0.5" unit="A"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KfboV7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_I * pi_T * amount;&#xD;&#xA;&#xD;&#xA;pi_I = ifThenElse(greaterEq(I/I_rat, 0.5), exp(C_4 * (pow(I/I_rat, C_5) - pow(I_ref_div_I_rat, C_5))), 1);&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_GV3OAEcpEemqr_-H9PXpQA" name="C_5" valueAsString="8.0"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_X-bAIEcpEemqr_-H9PXpQA" name="C_4" valueAsString="1.4"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_-Q290CPeEemdfMifRXAxMQ" name="Ea1" valueAsString="0.65" unit="eV"/>
<changeableData xmi:id="_J9Kf0oV7EeGtctRo0dX6mA" name="Operating current">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kf04V7EeGtctRo0dX6mA" name="I" valueAsString="0.5" unit="A"/>
</changeableData>
<changeableData xmi:id="_J9Kf1IV7EeGtctRo0dX6mA" name="Rated current">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kf1YV7EeGtctRo0dX6mA" name="I_rat" valueAsString="1" unit="A"/>
</changeableData>
</options>
<options xmi:id="_BMKt0CPeEemdfMifRXAxMQ" name="LED IRED - (Al)GaAs">
<expressions xsi:type="mexp:MVariable" xmi:id="_AkQj0CPfEemdfMifRXAxMQ" name="Theta_ref" valueAsString="75" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_emh2MF-LEemclogVDtTNAg" expression="lambda = lambda_ref * pi_I * pi_T * amount;&#xD;&#xA;&#xD;&#xA;pi_I = ifThenElse(greaterEq(I/I_rat, 0.5), exp(C_4 * (pow(I/I_rat, C_5) - pow(I_ref_div_I_rat, C_5))), 1);&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;I_ref_div_I_rat = 0.5;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_4OnqsF-LEemclogVDtTNAg" name="C_5" valueAsString="8.0"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_4OnqsV-LEemclogVDtTNAg" name="C_4" valueAsString="1.4"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_SB1-4F-REemclogVDtTNAg" name="Ea1" valueAsString="0.65" unit="eV"/>
<changeableData xmi:id="_ro-_4F-LEemclogVDtTNAg" name="Operating current">
<expressions xsi:type="mexp:MVariable" xmi:id="_ro-_4V-LEemclogVDtTNAg" name="I" valueAsString="0.5" unit="A"/>
</changeableData>
<changeableData xmi:id="_ro-_4l-LEemclogVDtTNAg" name="Rated current">
<expressions xsi:type="mexp:MVariable" xmi:id="_ro-_41-LEemclogVDtTNAg" name="I_rat" valueAsString="1" unit="A"/>
</changeableData>
</options>
<options xmi:id="_TxO44F-REemclogVDtTNAg" name="LED IRED - InP">
<expressions xsi:type="mexp:MVariable" xmi:id="_TxO44V-REemclogVDtTNAg" name="Theta_ref" valueAsString="75" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_TxO441-REemclogVDtTNAg" expression="lambda = lambda_ref * pi_I * pi_T * amount;&#xD;&#xA;&#xD;&#xA;pi_I = ifThenElse(greaterEq(I/I_rat, 0.5), exp(C_4 * (pow(I/I_rat, C_5) - pow(I_ref_div_I_rat, C_5))), 1);&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;I_ref_div_I_rat = 0.5;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_TxO45F-REemclogVDtTNAg" name="C_5" valueAsString="8.0"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_TxO45V-REemclogVDtTNAg" name="C_4" valueAsString="1.4"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_TxO45l-REemclogVDtTNAg" name="Ea1" valueAsString="1.0" unit="eV"/>
<changeableData xmi:id="_TxO451-REemclogVDtTNAg" name="Operating current">
<expressions xsi:type="mexp:MVariable" xmi:id="_TxO46F-REemclogVDtTNAg" name="I" valueAsString="0.5" unit="A"/>
</changeableData>
<changeableData xmi:id="_TxO46V-REemclogVDtTNAg" name="Rated current">
<expressions xsi:type="mexp:MVariable" xmi:id="_TxO46l-REemclogVDtTNAg" name="I_rat" valueAsString="1" unit="A"/>
</changeableData>
</options>
<options xmi:id="_K6miACPeEemdfMifRXAxMQ" name="Laser diode (GaAs 880 nm)">
<expressions xsi:type="mexp:MVariable" xmi:id="_Avs-0CPfEemdfMifRXAxMQ" name="Theta_ref" valueAsString="75" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_jxjwoF-LEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_bYMqQF-REemclogVDtTNAg" name="Ea1" valueAsString="0.6" unit="eV"/>
</options>
<options xmi:id="_iU-PIF-REemclogVDtTNAg" name="Laser diode (InP 1 300 nm, InP 1 500 nm)">
<expressions xsi:type="mexp:MVariable" xmi:id="_iU-PIV-REemclogVDtTNAg" name="Theta_ref" valueAsString="75" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_iU-PIl-REemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_iU-PI1-REemclogVDtTNAg" name="Ea1" valueAsString="0.8" unit="eV"/>
</options>
<options xmi:id="_OrziwCPeEemdfMifRXAxMQ" name="Laser array, pump laser / pump laser cooled (GaAS 980 nm)">
<expressions xsi:type="mexp:MVariable" xmi:id="_A4P20CPfEemdfMifRXAxMQ" name="Theta_ref" valueAsString="45" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_kJJxQF-LEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_vfnEcF-REemclogVDtTNAg" name="Ea1" valueAsString="0.6" unit="eV"/>
</options>
<options xmi:id="_qw6gsF-REemclogVDtTNAg" name="Laser array, pump laser / pump laser cooled (InP 1 480 nm)">
<expressions xsi:type="mexp:MVariable" xmi:id="_qw6gsV-REemclogVDtTNAg" name="Theta_ref" valueAsString="45" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_qw6gsl-REemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_wIu58F-REemclogVDtTNAg" name="Ea1" valueAsString="0.8" unit="eV"/>
</options>
<options xmi:id="_J9KfuoV7EeGtctRo0dX6mA" name="Laser-transmitter module" description="consult manufacturer">
<expressions xsi:type="mexp:MExpression" xmi:id="_kkj64F-LEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<changeableData xmi:id="_h5xXACPfEemdfMifRXAxMQ" name="Reference junction temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_A_CbUCPfEemdfMifRXAxMQ" name="Theta_ref" valueAsString="0" unit="°C"/>
</changeableData>
<changeableData xmi:id="_zUK7MF-REemclogVDtTNAg" name="Activation Energy">
<expressions xsi:type="mexp:MVariable" xmi:id="_1vg8QF-REemclogVDtTNAg" name="Ea1" valueAsString="0.0" unit="eV"/>
</changeableData>
</options>
<options xmi:id="_J9Kfu4V7EeGtctRo0dX6mA" name="Displays - LED" description="Several chipcs in LCD casings have to be considered several times in the failure rate">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KfvYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_k4otcF-LEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_F-DncF-SEemclogVDtTNAg" name="Ea1" valueAsString="0.65" unit="eV"/>
</options>
<options xmi:id="_J9KfwYV7EeGtctRo0dX6mA" name="Displays (LCD, vacuum florescence)" description="consult manufacturer">
<expressions xsi:type="mexp:MExpression" xmi:id="_lWo4EF-LEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<changeableData xmi:id="_mgkjACPfEemdfMifRXAxMQ" name="Reference junction temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_mgkjASPfEemdfMifRXAxMQ" name="Theta_ref" valueAsString="0" unit="°C"/>
</changeableData>
<changeableData xmi:id="_H668wF-SEemclogVDtTNAg" name="Activation Energy">
<expressions xsi:type="mexp:MVariable" xmi:id="_H668wV-SEemclogVDtTNAg" name="Ea1" valueAsString="0.0" unit="eV"/>
</changeableData>
</options>
<options xmi:id="_J9Kfw4V7EeGtctRo0dX6mA" name="Semiconductor optical amplifier (SOA) - GaAs" description="consult manufacturer">
<expressions xsi:type="mexp:MVariable" xmi:id="_BP2egCPfEemdfMifRXAxMQ" name="Theta_ref" valueAsString="45" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_ltvJcF-LEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_SiRV8F-SEemclogVDtTNAg" name="Ea1" valueAsString="0.6" unit="eV"/>
</options>
<options xmi:id="_OcRJ4F-SEemclogVDtTNAg" name="Semiconductor optical amplifier (SOA) - InP" description="consult manufacturer">
<expressions xsi:type="mexp:MVariable" xmi:id="_OcRJ4V-SEemclogVDtTNAg" name="Theta_ref" valueAsString="45" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_OcRJ4l-SEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_Tdg2MF-SEemclogVDtTNAg" name="Ea1" valueAsString="0.8" unit="eV"/>
</options>
<options xmi:id="_k-mPYCPeEemdfMifRXAxMQ" name="Fibre (EDFA)">
<expressions xsi:type="mexp:MExpression" xmi:id="_mMQ4gF-LEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<changeableData xmi:id="_ndOYgCPfEemdfMifRXAxMQ" name="Reference junction temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_ndOYgSPfEemdfMifRXAxMQ" name="Theta_ref" valueAsString="0" unit="°C"/>
</changeableData>
<changeableData xmi:id="_U9iegF-SEemclogVDtTNAg" name="Activation Energy">
<expressions xsi:type="mexp:MVariable" xmi:id="_U9iegV-SEemclogVDtTNAg" name="Ea1" valueAsString="0.0" unit="eV"/>
</changeableData>
</options>
<options xmi:id="_J9KfxIV7EeGtctRo0dX6mA" name="Modulators (InP, LiNbO3)" description="">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KfxoV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_mt3JsF-LEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<changeableData xmi:id="_hiP8QF-SEemclogVDtTNAg" name="Activation Energy">
<expressions xsi:type="mexp:MVariable" xmi:id="_hiP8QV-SEemclogVDtTNAg" name="Ea1" valueAsString="0.0" unit="eV"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KfzoV7EeGtctRo0dX6mA" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kfz4V7EeGtctRo0dX6mA" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9Kf0IV7EeGtctRo0dX6mA" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kf0YV7EeGtctRo0dX6mA" name="deltaTheta" valueAsString="0" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_wjtGwCPdEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_wjtGwSPdEemdfMifRXAxMQ" name="lambda_ref" valueAsString="30" unit="FIT"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9Kfv4V7EeGtctRo0dX6mA" name="Number of elements">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KfwIV7EeGtctRo0dX6mA" name="amount" valueAsString="1"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9Kf1oV7EeGtctRo0dX6mA" name="Optocouplers and light barriers" description="see Table 27" kind="SUBCATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9Kf14V7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kf2IV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.5" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_69uAoCYkEemuvY1pb5VrOw" name="k_0" valueAsString="8.616e-5" unit="eV/K"/>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9Kf2YV7EeGtctRo0dX6mA" name="Type" kind="TYPE">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9Kf2oV7EeGtctRo0dX6mA" name="Optocouplers" description="">
<options xmi:id="_J9Kf24V7EeGtctRo0dX6mA" name="with bipolar output">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kf3YV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
<options xmi:id="_J9Kf3oV7EeGtctRo0dX6mA" name="with FET output">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kf4IV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="65" unit="°C"/>
</options>
<options xmi:id="_J9Kf4YV7EeGtctRo0dX6mA" name="with subsequent electronics">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kf44V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
<options xmi:id="_J9Kf5IV7EeGtctRo0dX6mA" name="with subsequent power electronics">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kf5oV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="65" unit="°C"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9Kf54V7EeGtctRo0dX6mA" name="Light barriers" description="">
<options xmi:id="_J9Kf6IV7EeGtctRo0dX6mA" name="with diode output/transistor output">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kf6oV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
<options xmi:id="_J9Kf64V7EeGtctRo0dX6mA" name="with subsequent electronics">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kf7YV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
</subDecisions>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9Kf7oV7EeGtctRo0dX6mA" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kf74V7EeGtctRo0dX6mA" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9Kf8IV7EeGtctRo0dX6mA" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kf8YV7EeGtctRo0dX6mA" name="deltaTheta" valueAsString="0" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_wvsUUCPdEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_wvsUUSPdEemdfMifRXAxMQ" name="lambda_ref" valueAsString="30" unit="FIT"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9Kf8oV7EeGtctRo0dX6mA" name="Passive optical components" description="see Table 28" kind="SUBCATEGORY">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9Kf84V7EeGtctRo0dX6mA" name="Type" description="" kind="TYPE">
<options xmi:id="_N2lgECPgEemdfMifRXAxMQ" name="Optical waveguide connector (n-fold)">
<expressions xsi:type="mexp:MVariable" xmi:id="_Y3g24CPgEemdfMifRXAxMQ" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_CqzVsF-MEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_HtdacF-QEemclogVDtTNAg" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_QL0CcGHjEemnvOt3U3Q71g" name="k_0" valueAsString="8.616e-5" unit="eV/K"/>
<changeableData xmi:id="_Fy3jkGHhEemnvOt3U3Q71g" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_Fy3jkWHhEemnvOt3U3Q71g" name="Theta_ambient" valueAsString="40" unit="°C"/>
</changeableData>
<changeableData xmi:id="_Fy3jkmHhEemnvOt3U3Q71g" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_Fy3jk2HhEemnvOt3U3Q71g" name="deltaTheta" valueAsString="0" unit="°C"/>
</changeableData>
</options>
<options xmi:id="_PfpIkCPgEemdfMifRXAxMQ" name="Optical fibre pigtail (one driver and one connector)">
<expressions xsi:type="mexp:MVariable" xmi:id="_Y_5W0CPgEemdfMifRXAxMQ" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_DIEggF-MEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_IzX5oF-QEemclogVDtTNAg" name="Ea1" valueAsString="0.3" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_QoMccGHjEemnvOt3U3Q71g" name="k_0" valueAsString="8.616e-5" unit="eV/K"/>
<changeableData xmi:id="_GKjq0GHhEemnvOt3U3Q71g" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_GKkR4GHhEemnvOt3U3Q71g" name="Theta_ambient" valueAsString="40" unit="°C"/>
</changeableData>
<changeableData xmi:id="_GKkR4WHhEemnvOt3U3Q71g" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_GKkR4mHhEemnvOt3U3Q71g" name="deltaTheta" valueAsString="0" unit="°C"/>
</changeableData>
</options>
<options xmi:id="_J9KgMoV7EeGtctRo0dX6mA" name="Fibre">
<expressions xsi:type="mexp:MVariable" xmi:id="_z7id4CPgEemdfMifRXAxMQ" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_EaJMYF-MEemclogVDtTNAg" expression="lambda = lambda_ref;"/>
</options>
<options xmi:id="_J9KgN4V7EeGtctRo0dX6mA" name="Dispersion compensating fibre (DCF)">
<expressions xsi:type="mexp:MVariable" xmi:id="_0Em6UCPgEemdfMifRXAxMQ" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_HqKysF-MEemclogVDtTNAg" expression="lambda = lambda_ref;"/>
</options>
<options xmi:id="_df3iECPgEemdfMifRXAxMQ" name="Isolators">
<expressions xsi:type="mexp:MVariable" xmi:id="_0ME0QCPgEemdfMifRXAxMQ" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_H3hSMF-MEemclogVDtTNAg" expression="lambda = lambda_ref;"/>
</options>
<options xmi:id="_fCsmwCPgEemdfMifRXAxMQ" name="Circulators">
<expressions xsi:type="mexp:MVariable" xmi:id="_0TBJwCPgEemdfMifRXAxMQ" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_IE8DIF-MEemclogVDtTNAg" expression="lambda = lambda_ref;"/>
</options>
<options xmi:id="_hc6mcCPgEemdfMifRXAxMQ" name="Optical multiplexer, demultiplexer (thin film, arrayed-waveguide grating (AWG))">
<expressions xsi:type="mexp:MVariable" xmi:id="_0abZUCPgEemdfMifRXAxMQ" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_ISSioF-MEemclogVDtTNAg" expression="lambda = lambda_ref;"/>
</options>
<options xmi:id="_J9KgPIV7EeGtctRo0dX6mA" name="Optical attenuators (fixed value, electromechanical)">
<expressions xsi:type="mexp:MVariable" xmi:id="_0jDJ0CPgEemdfMifRXAxMQ" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_I2yW0F-MEemclogVDtTNAg" expression="lambda = lambda_ref;"/>
</options>
<options xmi:id="_J9KgQoV7EeGtctRo0dX6mA" name="Switch (elektromagnetical, MEMs)">
<expressions xsi:type="mexp:MVariable" xmi:id="_0qhq0CPgEemdfMifRXAxMQ" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_JPkDMF-MEemclogVDtTNAg" expression="lambda = lambda_ref;"/>
</options>
<options xmi:id="_J9KgSYV7EeGtctRo0dX6mA" name="Coupler, splitter, filter (thin film, Bragg)">
<expressions xsi:type="mexp:MVariable" xmi:id="_0ytWcCPgEemdfMifRXAxMQ" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_J3rMEF-MEemclogVDtTNAg" expression="lambda = lambda_ref;"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_GKkR42HhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_GKkR5GHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="30" unit="FIT"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9KgUIV7EeGtctRo0dX6mA" name="Transceivers, transponders and optical sub-equipment" description="see Table 29" kind="SUBCATEGORY">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KgVoV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.4" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_7j-IUCYkEemuvY1pb5VrOw" name="k_0" valueAsString="8.616e-5" unit="eV/K"/>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KgUYV7EeGtctRo0dX6mA" name="Type" description="" kind="TYPE">
<options xmi:id="_J9KgUoV7EeGtctRo0dX6mA" name="Transponder - SFF, SFP">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KgVIV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KgVYV7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<changeableData xmi:id="_J9KgV4V7EeGtctRo0dX6mA" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KgWIV7EeGtctRo0dX6mA" name="Theta_ambient" valueAsString="40" unit="°C"/>
</changeableData>
<changeableData xmi:id="_J9KgWYV7EeGtctRo0dX6mA" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KgWoV7EeGtctRo0dX6mA" name="deltaTheta" valueAsString="0" unit="°C"/>
</changeableData>
</options>
<options xmi:id="_J9KgW4V7EeGtctRo0dX6mA" name="Transponder - Xponder / Long haul tuneable" description="consult manufacturer">
<expressions xsi:type="mexp:MExpression" xmi:id="_O7jVoF-MEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<changeableData xmi:id="_M56nACPhEemdfMifRXAxMQ" name="Reference junction temperature ">
<expressions xsi:type="mexp:MVariable" xmi:id="_NLjwoCPhEemdfMifRXAxMQ" name="Theta_ref" valueAsString="40" unit="°C"/>
</changeableData>
<changeableData xmi:id="_V5ms4F-MEemclogVDtTNAg" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_V5ms4V-MEemclogVDtTNAg" name="Theta_ambient" valueAsString="40" unit="°C"/>
</changeableData>
<changeableData xmi:id="_V5ms4l-MEemclogVDtTNAg" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_V5ms41-MEemclogVDtTNAg" name="deltaTheta" valueAsString="0" unit="°C"/>
</changeableData>
</options>
<options xmi:id="_J9KgXYV7EeGtctRo0dX6mA" name="Optical spectrum analyser (OPA, complex / OSA, complex)" description="consult manufacturer">
<expressions xsi:type="mexp:MExpression" xmi:id="_PJttcF-MEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<changeableData xmi:id="_QPW40CPhEemdfMifRXAxMQ" name="Reference junction temperature ">
<expressions xsi:type="mexp:MVariable" xmi:id="_QPW40SPhEemdfMifRXAxMQ" name="Theta_ref" valueAsString="0" unit="°C"/>
</changeableData>
<changeableData xmi:id="_WPDYcF-MEemclogVDtTNAg" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_WPDYcV-MEemclogVDtTNAg" name="Theta_ambient" valueAsString="40" unit="°C"/>
</changeableData>
<changeableData xmi:id="_WPDYcl-MEemclogVDtTNAg" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_WPDYc1-MEemclogVDtTNAg" name="deltaTheta" valueAsString="0" unit="°C"/>
</changeableData>
</options>
<options xmi:id="_J9KgX4V7EeGtctRo0dX6mA" name="Active dispersion compensator" description="consult manufacturer">
<expressions xsi:type="mexp:MExpression" xmi:id="_PWassF-MEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<changeableData xmi:id="_QZRCwCPhEemdfMifRXAxMQ" name="Reference junction temperature ">
<expressions xsi:type="mexp:MVariable" xmi:id="_QZRCwSPhEemdfMifRXAxMQ" name="Theta_ref" valueAsString="0" unit="°C"/>
</changeableData>
<changeableData xmi:id="_WiB-0F-MEemclogVDtTNAg" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_WiB-0V-MEemclogVDtTNAg" name="Theta_ambient" valueAsString="40" unit="°C"/>
</changeableData>
<changeableData xmi:id="_WiB-0l-MEemclogVDtTNAg" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_WiB-01-MEemclogVDtTNAg" name="deltaTheta" valueAsString="0" unit="°C"/>
</changeableData>
</options>
<options xmi:id="_J9KgY4V7EeGtctRo0dX6mA" name="Wavelength selective switch" description="consult manufacturer">
<expressions xsi:type="mexp:MExpression" xmi:id="_PkC5AF-MEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<changeableData xmi:id="_QipoQCPhEemdfMifRXAxMQ" name="Reference junction temperature ">
<expressions xsi:type="mexp:MVariable" xmi:id="_QipoQSPhEemdfMifRXAxMQ" name="Theta_ref" valueAsString="0" unit="°C"/>
</changeableData>
<changeableData xmi:id="_Wx2jgF-MEemclogVDtTNAg" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_Wx2jgV-MEemclogVDtTNAg" name="Theta_ambient" valueAsString="40" unit="°C"/>
</changeableData>
<changeableData xmi:id="_Wx2jgl-MEemclogVDtTNAg" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_Wx2jg1-MEemclogVDtTNAg" name="deltaTheta" valueAsString="0" unit="°C"/>
</changeableData>
</options>
<options xmi:id="_J9KgZIV7EeGtctRo0dX6mA" name="Wavelength blocker" description="consult manufacturer">
<expressions xsi:type="mexp:MExpression" xmi:id="_PwCGkF-MEemclogVDtTNAg" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = exp((Ea1/k_0) * (1/(Theta_ref +273) - 1/(Theta_op +273)));&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;"/>
<changeableData xmi:id="_QyxH4CPhEemdfMifRXAxMQ" name="Reference junction temperature ">
<expressions xsi:type="mexp:MVariable" xmi:id="_QyxH4SPhEemdfMifRXAxMQ" name="Theta_ref" valueAsString="0" unit="°C"/>
</changeableData>
<changeableData xmi:id="_XBm2wF-MEemclogVDtTNAg" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_XBm2wV-MEemclogVDtTNAg" name="Theta_ambient" valueAsString="40" unit="°C"/>
</changeableData>
<changeableData xmi:id="_XBm2wl-MEemclogVDtTNAg" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_XBm2w1-MEemclogVDtTNAg" name="deltaTheta" valueAsString="0" unit="°C"/>
</changeableData>
</options>
<options xmi:id="_Hfj3ICPhEemdfMifRXAxMQ" name="Ground trip current (GTC) interrupter (electro-mechanical) ">
<expressions xsi:type="mexp:MVariable" xmi:id="_ROO74CPhEemdfMifRXAxMQ" name="Theta_ref" valueAsString="40" unit="°C"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_SNMFgF-MEemclogVDtTNAg" expression="lambda = lambda_ref;"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_w61NUCPdEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_w61NUSPdEemdfMifRXAxMQ" name="lambda_ref" valueAsString="30" unit="FIT"/>
</subDecisions>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9Kb84V7EeGtctRo0dX6mA" name="Capacitors (Section 9)" kind="CATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9Kb9IV7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_U * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;Theta_ref = 40;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_8EeNUCYkEemuvY1pb5VrOw" name="k_0" valueAsString="8.616e-5" unit="eV/K"/>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9Kb9YV7EeGtctRo0dX6mA" name="Rated voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb9oV7EeGtctRo0dX6mA" name="U_rat" valueAsString="15" unit="V"/>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9Kb94V7EeGtctRo0dX6mA" name="Type" description="see Table 1" kind="TYPE">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9Kb-IV7EeGtctRo0dX6mA" name="Metal foil">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9Kb-YV7EeGtctRo0dX6mA" expression="pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2) ));"/>
<options xmi:id="_J9Kb-oV7EeGtctRo0dX6mA" name="Polystyrol (KS)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb_IV7EeGtctRo0dX6mA" name="C_2" valueAsString="1.29"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb_YV7EeGtctRo0dX6mA" name="C_3" valueAsString="4"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb_oV7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb_4V7EeGtctRo0dX6mA" name="A" valueAsString="0.999"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcAIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.5" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcAYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="1.59" unit="eV"/>
</options>
<options xmi:id="_J9KcAoV7EeGtctRo0dX6mA" name="Polypropylene (KP)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcBIV7EeGtctRo0dX6mA" name="C_2" valueAsString="1.29"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcBYV7EeGtctRo0dX6mA" name="C_3" valueAsString="4"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcBoV7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcB4V7EeGtctRo0dX6mA" name="A" valueAsString="0.999"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcCIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.5" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcCYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="1.59" unit="eV"/>
</options>
<options xmi:id="_J9KcCoV7EeGtctRo0dX6mA" name="Polycarbonate (KC)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcDIV7EeGtctRo0dX6mA" name="C_2" valueAsString="1.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcDYV7EeGtctRo0dX6mA" name="C_3" valueAsString="4.56"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcDoV7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcD4V7EeGtctRo0dX6mA" name="A" valueAsString="0.998"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcEIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.57" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcEYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="1.63" unit="eV"/>
</options>
<options xmi:id="_J9KcEoV7EeGtctRo0dX6mA" name="Polyethylene terephtalate (KT)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcFIV7EeGtctRo0dX6mA" name="C_2" valueAsString="1.29"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcFYV7EeGtctRo0dX6mA" name="C_3" valueAsString="4"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcFoV7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcF4V7EeGtctRo0dX6mA" name="A" valueAsString="0.999"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcGIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.5" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcGYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="1.59" unit="eV"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KcGoV7EeGtctRo0dX6mA" name="Tantalum electrolytic">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KcG4V7EeGtctRo0dX6mA" expression="pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2) ));"/>
<options xmi:id="_J9KcHIV7EeGtctRo0dX6mA" name="non-solid electrolyte">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcHoV7EeGtctRo0dX6mA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcH4V7EeGtctRo0dX6mA" name="C_3" valueAsString="1.05"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcIIV7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcIYV7EeGtctRo0dX6mA" name="A" valueAsString="0.35"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcIoV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.54" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcI4V7EeGtctRo0dX6mA" name="Ea2" valueAsString="0" unit="eV"/>
</options>
<options xmi:id="_J9KcJIV7EeGtctRo0dX6mA" name="solid electrolyte">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcJoV7EeGtctRo0dX6mA" name="C_2" valueAsString="1.04"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcJ4V7EeGtctRo0dX6mA" name="C_3" valueAsString="9.80"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcKIV7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcKYV7EeGtctRo0dX6mA" name="A" valueAsString="0.961"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcKoV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.27" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcK4V7EeGtctRo0dX6mA" name="Ea2" valueAsString="1.1" unit="eV"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KcLIV7EeGtctRo0dX6mA" name="Metallized film">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KcLYV7EeGtctRo0dX6mA" expression="pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2) ));"/>
<options xmi:id="_J9KcPoV7EeGtctRo0dX6mA" name="Polypropylene (MKP)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcQIV7EeGtctRo0dX6mA" name="C_2" valueAsString="1.07"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcQYV7EeGtctRo0dX6mA" name="C_3" valueAsString="3.45"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcQoV7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcQ4V7EeGtctRo0dX6mA" name="A" valueAsString="0.999"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcRIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.5" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcRYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="1.59" unit="eV"/>
</options>
<options xmi:id="_J9KcNoV7EeGtctRo0dX6mA" name="Polycarbonate (MKC)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcOIV7EeGtctRo0dX6mA" name="C_2" valueAsString="1.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcOYV7EeGtctRo0dX6mA" name="C_3" valueAsString="4.56"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcOoV7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcO4V7EeGtctRo0dX6mA" name="A" valueAsString="0.998"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcPIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.57" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcPYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="1.63" unit="eV"/>
</options>
<options xmi:id="_J9KcLoV7EeGtctRo0dX6mA" name="Polyethylene terephtalate (MKT)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcMIV7EeGtctRo0dX6mA" name="C_2" valueAsString="1.07"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcMYV7EeGtctRo0dX6mA" name="C_3" valueAsString="3.45"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcMoV7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcM4V7EeGtctRo0dX6mA" name="A" valueAsString="0.999"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcNIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.5" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcNYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="1.59" unit="eV"/>
</options>
<options xmi:id="_J9KcRoV7EeGtctRo0dX6mA" name="Acetyl cellulose (MKU)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcSIV7EeGtctRo0dX6mA" name="C_2" valueAsString="1.07"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcSYV7EeGtctRo0dX6mA" name="C_3" valueAsString="3.45"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcSoV7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcS4V7EeGtctRo0dX6mA" name="A" valueAsString="0.999"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcTIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.5" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcTYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="1.59" unit="eV"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KcaIV7EeGtctRo0dX6mA" name="Aluminium electrolytic">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KcaYV7EeGtctRo0dX6mA" expression="pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2) ));"/>
<options xmi:id="_J9KcaoV7EeGtctRo0dX6mA" name="non-solid electrolyte">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcbIV7EeGtctRo0dX6mA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcbYV7EeGtctRo0dX6mA" name="C_3" valueAsString="1.36"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcboV7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.8"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kcb4V7EeGtctRo0dX6mA" name="A" valueAsString="0.87"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KccIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.5" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KccYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.95" unit="eV"/>
</options>
<options xmi:id="_J9KccoV7EeGtctRo0dX6mA" name="solid electrolyte">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcdIV7EeGtctRo0dX6mA" name="C_2" valueAsString="1.9"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcdYV7EeGtctRo0dX6mA" name="C_3" valueAsString="3"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcdoV7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.8"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kcd4V7EeGtctRo0dX6mA" name="A" valueAsString="0.4"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KceIV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.14" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KceYV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0" unit="eV"/>
</options>
</subDecisions>
<options xmi:id="_J9KceoV7EeGtctRo0dX6mA" name="Metallized paper (film) - MP, MKV" description="">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcfIV7EeGtctRo0dX6mA" name="C_2" valueAsString="1.07"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcfYV7EeGtctRo0dX6mA" name="A" valueAsString="0.999"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcfoV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.5" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kcf4V7EeGtctRo0dX6mA" name="Ea2" valueAsString="1.59" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcgIV7EeGtctRo0dX6mA" name="C_3" valueAsString="3.45"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcgYV7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.5"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KcgoV7EeGtctRo0dX6mA" expression="pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2) ));"/>
</options>
<options xmi:id="_J9Kcg4V7EeGtctRo0dX6mA" name="Mica">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KchYV7EeGtctRo0dX6mA" name="C_2" valueAsString="1.12"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KchoV7EeGtctRo0dX6mA" name="C_3" valueAsString="2.98"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kch4V7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KciIV7EeGtctRo0dX6mA" name="A" valueAsString="0.86"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KciYV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.27" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcioV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.84" unit="eV"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_J9Kci4V7EeGtctRo0dX6mA" expression="pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2) ));"/>
</options>
<options xmi:id="_J9KcjIV7EeGtctRo0dX6mA" name="Glass">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcjoV7EeGtctRo0dX6mA" name="C_2" valueAsString="1.11"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kcj4V7EeGtctRo0dX6mA" name="C_3" valueAsString="4.33"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KckIV7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KckYV7EeGtctRo0dX6mA" name="A" valueAsString="0.86"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KckoV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.27" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kck4V7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.84" unit="eV"/>
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KclIV7EeGtctRo0dX6mA" expression="pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2) ));"/>
</options>
<options xmi:id="_JE46cGAfEemclogVDtTNAg" name="Acetyl cellulose" undefined="true">
<expressions xsi:type="mexp:MExpression" xmi:id="_0vWggGAlEemclogVDtTNAg" expression="pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2) ));"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_9C8R4mAmEemclogVDtTNAg" name="U_ref_div_U_rat" valueAsString="0.5"/>
</options>
<options xmi:id="_J_grcGAmEemclogVDtTNAg" name="Ceramic">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KcT4V7EeGtctRo0dX6mA" expression="pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2) ));"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcUoV7EeGtctRo0dX6mA" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcU4V7EeGtctRo0dX6mA" name="C_3" valueAsString="4"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcVIV7EeGtctRo0dX6mA" name="U_ref_div_U_rat" valueAsString="0.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcVYV7EeGtctRo0dX6mA" name="A" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcVoV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.35" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcV4V7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.0" unit="eV"/>
</options>
<options xmi:id="_8FtcUGAgEemclogVDtTNAg" name="Deposited capacitors for hybrid circuits">
<expressions xsi:type="mexp:MExpression" xmi:id="_1EFaYGAlEemclogVDtTNAg" expression="pi_U = exp(C_3 * (pow(U_op/U_rat, C_2) - pow(U_ref_div_U_rat, C_2) ));"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_9SUxsGAmEemclogVDtTNAg" name="C_2" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_9SUxsWAmEemclogVDtTNAg" name="C_3" valueAsString="4"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_9SUxsmAmEemclogVDtTNAg" name="U_ref_div_U_rat" valueAsString="0.5"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_9SUxs2AmEemclogVDtTNAg" name="A" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_9SUxtGAmEemclogVDtTNAg" name="Ea1" valueAsString="0.15" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_9SUxtWAmEemclogVDtTNAg" name="Ea2" valueAsString="0.0" unit="eV"/>
</options>
<options xmi:id="_J9KclYV7EeGtctRo0dX6mA" name="Variable">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9Kcl4V7EeGtctRo0dX6mA" expression="pi_U = 1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcmIV7EeGtctRo0dX6mA" name="A" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcmYV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.15" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcmoV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.0" unit="eV"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9Kcm4V7EeGtctRo0dX6mA" name="Operating voltage">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcnIV7EeGtctRo0dX6mA" name="U_op" valueAsString="5" unit="V"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KcooV7EeGtctRo0dX6mA" name="Ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kco4V7EeGtctRo0dX6mA" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KcpIV7EeGtctRo0dX6mA" name="Increase in temperature due to self-heating of capacitor">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcpYV7EeGtctRo0dX6mA" name="deltaTheta" valueAsString="0" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_0V_IwCPhEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_0V_IwSPhEemdfMifRXAxMQ" name="lambda_ref" valueAsString="30" unit="FIT"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9KbxoV7EeGtctRo0dX6mA" name="Resistors and resistor networks (Section 10)" kind="CATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9Kbx4V7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_T * amount;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;&#xD;&#xA;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbyIV7EeGtctRo0dX6mA" name="A" valueAsString="0.873"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbyYV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.16" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbyoV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0.44" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_8ZzkICYkEemuvY1pb5VrOw" name="k_0" valueAsString="8.616e-5" unit="eV/K"/>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9Kby4V7EeGtctRo0dX6mA" name="Ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KbzIV7EeGtctRo0dX6mA" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KbzYV7EeGtctRo0dX6mA" name="Type" description="see Table 2" kind="TYPE">
<options xmi:id="_OjXboCPiEemdfMifRXAxMQ" name="Carbon film">
<expressions xsi:type="mexp:MVariable" xmi:id="_SkmccCPiEemdfMifRXAxMQ" name="Theta_ref" valueAsString="55" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_iRw44CPiEemdfMifRXAxMQ" name="amount" valueAsString="1"/>
</options>
<options xmi:id="_J9Kb4YV7EeGtctRo0dX6mA" name="Metal film">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb44V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb5IV7EeGtctRo0dX6mA" name="amount" valueAsString="1"/>
</options>
<options xmi:id="_YhuiMCPiEemdfMifRXAxMQ" name="Deposited thin film resistors for hybrid circuits">
<expressions xsi:type="mexp:MVariable" xmi:id="_jevpYCPiEemdfMifRXAxMQ" name="Theta_ref" valueAsString="55" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_jevpYSPiEemdfMifRXAxMQ" name="amount" valueAsString="1"/>
</options>
<options xmi:id="_a1c4UCPiEemdfMifRXAxMQ" name="Deposited thick film resistors for hybrid circuits">
<expressions xsi:type="mexp:MVariable" xmi:id="_joSm8CPiEemdfMifRXAxMQ" name="Theta_ref" valueAsString="55" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_joSm8SPiEemdfMifRXAxMQ" name="amount" valueAsString="1"/>
</options>
<options xmi:id="_b6w6kCPiEemdfMifRXAxMQ" name="Networks (film circuits)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb2YV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
<changeableData xmi:id="_J9Kb2oV7EeGtctRo0dX6mA" name="Number of resistor elements">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb24V7EeGtctRo0dX6mA" name="amount" valueAsString="1"/>
</changeableData>
</options>
<options xmi:id="_J9Kb5YV7EeGtctRo0dX6mA" name="Metal-oxide">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb54V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="85" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb6IV7EeGtctRo0dX6mA" name="amount" valueAsString="1"/>
</options>
<options xmi:id="_J9Kb6YV7EeGtctRo0dX6mA" name="Wire-wound">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb64V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="85" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb7IV7EeGtctRo0dX6mA" name="amount" valueAsString="1"/>
</options>
<options xmi:id="_J9Kb7YV7EeGtctRo0dX6mA" name="Variable">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb74V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb8IV7EeGtctRo0dX6mA" name="amount" valueAsString="1"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9Kb8YV7EeGtctRo0dX6mA" name="Increase in temperature due to self-heating of resistor">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kb8oV7EeGtctRo0dX6mA" name="deltaTheta" valueAsString="0" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_3iFFUCRlEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_3iFFUSRlEemdfMifRXAxMQ" name="lambda_ref" valueAsString="1" unit="FIT"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9KcpoV7EeGtctRo0dX6mA" name="Inductors, transformers and coils (Section 11)" kind="CATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9Kcp4V7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_T;&#xD;&#xA;&#xD;&#xA;pi_T = (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref));&#xD;&#xA;&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_op = Theta_ambient + deltaTheta;&#xD;&#xA;&#xD;&#xA;T_0 = 313;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcqYV7EeGtctRo0dX6mA" name="A" valueAsString="0.996"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcqoV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.06" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcqIV7EeGtctRo0dX6mA" name="Ea2" valueAsString="1.13" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_8zAHQCYkEemuvY1pb5VrOw" name="k_0" valueAsString="8.616e-5" unit="eV/K"/>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9Kcq4V7EeGtctRo0dX6mA" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcrIV7EeGtctRo0dX6mA" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KcrYV7EeGtctRo0dX6mA" name="Type" description="see Table 3" kind="TYPE">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KcroV7EeGtctRo0dX6mA" name="Inductors for EMC applications">
<options xmi:id="_J9Kcr4V7EeGtctRo0dX6mA" name="&lt;= 3A">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcsYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="60" unit="°C"/>
</options>
<options xmi:id="_J9KcsoV7EeGtctRo0dX6mA" name="&gt; 3A">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KctIV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="85" unit="°C"/>
</options>
</subDecisions>
<options xmi:id="_J9KctYV7EeGtctRo0dX6mA" name="Low frequency inductors and transformers (&lt;=25kHz)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kct4V7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
<options xmi:id="_J9KcuIV7EeGtctRo0dX6mA" name="High frequency inductors and transformers (&gt;25kHz)">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcuoV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="55" unit="°C"/>
</options>
<options xmi:id="_J9Kcu4V7EeGtctRo0dX6mA" name="Main transformers and transformers for switched-mode power supplies">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KcvYV7EeGtctRo0dX6mA" name="Theta_ref" valueAsString="85" unit="°C"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KcvoV7EeGtctRo0dX6mA" name="Increase in temperature due to self-heating">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kcv4V7EeGtctRo0dX6mA" name="deltaTheta" valueAsString="0" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_4ma3MCRlEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_4ma3MSRlEemdfMifRXAxMQ" name="lambda_ref" valueAsString="10" unit="FIT"/>
</subDecisions>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_GnjPoCRmEemdfMifRXAxMQ" name="Microwave devices (Section 12)" kind="CATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_ttvA8CRmEemdfMifRXAxMQ" expression="lambda = lambda_ref;"/>
<options xmi:id="_KswKcCRmEemdfMifRXAxMQ" name="Microwave elements">
<changeableData xmi:id="_5abRkCRmEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_5abRkSRmEemdfMifRXAxMQ" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_OZxOwCRmEemdfMifRXAxMQ" name="Coaxial and wave guides">
<changeableData xmi:id="_YSLXgGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_YSLXgWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_OqDGcCRmEemdfMifRXAxMQ" name="Load">
<changeableData xmi:id="_YWwVgGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_YWwVgWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_O_pjACRmEemdfMifRXAxMQ" name="Attenuator fixed">
<changeableData xmi:id="_YaqlIGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_YaqlIWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_O_pjASRmEemdfMifRXAxMQ" name="Attenuator variable">
<changeableData xmi:id="_Ye2hkGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_Ye2hkWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_Pt_2wCRmEemdfMifRXAxMQ" name="Fixed elements">
<changeableData xmi:id="_Yl4WoGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_Yl4WoWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_Pt_2wSRmEemdfMifRXAxMQ" name="Directional couplers">
<changeableData xmi:id="_Yq_gIGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_Yq_gIWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_Pt_2wiRmEemdfMifRXAxMQ" name="Fixed stubs">
<changeableData xmi:id="_YwVTIGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_YwVTIWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_Pt_2wyRmEemdfMifRXAxMQ" name="Cavities">
<changeableData xmi:id="_Y15IkGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_Y15IkWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_QSPMQCRmEemdfMifRXAxMQ" name="Variable elements ">
<changeableData xmi:id="_Y8e4wGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_Y8e4wWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_QSPMQSRmEemdfMifRXAxMQ" name="Tuned stubs">
<changeableData xmi:id="_ZBzdoGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_ZBzdoWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_QSPMQiRmEemdfMifRXAxMQ" name="Tuned cavities">
<changeableData xmi:id="_ZbDrIGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_ZbESMGHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_QSPMQyRmEemdfMifRXAxMQ" name="Ferrite device (transmitter)">
<changeableData xmi:id="_ZfopIGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_ZfopIWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_cLzbQCRmEemdfMifRXAxMQ" name="Ferrite device (receiver)">
<changeableData xmi:id="_ZkrhMGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_ZkrhMWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_cLzbQSRmEemdfMifRXAxMQ" name="RF/microwave passives">
<changeableData xmi:id="_ZptyMGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_ZptyMWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_cLzbQiRmEemdfMifRXAxMQ" name="Filter">
<changeableData xmi:id="_ZvXHMGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_ZvXHMWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_iuWiQCRmEemdfMifRXAxMQ" name="Isolator">
<changeableData xmi:id="_Z0yZwGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_Z0yZwWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_jgaRUCRmEemdfMifRXAxMQ" name="Circulator">
<changeableData xmi:id="_Z6R9wGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_Z6R9wWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_jgaRUSRmEemdfMifRXAxMQ" name="Splitter/combiner">
<changeableData xmi:id="_Z_nwwGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_Z_nwwWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_o1k_MCRmEemdfMifRXAxMQ" name="Synthesizer">
<changeableData xmi:id="_aFCcQGHhEemnvOt3U3Q71g" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_aFCcQWHhEemnvOt3U3Q71g" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KbxYV7EeGtctRo0dX6mA" name="Other Passive Components (Section 13)" description="" kind="CATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KcwYV7EeGtctRo0dX6mA" expression="lambda = lambda_ref;"/>
<options xmi:id="_J9Kcy4V7EeGtctRo0dX6mA" name="Varistors">
<changeableData xmi:id="_2dnswCRnEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KczIV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9KczYV7EeGtctRo0dX6mA" name="PTC thermistors, NTC thermistors">
<changeableData xmi:id="_3sc3YCRnEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KczoV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="5" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kc04V7EeGtctRo0dX6mA" name="Surge arresters">
<changeableData xmi:id="_5W94cCRnEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kc1IV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kc1YV7EeGtctRo0dX6mA" name="Ceramic resonators">
<changeableData xmi:id="_5gzw8CRnEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kc1oV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="5" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kc14V7EeGtctRo0dX6mA" name="Filters">
<changeableData xmi:id="_5o-OcCRnEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kc2IV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kc2YV7EeGtctRo0dX6mA" name="Surface wave filter (SAW), Surface wave oscillators (SAW-oscillators), Voltage controlled oscillators (VCO)">
<changeableData xmi:id="_5whn8CRnEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kc2oV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="40" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kc34V7EeGtctRo0dX6mA" name="Piezoelectric components (transducers and sensors)">
<changeableData xmi:id="_54n0ACRnEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kc4IV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="30" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kc4YV7EeGtctRo0dX6mA" name="Crystals">
<changeableData xmi:id="_6AeIcCRnEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kc4oV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="15" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_YFOK8CRnEemdfMifRXAxMQ" name="Crystal oscillators: XO (clock), VCXO (voltage controlled), TCXO (temperature compensated), OCXO (oven controlled)">
<changeableData xmi:id="_6WrB8CRnEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_-HJp8CRnEemdfMifRXAxMQ" name="lambda_ref" valueAsString="200" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kc44V7EeGtctRo0dX6mA" name="Feed-through capacitors, Feed-through filters">
<changeableData xmi:id="_6gDncCRnEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kc5IV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="5" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kc54V7EeGtctRo0dX6mA" name="Fuses">
<changeableData xmi:id="_6oYdACRnEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kc6IV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="25" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xmi:id="_J9Kc64V7EeGtctRo0dX6mA" name="Electrical connections (Section 14)" kind="CATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_HZjCYCRoEemdfMifRXAxMQ" expression="lambda = lambda_ref * amount;"/>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9Kc7IV7EeGtctRo0dX6mA" name="Type of connection" description="see Table 1" kind="DETAIL">
<options xmi:id="_J9Kc7YV7EeGtctRo0dX6mA" name="Solder (manual, machine)">
<changeableData xmi:id="_AILwwCRsEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kc7oV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="0.5" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kc8YV7EeGtctRo0dX6mA" name="Wire bond for hybrid circuits (Al, Au)">
<changeableData xmi:id="_A0bywCRsEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kc8oV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="0.1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kc9YV7EeGtctRo0dX6mA" name="Wire-wrap (0.05 to 0.5 mm^2)">
<changeableData xmi:id="_A9mV0CRsEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kc9oV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="0.002" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kc94V7EeGtctRo0dX6mA" name="Crimp (manual, machine / 0.05 to 300 mm^2)">
<changeableData xmi:id="_BE_-UCRsEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kc-IV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="0.25" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kc-YV7EeGtctRo0dX6mA" name="Termi-point (0.1 to 0.5 mm^2)">
<changeableData xmi:id="_BNADwCRsEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kc-oV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="0.02" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kc-4V7EeGtctRo0dX6mA" name="Press in (0.3 to 2 mm^2)">
<changeableData xmi:id="_BYN1QCRsEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kc_IV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="0.005" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kc_YV7EeGtctRo0dX6mA" name="Insulation displacement (0.05 to 1 mm^2)">
<changeableData xmi:id="_BgnjUCRsEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kc_oV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="0.25" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kc_4V7EeGtctRo0dX6mA" name="Screw (0.5 to 16 mm^2)">
<changeableData xmi:id="_BpAqUCRsEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdAIV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="0.5" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9KdAYV7EeGtctRo0dX6mA" name="Clamp (elastic force, 0.5 to 16 mm^2)">
<changeableData xmi:id="_By2i0CRsEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdAoV7EeGtctRo0dX6mA" name="lambda_ref" valueAsString="0.5" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KdA4V7EeGtctRo0dX6mA" name="Number of connections">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdBIV7EeGtctRo0dX6mA" name="amount" valueAsString="1"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9KdBYV7EeGtctRo0dX6mA" name="Connectors and sockets (Section 15)" description="" kind="CATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_Hn5AYCRoEemdfMifRXAxMQ" expression="lambda = lambda_ref * amount;"/>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_OcwCkCRsEemdfMifRXAxMQ" name="Component type" kind="TYPE">
<options xmi:id="_QzJ5QCRsEemdfMifRXAxMQ" name="Plug-in contacts that should be inserted without electrical load (gold or comparably corrosion-resistant, silver, tin, others)" description="These also include connectors that can be inserted with a limited electrical load according to the data sheet">
<changeableData xmi:id="_fzlLgCRsEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_nrMoACRsEemdfMifRXAxMQ" name="lambda_ref" valueAsString="10" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_RWFAICRsEemdfMifRXAxMQ" name="Plug-in contacts that are intended to be inserted under electrical load">
<changeableData xmi:id="_f7DFcCRsEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_oF5nACRsEemdfMifRXAxMQ" name="lambda_ref" valueAsString="2" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_RhN5ICRsEemdfMifRXAxMQ" name="Coaxial plugs">
<changeableData xmi:id="_fC9m4CRsEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_hwLbECRsEemdfMifRXAxMQ" name="lambda_ref" valueAsString="3" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KdKIV7EeGtctRo0dX6mA" name="Number of connections">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdKYV7EeGtctRo0dX6mA" name="amount" valueAsString="1"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9KdKoV7EeGtctRo0dX6mA" name="Relays (Section 16)" description="" kind="CATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KdK4V7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_ES * pi_S * pi_T * amount;&#xD;&#xA;&#xD;&#xA;pi_S = ifThenElse(less(S,0.01), 1, ifThenElse(lessEq(S, S_ref), 1, S/S_ref));&#xD;&#xA;&#xD;&#xA;pi_T = ifThenElse(lessEq(Theta_ambient, 40), 1, (A * exp(Ea1 * z) + (1-A) * exp(Ea2 * z)) / (A * exp(Ea1 * z_ref) + (1-A) * exp(Ea2 * z_ref)));&#xD;&#xA;z = (1/k_0) * ((1 / T_0) - (1 / (Theta_op + 273)));&#xD;&#xA;z_ref = (1/k_0) * ((1 / T_0) - (1 / (Theta_ref + 273)));&#xD;&#xA;&#xD;&#xA;Theta_ref = 40;&#xD;&#xA;T_0 = 313;&#xD;&#xA;S_ref = 1;"/>
<expressions xsi:type="mexp:MVariable" xmi:id="__GP8QCYkEemuvY1pb5VrOw" name="k_0" valueAsString="8.616e-5" unit="eV/K"/>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KdLIV7EeGtctRo0dX6mA" name="Mean ambient temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdLYV7EeGtctRo0dX6mA" name="Theta_ambient" valueAsString="40" unit="°C"/>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KdLoV7EeGtctRo0dX6mA" name="Supporting construction" description="see Table 55" kind="DETAIL">
<options xmi:id="_J9KdL4V7EeGtctRo0dX6mA" name="Plastic">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdMIV7EeGtctRo0dX6mA" name="A" valueAsString="1"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdMYV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.175" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdMoV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0" unit="eV"/>
</options>
<options xmi:id="_J9KdM4V7EeGtctRo0dX6mA" name="Metal, glas, ceramic">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdNIV7EeGtctRo0dX6mA" name="A" valueAsString="0.006"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdNYV7EeGtctRo0dX6mA" name="Ea1" valueAsString="0.646" unit="eV"/>
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdNoV7EeGtctRo0dX6mA" name="Ea2" valueAsString="0" unit="eV"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KdQYV7EeGtctRo0dX6mA" name="Type of relay">
<subDecisions xmi:id="_J9KdQoV7EeGtctRo0dX6mA" name="Low duty relays" description="" kind="TYPE">
<subDecisions xsi:type="mexp:MDecisionTable" xmi:id="_J9KdToV7EeGtctRo0dX6mA" name="Electrical stress" description="see Table 51" kind="DETAIL">
<optionSelector xmi:id="_J9KdT4V7EeGtctRo0dX6mA" name="Load">
<values xmi:id="_J9KdUIV7EeGtctRo0dX6mA" name="Resistive load"/>
<values xmi:id="_J9KdUYV7EeGtctRo0dX6mA" name="Capacitive and incandescent lamp load" description="Switch-on current to operating current &lt;= 15"/>
<values xmi:id="_J9KdUoV7EeGtctRo0dX6mA" name="Inductive load"/>
</optionSelector>
<options xmi:id="_J9KdU4V7EeGtctRo0dX6mA" name="Stress region 1">
<values xmi:id="_J9KdVIV7EeGtctRo0dX6mA" name="2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdVYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</values>
<values xmi:id="_J9KdVoV7EeGtctRo0dX6mA" name="2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdV4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</values>
<values xmi:id="_J9KdWIV7EeGtctRo0dX6mA" name="-" undefined="true"/>
</options>
<options xmi:id="_J9KdWYV7EeGtctRo0dX6mA" name="Stress region 2">
<values xmi:id="_J9KdWoV7EeGtctRo0dX6mA" name="1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdW4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="1"/>
</values>
<values xmi:id="_J9KdXIV7EeGtctRo0dX6mA" name="8">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdXYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="8"/>
</values>
<values xmi:id="_J9KdXoV7EeGtctRo0dX6mA" name="8">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdX4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="8"/>
</values>
</options>
<options xmi:id="_J9KdYIV7EeGtctRo0dX6mA" name="Stress region 3">
<values xmi:id="_J9KdYYV7EeGtctRo0dX6mA" name="2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdYoV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</values>
<values xmi:id="_J9KdY4V7EeGtctRo0dX6mA" name="20">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdZIV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="20"/>
</values>
<values xmi:id="_J9KdZYV7EeGtctRo0dX6mA" name="40">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdZoV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="40"/>
</values>
</options>
<options xmi:id="_J9KdZ4V7EeGtctRo0dX6mA" name="Stress region 4">
<values xmi:id="_J9KdaIV7EeGtctRo0dX6mA" name="8">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdaYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="8"/>
</values>
<values xmi:id="_J9KdaoV7EeGtctRo0dX6mA" name="40">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kda4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="40"/>
</values>
<values xmi:id="_J9KdbIV7EeGtctRo0dX6mA" name="-" undefined="true"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_Q_yKkCRtEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_TbXcMCRtEemdfMifRXAxMQ" name="lambda_ref" valueAsString="2" unit="FIT"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9KdhIV7EeGtctRo0dX6mA" name="General purpose relays" description="see Table 53" kind="TYPE">
<subDecisions xsi:type="mexp:MUserData" xmi:id="_hszhgCRtEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_hszhgSRtEemdfMifRXAxMQ" name="lambda_ref" valueAsString="10" unit="FIT"/>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionTable" xmi:id="_J9Kd1IV7EeGtctRo0dX6mA" name="Factor pi_ES for general purpose relays" description="see Table 53">
<optionSelector xmi:id="_J9Kd1YV7EeGtctRo0dX6mA" name="Stress">
<values xmi:id="_J9Kd1oV7EeGtctRo0dX6mA" name="Resistive load DC"/>
<values xmi:id="_J9Kd14V7EeGtctRo0dX6mA" name="Resistive load AC"/>
<values xmi:id="_z-EqIGENEemnvOt3U3Q71g" name="Capacitive and incandescent lamp load DC" description="Maximum peak current (as per data sheet) must not be exceeded"/>
<values xmi:id="_z-EqIWENEemnvOt3U3Q71g" name="Capacitive and incandescent lamp load AC" description="Maximum peak current (as per data sheet) must not be exceeded"/>
<values xmi:id="_J9Kd2oV7EeGtctRo0dX6mA" name="Inductive load DC"/>
<values xmi:id="_J9Kd24V7EeGtctRo0dX6mA" name="Inductive load AC"/>
</optionSelector>
<options xmi:id="_J9Kd3IV7EeGtctRo0dX6mA" name="Stress region 1 (without Au coating)">
<values xmi:id="_J9Kd3YV7EeGtctRo0dX6mA" name="50">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kd3oV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="50"/>
</values>
<values xmi:id="_J9Kd34V7EeGtctRo0dX6mA" name="50">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kd4IV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="50"/>
</values>
<values xmi:id="_J9Kd4YV7EeGtctRo0dX6mA" name="2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kd4oV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</values>
<values xmi:id="_J9Kd44V7EeGtctRo0dX6mA" name="1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kd5IV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="1"/>
</values>
<values xmi:id="_J9Kd5YV7EeGtctRo0dX6mA" name="-" undefined="true"/>
<values xmi:id="_J9Kd5oV7EeGtctRo0dX6mA" name="-" undefined="true"/>
</options>
<options xmi:id="_J9Kd54V7EeGtctRo0dX6mA" name="Stress region 1 (with Au coating)">
<values xmi:id="_J9Kd6IV7EeGtctRo0dX6mA" name="20">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kd6YV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="20"/>
</values>
<values xmi:id="_J9Kd6oV7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kd64V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
<values xmi:id="_J9Kd7IV7EeGtctRo0dX6mA" name="2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kd7YV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</values>
<values xmi:id="_J9Kd7oV7EeGtctRo0dX6mA" name="1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kd74V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="1"/>
</values>
<values xmi:id="_J9Kd8IV7EeGtctRo0dX6mA" name="-" undefined="true"/>
<values xmi:id="_J9Kd8YV7EeGtctRo0dX6mA" name="-" undefined="true"/>
</options>
<options xmi:id="_J9Kd8oV7EeGtctRo0dX6mA" name="Stress region 2">
<values xmi:id="_J9Kd84V7EeGtctRo0dX6mA" name="20">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kd9IV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="20"/>
</values>
<values xmi:id="_J9Kd9YV7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kd9oV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
<values xmi:id="_J9Kd94V7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kd-IV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
<values xmi:id="_J9Kd-YV7EeGtctRo0dX6mA" name="5">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kd-oV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="5"/>
</values>
<values xmi:id="_J9Kd-4V7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kd_IV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
<values xmi:id="_J9Kd_YV7EeGtctRo0dX6mA" name="5">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kd_oV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="5"/>
</values>
</options>
<options xmi:id="_J9Kd_4V7EeGtctRo0dX6mA" name="Stress region 3">
<values xmi:id="_J9KeAIV7EeGtctRo0dX6mA" name="2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeAYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</values>
<values xmi:id="_J9KeAoV7EeGtctRo0dX6mA" name="1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeA4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="1"/>
</values>
<values xmi:id="_J9KeBIV7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeBYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
<values xmi:id="_J9KeBoV7EeGtctRo0dX6mA" name="5">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeB4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="5"/>
</values>
<values xmi:id="_J9KeCIV7EeGtctRo0dX6mA" name="20">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeCYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="20"/>
</values>
<values xmi:id="_J9KeCoV7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeC4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
</options>
<options xmi:id="_J9KeDIV7EeGtctRo0dX6mA" name="Stress region 4">
<values xmi:id="_J9KeDYV7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeDoV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
<values xmi:id="_J9KeD4V7EeGtctRo0dX6mA" name="2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeEIV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</values>
<values xmi:id="_J9KeEYV7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeEoV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
<values xmi:id="_J9KeE4V7EeGtctRo0dX6mA" name="5">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeFIV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="5"/>
</values>
<values xmi:id="_J9KeFYV7EeGtctRo0dX6mA" name="50">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeFoV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="50"/>
</values>
<values xmi:id="_J9KeF4V7EeGtctRo0dX6mA" name="20">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeGIV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="20"/>
</values>
</options>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9KdbYV7EeGtctRo0dX6mA" name="Automotive relays" description="see Table 1c" kind="TYPE">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9Kdd4V7EeGtctRo0dX6mA" name="Contact kind" description="see Table 54">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KdeIV7EeGtctRo0dX6mA" name="Non tungsten-tipped contacts">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KdeYV7EeGtctRo0dX6mA" name="Inductive load">
<options xmi:id="_J9KdeoV7EeGtctRo0dX6mA" name="Stress region 3">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kde4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</options>
<options xmi:id="_J9KdfIV7EeGtctRo0dX6mA" name="Stress region 4">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdfYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="5"/>
</options>
</subDecisions>
<options xmi:id="_J9KdfoV7EeGtctRo0dX6mA" name="Resistive load">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kdf4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="1"/>
</options>
<options xmi:id="_J9KdgIV7EeGtctRo0dX6mA" name="Capacitive and lamp load">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KdgYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</options>
</subDecisions>
<options xmi:id="_J9KdgoV7EeGtctRo0dX6mA" name="Tungsten-tipped contacts">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kdg4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="1"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_dAPEsCRtEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_dAPEsSRtEemdfMifRXAxMQ" name="lambda_ref" valueAsString="1" unit="FIT"/>
</subDecisions>
</subDecisions>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9KeGYV7EeGtctRo0dX6mA" name="Number of contacted contacts">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeGoV7EeGtctRo0dX6mA" name="amount" valueAsString="1"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_SckioCYjEemuvY1pb5VrOw" name="Number of operating cycles per hour">
<expressions xsi:type="mexp:MVariable" xmi:id="_SckioSYjEemuvY1pb5VrOw" name="S" valueAsString="1" unit="1/h"/>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_7OQf4GHhEemnvOt3U3Q71g" name="Actual Temperature">
<expressions xsi:type="mexp:MVariable" xmi:id="_7OQf4WHhEemnvOt3U3Q71g" name="Theta_op" valueAsString="40" unit="°C"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9KeG4V7EeGtctRo0dX6mA" name="Switches and Push-Buttons (Section 17)" description="" kind="CATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9KeHIV7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_ES * amount;"/>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KeHYV7EeGtctRo0dX6mA" name="Type" description="see Table 1" kind="TYPE">
<subDecisions xsi:type="mexp:MDecisionTable" xmi:id="_J9KeHoV7EeGtctRo0dX6mA" name="Switches and push-buttons for light-current applications (low electrical stress)" description="see Table 58">
<optionSelector xmi:id="_J9KeIIV7EeGtctRo0dX6mA" name="Stress">
<values xmi:id="_J9KeIYV7EeGtctRo0dX6mA" name="Resistive load">
<changeableData xmi:id="_UoPCgCRuEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_UoPCgSRuEemdfMifRXAxMQ" name="lambda_ref" valueAsString="2" unit="FIT"/>
</changeableData>
</values>
<values xmi:id="_J9KeIoV7EeGtctRo0dX6mA" name="Capacitive and incandescent lamp load" description="Switch-on current to operating current &lt;= 15">
<changeableData xmi:id="_qWkC0EcuEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_qWkC0UcuEemqr_-H9PXpQA" name="lambda_ref" valueAsString="2" unit="FIT"/>
</changeableData>
</values>
<values xmi:id="_J9KeI4V7EeGtctRo0dX6mA" name="Inductive load">
<changeableData xmi:id="_qi7D0EcuEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_qi7D0UcuEemqr_-H9PXpQA" name="lambda_ref" valueAsString="2" unit="FIT"/>
</changeableData>
</values>
</optionSelector>
<options xmi:id="_J9KeJIV7EeGtctRo0dX6mA" name="Stress region 1">
<values xmi:id="_J9KeJYV7EeGtctRo0dX6mA" name="2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeJoV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</values>
<values xmi:id="_J9KeJ4V7EeGtctRo0dX6mA" name="2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeKIV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</values>
<values xmi:id="_J9KeKYV7EeGtctRo0dX6mA" name="-" undefined="true"/>
</options>
<options xmi:id="_J9KeKoV7EeGtctRo0dX6mA" name="Stress region 2" description="">
<values xmi:id="_J9KeK4V7EeGtctRo0dX6mA" name="1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeLIV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="1"/>
</values>
<values xmi:id="_J9KeLYV7EeGtctRo0dX6mA" name="8">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeLoV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="8"/>
</values>
<values xmi:id="_J9KeL4V7EeGtctRo0dX6mA" name="8">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeMIV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="8"/>
</values>
</options>
<options xmi:id="_J9KeMYV7EeGtctRo0dX6mA" name="Stress region 3">
<values xmi:id="_J9KeMoV7EeGtctRo0dX6mA" name="2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeM4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</values>
<values xmi:id="_J9KeNIV7EeGtctRo0dX6mA" name="20">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeNYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="20"/>
</values>
<values xmi:id="_J9KeNoV7EeGtctRo0dX6mA" name="40">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeN4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="40"/>
</values>
</options>
<options xmi:id="_J9KeOIV7EeGtctRo0dX6mA" name="Stress region 4">
<values xmi:id="_J9KeOYV7EeGtctRo0dX6mA" name="8">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeOoV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="8"/>
</values>
<values xmi:id="_J9KeO4V7EeGtctRo0dX6mA" name="40">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KePIV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="40"/>
</values>
<values xmi:id="_J9KePYV7EeGtctRo0dX6mA" name="-" undefined="true"/>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionTable" xmi:id="_J9KePoV7EeGtctRo0dX6mA" name="Switches and push-buttons for higher load (higher electrical stress)" description="see Table 59">
<optionSelector xmi:id="_J9KeQIV7EeGtctRo0dX6mA" name="Stress">
<values xmi:id="_J9KeQYV7EeGtctRo0dX6mA" name="Resistive load DC">
<changeableData xmi:id="_VlR5kCRuEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_VlR5kSRuEemdfMifRXAxMQ" name="lambda_ref" valueAsString="4" unit="FIT"/>
</changeableData>
</values>
<values xmi:id="_J9KeQoV7EeGtctRo0dX6mA" name="Resistive load AC">
<changeableData xmi:id="_opnY0EcuEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_opnY0UcuEemqr_-H9PXpQA" name="lambda_ref" valueAsString="4" unit="FIT"/>
</changeableData>
</values>
<values xmi:id="_J9KeQ4V7EeGtctRo0dX6mA" name="Capacitive and incandescent lamp load DC" description="Maximum peak current (as per data sheet) must not be exceeded">
<changeableData xmi:id="_o10o0EcuEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_o10o0UcuEemqr_-H9PXpQA" name="lambda_ref" valueAsString="4" unit="FIT"/>
</changeableData>
</values>
<values xmi:id="_J9KeRIV7EeGtctRo0dX6mA" name="Capacitive and incandescent lamp load AC" description="Maximum peak current (as per data sheet) must not be exceeded">
<changeableData xmi:id="_o9TJ0EcuEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_o9TJ0UcuEemqr_-H9PXpQA" name="lambda_ref" valueAsString="4" unit="FIT"/>
</changeableData>
</values>
<values xmi:id="_J9KeRYV7EeGtctRo0dX6mA" name="Inductive load DC">
<changeableData xmi:id="_pEUX0EcuEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_pEUX0UcuEemqr_-H9PXpQA" name="lambda_ref" valueAsString="4" unit="FIT"/>
</changeableData>
</values>
<values xmi:id="_J9KeRoV7EeGtctRo0dX6mA" name="Inductive load AC">
<changeableData xmi:id="_pOY50EcuEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_pOY50UcuEemqr_-H9PXpQA" name="lambda_ref" valueAsString="4" unit="FIT"/>
</changeableData>
</values>
</optionSelector>
<options xmi:id="_J9KeR4V7EeGtctRo0dX6mA" name="Stress region 1 (without Au coating)">
<values xmi:id="_J9KeSIV7EeGtctRo0dX6mA" name="50">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeSYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="50"/>
</values>
<values xmi:id="_J9KeSoV7EeGtctRo0dX6mA" name="50">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeS4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="50"/>
</values>
<values xmi:id="_J9KeTIV7EeGtctRo0dX6mA" name="2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeTYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</values>
<values xmi:id="_J9KeToV7EeGtctRo0dX6mA" name="1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeT4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="1"/>
</values>
<values xmi:id="_J9KeUIV7EeGtctRo0dX6mA" name="-" undefined="true"/>
<values xmi:id="_J9KeUYV7EeGtctRo0dX6mA" name="-" undefined="true"/>
</options>
<options xmi:id="_J9KeUoV7EeGtctRo0dX6mA" name="Stress region 1 (with Au coating)">
<values xmi:id="_J9KeU4V7EeGtctRo0dX6mA" name="20">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeVIV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="20"/>
</values>
<values xmi:id="_J9KeVYV7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeVoV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
<values xmi:id="_J9KeV4V7EeGtctRo0dX6mA" name="2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeWIV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</values>
<values xmi:id="_J9KeWYV7EeGtctRo0dX6mA" name="1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeWoV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="1"/>
</values>
<values xmi:id="_J9KeW4V7EeGtctRo0dX6mA" name="-" undefined="true"/>
<values xmi:id="_J9KeXIV7EeGtctRo0dX6mA" name="-" undefined="true"/>
</options>
<options xmi:id="_J9KeXYV7EeGtctRo0dX6mA" name="Stress region 2">
<values xmi:id="_J9KeXoV7EeGtctRo0dX6mA" name="20">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeX4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="20"/>
</values>
<values xmi:id="_J9KeYIV7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeYYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
<values xmi:id="_J9KeYoV7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeY4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
<values xmi:id="_J9KeZIV7EeGtctRo0dX6mA" name="5">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeZYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="5"/>
</values>
<values xmi:id="_J9KeZoV7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeZ4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
<values xmi:id="_J9KeaIV7EeGtctRo0dX6mA" name="5">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeaYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="5"/>
</values>
</options>
<options xmi:id="_J9KeaoV7EeGtctRo0dX6mA" name="Stress region 3">
<values xmi:id="_J9Kea4V7EeGtctRo0dX6mA" name="2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KebIV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</values>
<values xmi:id="_J9KebYV7EeGtctRo0dX6mA" name="1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeboV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="1"/>
</values>
<values xmi:id="_J9Keb4V7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KecIV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
<values xmi:id="_J9KecYV7EeGtctRo0dX6mA" name="5">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KecoV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="5"/>
</values>
<values xmi:id="_J9Kec4V7EeGtctRo0dX6mA" name="20">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KedIV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="20"/>
</values>
<values xmi:id="_J9KedYV7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KedoV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
</options>
<options xmi:id="_J9Ked4V7EeGtctRo0dX6mA" name="Stress region 4">
<values xmi:id="_J9KeeIV7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeeYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
<values xmi:id="_J9KeeoV7EeGtctRo0dX6mA" name="2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kee4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="2"/>
</values>
<values xmi:id="_J9KefIV7EeGtctRo0dX6mA" name="10">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KefYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="10"/>
</values>
<values xmi:id="_J9KefoV7EeGtctRo0dX6mA" name="5">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Kef4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="5"/>
</values>
<values xmi:id="_J9KegIV7EeGtctRo0dX6mA" name="50">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KegYV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="50"/>
</values>
<values xmi:id="_J9KegoV7EeGtctRo0dX6mA" name="20">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Keg4V7EeGtctRo0dX6mA" name="pi_ES" valueAsString="20"/>
</values>
</options>
</subDecisions>
<options xmi:id="_J9KehIV7EeGtctRo0dX6mA" name="Dipfix switch and encoding switches" description="Electrical stress within the limits of the data sheet">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KehoV7EeGtctRo0dX6mA" name="pi_ES" valueAsString="1"/>
<changeableData xmi:id="_XCXioCRuEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_XCXioSRuEemdfMifRXAxMQ" name="lambda_ref" valueAsString="0.3" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
<subDecisions xsi:type="mexp:MUserData" xmi:id="_J9Kel4V7EeGtctRo0dX6mA" name="Number of contacted contacts">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KemIV7EeGtctRo0dX6mA" name="amount" valueAsString="1"/>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9KemYV7EeGtctRo0dX6mA" name="Signal and Pilot Lamps (Section 18)" description="" kind="CATEGORY">
<expressions xsi:type="mexp:MExpression" xmi:id="_J9Kem4V7EeGtctRo0dX6mA" expression="lambda = lambda_ref * pi_U;"/>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KemoV7EeGtctRo0dX6mA" name="Category" kind="TYPE">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KetIV7EeGtctRo0dX6mA" name="Incandescent lamps" description="see Table 61">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KetYV7EeGtctRo0dX6mA" name="Signal and pilot lamps; railway-signalling lamps; low voltage traffic-light lamps">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KetoV7EeGtctRo0dX6mA" name="Operating voltage / Rated voltage">
<options xmi:id="_J9Ket4V7EeGtctRo0dX6mA" name="0.7">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeuIV7EeGtctRo0dX6mA" name="pi_U" valueAsString="0.02"/>
<changeableData xmi:id="_sajwUEctEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_sajwUUctEemqr_-H9PXpQA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9KeuYV7EeGtctRo0dX6mA" name="0.8">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeuoV7EeGtctRo0dX6mA" name="pi_U" valueAsString="0.1"/>
<changeableData xmi:id="_sjtsUEctEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_sjtsUUctEemqr_-H9PXpQA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Keu4V7EeGtctRo0dX6mA" name="0.85">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KevIV7EeGtctRo0dX6mA" name="pi_U" valueAsString="0.2"/>
<changeableData xmi:id="_srpgUEctEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_srpgUUctEemqr_-H9PXpQA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9KevYV7EeGtctRo0dX6mA" name="0.9">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KevoV7EeGtctRo0dX6mA" name="pi_U" valueAsString="0.3"/>
<changeableData xmi:id="_szlUUEctEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_szlUUUctEemqr_-H9PXpQA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kev4V7EeGtctRo0dX6mA" name="0.95">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KewIV7EeGtctRo0dX6mA" name="pi_U" valueAsString="0.6"/>
<changeableData xmi:id="_s8SkYEctEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_s8SkYUctEemqr_-H9PXpQA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9KewYV7EeGtctRo0dX6mA" name="1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KewoV7EeGtctRo0dX6mA" name="pi_U" valueAsString="1"/>
<changeableData xmi:id="_tE01UEctEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_tE01UUctEemqr_-H9PXpQA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kew4V7EeGtctRo0dX6mA" name="1.05">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KexIV7EeGtctRo0dX6mA" name="pi_U" valueAsString="1.7"/>
<changeableData xmi:id="_tM6aUEctEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_tM6aUUctEemqr_-H9PXpQA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9KexYV7EeGtctRo0dX6mA" name="1.1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KexoV7EeGtctRo0dX6mA" name="pi_U" valueAsString="3"/>
<changeableData xmi:id="_tYNrYEctEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_tYNrYUctEemqr_-H9PXpQA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Kex4V7EeGtctRo0dX6mA" name="1.15">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeyIV7EeGtctRo0dX6mA" name="pi_U" valueAsString="4.5"/>
<changeableData xmi:id="_tf_HUEctEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_tf_HUUctEemqr_-H9PXpQA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9KeyYV7EeGtctRo0dX6mA" name="1.2">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KeyoV7EeGtctRo0dX6mA" name="pi_U" valueAsString="7"/>
<changeableData xmi:id="_tqqtUEctEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_tqqtUUctEemqr_-H9PXpQA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Key4V7EeGtctRo0dX6mA" name="1.3">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9KezIV7EeGtctRo0dX6mA" name="pi_U" valueAsString="17"/>
<changeableData xmi:id="_t0vPUEctEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_t0vPUUctEemqr_-H9PXpQA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KezYV7EeGtctRo0dX6mA" name="Halogen lamps">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9KezoV7EeGtctRo0dX6mA" name="Operating voltage / Rated voltage">
<options xmi:id="_J9Kez4V7EeGtctRo0dX6mA" name="0.95">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ke0IV7EeGtctRo0dX6mA" name="pi_U" valueAsString="0.6"/>
<changeableData xmi:id="_sG3_UEctEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_sG3_UUctEemqr_-H9PXpQA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Ke0YV7EeGtctRo0dX6mA" name="1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ke0oV7EeGtctRo0dX6mA" name="pi_U" valueAsString="1"/>
<changeableData xmi:id="_r_ZeUEctEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_r_ZeUUctEemqr_-H9PXpQA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Ke04V7EeGtctRo0dX6mA" name="1.05">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ke1IV7EeGtctRo0dX6mA" name="pi_U" valueAsString="1.7"/>
<changeableData xmi:id="_r6NcUEctEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_r6NcUUctEemqr_-H9PXpQA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Ke1YV7EeGtctRo0dX6mA" name="1.1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ke1oV7EeGtctRo0dX6mA" name="pi_U" valueAsString="3"/>
<changeableData xmi:id="_qHTUQEctEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_qHT7UEctEemqr_-H9PXpQA" name="lambda_ref" valueAsString="1" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
</subDecisions>
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9Ke14V7EeGtctRo0dX6mA" name="High voltage traffic-light lamps">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9Ke2IV7EeGtctRo0dX6mA" name="Operating voltage / Rated voltage">
<options xmi:id="_J9Ke2YV7EeGtctRo0dX6mA" name="0.95">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ke2oV7EeGtctRo0dX6mA" name="pi_U" valueAsString="0.6"/>
<changeableData xmi:id="_OfWjQCRvEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_OfWjQSRvEemdfMifRXAxMQ" name="lambda_ref" valueAsString="10000" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Ke24V7EeGtctRo0dX6mA" name="1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ke3IV7EeGtctRo0dX6mA" name="pi_U" valueAsString="1"/>
<changeableData xmi:id="_rB2_YEcqEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_rB2_YUcqEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10000" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Ke3YV7EeGtctRo0dX6mA" name="1.05">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ke3oV7EeGtctRo0dX6mA" name="pi_U" valueAsString="2"/>
<changeableData xmi:id="_rLeOYEcqEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_rLeOYUcqEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10000" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Ke34V7EeGtctRo0dX6mA" name="1.1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ke4IV7EeGtctRo0dX6mA" name="pi_U" valueAsString="4"/>
<changeableData xmi:id="_rTuLcEcqEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_rTuLcUcqEemqr_-H9PXpQA" name="lambda_ref" valueAsString="10000" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
</subDecisions>
</subDecisions>
<subDecisions xmi:id="_J9Ke4YV7EeGtctRo0dX6mA" name="Glow lamps" description="see Table 1">
<subDecisions xsi:type="mexp:MDecisionEnum" xmi:id="_J9Ke64V7EeGtctRo0dX6mA" name="Operating voltage / Rated voltage">
<options xmi:id="_J9Ke7IV7EeGtctRo0dX6mA" name="0.9">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ke7YV7EeGtctRo0dX6mA" name="pi_U" valueAsString="0.5"/>
<changeableData xmi:id="_T2r0UCRvEemdfMifRXAxMQ" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_T2r0USRvEemdfMifRXAxMQ" name="lambda_ref" valueAsString="4800" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Ke7oV7EeGtctRo0dX6mA" name="0.95">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ke74V7EeGtctRo0dX6mA" name="pi_U" valueAsString="0.7"/>
<changeableData xmi:id="_tNyrcEcqEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_tNyrcUcqEemqr_-H9PXpQA" name="lambda_ref" valueAsString="4800" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Ke8IV7EeGtctRo0dX6mA" name="1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ke8YV7EeGtctRo0dX6mA" name="pi_U" valueAsString="1"/>
<changeableData xmi:id="_tV3pYEcqEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_tV3pYUcqEemqr_-H9PXpQA" name="lambda_ref" valueAsString="4800" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Ke8oV7EeGtctRo0dX6mA" name="1.05">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ke84V7EeGtctRo0dX6mA" name="pi_U" valueAsString="1.3"/>
<changeableData xmi:id="_tmgtcEcqEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_tmgtcUcqEemqr_-H9PXpQA" name="lambda_ref" valueAsString="4800" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Ke9IV7EeGtctRo0dX6mA" name="1.1">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ke9YV7EeGtctRo0dX6mA" name="pi_U" valueAsString="1.6"/>
<changeableData xmi:id="_tzojcEcqEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_tzojcUcqEemqr_-H9PXpQA" name="lambda_ref" valueAsString="4800" unit="FIT"/>
</changeableData>
</options>
<options xmi:id="_J9Ke9oV7EeGtctRo0dX6mA" name="1.15">
<expressions xsi:type="mexp:MVariable" xmi:id="_J9Ke94V7EeGtctRo0dX6mA" name="pi_U" valueAsString="2.0"/>
<changeableData xmi:id="_t92PYEcqEemqr_-H9PXpQA" name="Failure rate under reference conditions">
<expressions xsi:type="mexp:MVariable" xmi:id="_t92PYUcqEemqr_-H9PXpQA" name="lambda_ref" valueAsString="4800" unit="FIT"/>
</changeableData>
</options>
</subDecisions>
</subDecisions>
</subDecisions>
</subDecisions>
</data>
<evalVariables xmi:id="_J9KhPYV7EeGtctRo0dX6mA" name="lambda" valueAsString="0" unit="FIT"/>
</failureratecatalogs:FailureRateCatalog>