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    semikron skiip 24 nab 125 t 12

    Abstract: SEMIKRON SKIIP 20 NAB 12 T 17 skiip 24 nab 125 t 12 skiip 22 nab 125 t 12 Semikron skiip 22 nab 12 semikron skiip 22 nab SEMIKRON SKIIP 22 NAB 12 T 17 semikron skiip 22 nab 12 I T 45 SKIIP 24 NAB 125 semikron skiip 20 nab 12 I T
    Text: SKiiP 22 NAB 12 - SKiiP 22 NAB 12 I Absolute Maximum Ratings Symbol Conditions 1 Values Units 1200 ± 20 23 / 15 46 / 30 24 / 17 48 / 34 V V A A A A 1500 25 700 2400 – 40 . . . + 150 – 40 . . . + 125 2500 V A A A2s °C °C V Inverter & Chopper VCES VGES


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    semikron skiip 24 nab 125 t 12

    Abstract: skiip 24 nab 125 t 12 Semikron skiip 22 nab 12 Semikron skiip 24 nab SEMIKRON SKIIP 20 NAB 12 T 17 SKIIP 24 NAB 125 SEMIKRON SKIIP 20 NAB 12 T 17 datasheet Semikron skiip 22 nab nab 12 t 34 skiip 22 nab 125 t 12
    Text: SKiiP 22 NAB 12 - SKiiP 22 NAB 12 I Absolute Maximum Ratings Symbol Conditions 1 Values Units 1200 ± 20 23 / 15 46 / 30 24 / 17 48 / 34 V V A A A A 1500 25 700 2400 – 40 . . . + 150 – 40 . . . + 125 2500 V A A A2s °C °C V Inverter & Chopper VCES VGES


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    skiip 31 nab 125 t 12

    Abstract: SKiiP 31 NAB 12 semikron skiip 32 Semikron skiip 31 nab 12 semikron skiip nab 06 semikron skiip 32 nab 12 T 7 semikron skiip 32 nab 12 semikron skiip 32 nab 125 semikron skiip nab SKiiP 31 NAB 12 T 16
    Text: SKiiP 32 NAB 06 Absolute Maximum Ratings 3 Symbol Inverter VCES VGES IC ICM IF = –IC IFM = –ICM Conditions 1) Values Units 600 ± 20 75 / 50 150 / 100 75 / 50 150 / 100 V V A A A A 800 25 370 680 – 40 . . . + 150 – 40 . . . + 125 2500 V A A A2s °C


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    PDF Characini0607 skiip 31 nab 125 t 12 SKiiP 31 NAB 12 semikron skiip 32 Semikron skiip 31 nab 12 semikron skiip nab 06 semikron skiip 32 nab 12 T 7 semikron skiip 32 nab 12 semikron skiip 32 nab 125 semikron skiip nab SKiiP 31 NAB 12 T 16

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    Abstract: No abstract text available
    Text: SKiiP 34NAB12T4V1 Absolute Maximum Ratings Symbol Conditions Values Unit Inverter - IGBT VCES IC IC MiniSKiiP 3 Tj = 25 °C Tj = 150 °C Tj = 175 °C 1200 V Ts = 25 °C 47 A Ts = 70 °C 36 A Ts = 25 °C 52 A Ts = 70 °C ICnom ICRM ICRM = 3 x ICnom tpsc 105


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    PDF 34NAB12T4V1

    semikron skiip 24 nab 125 t 12

    Abstract: miniskiip 29 skiip 32 nab 12 t 18 skiip 32 ac skiip 32 nab 125 t 12
    Text: SKiiP 34NAB12T4V1 Absolute Maximum Ratings Symbol Conditions Values Unit Inverter - IGBT VCES IC IC MiniSKiiP 3 ICRM VGES Tj IC • Trench 4 IGBT´s • Robust and soft freewheeling diodes in CAL technology • Highly reliable spring contacts for electrical connections


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    PDF 34NAB12T4V1 34NAB12T4V1 semikron skiip 24 nab 125 t 12 miniskiip 29 skiip 32 nab 12 t 18 skiip 32 ac skiip 32 nab 125 t 12

    semikron skiip 24 nab 125 t 12

    Abstract: SEMIKRON SKIIP 20 NAB 12 T 17 semikron skiip 32 nab 12 t 7 skiip 24 nab 125 t 12 SEMIKRON SKIIP 22 nab 06 21nab12 SEMIKRON SKIIP 22 NAB 12 T 17 semikron skiip 21 nab 12 Semikron skiip 24 nab SKIIP 24 NAB 12
    Text: SKiiP 21 NAB 12 - SKiiP 21 NAB 12 I Absolute Maximum Ratings Symbol Conditions 1 Inverter VCES VGES IC ICM IF = –IC IFM = –ICM Chopper see SKiiP 22 NAB 12) Theatsink = 25 / 80 °C tp < 1 ms; Theatsink = 25 / 80 °C Theatsink = 25 / 80 °C tp < 1 ms; Theatsink = 25 / 80 °C


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    semikron skiip 24 nab 125 t 12

    Abstract: 22 neb 063 Semikron skiip 10 neb 063 SEMIKRON SKIIP 20 NAB 12 T 17 Semikron skiip 11 neb 063 skiip neb 063 t semikron skiip neb skiip 11 neb 063 t m1 rectifier semikron skiip 21 nab 063 T 40
    Text: SKiiP 11 NAB 06 Absolute Maximum Ratings Symbol Inverter VCES VGES IC ICM IF = –IC IFM = –ICM Conditions 1 Values Units Theatsink = 25 / 80 °C tp < 1 ms; Theatsink = 25 / 80 °C Theatsink = 25 / 80 °C tp < 1 ms; Theatsink = 25 / 80 °C 600 ± 20 17 / 12


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    PDF Mini0607 semikron skiip 24 nab 125 t 12 22 neb 063 Semikron skiip 10 neb 063 SEMIKRON SKIIP 20 NAB 12 T 17 Semikron skiip 11 neb 063 skiip neb 063 t semikron skiip neb skiip 11 neb 063 t m1 rectifier semikron skiip 21 nab 063 T 40

    Semikron skiip 11 neb 063

    Abstract: SEMIKRON SKIIP 20 NAB 12 T 17 semikron skiip 24 nab 125 t 12 semikron skiip 21 nab 063 T 40 skiip 11 neb 063 t Semikron skiip 10 neb 063 SKiiP11 Semikron skiip 22 neb 063 MJ045 22 neb 063
    Text: SKiiP 11 NAB 06 Absolute Maximum Ratings Symbol Inverter VCES VGES IC ICM IF = –IC IFM = –ICM Conditions 1 Values Units Theatsink = 25 / 80 °C tp < 1 ms; Theatsink = 25 / 80 °C Theatsink = 25 / 80 °C tp < 1 ms; Theatsink = 25 / 80 °C 600 ± 20 17 / 12


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    PDF Mini0607 Semikron skiip 11 neb 063 SEMIKRON SKIIP 20 NAB 12 T 17 semikron skiip 24 nab 125 t 12 semikron skiip 21 nab 063 T 40 skiip 11 neb 063 t Semikron skiip 10 neb 063 SKiiP11 Semikron skiip 22 neb 063 MJ045 22 neb 063

    semikron skiip 81 AN 15 T

    Abstract: 12NAB12T4 semikron skiip 24 nab 125 t 12 skiip nab 125 SKIIP12NAB12T4V1
    Text: SKiiP 12NAB12T4V1 Absolute Maximum Ratings Symbol Conditions Values Unit Inverter - IGBT VCES IC IC MiniSKiiP 1 ICRM VGES Tj IC • Trench 4 IGBT´s • Robust and soft freewheeling diodes in CAL technology • Highly reliable spring contacts for electrical connections


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    PDF 12NAB12T4V1 12NAB12T4V1 semikron skiip 81 AN 15 T 12NAB12T4 semikron skiip 24 nab 125 t 12 skiip nab 125 SKIIP12NAB12T4V1

    semikron skiip 24 nab 125 t 12

    Abstract: semikron skiip 31 nab 125 t 12 Semikron skiip 31 nab 12 T 10 skiip nab 125 skiip 31 nab 125 t 12 semikron skiip 83 AC 12 it skiip 24 nab 125 t 12
    Text: SKiiP 11NAB12T4V1 Absolute Maximum Ratings Symbol Conditions Values Unit Inverter - IGBT VCES IC IC MiniSKiiP 1 ICRM VGES Tj IC • Trench 4 IGBT´s • Robust and soft freewheeling diodes in CAL technology • Highly reliable spring contacts for electrical connections


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    PDF 11NAB12T4V1 11NAB12T4V1 semikron skiip 24 nab 125 t 12 semikron skiip 31 nab 125 t 12 Semikron skiip 31 nab 12 T 10 skiip nab 125 skiip 31 nab 125 t 12 semikron skiip 83 AC 12 it skiip 24 nab 125 t 12

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    Abstract: No abstract text available
    Text: SKiiP 10NAB12T4V1 Absolute Maximum Ratings Symbol Conditions Values Unit Inverter - IGBT VCES IC IC MiniSKiiP 1 Tj = 25 °C Tj = 150 °C Tj = 175 °C 1200 V Ts = 25 °C 6 A Ts = 70 °C 6 A Ts = 25 °C 6 A Ts = 70 °C ICnom ICRM ICRM = 3 x ICnom VGES tpsc


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    PDF 10NAB12T4V1 E63532

    skiip nab 125

    Abstract: miniskiip 29
    Text: SKiiP 10NAB12T4V1 Absolute Maximum Ratings Symbol Conditions Values Unit Inverter - IGBT VCES IC IC MiniSKiiP 1 ICRM VGES Tj IC • Trench 4 IGBT´s • Robust and soft freewheeling diodes in CAL technology • Highly reliable spring contacts for electrical connections


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    PDF 10NAB12T4V1 10NAB12T4V1 skiip nab 125 miniskiip 29

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    Abstract: No abstract text available
    Text: SKiiP 12NAB12T4V1 Absolute Maximum Ratings Symbol Conditions Values Unit Inverter - IGBT VCES IC IC MiniSKiiP 1 Tj = 25 °C Tj = 150 °C Tj = 175 °C 1200 V Ts = 25 °C 18 A Ts = 70 °C 18 A Ts = 25 °C 18 A Ts = 70 °C ICnom ICRM ICRM = 3 x ICnom tpsc 45


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    PDF 12NAB12T4V1

    Untitled

    Abstract: No abstract text available
    Text: SKiiP 11NAB12T4V1 Absolute Maximum Ratings Symbol Conditions Values Unit Inverter - IGBT VCES IC IC MiniSKiiP 1 Tj = 25 °C Tj = 150 °C Tj = 175 °C 1200 V Ts = 25 °C 12 A Ts = 70 °C 12 A Ts = 25 °C 12 A Ts = 70 °C 12 A 8 A 24 A -20 . 20 V 10 µs


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    PDF 11NAB12T4V1

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    Abstract: No abstract text available
    Text: SKiiP 24NAB12T4V1 Absolute Maximum Ratings Symbol Conditions Values Unit Inverter - IGBT VCES IC IC MiniSKiiP 2 Tj = 25 °C Tj = 150 °C Tj = 175 °C 1200 V Ts = 25 °C 43 A Ts = 70 °C 33 A Ts = 25 °C 48 A Ts = 70 °C ICnom ICRM ICRM = 3 x ICnom tpsc 105


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    PDF 24NAB12T4V1

    semikron skiip 31 nab 12 T 18

    Abstract: No abstract text available
    Text: SKHI 61 R . Absolute Maximum Ratings Symbol Conditions L*, '4,1> B*1.-@2 ,6/+-6> I3,4. 7/@3-1 B*1.-@2 &4.,4. ,2-C )46623. &4.,4. -B26-@2 )46623. EL- ; ¥< U$H %-WQ 7]/.)=/3@ 562^423)> E$J? S _3MH $*112).*6 2+/.26 B*1.-@2 72372 -)6*77 .=2 IJKL E5*6 FTZZ9(IJKL7H


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    PDF 43A26B 6/B26 A4127 /3B26 A6/B27N semikron skiip 31 nab 12 T 18

    SKiip 83 EC 125 T1

    Abstract: SKiiP 82 AC 12 T1 SKiiP 81 AN 15 T1 semikron SKHI 22 SPICE MODEL semikron skiip 32 nab 12 T7 SKiip 83 EC 12 1 T1 SKiiP 24 NAB 063 T12 skiip 83 ac 128 BUZ78 equivalent SKIIP 81 AC 12 I T1
    Text: 0 Betriebsweise von Leistungshalbleitern Betriebsweise von Leistungshalbleitern 0.1 Elementare Schaltvorgänge Leistungshalbleiter arbeiten bis auf wenige Sonderanwendungen im Schalterbetrieb. Daraus resultieren grundlegende Prinzipien und Funktionsweisen, die in allen leistungselektronischen


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