80-M006PNB006SA-K614C VINCOTECH | Alldatasheet

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80-M006PNB006SA-K614C;80-M006PNB006SA01-K614D preliminary datasheet MiniSkiip 0 600V/6A

  • Solderless interconnection
  • Trench Fieldstop IGBT's for low saturation losses
  • Optional 2- and 3-leg rectifier
  • Industrial Drives
  • Embedded Drives 80-M006PNB006SA01-K614D, 2-leg rectifier 80-M006PNB006SA-K614C, 3-leg rectifier Tj=25°C, unless otherwise specified Parameter Symbol Value Unit Repetitive peak reverse voltage VRRM 1600 V Th=80°C 25 Tc=80°C 25 Th=80°C 38 Tc=80°C 58 Maximum Junction Temperature Tjmax 150 °C Inverter Transistor Th=80°C 10 Tc=80°C 10 Th=80°C 31 Tc=80°C 48 tSC Tj≤150°C 6 μs VCC VGE=15V 360 V W A V °C175 VCE IC VGE ICpulse Tjmax A 600 A V Tj=Tjmax Tj=Tjmax VCE ≤ 1200V, Tj ≤ Top max tp limited by Tjmax Collector-emitter break down voltage DC collector current Repetitive peak collector current Power dissipation per IGBT Maximum Junction Temperature Short circuit ratings Turn off safe operating area T j=Tjmax tp=10ms Tj=Tjmax Ptot 220 A Features Miniskiip0 housing Target Applications Schematic DC forward current Surge forward current Tj=25°C 240 Types I2t-value Maximum Ratings IFAV A2s IFSM Condition Input Rectifier Diode A WPower dissipation per Diode I2t Ptot Gate-emitter peak voltage ±20 copyright Vincotech 1 Revision: 1

80-M006PNB006SA-K614C;80-M006PNB006SA01-K614D preliminary datasheet Tj=25°C, unless otherwise specified Parameter Symbol Value Unit Maximum Ratings Condition Inverter Diode Th=80°C 10 Tc=80°C 10 Th=80°C 26 Tc=80°C 40 Thermal Properties Insulation Properties Vis t=2s DC voltage 4000 V min 12,7 mm min 12,7 mm 600 Tjmax IFRM Ptot V Maximum Junction Temperature Peak Repetitive Reverse Voltage Repetitive peak forward current Power dissipation per Diode W 175 °C Tj=Tjmax A IF VRRM Tj=25°C A Tj=Tjmax tp limited by Tjmax DC forward current Storage temperature Tstg -40…+125 °C Clearance Insulation voltage Creepage distance TopOperation temperature under switching condition -40…+(Tjmax - 25) copyright Vincotech 2 Revision: 1

80-M006PNB006SA-K614C;80-M006PNB006SA01-K614D preliminary datasheet Parameter Symbol Unit VGE [V] or VGS [V] Vr [V] or VCE [V] or VDS [V] IC [A] or IF [A] or ID [A] Tj Min Typ Max Tj=25°C 1,43 1,64 Tj=125°C 1,44 Tj=25°C 0,92 Tj=125°C 0,79 Tj=25°C 20,29 Tj=125°C 26,11 Tj=25°C 0,05 Tj=125°C Thermal resistance chip to heatsink per chip RthJH Thermal grease thickness≤50um λ = 1 W/mK 1,83 K/W Tj=25°C 5 5,8 6,5 Tj=150°C Tj=25°C 1,24 1,59 2,04 Tj=150°C 1,84 Tj=25°C 0,0004 Tj=150°C Tj=25°C 300 Tj=150°C Tj=25°C 105 Tj=150°C 102,4 Tj=25°C 21,8 Tj=150°C 27,8 Tj=25°C 142,2 Tj=150°C 163,6 Tj=25°C 102,7 Tj=150°C 132,4 Tj=25°C 0,15 Tj=150°C 0,22 Tj=25°C 0,15 Tj=150°C 0,19 Thermal resistance chip to heatsink per chip RthJH Thermal grease thickness≤50um λ = 1 W/mK 3,03 K/W Tj=25°C 1,42 Tj=150°C 1,36 Tj=25°C 3,92 Tj=150°C 5,82 Tj=25°C 182,7 Tj=150°C 288,1 Tj=25°C 0,32 Tj=150°C 0,77 di(rec)max Tj=25°C 45 /dt Tj=150°C 57 Tj=25°C 0,06 Tj=150°C 0,16 Thermal resistance chip to heatsink per chip RthJH Thermal grease thickness≤50um λ = 1 W/mK 3,64 K/W R25=1000 Ω Tr=25°C -3 3 R100=1670 Ω Tr=100°C -2 2 7,635*10-3Tr=25°C EVincotech NTC Reference B-value Tol. % 1/K A-value B(25/50) Tol. % 368 V Ω1000 ±15 Erec VCE(sat) ICES Crss Qrr trr IRRM VF QGate Eon Eoff td(on) Coss tr td(off) Rgint Input capacitance tf Output capacitance Turn-off energy loss per pulse Integrated Gate resistor Inverter Transistor Gate emitter threshold voltage Collector-emitter saturation voltage Collector-emitter cut-off current incl. Diode Fall time ValueConditions Characteristic Values Forward voltage Threshold voltage (for power loss calc. only) Slope resistance (for power loss calc. only) V F Vto rt Input Rectifier Diode V V mΩ mAReverse current Ir μC A/μs Rgoff=64 Ω f=1MHz Rgon=64 Ω Turn-on energy loss per pulse Reverse recovered charge Inverter Diode Peak reverse recovery current Reverse transfer capacitance Diode forward voltage Gate charge Cies Turn-off delay time Peak rate of fall of recovery current IGES VGE(th) Reverse recovery time Turn-on delay time Rise time Gate-emitter leakage current ±15 Reverse recovered energy VCE=VGE 600 480 6300 300 % /K0,76 R100 R100 Ω1670 Rated resistance R Temperature coefficient Deviation of R ΔR/R 1600 Thermistor Rgon=64 Ω 0,00009 mWs Tr=25°C Tr=25°C V ns A nC nA V mA mWs ns pF Ω Tj=25°C Tj=25°C copyright Vincotech 3 Revision: 1

80-M006PNB006SA-K614C;80-M006PNB006SA01-K614D preliminary datasheet Figure 1 Thermistor Thermistor Typical PTC characteristic Equation of PTC resistance temperature dependency as a function of temperature RT = f(T) Thermistor PTC-typical temperature characteristic 500 1000 1500 2000 2500 3000 25 45 65 85 105 125 T (°C) R/Ω copyright Vincotech 12 Revision: 1

80-M006PNB006SA-K614C;80-M006PNB006SA01-K614D preliminary datasheet Figure 9 Output inverter FWD Figure 10 Output inverter FWD Turn-on Switching Waveforms & definition of tQrr Turn-on Switching Waveforms & definition of tErec (tQrr = integrating time for Qrr)( tErec= integrating time for Erec) Id (100%) = 6A Prec (100%) = 1,80 kW Qrr (100%) = 0,78 μC Erec (100%) = 0,16 mJ tQrr = 1,00 μs tErec = 1,00 μs Switching Definitions Output Inverter tQrr -150 -100 -50 100 150 Id Qrr time(us) -20 100 120 time(us) Prec Erec tErec copyright Vincotech 15 Revision: 1

80-M006PNB006SA-K614C;80-M006PNB006SA01-K614D preliminary datasheet Version Ordering Code in DataMatrix as in packaging barcode as 2-leg rectifier 80-M006PNB006SA01-K614D K614D K614D 3-leg rectifier 80-M006PNB006SA-K614C K614C K614C for K61x-Dxx types for K61x-Cxx types Outline Pinout Ordering Code & Marking Ordering Code and Marking - Outline - Pinout copyright Vincotech 16 Revision: 1

80-M006PNB006SA-K614C;80-M006PNB006SA01-K614D preliminary datasheet PRODUCT STATUS DEFINITIONS Formative or In Design First Production Full Production DISCLAIMER LIFE SUPPORT POLICY As used herein: The information given in this datasheet describes the type of component and does not represent assured characteristics. For tested values please contact Vincotech.Vincotech reserves the right to make changes without further notice to any products herein to improve reliability, function or design. Vincotech does not assume any liability arising out of the application or use of any product or circuit described herein; neither does it convey any license under its patent rights, nor the rights of others. Vincotech products are not authorised for use as critical components in life support devices or systems without the express written approval of Vincotech. 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, or (c) whose failure to perform when properly used in accordance with instructions for use provided in labelling can be reasonably expected to result in significant injury to the user. 2. A critical component is any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. Target Product StatusDatasheet Status Definition This datasheet contains the design specifications for product development. Specifications may change in any manner without notice. The data contained is exclusively intended for technically trained staff. Preliminary This datasheet contains preliminary data, and supplementary data may be published at a later date. Vincotech reserves the right to make changes at any time without notice in order to improve design. The data contained is exclusively intended for technically trained staff. Final This datasheet contains final specifications. Vincotech reserves the right to make changes at any time without notice in order to improve design. The data contained is exclusively intended for technically trained staff. copyright Vincotech 17 Revision: 1