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SKM400GM12T4

SKM400GM12T4

  • 厂商:

    SEMIKRON

  • 封装:

  • 描述:

    SKM400GM12T4 - Fast IGBT4 Modules - Semikron International

  • 数据手册
  • 价格&库存
SKM400GM12T4 数据手册
SKM400GM12T4 Absolute Maximum Ratings Symbol IGBT VCES IC ICnom ICRM ICRM = 3xICnom VCC = 800 V VGE ≤ 15 V VCES ≤ 1200 V VGES tpsc Tj Inverse diode IF SKM400GM12T4 Conditions Values 1200 Unit V A A A A V µs °C A A A A A °C A °C V Tj = 175 °C Tc = 25 °C Tc = 80 °C 618 475 400 1200 -20 ... 20 SEMITRANS® 3 Fast IGBT4 Modules Tj = 150 °C 10 -40 ... 175 Tj = 175 °C Tc = 25 °C Tc = 80 °C 440 329 400 1200 1980 -40 ... 175 500 -40 ... 125 IFnom Features • VCE(sat) with positive temperature coefficient • High short circuit capability, self limiting to 6 x Icnom • Fast & soft inverse CAL diodes • Large clearance (10 mm) and creepage distances (20 mm) • Isolated copper baseplate using DBC Technology (Direct Copper Bonding) IFRM IFSM Tj Module It(RMS) Tstg Visol IFRM = 3xIFnom tp = 10 ms, sin 180°, Tj = 25 °C AC sinus 50Hz, t = 1 min 4000 Characteristics Symbol Conditions IC = 400 A VGE = 15 V chiplevel Tj = 25 °C Tj = 150 °C Tj = 25 °C Tj = 150 °C rCE VGE(th) ICES Cies Coes Cres QG RGint td(on) tr Eon td(off) tf Eoff Rth(j-c) VGE = 15 V Tj = 25 °C Tj = 150 °C 5 Tj = 25 °C Tj = 150 °C f = 1 MHz f = 1 MHz f = 1 MHz 24.6 1.62 1.38 2260 1.9 Tj = 150 °C Tj = 150 °C Tj = 150 °C Tj = 150 °C Tj = 150 °C Tj = 150 °C 220 47 33 505 78 42 0.072 min. typ. 1.8 2.2 0.8 0.7 2.5 3.8 5.8 0.1 max. 2.05 2.4 0.9 0.8 2.9 4.0 6.5 0.3 Unit V V V V mΩ mΩ V mA mA nF nF nF nC Ω ns ns mJ ns ns mJ K/W Typical Applications • Matrix Inverter IGBT VCE(sat) VCE0 Remarks • Case temperature limited to Tc = 125°C max, recomm. Top = -40 ... +150°C, product rel. results valid for Tj = 150° VGE=VCE, IC = 15.2 mA VGE = 0 V VCE = 1200 V VCE = 25 V VGE = 0 V VGE = - 8 V...+ 15 V Tj = 25 °C VCC = 600 V IC = 400 A VGE = ±15 V RG on = 1 Ω RG off = 1 Ω di/dton = 9700 A/µs di/dtoff = 4300 A/µs per IGBT GM © by SEMIKRON Rev. 0 – 22.06.2009 1 SKM400GM12T4 Characteristics Symbol Conditions Tj = 25 °C Tj = 150 °C Tj = 25 °C Tj = 150 °C rF Tj = 25 °C Tj = 150 °C IF = 400 A Tj = 150 °C di/dtoff = 8800 A/µs T = 150 °C j VGE = ±15 V Tj = 150 °C VCC = 600 V per diode min. typ. 2.2 2.15 1.3 0.9 2.3 3.1 450 68 30.5 max. 2.52 2.47 1.5 1.1 2.5 3.4 Unit V V V V mΩ mΩ A µC mJ Inverse diode VF = VEC IF = 400 A VGE = 0 V chip VF0 SEMITRANS® 3 Fast IGBT4 Modules SKM400GM12T4 IRRM Qrr Err Rth(j-c) Module LCE RCC'+EE' 0.14 15 20 K/W nH mΩ mΩ Features • VCE(sat) with positive temperature coefficient • High short circuit capability, self limiting to 6 x Icnom • Fast & soft inverse CAL diodes • Large clearance (10 mm) and creepage distances (20 mm) • Isolated copper baseplate using DBC Technology (Direct Copper Bonding) Rth(c-s) Ms Mt w terminal-chip per module to heat sink M6 TC = 25 °C TC = 125 °C 3 to terminals M6 2.5 0.25 0.5 0.02 0.038 5 5 325 K/W Nm Nm Nm g Typical Applications • Matrix Inverter Remarks • Case temperature limited to Tc = 125°C max, recomm. Top = -40 ... +150°C, product rel. results valid for Tj = 150° GM 2 Rev. 0 – 22.06.2009 © by SEMIKRON SKM400GM12T4 Fig. 1: Typ. output characteristic, inclusive RCC'+ EE' Fig. 2: Rated current vs. temperature IC = f (TC) Fig. 3: Typ. turn-on /-off energy = f (IC) Fig. 4: Typ. turn-on /-off energy = f (RG) Fig. 5: Typ. transfer characteristic Fig. 6: Typ. gate charge characteristic © by SEMIKRON Rev. 0 – 22.06.2009 3 SKM400GM12T4 Fig. 7: Typ. switching times vs. IC Fig. 8: Typ. switching times vs. gate resistor RG Fig. 9: Transient thermal impedance Fig. 10: CAL diode forward characteristic Fig. 11: CAL diode peak reverse recovery current Fig. 12: Typ. CAL diode peak reverse recovery charge 4 Rev. 0 – 22.06.2009 © by SEMIKRON SKM400GM12T4 Semitrans 3 GM This is an electrostatic discharge sensitive device (ESDS), international standard IEC 60747-1, Chapter IX. This technical information specifies semiconductor devices but promises no characteristics. No warranty or guarantee expressed or implied is made regarding delivery, performance or suitability. © by SEMIKRON Rev. 0 – 22.06.2009 5
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