# IGBT Module, Single Switch, 650 A, 1.7 V, 2.25 kW, 125 °C, Module

![Product image](https://novapart.co/image/farnell:2726198/)

**URL**: https://novapart.co/products/FZ400R12KE3HOSA1/igbt-module-single-switch-650-a-17-v-225-kw-125-c
**SKU**: FZ400R12KE3HOSA1
**Manufacturer**: INFINEON
**Category**: Semiconductors - Discretes || IGBTs || IGBT Modules
**Price**: €96.0800
**Stock**: 10+
**Lead Time**: 92 days (indicative)

## Description

Transistor Polarity:N Channel; DC Collector Current:650A; Collector Emitter Saturation Voltage Vce(on):1.7V; Power Dissipation Pd:2.25kW; Collector Emitter Voltage V(br)ceo:1.2kV; Tr

## Specifications

| Parameter | Value |
|---|---|
| Svhc | No SVHC (25-Jun-2025) |
| Product Range | Standard 62mm |
| Igbt Technology | IGBT 3 [Trench/Field Stop] |
| Igbt Termination | Tab |
| Power Dissipation | 2.25kW |
| Igbt Configuration | Single Switch |
| Transistor Mounting | Panel |
| Transistor Polarity | N Channel |
| Dc Collector Current | 650A |
| Power Dissipation Pd | 2.25kW |
| Transistor Case Style | Module |
| Operating Temperature Max | 125°C |
| Junction Temperature Tj Max | 125°C |
| Continuous Collector Current | 650A |
| Collector Emitter Voltage Max | 1.2kV |
| Collector Emitter Voltage V(Br)Ceo | 1.2kV |
| Collector Emitter Saturation Voltage | 1.7V |
| Collector Emitter Saturation Voltage Vce(On) | 1.7V |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:2726198/)

技术信息�/�Technical�Information IGBT-模块IGBT-modules FZ400R12KE3 

**==> picture [86 x 38] intentionally omitted <==**

## **IGBT,�逆变器�/�IGBT,Inverter 最大额定值�/�Maximum�Rated�Values** 

|技术信息/TechnicalInformation<br>FZ400R12KE3<br>IGBT-模块<br>IGBT-modules||
|---|---|
|preparedby:MM<br>approvedby:WR<br>dateofpublication:2013-10-02<br>revision:3.2<br>**IGBT,逆变器/IGBT,Inverter**<br>**最大额定值/MaximumRatedValues**<br>集电极－发射极电压<br>Collector-emittervoltage<br>Tvj= 25°C<br>VCES<br>1200<br>V<br>连续集电极直流电流<br>ContinuousDCcollectorcurrent<br>TC= 80°C, Tvj max= 150°C<br>TC= 25°C, Tvj max= 150°C<br>IC nom<br>IC<br>400<br>650<br>A<br>A<br>集电极重复峰值电流<br>Repetitivepeakcollectorcurrent<br>tP= 1 ms<br>ICRM<br>800<br>A<br>总功率损耗<br>Totalpowerdissipation<br>TC= 25°C, Tvj max= 150<br>Ptot<br>2250<br>W<br>栅极－发射极峰值电压<br>Gate-emitterpeakvoltage<br>VGES<br>+/-20<br>V<br>**特征值/CharacteristicValues**<br>min.<br>typ.<br>max.<br>集电极－发射极饱和电压<br>Collector-emittersaturationvoltage<br>IC= 400 A, VGE= 15 V<br>IC= 400 A, VGE= 15 V<br>VCE sat<br>1,70<br>2,00<br>2,15<br>V<br>V<br>Tvj= 25°C<br>Tvj= 125°C<br>栅极阈值电压<br>Gatethresholdvoltage<br>IC= 16,0 mA, VCE= VGE, Tvj= 25°C<br>VGEth<br>5,0<br>5,8<br>6,5<br>V<br>栅极电荷<br>Gatecharge<br>VGE= -15 V ... +15 V<br>QG<br>3,70<br>µC<br>内部栅极电阻<br>Internalgateresistor<br>Tvj= 25°C<br>RGint<br>1,9<br>Ω<br>输入电容<br>Inputcapacitance<br>f = 1 MHz, Tvj= 25°C, VCE= 25 V, VGE= 0 V<br>Cies<br>28,0<br>nF<br>反向传输电容<br>Reversetransfercapacitance<br>f = 1 MHz, Tvj= 25°C, VCE= 25 V, VGE= 0 V<br>Cres<br>1,10<br>nF<br>集电极-发射极截止电流<br>Collector-emittercut-offcurrent<br>VCE= 1200 V, VGE= 0 V, Tvj= 25°C<br>ICES<br>5,0<br>mA<br>栅极-发射极漏电流<br>Gate-emitterleakagecurrent<br>VCE= 0 V, VGE= 20 V, Tvj= 25°C<br>IGES<br>400<br>nA<br>开通延迟时间(电感负载)<br>Turn-ondelaytime,inductiveload<br>IC= 400 A, VCE= 600 V<br>VGE= ±15 V<br>RGon= 1,8Ω<br>td on<br>0,25<br>0,30<br>µs<br>µs<br>Tvj= 25°C<br>Tvj= 125°C<br>上升时间(电感负载)<br>Risetime,inductiveload<br>IC= 400 A, VCE= 600 V<br>VGE= ±15 V<br>RGon= 1,8Ω<br>tr<br>0,09<br>0,10<br>µs<br>µs<br>Tvj= 25°C<br>Tvj= 125°C<br>关断延迟时间(电感负载)<br>Turn-offdelaytime,inductiveload<br>IC= 400 A, VCE= 600 V<br>VGE= ±15 V<br>RGoff= 1,8Ω<br>td off<br>0,55<br>0,65<br>µs<br>µs<br>Tvj= 25°C<br>Tvj= 125°C<br>下降时间(电感负载)<br>Falltime,inductiveload<br>IC= 400 A, VCE= 600 V<br>VGE= ±15 V<br>RGoff= 1,8Ω<br>tf<br>0,13<br>0,18<br>µs<br>µs<br>Tvj= 25°C<br>Tvj= 125°C<br>开通损耗能量(每脉冲)<br>Turn-onenergylossperpulse<br>IC= 400 A, VCE= 600 V, LS= 85 nH<br>VGE= ±15 V<br>RGon= 1,8Ω<br>Eon<br>33,0<br>mJ<br>mJ<br>Tvj= 25°C<br>Tvj= 125°C<br>关断损耗能量(每脉冲）<br>Turn-offenergylossperpulse<br>IC= 400 A, VCE= 600 V, LS= 85 nH<br>VGE= ±15 V<br>RGoff= 1,8Ω<br>Eoff<br>59,0<br>mJ<br>mJ<br>Tvj= 25°C<br>Tvj= 125°C<br>短路数据<br>SCdata<br>VGE ≤15 V, VCC= 900 V<br>VCEmax= VCES-LsCE·di/dt<br>ISC<br>1600<br>A<br>Tvj= 125°C<br>tP ≤10 µs,<br>结－外壳热阻<br>Thermalresistance,junctiontocase<br>每个IGBT/perIGBT<br>RthJC<br>0,055 K/W<br>在开关状态下温度<br>Temperatureunderswitchingconditions<br>Tvj op<br>-40<br>125<br>°C||



|preparedby:MM|dateofpublication:2013-10-02|
|---|---|
|approvedby:WR|revision:3.2|



1 

技术信息�/�Technical�Information IGBT-模块IGBT-modules FZ400R12KE3 

**==> picture [86 x 38] intentionally omitted <==**

## **二极管,逆变器�/�Diode,�Inverter 最大额定值�/�Maximum�Rated�Values** 

|反向重复峰值电压<br>Repetitivepeakreversevoltage|Tvj= 25°C|VRRM|1200|1200|1200|V|
|---|---|---|---|---|---|---|
|连续正向直流电流<br>ContinuousDCforwardcurrent||IF|400|||A|
|正向重复峰值电流<br>Repetitivepeakforwardcurrent|tP= 1 ms|IFRM|800|||A|
|I2t-值<br>I²t-value|VR= 0 V, tP= 10 ms, Tvj= 125°C|I²t|31000<br>|||A²s|
|**特征值/CharacteristicValues**|||min.|typ.|max.||
|正向电压<br>Forwardvoltage|IF= 400 A, VGE= 0 V<br>IF= 400 A, VGE= 0 V<br>Tvj= 25°C<br>Tvj= 125°C|VF||1,65<br>1,65|2,15|V<br>V|
|反向恢复峰值电流<br>Peakreverserecoverycurrent|IF= 400 A, - diF/dt = 4000 A/µs (Tvj=125°C)<br>VR= 600 V<br>VGE= -15 V<br>Tvj= 25°C<br>Tvj= 125°C|IRM||280<br>360||A<br>A|
|恢复电荷<br>Recoveredcharge|IF= 400 A, - diF/dt = 4000 A/µs (Tvj=125°C)<br>VR= 600 V<br>VGE= -15 V<br>Tvj= 25°C<br>Tvj= 125°C|Qr||40,0<br>75,0||µC<br>µC|
|反向恢复损耗（每脉冲）<br>Reverserecoveryenergy|IF= 400 A, - diF/dt = 4000 A/µs (Tvj=125°C)<br>VR= 600 V<br>VGE= -15 V<br>Tvj= 25°C<br>Tvj= 125°C|Erec||18,0<br>34,0||mJ<br>mJ|
|结－外壳热阻<br>Thermalresistance,junctiontocase|每个二极管/perdiode|RthJC|||0,125|K/W|
|在开关状态下温度<br>Temperatureunderswitchingconditions||Tvj op|-40||125|°C|



prepared�by:�MM approved�by:�WR 

date�of�publication:�2013-10-02 revision:�3.2 

2 

IGBT-模块 IGBT-modules 

## FZ400R12KE3 

|#R_<br>| Module||||||
|---|---|---|---|---|---|
|绝缘测试电压<br>模块基板材料<br>内部绝缘<br>~~Isolation test voltage~~<br>~~Material of module baseplate ~~<br>Internal isolation|RMS, f = 50 Hz, t = 1 min.<br>~~ee ~~<br> ~~ee ~~<br>BAM (class 1, IEC 61140)<br>basic insulation (class 1, IEC 61140)|VISOL<br> ~~ee~~<br> ~~ee~~||2,5<br>Cu<br>Al2O3|kV|
|爬电距离<br>Creepage distance|im-BEA /terminaltoheatsink<br>imF-Ym /terminal to terminal|||20,0|mm|
|电气间隙<br>Clearance<br>相对电痕指数<br>~~Comperative tracking index~~|im-BEA /terminal toheatsink<br>im F-Ym / terminal to terminal<br>~~ee~~|CTI<br>~~ee~~|min.|11,0<br>> 425<br>typ.<br>max.<br>~~ee~~|mm|
|外壳－散热器热阻<br>Thermal resistance, case to heatsink|Paste<br>grease<br>#3-SER /permodule<br>= 1 W/(m‘k)/<br>= 1 W/(m-k)|RthCH||0,01|K/W|
|杂散电感,模块||LsCE||16|nH|
|模块引线电阻,端子-芯片<br>储存温度<br>模块安装的安装扭距<br>terminals ~~- chip~~<br>~~Storage temperature~~<br>Mounting torque for modul mounting|TC<br>=<br>°<br>HN<br>ij<br>~~25°C, STFA/ per switch~~<br>~~ee ~~<br>HeeM6ARSEAR VAY AyAEAET<br>Screw M6<br>- Mounting according to valid application note|RCC'+EE'<br>0,50<br>Tstg<br>-40<br>125<br>M<br>3,00<br>-<br>6,00<br>~~tt ff~~<br> ~~ee ee~~|||mΩ<br>°C<br>Nm|
|端子联接扭距<br>Terminal connection torque|BeeM4AHEAD AVAY OV EAETR<br>Screw M4<br>- Mounting<br>according to valid application note<br>theeM6MIB<br>SAT ee<br>Screw M6<br>- Mounting according to valid application note|M|1,1<br>2,5|-<br>-<br>2,0<br>5,0|Nm<br>Nm|
|重量<br>Weight||G||340|g|



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## IGBT-模块 IGBT-modules 

## FZ400R12KE3 

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IC =f(V CE) IC =f(V CE)<br>VGE =15V Tvj = 125°C<br>800 a | 7 800 es | 0<br>Tvj = 25°C VGE = 19V<br>Tvj = 125°C VGE = 17V<br>700 700 VGE = 15V<br>EJ fy , |) IF Lee /<br>/ VGE = 13V ji / 2<br>VGE = 11V<br>600 / 600 VGE = 9V hi / co<br>/<br>500 500 :<br>et tt AA7 , | |) OL e ye : e7, 1<br>400 400<br>//<br>/ a<br>300 300<br>200 200<br>100 100<br>pit<br>0 0<br>| i tT | | LA<br>0,0 0,5 1,0 1,5 2,0 2,5 3,0 3,5 0,0 0,5 1,0 1,5 2,0 2,5 3,0 3,5 4,0 4,5 5,0<br>VCE [V] VCE [V]<br>feaistt IGBT, Ses (BB) FFHIRE IGBT, HSS ( FAB)<br>transfer characteristic IGBT,Inverter(typical) switching losses IGBT,Inverter (typical)<br>IC =f(V GE) Eon =f(l),E C off =f(I C)<br>VCE =20V VGE =415V,R Gon =18 Ω ,R Goff +=18 Ω ,V CE =600V<br>800 120<br>Tvj = 25°C Eon, Tvj = 125°C<br>Tvj = 125°C Eoff, Tvj = 125°C<br>700<br>100<br>600<br>80<br>500<br>400 60<br>300<br>40<br>200<br>20<br>100<br>0 0<br>ple | | | a<br>5 6 7 8 9 10 11 12 0 100 200 300 400 500 600 700 800<br>VGE [V] IC [A]<br> [A]  [A]<br>IC IC<br> [A]<br>IC E [mJ]<br>**----- End of picture text -----**<br>


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IGBT-模块 IGBT-modules 

## FZ400R12KE3 

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Eon =f(R),E G off =f(R G) ZthJC = f(t)<br>VGE =+15V,1 C =400A,V CE =600V<br>240 LC] 0,1 PtTTT<br>Eon, Tvj = 125°C | ZthJC : IGBT PET TT<br>Eoff, Tvj = 125°C H— TTT<br>fl S O E ee<br>200160 PLL Ey} Py yf lyZ|“aayJ COEUl ooo PT ay I Eo SELECam Con| i  eloTll<br>120 0,01<br>a<br>a a en |<br>Savana/ Pt TY7ETT eeTT<br>80 7 PAN<br>ee ee AT O CCIM CCIE CE T<br>40 ) PPE<br>i:    1    2    3    4<br>ri[K/W]:   0,001042    0,003132   0,027707   0,023119<br>τ i[s]:    0,00001187   0,002364   0,02601    0,06499<br>a e | ocoooocllPAT VT|<br>0 0,001<br>0 3 6 9 12 15 18 21 0,001 0,01 0,1 1 10<br>RG [ Ω ] t [s]<br>RRRSLFK IGBT, #8 ( RBSOA ) TEM EIStt iB ss ( HB)<br>reverse bias safe operating area IGBT,Inverter (RBSOA) forward characteristic of Diode, Inverter (typical)<br>IC CE) IF F)<br>VGE SVR Goff =1.8 Ω ,T vj =125°C a<br>900 800<br>IC, Modul Tvj = 25°C<br>800 IC, Chip ye Tvj = 125°C<br>EJ ttt) 700 Ee<br>700<br>600<br>600<br>500<br>500<br>400<br>400<br>Se neeeerenee<br>300<br>300<br>200<br>200<br>CeCe HHA<br>ee 100 eee ee<br>100<br>ee<br>0 0<br>e eeee<br>0 200 400 600 800 1000 1200 1400 0,0 0,2 0,4 0,6 0,8 1,0 1,2 1,4 1,6 1,8 2,0 2,2 2,4<br>VCE  [V] VF [V]<br> [K/W]<br>E [mJ]<br>thJC<br>Z<br> [A]  [A]<br>IC IF<br>**----- End of picture text -----**<br>


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IGBT-模块<br>IGBT-modules<br>**----- End of picture text -----**<br>


## FZ400R12KE3 

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**----- Start of picture text -----**<br>
Erec =f(I F) Erec =f(R G)<br>RGon t'5 Ω ,V CE =600V IF = 400A, V CE = 600 V<br>50 ss 40 as<br>Erec, Tvj = 125°C Erec, Tvj = 125°C<br>35<br>40 anos ——<br>30<br>25<br>30<br>20<br>20 A) SRSSEcE<br>15<br>L Pt |eR<br>10<br>10<br>5<br>0 0<br>0 100 200 300 400 500 600 700 800 0 3 6 9 12 15 18 21<br>IF [A] RG [ Ω ]<br>RA MS eee<br>transient thermal impedance Diode, Inverter<br>ZthJC =f (t)<br>1<br>ZthJC : Diode<br>oo o<br>rT TT T T TT<br>a |<br>|<br>0,1 Senie e ammntiiil<br>a<br>PT TTZe<br>rT TTTT<br>|<br>tT<br>0,01 201 (RE<br>Pt<br>a<br>Poeee<br>rT TT TT TT<br>ee pe<br>i:    1    2    3    4<br>Si ri[K/W]:   0,00284    0,00853   0,07568   0,06295    || |<br>Morro τ i[s]:    0,00001187   0,02364    o 0,02601    m 0,06499<br>0,001<br>0,001 0,01 0,1 1 10<br>t [s]<br>E [mJ] E [mJ]<br> [K/W]<br>thJC<br>Z<br>**----- End of picture text -----**<br>


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## 技术信息�/�Technical�Information 

> IGBT-模块IGBT-modules FZ400R12KE3 

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IGBT-模块 IGBT-modules 

## FZ400R12KE3 

## **使用条件和条款** 

使用条件和条款 

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## Links

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- [Request a quote for this part](https://novapart.co/quote/)
- [Supplier page](https://es.farnell.com/infineon/fz400r12ke3hosa1/transistor-igbt-module-1-2kv-650a/dp/2726198)
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