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FF400R12KT3HOSA1 PDF预览

FF400R12KT3HOSA1

更新时间: 2024-11-25 14:50:15
品牌 Logo 应用领域
英飞凌 - INFINEON 局域网功率控制晶体管
页数 文件大小 规格书
8页 394K
描述
Insulated Gate Bipolar Transistor, 580A I(C), 1200V V(BR)CES, N-Channel, MODULE-7

FF400R12KT3HOSA1 技术参数

是否无铅:不含铅是否Rohs认证:符合
生命周期:Active零件包装代码:MODULE
包装说明:FLANGE MOUNT, R-XUFM-X7针数:7
Reach Compliance Code:compliantECCN代码:EAR99
Factory Lead Time:14 weeks风险等级:5.52
Is Samacsys:N外壳连接:ISOLATED
最大集电极电流 (IC):580 A集电极-发射极最大电压:1200 V
配置:SERIES CONNECTED, CENTER TAP, 2 ELEMENTS WITH BUILT-IN DIODEJESD-30 代码:R-XUFM-X7
元件数量:2端子数量:7
最高工作温度:150 °C封装主体材料:UNSPECIFIED
封装形状:RECTANGULAR封装形式:FLANGE MOUNT
峰值回流温度(摄氏度):NOT SPECIFIED极性/信道类型:N-CHANNEL
认证状态:Not Qualified表面贴装:NO
端子形式:UNSPECIFIED端子位置:UPPER
处于峰值回流温度下的最长时间:NOT SPECIFIED晶体管应用:POWER CONTROL
晶体管元件材料:SILICON标称断开时间 (toff):680 ns
标称接通时间 (ton):215 nsBase Number Matches:1

FF400R12KT3HOSA1 数据手册

 浏览型号FF400R12KT3HOSA1的Datasheet PDF文件第2页浏览型号FF400R12KT3HOSA1的Datasheet PDF文件第3页浏览型号FF400R12KT3HOSA1的Datasheet PDF文件第4页浏览型号FF400R12KT3HOSA1的Datasheet PDF文件第5页浏览型号FF400R12KT3HOSA1的Datasheet PDF文件第6页浏览型号FF400R12KT3HOSA1的Datasheet PDF文件第7页 
TechnischeꢀInformationꢀ/ꢀTechnicalꢀInformation  
IGBT-Module  
IGBT-modules  
FF400R12KT3  
62mmꢀC-SerienꢀModulꢀmitꢀschnellemꢀTrench/FeldstopꢀIGBT3ꢀundꢀEmitterꢀControlledꢀHighꢀEfficiencyꢀDiodeꢀ  
62mmꢀC-seriesꢀmoduleꢀwithꢀfastꢀtrench/fieldstopꢀIGBT3ꢀandꢀEmitterꢀControlledꢀHighꢀEfficiencyꢀdiodeꢀ  
IGBT,Wechselrichterꢀ/ꢀIGBT,Inverter  
HöchstzulässigeꢀWerteꢀ/ꢀMaximumꢀRatedꢀValues  
Kollektor-Emitter-Sperrspannung  
Tvj = 25°C  
VCES  
1200  
V
Collector-emitterꢀvoltage  
Kollektor-Dauergleichstrom  
ContinuousꢀDCꢀcollectorꢀcurrent  
TC = 80°C, Tvj max = 150°C  
TC = 25°C, Tvj max = 150°C  
IC nom  
IC  
400  
580  
A
A
PeriodischerꢀKollektor-Spitzenstrom  
Repetitiveꢀpeakꢀcollectorꢀcurrent  
tP = 1 ms  
ICRM  
Ptot  
800  
2000  
+/-20  
A
Gesamt-Verlustleistung  
Totalꢀpowerꢀdissipation  
TC = 25°C, Tvj max = 150  
W  
Gate-Emitter-Spitzenspannung  
Gate-emitterꢀpeakꢀvoltage  
VGES  
V
CharakteristischeꢀWerteꢀ/ꢀCharacteristicꢀValues  
min. typ. max.  
Kollektor-Emitter-Sättigungsspannung  
Collector-emitterꢀsaturationꢀvoltage  
IC = 400 A, VGE = 15 V  
IC = 400 A, VGE = 15 V  
Tvj = 25°C  
Tvj = 125°C  
1,70 2,15  
1,90  
V
V
VCE sat  
VGEth  
QG  
Gate-Schwellenspannung  
Gateꢀthresholdꢀvoltage  
IC = 16,0 mA, VCE = VGE, Tvj = 25°C  
VGE = -15 V ... +15 V  
5,0  
5,8  
3,70  
1,9  
28,0  
1,10  
6,5  
V
µC  
Gateladung  
Gateꢀcharge  
InternerꢀGatewiderstand  
Internalꢀgateꢀresistor  
Tvj = 25°C  
RGint  
Cies  
Eingangskapazität  
Inputꢀcapacitance  
f = 1 MHz, Tvj = 25°C, VCE = 25 V, VGE = 0 V  
f = 1 MHz, Tvj = 25°C, VCE = 25 V, VGE = 0 V  
VCE = 1200 V, VGE = 0 V, Tvj = 25°C  
VCE = 0 V, VGE = 20 V, Tvj = 25°C  
nF  
nF  
Rückwirkungskapazität  
Reverseꢀtransferꢀcapacitance  
Cres  
ICES  
IGES  
td on  
Kollektor-Emitter-Reststrom  
Collector-emitterꢀcut-offꢀcurrent  
5,0 mA  
Gate-Emitter-Reststrom  
Gate-emitterꢀleakageꢀcurrent  
400 nA  
µs  
Einschaltverzögerungszeit,ꢀinduktiveꢀLast  
Turn-onꢀdelayꢀtime,ꢀinductiveꢀload  
IC = 400 A, VCE = 600 V  
VGE = ±15 V  
RGon = 1,8 Ω  
Tvj = 25°C  
Tvj = 125°C  
0,16  
0,17  
µs  
Anstiegszeit,ꢀinduktiveꢀLast  
Riseꢀtime,ꢀinductiveꢀload  
IC = 400 A, VCE = 600 V  
VGE = ±15 V  
RGon = 1,8 Ω  
Tvj = 25°C  
Tvj = 125°C  
0,04  
0,045  
µs  
µs  
tr  
td off  
tf  
Abschaltverzögerungszeit,ꢀinduktiveꢀLast  
Turn-offꢀdelayꢀtime,ꢀinductiveꢀload  
IC = 400 A, VCE = 600 V  
VGE = ±15 V  
RGoff = 1,8 Ω  
Tvj = 25°C  
Tvj = 125°C  
0,45  
0,52  
µs  
µs  
Fallzeit,ꢀinduktiveꢀLast  
Fallꢀtime,ꢀinductiveꢀload  
IC = 400 A, VCE = 600 V  
VGE = ±15 V  
RGoff = 1,8 Ω  
Tvj = 25°C  
Tvj = 125°C  
0,10  
0,16  
µs  
µs  
EinschaltverlustenergieꢀproꢀPuls  
Turn-onꢀenergyꢀlossꢀperꢀpulse  
IC = 400 A, VCE = 600 V, LS = 30 nH  
VGE = ±15 V, di/dt = 8000 A/µs  
RGon = 1,8 Ω  
Tvj = 25°C  
Tvj = 125°C  
18,0  
28,0  
mJ  
mJ  
Eon  
Eoff  
AbschaltverlustenergieꢀproꢀPuls  
Turn-offꢀenergyꢀlossꢀperꢀpulse  
IC = 400 A, VCE = 600 V, LS = 30 nH  
VGE = ±15 V, du/dt = 4500 V/µs  
RGoff = 1,8 Ω  
Tvj = 25°C  
Tvj = 125°C  
30,0  
45,0  
mJ  
mJ  
Kurzschlußverhalten  
SCꢀdata  
VGE 15 V, VCC = 900 V  
VCEmax = VCES -LsCE ·di/dt  
ISC  
tP 10 µs, Tvj = 125°C  
1600  
A
Wärmewiderstand,ꢀChipꢀbisꢀGehäuse  
Thermalꢀresistance,ꢀjunctionꢀtoꢀcase  
proꢀIGBTꢀ/ꢀperꢀIGBT  
RthJC  
RthCH  
Tvj op  
0,062 K/W  
K/W  
Wärmewiderstand,ꢀGehäuseꢀbisꢀKühlkörper proꢀIGBTꢀ/ꢀperꢀIGBT  
Thermalꢀresistance,ꢀcaseꢀtoꢀheatsink  
0,03  
λ
Pasteꢀ=ꢀ1ꢀW/(m·K)ꢀꢀꢀ/ꢀꢀꢀꢀλgreaseꢀ=ꢀ1ꢀW/(m·K)  
TemperaturꢀimꢀSchaltbetrieb  
Temperatureꢀunderꢀswitchingꢀconditions  
-40  
125  
°C  
preparedꢀby:ꢀMK  
approvedꢀby:ꢀWR  
dateꢀofꢀpublication:ꢀ2013-10-03  
revision:ꢀ3.0  
1

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