技术信息/TechnicalInformation IGBT-模块 IGBT-modules FD300R06KE3 62mmC-SerienModulmitTrench/FeldstopIGBT3undEmitterControlled3Diode 62mmC-Serienmodulewithtrench/fieldstopIGBT3andEmitterControlled3diode IGBT,制动-斩波器/IGBT,Brake-Chopper 最大额定值/MaximumRatedValues 初步数据 PreliminaryData 集电极-发射极电压 Collector-emittervoltage Tvj = 25°C VCES 600 V 连续集电极直流电流 ContinuousDCcollectorcurrent TC = 70°C, Tvj max = 175°C TC = 25°C, Tvj max = 175°C IC nom IC 300 400 集电极重复峰值电流 Repetitivepeakcollectorcurrent tP = 1 ms ICRM 600 A 总功率损耗 Totalpowerdissipation TC = 25°C, Tvj max = 175°C Ptot 940 W 栅极-发射极峰值电压 Gate-emitterpeakvoltage VGES +/-20 V 特征值/CharacteristicValues 集电极-发射极饱和电压 Collector-emittersaturationvoltage min. IC = 300 A, VGE = 15 V IC = 300 A, VGE = 15 V IC = 300 A, VGE = 15 V Tvj = 25°C Tvj = 125°C Tvj = 150°C 栅极阈值电压 Gatethresholdvoltage IC = 12,0 mA, VCE = VGE, Tvj = 25°C 栅极电荷 Gatecharge VCE sat A A typ. max. 1,45 1,60 1,70 1,90 V V V VGEth 4,9 5,8 6,5 V VGE = -15 V ... +15 V QG 3,20 µC 内部栅极电阻 Internalgateresistor Tvj = 25°C RGint 1,0 Ω 输入电容 Inputcapacitance f = 1 MHz, Tvj = 25°C, VCE = 25 V, VGE = 0 V Cies 19,0 nF 反向传输电容 Reversetransfercapacitance f = 1 MHz, Tvj = 25°C, VCE = 25 V, VGE = 0 V Cres 0,57 nF 集电极-发射极截止电流 Collector-emittercut-offcurrent VCE = 600 V, VGE = 0 V, Tvj = 25°C ICES 5,0 mA 栅极-发射极漏电流 Gate-emitterleakagecurrent VCE = 0 V, VGE = 20 V, Tvj = 25°C IGES 400 nA td on 0,11 0,12 0,13 µs µs µs tr 0,05 0,06 0,06 µs µs µs td off 0,49 0,52 0,53 µs µs µs tf 0,05 0,07 0,07 µs µs µs 开通延迟时间(电感负载) Turn-ondelaytime,inductiveload IC = 300 A, VCE = 300 V VGE = ±15 V RGon = 2,4 Ω Tvj = 25°C Tvj = 125°C Tvj = 150°C 上升时间(电感负载) Risetime,inductiveload IC = 300 A, VCE = 300 V VGE = ±15 V RGon = 2,4 Ω Tvj = 25°C Tvj = 125°C Tvj = 150°C 关断延迟时间(电感负载) Turn-offdelaytime,inductiveload IC = 300 A, VCE = 300 V VGE = ±15 V RGoff = 2,4 Ω Tvj = 25°C Tvj = 125°C Tvj = 150°C 下降时间(电感负载) Falltime,inductiveload IC = 300 A, VCE = 300 V VGE = ±15 V RGoff = 2,4 Ω Tvj = 25°C Tvj = 125°C Tvj = 150°C 开通损耗能量(每脉冲) Turn-onenergylossperpulse IC = 300 A, VCE = 300 V, LS = 30 nH VGE = ±15 V RGon = 2,4 Ω Tvj = 25°C Tvj = 125°C Tvj = 150°C Eon 3,10 3,30 mJ mJ mJ 关断损耗能量(每脉冲) Turn-offenergylossperpulse IC = 300 A, VCE = 300 V, LS = 30 nH VGE = ±15 V RGoff = 2,4 Ω Tvj = 25°C Tvj = 125°C Tvj = 150°C Eoff 12,0 12,5 mJ mJ mJ 短路数据 SCdata VGE ≤ 15 V, VCC = 360 V VCEmax = VCES -LsCE ·di/dt tP ≤ 8 µs, Tvj = 25°C tP ≤ 6 µs, Tvj = 150°C ISC 2100 1500 A A 结-外壳热阻 Thermalresistance,junctiontocase 每个IGBT/perIGBT RthJC 外壳-散热器热阻 Thermalresistance,casetoheatsink 每个IGBT/perIGBT λPaste=1W/(m·K)/λgrease=1W/(m·K) RthCH 0,017 在开关状态下温度 Temperatureunderswitchingconditions Tvj op -40 preparedby:CU dateofpublication:2013-11-04 approvedby:MK revision:2.2 1 0,16 K/W K/W 150 °C 技术信息/TechnicalInformation IGBT-模块 IGBT-modules FD300R06KE3 初步数据 PreliminaryData 二极管,制动-斩波器/Diode,Brake-Chopper 最大额定值/MaximumRatedValues 反向重复峰值电压 Repetitivepeakreversevoltage Tvj = 25°C 连续正向直流电流 ContinuousDCforwardcurrent 正向重复峰值电流 Repetitivepeakforwardcurrent tP = 1 ms I2t-值 I²t-value VR = 0 V, tP = 10 ms, Tvj = 125°C VR = 0 V, tP = 10 ms, Tvj = 150°C VRRM 600 V IF 300 A IFRM 600 A I²t 8400 7900 特征值/CharacteristicValues min. typ. max. 1,55 1,50 1,45 1,95 A²s A²s 正向电压 Forwardvoltage IF = 300 A, VGE = 0 V IF = 300 A, VGE = 0 V IF = 300 A, VGE = 0 V Tvj = 25°C Tvj = 125°C Tvj = 150°C VF 反向恢复峰值电流 Peakreverserecoverycurrent IF = 300 A, - diF/dt = 3300 A/µs (Tvj=150°C) Tvj = 25°C VR = 300 V Tvj = 125°C Tvj = 150°C IRM 190 235 250 A A A 恢复电荷 Recoveredcharge IF = 300 A, - diF/dt = 3300 A/µs (Tvj=150°C) Tvj = 25°C VR = 300 V Tvj = 125°C Tvj = 150°C Qr 13,0 24,0 28,0 µC µC µC 反向恢复损耗(每脉冲) Reverserecoveryenergy IF = 300 A, - diF/dt = 3300 A/µs (Tvj=150°C) Tvj = 25°C VR = 300 V Tvj = 125°C Tvj = 150°C Erec 3,40 6,20 7,00 mJ mJ mJ 结-外壳热阻 Thermalresistance,junctiontocase 每个二极管/perdiode RthJC 外壳-散热器热阻 Thermalresistance,casetoheatsink 每个二极管/perdiode λPaste=1W/(m·K)/λgrease=1W/(m·K) RthCH 0,034 在开关状态下温度 Temperatureunderswitchingconditions Tvj op -40 V V V 0,32 K/W K/W 150 °C 反向二极管/Diode,Reverse 最大额定值/MaximumRatedValues 反向重复峰值电压 Repetitivepeakreversevoltage Tvj = 25°C 连续正向直流电流 ContinuousDCforwardcurrent 正向重复峰值电流 Repetitivepeakforwardcurrent tP = 1 ms I2t-值 I²t-value VR = 0 V, tP = 10 ms, Tvj = 125°C VR = 0 V, tP = 10 ms, Tvj = 150°C VRRM 600 V IF 100 A IFRM 200 A I²t 1800 1600 特征值/CharacteristicValues 正向电压 Forwardvoltage min. IF = 100 A, VGE = 0 V IF = 100 A, VGE = 0 V IF = 100 A, VGE = 0 V Tvj = 25°C Tvj = 125°C Tvj = 150°C VF typ. max. 1,55 1,50 1,45 1,95 结-外壳热阻 Thermalresistance,junctiontocase 每个二极管/perdiode RthJC 外壳-散热器热阻 Thermalresistance,casetoheatsink 每个二极管/perdiode λPaste=1W/(m·K)/λgrease=1W/(m·K) RthCH 0,085 在开关状态下温度 Temperatureunderswitchingconditions Tvj op -40 preparedby:CU dateofpublication:2013-11-04 approvedby:MK revision:2.2 2 A²s A²s V V V 0,80 K/W K/W 150 °C 技术信息/TechnicalInformation IGBT-模块 IGBT-modules FD300R06KE3 初步数据 PreliminaryData 模块/Module 绝缘测试电压 Isolationtestvoltage RMS, f = 50 Hz, t = 1 min. 模块基板材料 Materialofmodulebaseplate 内部绝缘 Internalisolation 基本绝缘(class1,IEC61140) basicinsulation(class1,IEC61140) 爬电距离 Creepagedistance VISOL 2,5 kV Cu Al2O3 端子-散热片/terminaltoheatsink 端子-端子/terminaltoterminal 29,0 23,0 mm 电气间隙 Clearance 端子-散热片/terminaltoheatsink 端子-端子/terminaltoterminal 23,0 11,0 mm 相对电痕指数 Comperativetrackingindex CTI > 400 外壳-散热器热阻 Thermalresistance,casetoheatsink 每个模块/permodule λPaste=1W/(m·K)/λgrease=1W/(m·K) 杂散电感,模块 Strayinductancemodule 模块引线电阻,端子-芯片 Moduleleadresistance,terminals-chip TC=25°C,每个开关/perswitch 储存温度 Storagetemperature 模块安装的安装扭距 Mountingtorqueformodulmounting min. typ. RthCH 0,01 LsCE 20 nH RCC'+EE' 0,70 mΩ Tstg -40 125 °C 螺丝M6根据相应的应用手册进行安装 ScrewM6-Mountingaccordingtovalidapplicationnote M 3,00 - 6,00 Nm 端子联接扭距 Terminalconnectiontorque 螺丝M6根据相应的应用手册进行安装 ScrewM6-Mountingaccordingtovalidapplicationnote M 2,5 - 5,0 Nm 重量 Weight G 340 g preparedby:CU dateofpublication:2013-11-04 approvedby:MK revision:2.2 3 max. K/W 技术信息/TechnicalInformation IGBT-模块 IGBT-modules FD300R06KE3 初步数据 PreliminaryData 输出特性IGBT,制动-斩波器(典型) outputcharacteristicIGBT,Brake-Chopper(typical) IC=f(VCE) VGE=15V 输出特性IGBT,制动-斩波器(典型) outputcharacteristicIGBT,Brake-Chopper(typical) IC=f(VCE) Tvj=150°C 600 600 Tvj = 25°C Tvj = 125°C Tvj = 150°C 480 480 420 420 360 360 300 300 240 240 180 180 120 120 60 60 0 VGE = 19V VGE = 17V VGE = 15V VGE = 13V VGE = 11V VGE = 9V 540 IC [A] IC [A] 540 0 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 2,6 VCE [V] 传输特性IGBT,制动-斩波器(典型) transfercharacteristicIGBT,Brake-Chopper(typical) IC=f(VGE) VCE=20V 0,0 0,5 1,0 1,5 2,0 2,5 3,0 VCE [V] 3,5 4,0 4,5 5,0 开关损耗IGBT,制动-斩波器(典型) switchinglossesIGBT,Brake-Chopper(typical) Eon=f(IC),Eoff=f(IC) VGE=±15V,RGon=2.4Ω,RGoff=2.4Ω,VCE=300V 600 30 Tvj = 25°C Tvj = 125°C Tvj = 150°C 540 Eon, Tvj = 125°C Eoff, Tvj = 125°C Eon, Tvj = 150°C Eoff, Tvj = 150°C 25 480 420 20 E [mJ] IC [A] 360 300 15 240 10 180 120 5 60 0 5 6 7 8 9 VGE [V] 10 11 0 12 preparedby:CU dateofpublication:2013-11-04 approvedby:MK revision:2.2 4 0 100 200 300 IC [A] 400 500 600 技术信息/TechnicalInformation IGBT-模块 IGBT-modules FD300R06KE3 初步数据 PreliminaryData 开关损耗IGBT,制动-斩波器(典型) switchinglossesIGBT,Brake-Chopper(typical) Eon=f(RG),Eoff=f(RG) VGE=±15V,IC=300A,VCE=300V 瞬态热阻抗IGBT,制动-斩波器 transientthermalimpedanceIGBT,Brake-Chopper ZthJC=f(t) 45 1 Eon, Tvj = 125°C Eoff, Tvj = 125°C Eon, Tvj = 150°C Eoff, Tvj = 150°C 40 ZthJC : IGBT 35 0,1 ZthJC [K/W] E [mJ] 30 25 20 15 0,01 10 i: 1 2 3 4 ri[K/W]: 0,0096 0,0528 0,0512 0,0464 τi[s]: 0,01 0,02 0,05 0,1 5 0 0 2 4 6 8 10 12 RG [Ω] 14 16 18 0,001 0,001 20 反偏安全工作区IGBT,制动-斩波器(RBSOA) reversebiassafeoperatingareaIGBT,Brake-Chopper (RBSOA) IC=f(VCE) VGE=±15V,RGoff=2.4Ω,Tvj=150°C 700 IC, Modul IC, Chip 0,01 0,1 t [s] 1 10 正向偏压特性二极管,制动-斩波器(典型) forwardcharacteristicofDiode,Brake-Chopper(typical) IF=f(VF) 600 Tvj = 25°C Tvj = 125°C Tvj = 150°C 540 600 480 500 420 360 IF [A] IC [A] 400 300 300 240 180 200 120 100 60 0 0 100 200 300 400 VCE [V] 500 600 0 700 preparedby:CU dateofpublication:2013-11-04 approvedby:MK revision:2.2 5 0,0 0,2 0,4 0,6 0,8 1,0 1,2 VF [V] 1,4 1,6 1,8 2,0 技术信息/TechnicalInformation IGBT-模块 IGBT-modules FD300R06KE3 初步数据 PreliminaryData 开关损耗二极管,制动-斩波器(典型) switchinglossesDiode,Brake-Chopper(typical) Erec=f(IF) RGon=2.4Ω,VCE=300V 开关损耗二极管,制动-斩波器(典型) switchinglossesDiode,Brake-Chopper(typical) Erec=f(RG) IF=300A,VCE=300V 10 10 Erec, Tvj = 125°C Erec, Tvj = 150°C 8 8 7 7 6 6 5 5 4 4 3 3 2 2 1 1 0 0 100 200 Erec, Tvj = 125°C Erec, Tvj = 150°C 9 E [mJ] E [mJ] 9 300 IF [A] 400 500 0 600 瞬态热阻抗二极管,制动-斩波器 transientthermalimpedanceDiode,Brake-Chopper ZthJC=f(t) 0 2 4 6 8 RG [Ω] 10 12 14 16 正向偏压特性反向二极管(典型) forwardcharacteristicofDiode,Reverse(typical) IF=f(VF) 1 200 ZthJC : Diode Tvj = 25°C Tvj = 125°C Tvj = 150°C 180 160 140 0,1 IF [A] ZthJC [K/W] 120 100 80 0,01 60 40 i: 1 2 3 4 ri[K/W]: 0,0192 0,1056 0,1024 0,0928 τi[s]: 0,01 0,02 0,05 0,1 0,001 0,001 0,01 0,1 t [s] 1 20 0 10 preparedby:CU dateofpublication:2013-11-04 approvedby:MK revision:2.2 6 0,0 0,2 0,4 0,6 0,8 1,0 1,2 VF [V] 1,4 1,6 1,8 2,0 技术信息/TechnicalInformation IGBT-模块 IGBT-modules FD300R06KE3 初步数据 PreliminaryData 瞬态热阻抗反向二极管 transientthermalimpedanceDiode,Reverse ZthJC=f(t) 1 ZthJC [K/W] ZthJC : Diode 0,1 i: 1 2 3 4 ri[K/W]: 0,048 0,264 0,256 0,232 τi[s]: 0,01 0,02 0,05 0,1 0,01 0,001 0,01 0,1 t [s] 1 10 preparedby:CU dateofpublication:2013-11-04 approvedby:MK revision:2.2 7 技术信息/TechnicalInformation IGBT-模块 IGBT-modules FD300R06KE3 初步数据 PreliminaryData 接线图/circuit_diagram_headline 封装尺寸/packageoutlines j j n i i preparedby:CU dateofpublication:2013-11-04 approvedby:MK revision:2.2 8 n 技术信息/TechnicalInformation IGBT-模块 IGBT-modules FD300R06KE3 初步数据 PreliminaryData 使用条件和条款 使用条件和条款 产品规格书中的数据是专门为技术人员提供的,您和您的技术部门应该针对您的应用来评估产品及产品的所有参数是否适合 产品规格书中所描述的产品特性是被保证的,任何这种保证严格依照供货协议中所涉及的条件和条款。除此之外,产品和产品的特性没有任何的保证 请注意安装及应用指南中的信息。 如果您有超出规格书所提供的产品信息的要求或者对我们的产品针对的特殊应用有疑虑的话,请联系我们负责你的销售部门(详情查询 www.infineon.com)。对那些特别感兴趣的问题我们将提供相应的应用手册 由于技术需要,我们的产品可能含有危险物质。如果需要查询类似问题请联系我们负责你的销售部门 如果您想将我们的产品用于航天,健康,危及生命或者生命维持等应用,请申明。 请注意,对这类应用我们强烈建议 -执行联合的风险和质量评估 -得到质量协议的结论 -建立联合的测试和出厂产品检查,我们可以根据测试的实际情况供货 如果有必要,请根据实际需要将类似的说明给你的客户 保留产品规格书的修改权 Terms&Conditionsofusage Thedatacontainedinthisproductdatasheetisexclusivelyintendedfortechnicallytrainedstaff.Youandyourtechnicaldepartmentswill havetoevaluatethesuitabilityoftheproductfortheintendedapplicationandthecompletenessoftheproductdatawithrespecttosuch application. 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