Product Information

FP10R12W1T4_B11

FP10R12W1T4_B11 electronic component of Infineon

Datasheet
Infineon Technologies IGBT Modules IGBT 1200V 10A

Manufacturer: Infineon
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (AUD)

1: AUD 72.669 ( AUD 79.94 Inc GST) ea
Line Total: AUD 72.669 ( AUD 79.94 Inc GST)

155 - Global Stock
Ships to you between
Thu. 18 Jul to Mon. 22 Jul
MOQ: 1  Multiples: 1
Pack Size: 1
Availability Price Quantity
116 - Global Stock


Ships to you between Thu. 18 Jul to Mon. 22 Jul

MOQ : 1
Multiples : 1
1 : AUD 66.7354
10 : AUD 60.1185
24 : AUD 57.4646
48 : AUD 55.5538
120 : AUD 53.6431
264 : AUD 53.0415
504 : AUD 52.1215
1008 : AUD 50.9892

     
Manufacturer
Product Category
Product
Configuration
Collector- Emitter Voltage VCEO Max
Collector-Emitter Saturation Voltage
Continuous Collector Current at 25 C
Gate-Emitter Leakage Current
Maximum Operating Temperature
Minimum Operating Temperature
Packaging
Pd - Power Dissipation
Hts Code
LoadingGif

Notes:- Show Stocked Products With Similar Attributes.

/ Technical Information IGBT- FP10R12W1T4 B11 IGBT-modules IGBT, / IGBT,Inverter Preliminary Data / Maximum Rated Values T = 25C V 1200 V vj CES Collector-emitter voltage T = 100C, T = 175C I 10 A C vj max C nom Continuous DC collector current TC = 25C, Tvj max = 175C IC 20 A t = 1 ms I 20 A P CRM Repetitive peak collector current T = 25C, T = 175C P 105 W C vj max tot Total power dissipation VGES +/-20 V Gate-emitter peak voltage / Characteristic Values min. typ. max. I = 10 A, V = 15 V T = 25C 1,85 2,25 V C GE vj Collector-emitter saturation voltage I = 10 A, V = 15 V T = 125C V 2,15 V C GE vj CE sat I = 10 A, V = 15 V T = 150C 2,25 V C GE vj I = 0,30 mA, V = V , T = 25C V 5,2 5,8 6,4 V C CE GE vj GEth Gate threshold voltage VGE = -15 V ... +15 V QG 0,09 C Gate charge T = 25C R 0,0 vj Gint Internal gate resistor f = 1 MHz, Tvj = 25C, VCE = 25 V, VGE = 0 V Cies 0,60 nF Input capacitance f = 1 MHz, T = 25C, V = 25 V, V = 0 V C 0,024 nF vj CE GE res Reverse transfer capacitance - VCE = 1200 V, VGE = 0 V, Tvj = 25C ICES 1,0 mA Collector-emitter cut-off current - V = 0 V, V = 20 V, T = 25C I 400 nA CE GE vj GES Gate-emitter leakage current () I = 10 A, V = 600 V T = 25C 0,045 s C CE vj t d on Turn-on delay time, inductive load VGE = 15 V Tvj = 125C 0,045 s R = 47 T = 150C 0,045 s Gon vj () I = 10 A, V = 600 V T = 25C 0,044 s C CE vj t r Rise time, inductive load VGE = 15 V Tvj = 125C 0,061 s R = 47 T = 150C 0,063 s Gon vj () I = 10 A, V = 600 V T = 25C 0,18 s C CE vj t d off Turn-off delay time, inductive load VGE = 15 V Tvj = 125C 0,245 s R = 47 T = 150C 0,275 s Goff vj () I = 10 A, V = 600 V T = 25C 0,165 s C CE vj t f Fall time, inductive load VGE = 15 V Tvj = 125C 0,215 s R = 47 T = 150C 0,225 s Goff vj () I = 10 A, V = 600 V, L = 50 nH T = 25C 0,90 mJ C CE S vj Turn-on energy loss per pulse VGE = 15 V, di/dt = 500 A/s (Tvj = 150C) Tvj = 125C Eon 1,35 mJ R = 47 T = 150C 1,55 mJ Gon vj ( I = 10 A, V = 600 V, L = 50 nH T = 25C 0,55 mJ C CE S vj Turn-off energy loss per pulse VGE = 15 V, du/dt = 3500 V/s (Tvj = 150C)Tvj = 125C Eoff 0,80 mJ R = 47 T = 150C 0,87 mJ Goff vj V 15 V, V = 800 V GE CC ISC SC data VCEmax = VCES -LsCE di/dt tP 10 s, Tvj = 150C 35 A IGBT / per IGBT R 1,25 1,40 K/W thJC Thermal resistance, junction to case IGBT / per IGBT R 1,15 K/W thCH Thermal resistance, case to heatsink Paste = 1 W/(mK) / grease = 1 W/(mK) T -40 150 C vj op Temperature under switching conditions prepared by: DK date of publication: 2013-11-05 approved by: MB revision: 2.0 1 / Technical Information IGBT- FP10R12W1T4 B11 IGBT-modules Preliminary Data , / Diode, Inverter / Maximum Rated Values T = 25C V 1200 V vj RRM Repetitive peak reverse voltage I 10 A F Continuous DC forward current t = 1 ms I 20 A P FRM Repetitive peak forward current I2t- V = 0 V, t = 10 ms, T = 125C 16,0 As R P vj It It - value VR = 0 V, tP = 10 ms, Tvj = 150C 14,0 As / Characteristic Values min. typ. max. I = 10 A, V = 0 V T = 25C 1,75 2,25 V F GE vj Forward voltage I = 10 A, V = 0 V T = 125C V 1,75 V F GE vj F IF = 10 A, VGE = 0 V Tvj = 150C 1,75 V I = 10 A, - di /dt = 500 A/s (T =150C) T = 25C 12,0 A F F vj vj Peak reverse recovery current V = 600 V T = 125C I 10,0 A R vj RM VGE = -15 V Tvj = 150C 8,00 A I = 10 A, - di /dt = 500 A/s (T =150C) T = 25C 0,90 C F F vj vj Recovered charge V = 600 V T = 125C Q 1,70 C R vj r VGE = -15 V Tvj = 150C 1,90 C I = 10 A, - di /dt = 500 A/s (T =150C) T = 25C 0,24 mJ F F vj vj Reverse recovery energy V = 600 V T = 125C E 0,52 mJ R vj rec VGE = -15 V Tvj = 150C 0,59 mJ / per diode RthJC 1,75 1,90 K/W Thermal resistance, junction to case / per diode R 1,30 K/W thCH Thermal resistance, case to heatsink = 1 W/(mK) / = 1 W/(mK) Paste grease Tvj op -40 150 C Temperature under switching conditions , / Diode, Rectifier / Maximum Rated Values T = 25C V 1600 V vj RRM Repetitive peak reverse voltage () TC = 80C IFRMSM 30 A Maximum RMS forward current per chip T = 80C I 30 A C RMSM Maximum RMS current at rectifier output t = 10 ms, T = 25C 300 A p vj I FSM Surge forward current tp = 10 ms, Tvj = 150C 245 A I2t- tp = 10 ms, Tvj = 25C 450 As It It - value t = 10 ms, T = 150C 300 As p vj / Characteristic Values min. typ. max. T = 150C, I = 10 A V 0,80 V vj F F Forward voltage Tvj = 150C, VR = 1600 V IR 1,00 mA Reverse current / per diode R 1,20 1,35 K/W thJC Thermal resistance, junction to case / per diode RthCH 1,15 K/W Thermal resistance, case to heatsink Paste = 1 W/(mK) / grease = 1 W/(mK) T -40 150 C vj op Temperature under switching conditions prepared by: DK date of publication: 2013-11-05 approved by: MB revision: 2.0 2

Tariff Desc

8541.21.00 16 No - - With a dissipation rate of less than 1 W Free

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