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Fast Switching Field Stop Trench IGBT onsemi AFGHL50T65SQD with 650V Voltage and High Current Capability

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Product Description

Product Overview

The AFGHL50T65SQD is a Field Stop Trench IGBT utilizing 4th generation high-speed technology. It is AEC Q101 qualified and offers optimal performance for both hard and soft switching topologies in automotive applications. Key advantages include its high current capability, low saturation voltage, fast switching, and tight parameter distribution, making it suitable for parallel operation.

Product Attributes

  • Brand: onsemi (Semiconductor Components Industries, LLC)
  • Certifications: AECQ101 Qualified, RoHS Compliant

Technical Specifications

ParameterSymbolValueUnitConditions
Collector-to-Emitter VoltageVCES650V
Gate-to-Emitter VoltageVGES±20V
Transient Gate-to-Emitter Voltage±30V
Collector Current @ TC = 25°CIC80ANote 1
Collector Current @ TC = 100°CIC50ANote 1
Pulsed Collector CurrentILM200ANote 2
Pulsed Collector CurrentICM200ANote 3
Diode Forward Current @ TC = 25°CIF80ANote 1
Diode Forward Current @ TC = 100°CIF30ANote 1
Pulsed Diode Maximum Forward CurrentIFM200A
Maximum Power Dissipation @ TC = 25°CPD268W
Maximum Power Dissipation @ TC = 100°CPD134W
Operating Junction / Storage Temperature RangeTJ, TSTG-55 to +175°C
Maximum Lead Temp. for Soldering PurposesTL300°C1/8″ from case for 5 seconds
Thermal resistance junction-to-case (IGBT)R JC0.56°C/W
Thermal resistance junction-to-case (Diode)R JC1.25°C/W
Thermal resistance junction-to-ambientR JA40°C/W
Collector-emitter breakdown voltageBVCES650VVGE = 0 V, IC = 1 mA
Temperature Coefficient of Breakdown Voltage∂BVCES / ∂TJ-0.6V/°CVGE = 0 V, IC = 1 mA
Collector-emitter cut-off currentICES250μAVGE = 0 V, VCE = 650 V
Gate leakage currentIGES±400nAVGE = 20 V, VCE = 0 V
Gate-emitter threshold voltageVGE(th)3.4 - 6.4VVGE = VCE, IC = 50 mA
Collector-emitter saturation voltageVCE(sat)1.6 (Typ.)VVGE = 15 V, IC = 50 A
Collector-emitter saturation voltageVCE(sat)1.95 - 2.1VVGE = 15 V, IC = 50 A, TJ = 175°C
Input capacitanceCies3258 (Typ.)pFVCE = 30 V, VGE = 0 V, f = 1 MHz
Output capacitanceCoes85 (Typ.)pFVCE = 30 V, VGE = 0 V, f = 1 MHz
Reverse transfer capacitanceCres11 (Typ.)pFVCE = 30 V, VGE = 0 V, f = 1 MHz
Gate charge totalQg102 (Typ.)nCVCE = 400 V, IC = 50 A, VGE = 15 V
Gate-to-emitter chargeQge18 (Typ.)nCVCE = 400 V, IC = 50 A, VGE = 15 V
Gate-to-collector chargeQgc24 (Typ.)nCVCE = 400 V, IC = 50 A, VGE = 15 V
Turn-on delay timetd(on)19 (Typ.)nsTC = 25°C, VCC = 400 V, IC = 25 A, RG = 4.7 Ω, VGE = 15 V
Rise timetr11 (Typ.)nsTC = 25°C, VCC = 400 V, IC = 25 A, RG = 4.7 Ω, VGE = 15 V
Turn-off delay timetd(off)87 (Typ.)nsTC = 25°C, VCC = 400 V, IC = 25 A, RG = 4.7 Ω, VGE = 15 V
Fall timetf5 (Typ.)nsTC = 25°C, VCC = 400 V, IC = 25 A, RG = 4.7 Ω, VGE = 15 V
Turn-on switching lossEon0.35 (Typ.)mJTC = 25°C, VCC = 400 V, IC = 25 A, RG = 4.7 Ω, VGE = 15 V
Turn-off switching lossEoff0.12 (Typ.)mJTC = 25°C, VCC = 400 V, IC = 25 A, RG = 4.7 Ω, VGE = 15 V
Total switching lossEts0.47 (Typ.)mJTC = 25°C, VCC = 400 V, IC = 25 A, RG = 4.7 Ω, VGE = 15 V
Turn-on delay timetd(on)20 (Typ.)nsTC = 25°C, VCC = 400 V, IC = 50 A, RG = 4.7 Ω, VGE = 15 V
Rise timetr28 (Typ.)nsTC = 25°C, VCC = 400 V, IC = 50 A, RG = 4.7 Ω, VGE = 15 V
Turn-off delay timetd(off)81 (Typ.)nsTC = 25°C, VCC = 400 V, IC = 50 A, RG = 4.7 Ω, VGE = 15 V
Fall timetf36 (Typ.)nsTC = 25°C, VCC = 400 V, IC = 50 A, RG = 4.7 Ω, VGE = 15 V
Turn-on switching lossEon0.95 (Typ.)mJTC = 25°C, VCC = 400 V, IC = 50 A, RG = 4.7 Ω, VGE = 15 V
Turn-off switching lossEoff0.46 (Typ.)mJTC = 25°C, VCC = 400 V, IC = 50 A, RG = 4.7 Ω, VGE = 15 V
Total switching lossEts1.41 (Typ.)mJTC = 25°C, VCC = 400 V, IC = 50 A, RG = 4.7 Ω, VGE = 15 V
Turn-on delay timetd(on)18 (Typ.)nsTC = 175°C, VCC = 400 V, IC = 25 A, RG = 4.7 Ω, VGE = 15 V
Rise timetr14 (Typ.)nsTC = 175°C, VCC = 400 V, IC = 25 A, RG = 4.7 Ω, VGE = 15 V
Turn-off delay timetd(off)99 (Typ.)nsTC = 175°C, VCC = 400 V, IC = 25 A, RG = 4.7 Ω, VGE = 15 V
Fall timetf7 (Typ.)nsTC = 175°C, VCC = 400 V, IC = 25 A, RG = 4.7 Ω, VGE = 15 V
Turn-on switching lossEon0.66 (Typ.)mJTC = 175°C, VCC = 400 V, IC = 25 A, RG = 4.7 Ω, VGE = 15 V
Turn-off switching lossEoff0.3 (Typ.)mJTC = 175°C, VCC = 400 V, IC = 25 A, RG = 4.7 Ω, VGE = 15 V
Total switching lossEts0.96 (Typ.)mJTC = 175°C, VCC = 400 V, IC = 25 A, RG = 4.7 Ω, VGE = 15 V
Turn-on delay timetd(on)20 (Typ.)nsTC = 175°C, VCC = 400 V, IC = 50 A, RG = 4.7 Ω, VGE = 15 V
Rise timetr29 (Typ.)nsTC = 175°C, VCC = 400 V, IC = 50 A, RG = 4.7 Ω, VGE = 15 V
Turn-off delay timetd(off)88 (Typ.)nsTC = 175°C, VCC = 400 V, IC = 50 A, RG = 4.7 Ω, VGE = 15 V
Fall timetf46 (Typ.)nsTC = 175°C, VCC = 400 V, IC = 50 A, RG = 4.7 Ω, VGE = 15 V
Turn-on switching lossEon1.42 (Typ.)mJTC = 175°C, VCC = 400 V, IC = 50 A, RG = 4.7 Ω, VGE = 15 V
Turn-off switching lossEoff0.65 (Typ.)mJTC = 175°C, VCC = 400 V, IC = 50 A, RG = 4.7 Ω, VGE = 15 V
Total switching lossEts2.07 (Typ.)mJTC = 175°C, VCC = 400 V, IC = 50 A, RG = 4.7 Ω, VGE = 15 V
Diode Forward VoltageVFM2.0 - 2.6VIF = 30 A, TC = 25°C
Diode Forward VoltageVFM1.7 (Typ.)VIF = 30 A, TC = 175°C
Reverse Recovery EnergyErec50 (Typ.)μJIF = 30 A, dlF/dt = 200 A/μs, TC = 175°C
Diode Reverse Recovery TimeTrr30 (Typ.)nsIF = 30 A, dlF/dt = 200 A/μs, TC = 25°C
Diode Reverse Recovery TimeTrr194 (Typ.)nsIF = 30 A, dlF/dt = 200 A/μs, TC = 175°C
Diode Reverse Recovery ChargeQrr42 (Typ.)nCIF = 30 A, dlF/dt = 200 A/μs, TC = 25°C
Diode Reverse Recovery ChargeQrr723 (Typ.)nCIF = 30 A, dlF/dt = 200 A/μs, TC = 175°C

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Company Hefei Purple Horn E-Commerce Co., Ltd.
Location Room 1306B, Building A, Xindi Center, Qimen Road, Hefei City, Anhui Province
Contact Person Sellina

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