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AUIRFS3206TRR Datasheet(PDF) 2 Page - International Rectifier |
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AUIRFS3206TRR Datasheet(HTML) 2 Page - International Rectifier |
2 / 13 page AUIRFS/SL3206 2 www.irf.com Notes: Calculated continuous current based on maximum allowable junction temperature. Bond wire current limit is 120A. Note that current limitations arising from heating of the device leads may occur with some lead mounting arrangements. Repetitive rating; pulse width limited by max. junction temperature. Limited by TJmax, starting TJ = 25°C, L = 0.023mH RG = 25Ω, IAS = 120A, VGS =10V. Part not recommended for use above this value. S D G ISD ≤ 75A, di/dt ≤ 360A/μs, VDD ≤ V(BR)DSS, TJ ≤ 175°C.
Pulse width ≤ 400μs; duty cycle ≤ 2%. Coss eff. (TR) is a fixed capacitance that gives the same charging time as Coss while VDS is rising from 0 to 80% VDSS. Coss eff. (ER) is a fixed capacitance that gives the same energy as Coss while VDS is rising from 0 to 80% VDSS. When mounted on 1" square PCB (FR-4 or G-10 Material). For recom mended footprint and soldering techniques refer to application note #AN-994. Rθ is measured at TJ approximately 90°C Static Characteristics @ TJ = 25°C (unless otherwise stated) Parameter Min. Typ. Max. Units V(BR)DSS Drain-to-Source Breakdown Voltage 60 ––– ––– V ΔV(BR)DSS/ΔTJ Breakdown Voltage Temp. Coefficient ––– 0.07 ––– V/°C RDS(on) Static Drain-to-Source On-Resistance ––– 2.4 3.0 m Ω VGS(th) Gate Threshold Voltage 2.0 ––– 4.0 V gfs Forward Transconductance 210 ––– ––– S RG Internal Gate Resistance ––– 0.7 ––– Ω IDSS Drain-to-Source Leakage Current ––– ––– 20 ––– ––– 250 IGSS Gate-to-Source Forward Leakage ––– ––– 100 Gate-to-Source Reverse Leakage ––– ––– -100 Dynamic Characteristics @ TJ = 25°C (unless otherwise stated) Parameter Min. Typ. Max. Units Qg Total Gate Charge ––– 120 170 Qgs Gate-to-Source Charge ––– 29 ––– Qgd Gate-to-Drain ("Miller") Charge ––– 35 Qsync Total Gate Charge Sync. (Qg - Qgd) ––– 85 ––– td(on) Turn-On Delay Time ––– 19 ––– tr Rise Time ––– 82 ––– td(off) Turn-Off Delay Time ––– 55 ––– tf Fall Time ––– 83 ––– Ciss Input Capacitance ––– 6540 ––– Coss Output Capacitance ––– 720 ––– Crss Reverse Transfer Capacitance ––– 360 ––– Coss eff. (ER) Effective Output Capacitance (Energy Related) ––– 1040 ––– Coss eff. (TR) Effective Output Capacitance (Time Related)h ––– 1230 ––– Diode Characteristics Parameter Min. Typ. Max. Units IS Continuous Source Current (Body Diode) ISM Pulsed Source Current (Body Diode) Ãd VSD Diode Forward Voltage ––– ––– 1.3 V trr Reverse Recovery Time ––– 33 50 TJ = 25°C VR = 51V, ––– 37 56 TJ = 125°C IF = 75A Qrr Reverse Recovery Charge ––– 41 62 TJ = 25°C di/dt = 100A/μs g ––– 53 80 TJ = 125°C IRRM Reverse Recovery Current ––– 2.1 ––– A TJ = 25°C ton Forward Turn-On Time Intrinsic turn-on time is negligible (turn-on is dominated by LS+LD) ID = 75A RG =2.7Ω VGS = 10V g VDD = 30V ID = 75A, VDS =0V, VGS = 10V TJ = 25°C, IS = 75A, VGS = 0V g integral reverse p-n junction diode. Conditions VGS = 0V, ID = 250μA Reference to 25°C, ID = 5mAd VGS = 10V, ID = 75A g VDS = VGS, ID = 150μA VDS =60V, VGS = 0V VDS = 48V, VGS = 0V, TJ = 125°C Conditions VGS = 10V g VGS = 0V VDS = 50V ƒ = 1.0MHz, See Fig.5 VGS = 0V, VDS = 0V to 48V i, See Fig.11 VGS = 0V, VDS = 0V to 48V hà 840 210 Conditions VDS = 50V, ID = 75A ID = 75A VGS = 20V VGS = -20V MOSFET symbol showing the VDS =30V ––– ––– ––– ––– nC pF ns A nC μA nA ns |
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