Product Information

FDMS86381-F085

FDMS86381-F085 electronic component of ON Semiconductor

Datasheet
Trans MOSFET N-CH 80V 30A Automotive 8-Pin PQFN EP T/R

Manufacturer: ON Semiconductor
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 (USD)

1: USD 0.4196 ea
Line Total: USD 0.42

0 - Global Stock
MOQ: 1  Multiples: 1
Pack Size: 1
Availability Price Quantity
0 - WHS 1


Ships to you between Fri. 17 May to Thu. 23 May

MOQ : 1
Multiples : 1

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FDMS86381-F085
ON Semiconductor

1 : USD 0.4196
10 : USD 0.404
25 : USD 0.404

     
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FDMS86381-F085 N-Channel PowerTrench MOSFET FDMS86381-F085 N-Channel PowerTrench MOSFET 80 V, 30 A, 22 m Features Typical R = 17.2 m at V = 10V, I = 30 A DS(on) GS D Typical Q = 14 nC at V = 10V, I = 30 A g(tot) GS D UIS Capability RoHS Compliant Qualified to AEC Q101 Applications Automotive Engine Control PowerTrain Management Solenoid and Motor Drivers Electronic Steering Integrated Starter/Alternator Distributed Power Architectures and VRM Primary Switch for 12V Systems MOSFET Maximum Ratings T = 25C unless otherwise noted. J Symbol Parameter Ratings Units V Drain-to-Source Voltage 80 V DSS V Gate-to-Source Voltage 20 V GS Drain Current - Continuous (V =10) (Note 1) T = 25C 30 GS C I A D Pulsed Drain Current T = 25C See Figure 4 C E Single Pulse Avalanche Energy (Note 2) 11.5 mJ AS Power Dissipation 50 W P D o o Derate Above 25C0.33W/ C o T , T Operating and Storage Temperature -55 to + 175 C J STG o R Thermal Resistance, Junction to Case 3 C/W JC o R Maximum Thermal Resistance, Junction to Ambient (Note 3) 50 C/W JA Notes: 1: Current is limited by bondwire configuration. 2: Starting T = 25C, L = 40uH, I = 24A, V = 80V during inductor charging and V = 0V during time in avalanche. J AS DD DD 3: R is the sum of the junction-to-case and case-to-ambient thermal resistance, where the case thermal reference is defined as the solder JA mounting surface of the drain pins. R is guaranteed by design, while R is determined by the board design. The maximum rating JC JA 2 presented here is based on mounting on a 1 in pad of 2oz copper. Package Marking and Ordering Information Device Marking Device Package Reel Size Tape Width Quantity FDMS86381 FDMS86381-F085 Power56 13 12mm 3000units 2016 Semiconductor Components Industries, LLC. 1 Publication Order Number: August-2017, Rev. 2 FDMS86381-F085/D FDMS86381-F085 N-Channel PowerTrench MOSFET Electrical Characteristics T = 25C unless otherwise noted. J Symbol Parameter Test Conditions Min. Typ. Max. Units Off Characteristics B Drain-to-Source Breakdown Voltage I = 250A, V = 0V 80 - - V VDSS D GS o V = 80V, T = 25 C - - 1 A DS J I Drain-to-Source Leakage Current DSS o V = 0V T = 175 C (Note 4) - - 1 mA GS J I Gate-to-Source Leakage Current V = 20V - - 100 nA GSS GS On Characteristics V Gate to Source Threshold Voltage V = V , I = 250A 2.0 2.9 4.0 V GS(th) GS DS D o T = 25 C - 17.2 22.0 m I = 30A, J D R Drain to Source On Resistance DS(on) o V = 10V T = 175 C (Note 4) - 37.7 48.2 m GS J Dynamic Characteristics C Input Capacitance - 866 - pF iss V = 40V, V = 0V, DS GS C Output Capacitance - 176 - pF oss f = 1MHz C Reverse Transfer Capacitance - 7 - pF rss R Gate Resistance f = 1MHz - 2.3 - g Q Total Gate Charge V = 0 to 10V -14 21 nC g(ToT) GS V = 40V DD Q Threshold Gate Charge V = 0 to 2V - 1.7 - nC I = 30A g(th) GS D Q Gate-to-Source Gate Charge -5.1 - nC gs Q Gate-to-Drain Miller Charge - 3.8 - nC gd Switching Characteristics t Turn-On Time - - 23 ns on t Turn-On Delay - 9 - ns d(on) t Rise Time - 6 - ns V = 40V, I = 30A, r DD D V = 10V, R = 6 t Turn-Off Delay - 14 - ns GS GEN d(off) t Fall Time - 5 - ns f t Turn-Off Time - - 28 ns off Drain-Source Diode Characteristics I =30A, V = 0V - - 1.25 V SD GS V Source-to-Drain Diode Voltage SD I = 15A, V = 0V - - 1.2 V SD GS t Reverse-Recovery Time -34 50 ns I = 30A, dI /dt = 100A/s rr F SD V = 64V Q Reverse-Recovery Charge - 27 40 nC DD rr Note: = 175C. Product is not tested to this condition in production. 4: The maximum value is specified by design at T J www.onsemi.com 2

Tariff Desc

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

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