Product Information

SIHP12N60E-E3

SIHP12N60E-E3 electronic component of Vishay

Datasheet
MOSFET 600V 380mOhm@10V 12A N-Ch E-SRS

Manufacturer: Vishay
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 0.1368 ea
Line Total: USD 0.14

1 - Global Stock
Ships to you between
Wed. 22 May to Tue. 28 May
MOQ: 1  Multiples: 1
Pack Size: 1
Availability Price Quantity
1 - WHS 1


Ships to you between Wed. 22 May to Tue. 28 May

MOQ : 1
Multiples : 1
1 : USD 0.1368

2867 - WHS 2


Ships to you between Tue. 28 May to Thu. 30 May

MOQ : 1
Multiples : 1
1 : USD 2.5185
10 : USD 1.38
100 : USD 1.3225
250 : USD 1.311
500 : USD 1.311
1000 : USD 1.311
2000 : USD 1.288
10000 : USD 1.2765

     
Manufacturer
Product Category
RoHS - XON
Icon ROHS
Id - Continuous Drain Current
Vds - Drain-Source Breakdown Voltage
Rds On - Drain-Source Resistance
Transistor Polarity
Vgs th - Gate-Source Threshold Voltage
Minimum Operating Temperature
Maximum Operating Temperature
Pd - Power Dissipation
Mounting Style
Package / Case
Packaging
Technology
Number of Channels
Vgs - Gate-Source Voltage
Qg - Gate Charge
Channel Mode
Configuration
Series
Brand
Continuous Drain Current
Drain-Source Breakdown Voltage
Forward Transconductance - Min
Gate-Source Breakdown Voltage
Power Dissipation
Rds On
Fall Time
Gate Charge Qg
Rise Time
Factory Pack Quantity :
Typical Turn-Off Delay Time
Height
Length
Width
Cnhts
Hts Code
Mxhts
Product Type
Subcategory
Taric
Typical Turn-On Delay Time
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SiHP12N60E www.vishay.com Vishay Siliconix E Series Power MOSFET FEATURES PRODUCT SUMMARY Low figure-of-merit (FOM) R x Q on g V (V) at T max. 650 DS J Low input capacitance (C ) iss R max. at 25 C ()V = 10 V 0.38 DS(on) GS Reduced switching and conduction losses Q max. (nC) 58 g Ultra low gate charge (Q ) g Q (nC) 6 gs Available Avalanche energy rated (UIS) Q (nC) 13 gd Material categorization: for definitions of compliance Configuration Single please see www.vishay.com/doc 99912 APPLICATIONS D Server and telecom power supplies TO-220AB Switch mode power supplies (SMPS) Power factor correction power supplies (PFC) Lighting G - High-intensity discharge (HID) - Fluorescent ballast lighting S D Industrial G S - Welding N-Channel MOSFET - Induction heating - Motor drives - Battery chargers - Renewable energy - Solar (PV inverters) ORDERING INFORMATION Package TO-220AB Lead (Pb)-free SiHP12N60E-E3 Lead (Pb)-free and Halogen-free SiHP12N60E-GE3 ABSOLUTE MAXIMUM RATINGS (T = 25 C, unless otherwise noted) C PARAMETER SYMBOLLIMITUNIT Drain-Source Voltage V 600 DS V Gate-Source Voltage V 30 GS T = 25 C 12 C Continuous Drain Current (T = 150 C) V at 10 V I J GS D T = 100 C 7.8 A C a Pulsed Drain Current I 27 DM Linear Derating Factor 1.2 W/C b Single Pulse Avalanche Energy E 117 mJ AS Maximum Power Dissipation P 147 W D Operating Junction and Storage Temperature Range T , T -55 to +150 C J stg Drain-Source Voltage Slope T = 125 C 70 J dV/dt V/ns d Reverse Diode dV/dt 5 c Soldering Recommendations (Peak Temperature) for 10 s 300 C Notes a. Repetitive rating pulse width limited by maximum junction temperature. b. V = 50 V, starting T = 25 C, L = 11.6 mH, R = 25 , I = 4.5 A. DD J g AS c. 1.6 mm from case. d. I I , dI/dt = 100 A/s, starting T = 25 C. SD D J S15-0277-Rev. D, 23-Feb-15 Document Number: 91479 1 For technical questions, contact: hvm vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc 91000SiHP12N60E www.vishay.com Vishay Siliconix THERMAL RESISTANCE RATINGS PARAMETER SYMBOLTYP. MAX. UNIT Maximum Junction-to-Ambient R -62 thJA C/W Maximum Junction-to-Case (Drain) -0.85 R thJC SPECIFICATIONS (T = 25 C, unless otherwise noted) J PARAMETER SYMBOLTEST CONDITIONS MIN.TYP.MAX.UNIT Static Drain-Source Breakdown Voltage V V = 0 V, I = 250 A 600 - - V DS GS D V /T -0.71 - V Temperature Coefficient Reference to 25 C, I = 1 mA V/C DS DS J D Gate-Source Threshold Voltage (N) V V = V , I = 250 A 2 - 4 V GS(th) DS GS D V = 20 V - - 100 nA GS Gate-Source Leakage I GSS V = 30 V - - 1 A GS V = 600 V, V = 0 V - - 1 DS GS Zero Gate Voltage Drain Current I A DSS V = 480 V, V = 0 V, T = 125 C - - 10 DS GS J Drain-Source On-State Resistance R V = 10 V I = 6 A - 0.32 0.38 DS(on) GS D Forward Transconductance g V = 40 V, I = 8 A - 3.8 - S fs DS D Dynamic Input Capacitance C - 937 - iss V = 0 V, GS Output Capacitance C -5V = 100 V, 3- oss DS f = 1 MHz Reverse Transfer Capacitance C -5- rss pF Effective Output Capacitance, Energy C -41 - a o(er) Related V = 0 V to 480 V, V = 0 V DS GS Effective Output Capacitance, Time C - 136 - o(tr) b Related Total Gate Charge Q -29 58 g Gate-Source Charge Q -6V = 10 V I = 6 A, V = 480 V- nC gs GS D DS Gate-Drain Charge Q -13- gd Turn-On Delay Time t -14 28 d(on) Rise Time t -19 38 r V = 480 V, I = 6 A, DD D ns Turn-Off Delay Time t -3570 V = 10 V, R = 9.1 d(off) GS g Fall Time t -1938 f Gate Input Resistance R f = 1 MHz, open drain - 1.1 - g Drain-Source Body Diode Characteristics MOSFET symbol D Continuous Source-Drain Diode Current I -- 12 S showing the A G integral reverse Pulsed Diode Forward Current I -- 48 S SM p - n junction diode Diode Forward Voltage V T = 25 C, I = 6 A, V = 0 V - - 1.2 V SD J S GS Reverse Recovery Time t - 350 - ns rr T = 25 C, I = I = 6 A, J F S Reverse Recovery Charge Q -4 - C rr dI/dt = 100 A/s, V = 25 V R Reverse Recovery Current I -19 - A RRM Notes a. C is a fixed capacitance that gives the same energy as C while V is rising from 0 % to 80 % V . oss(er) oss DS DSS b. C is a fixed capacitance that gives the same charging time as C while V is rising from 0 % to 80 % V . oss(tr) oss DS DSS S15-0277-Rev. D, 23-Feb-15 Document Number: 91479 2 For technical questions, contact: hvm vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc 91000

Tariff Desc

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

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