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STPS16150CT

STMicroelectronics
Part Number STPS16150CT
Manufacturer STMicroelectronics
Description HIGH VOLTAGE POWER SCHOTTKY RECTIFIER
Published Mar 27, 2015
Detailed Description ® STPS16150CT/CG/CR HIGH VOLTAGE POWER SCHOTTKY RECTIFIER MAIN PRODUCT CHARACTERISTICS IF(AV) VRRM Tj VF (max) 2x8A 1...
Datasheet PDF File STPS16150CT PDF File

STPS16150CT
STPS16150CT


Overview
® STPS16150CT/CG/CR HIGH VOLTAGE POWER SCHOTTKY RECTIFIER MAIN PRODUCT CHARACTERISTICS IF(AV) VRRM Tj VF (max) 2x8A 150 V 175°C 0.
75 V A1 K A2 FEATURES AND BENEFITS s HIGH JUNCTION TEMPERATURE CAPABILITY s GOOD TRADE OFF BETWEEN LEAKAGE CURRENT AND FORWARD VOLTAGE DROP s LOW LEAKAGE CURRENT s AVALANCHE CAPABILITY SPECIFIED DESCRIPTION Dual center tap schottky rectifier designed for high frequency Switched Mode Power Supplies.
K A2 A1 D2PAK STPS16150CG A2 K A1 I2PAK STPS16150CR A2 A1K TO-220AB STPS16150CT ABSOLUTE RATINGS (limiting values, per diode) Symbol Parameter VRRM Repetitive peak reverse voltage IF(RMS) RMS forward current IF(AV) Average forward current TO-220AB δ = 0.
5 D2PAK / I2PAK IFSM Surge non repetitive forward current PARM Repetitive peak avalanche power Tstg Storage temperature range Tj Maximum operating junction temperature dV/dt Critical rate of rise of reverse voltage Value Unit 150 V 20 A Tc = 150°C per diode per device 8 16 A tp = 10 ms sinusoidal 150 A tp = 1µs Tj = 25°C 4700 W - 65 to + 175 °C 175 °C 10000 V/µs July 2003 - Ed: 6C 1/5 STPS16150CT/CG/CR THERMAL RESISTANCES Symbol Rth (j-c) Junction to case Parameter TO-220AB / D2PAK / I2PAK Per diode Rth (c) TO-220AB / D2PAK / I2PAK Total Coupling When the diodes 1 and 2 are used simultaneously : ∆ Tj(diode 1) = P(diode1) x Rth(j-c)(Per diode) + P(diode 2) x Rth(c) STATIC ELECTRICAL CHARACTERISTICS (per diode) Value 3 1.
8 0.
6 Unit °C/W Symbol Parameter Tests conditions Min.
Typ.
Max.
Unit IR * Reverse leakage current Tj = 25°C VR = VRRM Tj = 125°C 3.
0 µA 4.
0 mA VF ** Forward voltage drop Tj = 25°C IF = 8 A 0.
92 V Tj = 125°C Tj = 25°C Tj = 125°C IF = 8 A IF = 16 A IF = 16 A 0.
70 0.
75 1 0.
8 0.
86 Pulse test : * tp = 5 ms, δ < 2% ** tp = 380 µs, δ < 2% To evaluate the conduction losses use the following equation: P = 0.
64 x IF(AV) + 0.
014 IF2(RMS) Fig.
1: Average forward power dissipation versus average forward current (per diode).
F...



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