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DSS6-0045AS

IXYS
Part Number DSS6-0045AS
Manufacturer IXYS
Description Power Schottky Rectifier
Published Apr 24, 2016
Detailed Description Power Schottky Rectifier DSS 6-0045AS IFAV = 6 A VRRM = 45 V VF = 0.5 V VRSM V 45 VRRM V 45 Type DSS 6-0045AS marki...
Datasheet PDF File DSS6-0045AS PDF File

DSS6-0045AS
DSS6-0045AS


Overview
Power Schottky Rectifier DSS 6-0045AS IFAV = 6 A VRRM = 45 V VF = 0.
5 V VRSM V 45 VRRM V 45 Type DSS 6-0045AS marking on product 6Y045AS A C TO-252 AA A A C (TAB) A = Anode, C = Cathode , TAB = Cathode Symbol IFRMS IFAV IFSM EAS IAR (dv/dt)cr TVJ TVJM Tstg Ptot Weight Symbol IR VF RthJC Conditions Maximum Ratings TC = 165°C; rectangular, d = 0.
5 TVJ = 45°C; tp = 10 ms (50 Hz), sine IAS = 13 A; L = 180 µH; TVJ = 25°C; non repetitive VA =1.
5 • VRRM typ.
; f=10 kHz; repetitive 20 6 80 24 1.
3 1000 A A A mJ A V/µs -55.
.
.
+175 175 -55.
.
.
+150 °C °C °C TC = 25°C typical 50 W 0.
3 g Conditions TVJ = 25°C VR = VRRM TVJ = 125°C VR = VRRM IF = 6 A; IF = 6 A; IF = 12 A; TVJ = 125°C TVJ = 25°C TVJ = 125 °C Characteristic Values typ.
max.
0.
3 mA 2.
5 mA 0.
50 V 0.
63 V 0.
59 V 3.
0 K/W Features • International standard package • Very low VF • Extremely low switching losses • Low I -values RM • Epoxy meets UL 94V-0 Applications • Rectifiers in switch mode power supplies (SMPS) • Free wheeling diode in low voltage converters Advantages • High reliability circuit operation • Low voltage peaks for reduced protection circuits • Low noise switching • Low losses Dimensions see Outlines.
pdf Pulse test: Pulse Width = 5 ms, Duty Cycle < 2.
0 % Data according to IEC 60747 and per diode unless otherwise specified IXYS reserves the right to change limits, Conditions and dimensions.
1-2 © 2003 IXYS All rights reserved 328 DSS 6-0045AS 100 A IF 10 TVJ = 175°C 150°C 125°C 25°C 1 .
0 0.
2 0.
4 0.
6 0.
8 V 1.
0 VF Fig.
1 Maximum forward voltage drop characteristics 25 A 20 IF(AV) 15 d = 0.
5 DC 10 5 100 mA 10 IR TVJ=175°C 1 150°C 125°C 0.
1 100°C 0.
01 75°C 50°C 0.
001 25°C 0.
0001 0 10 20 30 40 V 50 VR Fig.
2 Typ.
value of reverse current IR versus reverse voltage VR 14 W 12 P(AV) 10 8 d= DC 6 0.
5 0.
33 0.
25 4 0.
17 0.
08 2 0 0 50 100 150 °C 200 TC Fig.
4 Average forward current IF(AV) versus case temperature TC 0 0 5 10 15 IF(AV) Fig.
5 Forward power loss characteristics A 10 ...



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