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STPS30L60CRSTN/a12990avaiPOWER SCHOTTKY RECTIFIER
STPS30L60CTN/a41avaiPOWER SCHOTTKY RECTIFIER
STPS30L60CT.. |STPS30L60CTSTN/a47avaiPOWER SCHOTTKY RECTIFIER
STPS30L60CWST N/a1670avai60V 30A Schottky Discrete Diode in a TO-247AC package


STPS30L60CR ,POWER SCHOTTKY RECTIFIERFEATURES AND BENEFITSA1TO-247n NEGLIGIBLE SWITCHING LOSSES TO-220ABSTPS30L60CWSTPS30L60CTn LOW FORW ..
STPS30L60CT ,POWER SCHOTTKY RECTIFIERFEATURES AND BENEFITSA1TO-247n NEGLIGIBLE SWITCHING LOSSES TO-220ABSTPS30L60CWSTPS30L60CTn LOW FORW ..
STPS30L60CT.. ,POWER SCHOTTKY RECTIFIER®STPS30L60CW/CT/CG/CRPOWER SCHOTTKY RECTIFIERA1MAIN PRODUCT CHARACTERISTICSKA2I 2x15AF(AV)V 60 VRRM ..
STPS30L60CW ,60V 30A Schottky Discrete Diode in a TO-247AC package®STPS30L60CW/CT/CG/CRPOWER SCHOTTKY RECTIFIERA1MAIN PRODUCT CHARACTERISTICSKA2I 2x15AF(AV)V 60 VRRM ..
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T1190NL , TELECOMMUNICATIONS PRODUCTS
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STPS30L60CR-STPS30L60CT-STPS30L60CT..-STPS30L60CW
POWER SCHOTTKY RECTIFIER
STPS30L60CW/CT/CG/CR
March 2001- Ed:2B
POWER SCHOTTKY RECTIFIER
Dual center tap Schottky rectifiers suited for
Switched Mode Power Supplies and high
frequency DC to DC converters. Packagedin
TO-220,D2 PAK,I2 PAK and TO-247 this deviceis
intendedfor usein high frequency inverters.
DESCRIPTION
NEGLIGIBLE SWITCHING LOSSES LOW FORWARD VOLTAGE DROP LOW THERMAL RESISTANCE
FEATURES AND BENEFITS
ABSOLUTE RATINGS
(limiting values, per diode)
MAIN PRODUCT CHARACTERISTICS
dPtot
dTj Rthj a< − thermal runaway conditionfora diodeonits own heatsink
STPS30L60CW/CT/CG/CR
Pulse test:*tp= 380 μs,δ <2% evaluate the maximum conduction losses use the following equation:
P=0.42xIF(AV)+ 0.009IF2 (RMS)
STATIC ELECTRICAL CHARACTERISTICS
(per diode)
THERMAL RESISTANCES
2 4 6 8 101214 1618200
PF(av)(W)
Fig.1:
Average forward power dissipation versus
average forward current (per diode). 25 50 75 100 125 1500 IF(av)(A)
Fig.2:
Average forward current versus ambient
temperature(δ= 0.5, per diode).
When the diodes1 and2 are used simultaneously:Δ Tj(diode1)= P(diode1)x Rth(j-c)(Per diode)+ P(diode2)x Rth(c)
STPS30L60CW/CT/CG/CR 5 10 15 20 25 30 35 40 45 50 55 601E-2
1E-1
1E+0
1E+1
1E+2
5E+2 IR(mA)
Fig.5:
Reverse leakage current versus reverse
voltage applied (typical values, per diode).
0.00 0.25 0.50 0.75 1.00 1.25 1.50 1.75 2.00 2.25 2.501
200 IFM(A)
Fig. 7:
Forward voltage drop versus forward
current (maximum values, per diode). 10 1000.1
C(nF)
Fig. 6: Junction capacitance versus reverse
voltage applied (typical values, per diode).
1E-4 1E-3 1E-2 1E-1 1E+00.0
1.0 Zth(j-c)/Rth(j-c)
Fig.4:
Relative variationof thermal impedance
junctionto case versus pulse duration.
1E-3 1E-2 1E-1 1E+00
250 IM(A)
Fig. 3:
Non repetitive surge peak forward
current versus overload duration (maximum
values, per diode). 4 8 12 16 20 24 28 32 36 400
Rth(j-a) (°C/W)
Fig.8:
Thermal resistance junctionto ambient ver-
sus copper surface under tab forD2 PAK (Epoxy
printed circuit board FR4, copper thickness: 35μm)
STPS30L60CW/CT/CG/CR
PACKAGE MECHANICAL DATA
2 PAK
FOOTPRINT
STPS30L60CW/CT/CG/CR
PACKAGE MECHANICAL DATA

TO-220AB
PACKAGE MECHANICAL DATA
2 PAK

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