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STPR620CT-STPR620CT.-STPR620CT.. Fast Delivery,Good Price
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STPR620CTSTN/a820avaiULTRA FAST RECOVERY RECTIFIER DIODES
STPR620CT. |STPR620CTSTN/a100avaiULTRA FAST RECOVERY RECTIFIER DIODES
STPR620CT.. |STPR620CTSTN/a50avaiULTRA FAST RECOVERY RECTIFIER DIODES


STPR620CT ,ULTRA FAST RECOVERY RECTIFIER DIODESFEATURES A1n Suited for SMPSn Low lossesTO-220AB ISOWATT220ABn Low forward and reverse recovery tim ..
STPR620CT. ,ULTRA FAST RECOVERY RECTIFIER DIODESapplications.ABSOLUTE MAXIMUM (limiting values)Symbol Parameter Value UnitV Repetitive peak reverse ..
STPR620CT.. ,ULTRA FAST RECOVERY RECTIFIER DIODES®STPR620CT/CF/CFPULTRA FAST RECOVERY RECTIFIER DIODESMAIN PRODUCT CHARACTERISTICSA1I 2x3AF(AV)KA2V ..
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STPR620CT-STPR620CT.-STPR620CT..
ULTRA FAST RECOVERY RECTIFIER DIODES
STPR620CT/CF/CFP
ULTRA FAST RECOVERY RECTIFIER DIODES Suitedfor SMPS Low losses Low forward and reverse recovery time High surge current capability Insulated packages:
ISOWATT220AB/ TO-220FPAB
Insulation voltage= 2000V DC
Capacitance= 12pF
FEATURES
ABSOLUTE MAXIMUM
(limiting values)
Low cost dual center tap rectifier suited for
Switched Mode Power Supplies and high fre-
quency DCto DC converters.
Packaged in TO-220AB, TO-220FPAB and
ISOWATT220AB, this deviceis intended for use low voltage, high frequency inverters, free
wheeling and polarity protection applications.
DESCRIPTION
MAIN PRODUCT CHARACTERISTICS
STPR620CT/CF/CFP
Pulsetest:
*tp=5ms, δ<2%tp=380μs,δ <2%
ELECTRICAL CHARACTERISTICS
STATIC CHARACTERISTICS
evaluate the conduction losses use the following equation:
P=0.78xIF(AV)+ 0.070xIF2 (RMS)
RECOVERY CHARACTERISTICS

When the diodes1 and2 are used simultaneously: Tj(diode1)= P(diode1)x Rth(j-c) (Per diode)+ P(diode2)x Rth(c)
THERMAL RESISTANCES
Fig.2:
Peak current versus form factor (Per diode).Fig.1: Average forward power dissipation versus
average forward current (Per diode).
STPR620CT/CF/CFP
Fig. 3:
Average current versus ambient tempera-
ture.(duty cycle: 0.5) (TO-220AB)
Fig.5:
Non repetitive surge peak forward current
versus overload duration (Maximum values) (Perdi-
ode) (TO-220AB).
Fig.7:
Relative variationof thermal transient im-
pedance junctionto case versus pulse duration
(Per diode) (TO-220AB).
Fig. 4:
Average current versus ambient temperature.
(duty cycle: 0.5) (ISOWATT220AB/ TO-220FPAB)
Fig.6:
Non repetitive surge peak forward current
versus overload duration (Maximum values) (Per
diode) (ISOWATT220AB/ TO-220FPAB).
Fig.8:
Relative variationof thermal transient im-
pedance junctionto case versus pulse duration
(Per diode) (ISOWATT220AB/ TO-220FPAB).
STPR620CT/CF/CFP
Fig. 10:
Junction capacitance versus reverse
voltage applied (Typical values) (Per diode).
Fig. 11:
Recovery charges versus dIF/dt (Per
diode).
Fig. 13:
Dynamic parameters versus junction
temperature (Per diode).
Fig. 12:
Peak reverse current versus dIF/dt (Per
diode).
Fig.9:
Forward voltage drop versus forward
current. (Maximum values) (Per diode).
STPR620CT/CF/CFP
PACKAGE MECHANICAL DATA

ISOWATT220AB (JEDEC outline)
STPR620CT/CF/CFP
PACKAGE MECHANICAL DATA

TO-220FPAB Cooling method:by conduction (C) Recommended torque value (ISOWATT220AB, TO-220FPAB): 0.55 Nm Maximum torque value (ISOWATT220AB, TO-220FPAB): 0.7 Nm Recommended torque value (TO-220AB): 0.8 Nm Maximum torque value (TO-220AB): 1.0 Nm Epoxy meets UL94,V0
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