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FE1D

EIC

SUPER FAST RECTIFIERS - EIC


FE1D
FE1D

PDF File FE1D PDF File



Description
TH97/10561QM TW00/17276EM IATF 0060636 SGS TH07/1033 FE1A ~ FE1G SUPER FAST RECTIFIERS PRV : 50 - 400 Volts Io : 1.
0 Amperes FEATURES : * Superfast recovery time for high efficiency * High surge current capability * High current capability * Low leakage current * Low forward voltage drop * Pb / RoHS Free MECHANICAL DATA : * Case : DO-41 Molded plastic * Epoxy : UL94V-O rate flame retardant * Lead : Axial lead solderable per MIL-STD-202, Method 208 guaranteed * Polarity : Color band denotes cathode end * Mounting position : Any * Weight : 0.
335 gram DO - 41 0.
108 (2.
74) 0.
078 (1.
99) 0.
034 (0.
86) 0.
028 (0.
71) 1.
00 (25.
4) MIN.
0.
205 (5.
20) 0.
161 (4.
10) 1.
00 (25.
4) MIN.
Dimensions in inches and ( millimeters ) MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS Rating at 25 °C ambient temperature unless otherwise specified.
RATING Maximum Repetitive Peak Reverse Voltage Maximum Reverse Voltage Maximum Average Forward Current, R-load, Ta = 75 °C Maximum Repetitive Peak Forward Current, f > 15 Hz ( Note 1 ) Peak Forward Surge Current , 60 Hz half sine- wave Maximum Forward Voltage at IF = 1 A Maximum Reverse Current at VR = VRRM, TJ = 25 °C at VR = VRRM, TJ = 100 °C Maximum Reverse Recovery Time ( Note 2 ) Thermal Resistance Junction to Ambient Thermal Resistance Junction to Lead Operating Junction Temperature Range Storage Temperature Range SYMBOL FE1A FE1B FE1D FE1F FE1G UNIT VRRM VR IF(AV) IFRM IFSM VF IR IR(H) Trr 50 100 200 300 400 V 50 100 200 300 400 V 1.
0 A 10 A 30 A 0.
95 1.
25 V 2.
0 μA 50 50 ns RӨJA RӨJL TJ TSTG 45 15 - 50 to + 175 - 50 to + 175 K/W K/W °C °C Notes : (1) Valid, if leads are kept at ambient temperature at a distance of 10 mm from case.
(2) Reverse Recovery Test Conditions : IF = 0.
5 A, IR = 1.
0 A, Irr = 0.
25 A.
Page 1 of 2 Rev.
00 : March 6, 2008 AVERAGE FORWARD CURRENT, (A) TH97/10561QM TW00/17276EM IATF 0060636 SGS TH07/1033 RATING AND CHARACTERISTIC CURVES ( FE1A ~ FE1G ) FIG.
1 - FORWARD CURRENT DERATING CURVE 1.
...



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