
Average Forward Rectified Current...I
F(av)
T
A = 40°C
Non-Repetitive Peak Forward Surge Current...I
FSM
8.3 mS Single ½ Sine Wave Imposed on Rated Load
Point Rating for Fusing...(T < 8.3 mS)
Forward Voltage...V
F
Bridge Element @ 1.0 Amp
DC Reverse Current...I
R
@ Rated DC Blocking Voltage
T
J =25°C
T
J =125°C
T
C = 25°C
Operating & Storage Temperature Range...T
J, TSTRG
Description
Features
n COMPACT SIZE
n LOW LEAKAGE CURRENT
n 50 AMP SURGE OVERLOAD RATING
Mechanical Dimensions
n UNDERWRITERS LABORATORIES
RECOGNIZED
n MEETS UL SPECIFICATION 94V-0
Electrical Characteristics @ 25oC.
Maximum Ratings
RDF005 . . . 08 Series
Data Sheet
1.0 Amp FAST RECOVERY
SINGLE PHASE SILICON BRIDGE
Units
Volts
Volts
Volts
............................................. 1.0 ...............................................
............................................. 50 ...............................................
............................................. 5.0 ...............................................
............................................. 1.3 ...............................................
............................................. 10 ...............................................
............................................. 1.0 ...............................................
............................................. 40 ...............................................
......................................... -55 to 150 ..........................................
Amps
Amps
A2S
Volts
µA
mA
nS
°C/W
°C
RDF005
RDF01
RDF02
RDF04
RDF06
RDF08
50
100
200
400
600
800
35
70
140
280
420
560
50
100
200
400
600
800
Peak Repetitive Reverse Voltage...V
RRM
RMS Reverse Voltage...V
R(rms)
DC Blocking Voltage...V
DC
Mechanical Data: Terminal Leads - Solderable per Mil Std. 202. Polarity - Molded
on Case. Mounting Position - Any. Weight - 0.04 Ounces, 1 Gram.
Add Suffix S for SMD.
Example: RDF-04MS = 400V/1 Amp SMD Part
200
200
200
350
350
350
Page 3-5
AC
AC
Reverse Recovery Time...t
RR (Note 1)
Typical Thermal Resistance...R
θJC