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DF2005S Datasheet, PDF (1/2 Pages) HY ELECTRONIC CORP. – SURFACE MOUNT GLASS PASSIVATED BRIDEG RECTIFIERS
DF2005S thru DF210S
SURFACE MOUNT
GLASS PASSIVATED
BRIDEG RECTIFIERS
REVERSE VOLTAGE - 50 to 1000Volts
FORWARD CURRENT - 2.0 Amperes
FEATURES
●Rating to 1000V PRV
●Ideal for printed circuit board
●Low forward voltage drop,high current capability
●Reliable low cost construction utilizing molded plastic
technique results in inexpensive product
●Lead tin Pb/Sn copper
●The plastic material has UL flammability
classification 94V-0
MECHANICAL DATA
●Polarit:As marked on Body
●Weight:0.02 ounces,0.38 gras
●Mounting position:Any
DFS
.047(1.2)
.037(0.95)
.031(0.8)
.023(0.6)
.256(6.5)
.244(6.2)
.063(1.6)
.055(1.4)
.323(8.2)
.315(8.0)
.205(5.2)
.197(5.0)
.335(8.5)
.307(7.8)
.406(10.3)
.391(10.0)
.140(0.35)
.008(0.2)
.102(2.6)
.089(2.2)
Dimensions in inches and (millimeters)
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
Rating at 25℃ ambient temperature unless otherwise specified.
Single phase, half wave ,60Hz, resistive or inductive load.
For capacitive load, derate current by 20%
CHARACTERISTICS
Maximum Recurrent Peak Reverse Voltage
SYMBOL
VRRM
DF
2005S
50
DF
201S
100
DF
202S
200
DF
204S
400
DF
206S
600
DF
208S
800
DF
210S
1000
Maximum RMS Voltage
VRMS
35
70
140
280
420
560
700
Maximum DC Blocking Voltage
VDC
50
100
200
400
600
800
1000
Maximum Average Forward
I(AV)
2.0
Rectified Current
@TA=40℃
Peak Forward Surage Current
8.3ms Single Half Sine-Wave
IFSM
60
Super Imposed on Rated Load (JEDEC .Method)
Maximum Forward Voltage at 2.0A DC
VF
1.1
Maximum DC Reverse Current @TJ=25℃
10
IR
at Rated DC Blocking Voltage @TJ=125℃
500
I2t Rating for Fusing (t<8.3ms)
I2t
10.4
Typical Junction capacitance Per Element(Note1)
CJ
25
Typical Thermal Resistance (Note2)
RθJC
40
Operating Temperature Range
TJ
-55 to +150
Storage Temperature Range
TSTG
-55 to +150
Note:1.Measured at 1.0MHz and applied reverse voltage of 4.0V DC
2.Thermal resistance from junction to ambient mounted on P.C.B
with 0.5*0.5"(13*13mm) copper pads.
UNIT
V
V
V
A
A
V
uA
A2s
pF
℃/W
℃
℃
~ 237 ~