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HS2XA Datasheet, PDF (1/2 Pages) HY ELECTRONIC CORP. – SURFACE MOUNT HIGH EFFICIENCY (ULTRA FAST) GLASS PASSIVATED RECTIFIERS
SURFACE MOUNT
HIGH EFFICIENCY (ULTRA FAST)
GLASS PASSIVATED RECTIFIERS
FEATURES
● Low cost
● Diffused junction
● Ultra fast switching for high efficiency
● Low reverse leakage current
● Low forward voltage drop
● High current capability
● The plastic material carries UL recognition 94V-0
MECHANICAL DATA
●Case: Molded Plastic
●Polarity: lndicated by cathode band
●Weight: 0.002 ounces,0.064 grams
●Mounting position: Any
HS2XA / UF2XA SERIES
REVERSE VOLTAGE - 50 to 1000 Volts
FORWARD CURRENT - 2.0 Amperes
SMA
.062(1.60)
.055(1.40)
.181(4.60)
.157(4.00)
.103(2.62)
.079(2.00)
.060(1.52)
.030(0.76)
.208(5.28)
.188(4.80)
.114(2.90)
.098(2.50)
.012(.305)
.006(.152)
.008(.203)
.002(.051)
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
HS2AA HS2BA HS2DA HS2GA HS2JA
SYMBOL
UF2AA UF2BA UF2DA UF2GA UF2JA
Maximum Recurrent Peak Reverse Voltage
VRRM
50
100
200
400
600
Maximum RMS Voltage
VRMS
35
70
140
280
420
Maximum DC Blocking Voltage
Maximum Average Forward
Rectified Current
Peak Forward Surge Current
@TA =55 ℃
8.3ms Single Half Sine-Wave
Super Imposed on Rated Load(JEDEC Method)
Peak Forward Voltage at 2.0A DC
Maximum DC Reverse Current
at Rated DC Blocking Voltage
@TJ=25℃
@TJ=100℃
Maximum Reverse Recovery Time(Note 1)
VDC
50
100
200
400
600
I(AV)
2.0
IFSM
VF
IR
TRR
60
1.0
1.3
5.0
100
50
Typical Junction Capacitance (Note2)
CJ
50
Typical Thermal Resistance (Note3)
RθJA
25
Operating Temperature Range
TJ
-55 to +150
Storage Temperature Range
TSTG
-55 to +150
NOTES: 1.Measured with IF=0.5A,IR=1A ,IRR=0.25A
2.Measured at 1.0 MHz and applied reverse voltage of 4.0V DC
3.Thermal resistance junction to ambient
~ 108 ~
HS2KA
UF2KA
800
560
800
1.7
75
30
HS2MA
UF2MA
1000
700
1000
UNIT
V
V
V
A
A
V
μA
nS
pF
℃/W
℃
℃