SR520-SR5200
5.0 AMP. Schottky Barrier Rectifiers
DO-201AD/DO-27
Features
Low power loss, high efficiency.
High current capability, Low VF.
High reliability
High surge current capability.
Epitaxial construction.
Guard-ring for transient protection.
For use in low voltage, high frequency
inventor, free wheeling, and polarity
protection application
Mechanical Data
Cases: DO-201AD/DO-27 molded plastic
Polarity: Color band denotes cathode
Higho temperature soldering guaranteed:
260 C/10 seconds/.375”,(9.5mm) lead
lengths at 5 lbs., (2.3kg) tension
Weight: 1.2 grams
Dimensions in inches and (millimeters)
Maximum
Ratings and Electrical Characteristics
o
Rating at 25 C ambient temperature unless otherwise specified.
Single phase, half wave, 60 Hz, resistive or inductive load.
For capacitive load, derate current by 20%
Symbol
Type Number
VRRM
VRMS
VDC
Maximum Recurrent Peak Reverse Voltage
Maximum RMS Voltage
Maximum DC Blocking Voltage
SR SR SR SR SR SR SR SR Units
520 530 540 550 560 590 5100 5200
20
14
20
30
21
30
40
28
40
50
35
50
60
42
60
90
63
90
100 200
70 140
100 200
V
V
V
Maximum Average Forward Rectified Current
See Fig. 1
I(AV)
5.0
A
Peak Forward Surge Current, 8.3 ms Single Half
Sine-wave Superimposed on Rated Load
(JEDEC method )
IFSM
120
A
Maximum Instantaneous Forward Voltage
@5.0A
Maximum D.C. Reverse Current
at Rated DC Blocking Voltage
VF
@ TA=25 C
o
@ TA=125 C
Typical Junction Capacitance (Note 2)
Typical Thermal Resistance (Note 1)
Operating Junction Temperature Range
Revision:20170301-P1
IR
Cj
RθJA
RθJC
TJ
TSTG
Storage Temperature Range
Notes:
0.55
o
0.70
0.5
15
250
10
210
35
2
-65 to +150
-65 to +150
0.85
0.1
5.0
120
10
2
V
mA
mA
pF
1.0
o
C/W
o
C
C
o
1. Mount on Cu-Pad Size 5mm x 5mm on P.C.B.
2. Measured at 1 MHz and Applied Reverse Voltage of 4.0V D.C.
ht t p : //
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SR520-SR5200
5.0 AMP. Schottky Barrier Rectifiers
RATINGS AND CHARACTERISTIC CURVES
SR
S
4
55
0
SR
20
0-
R5
52
0-S
SR
3
54
0
2
SINGLE PHASE
HALF WAVE 60Hz
RESISTIVE OF
INDUCTIVE LOAD
1
250
200
20
40
60
80
100
120
8.3ms Single Half Sine Wave
JEDEC Method
150
100
50
0
0
FIG.2- MAXIMUM NON-REPETITIVE FORWARD
SURGE CURRENT
300
PEAK FORWARD SURGE CURRENT. (A)
AVERAGE FORWARD CURRENT. (A)
5
FIG.1- MAXIMUM FORWARD CURRENT DERATING
CURVE
1
150
2
5
10
20
NUMBER OF CYCLES AT 60Hz
o
LEAD TEMPERATURE. ( C)
100
FIG.4- TYPICAL REVERSE CHARACTERISTICS
FIG.3- TYPICAL FORWARD CHARACTERISTICS
10
Tj=125 0C
1.0
SSR
0.1
0
55
-S
R5
60
SSR
0
59
-S
R5
10
0
SSR
52
00
Tj=25oC
Pulse Width=300 s
1% Duty Cycle
.2
.3
.4
.5
.6
.7
.8
.9
FORWARD VOLTAGE. VOLTS
INSTANTANEOUS REVERSE CURRENT. (mA)
52
0-
SR
54
0
10
SSR
INSTANTANEOUS FORWARD CURRENT. (A)
40
50
Tj=75 0C
1
Tj=25 0C
FIG.5- TYPICAL JUNCTION CAPACITANCE
700
SR
550
SR
S
300
SR520-540
SR550-5200
-SR
520
560
-SR
0.1
540
Tj=25 0C
100
80
60
SR5
S
90-S
R52
00
100
40
20
10
.1
.4
1.0
4
10
REVERSE VOLTAGE. (V)
40
80 100
TRANSIENT THERMAL IMPEDANCE. (OC/W)
JUNCTION CAPACITANCE.(pF)
500
ht t p : //
20
40
60
80
100
120
140
PERCENT OF RATED PEAK REVERSE VOLTAGE. (%)
FIG.6- TYPICAL TRANSIENT THERMAL
CHARACTERISTICS
10
1
0.1
Revision:20170301-P1
0
0.01
0.1
1
10
T, PULSE DURATION. (sec)
www.lgesemi .c o m
100
mail:lge@lgesemi.com
Version: A06
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