SCHOTTKY BARRIER RECTIFIER
VOLTAGE RANGE 20 to 200 Volts CURRENT 16.0 Ampere
FEATURES
* * * * * * * * * * * *
SR1620C T HRU SR16200C
Low switching noise Low forward voltage drop Low thermal resistance High current capability High switching capability High surge capabitity High reliability
.108 ( 2.75 ) .413 ( 10.5 ) .374 ( 9.5 ) .153 ( 3.9 ) .146 ( 3.7 )
TO-220
.187 ( 4.7 ) .148 ( 3.8 ) .053 ( 1.3 ) .047 ( 1.2 ) .270 ( 6.9 ) .230 ( 5.8 ) .610 ( 15.5 ) .583 ( 14.8 )
MECHANICAL DATA
C ase: To-220 molded plastic Epoxy: Device has U L flammability classification 9 4V-O Lead: MIL-STD-202E method 208C guaranteed Mounting position: Any Weight: 2. 24 g rams
PIN 123
.157 ( 4.0 ) .051 ( 1.3 ) .583 (14.8 ) .531( 13.5 )
MAXIMUM RA TINGS AND ELECTRICAL CHARACTERISTICS
Ratings at 25 o C ambient temperature unless otherwise specified. Single phase, half wave, 60 Hz, resistive or inductive load. For capacitive load, derate current by 20%.
.035 (0.9) .028 ( 0.7 ) .102 ( 2.6 ) .091 ( 2.3 )
PIN 1 PIN 3 PIN 2 HEATSINK
.028 ( 0.7 ) .012 ( 0.3 ) .126 ( 3.2 )
Dimensions in inches and (millimeters) MAXIMUM RAT INGS (@ TA=25 OC unless otherwise noted) R ATINGS Maximum Recurrent Peak Reverse Voltage Maximum RMS Voltage Maximum DC Blocking Voltage Maximum Average Forward Rectified Current at Derating C ase Te mperature Peak Forward Surge Current 8.3 ms single half sine-wave superimposed on rated load (JEDEC method) Typical Thermal Resistance (Note 1) Typical Junction Capacitance (Note 3) Operating Te mperature Ran g e Storage Temperature R an g e SYMBOL VRRM VRMS VDC IO I FSM R qJC R qJA CJ TJ T STG 700 150 -55 to + 150
SR1620C SR1630C SR1635C SR1640C SR1645C SR1650C SR1660C SR1680C SR16100C SR16150C SR16200C
UNITS Volts Volts Volts Amps Amps
0
20 14 20
30 21 30
35 25 35
40 28 40
45 32 45
50 35 50 16.0 150 2.0 40
60 42 60
80 56 80
100 70 100
150 105 150
200 140 200
C/W pF
0 0
500
C C
E LECTRICAL CHARACTERISTICS (@TA=25 OC unless otherwise noted) CHARACTERISTICS Maximum Instantaneous Forward Voltage at 8.0A DC Maximum Average Reverse Current at Rated DC Blocking Voltage NOTES : 1 . 2. 3. 4. @T A = 2 5 o C @T A = 1 00 o C SYMBOL VF IR
SR1620C SR1630C SR1635C SR1640C SR1645C SR1650C SR1660C SR1680C SR16100C SR16150C SR16200C UNITS
.65
.75 0.2 2
.85
Volts mA mA 2008-11 REV: A
Thermal Resistance : Heat-sink mounted. Suffix “A” = Common Anode. Measured at 1 MHz and applied reverse voltage of 4.0 volts. "Fully ROHS compliant", "100% Sn plating (Pb-free)".
RATING AND CHARACTERISTICS CURVES ( SR1620C THRU SR16200C )
24 20 16
SR1
INSTANTANEOUS FORWARD CURRENT, (mA)
AVERAGE FORWARD CURRENT, (A)
10
TA = 125 OC
1.0
12 8 4 0
Single Phase Half Wave 60Hz Inductive or Resistive Load
650
0.1
TA = 25 C
O
T A = 7 5 OC
SR 16 20 SR C~ 16 40
C ~S R16 200 C
0.01
T A = 2 5 OC SR1620C ~SR1640C SR1650C~SR1660C SR1680C~SR16200C
C
0
50
100
O
150
0.001
0
20
40
60
80
100
120
140
CASE TEMPERATURE, ( C)
PERCENT OF RATED PEAK REVERSE VOLTAGE, (%)
INSTANTANEOUS REVERSE CURRENT, (A)
CJ, JUNCTION CAPACITANCE, (nF)
50
FIG.1 TYPICAL FORWARD CURRENT DERATING CURVE
SR1620C ~SR1640C
4 2 1 0.8 0.6 0.4 0.2 0.1 0.1
FIG.2 TYPICAL REVERSE CHARACTERISTICS
T J = 2 5 OC
10
SR1680C ~SR16200C
SR
1.0
SR1650C ~SR1660C TJ = 25 C Pulse width=300mS 1% Duty Cycle
O
SR
16
20
16
50
C~
C~ SR
SR
16
45
16
C
20
0C
0.1
0
0.2
0.4
0.6
0.8
1.0
1.2
1.4
1.6
1.8
0.4
1.0
4
10
40
80 100
INSTANTANEOUS FORWARD VOLTAGE, (V)
REVERSE VOLTAGE, (V)
FIG.3 TYPICAL INSTANTANEOUS FORWARD CHARACTERISTICS
PEAK FORWARD SURGE CURRENT, (A)
FIG.4 TYPICAL JUNCTION CAPACITANCE
150 125 100 75 50 25 0 1
8.3mS Single Half Sine-Wave JEDEC Method
2
5
10
20
50
100
NUMBER OF CYCLES AT 60Hz
FIG.5 MAXIMUM NON-REPETITIVE FORWARD SURGE CURRENT
DISCLAIMER NOTICE
Rectron Inc reserves the right to make changes without notice to any product specification herein, to make corrections, modifications, enhancements or other changes. Rectron Inc or anyone on its behalf assumes no responsibility or liability for any errors or inaccuracies. Data sheet specifications and its information contained are intended to provide a product description only. "Typical" parameters which may be included on RECTRON data sheets and/ or specifications can and do vary in different applications and actual performance may vary over time. Rectron Inc does not assume any liability arising out of the application or use of any product or circuit. Rectron products are not designed, intended or authorized for use in medical, life-saving implant or other applications intended for life-sustaining or other related applications where a failure or malfunction of component or circuitry may directly or indirectly cause injury or threaten a life without expressed written approval of Rectron Inc. Customers using or selling Rectron components for use in such applications do so at their own risk and shall agree to fully indemnify Rectron Inc and its subsidiaries harmless against all claims, damages and expenditures.
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