PANJIT CP2500, CP2508, CP2506, CP2504, CP2502 Datasheet

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CP1500, 2500, 3500 SERIES
FEATURE
S
MECHANICAL DATA
MACXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
J
A
CP-25 CP-25
W
HIGH CURRENT SILICON BRIDGE RECTIFIERS
VOLTAGE - 50 to 800 Volts CURRENT - 15 to 35 A mperes
Plastic Case With Heatsink For
Heat Dissipation
Surge Overload Ratings to 400 Amperes
l The plastic package has
Underwriters Laboratory Flammability Classification 94V-O
Case: Molded plastic with heatsink integrally mounted in the bridge Encapsulation Terminals: Plated .25” FASTON
or wire Lead £r40 mils Weight: 1 ounce, 30 grams
Mounting position: Any
Inductive or resistive Load at 60Hz. For capacitive load derate current by 20%. All Ratings are for TC=25 ¢J unless otherwise specified.
-00 -01 -02 -04 -06 -08 UNITS Max Recurrent Peak Reverse Voltage 50 100 200 400 600 800 V Max RMS Input Voltage 35 70 140 280 420 560 V Max DC Blocking Voltage 50 100 200 400 600 800 V DC Output Voltage, Resistive Load 30 62 124 250 380 505 V
DC Output Voltage, Capacitive Load 50 100 200 400 600 800 V Max Average Forward Current for Resistive Load at TC=55
Non-repetitive Peak Forward Surge Current at Rated Load
Max Forward Voltage per Bridge Element at Specified Current
Max Reverse Leakage Current @ TA=25 at Rated DC Blocking Voltage @ TA=100¢J I2t Rating for fusing ( t < 8.3ms ) CP15,CP25 / CP35 374 / 664 A2s Typical Thermal Resistance (Fig. 3) R £c JC 2.0 ¢J/W Operating Temperature Range T
Storage Temperature Range T
¢J
CP15 15 A CP25 25 A CP35 35 A
CP15 300 A CP25 300 A CP35 400 A
CP15 IF 7.5A CP25 12.5A 1.2 V CP35 17.5A
¢J
10
1000
-55 to +150 ¢J
£g
A
RATING AND CHARACTERISTIC CURVES
VFM VOLTS PEA
K
35
30
25
20
15
10
5
0
CASE TEMPERATURE
TC
AMBIENT TEMPERATURE,
TA
AVERAGE OUTPUT CURRENT, AMPERES
A
CP1500 THRU CP3500
1000
100
10
IFM AMPERES PEAK
1.0
.6 .8 1.0 1.2 1.4 1.6 1.8 2.0
Fig. 1-TYPICAL INSTANTANEOUS FORWARD
CHARACTERISTICS AT TJ = 25 ¢J
35
30
25
20
15
10
CP3500
CP2500
CP1500
CP3500
CP2500
CP1500
AVERAGE OUTPUT CURRENT, AMPER5ES
25 60 80 100 120 140 160
¢J
Fig. 2-OUTPUT CURRENT VS. CASE TEMPERATURE
RESISTIVE OR INDUCTIVE LOAD TJ = 175 ¢J
80 60
40 30
20 15
10 8 6
4
AVERAGE OUTPUT CURRENT, AMPERES
5
VERAGE POWER DISSIPATION OF BRIDGE, WATTS
25 40 60 80 100 120 140 160 180
0 5 10 15 20 25 30 35
¢J
Fig. 3-OUTPUT CURRENT VS. AMBIENT
TEMPERATURE RESISTIVE OR INDUCTIVE LOAD
BRIDGE MOUNTED ON A 8"×8" ALUMINUM PLATE 25"
THICK
Fig. 4-POWER DISSIPATION VS. AVERAGE OUTPUT
CURRENT RESISTIVE OR INDUCTI VE LOAD,
TJ = 175¢J
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