KBPC2502N [YEASHIN]

VOLTAGE RANGE 50 to 1000 Volts CURRENT 25 Ampere; 电压范围50到1000伏特电流25安培
KBPC2502N
型号: KBPC2502N
厂家: Yea Shin Technology Co., Ltd    Yea Shin Technology Co., Ltd
描述:

VOLTAGE RANGE 50 to 1000 Volts CURRENT 25 Ampere
电压范围50到1000伏特电流25安培

文件: 总2页 (文件大小:398K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
DATA SHEET  
SEMICONDUCTOR  
KBPC25005N THRU KBPC2510N  
VOLTAGE RANGE 50 to 1000 Volts  
CURRENT 25 Ampere  
BR35N Unit: inch(mm)  
FEATURES  
Low cost  
This series is UL recognized under component  
index, file number E127707  
High forward surge current capability  
Integrally molded heatsink provide  
very low thermal resistance.  
High isolation voltage from case to lugs.  
High temperature soldering guaranteed:  
260/10 second, at 5 lbs. (2.3kg) tension.  
High temperature soldering : 260OC / 10 seconds at terminals  
Pb free product at available : 99% Sn above meet RoHS  
environment substance directive request  
MECHANICAL DATA  
Case: Molded plastic body, suffic "N" for thinner type  
Terminal: Plated 0.25" (6.35mm) lug.  
Polarity: Polarity symbols marked on case.  
Mounting: Thru hole for #10 screw, 20 in,- lbs. Torqute Max.  
Weight: 0.55 ounce, 15.6gram(KBPC25N)  
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS  
Ratings at 25ambient temperature unless otherwise specified  
Single phase, half wave, 60Hz, resistive or inductive load.  
For capacitive load derate current by 20%  
KBPC KBPC KBPC KBPC KBPC KBPC KBPC  
SYMBOLS  
UNIT  
25005N 2501N 2502N 2504N 2506N 2508N 2510N  
Maximum Repetitive Peak Reverse Voltage  
Maximum RMS Voltage  
VRRM  
50  
35  
50  
100  
70  
200  
140  
200  
400  
280  
400  
600  
420  
600  
800  
560  
800  
1000 Volts  
700 Volts  
VRMS  
VDC  
Maximum DC Blocking Voltage  
100  
1000 Volts  
Amps  
Maximum Average Forward Rectified Output  
Current, at TC = 50_ (Note 1, 2)  
I(AV)  
IFSM  
25  
Peak Forward Surge Current  
8.3ms single half sine - wave superimposed on  
rated load (JEDEC method )  
300  
Amps  
Rating for Fusing (t<8.3ms)  
I2t  
373  
1.1  
10  
A2s  
Volts  
μA  
Maximum Instantaneous Forward Voltage Drop  
per bridge element at 12.5A  
VF  
TA = 25  
TA =100℃  
Maximum DC Reverse Current at rate  
DC blocking voltage per element  
IR  
1.0  
2500  
mA  
VAC  
/W  
Isolation Voltage from case to lugs  
Typical Thermal Resistance (Note 1,2)  
Operating Temperature Range  
Storage Temperature Range  
VISO  
RθJC  
TJ  
2.0  
(-65 to +150)  
(-65 to +150)  
TSTG  
1. Unit mounted on 5" X 6" X 4.9" (12.8cm X 15.2cm X 12.4cm)Al. finned Plate.  
2. Bolt down on heat-sink with silicon thermal compound between bridge and mounting sutfae for maximum heat  
transfer efficiency with # 10 screw.  
http://www.yeashin.com  
1
REV.02 20120305  
DEVICE CHARACTERISTICS  
KBPC25005N THRU KBPC2510N  
FIG.1-DERATING CURVE FOR  
FIG.2-MAXIMUM NON-REPETITIVE PEAK  
OUTPUT RECTIFIED CURRENT  
FORWARD SURGE CURRENT PER ELEMENT  
30  
Heat Sink Mounting  
5"x 6"x 4.9" Thick  
300  
8.3ms Single Half Sine-Wave  
Tj  
(12.8 x 15.2 x 12.4cm)  
AL.Finned Plate  
(JEDEC Method)  
=T  
j max  
20  
200  
Single Phase  
Half Wave 60Hz  
10  
Inductive or Resistive  
Load  
100  
1 Cycle  
0
175  
0
50  
75  
125  
150  
25  
100  
0
100  
1
10  
CASE TEMPERATURE, ( C)  
NUMBER OF CYCLES AT 60 Hz  
FIG.3-TYPICAL FORWARD CHARACTERISTICS  
FIG.4-TYPICAL REVERSE  
CHARACTERISTICS  
PER BRIDGE ELEMENT  
PER BRIDGE ELEMENT  
100  
100  
Tj =100  
C
10  
10  
1.0  
1.0  
Tj =25  
C
Pulse Width=300uS  
Tj =25  
C
1%Duty Cycle  
0.1  
0.1  
0.01  
0.01  
60  
100  
120  
140  
1.0  
1.4  
1.6  
1.8  
80  
1.2  
20  
40  
0.8  
0
0.6  
0.4  
PERCENT OF RATED PEAK  
REVERSE VOLTAGE,(%)  
INSTANTANEOUS FORWARD VOLTAGE,(V)  
FIG.5-TYPICAL JUNCTION CAPACITANCE  
PER BRIDGE ELEMENT  
FIG.6-MAXIMUM POWER DISSIPATION  
1000  
100  
80  
T =T  
j
j max  
60  
Capacitive  
Load  
100  
40  
20  
0
T =25  
C
Resistive  
or  
f=1MHz  
Vsig  
=50mV  
Inductive  
Load  
10  
0.1  
1.0  
10  
100  
0
5
10  
15  
20  
25  
30  
35  
AVERAGE OUTPUT CURRENT,  
(A)  
REVRESE VOLTAGE,(V)  
http://www.yeashin.com  
2
REV.02 20120305  

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