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W1032LC580 데이터시트 PDF




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W1032LC580 데이터시트, 핀배열, 회로
Date:- 4 Aug, 2003
Data Sheet Issue:- 1
Rectifier Diode
Types W1032LC500 to W1032LC600
(Old Part Number: SW50-60CXC350)
Absolute Maximum Ratings
VRRM
VRSM
VOLTAGE RATINGS
Repetitive peak reverse voltage, (note 1)
Non-repetitive peak reverse voltage, (note 1)
OTHER RATINGS
IF(AV)M
IF(AV)M
IF(AV)M
IF(RMS)M
IF(d.c.)
IFSM
IFSM2
I2t
I2t
Tj op
Tstg
Maximum average forward current, Tsink=55°C, (note 2)
Maximum average forward current. Tsink=100°C, (note 2)
Nominal RMS forward current, Tsink=100°C, (note 3)
Nominal RMS forward current, Tsink=25°C, (note 2)
D.C. forward current, Tsink=25°C, (note 4)
Peak non-repetitive surge tp=10ms, Vrm=0.6VRRM, (note 5)
Peak non-repetitive surge tp=10ms, Vrm10V, (note 5)
I2t capacity for fusing tp=10ms, Vrm=0.6VRRM, (note 5)
I2t capacity for fusing tp=10ms, Vrm10V, (note 5)
Operating temperature range
Storage temperature range
Notes:-
1) De-rating factor of 0.13% per °C is applicable for Tj below 25°C.
2) Double side cooled, single phase; 50Hz, 180° half-sinewave.
3) Single side cooled, single phase; 50Hz, 180° half-sinewave.
4) Double side cooled.
5) Half-sinewave, 150°C Tj initial.
MAXIMUM
LIMITS
5000-6000
5100-6100
MAXIMUM
LIMITS
1032
689
432
1912
1717
7200
8000
259×103
320×103
-40 to +150
-55 to +150
UNITS
V
V
UNITS
A
A
A
A
A
A
A
A2s
A2s
°C
°C
Data Sheet. Type W1032LC500 to W1032LC600 Issue 1
Page 1 of 8
July, 2003




W1032LC580 pdf, 반도체, 판매, 대치품
WESTCODE An IXYS Company
Rectifier Diode Types W1032LC500 to W1032LC600
4.2 Calculating VF using ABCD Coefficients
The forward characteristic IF vs. VF, on page 5 is represented in two ways;
(i) the well established VT0 and rT tangent used for rating purposes and
(ii) a set of constants A, B, C, D, forming the coefficients of the representative equation for VF in
terms of IF given below:
VF = A + B ln(I F )+ C I F + D I F
The constants, derived by curve fitting software, are given below for both hot and cold characteristics. The
resulting values for VF agree with the true device characteristic over a current range, which is limited to
that plotted.
25°C Coefficients
A 0.786727
B 0.06700378
C 5.405371×10-4
D -5.209484×10-3
150°C Coefficients
A 0.5103767
B 0.1000737
C 7.364539×10-4
D -7.568512×10-3
4.3 D.C. Thermal Impedance Calculation
rt
=
p=n
rp
p =1
1
t
eτ p


Where p = 1 to n, n is the number of terms in the series and:
t = Duration of heating pulse in seconds.
rt = Thermal resistance at time t.
rp = Amplitude of pth term.
τp = Time Constant of rth term.
Term
rp
τp
1
0.01771901
0.7085781
D.C. Double Side Cooled
2
4.240625×10-3
3
6.963806×10-3
0.1435833
0.03615196
4
3.043661×10-3
2.130842×10-3
Term
rp
τp
1
0.04013371
4.073105
D.C. Single Side Cooled
2
8.832199×10-3
3
9.210899×10-3
1.196877
0.09882439
4
3.73647×10-3
0.01585017
5
2.594797×10-3
2.077263×10-3
Data Sheet. Type W1032LC500 to W1032LC600 Issue 1
Page 4 of 8
July, 2003

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W1032LC580 전자부품, 판매, 대치품
WESTCODE An IXYS Company
Rectifier Diode Types W1032LC500 to W1032LC600
Figure 8 – Forward current vs. Power dissipation –
Double Side Cooled
4000
W1032LC500-600
Issue 1
d.c.
3500
½ wave
3000
3φ
6φ
2500
Figure 9 – Forward current vs. Heatsink
temperature - Double Side Cooled
160
W1032LC500-600
Issue 1
140
120
100
2000
80
1500
60
1000
40
500
20
6φ 3φ ½ wave
d.c.
0
0
500
1000
1500
2000
Mean Forward Current (A) (Whole cycle averaged)
Figure 10 – Forward current vs. Power dissipation
– Single Side Cooled
2000
W1032LC500-600
Issue 1
1800
½ wave
d.c.
3φ
1600
6φ
1400
1200
1000
800
600
400
200
0
0 200 400 600 800 1000 1200
Mean Forward Current (A) (Whole cycle averaged)
0
0
500
1000
1500
2000
Mean Forward Current (A) (Whole cycle averaged)
Figure 11 – Forward current vs. Heatsink
temperature – Single Side Cooled
160
W1032LC500-600
Issue 1
140
120
100
80
60
40
20
6φ 3φ ½ wave
d.c.
0
0 200 400 600 800 1000 1200
Mean forward current (A) (Whole cycle averaged)
Data Sheet. Type W1032LC500 to W1032LC600 Issue 1
Page 7 of 8
July, 2003

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