W1263YH240 [LITTELFUSE]
Rectifier Diode,;型号: | W1263YH240 |
厂家: | LITTELFUSE |
描述: | Rectifier Diode, |
文件: | 总10页 (文件大小:216K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
Date:- 07 Sep 2004
Data Sheet Issue:- 1
WESTCODE
An IXYS Company
Rectifier Diode
Types W1263Y#160 to W1263Y#250
Old Type No.: SW02-25CXC565
Absolute Maximum Ratings
MAXIMUM
LIMITS
VOLTAGE RATINGS
UNITS
VRRM
VRSM
Repetitive peak reverse voltage, (note 1)
Non-repetitive peak reverse voltage, (note 1)
1600-2500
1700-2600
V
V
MAXIMUM
LIMITS
OTHER RATINGS
UNITS
IF(AV)M
IF(AV)M
IF(AV)M
Maximum average forward current, Tsink=55°C, (note 2)
Maximum average forward current. Tsink=100°C, (note 2)
Maximum average forward current. Tsink=100°C, (note 3)
1263
923
A
A
563
A
IF(RMS)M Nominal RMS forward current, Tsink=25°C, (note 2)
2289
A
IF(d.c.)
IFSM
IFSM2
I2t
D.C. forward current, Tsink=25°C, (note 4)
Peak non-repetitive surge tp=10ms, Vrm=60%VRRM, (note 5)
Peak non-repetitive surge tp=10ms, Vrm≤10V, (note 5)
I2t capacity for fusing tp=10ms, Vrm=60%VRRM, (note 5)
I2t capacity for fusing tp=10ms, Vrm≤10V, (note 5)
Operating temperature range
1972
A
11.7
kA
kA
A2s
A2s
°C
°C
12.9
684×103
828×103
-40 to +175
-40 to +200
I2t
Tj op
Tstg
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, 175°C Tj initial.
Data Sheet. Types W1263Y#160 to W1263Y#250 Issue 1
Page 1 of 9
September, 2004
WESTCODE An IXYS Company
Rectifier Diode Types W1263Y#160 to W1263Y#250
Characteristics
PARAMETER
MIN.
TYP. MAX. TEST CONDITIONS (Note 1)
UNITS
VFM
VT0
rT
Maximum peak forward voltage
Threshold voltage
-
-
2.12 ITM=3770A
V
V
-
-
0.87
0.33
30
30
-
Slope resistance
-
-
-
mΩ
mA
mA
µC
µC
A
IRRM
IRRM
Qrr
Qra
Irr
Peak reverse current
Peak reverse current
Recovered charge
-
Rated VRRM
-
-
Rated VRRM, Tj=25°C
-
1300
850
100
17
-
Recovered charge, 50% Chord
Reverse recovery current
Reverse recovery time
-
1150
-
I
TM=500A, tp=500µs, di/dt=10A/µs, Vr=50V
-
trr
-
-
µs
-
0.05 Double side cooled
0.10 Single side cooled
8.3
K/W
K/W
kN
RthJK
F
Thermal resistance, junction to heatsink
-
5.5
-
-
Mounting force
Weight
-
90
140
-
-
Housing option YC
Housing option YH
Wt
g
-
Notes:-
1) Unless otherwise indicated Tj=175°C.
Data Sheet. Types W1263Y#160 to W1263Y#250 Issue 1
Page 2 of 9
September, 2004
WESTCODE An IXYS Company
Rectifier Diode Types W1263Y#160 to W1263Y#250
Notes on Ratings and Characteristics
1.0 Voltage Grade Table
V
DRM VDSM VRRM
VRSM
V
VD VR
DC V
1050
1150
1250
1350
1450
1500
Voltage Grade
V
16
18
20
22
24
25
1600
1800
2000
2200
2400
2500
1700
1900
2100
2300
2500
2600
2.0 Extension of Voltage Grades
This report is applicable to other voltage grades when supply has been agreed by Sales/Production.
3.0 De-rating Factor
A blocking voltage de-rating factor of 0.13%/°C is applicable to this device for Tj below 25°C.
4.0 Snubber Components
When selecting snubber components, care must be taken not to use excessively large values of snubber
capacitor or excessively small values of snubber resistor. Such excessive component values may lead to
device damage due to the large resultant values of snubber discharge current. If required, please consult
the factory for assistance.
5.0 Computer Modelling Parameters
5.1 Device Dissipation Calculations
∆T
2
−VT 0 + VT 0 + 4 ff 2 r WAV
WAV =
T
Rth
IAV =
and:
2 ff 2 r
T
∆T = Tj max −TK
Where VT0=0.87V, rT=0.33mΩ,
Rth = Supplementary thermal impedance, see table below and
ff = Form factor, see table below.
Supplementary Thermal Impedance
Conduction Angle
6 Phase (60°)
0.069
3 Phase (120°) ½ Wave (180°)
d.c.
0.05
0.1
Square wave Double Side Cooled
Square wave Single Side Cooled
Sine wave Double Side Cooled
Sine wave Single Side Cooled
0.061
0.111
0.057
0.107
0.119
0.052
0.0513
0.1013
0.0505
0.1005
0.102
Form Factors
Conduction Angle
Square wave
Sine wave
6 Phase (60°)
3 Phase (120°)
1.732
½ Wave (180°)
1.414
d.c.
1
2.449
2.778
1.879
1.57
Data Sheet. Types W1263Y#160 to W1263Y#250 Issue 1
Page 3 of 9
September, 2004
WESTCODE An IXYS Company
Rectifier Diode Types W1263Y#160 to W1263Y#250
5.2 Calculating VF using ABCD Coefficients
The on-state characteristic IF vs. VF, on page 6 is represented in two ways;
(i)
(ii)
the well established VT0 and rT tangent used for rating purposes and
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
(
IF + C IF + D IF
)
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
175°C Coefficients
A
B
C
D
0.988190696
-0.02390475
1.37558×10-4
0.01055999
0.322649754
0.08667911
2.61136×10-4
1.61365×10-3
Data Sheet. Types W1263Y#160 to W1263Y#250 Issue 1
Page 4 of 9
September, 2004
WESTCODE An IXYS Company
Rectifier Diode Types W1263Y#160 to W1263Y#250
5.3 D.C. Thermal Impedance Calculation
−t
p=n
τ p
r = r 1− e
∑
t
p
p=1
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.
The coefficients for this device are shown in the tables below:
D.C. Single Side Cooled
3
Term
rp
1
2
4
5
0.06158
2.13613
8.43118×10-3
0.01031
0.15024
0.01614
0.04244
5.0391×10-3
3.6777×10-3
1.2129
τp
D.C. Double Side Cooled
Term
rp
1
2
3
4
0.02
9.9234×10-3
0.01434
0.03562
4.284×10-3
2.563×10-3
0.33917
0.12691
τp
6.0 Reverse recovery ratings
(i) Qra is based on 50% Irm chord as shown in Fig. 1
Fig. 1
(ii) Qrr is based on a 150µs integration time i.e.
150µs
Qrr = irr .dt
∫
0
(iii)
t1
K Factor =
t2
Data Sheet. Types W1263Y#160 to W1263Y#250 Issue 1
Page 5 of 9
September, 2004
WESTCODE An IXYS Company
Rectifier Diode Types W1263Y#160 to W1263Y#250
Curves
Figure 1 - Forward characteristics of Limit device
Figure 2 - Transient thermal impedance
10000
1
W1263Y#160-250
Issue 1
25°C
175°C
W1263Y#160-250
Issue 1
SSC 0.10K/W
0.1
DSC 0.05K/W
1000
0.01
0.001
100
0.0001
0
1
2
3
4
0.0001
0.001
0.01
0.1
1
10
100
Maximum instantaneous forward voltage - VFM (V)
Time (s)
Figure 3 - Maximum surge Rating
100000
1.00E+07
1.00E+06
1.00E+05
I2t: VRRM≤10V
I2t: VR=60% VRRM
10000
IFSM: VRRM≤10V
IFSM: VR=60% VRRM
Tj (initial) = 175°C
W1263Y#160-250
Issue 1
1000
1
3
5
10
1
5
10
50 100
Duration of surge (ms)
Duration of surge (cycles @ 50Hz)
Data Sheet. Types W1263Y#160 to W1263Y#250 Issue 1
Page 6 of 9
September, 2004
WESTCODE An IXYS Company
Rectifier Diode Types W1263Y#160 to W1263Y#250
Figure 4 - Total recovered charge, Qrr
Figure 5 - Recovered charge, Qra (50% chord)
10000
10000
W1263Y#160-250
W1263Y#160-250
Issue 1
Issue 1
Tj = 175°C
Tj = 175°C
2000A
1500A
1000A
500A
2000A
1500A
1000A
500A
1000
1000
100
1
10
100
1000
1
10
100
1000
Commutation rate - di/dt (A/µs)
Commutation rate - di/dt (A/µs)
Figure 6 - Peak reverse recovery current, Irm
Figure 7 - Maximum recovery time, trr (50% chord)
100
10000
W1263Y#160-250
W1263Y#160-250
Issue 1
Issue 1
Tj = 175°C
Tj = 175°C
2000A
1500A
1000A
500A
1000
100
10
10
2000A
1500A
1000A
500A
1
1
10
100
1000
1
10
100
1000
Commutation rate - di/dt (A/µs)
Commutation rate - di/dt (A/µs)
Data Sheet. Types W1263Y#160 to W1263Y#250 Issue 1
Page 7 of 9
September, 2004
WESTCODE An IXYS Company
Rectifier Diode Types W1263Y#160 to W1263Y#250
Figure 8 – Forward current vs. Power dissipation –
Double Side Cooled
Figure 9 – Forward current vs. Heatsink
temperature - Double Side Cooled
180
3500
W1263Y#160-250
W1263Y#160-250
Issue 1
Issue 1
160
d.c.
3000
140
120
100
80
½ wave
3ø
2500
6ø
2000
1500
1000
500
0
60
40
20
½ wave
1500
d.c.
6ø
3ø
0
0
500
1000
1500
2000
2500
0
500
1000
2000
Mean Forward Current (A) (Whole cycle averaged)
Mean Forward Current (A) (Whole cycle averaged)
Figure 10 – Forward current vs. Power dissipation
– Single Side Cooled
Figure 11 – Forward current vs. Heatsink
temperature – Single Side Cooled
1600
180
W1263Y#160-250
W1263Y#160-250
Issue 1
Issue 1
d.c.
½ wave
160
140
120
100
80
1400
1200
1000
800
600
400
200
0
3ø
6ø
60
40
20
6ø
3ø
½ wave
1000
d.c.
0
0
200
400
600
800
1000
1200
1400
0
500
1500
Mean Forward Current (A) (Whole cycle averaged)
Mean forward current (A) (Whole cycle averaged)
Data Sheet. Types W1263Y#160 to W1263Y#250 Issue 1
Page 8 of 9
September, 2004
WESTCODE An IXYS Company
Rectifier Diode Types W1263Y#160 to W1263Y#250
Outline Drawing & Ordering Information
Outline option YC
Outline option YH
ORDERING INFORMATION
(Please quote 10 digit code as below)
ꢀꢀ
W1263
Y#
0
Fixed outline code
YC = 15.1mm Clamp Height
YH = 26.6mm Clamp Height
Voltage code
VDRM/100
16-25
Fixed
Type Code
Fixed code
Order code: W1263YH250 – 2500V VRRM, 26.6mm clamp height capsule.
IXYS Semiconductor GmbH
Edisonstraße 15
D-68623 Lampertheim
Tel: +49 6206 503-0
Fax: +49 6206 503-627
E-mail: marcom@ixys.de
Westcode Semiconductors Ltd
Langley Park Way, Langley Park,
Chippenham, Wiltshire SN15 1GE.
Tel: +44 (0)1249 444524
Fax: +44 (0)1249 659448
E-mail: WSL.sales@westcode.com
WESTCODE
An IXYS Company
IXYS Corporation
3540 Bassett Street
Santa Clara CA 95054 USA
Tel: +1 (408) 982 0700
Fax: +1 (408) 496 0670
E-mail: sales@ixys.net
Westcode Semiconductors Inc
3270 Cherry Avenue
Long Beach CA 90807 USA
Tel: +1 (562) 595 6971
Fax: +1 (562) 595 8182
E-mail: WSI.sales@westcode.com
www.westcode.com
www.ixys.com
The information contained herein is confidential and is protected by Copyright. The information may not be used or disclosed
except with the written permission of and in the manner permitted by the proprietors Westcode Semiconductors Ltd.
© Westcode Semiconductors Ltd.
In the interest of product improvement, Westcode reserves the right to change specifications at any time without prior notice.
Devices with a suffix code (2-letter, 3-letter or letter/digit/letter combination) added to their generic code are not necessarily
subject to the conditions and limits contained in this report.
Data Sheet. Types W1263Y#160 to W1263Y#250 Issue 1
Page 9 of 9
September, 2004
Disclaimer Notice - Information furnished is believed to be accurate and reliable. However, users should independently
evaluate the suitability of and test each product selected for their own applications. Littelfuse products are not designed for,
and may not be used in, all applications. Read complete Disclaimer Notice at www.littelfuse.com/disclaimer-electronics.
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