Datasheet W2052N#300, W2052N#400 Datasheet (Westcode Semiconductors)

Page 1
Date:- 07 Sep, 2004
WESTCODE
An IXYS Company
Rectifier Diode
Types W2052N#300 to W2052N#400
Old Type No.: SW30-40CXC820
VOLTAGE RATINGS
V
RRM
V
RSM
I
F(AV)M
I
F(AV)M
I
F(AV)M
I
F(RMS)
I
F(d.c.)
I
FSM
I
FSM2
I2tI I2t T
j op
T
stg
Repetitive peak reverse voltage, (note 1) 3000-4000 V Non-repetitive peak reverse voltage, (note 1) 3100-4100 V
OTHER RATINGS
Maximum average forward current, T Maximum average forward current. T Maximum average forward current. T Nominal RMS forward current, T D.C. forward current, T Peak non-repetitive surge tp=10ms, Vrm=0.6V Peak non-repetitive surge tp=10ms, Vrm≤10V, (note 5)
2
t capacity for fusing tp=10ms, Vrm=0.6V
2
I
t capacity for fusing tp=10ms, Vrm≤10V, (note 5) Operating temperature range -40 to +160 °C Storage temperature range -55 to +160 °C
=25°C, (note 4) 3352 A
sink
=55°C, (note 2) 2052 A
sink
=100°C, (note 2) 1441 A
sink
=100°C, (note 3) 903 A
sink
=25°C, (note 2) 3755 A
sink
, (note 5) 19.50 kA
RRM
, (note 5) 1.9×10
RRM
Data Sheet Issue:- 1
MAXIMUM
LIMITS
MAXIMUM
LIMITS
21.45 kA
6
6
2.3×10
UNITS
UNITS
A2s A2s
Notes:-
1) De-rating factor of 0.13% per °C is applicable for T
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, 160°C T
Data Sheet. Types W2052N#300 to W2052N#400 Issue 1 Page 1 of 9 September, 2004
initial.
j
below 25°C.
j
Page 2
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Characteristics

PARAMETER MIN. TYP. MAX. TEST CONDITIONS (Note 1) UNITS
V
V r
I
Q Q I t
R
FM
T0
T
RRM
rr
ra
rr
rr
thJK
Maximum peak forward voltage
Threshold voltage - - 0.865 V Slope resistance - - 0.288
Peak reverse current
Recovered charge - 5200 - µC Recovered charge, 50% Chord - 2800 3300 µC Reverse recovery current - 175 - A Reverse recovery time - 32 -
Thermal resistance, junction to heatsink
- - 1.96 ITM=3800A
--2.5I
- - 50 Rated V
- - 50 Rated V
=6150A
TM
RRM
, Tj=25°C
RRM
I
=1000A, tp=1000µs, di/dt=10A/µs,
TM
V
=50V
r
- - 0.022 Double side cooled
- - 0.044 Single side cooled
V
m
mA
µs
K/W
F Mounting force 19 - 26 kN W
Weight - 480 - g
t
Notes:-
1) Unless otherwise indicated T
=160°C.
j
Data Sheet. Types W2052N#300 to W2052N#400 Issue 1 Page 2 of 9 September, 2004
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Notes on Ratings and Characteristics

1.0 Voltage Grade Table V

Voltage Grade
30 3000 3100 1750 32 3200 3300 1800 34 3400 3500 1850 36 3600 3700 1900 38 3800 3900 1950 40 4000 4100 2000

2.0 Extension of Voltage Grades

This report is applicable to other voltage grades when supply has been agreed by Sales/Production.

4.0 De-rating Factor

A blocking voltage de-rating factor of 0.13%/°C is applicable to this device for Tj below 25°C.

5.0 Snubber Components

When selecting snubber components, care m ust be taken not to use ex cessively large values of snubber capacitor or excessively sm all values of snubber re sistor. Such exc essive com ponent values may lead to device damage due to the large resultant values of snubber disc harge current. If r equired, please consult the factory for assistance.

6.0 Computer Modelling Parameters

DRM VDSM VRRM
V
V
RSM
V
V
V
D
DC V
R

6.1 Device Dissipation Calculations

2
I
=
AV
Where VT0=0.865V, rT=0.288mΩ,
R
= Supplementary thermal impedance, see table below and
th
00
2
2
4
2
rff
T
WrffVV
++
AVTTT
ff = Form factor, see table below.
Supplementary Thermal Impedance
Conduction Angle 6 phase (60°) 3 phase (120°) ½ wave (180°) d.c.
Square wave Double Side Cooled
Square wave Single Side Cooled
Sine wave Double Side Cooled
Sine wave Single Side Cooled
Conduction Angle 6 phase (60°) 3 phase (120°) ½ wave (180°) d.c.
Square wave 2.449 1.732 1.414 1
Sine wave 2.778 1.879 1.57
0.0285 0.0255 0.0240 0.0220
0.0513 0.0484 0.0469 0.0440
0.0257 0.0233 0.022
0.0482 0.0463 0.044
Form Factors
and:
W
AV
=
R
T
th
max
TTT
=
Kj
Data Sheet. Types W2052N#300 to W2052N#400 Issue 1 Page 3 of 9 September, 2004
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6.2 Calculating VF using ABCD Coefficients

The on-state characteristic I (i) the well established V (ii) a set of constants A, B, C, D, forming the coefficients of the representative equation for V
terms of I
given below:
F
vs. VF, on page 6 is represented in two ways;
F
and rT tangent used for rating purposes and
T0
()
in
F
IDICIBAV +++= ln
FFFF
The constants, derived by curve fitting soft ware, are given below for both hot and c old c harac teris tic s. T he resulting values for V
agree with the true device characteristic over a current range, which is limited to
F
that plotted.
25°C Coefficients 160°C Coefficients
A B C D
0.784798133 0.482420963
0.03485094 0.0528834
1.2882×10
3.481078×10
-4
-3
1.882848×10
5.29153×10
-4
-3
Data Sheet. Types W2052N#300 to W2052N#400 Issue 1 Page 4 of 9 September, 2004
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p
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6.3 D.C. Thermal Impedance Calculation

=
np
 
=
p
1
Where p = 1 to n, n is the number of terms in the series and:
t = Duration of heating pulse in seconds. r
= Thermal resistance at time t.
t
= Amplitude of pth term.
r
= Time Constant of rth term.
τ
The coefficients for this device are shown in the tables below:
D.C. Single Side Cooled
Term12345
r
p
τ
p
0.0291698 4.295845×10
5.67822 1.123602 0.1407857 0.014381914 1.272749×10
-3
1
pt
 
7.57109×10
t
τ
p
err
=
 
-3
2.195801×10
-3
1.628753×10
-3
-3
D.C. Double Side Cooled
Term1234
r
p
τ
p

7.0 Reverse recovery ratings

(i) Qra is based on 50% Irm chord as shown in Fig. 1
(ii) Q
is based on a 150µs integration time i.e.
rr
(iii)
0.01177146 6.485814×10
0.9495346 0.1337950 0.01636628 1.255571×10
t
FactorK =
1
t
2
-3
2.471007×10
µ
150
=
0
s
dtiQ
.
rrrr
-3
Fig. 1
1.607109×10
-3
-3
Data Sheet. Types W2052N#300 to W2052N#400 Issue 1 Page 5 of 9 September, 2004
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Curves

Figure 1 – Forward characteristics of Limit device Figure 2 – Transient thermal impedance

10000
W2052N#300-400
Issue 1
160°C25°C
0.1
W2052N#300-400
Issue 1
SSC 0.044K/W
DSC 0.022K/W
(A)
FM
1000
Instantaneous forward current - I
100
00.511.522.53
Maximum instantaneous forward voltage - V

Figure 3 – Maximum Surge and I2t Ratings

100000
(A)
FSM
0.01
Thermal impedance (K/W)
0.001
0.0001
(V)
FM
0.0001 0.001 0.01 0.1 1 10 100
Time (s)
1.00E+08
RRM
10V
I2t: V
10000
I2t: VR=60% V
I
: V
FSM
I
: VR=60% V
FSM
RRM
10V
RRM
2
2
1.00E+07
RRM
Tj (initial) = 160°C
Total peak half sine surge current - I
1000
135101 510 50100
W2052N#300-400
Issue 1
1.00E+06
Duration of sur ge (ms) D uration of surge (cyc le s @ 50 Hz)
Data Sheet. Types W2052N#300 to W2052N#400 Issue 1 Page 6 of 9 September, 2004
s) t (A
Maximum I
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Figure 4 – Total recovered charge, Q
100000
(µC)
rr
Total recovered charge - Q
W2052N#300-400
Issue 1
Tj = 160°C
10000
1000
1 10 100 1000
Commutation rate - di/dt (A/µs)
rr
4000A 3000A 2000A 1000A

Figure 5 – Recovered charge, Qra (50% chord)

10000
W2052N#300-400
Issue 1
Tj = 160°C
4000A 3000A
(µC)
ra
Recovered charge, 50% chord - Q
1000
1 10 100 1000
Commutation rate - di/dt (A/µs)
2000A 1000A
Figure 6 – Peak reverse recovery current, I
10000
W2052N#300-400
Issue 1
Tj = 160°C
4000A 3000A 2000A
1000
(A)
rm
100
Reverse recovery current - I
10
1 10 100 1000
Commutation rate - di/dt (A/µs)
1000A
rm

Figure 7 – Maximum recovery time, trr (50% chord)

100
(µs)
rr
10
Recovery time, 50% chord - t
1
1 10 100 1000
Commutation rate - di/dt (A/µs)
W2052N#300-400
Issue 1
Tj = 160°C
4000A 3000A 2000A 1000A
Data Sheet. Types W2052N#300 to W2052N#400 Issue 1 Page 7 of 9 September, 2004
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Figure 8 – Forward current vs. Power dissipation ­Double Side Cooled
7000
W2052N#300-400
Issue 1
d.c.
Maximum Forward Dissipation (W)
6000
5000
4000
3000
2000
1000
½ wave

Figure 9 – Forward current vs. Heatsink temperature - Double Side Cooled

180
160
140
120
100
Maximum permissable heatsink temperature (°C)
80
60
40
20
½ wave d.c.
W2052N#300-400
Issue 1
0
0 1000 2000 3000 4000
Mean Forward Current (A) (Whole cycle averaged)
Figure 10 – Forward current vs. Power dissipation
- Single Side Cooled
3500
W2052N#300-400
Issue 1
d.c.
3000
2500
2000
1500
Maximum Forward Dissipation (W)
1000
500
0
0 500 1000 1500 2000 2500
Mean Forward Current (A) (Whole cycle averaged)
½ wave
0
0 1000 2000 3000 4000
Mean Forward Current (A) (Whole cycle averaged)

Figure 11 – Forward current vs. Heatsink temperature - Single Side Cooled

180
160
140
120
100
80
60
Maximum permissible heatsink temperature (°C)
40
20
½ wave d.c.
0
0 500 1000 1500 2000 2500
Mean forward current (A) (Whole cycle averaged)
W2052N#300-400
Issue 1
Data Sheet. Types W2052N#300 to W2052N#400 Issue 1 Page 8 of 9 September, 2004
Page 9
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Outline Drawing & Ordering Information

100A325
ORDERING INFORMATION (Please quote 10 digit code as below)
W2052 N#
Fixed
Type Code
Typical order code: W2052NC360 – 3600V V
IXYS Semiconductor GmbH
Edisonstraße 15 D-68623 Lampertheim Tel: +49 6206 503-0 Fax: +49 6206 503-627 E-mail: marcom@ixys.de
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
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.
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.
Outline code
NC = 27.7mm Clamp hei ght
ND = 21mm Clamp height
, 27.7mm clamp height capsule.
RRM
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An IXYS Company
www.westcode.com
www.ixys.com
♦♦
♦♦
♦♦♦♦
Voltage code
/100
V
DRM
30-40
0
Fixed code
Westcode Semiconductors Ltd
Langley Park Way, Langl ey Park,
Chippenham, Wi l tshire, SN15 1GE.
Tel: +44 (0)1249 444524
Fax: +44 (0)1249 659448
E-mail: WSL.sales@westcode,com
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
© Westcode Semiconductors Ltd.
Data Sheet. Types W2052N#300 to W2052N#400 Issue 1 Page 9 of 9 September, 2004
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