Type W3697V#160 to W3697V#280
Absolute Maximum Ratings
Rectifier Diode
Old Type No.: SW02-20CXC16C
Date:- 28
th
Feb, 2011
Data Sheet Issue:- 2
V
RRM
V
RSM
VOLTAGE RATINGS
Repetitive peak reverse voltage, (note 1) 1600-2800 V
Non-repetitive peak reverse voltage, (note 1) 1700-2900 V
OTHER RATINGS
I
F(AV)M
I
F(AV)M
I
F(AV)M
I
F(RMS)M
I
F(d.c.)
I
FSM
I
FSM2
I2t I2t capacity for fusing tp=10ms, Vrm=0.6V
I2t
T
j op
T
stg
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
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
=25°C, (note 4) 5840
sink
Peak non-repetitive surge tp=10ms, Vrm=0.6V
=55°C, (note 2) 3697
sink
=100°C, (note 2) 2530
sink
=100°C, (note 3) 1520
sink
=25°C, (note 2) 6840
sink
, (note 5) 40 kA
RRM
Peak non-repetitive surge tp=10ms, Vrm≤10V, (note 5)
, (note 5) 8.0×10
RRM
2
I
t capacity for fusing tp=10ms, Vrm≤10V, (note 5)
Operating temperature range -55 to +160 °C
Storage temperature range -55 to +180 °C
below 25°C.
j
initial.
j
MAXIMUM
LIMITS
MAXIMUM
LIMITS
UNITS
UNITS
A
A
A
A
A
45 kA
10.1×10
6
6
A2s
A2s
Data Sheet. Type W3697V#160 to W3697V#280 Issue 2 Page 1 of 8 February 2011
WESTCODE An IXYS Company Rectifier Diode Type W3697V#160 to W3697V#280
Characteristics
PARAMETER MIN. TYP. MAX. TEST CONDITIONS (Note 1) UNITS
V
V
V
r
I
I
R
FM
FM
T0
T
RRM
RRM
thJK
Maximum peak forward voltage - - 1.54 ITM=6800A V
Maximum peak forward voltage - - 1.95 ITM=11100A V
Threshold voltage - - 0.86 V
Slope resistance - - 0.10
Peak reverse current - - 60 Rated V
Peak reverse current - - 60 Rated V
Thermal resistance, junction to heatsink
- - 0.016 Double side cooled K/W
RRM
, Tj=25°C mA
RRM
mΩ
mA
- - 0.032 Single side cooled K/W
F Mounting force 27 - 34 kN
W
t
Weight
- 800 - Outline Options VF g
- 1000 - Outline Options VC, VT g
Notes:-
1) Unless otherwise indicated T
2)
For other clamp forces, please consult factory.
Notes on rupture rated packages.
This product is available with a non-rupture rated package.
For additional details on these products, please consult factory.
=160°C.
j
Data Sheet. Type W3697V#160 to W3697V#280 Issue 2 Page 2 of 8 February 2011
WESTCODE An IXYS Company Rectifier Diode Type W3697V#160 to W3697V#280
Notes on Ratings and Characteristics
1.0 Voltage Grade Table
AV
V
=
RSM
V
R
T
th
max
below 25°C.
j
TTT
−=∆
Hsj
V
Voltage Grade
16 1600 1700 1050
18 1800 1900 1150
20 2000 2100 1250
22 2200 2300 1350
24 2400 2500 1450
26 2600 2700 1550
28 2800 2900 1600
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 T
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
2
I
=
AV
Where V
R
th
=0.86V, rT=0.1mΩ,
0
= Supplementary thermal impedance, see table below and
00
2
DRM VDSM VRRM
4
2
rff
⋅⋅
s
V
2
WrffVV
⋅⋅⋅++−
AVs
and:
W
V
V
D
DC V
R
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 0.0205 0.0190 0.0170 0.0160
Square wave Single Side Cooled 0.0400 0.0376 0.0340 0.0320
Sine wave Double Side Cooled 0.0198 0.0177 0.0162
Sine wave Single Side Cooled 0.0388 0.0355 0.0324
Form Factors
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
Data Sheet. Type W3697V#160 to W3697V#280 Issue 2 Page 3 of 8 February 2011