M0863LC260 [IXYS]

Rectifier Diode, 1 Phase, 1 Element, 863A, 2600V V(RRM), Silicon,;
M0863LC260
型号: M0863LC260
厂家: IXYS CORPORATION    IXYS CORPORATION
描述:

Rectifier Diode, 1 Phase, 1 Element, 863A, 2600V V(RRM), Silicon,

快速恢复二极管
文件: 总11页 (文件大小:417K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Date:- 6 Nov, 2003  
Data Sheet Issue:- 1  
WESTCODE  
An IXYS Company  
Fast Recovery Diode  
Type M0863LC260 to M0863LC360  
Old Type No.: SM26-36CXC474  
Absolute Maximum Ratings  
MAXIMUM  
LIMITS  
VOLTAGE RATINGS  
Repetitive peak reverse voltage, (note 1)  
Non-repetitive peak reverse voltage, (note 1)  
UNITS  
VRRM  
VRSM  
2600-3600  
V
V
2700-3700  
MAXIMUM  
LIMITS  
863  
OTHER RATINGS  
UNITS  
IF(AVM)  
IF(AVM)  
IF(AVM)  
IF(RMS)  
If(d.c.)  
IFSM  
Maximum average forward current, Tsink=55°C, (note 2)  
Maximum average forward current. Tsink=100°C, (note 2)  
Maximum average forward. Tsink=100°C, (note 3)  
Nominal RMS forward current, Tsink=25°C, (note 2)  
D.C. forward current, Tsink=25°C, (note 4)  
A
A
A
A
A
409  
234  
1721  
1451  
Peak non-repetitive surge tp=10ms, VRM=60%VRRM, (note 5)  
Peak non-repetitive surge tp=10ms, VRM10V, (note 5)  
I2t capacity for fusing tp=10ms, VRM=60%VRRM, (note 5)  
I2t capacity for fusing tp=10ms, VRM10V, (note 5)  
Operating temperature range  
10  
kA  
kA  
A2s  
A2s  
°C  
°C  
IFSM2  
11  
I2t  
500×103  
605×103  
-40 to +125  
-40 to +150  
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, 125°C Tj initial.  
Data Sheet. Types M0863LC260 to M0863LC360 Issue 1  
Page 1 of 11  
November, 2003  
WESTCODE An IXYS Company  
Fast Recovery Diode Types M0863LC260 to M0863LC360  
Characteristics  
PARAMETER  
MIN.  
TYP. MAX. TEST CONDITIONS (Note 1)  
UNITS  
-
-
-
2.1  
2.3  
IFM=1400A  
IFM=1750A  
VFM  
Maximum peak forward voltage  
V
-
VT0  
rT  
Threshold voltage  
Slope resistance  
-
-
1.308  
0.538  
V
-
-
mΩ  
-
-
160 di/dt = 1000A/µs  
VFRM  
Maximum forward recovery voltage  
Peak reverse current  
V
-
-
-
90  
di/dt = 1000A/µs, 25°C  
-
100 Rated VRRM  
IRRM  
mA  
-
-
100 Rated VRRM, Tj=25°C  
-
Qrr  
Qra  
Irm  
trr  
Recovered charge  
-
950  
370  
150  
4.8  
-
µC  
µC  
A
Recovered charge, 50% Chord  
Reverse recovery current  
Reverse recovery time, 50% Chord  
-
475  
I
FM=1000A, tp=1000µs, di/dt=60A/µs,  
Vr=50V, 50% Chord.  
-
-
-
-
µs  
-
0.033 Double side cooled  
RthJK  
Thermal resistance, junction to heatsink  
K/W  
-
-
0.066 Single side cooled  
F
Mounting force  
Weight  
10  
-
-
20  
-
kN  
g
Wt  
340  
Notes:-  
1) Unless otherwise indicated Tj=125°C.  
Data Sheet. Types M0863LC260 to M0863LC360 Issue 1  
Page 2 of 11  
November, 2003  
WESTCODE An IXYS Company  
Notes on Ratings and Characteristics  
1.0 Voltage Grade Table  
Fast Recovery Diode Types M0863LC260 to M0863LC360  
Voltage Grade  
VRRM  
(V)  
VRSM  
(V)  
VR dc  
(V)  
26  
28  
30  
32  
34  
36  
2600  
2800  
3000  
3200  
3400  
3600  
2700  
2900  
3100  
3300  
3500  
3600  
1500  
1600  
1700  
1800  
1850  
1900  
2.0 De-rating Factor  
A blocking voltage de-rating factor of 0.13% per °C is applicable to this device for Tj below 25°C.  
3.0 ABCD Constants  
These constants (applicable only over current range of VF characteristic in Figure 1) are the coefficients of  
the expression for the forward characteristic given below:  
VF = A + B ln(IF ) + C IF + D IF  
where IF = instantaneous forward current.  
4.0 Reverse recovery ratings  
(i) Qra is based on 50% Irm chord as shown in Fig.(a) below.  
(ii) Qrr is based on a 150µs integration time.  
150µs  
Qrr = irr .dt  
I.e.  
0
t1  
t2  
K Factor =  
(iii)  
Data Sheet. Types M0863LC260 to M0863LC360 Issue 1  
Page 3 of 11  
November, 2003  
WESTCODE An IXYS Company  
Fast Recovery Diode Types M0863LC260 to M0863LC360  
5.0 Reverse Recovery Loss  
The following procedure is recommended for use where it is necessary to include reverse recovery loss.  
From waveforms of recovery current obtained from a high frequency shunt (see Note 1) and reverse  
voltage present during recovery, an instantaneous reverse recovery loss waveform must be constructed.  
Let the area under this waveform be E joules per pulse. A new sink temperature can then be evaluated  
from:  
TSINK = TJ (MAX ) E ⋅  
[
k + f Rth(JK )  
]
Where k = 0.2314 (°C/W)/s  
E = Area under reverse loss waveform per pulse in joules (W.s.)  
f = Rated frequency in Hz at the original sink temperature.  
Rth(J-Hs) = d.c. thermal resistance (°C/W)  
The total dissipation is now given by:  
W(tot) = W(original ) + E f  
NOTE 1 - Reverse Recovery Loss by Measurement  
This device has a low reverse recovered charge and peak reverse recovery current. When measuring the  
charge, care must be taken to ensure that:  
(a) AC coupled devices such as current transformers are not affected by prior passage of high  
amplitude forward current.  
(b) A suitable, polarised, clipping circuit must be connected to the input of the measuring oscilloscope  
to avoid overloading the internal amplifiers by the relatively high amplitude forward current signal.  
(c) Measurement of reverse recovery waveform should be carried out with an appropriate critically  
damped snubber, connected across diode anode to cathode. The formula used for the calculation of this  
snubber is shown below:  
Vr  
R2 = 4⋅  
CS di  
dt  
Where: Vr = Commutating source voltage  
CS = Snubber capacitance  
R = Snubber resistance  
6.0 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.  
Data Sheet. Types M0863LC260 to M0863LC360 Issue 1  
Page 4 of 11  
November, 2003  
WESTCODE An IXYS Company  
7.0 Computer Modelling Parameters  
7.1 Device Dissipation Calculations  
Fast Recovery Diode Types M0863LC260 to M0863LC360  
V  
o
+ V  
o
+ 4ff 2 r WAV  
s
IAV =  
2ff 2 r  
s
Where VT0 =1.308V, rT = 0.538mΩ  
ff = form factor (normally unity for fast diode applications)  
T  
WAV =  
R
th  
T = Tj(MAX ) TK  
7.2 Calculation of VF using ABCD Coefficients  
The forward characteristic IF Vs VF, on page 6 is represented in two ways;  
(i)  
the well established VT0 and rT tangent used for rating purposes and  
a set of constants A, B, C, and D forming the coefficients of the representative equation for VF in  
terms of IF given below:  
(ii)  
VF = A + B ln(IF ) + C IF + D IF  
The constants, derived by curve fitting software, are given in this report for hot 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  
1.365043  
125°C Coefficients  
0.039917902  
0.2045307  
A
B
C
D
-0.1023829  
9.1211×10-5  
0.0343427  
4.10581×10-4  
9.62577×10-5  
8.0 Frequency Ratings  
The curves illustrated in figures 8 to 16 are for guidance only and are superseded by the maximum ratings  
shown on page 1.  
9.0 Square wave ratings  
These ratings are given for load component rate of rise of forward current of 100 and 500 A/µs.  
10.0 Duty cycle lines  
The 100% duty cycle is represented on all the ratings by a straight line. Other duties can be included as  
parallel to the first.  
Data Sheet. Types M0863LC260 to M0863LC360 Issue 1  
Page 5 of 11  
November, 2003  
WESTCODE An IXYS Company  
Curves  
Fast Recovery Diode Types M0863LC260 to M0863LC360  
Figure 1 – Forward characteristics of Limit device  
Figure 2 – Maximum forward recovery voltage  
10000  
1000  
M0863LC260-360  
M0863LC260-360  
Issue 1  
Issue 1  
25°C  
125°C  
125°C  
25°C  
1000  
100  
100  
10  
0
1
2
3
4
5
10  
100  
1000  
10000  
Maximum instantaneous forward voltage - VFM (V)  
Rate of rise of forward current - di/dt (A/µs)  
Figure 3 - Recovered charge, Qrr  
Figure 4 - Recovered charge, Qra (50% chord)  
10000  
10000  
M0863LC260-360  
M0863LC260-360  
Issue 1  
Issue 1  
Tj = 125°C  
Tj = 125°C  
2000A  
1500A  
1000A  
500A  
2000A  
1500A  
1000A  
1000  
1000  
500A  
100  
100  
1
10  
100  
1000  
1
10  
100  
1000  
Commutation rate - di/dt (A/µs)  
Commutation rate - di/dt (A/µs)  
Data Sheet. Types M0863LC260 to M0863LC360 Issue 1  
Page 6 of 11  
November, 2003  
WESTCODE An IXYS Company  
Fast Recovery Diode Types M0863LC260 to M0863LC360  
Figure 5 - Maximum reverse current, Irm  
Figure 6 - Maximum recovery time, trr (50% chord)  
1000  
100  
M0863LC260-360  
M0863LC260-360  
Issue 1  
Issue 1  
2000A  
1500A  
1000A  
500A  
Tj = 125°C  
Tj = 125°C  
100  
10  
2000A  
1500A  
1000A  
500A  
10  
1
1
10  
100  
1000  
1
10  
100  
1000  
Commutation rate - di/dt (A/µs)  
Commutation rate - di/dt (A/µs)  
Figure 7 – Reverse recovery energy per pulse  
Figure 8 - Sine wave energy per pulse  
1.00E+03  
10000  
M0863LC260-360  
M0863LC260-360  
Issue 1  
Tj = 125°C  
Vr=400V  
Issue 1  
Tj = 125°C  
No Snubber  
1.00E+02  
4000A  
3000A  
2000A  
1000A  
500A  
2000A  
1500A  
1000A  
500A  
1000  
1.00E+01  
1.00E+00  
1.00E-01  
100  
1
10  
100  
1000  
10000  
1.00E-05  
1.00E-04  
1.00E-03  
1.00E-02  
Commmutation rate - di/dt (A/µs)  
Pulse width (s)  
Data Sheet. Types M0863LC260 to M0863LC360 Issue 1  
Page 7 of 11  
November, 2003  
WESTCODE An IXYS Company  
Fast Recovery Diode Types M0863LC260 to M0863LC360  
Figure 9 - Sine wave frequency vs. pulse width  
Figure 10 - Sine wave frequency vs. pulse width  
1.00E+05  
1.00E+05  
M0863LC260-360  
M0863LC260-360  
Issue 1  
Issue 1  
TK = 55°C  
TK= 85°C  
500A  
100% Duty Cycle  
500A  
100% Duty Cycle  
1.00E+04  
1.00E+04  
1000A  
1000A  
2000A  
1.00E+03  
1.00E+03  
2000A  
3000A  
3000A  
1.00E+02  
4000A  
1.00E+02  
4000A  
1.00E+01  
1.00E+01  
1.00E-05  
1.00E-04  
1.00E-03  
1.00E-02  
1.00E-05  
1.00E-04  
1.00E-03  
1.00E-02  
Pulse width (s)  
Pulse width (s)  
Figure 11 - Square wave energy per pulse  
Figure 12 - Square wave energy per pulse  
1.00E+05  
1.00E+05  
M0863LC260-360  
Issue 1  
di/dt =500A/µs  
M0863LC260-360  
Issue 1  
di/dt =100A/µs  
TK=55°C  
TK = 55°C  
100% Duty Cycle  
500A  
100% Duty Cycle  
1.00E+04  
1.00E+03  
1.00E+02  
1.00E+01  
1.00E+04  
1.00E+03  
1.00E+02  
1.00E+01  
500A  
1000A  
1000A  
2000A  
3000A  
2000A  
4000A  
3000A  
4000A  
1.00E-05  
1.00E-04  
1.00E-03  
Pulse width (s)  
1.00E-02  
1.00E-05  
1.00E-04  
1.00E-03  
1.00E-02  
Pulse width (s)  
Data Sheet. Types M0863LC260 to M0863LC360 Issue 1  
Page 8 of 11  
November, 2003  
WESTCODE An IXYS Company  
Fast Recovery Diode Types M0863LC260 to M0863LC360  
Figure 13 - Square wave frequency vs. pulse width  
Figure 14 - Square wave frequency vs. pulse width  
1.00E+05  
1.00E+05  
M0863LC260-360  
Issue 1  
M0863LC260-360  
Issue 1  
di/dt =500A/µs  
TK = 85°C  
di/dt =100A/µs  
TK = 85°C  
1.00E+04  
1.00E+04  
1.00E+03  
1.00E+02  
1.00E+01  
500A  
100% Duty Cycle  
100% Duty Cycle  
500A  
1000A  
1.00E+03  
1000A  
2000A  
1.00E+02  
2000A  
3000A  
4000A  
3000A  
1.00E+01  
1.00E-05  
1.00E-04  
1.00E-03  
1.00E-02  
1.00E-05  
1.00E-04  
1.00E-03  
1.00E-02  
Pulse width (s)  
Pulse width (s)  
Figure 15 - Square wave frequency vs. pulse width  
Figure 16 - Square wave frequency vs. pulse width  
1.00E+03  
1.00E+03  
M0863LC260-360  
M0863LC260-360  
Issue 1  
Issue 1  
di/dt =500A/µs  
Tj = 125°C  
di/dt =100A/µs  
Tj = 125°C  
1.00E+02  
1.00E+02  
4000A  
3000A  
2000A  
1000A  
500A  
1.00E+01  
4000A  
1.00E+01  
1.00E+00  
1.00E-01  
3000A  
2000A  
1.00E+00  
1000A  
500A  
1.00E-01  
1.00E-05  
1.00E-04  
1.00E-03  
1.00E-02  
1.00E-05  
1.00E-04  
1.00E-03  
1.00E-02  
Pulse width (s)  
Pulse width (s)  
Data Sheet. Types M0863LC260 to M0863LC360 Issue 1  
Page 9 of 11  
November, 2003  
WESTCODE An IXYS Company  
Fast Recovery Diode Types M0863LC260 to M0863LC360  
Figure 17 – Maximum surge and I2t ratings  
100000  
1.00E+07  
M0863LC260-  
360  
I2t: VRRM 10V  
Tj (initial) = 125°C  
I2t: VR=60% VRRM  
10000  
1000  
1.00E+06  
IFSM: VRRM 10V  
IFSM: VR=60% VRRM  
1.00E+05  
1
3
5
10  
1
5
10  
50 100  
Duration of surge (ms)  
Duration of surge (cycles @ 50Hz)  
Figure 18 – Transient thermal impedance  
0.1  
M0863LC260-  
360  
SSC 0.066K/W  
DSC 0.033K/W  
0.01  
0.001  
0.0001  
0.0001  
0.001  
0.01  
0.1  
1
10  
100  
Time (s)  
Data Sheet. Types M0863LC260 to M0863LC360 Issue 1  
Page 10 of 11  
November, 2003  
WESTCODE An IXYS Company  
Fast Recovery Diode Types M0863LC260 to M0863LC360  
Outline Drawing & Ordering Information  
ORDERING INFORMATION  
(Please quote 10 digit code as below)  
ꢀꢀ  
M0863  
LC  
0
Voltage code  
Fixed  
Fixed  
VDRM/100  
26-36  
Fixed code  
Type Code  
outline code  
Order code: M0863LC280 – 2800V VRRM, 27.0mm clamp height capsule.  
IXYS Semiconductor GmbH  
Edisonstraße 15  
Westcode Semiconductors Ltd  
Langley Park Way, Langley Park,  
Chippenham, Wiltshire SN15 1GE.  
Tel: +44 (0)1249 444524  
D-68623 Lampertheim  
Tel: +49 6206 503-0  
WESTCODE  
Fax: +49 6206 503-627  
E-mail: marcom@ixys.de  
Fax: +44 (0)1249 659448  
An IXYS Company  
E-mail: WSL.sales@westcode.com  
IXYS Corporation  
Westcode Semiconductors Inc  
3270 Cherry Avenue  
3540 Bassett Street  
www.westcode.com  
www.ixys.com  
Santa Clara CA 95054 USA  
Tel: +1 (408) 982 0700  
Fax: +1 (408) 496 0670  
E-mail: sales@ixys.net  
Long Beach CA 90807 USA  
Tel: +1 (562) 595 6971  
Fax: +1 (562) 595 8182  
E-mail: WSI.sales@westcode.com  
The information contained herein is confidential and is protected by Copyright. The information may not be used or  
© Westcode Semiconductors Ltd.  
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 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 M0863LC260 to M0863LC360 Issue 1  
Page 11 of 11  
November, 2003  

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