A1080LC320 [IXYS]

Assymetric SCR, 2148A I(T)RMS, 3200V V(DRM), 3200V V(RRM), 1 Element;
A1080LC320
型号: A1080LC320
厂家: IXYS CORPORATION    IXYS CORPORATION
描述:

Assymetric SCR, 2148A I(T)RMS, 3200V V(DRM), 3200V V(RRM), 1 Element

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Date:- 16 June, 2005  
Data Sheet Issue:- 1  
WESTCODE  
IXYS  
An  
Company  
Provisional Data  
Asymmetric Thyristor  
Types A1080LC280 to A1080LC330  
Development Type No.: AX143LC330  
Absolute Maximum Ratings  
MAXIMUM  
LIMITS  
VOLTAGE RATINGS  
UNITS  
VDRM  
VDSM  
VRRM  
VRSM  
Repetitive peak off-state voltage, (note 1)  
Non-repetitive peak off-state voltage, (note 1)  
Repetitive peak reverse voltage, (note 1)  
Non-repetitive peak reverse voltage, (note 1)  
3300  
3300  
30  
V
V
V
V
30  
MAXIMUM  
LIMITS  
OTHER RATINGS  
UNITS  
IT(AV)M  
IT(AV)M  
IT(AV)M  
Maximum average on-state current, Tsink=55°C, (note 2)  
Maximum average on-state current. Tsink=85°C, (note 2)  
Maximum average on-state current. Tsink=85°C, (note 3)  
1080  
A
A
732  
435  
A
IT(RMS)M Nominal RMS on-state current, Tsink=25°C, (note 2)  
2148  
A
IT(d.c.)  
D.C. on-state current, Tsink=25°C, (note 4)  
1276  
A
ITSM2  
I2t  
12.5  
kA  
A2s  
A/µs  
A/µs  
V
Peak non-repetitive surge tp=10ms, Vrm 10V, (note 5)  
781×103  
2000  
I2t capacity for fusing tp=10ms, Vrm 10V, (note 5)  
Critical rate of rise of on-state current (non-repetitive), (Note 6)  
Critical rate of rise of on-state current (repetitive), (Note 6)  
Peak reverse gate voltage  
(di/dt)cr  
1000  
VRGM  
PG(AV)  
PGM  
10  
Mean forward gate power  
10  
W
Peak forward gate power  
30  
W
Tj op  
Operating temperature range  
-40 to +125  
-40 to +150  
°C  
°C  
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.  
6) VD=67% VDRM, IFG=2A, tr 0.5µs, Tcase=125°C.  
Data Sheet. Types A1080LC280- to A1080LC330 Issue 1  
Page 1 of 10  
June, 2005  
WESTCODE An IXYS Company  
Asymmetric Thyristor Types A1080LC280 to A1080LC330  
Characteristics  
PARAMETER  
MIN.  
TYP. MAX. TEST CONDITIONS  
UNITS  
(Note 1)  
-
-
1.4  
2.2  
ITM=1000A  
ITM=3240A  
V
V
V
VTM  
Maximum peak on-state voltage  
-
-
VT0  
rT  
Threshold voltage  
Slope resistance  
-
-
1.038  
0.369  
-
-
-
m
(dv/dt)cr Critical rate of rise of off-state voltage  
3000  
-
VD=80% VDRM, linear ramp, gate o/c  
Rated VDRM  
µ
V/ s  
IDRM  
IRRM  
VGT  
IGT  
Peak off-state current  
Peak reverse current  
Gate trigger voltage  
Gate trigger current  
Gate non-trigger voltage  
Holding current  
-
-
-
-
-
-
-
-
-
60  
mA  
mA  
V
-
60  
Rated VRRM  
-
-
3.0  
Tj=25°C  
VD=10V, IT=3A  
300  
mA  
V
VGD  
IH  
-
0.25 Rated VDRM  
1000 Tj=25°C  
-
mA  
µs  
tgd  
Gate-controlled turn-on delay time  
Turn-on time  
0.4  
0.7  
1.0  
1.5  
VD=90% VDRM, IT=6000A, di/dt=1500A/µs,  
I
FG=2A, tr=0.5µs, Tj=25°C  
tgt  
µs  
ITM=1000A, tp=2000µs, di/dt=60A/µs,  
Vr=10V, Vdr=80%VDRM, dVdr/dt=20V/µs  
ITM=1000A, tp=2000µs, di/dt=60A/µs,  
Vr=10V, Vdr=80%VDRM, dVdr/dt=200V/µs  
-
-
330  
550  
-
-
tq  
Turn-off time  
µs  
-
-
-
0.032 Double side cooled  
K/W  
K/W  
kN  
RthJK  
Thermal resistance, junction to heatsink  
-
-
0.064 Single side cooled  
F
Mounting force  
Weight  
10  
-
20  
-
(See note 2)  
Wt  
340  
g
Notes:-  
1) Unless otherwise indicated Tj=125°C.  
2) For all other mounting forces, please consult factory.  
Data Sheet. Types A1080LC280- to A1080LC330 Issue 1  
Page 2 of 10  
June, 2005  
WESTCODE An IXYS Company  
Asymmetric Thyristor Types A1080LC280 to A1080LC330  
Notes on Ratings and Characteristics  
1.0 Voltage Grade Table  
V
DRM VDSM  
VRRM  
VD  
Voltage Grade  
V
DC V  
1650  
1750  
1800  
1825  
28  
30  
32  
33  
2800  
3000  
3200  
3300  
30  
30  
30  
30  
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 Repetitive dv/dt  
Standard dv/dt is 1000V/µs.  
5.0 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.  
6.0 Rate of rise of on-state current  
The maximum un-primed rate of rise of on-state current must not exceed 2000A/µs at any time during  
turn-on on a non-repetitive basis. For repetitive performance, the on-state rate of rise of current must not  
exceed 1000A/µs at any time during turn-on. Note that these values of rate of rise of current apply to the  
total device current including that from any local snubber network.  
7.0 Gate Drive  
The nominal requirement for a typical gate drive is illustrated below. An open circuit voltage of at least 30V  
is assumed. This gate drive must be applied when using the full di/dt capability of the device.  
IGM  
4A/µs  
IG  
tp1  
The magnitude of IGM should be between five and ten times IGT, which is shown on page 3. Its duration  
(tp1) should be 20µs or sufficient to allow the anode current to reach ten times IL, whichever is greater.  
Otherwise, an increase in pulse current could be needed to supply the necessary charge to trigger. The  
‘back-porch’ current IG should remain flowing for the same duration as the anode current and have a  
magnitude in the order of 1.5 times IGT.  
8.0 Computer Modelling Parameters  
Data Sheet. Types A1080LC280- to A1080LC330 Issue 1  
Page 3 of 10  
June, 2005  
WESTCODE An IXYS Company  
Asymmetric Thyristor Types A1080LC280 to A1080LC330  
8.1 Device Dissipation Calculations  
T  
Rth  
2
VT 0 + VT 0 + 4ff 2 r WAV  
WAV =  
T
IAV =  
and:  
2ff 2 r  
T
T = Tj max TK  
Ω,  
Where VT0=1.038, rT=0.369m  
R
= Supplementary thermal impedance, see table below and  
th  
ff  
= Form factor, see table below.  
Supplementary Thermal Impedance  
Conduction Angle  
30°  
60°  
90°  
120°  
180°  
0.036  
0.0688  
0.032  
0.064  
270°  
0.0345  
0.0665  
d.c.  
0.032  
0.064  
Square wave Double Side Cooled  
Square wave Single Side Cooled  
Sine wave Double Side Cooled  
Sine wave Single Side Cooled  
0.048  
0.079  
0.0415  
0.0735  
0.0436  
0.0769  
0.0394  
0.0718  
0.0413  
0.074  
0.0378  
0.07  
0.0388  
0.0716  
0.0355  
0.0679  
Form Factors  
Conduction Angle  
Square wave  
Sine wave  
30°  
3.46  
3.98  
60°  
2.45  
2.78  
90°  
2
2.22  
120°  
1.73  
1.88  
180°  
1.41  
1.57  
270°  
1.15  
d.c.  
1
8.2 Calculating VT using ABCD Coefficients  
The on-state characteristic IT vs. VT, on page 6 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 VT in  
terms of IT given below:  
VT A B ln IT C IT D IT  
= + ⋅ ( )+ ⋅ + ⋅  
The constants, derived by curve fitting software, are given below for both hot and cold characteristics. The  
resulting values for VT agree with the true device characteristic over a current range, which is limited to  
that plotted.  
25°C Coefficients  
125°C Coefficients  
A
B
C
D
1.63008  
-0.109143  
2.16×10-4  
0.010709  
A
B
C
D
0.035552  
0.206122  
4.37×10-4  
-0.015558  
Data Sheet. Types A1080LC280- to A1080LC330 Issue 1  
Page 4 of 10  
June, 2005  
WESTCODE An IXYS Company  
Asymmetric Thyristor Types A1080LC280 to A1080LC330  
8.3 D.C. Thermal Impedance Calculation  
t  
τ p  
p=n  
r = r 1e  
t
p
p=1  
p = 1 n, n  
to  
Where  
is the number of terms in the series and:  
t = Duration of heating pulse in seconds.  
rt  
= Thermal resistance at time t.  
r
p
= Amplitude of pth term.  
τ
p  
= Time Constant of rth term.  
The coefficients for this device are shown in the tables below:  
D.C. Double Side Cooled  
Term  
rp  
τp  
1
2
3
4
0.01771901  
0.7085781  
4.240625×10-3  
0.1435833  
6.963806×10-3  
0.03615196  
3.043661×10-3  
2.130842×10-3  
D.C. Single Side Cooled  
Term  
rp  
τp  
1
2
3
4
5
0.03947164  
4.090062  
0.01022837  
1.078983  
8.789912×10-3 4.235162×10-3 1.907609×10-3  
0.08530917  
0.01128791  
1.240861×10-3  
Data Sheet. Types A1080LC280- to A1080LC330 Issue 1  
Page 5 of 10  
June, 2005  
WESTCODE An IXYS Company  
Asymmetric Thyristor Types A1080LC280 to A1080LC330  
Curves  
Figure 1 - On-state characteristics of Limit device  
Figure 2 - Transient thermal impedance  
0.1  
10000  
A1080LC280-330  
A1080LC280-330  
AD Issue 1  
AD Issue 1  
SSC 0.064K/W  
Tj = 25°C  
Tj = 125°C  
DSC 0.032K/W  
1000  
0.01  
100  
0.001  
0
1
2
3
4
5
0.001  
0.01  
0.1  
1
10  
100  
Instantaneous On-state voltage - VTM (V)  
Time (s)  
Figure 3 - Gate characteristics - Trigger limits  
Figure 4 - Gate characteristics - Power curves  
7
14  
A1080LC280-330  
A1080LC280-330  
AD Issue 1  
Tj=25°C  
AD Issue 1  
Tj=25°C  
12  
6
Max VG dc  
Max VG dc  
10  
8
5
IGT, VGT  
4
6
3
2
PG Max 30W dc  
4
PG 4W dc  
Min VG dc  
2
1
IGD, VGD  
Min VG dc  
8
0
0
0
2
4
6
10  
0
0.2  
0.4  
0.6  
0.8  
1
Gate Trigger Current - IGT (A)  
Gate Trigger Current - IGT (A)  
Data Sheet. Types A1080LC280- to A1080LC330 Issue 1  
Page 6 of 10  
June, 2005  
WESTCODE An IXYS Company  
Asymmetric Thyristor Types A1080LC280 to A1080LC330  
Figure 5 – On-state current vs. Power dissipation –  
Double Side Cooled (Sine wave)  
Figure 6 – On-state current vs. Heatsink  
temperature - Double Side Cooled (Sine wave)  
3500  
140  
A1080LC280-330  
A1080LC280-330  
AD Issue 1  
AD Issue 1  
180°  
3000  
120  
120°  
90°  
60°  
2500  
2000  
1500  
1000  
500  
100  
80  
30°  
60  
40  
30°  
60°  
90°  
120°  
180°  
20  
0
0
0
500  
1000  
1500  
0
500  
1000  
1500  
Mean forward current (A) (Whole cycle averaged)  
Mean forward current (A) (Whole cycle averaged)  
Figure 7 – On-state current vs. Power dissipation –  
Double Side Cooled (Square wave)  
Figure 8 – On-state current vs. Heatsink  
temperature – Double Side Cooled (Square wave)  
3500  
140  
A1080LC280-330  
A1080LC280-330  
AD Issue 1  
AD Issue 1  
d.c.  
3000  
120  
270°  
180°  
120°  
2500  
2000  
1500  
1000  
500  
100  
80  
90°  
60°  
30°  
60  
40  
30°  
60° 90°  
d.c.  
120° 180° 270°  
20  
0
0
0
500  
1000  
1500  
2000  
0
500  
1000  
1500  
2000  
Mean Forward Current (Amps) (Whole Cycle Averaged)  
Mean Forward Current (Amps) (Whole Cycle Averaged)  
Data Sheet. Types A1080LC280- to A1080LC330 Issue 1  
Page 7 of 10  
June, 2005  
WESTCODE An IXYS Company  
Asymmetric Thyristor Types A1080LC280 to A1080LC330  
Figure 9 – On-state current vs. Power dissipation –  
Single Side Cooled (Sine wave)  
Figure 10 – On-state current vs. Heatsink  
temperature – Single Side Cooled (Sine wave)  
1800  
140  
A1080LC280-330  
A1080LC280-330  
AD Issue 1  
AD Issue 1  
1600  
1400  
1200  
1000  
800  
600  
400  
200  
0
180°  
120  
100  
80  
120°  
90°  
60°  
30°  
60  
40  
30°  
60° 90°  
120° 180°  
20  
0
0
200  
400  
600  
800  
1000  
0
200  
400  
600  
800  
1000  
Mean forward current (A) (Whole cycle averaged)  
Mean forward current (A) (Whole cycle averaged)  
Figure 11 – On-state current vs. Power dissipation  
– Single Side Cooled (Square wave)  
Figure 12 – On-state current vs. Heatsink  
temperature – Single Side Cooled (Square wave)  
1800  
140  
A1080LC280-330  
A1080LC280-330  
AD Issue 1  
AD Issue 1  
1600  
1400  
1200  
1000  
800  
600  
400  
200  
0
d.c.  
120  
270°  
180°  
120°  
90°  
60°  
30°  
100  
80  
60  
40  
120° 180° 270°  
d.c.  
30°  
60° 90°  
20  
0
0
200  
400  
600  
800  
1000  
1200  
0
200  
400  
600  
800  
1000  
1200  
Mean Forward Current (Amps) (Whole Cycle Averaged)  
Mean Forward Current (Amps) (Whole Cycle Averaged)  
Data Sheet. Types A1080LC280- to A1080LC330 Issue 1  
Page 8 of 10  
June, 2005  
WESTCODE An IXYS Company  
Asymmetric Thyristor Types A1080LC280 to A1080LC330  
Figure 13 - Maximum surge and I2t Ratings  
100000  
1.00E+07  
A1080LC280-330  
AD Issue 1  
Tj (initial) = 125°C  
I2t: VRRM 10V  
10000  
1.00E+06  
ITSM: VRRM 10V  
1000  
1.00E+05  
1
3
5
10  
1
5
10  
50 100  
Duration of surge (ms)  
Duration of surge (cycles @ 50Hz)  
Data Sheet. Types A1080LC280- to A1080LC330 Issue 1  
Page 9 of 10  
June, 2005  
WESTCODE An IXYS Company  
Asymmetric Thyristor Types A1080LC280 to A1080LC330  
Outline Drawing & Ordering Information  
ORDERING INFORMATION  
(Please quote 10 digit code as below)  
  
A1080  
LC  
0
Voltage code  
Fixed turn-off  
VDRM/100  
time code  
28-33  
Fixed  
Fixed  
Type Code  
outline code  
Order code: A1080LC300 – 3000V VDRM, 30V VRRM, 27mm 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  
Fax: +44 (0)1249 659448  
An IXYS Company  
E-mail: marcom@ixys.de  
E-mail: WSL.sales@westcode.com  
IXYS Corporation  
Westcode Semiconductors Inc  
3270 Cherry Avenue  
3540 Bassett Street  
www.westcode.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  
www.ixys.com  
E-mail: WSI.sales@westcode.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 A1080LC280- to A1080LC330 Issue 1  
Page 10 of 10  
June, 2005  

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