SSAC90GK16 [SIRECTIFIER]

晶闸管(可控硅)Thyristors (SCRs),固态交流开关(反并联晶闸管模块),Solid State AC Controller (Anti-Parallel Thyristor-Thyristor Modules).; 晶闸管(可控硅)晶闸管(SCR ) ,固态交流开关(反并联晶闸管模块) ,固态交流开关(晶闸管反并联可控硅模块) 。
SSAC90GK16
型号: SSAC90GK16
厂家: SIRECTIFIER SEMICONDUCTORS    SIRECTIFIER SEMICONDUCTORS
描述:

晶闸管(可控硅)Thyristors (SCRs),固态交流开关(反并联晶闸管模块),Solid State AC Controller (Anti-Parallel Thyristor-Thyristor Modules).
晶闸管(可控硅)晶闸管(SCR ) ,固态交流开关(反并联晶闸管模块) ,固态交流开关(晶闸管反并联可控硅模块) 。

可控硅 开关
文件: 总4页 (文件大小:453K)
中文:  中文翻译
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SSAC90  
Solid State AC Controller(Anti-Parallel Thyristor-Thyristor Modules)  
Dimensions in mm (1mm=0.0394")  
Type  
VRSM  
VDSM  
V
VRRM  
VDRM  
V
SSAC90GK08  
SSAC90GK12  
SSAC90GK14  
SSAC90GK16  
SSAC90GK18  
SSAC90GK20  
900  
800  
1300  
1500  
1700  
1900  
2100  
1200  
1400  
1600  
1800  
2000  
Symbol  
Test Conditions  
Maximum Ratings  
Unit  
I
I
TRMS, IFRMS TVJ=TVJM  
180  
90  
A
TAVM, IFAVM TC=85oC; 180o sine  
TVJ=45oC  
VR=0  
TVJ=TVJM  
VR=0  
t=10ms (50Hz), sine  
t=8.3ms (60Hz), sine  
t=10ms(50Hz), sine  
t=8.3ms(60Hz), sine  
1700  
1800  
1540  
1640  
ITSM, IFSM  
A
TVJ=45oC  
t=10ms (50Hz), sine  
t=8.3ms (60Hz), sine  
t=10ms(50Hz), sine  
t=8.3ms(60Hz), sine  
14450  
13500  
11850  
11300  
VR=0  
i2dt  
A2s  
TVJ=TVJM  
VR=0  
150  
TVJ=TVJM  
f=50Hz, tp=200us  
(di/dt)cr VD=2/3VDRM  
IG=0.45A  
repetitive, IT=250A  
A/us  
500  
non repetitive, IT=ITAVM  
VDR=2/3VDRM  
diG/dt=0.45A/us  
TVJ=TVJM;  
RGK= ; method 1 (linear voltage rise)  
1000  
V/us  
W
(dv/dt)cr  
TVJ=TVJM  
IT=ITAVM  
tp=30us  
tp=300us  
10  
5
PGM  
0.5  
10  
W
V
PGAV  
VRGM  
-40...+125  
125  
-40...+125  
TVJ  
TVJM  
Tstg  
oC  
50/60Hz, RMS  
IISOL<1mA  
t=1min  
t=1s  
3000  
3600  
VISOL  
V~  
_
Mounting torque (M5)  
Terminal connection torque (M5)  
2.5-4.0/22-35  
2.5-4.0/22-35  
Nm/lb.in.  
g
Md  
Typical including screws  
Weight  
90  
SSAC90  
Solid State AC Controller(Anti-Parallel Thyristor-Thyristor Modules)  
Symbol  
Test Conditions  
Characteristic Values  
Unit  
TVJ=TVJM; VR=VRRM; VD=VDRM  
IT, IF=300A; TVJ=25oC  
For power-loss calculations only (TVJ=125oC)  
5
mA  
V
IRRM, IDRM  
VT, VF  
VTO  
1.74  
0.85  
3.2  
V
m
rT  
VD=6V;  
TVJ=25oC  
TVJ=-40oC  
2.5  
2.6  
V
VGT  
IGT  
VD=6V;  
TVJ=25oC  
150  
200  
mA  
TVJ=-40oC  
TVJ=TVJM;  
VD=2/3VDRM  
0.2  
10  
V
VGD  
IGD  
mA  
TVJ=25oC; tp=10us; VD=6V  
IG=0.45A; diG/dt=0.45A/us  
TVJ=25oC; VD=6V; RGK=  
TVJ=25oC; VD=1/2VDRM  
IG=0.45A; diG/dt=0.45A/us  
IL  
IH  
450  
200  
2
mA  
mA  
us  
tgd  
TVJ=TVJM; IT=150A; tp=200us; -di/dt=10A/us  
VR=100V; dv/dt=20V/us; VD=2/3VDRM  
typ.  
185  
us  
tq  
TVJ=TVJM; IT, IF=50A; -di/dt=6A/us  
170  
45  
uC  
A
QS  
IRM  
per thyristor/diode; DC current  
per module  
0.3  
0.15  
K/W  
K/W  
RthJC  
RthJK  
per thyristor/diode; DC current  
per module  
0.5  
0.25  
Creeping distance on surface  
Strike distance through air  
12.7  
9.6  
50  
mm  
mm  
m/s2  
dS  
dA  
a
Maximum allowable acceleration  
FEATURES  
APPLICATIONS  
ADVANTAGES  
* International standard package  
* Copper Base Plate with Inter-DCB  
* Planar passivated chips  
* Isolation voltage 3600 V~  
* DC motor control  
* Space and weight savings  
* Softstart AC motor controller  
* Light, heat and temperature  
control  
* Simple mounting with two screws  
* Improved temperature and power  
cycling  
* Reduced protection circuits  
SSAC90  
Solid State AC Controller(Anti-Parallel Thyristor-Thyristor Modules)  
Fig. 1 Surge overload current  
ITSM, IFSM: Crest value, t: duration  
Fig. 2 i2dt versus time (1-10 ms)  
Fig. 2a Maximum forward current  
at case temperature  
Fig. 3 Power dissipation versus on-state current and ambient temperature  
(per thyristor or diode)  
Fig. 4 Gate trigger characteristics  
3 x SSAC90  
Fig. 5 Three phase rectifier bridge: Power dissipation versus direct output current  
and ambient temperature  
Fig. 6 Gate trigger delay time  
SSAC90  
Solid State AC Controller(Anti-Parallel Thyristor-Thyristor Modules)  
Fig. 7 Three phase AC-controller:  
Power dissipation versus RMS  
output current and ambient  
temperature  
3*SSAC90  
Fig. 8 Transient thermal impedance  
junction to case (per thyristor or  
SSAC90  
diode)  
RthJC for various conduction angles d:  
d
RthJC (K/W)  
DC  
0.3  
180oC  
120oC  
60oC  
30oC  
0.31  
0.33  
0.35  
0.37  
Constants for ZthJC calculation:  
i
Rthi (K/W)  
ti (s)  
1
2
3
0.008  
0.054  
0.238  
0.0019  
0.047  
0.3  
Fig. 9 Transient thermal impedance  
junction toheatsink(perthyristor  
or diode)  
SSAC90  
RthJK for various conduction angles d:  
d
RthJK (K/W)  
DC  
0.5  
180oC  
120oC  
60oC  
30oC  
0.51  
0.53  
0.55  
0.57  
3 x SSAC90  
Constants for ZthJK calculation:  
i
Rthi (K/W)  
ti (s)  
1
2
3
4
0.008  
0.054  
0.238  
0.2  
0.0019  
0.047  
0.3  
1.25  

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