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TYN606RG

型号:

TYN606RG

描述:

6A可控硅[ 6A SCRS ]

品牌:

STMICROELECTRONICS[ ST ]

页数:

6 页

PDF大小:

65 K

TYN606  
TYN1006  
®
6A SCRS  
STANDARD  
Table 1: Main Features  
Symbol  
A
K
Value  
Unit  
IT(RMS)  
6
A
G
VDRM/VRRM  
IGT  
600 and 1000  
15  
V
mA  
A
DESCRIPTION  
K
The TYN606 and TYN1006 family of Silicon  
Controlled Rectifiers are high performance glass  
passivated technology.  
A
G
TO-220AB  
This general purpose Family of Silicon Controlled  
Rectifiers is designed for power supply up to  
400Hz on resistive or inductive load.  
Table 2: Order Codes  
Part Numbers  
TYN606RG  
Marking  
TYN606  
TYN1006  
TYN1006RG  
Table 3: Absolute Ratings (limiting values)  
Symbol  
Parameter  
Value  
6
Unit  
A
IT(RMS)  
Tc = 110°C  
Tc = 110°C  
RMS on-state current (180° conduction angle)  
Average on-state current (180° conduction angle)  
IT(AV)  
3.8  
73  
A
tp = 8.3 ms  
tp = 10 ms  
Non repetitive surge peak on-state  
current  
ITSM  
Tj = 25°C  
A
70  
²
²
tp = 10 ms Tj = 25°C  
Tj = 125°C  
24.5  
I t  
I t Value for fusing  
A2S  
Critical rate of rise of on-state current  
IG = 100 mA , dIG/dt = 0.1 A/µs  
dI/dt  
50  
A/µs  
IGM  
PG(AV)  
PGM  
tp = 20 µs  
Tj = 125°C  
Tj = 125°C  
Peak gate current  
4
1
A
Average gate power dissipation  
Maximum gate power  
W
W
tp = 20 µs Tj = 125°C  
10  
VDRM  
VRRM  
TYN606  
600  
1000  
Tj = 125°C  
Repetitive peak off-state voltage  
V
TYN1006  
Tstg  
Tj  
- 40 to + 150  
- 40 to + 125  
Storage junction temperature range  
Operating junction temperature range  
°C  
°C  
TL  
Maximum lead temperature for soldering during 10s at 2mm from case  
260  
February 2006  
REV. 2  
1/6  
TYN606 / TYN1006  
Tables 4: Electrical Characteristics (Tj = 25°C, unless otherwise specified)  
Symbol  
Test Conditions  
RL = 33  
VD = VDRM RL = 3.3 kΩ  
Value  
15  
Unit  
mA  
V
IGT  
MAX.  
MAX.  
MIN.  
TYP.  
MAX.  
TYP.  
VD = 12 V (D.C.)  
VGT  
VGD  
tgt  
1.5  
0.2  
2
Tj = 110°C  
Tj = 110°C  
V
VD = VDRM IG = 40 mA dIG/dt = 0.5 A/µs  
IT = 100 mA Gate open  
IG = 1.2 x IGT  
µs  
IH  
30  
mA  
mA  
IL  
50  
Linear slope up to:  
VD = 67 % VDRM Gate open  
dV/dt  
VTM  
MIN.  
200  
V/µs  
ITM = 12 A tp = 380 µs  
MAX.  
1.6  
10  
2
V
Tj = 25°C  
µA  
mA  
IDRM  
IRRM  
VDRM = VRRM  
MAX.  
TYP.  
Tj = 110°C  
tq  
VD = 67 % VDRM ITM = 12 A VR = 25 V  
dITM/dt = 30 A/µs dVD/dt = 50 V/µs  
Tj = 110°C  
70  
µs  
Table 5: Thermal Resistance  
Symbol  
Parameter  
Value Unit  
Rth(j-c)  
Rth(j-a)  
Junction to case (D.C.)  
Junction to ambient  
2.5  
60  
°C/W  
°C/W  
Figure 1: Maximum average power dissipation  
versus average on-state current  
Figure 2: Correlation between maximum  
average power dissipation and maximum  
allowable temperature (Tamb and Tlead  
)
P(W)  
P(W)  
T
(°C)  
lead  
7
7
6
Rth = 15°C/W  
Rth = 10°C/W  
Rth = 5°C/W  
Rth = 0°C/W  
α = 180°  
6
110  
DC  
α = 180°  
α = 120°  
5
5
4
3
2
1
0
α = 90°  
α = 60°  
4
115  
120  
125  
α = 30°  
3
2
360°  
1
I
(A)  
T(AV)  
T
(°C)  
amb  
α
0
0
20  
40  
60  
80  
100  
120  
140  
0.0  
0.5  
1.0  
1.5  
2.0  
2.5  
3.0  
3.5  
4.0  
4.5  
5.0  
2/6  
TYN606 / TYN1006  
Figure 3: Average on-state current versus case  
temperature  
Figure 4: Relative variation of thermal  
impedance versus pulse duration  
I
(A)  
K=[Z  
/R  
]
T(AV)  
th(j-c) th(j-c)  
7
6
5
4
3
2
1
0
1
D.C.  
Zth(j-c)  
α = 180°  
Zth(j-a)  
0.1  
t (s)  
p
T
(°C)  
case  
0.01  
0
10  
20  
30  
40  
50  
60  
70  
80  
90 100 110 120 130  
1E-3  
1E-2  
1E-1  
1E+0  
1E+1  
1E+2  
5E+2  
Figure 5: Relative variation of gate trigger  
current versus junction temperature  
Figure 6: Surge peak on-state current versus  
number of cycles  
I
,I ,I [T ] / I ,I ,I [T =25°C]  
GT  
H
L
j
GT  
H
L
j
I (A)  
TSM  
2.5  
2
80  
70  
60  
tp=10ms  
One cycle  
50  
40  
30  
20  
10  
0
1.5  
Tj initial=25°C  
IGT  
1
IH & IL  
0.5  
0
T (°C)  
j
Number of cycles  
1
10  
100  
1000  
-40 -30 -20 -10  
0
10 20 30 40 50 60 70 80 90 100 110  
Figure 7: Non-repetitive surge peak on-state  
current for a sinusoidal pulse with width  
tp < 10 ms, and corresponding values of I²t  
Figure 8: On-state characteristics (maximum  
values)  
(A), I2t (A2s)  
I (A)  
TM  
I
TSM  
100  
Tj initial = 25°C  
Tj=max  
ITSM  
100  
10  
Tj=25°C  
I2t  
Tj max.:  
Vt0=1.0V  
Rd=46mΩ  
V
(V)  
t (ms)  
p
TM  
1
10  
1
2
3
4
5
1
2
5
10  
3/6  
TYN606 / TYN1006  
Figure 9: Ordering Information Scheme  
TYN  
6
06 RG  
Standard SCR series  
Voltage  
6 = 600V  
10 = 100V  
Current  
06 = 6A  
Packing mode  
RG = Tube  
Table 6: Product Selector  
Voltage (xx)  
Part Numbers  
Sensitivity  
Package  
600 V  
1000 V  
TYN606RG  
X
15 mA  
15 mA  
TO-220AB  
TO-220AB  
TYN1006RG  
X
Figure 10: TO-220AB Package Mechanical Data  
DIMENSIONS  
Millimeters  
REF.  
Inches  
Min. Typ. Max. Min. Typ. Max.  
C
B
A
a1  
15.20  
15.90 0.598  
0.625  
Ø I  
b2  
3.75  
0.147  
L
a2 13.00  
14.00 0.511  
10.40 0.393  
0.88 0.024  
1.32 0.048  
4.60 0.173  
0.70 0.019  
2.72 0.094  
2.70 0.094  
6.60 0.244  
3.85 0.147  
0.551  
0.409  
0.034  
0.051  
0.181  
0.027  
0.107  
0.106  
0.259  
0.151  
F
B
b1  
b2  
C
c1  
c2  
e
10.00  
0.61  
1.23  
4.40  
0.49  
2.40  
2.40  
6.20  
3.75  
A
I4  
l3  
l2  
c2  
a1  
a2  
F
ØI  
M
c1  
I4 15.80 16.40 16.80 0.622 0.646 0.661  
b1  
e
L
2.65  
1.14  
1.14  
2.95 0.104  
1.70 0.044  
1.70 0.044  
0.116  
0.066  
0.066  
l2  
l3  
M
2.60  
0.102  
In order to meet environmental requirements, ST offers these devices in ECOPACK® packages. These  
packages have a Lead-free second level interconnect . The category of second level interconnect is  
marked on the package and on the inner box label, in compliance with JEDEC Standard JESD97. The  
maximum ratings related to soldering conditions are also marked on the inner box label. ECOPACK is an  
ST trademark. ECOPACK specifications are available at: www.st.com.  
4/6  
TYN606 / TYN1006  
Table 7: Ordering Information  
Ordering type  
TYN606RG  
Marking  
Package  
Weight Base qty Delivery mode  
TYN606  
TO-220AB  
2.3 g  
50  
Tube  
TYN1006RG  
TYN1006  
Table 8: Revision History  
Date  
Revision  
Description of Changes  
Sep-2001  
1A  
First issue.  
TO-220AB delivery mode changed from bulk to tube.  
ECOPACK statement added.  
13-Feb-2006  
2
5/6  
TYN606 / TYN1006  
Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences  
of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted  
by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject  
to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products are not  
authorized for use as critical components in life support devices or systems without express written approval of STMicroelectronics.  
The ST logo is a registered trademark of STMicroelectronics.  
All other names are the property of their respective owners  
© 2006 STMicroelectronics - All rights reserved  
STMicroelectronics group of companies  
Australia - Belgium - Brazil - Canada - China - Czech Republic - Finland - France - Germany - Hong Kong - India - Israel - Italy - Japan -  
Malaysia - Malta - Morocco - Singapore - Spain - Sweden - Switzerland - United Kingdom - United States of America  
www.st.com  
6/6  
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