TLP3520A [TOSHIBA]

Triac Driver Programmable Controllers AC.Output Module Solid State Relay; 可控硅驱动器可编程控制器AC.Output模块固态继电器
TLP3520A
型号: TLP3520A
厂家: TOSHIBA    TOSHIBA
描述:

Triac Driver Programmable Controllers AC.Output Module Solid State Relay
可控硅驱动器可编程控制器AC.Output模块固态继电器

驱动器 可控硅 继电器 固态继电器 控制器
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中文:  中文翻译
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TLP3520A  
TOSHIBA Photocoupler GaAs Ired&Photo-Triac  
TLP3520A  
Triac Driver  
Programmable Controllers  
ACOutput Module  
Solid State Relay  
Unit in mm  
The TOSHIBA TLP3520A consists of a phototriac optically coupled to a  
gallium arsenide infrared emitting diode in a 16 lead plastic DIP  
package.  
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Peak offstate voltage: 400 V (min.)  
Trigger LED current: 10 mA (max.)  
Onstate current: 1.2 A  
(max.)  
(min.)  
rms  
Isolation voltage: 2500 V  
Trigger LED current  
rms  
TOSHIBA  
1120A2  
Weight: 1.13 g  
Trigger LED current (mA)  
VT = 6V, Ta = 25°C  
Classi-  
Marking of  
classification  
fication*  
Min.  
¾
Max.  
5.0  
7.0  
10  
Pin Configuration (top view)  
(IFT5)  
(IFT7)  
T5  
¾
T5, T7  
Standard  
¾
T5, T7, blank  
2
3
4
5
6
15  
*Ex. (IFT5); TLP3520A (IFT5)  
(Note) Application type name for certification test, please use  
standard product type name, i.e.  
TLP3520A (IFT5): TLP3520A  
13  
11  
9
2 : ANODE  
3 : CATHODE  
7
4,5,6,7: N.C.  
9,13 : TRIAC T2  
11 : TRIAC T1  
15 : TRIAC GATE  
1
2002-09-25  
TLP3520A  
Maximum Ratings (Ta = 25°C)  
Characteristic  
Symbol  
Rating  
Unit  
Forward current  
I
50  
-0.7  
1
mA  
F
Forward current derating (Ta 53°C)  
Peak forward current (100 µs pulse, 100 pps)  
Reverse voltage  
I / °C  
F
mA / °C  
I
A
V
FP  
V
5
R
Junction temperature  
T
125  
400  
1.2  
0.9  
-15  
°C  
V
j
Off-state output terminal voltage  
V
DRM  
Ta = 40°C  
On-state RMS current  
I
A
T(RMS)  
Ta = 60°C  
On-state current derating (Ta 40°C)  
I / °C  
T
mA / °C  
A
Peak current from snubber circuit  
(100µs pulse, 120 pps)  
I
2
SP  
Peak nonrepetitive surge current (50 Hz, peak)  
Junction temperature  
I
10  
120  
A
TSM  
T
°C  
°C  
°C  
°C  
j
Storage temperature range  
T
-40~125  
-20~80  
260  
stg  
opr  
Operating temperature range  
T
Lead soldering temperature (10 s)  
T
sol  
Isolation voltage (AC, 1 min., R.H.60%)  
(Note)  
BV  
2500  
V
rms  
S
(Note)Device considered a two terminal: LED side pins shorted together  
and detector side pins shorted together.  
Recommended Operating Conditions  
Characteristic  
Symbol  
Min.  
Typ.  
Max.  
Unit  
Supply voltage  
Forward current  
V
15  
20  
120  
25  
1
V
ac  
AC  
I
mA  
A
F
Peak current from snubber circuit  
Operating temperature  
I
SP  
T
-20  
80  
°C  
opr  
2
2002-09-25  
TLP3520A  
Individual Electrical Characteristics (Ta = 25°C)  
Characteristic  
Forward voltage  
Symbol  
Test Condition  
= 10 mA  
F
Min.  
Typ.  
Max.  
Unit  
V
I
1.0  
1.15  
1.3  
10  
V
µA  
pF  
µA  
V
F
Reverse current  
I
V = 5 V  
R
R
Capacitance  
C
T
V = 0, f = 1 MHz  
= 400 V, Ta = 110°C  
30  
Peak off-state current  
Peak on-state voltage  
Holding current  
I
V
100  
3.0  
25  
DRM  
DRM  
V
I
= 1.5 A  
TM  
TM  
I
R = 100Ω  
L
mA  
H
Critical rate of rise of  
dv / dt  
V
V
= 120 V  
(Fig.1)  
(Fig.1)  
200  
500  
5
V / µs  
V / µs  
in  
in  
rms  
off-state voltage  
Critical rate of rise of  
commutating voltage  
= 120 V , I = 1.0 A  
rms T rms  
dv / dt (c)  
Coupled Electrical Characteristics (Ta = 25°C)  
Characteristic  
Trigger LED current  
Symbol  
Test Condition  
Min.  
Typ.  
Max.  
10  
Unit  
mA  
pF  
I
V
V
V
= 6 V  
FT  
T
S
S
Capacitance  
C
= 0, f = 1 MHz  
1.5  
S
S
(input to output)  
Isolation resistance  
R
= 500 V  
5×1010  
2500  
1014  
AC, 1 minute  
V
rms  
Isolation voltage  
BV  
AC, 1 second, in oil  
DC, 1 minute, in oil  
5000  
5000  
S
V
dc  
Fig.1: dv / dt test circuit  
R
in  
5V,VCC  
0V  
15  
13  
11  
9
+
-
2
3
V
CC  
120Ω  
V
in  
dv / dt(c)  
dv / dt  
R
L
3
2002-09-25  
TLP3520A  
I
Ta  
I
Ta  
T(RMS)  
F
100  
2.0  
1.6  
1.2  
80  
60  
0.8  
0.4  
0
40  
20  
0
-20  
0
20  
40  
60  
80  
100  
120  
-20  
0
20  
40  
60  
80  
100  
120  
Ambient temperature Ta (°C)  
Ambient temperature Ta (°C)  
I
– V  
F
I
– D  
F
FP  
R
5000  
3000  
100  
Pulse width100µs  
Ta = 25°C  
Ta = 25°C  
50  
30  
1000  
10  
500  
300  
5
3
100  
1
50  
30  
0.5  
0.3  
0.1  
10  
10-3  
3
10-2  
Duty cycle ratio  
3
10-1  
3
100  
0.6  
0.8  
1.0  
1.2  
1.4  
1.6  
1.8  
3
Forward voltage  
V
(V)  
D
R
F
V / Ta – I  
I
– V  
FP FP  
F
F
-3.2  
-2.8  
-2.4  
-2.0  
-1.6  
-1.2  
-0.8  
-0.4  
1000  
500  
300  
100  
50  
30  
10  
Pulse width10µs  
Repetitive frequency  
= 100Hz  
5
3
Ta = 25°C  
1
0.1  
0.3 0.5  
1
3
5
10  
(mA)  
30 50  
0.6  
1.0  
1.4  
1.8  
2.2  
2.6  
Forward current  
I
F
Pulse forward voltage  
V
(V)  
FP  
4
2002-09-25  
TLP3520A  
Normalized I Ta  
Normalized I Ta  
H
FT  
3
2
3
2
V
T
= 3V  
1.2  
1
1.2  
1
0.5  
0.3  
0.5  
0.3  
0.1  
-40  
0.1  
-40  
-20  
0
20  
40  
60  
80  
100  
-20  
0
20  
40  
60  
80  
100  
AMBIENT TEMPERATURE Ta (°C)  
Ambient temperature Ta (°C)  
Normalized I  
Ta  
Normalized V  
Ta  
DRM  
DRM  
103  
102  
1.4  
V
DRM  
= Rated  
1.2  
1.0  
0.8  
0.6  
101  
100  
0.4  
0.2  
-40  
-20  
0
20  
40  
60  
80  
100  
0
20  
40  
60  
80  
100  
Ambient temperature Ta (°C)  
Ambient temperature Ta (°C)  
Normalized LED current  
– LED Current Pulse Width  
10  
5
3
2
1.6  
1.2  
1
0.5  
0.3  
10  
30  
50  
100  
300 500  
(µs)  
1000  
LED current pulse width  
P
W
5
2002-09-25  
TLP3520A  
RESTRICTIONS ON PRODUCT USE  
000707EBC  
·
TOSHIBA is continually working to improve the quality and reliability of its products. Nevertheless, semiconductor  
devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical  
stress. It is the responsibility of the buyer, when utilizing TOSHIBA products, to comply with the standards of  
safety in making a safe design for the entire system, and to avoid situations in which a malfunction or failure of  
such TOSHIBA products could cause loss of human life, bodily injury or damage to property.  
In developing your designs, please ensure that TOSHIBA products are used within specified operating ranges as  
set forth in the most recent TOSHIBA products specifications. Also, please keep in mind the precautions and  
conditions set forth in the “Handling Guide for Semiconductor Devices,” or “TOSHIBA Semiconductor Reliability  
Handbook” etc..  
·
The TOSHIBA products listed in this document are intended for usage in general electronics applications  
(computer, personal equipment, office equipment, measuring equipment, industrial robotics, domestic appliances,  
etc.). These TOSHIBA products are neither intended nor warranted for usage in equipment that requires  
extraordinarily high quality and/or reliability or a malfunction or failure of which may cause loss of human life or  
bodily injury (“Unintended Usage”). Unintended Usage include atomic energy control instruments, airplane or  
spaceship instruments, transportation instruments, traffic signal instruments, combustion control instruments,  
medical instruments, all types of safety devices, etc.. Unintended Usage of TOSHIBA products listed in this  
document shall be made at the customer’s own risk.  
·
Gallium arsenide (GaAs) is a substance used in the products described in this document. GaAs dust and fumes  
are toxic. Do not break, cut or pulverize the product, or use chemicals to dissolve them. When disposing of the  
products, follow the appropriate regulations. Do not dispose of the products with other industrial waste or with  
domestic garbage.  
·
·
The products described in this document are subject to the foreign exchange and foreign trade laws.  
The information contained herein is presented only as a guide for the applications of our products. No  
responsibility is assumed by TOSHIBA CORPORATION for any infringements of intellectual property or other  
rights of the third parties which may result from its use. No license is granted by implication or otherwise under  
any intellectual property or other rights of TOSHIBA CORPORATION or others.  
·
The information contained herein is subject to change without notice.  
6
2002-09-25  

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