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 TLP523,TLP523-2,TLP523-4
TOSHIBA Photocoupler GaAs Ired & Photo-Transistor
TLP523, TLP523-2, TLP523-4 - -
Unit in mm
Programmable Controllers DC-Output Module Solid State Relay
The TOSHIBA TLP523, -2 and -4 consists of a gallium arsenide infrared emitting diode coupled with a silicon, darlington connected, phototransistor which has an integral base-emitter resistor to optimize switching speed and elevated temperature characteristics. The TLP523-2 offers two isolated channels in a eight lead plastic DIP package, while the TLP523-4 provide four isolated channels per package. * * * * * Current transfer ratio: 500% (min.) (IF = 1 mA) Isolation voltage: 2500 Vrms (min.) Collector-emitter voltage: 55 V (min.) Leakage current: 10A (max.) (Ta = 85C) UL recognized: UL1577, file no. E67349
TOSHIBA Weight: 0.26 g
11-5B2
Pin Configurations (top view)
TLP523 1 2 4 3 1 2 3 4 1, 3 : Anode 2, 4 : Cathode 5, 7 : Emitter 6, 8 : Collector TLP523-2 8 7 6 5 1 2 3 4 5 6 7 8 TLP523-4 16
TOSHIBA
15 14 13 12 11 10 9
11-10C4
Weight: 0.54 g
1 : Anode 2 : Cathode 3 : Emitter 4 : Collector
: Anode 1, 3, 5, 7 : Cathode 2, 4, 6, 8 9, 11, 13, 15 : Emitter 10, 12, 14, 16 : Collector
TOSHIBA Weight: 1.1 g
11-20A3
1
2002-09-25
TLP523,TLP523-2,TLP523-4
Maximum Ratings (Ta = 25C)
Rating Characteristic Forward current LED Forward current derating Pulse forward current Reverse voltage Collector-emitter voltage Emitter-collector valtage Detector Collector current Collector power dissipation (1 circuit) Collector power dissipation derating (1 circuit (Ta 25C)) Operating temperature range Storage temperature range Lead soldering temperature (10 s) Total power dissipation Total power dissipation derating (Ta 25C) Isolation voltage (Note 1) Symbol IF IF /C IFP VR VCEO VECO IC PC PC /C Topr Tstg Tsol PT PT /C BVS 250 -2.5 150 -1.5 -55~100 -55~125 260 150 -1.5 TLP523 60 -0.7 (Ta 39C) TLP523-2 TLP523-4 50 -0.5 (Ta 25C) Unit mA mA /C A V V V mA 100 -1.0 mW mW /C C C C mW mW /C Vrms
1 (100s pulse, 100pps) 5 55 0.3 150
2500 (AC, 1min., R.H. 60%)
(Note 1) Device considered a two terminal device: LED side pins shorted together and detector side pins shorted together.
Recommended Operating Conditions
Characteristic Supply voltage Forward current Operating temperature range Symbol VCC IF Topr Min. -25 Typ. 5 16 Max. 24 20 85 Unit V mA C
2
2002-09-25
TLP523,TLP523-2,TLP523-4
Electrical Characteristics (Ta = 25C)
Characteristic Forward voltage LED Reverse current Capacitance Collector-emitter breakdown voltage Detector Collector dark current Capacitance collector to emitter Current transfer ratio Coupled Collector-emitter saturation voltage Capacitance input to output Isolation resistance Symbol VF IR CT V(BR) CEO ICEO CCE IC / IF VCE(sat) CS RS Test Condition IF = 10 mA VR = 5 V V = 0, f = 1 MHz IC = 1 mA VCE = 24 V VCE = 24 V, Ta = 85C V = 0, f = 1 MHz IF = 1 mA, VCE = 1 V IC = 50 mA, IF = 10 mA VS = 0, f = 1 MHz VS = 500 V, R.H. 60% Min. 1.0 -- -- 55 -- -- -- 500 -- -- 5x10
10
Typ. 1.15 -- 30 -- 10 0.5 10 2000 -- 0.8 10
14
Max. 1.3 10 -- -- 200 10 -- -- 1 -- --
Unit V A pF V nA A pF % V pF
Switching Characteristics (Ta = 25C)
Characteristic Turn-on time Turn-off time Symbol tON tOFF Test Condition VCC = 10 V, RL = 180 IF = 16 mA Min. -- -- Typ. 3 80 Max. -- -- Unit s s
Switching Time Test Circuit
IF IF RL VCC VCE IF
t
OFF 9V 1V
VCE
t
ON
3
2002-09-25
TLP523,TLP523-2,TLP523-4
100
IF - Ta
200
PC - Ta
Allowable collector power dissipation PC (mW)
Allowable forwafd current IF (mA)
80 TLP523 TLP523 -2, -4 40
160
TLP523
60
120
TLP523 -2, -4
80
20
40
0 -20
0
20
40
60
80
100
120
0 -20
0
20
40
60
80
100
120
Ambient temperature Ta ()
Ambient
temperature Ta ()
5000
IFP - DR
Pulse width 100s Ta = 25
100 Ta = 25 50 30
IF - VF
(mA)
3000
IFP
1000 500 300
(mA) Forward current IF
10 5 3
Pulse forward current
100 50 30 10 3
1 0.5 0.3
10-3
3
10-2
3
10
-1
3
100
Duty cycle patio DR
0.1 0.6
0.8
1.0
1.2
1.4
1.6
1.8
Forward voltage
VF
(V)
-3.2
VF / Ta - IF
1000 500
IFP - VFP
Forward voltage temperature coefficient VF / Ta (mV / )
-2.8 -2.4 -2.0 -1.6 -1.2 -0.8 -0.4 0.1
(mA) IFP Pulse forward current
300
100 50 30
10 5 3 Pulse width 10s Repetitive frequency = 100Hz Ta = 25
0.3
1
3
10
30
1 0.6
1.0
1.4
1.8
2.2
2.6
3
Forward current
IF
(mA)
Pulse forward voltage VFP
(V)
4
2002-09-25
TLP523,TLP523-2,TLP523-4
IC - IF
300
IC - IF
300 VCE = 1.2V Ta = 25C
VCE = 1V Ta = 25C
100
100 Sample 1
(mA)
(mA)
50 30
50 30
Sample 1
IC
IC
Collector current
3 10
Collector current
2
2 3 10
5 3
5 3
1 0.3
1
3
10
30
1 0.3
1
3
10
30
Forward current
IF
(mA)
Forward current
IF
(mA)
VCE(sat) - Ta
Test condition A : IC=100mA, IF=10mA B : IC=50mA, IF=10mA C : IC=10mA, IF=1mA D : IC=1mA, IF=0.5mA Test condition
IC - Ta
A : IF =10mA, VCE=1.2V B : IF =10mA, VCE=1.0V C : IF =2mA, VCE=1.2V D : IF =2mA, VCE=1.0V E : IF =1mA, VCE=1.2V F : IF =1mA, VCE=1.0V 140 Test condition A
(V) Collector-emitter saturation voltage VCE (sat)
1.6
1.4
IC (mA)
B C
1.2
120
Test condition
A
Collector current
1.0
100 B 80
0.8 D 0.6
60 C D
0.4
40
0.2
20
E F
0 -40
-20
0
20
40
60
80
100
0 -40
-20
0
20
40
60
80
100
Ambient temperature Ta ()
Ambient temperature Ta ()
5
2002-09-25
TLP523,TLP523-2,TLP523-4
IC - VCE
500 300 PC Max. Sample 100 2 50 50 1 100 300
IC - VCE
IF = 10mA 2mA Ta = 25
1mA
(mA)
30 PC Max. 10 5 3
IC
IC
(mA)
3
30
10 5 3
Collector current
0.5mA
Collector current
IF = 1mA Ta = 25 0.3 1 3 10 30
1 0.5 0.3
1 0.5 0.3
0.1 0.1
0.1 0
0.4
0.8
1.2
1.6
2.0
2.4
2.8
3.2
Collector-emitter voltage
VCE (V)
Collector-emitter voltage
VCE (V)
Switching Time
Ta = 25 IF VCC = 10V RL VOUT IF VOUT t 500 ON t OFF 90% 10% 100 500 300
Safe Operationg Area
1s 1s
10ms 10ms
(s)
300 t 100 50 30 t ON(IF=1mA) OFF(IF=10mA) t
(mA) IC
50 30 100ms 100ms DC operating Ta=25 10
Switching time
10 5 3 t ON(IF=10mA)
Collector current
OFF(IF=1mA)
5 3 Single nonrepetitive pulse Ta=25 Ta=60 1 3 10 30
1
30
100
300
1k
3k
10k
1 0.5
Load resistance RL ()
Collector-emitter voltage
VCE (V)
6
2002-09-25
TLP523,TLP523-2,TLP523-4
RESTRICTIONS ON PRODUCT USE
000707EAA
* 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. * 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.
7
2002-09-25


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