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 TLP2630
TOSHIBA Photocoupler GaAAs Ired & Photo IC
TLP2630
Degital Logic Isolation Tele-Communication Analog Data Equipment Control Microprocessor System Interface
The TOSHIBA TLP2630 dual photocoupler consists of a pair of GaAAs light emitting diode and integrated high gain, high speed photodetector. The output of the detector circuit is an open collector, schottky clamped transistor.This unit is 8-lead DIP. * * * * * * Input current threshold: IF = 5mA(max.) LSTTL/TTL compatible: 5V supply Switching speed: 10MBd(typ.) Guaranteed performance over temperature: 0~70C Isolation voltage: 2500Vrms(min.) UL recognized:UL1577, file no. E67349 TOSHIBA Weight: 0.54 g 11-10C4 Unit in mm
Pin Configuration (top view)
1 2 3 4 GND VCC 8 7 6 5 1: Anode 1 2: Cathode 1 3: Cathode 2 4: Anode 2 5: GND 6: VO2 (output 2) 7: VO1 (output 1) 8: VCC
Truth Table (positive logic)
Input H L Output L H
Schematic
+ VF1 + VF2 1 2 4 3 5 GND IF2 IO2 6 IF1 ICC IO1 8 7 VCC VO1
A 0.01 to 0.1F bypass capacitor must connected between pins 8 and 5 (see Note 1).
VO2
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2002-09-25
TLP2630
Maximum Ratings (no derating required up to 70C)
Characteristic Forward current(each channel) LED Pulse forward current (each channel)* Reverse voltage(each channel) Output current(each channel) Detector Output voltage(each channel) Supply voltage (1 minute maximum) Output collector power dissipation(each channel) Operating temperature range Storage temperature range Lead soldering temperature (10 s) (Note 1) Isolation voltage (AC, 1 min., R.H. 60%, Note 3) Symbol IF IFP VR IO VO VCC PO Tstg Topr Tsol BVS Rating 20 30 5 16 -0.5~7 7 40 -55~125 -40~85 260 2500 Unit mA mA V mA V V mW C C C Vrms
* t 1 msec duration.
Recommended Operating Conditions
Characteristic Input current, low level, each channel Input current, high level, each channel Supply voltage, output Fan out(TTL load, each channel) Operating temperature Symbol IFL IFH VCC N Topr Min. 0 6.3* 4.5 3/4 0 Typ. 3/4 3/4 5 3/4 3/4 Max. 250 15 5.5 8 70 C Unit A mA V
* 6.3mA is a guard banded value which allows for at least 20% CTR degradation. Initial input current threshold value is 5.0mA or less.
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TLP2630
Electrical Characteristics (Ta = 0~70C, unless otherwise noted)
Characteristic Input forward voltage (each channel) Input diode temperature coefficient(each channel) Input reverse breakdown voltage(each channel) Input capacitance (each channel) High level output current (each channel) Low level output voltage (each channel) High level supply current (both channels) Low level supply current (both channels) Isolation voltage Capacitance(input-output) Input-input leakage current Resistance(input-input) Capacitance(input-input) Symbol VF VF / Ta BVR CT IOH VOL ICCH ICCL RS CS II-I RI-I CI-I Test Condition IF = 10mA, Ta = 25C IF = 10mA IR = 10A, Ta = 25C VF = 0, f = 1MHz VCC = 5.5V, VO = 5.5V IF = 250A VCC = 5.5V, IF = 5mA IOL(sinking) = 13mA VCC = 5.5V, IF = 0 VCC = 5.5V, IF = 10mA VS = 500V, R.H. 60% f = 1MHz R.H. 60%, t = 5s VI-I = 500V VI-I = 500V f = 1MHz (Note 3) (Note 3) (Note 6) (Note 6) (Note 6) Min. 3/4 3/4 5 3/4 3/4 3/4 3/4 3/4 3/4 3/4 3/4 3/4 3/4 Typ.* 1.65 -2.0 3/4 45 1 0.4 14 24 10
14
Max. 1.75 3/4 3/4 3/4 250 0.6 30 36 3/4 3/4 3/4 3/4 3/4
Unit V mV / C V pF A V mA mA pF A pF
0.6 0.005 10
11
0.25
*
All typical values are at VCC = 5V, Ta = 25C.
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TLP2630
Switching Characteristics (Ta =25C , VCC=5V)
Characteristic Propagation delay time to low output level Propagation delay time to high output level Output rise a time,output fall time(10~90%) Common mode transient immunity at high output level Common mode transient immunity at low output level Symbol Test Circuit 1 1 1 Test Condition IF = 0(R)7.5mA, RL = 350 CL = 15pF (each channel) IF = 7.5mA(R)0, RL = 350 CL = 15pF (each channel) IF = 0 7.5mA, RL = 350 CL = 15pF (each channel) IF = 0, RL = 350 VCM = 200V VO(min.) = 2V (each channel, Note 4) IF = 7.5mA, RL = 350 VCM = 200V VO(max.) = 0.8V (each channel, Note 5) Min. Typ. Max. Unit
tpHL tpLH tr,tf
3/4 3/4 3/4
60 60 30
75 75 3/4
ns ns ns
CMH
2
3/4
200
3/4
V / s
CML
2
3/4
-500
3/4
V / s
(Note 1) 2mm below seating plane. (Note 2) The VCC supply voltage to each TLP2630 isolator must be bypassed by a 0.01F capacitor or larger.This can be either a ceramic or solid tantalum capacitor with good high frequency characteristic and should be connected as close as possible to the package VCC and GND pins each device. (Note 3) Device considered a two-terminal device: Pins 1, 2, 3 and 4 shorted together, and pins 5, 6, 7 and 8 shorted together. (Note 4) CMHthe maximum tolerable rate of rise of the common mode voltage to ensure the output will remain in the high state(i.e., VOUT > 2.0V) (Note 5) CMLthe maximum tolerable rate of fall of the common mode voltage to ensure the output will remain in the low output state(i.e., VOUT > 0.8V) Measured in volts per microsecond(V / s). (Note 6) Measured between pins 1 and 2 shorted together, and pins 3 and 4 shorted together.
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TLP2630
Test Circuit 1. tpHL And tpLH
Pulse input PW =10s Duty cycle=1/10 100 IF Monitor 5V 1 2 3 4 VCC 8 0.1F 7 6 GND 5 RL 350 CL VO 1.5V tpHL tpLH IF tr tf 5V 4.5V 7.5mA 3.75mA 0mA
1.5V 0.5V VOL
*
CL is approximately 15pF which includes probe and stray wirng capacitance.
Test Circuit 2. Transient Immunity And Typical Waveforms.
IF 1 2 A B VFF 3 4 200V
VCC
8 0.1F 7 6
5V RL 350
VCM
90% 10% tr tf
0V
GND 5 VCM + -
CL
VO Monitor VO (IF = 0mA) 5V 2V 0.8V VO (IF = 7.5mA) VOL
Pulse generator ZO=50
160(V) 160(V) CMH = , CML = t r (ms) t f (ms)
*
CL is approximately 15pF which includes probe and stray wirng capacitance.
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TLP2630
IF - VF
100 Ta = 25 C -2.6
VF / Ta - IF
10
Forward voltage temperature Coefficient VF / Ta (mV / C)
2.0
(mA)
-2.4
Forward current
IF
-2.2
1
-2.0
-1.8
0.1
-1.6
0.01 1.0
1.2
1.4
1.6
1.8
-1.4 0.1
0.3 0.5
1
3
5
10
30
50
Forward voltage
VF
(V)
Forward current
IF
(mA)
VO - IF
8
IOH - Ta
VCC = 5 V Ta = 25 C 100 IF = 250 A VCC = 5.5 V VO = 5.5 V
(A) High level output current IOH
6
50 30
(V)
6
VO
4
RL= 350 1k 4k
Output voltage
10
2
5 3
0 0
1
2
3
4
5
Forward current
IF
(mA)
1 0 10 20 30 40 50 60 70
Ambient temperature Ta (C)
10
VO - IF
VCC = 5 V
VOL - Ta
IF = 5 mA
(V)
RL= 350 8 RL= 4k
0.5
VCC = 5.5 V
(V)
VOL
IOL=16mA
Low level output voltage
VO
6
0.4 12.8mA 9.6mA 6.4mA 0.3
Output voltage
Ta= 70C 4 0C
2
0.2 0 0 0 1 2 3 4 5 6
20
40
60
80
Ambient temperature Ta (C)
Forward current
IF
(mA)
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TLP2630
tpHL, tpLH - IF
120 tpLH 100 RL=4k 100 120
tpHL, tpLH - Ta
RL=4k tpLH 350k 1k 80 tpLH 350 60 tpHL 40 VCC = 5 V IF = 7.5 mA 1k 4k
Propagation delay time tpHL, tpLH (ns)
80
tpLH tpHL
1k 350 350 1k 4k Ta = 25 C VCC = 5 V
60
40
20
Propagation delay time tpHL, tpLH (ns)
20 19
0
5
7
9
11
13
15
17
0 0
Forward current
IF
(mA)
10
20
30
40
50
60
70
Ambient temperature Ta (C)
tr, tf - Ta
320 VCC = 5 V IF = 7.5 mA tf 280 80 tf 1k RL=4k
300
Rise, fall time
tr, tf
(ns)
60 tf 350
40
20
tr
350 1k 4k
0 0
10
20
30
40
50
60
70
Ambient temperature Ta (C)
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TLP2630
RESTRICTIO 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.
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2002-09-25


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