MOTOROLA
SEMICONDUCTOR TECHNICAL DATA
Order this document by MOC3020/D
GlobalOptoisolator |
6-Pin DIP Random-Phase
Optoisolators Triac Driver Output
(400 Volts Peak)
The MOC3020 Series consists of gallium arsenide infrared emitting diodes, optically coupled to a silicon bilateral switch.
• To order devices that are tested and marked per VDE 0884 requirements, the suffix ºVº must be included at end of part number. VDE 0884 is a test option.
They are designed for applications requiring isolated triac triggering.
Recommended for 115/240 Vac(rms) Applications:
• Solenoid/Valve Controls |
• Static ac Power Switch |
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• Lamp Ballasts |
• Solid State Relays |
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• Interfacing Microprocessors to 115 Vac Peripherals |
• Incandescent Lamp Dimmers |
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• Motor Controls |
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MAXIMUM RATINGS (TA = 25°C unless otherwise noted) |
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Rating |
Symbol |
Value |
Unit |
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INFRARED EMITTING DIODE |
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Reverse Voltage |
VR |
3 |
Volts |
Forward Current Ð Continuous |
IF |
60 |
mA |
Total Power Dissipation @ TA = 25°C |
PD |
100 |
mW |
Negligible Power in Triac Driver |
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Derate above 25°C |
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1.33 |
mW/°C |
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OUTPUT DRIVER |
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Off±State Output Terminal Voltage |
VDRM |
400 |
Volts |
Peak Repetitive Surge Current |
ITSM |
1 |
A |
(PW = 1 ms, 120 pps) |
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Total Power Dissipation @ TA = 25°C |
PD |
300 |
mW |
Derate above 25°C |
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4 |
mW/°C |
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TOTAL DEVICE |
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Isolation Surge Voltage(1) |
V |
7500 |
Vac(pk) |
(Peak ac Voltage, 60 Hz, 1 Second Duration) |
ISO |
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Total Power Dissipation @ TA = 25°C |
PD |
330 |
mW |
Derate above 25°C |
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4.4 |
mW/°C |
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Junction Temperature Range |
TJ |
± 40 to +100 |
°C |
Ambient Operating Temperature Range(2) |
T |
± 40 to +85 |
°C |
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A |
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Storage Temperature Range(2) |
T |
± 40 to +150 |
°C |
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stg |
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Soldering Temperature (10 s) |
TL |
260 |
°C |
1.Isolation surge voltage, VISO, is an internal device dielectric breakdown rating.
1.For this test, Pins 1 and 2 are common, and Pins 4, 5 and 6 are common.
2.Refer to Quality and Reliability Section in Opto Data Book for information on test conditions.
Preferred devices are Motorola recommended choices for future use and best overall value.
GlobalOptoisolator is a trademark of Motorola, Inc.
MOC3021
[IFT = 15 mA Max]
MOC3022
[IFT = 10 mA Max]
MOC3023*
[IFT = 5 mA Max]
*Motorola Preferred Device
STYLE 6 PLASTIC
6
1
STANDARD THRU HOLE
CASE 730A±04
SCHEMATIC
1 |
6 |
2 |
5 |
3 |
4 |
1.ANODE
2.CATHODE
3.NC
4.MAIN TERMINAL
5.SUBSTRATE
5.DO NOT CONNECT
6.MAIN TERMINAL
REV 1
Motorola, Inc. 1995
MOC3021 |
MOC3022 |
MOC3023 |
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ELECTRICAL CHARACTERISTICS (TA = 25°C unless otherwise noted) |
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Characteristic |
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Symbol |
Min |
Typ |
Max |
Unit |
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INPUT LED |
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Reverse Leakage Current |
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IR |
Ð |
0.05 |
100 |
μA |
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(VR = 3 V) |
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Forward Voltage |
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VF |
Ð |
1.15 |
1.5 |
Volts |
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(IF = 10 mA) |
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OUTPUT DETECTOR (IF = 0 unless otherwise noted) |
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Peak Blocking Current, Either Direction |
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IDRM |
Ð |
10 |
100 |
nA |
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(Rated V |
(1)) |
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DRM |
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Peak On±State Voltage, Either Direction |
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VTM |
Ð |
1.8 |
3 |
Volts |
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(ITM = 100 mA Peak) |
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Critical Rate of Rise of Off±State Voltage (Figure 7, Note 2) |
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dv/dt |
Ð |
10 |
Ð |
V/μs |
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COUPLED |
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LED Trigger Current, Current Required to Latch Output |
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IFT |
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mA |
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(Main Terminal Voltage = 3 V(3)) |
MOC3021 |
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Ð |
8 |
15 |
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MOC3022 |
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Ð |
Ð |
10 |
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MOC3023 |
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Ð |
Ð |
5 |
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Holding Current, Either Direction |
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IH |
Ð |
100 |
Ð |
μA |
1.Test voltage must be applied within dv/dt rating.
2.This is static dv/dt. See Figure 7 for test circuit. Commutating dv/dt is a function of the load±driving thyristor(s) only.
3.All devices are guaranteed to trigger at an IF value less than or equal to max IFT. Therefore, recommended operating IF lies between max
3.IFT (15 mA for MOC3021, 10 mA for MOC3022, 5 mA for MOC3023) and absolute max IF (60 mA).
TYPICAL ELECTRICAL CHARACTERISTICS
VF, FORWARD VOLTAGE (VOLTS)
2
1.8
1.6
1.4
1.2
1
1
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TA = 25°C |
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+800 |
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PULSE ONLY |
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(mA) |
+400 |
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PULSE OR DC |
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CURRENT |
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-STATE |
0 |
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TA = ±40 C |
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,ON |
±400 |
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° |
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TM |
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25°C |
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I |
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85°C |
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±800 |
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10 |
100 |
1000 |
±3 |
±2 |
±1 |
0 |
1 |
2 |
3 |
IF, LED FORWARD CURRENT (mA) |
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VTM, ON±STATE VOLTAGE (VOLTS) |
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Figure 1. LED Forward Voltage versus Forward Current |
Figure 2. On±State Characteristics |
2 |
Motorola Optoelectronics Device Data |