MOC2A60-10 MOTOROLA [Motorola, Inc], MOC2A60-10 Datasheet

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MOC2A60-10

Manufacturer Part Number
MOC2A60-10
Description
2 Amp Zero Cross Triac Output
Manufacturer
MOTOROLA [Motorola, Inc]
Datasheet

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MOTOROLA
SEMICONDUCTOR TECHNICAL DATA
POWER OPTO Isolator
2 Amp Zero–Cross Triac Output
coupled to a zero–cross triac driver circuit and a power triac. It is capable of
driving a load of up to 2 amps (rms) directly, on line voltages from 20 to 280 volts
ac (rms).
POWER OPTO is a trademark of Motorola, Inc.
Preferred devices are Motorola recommended choices for future use and best overall value.
DEVICE RATINGS
INPUT LED
OUTPUT TRIAC
TOTAL DEVICE
1. Test voltages must be applied within dv/dt rating.
2. Input–Output isolation voltage, V ISO , is an internal device dielectric breakdown rating. For this
2.
REV 2
Forward Current — Maximum Continuous
Forward Current — Maximum Peak
Reverse Voltage — Maximum
Output Terminal Voltage — Maximum Transient (1)
Operating Voltage Range — Maximum Continuous
(f = 47 – 63 Hz)
On–State Current Range
(Free Air, Power Factor
Non–Repetitive Single Cycle Surge Current —
Maximum Peak (t = 16.7 ms)
Main Terminal Fusing Current (t = 8.3 ms)
Load Power Factor Range
Junction Temperature Range
Input–Output Isolation Voltage — Maximum (2)
Thermal Resistance — Power Triac Junction to Case
Ambient Operating Temperature Range
Storage Temperature Range
Lead Soldering Temperature — Maximum
This device consists of a gallium arsenide infrared emitting diode optically
Motorola Optoelectronics Device Data
Provides Normally Open Solid State AC Output with 2 Amp Rating
70 Amp Single Cycle Surge Capability
Zero–Voltage Turn–on and Zero–Current Turn–off
High Input–Output Isolation of 3750 vac (rms)
Static dv/dt Rating of 400 Volts/ s Guaranteed
2 Amp Pilot Duty Rating Per UL508
and
CSA Approved [File No. CA77170–1].
SEMKO Approved Certificate #9507228
Exceeds NEMA 2–230 and IEEE472 Noise Immunity Test Requirements (See Fig.14)
test, pins 2, 3 and the heat tab are common, and pins 7 and 9 are common.
Motorola, Inc. 1995
W
118 (Endurance Test)
(PW = 100 s, 120 pps)
47 – 63 Hz, 1 sec Duration
(See Fig. 15)
(1/16 from Case, 10 sec Duration)
(T A = 25 C unless otherwise noted)
Rating
0.3)
[File No. 129224]
W
117 (Overload Test)
Symbol
I T (rms)
V DRM
I F (pk)
R JC
T oper
I TSM
V ISO
T stg
I 2 T
V R
V T
PF
T J
T L
I F
– 40 to +100
– 40 to +150
– 40 to 125
0.03 to 2.0
20 to 280
0.3 to 1.0
Value
3750
600
260
1.0
6.0
8.0
50
70
26
Vac(rms)
Vac(rms)
A 2 sec
V(pk)
Unit
C/W
mA
A
V
A
A
C
C
C
C
PLASTIC PACKAGE
MOC2A60-10
3
2
* Zero Voltage Activate Circuit
MOC2A60-5
CASE 417A–02
1, 4, 5, 6, 8. NO PIN
2 AMP ZERO CROSS
*Motorola Preferred Device
DEVICE SCHEMATIC
2 3
Style 1
OPTOISOLATOR
TRIAC OUTPUT
7
600 VOLTS
9
ZVA
2. LED CATHODE
3. LED ANODE
7. MAIN TERMINAL 2
9. MAIN TERMINAL 1
Order this document
PLASTIC PACKAGE
PLASTIC PACKAGE
*
by MOC2A60–10/D
CASE 417B–01
CASE 417–02
Style 2
Style 1
7
9
*
1

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MOC2A60-10 Summary of contents

Page 1

... R JC 8.0 C/W T oper – +100 C T stg – +150 260 C Order this document by MOC2A60–10/D MOC2A60-10 MOC2A60-5 * *Motorola Preferred Device OPTOISOLATOR 2 AMP ZERO CROSS TRIAC OUTPUT 600 VOLTS CASE 417– Style PLASTIC PACKAGE CASE 417A–02 ...

Page 2

... MOC2A60-10 MOC2A60-5 ELECTRICAL CHARACTERISTICS ( unless otherwise noted) Characteristic INPUT LED Forward Voltage ( mA) Reverse Leakage Current ( 6.0 V) Capacitance OUTPUT TRIAC Off–State Leakage, Either Direction ( DRM = 600 V) Critical Rate of Rise of Off–State Voltage (Static 400 vac(pk)) (1)(2) ...

Page 3

... Current (Free Air) versus Ambient Temperature 2.5 2.0 1.5 1.0 0.5 0.0 1.0 0.01 Figure 6. Power Dissipation versus Main Terminal Current 100 NORMALIZED 1.0 0.1 0.01 10 – 40 – 20 Figure 8. Leakage with LED Off versus MOC2A60-10 MOC2A60 100 120 AMBIENT TEMPERATURE ( C) MAXIMUM MEAN 10 0.1 1 MAIN TERMINAL CURRENT ( 100 120 ...

Page 4

... MOC2A60-10 MOC2A60-5 2.00 1.80 1.60 NORMALIZED TO 1. 1.20 1.00 0.80 0.60 0.40 0.20 0.00 – 40 – AMBIENT TEMPERATURE ( C) Figure 9. Holding Current versus Ambient Temperature MOC2A60 ZVA * *ZERO VOLTAGE ACTIVATE CIRCUIT Figure 12. Typical Application Circuit 4 1000 100 – 2A(RMS – 40 – ...

Page 5

... The design of any additional heatsink will determine the values and – – where Power Dissipation in Watts. Figure 15. Approximate Thermal Circuit Model Motorola Optoelectronics Device Data MOC2A60-10 MOC2A60-5 0.315 MIN [8 MM MIN] DEVICE UNDER TEST 2 3 ...

Page 6

... MOC2A60-10 MOC2A60-5 –A– –T– SEATING K PLANE 0.13 (0.005) ORDER “F” SUFFIX HEAT TAB OPTION (EX: MOC2A60–10F) –A– RADIUS –T– SEATING K PLANE 0.13 (0.005) 6 PACKAGE DIMENSIONS C E –B– ...

Page 7

... –T– K SEATING PLANE 0.13 (0.005 Motorola Optoelectronics Device Data MOC2A60-10 MOC2A60 –B– CASE 417B–01 PLASTIC CUT HEAT TAB ISSUE O NOTES: 1. DIMENSIONING AND TOLERANCING PER ANSI Y14.5M, 1982. 2. CONTROLLING DIMENSION: INCH. ...

Page 8

... MOC2A60-10 MOC2A60-5 Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation consequential or incidental damages. “ ...

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