MOC301XM, MOC302XM — 6-Pin DIP Random-Phase Optoisolators Triac Driver Output (250/400 Volt Peak)
March 2014
MOC3010M, MOC3011M, MOC3012M,
MOC3020M, MOC3021M, MOC3022M, MOC3023M
6-Pin DIP Random-Phase Optoisolators Triac Driver Output
(250/400 Volt Peak)
Features
■
Excellent I
FT
Stability—IR Emitting Diode Has Low
■
■
■
Description
The MOC301XM and MOC302XM series are optically
isolated triac driver devices. These devices contain a
GaAs infrared emitting diode and a light activated silicon
bilateral switch, which functions like a triac. They are
designed for interfacing between electronic controls and
power triacs to control resistive and inductive loads for
115 V
AC
operations.
■
Degradation
High Isolation Voltage—Minimum 5300 V
AC(RMS)
Underwriters Laboratory (UL) Recognized—
File #E90700
Peak Blocking Voltage
– 250 V, MOC301XM
– 400 V, MOC302XM
VDE Recognized (File #94766)
– Ordering Option V (e.g., MOC3023VM)
Applications
■
Industrial Controls
■
Solenoid/Valve Controls
■
Traffic Lights
■
Static AC Power Switch
■
Vending Machines
■
Incandescent Lamp Dimmers
■
Solid State Relay
■
Motor Control
■
Lamp Ballasts
Schematic
Package Outlines
ANODE 1
6 MAIN TERM.
CATHODE 2
5 NC*
N/C 3
4 MAIN TERM.
*DO NOT CONNECT
(TRIAC SUBSTRATE)
Figure 2. Package Outlines
Figure 1. Schematic
©2005 Fairchild Semiconductor Corporation
MOC301XM, MOC302XM Rev. 1.0.3
www.fairchildsemi.com
MOC301XM, MOC302XM — 6-Pin DIP Random-Phase Optoisolators Triac Driver Output (250/400 Volt Peak)
Safety and Insulation Ratings
As per DIN EN/IEC60747-5-2. This optocoupler is suitable for “safe electrical insulation” only within the safety limit
data. Compliance with the safety ratings is ensured by means of protective circuits.
Symbol
Parameter
Installation Classifications per DIN VDE 0110/1.89 see
Table 1
For Rated Mains Voltage < 150 V
RMS
For Rated Mains Voltage < 300 V
RMS
Climatic Classification
Pollution Degree (DIN VDE 0110/1.89)
Min.
Typ.
Max.
Unit
I–IV
I–IV
40/85/21
2
175
1594
CTI
V
PR
Comparative Tracking Index
Input to Output Test Voltage, Method b,
V
IORM
x 1.875 = V
PR
, 100% Production Test with
t
m
= 1 s, Partial Discharge < 5 pC
Input to Output Test Voltage, Method a,
V
IORM
x 1.5 = V
PR
, Type and Sample Test with
t
m
= 60 s, Partial Discharge < 5 pC
1275
V
IORM
V
IOTM
Maximum Working Insulation Voltage
Highest Allowable Over Voltage
External Creepage
External Clearance
External Clearance (for Option T, 0.4” Lead Spacing)
Insulation Thickness
850
6000
7
7
10.16
0.5
10
9
V
peak
V
peak
mm
mm
mm
mm
Ω
R
IO
Insulation Resistance at T
S
, V
IO
= 500 V
©2005 Fairchild Semiconductor Corporation
MOC301XM, MOC302XM Rev. 1.0.3
www.fairchildsemi.com
2
MOC301XM, MOC302XM — 6-Pin DIP Random-Phase Optoisolators Triac Driver Output (250/400 Volt Peak)
Absolute Maximum Ratings
Stresses exceeding the absolute maximum ratings may damage the device. The device may not function or be
operable above the recommended operating conditions and stressing the parts to these levels is not recommended.
In addition, extended exposure to stresses above the recommended operating conditions may affect device reliability.
The absolute maximum ratings are stress ratings only. T
A
= 25°C unless otherwise specified.
Symbol
TOTAL DEVICE
T
STG
T
OPR
T
SOL
T
J
V
ISO
P
D
EMITTER
I
F
V
R
P
D
DETECTOR
V
DRM
I
TSM
P
D
Parameters
Storage Temperature
Operating Temperature
Lead Solder Temperature
Junction Temperature Range
Isolation Surge Voltage
(1)
(Peak AC Voltage, 60 Hz, 1 Second Duration)
Total Device Power Dissipation at 25°C Ambient
Derate Above 25°C
Device
All
All
All
All
All
All
Value
-40 to +150
-40 to +85
260 for
10 seconds
-40 to +100
7500
330
4.4
Units
°C
°C
°C
°C
Vac(pk)
mW
mW/°C
mA
V
mW
mW/°C
V
A
mW
mW/°C
Continuous Forward Current
Reverse Voltage
Total Power Dissipation at 25°C Ambient
Derate Above 25°C
All
All
All
60
3
100
1.33
Off-State Output Terminal Voltage
Peak Repetitive Surge Current
(PW = 100 µs, 120 pps)
Total Power Dissipation at 25°C Ambient
Derate Above 25°C
MOC3010M/1M/2M
MOC3020M/1M/2M/3M
All
All
250
400
1
300
4
Note:
1. Isolation surge voltage, V
ISO
, is an internal device dielectric breakdown rating. For this test, pins 1 and 2 are common,
and pins 4, 5 and 6 are common.
©2005 Fairchild Semiconductor Corporation
MOC301XM, MOC302XM Rev. 1.0.3
www.fairchildsemi.com
3
MOC301XM, MOC302XM — 6-Pin DIP Random-Phase Optoisolators Triac Driver Output (250/400 Volt Peak)
Electrical Characteristics
T
A
= 25°C unless otherwise specified.
Individual Component Characteristics
Symbol
EMITTER
V
F
I
R
I
DRM
V
TM
Input Forward Voltage
Reverse Leakage Current
Peak Blocking Current,
Either Direction
Peak On-State Voltage,
Either Direction
I
F
= 10 mA
V
R
= 3 V, T
A
= 25°C
All
All
1.15
0.01
1.50
100
V
µA
Parameters
Test Conditions
Device
Min.
Typ.
Max.
Units
DETECTOR
Rated V
DRM
, I
F
= 0
(2)
I
TM
= 100 mA peak, I
F
= 0
All
All
10
1.8
100
3.0
nA
V
Transfer Characteristics
Symbol
I
FT
DC Characteristics
LED Trigger Current
Test Conditions
Voltage = 3 V
(3)
Device
MOC3020M
MOC3010M
MOC3021M
MOC3011M
MOC3022M
MOC3012M
MOC3023M
Min.
Typ.
Max.
30
15
10
5
Units
mA
I
H
Holding Current, Either
Direction
All
100
µA
Notes:
2. Test voltage must be applied within dv/dt rating.
3. All devices are guaranteed to trigger at an I
F
value less than or equal to max I
FT
. Therefore, recommended operating
I
F
lies between max I
FT
(30 mA for MOC3020M, 15 mA for MOC3010M and MOC3021M, 10 mA for MOC3011M and
MOC3022M, 5 mA for MOC3012M and MOC3023M) and absolute maximum I
F
(60 mA).
©2005 Fairchild Semiconductor Corporation
MOC301XM, MOC302XM Rev. 1.0.3
www.fairchildsemi.com
4
MOC301XM, MOC302XM — 6-Pin DIP Random-Phase Optoisolators Triac Driver Output (250/400 Volt Peak)
Typical Performance Curves
1.8
800
1.7
600
V
F
- FORWARD VOLTAGE (V)
I
TM
- ON-STATE CURRENT (mA)
100
1.6
400
1.5
200
1.4
T
A
= -55
o
C
0
1.3
T
A
= 25
o
C
-200
1.2
T
A
= 100
o
C
-400
1.1
-600
1.0
1
10
-800
-3
-2
-1
0
1
2
3
I
F
- LED FORWARD CURRENT (mA)
V
TM
- ON-STATE VOLTAGE (V)
Figure 3. LED Forward Voltage vs. Forward Current
Figure 4. On-State Characteristics
1.4
25
I
TM
-
TRIGGER CURRENT (NORMALIZED)
1.3
I
FT
-
TRIGGER CURRENT (NORMALIZED)
20
NORMALIZED TO:
PWin
≥
100
μs
1.2
15
1.1
1.0
10
0.9
5
0.8
0
0.7
NORMALIZED TO TA = 25°C
0.6
-40
-20
0
20
40
60
80
100
1
2
5
10
20
50
100
PW
in
-
LED TRIGGER WIDTH (μs)
AMBIENT TEMPERATURE - T
A
(
o
C)
Figure 6. LED Current Required to Trigger vs. LED Pulse Width
Figure 5. Trigger Current vs. Ambient Temperature
12
10000
10
I
DRM
- LEAKAGE CURRENT (nA)
100
STATIC dv/dt
CIRCUIT IN FIGURE 9
1000
STATIC dv/dt (V/μs)
8
6
100
4
10
2
1
0
25 30
40
50
60
70
80
o
90
T
A
- AMBIENT TEMPERATURE ( C)
0.1
-40
-20
0
20
40
60
o
Figure 7. dv/dt vs. Temperature
80
100
T
A
- AMBIENT TEMPERATURE ( C)
Figure 8. Leakage Current, I
DRM
vs. Temperature
©2005 Fairchild Semiconductor Corporation
MOC301XM, MOC302XM Rev. 1.0.3
www.fairchildsemi.com
5