MOC3062FR2-M [FAIRCHILD]

Triac Output Optocoupler With Zero CRSVR, 1-Element, 7500V Isolation, DIP-6;
MOC3062FR2-M
型号: MOC3062FR2-M
厂家: FAIRCHILD SEMICONDUCTOR    FAIRCHILD SEMICONDUCTOR
描述:

Triac Output Optocoupler With Zero CRSVR, 1-Element, 7500V Isolation, DIP-6

三端双向交流开关 输出元件 光电
文件: 总19页 (文件大小:333K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
GlobalOptoisolator  
(600 Volts Peak)  
The MOC3061, MOC3062 and MOC3063 devices consist of gallium arsenide  
infrared emitting diodes optically coupled to monolithic silicon detectors  
performing the functions of Zero Voltage Crossing bilateral triac drivers.  
They are designed for use with a triac in the interface of logic systems to  
equipment powered from 115/240 Vac lines, such as solid–state relays,  
industrial controls, motors, solenoids and consumer appliances, etc.  
Simplifies Logic Control of 115/240 Vac Power  
Zero Voltage Crossing  
6
1
dv/dt of 1500 V/µs Typical, 600 V/µs Guaranteed  
STANDARD THRU HOLE  
To order devices that are tested and marked per VDE 0884 requirements, the  
suffix ”V” must be included at end of part number. VDE 0884 is a test option.  
Recommended for 115/240 Vac(rms) Applications:  
Solenoid/Valve Controls  
Lighting Controls  
Temperature Controls  
E.M. Contactors  
COUPLER SCHEMATIC  
Static Power Switches  
AC Motor Drives  
AC Motor Starters  
Solid State Relays  
1
2
3
6
5
4
MAXIMUM RATINGS  
Rating  
Symbol  
Value  
Unit  
ZERO  
CROSSING  
CIRCUIT  
INFRARED EMITTING DIODE  
Reverse Voltage  
V
R
6
Volts  
mA  
1. ANODE  
2. CATHODE  
3. NC  
4. MAIN TERMINAL  
5. SUBSTRATE  
Forward Current — Continuous  
I
F
60  
Total Power Dissipation @ T = 25°C  
Negligible Power in Output Driver  
Derate above 25°C  
P
D
120  
mW  
A
1.41  
mW/°C  
DO NOT CONNECT  
6. MAIN TERMINAL  
OUTPUT DRIVER  
Off–State Output Terminal Voltage  
V
600  
1
Volts  
A
DRM  
Peak Repetitive Surge Current  
(PW = 100 µs, 120 pps)  
I
TSM  
Total Power Dissipation @ T = 25°C  
Derate above 25°C  
P
D
150  
1.76  
mW  
mW/°C  
A
TOTAL DEVICE  
(1)  
Isolation Surge Voltage  
(Peak ac Voltage, 60 Hz, 1 Second Duration)  
V
ISO  
7500  
Vac(pk)  
Total Power Dissipation @ T = 25°C  
Derate above 25°C  
P
D
250  
2.94  
mW  
mW/°C  
A
Junction Temperature Range  
Ambient Operating Temperature Range  
Storage Temperature Range  
Soldering Temperature (10 s)  
T
40 to +100  
40 to +85  
40 to +150  
260  
°C  
°C  
°C  
°C  
J
T
A
T
stg  
T
L
1. Isolation surge voltage, V  
, 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.  
ISO  
MOC3061, MOC3062, MOC3063  
ELECTRICAL CHARACTERISTICS (T = 25°C unless otherwise noted)  
A
Characteristic  
INPUT LED  
Symbol  
Min  
Typ  
Max  
Unit  
Reverse Leakage Current  
(V = 6 V)  
R
I
0.05  
1.3  
100  
1.5  
µA  
R
Forward Voltage  
(I = 30 mA)  
F
V
Volts  
F
OUTPUT DETECTOR (I = 0)  
F
Leakage with LED Off, Either Direction  
I
60  
500  
nA  
DRM1  
(1)  
(Rated V  
DRM  
)
(3)  
Critical Rate of Rise of Off–State Voltage  
dv/dt  
600  
1500  
V/µs  
COUPLED  
LED Trigger Current, Current Required to Latch Output  
(2)  
I
mA  
FT  
(Main Terminal Voltage = 3 V  
)
MOC3061  
MOC3062  
MOC3063  
15  
10  
5
Peak On–State Voltage, Either Direction  
(I = 100 mA, I = Rated I  
V
TM  
1.8  
3
Volts  
)
TM FT  
F
Holding Current, Either Direction  
I
250  
5
µA  
H
Inhibit Voltage (MT1–MT2 Voltage above which device will not trigger.)  
V
20  
Volts  
INH  
(I = Rated I  
)
FT  
F
Leakage in Inhibited State  
I
DRM2  
500  
µA  
(I = Rated I , Rated V  
, Off State)  
F
FT DRM  
Isolation Voltage (f = 60 Hz, t = 1 sec)  
V
ISO  
7500  
Vac(pk)  
1. Test voltage must be applied within dv/dt rating.  
2. All devices are guaranteed to trigger at an I value less than or equal to max I . Therefore, recommended operating I lies between max  
F
FT  
F
2. I (15 mA for MOC3061, 10 mA for MOC3062, 5 mA for MOC3063) and absolute max I (60 mA).  
FT  
F
3. This is static dv/dt. See Figure 7 for test circuit. Commutating dv/dt is a function of the load–driving thyristor(s) only.  
TYPICAL CHARACTERISTICS  
T
A
= 25°C  
1.5  
1.4  
+800  
+600  
+400  
+200  
0
OUTPUT PULSE WIDTH – 80  
= 30 mA  
µs  
NORMALIZED TO  
1.3  
1.2  
1.1  
1
I
F
T
= 25°C  
A
f = 60 Hz  
= 25°C  
T
A
0.9  
–200  
–400  
–600  
–800  
0.8  
0.7  
0.6  
0.5  
–4  
–3  
–2  
–1  
0
1
2
3
4
5
–40  
–20  
0
20  
40  
60  
C)  
80  
100  
T , AMBIENT TEMPERATURE (  
°
V
, ON–STATE VOLTAGE (VOLTS)  
A
TM  
Figure 1. On–State Characteristics  
Figure 2. Inhibit Voltage versus Temperature  
MOC3061, MOC3062, MOC3063  
500  
1.5  
1.4  
I
= 0  
200  
100  
50  
F
1.3  
1.2  
1.1  
I
= RATED I  
FT  
F
1
0.9  
20  
10  
5
0.8  
0.7  
0.6  
–20  
0
20  
40  
60  
80  
100  
–40  
–20  
0
20  
40  
60  
80  
C)  
100  
–40  
T , AMBIENT TEMPERATURE (  
°
T , AMBIENT TEMPERATURE (°C)  
A
A
Figure 3. Leakage with LED Off  
versus Temperature  
Figure 4. I  
, Leakage in Inhibit State  
versus Temperature  
DRM2  
25  
20  
1.5  
1.4  
NORMALIZED TO:  
PW 100  
NORMALIZED TO  
= 25  
µ
s
in  
T
°C  
A
1.3  
1.2  
15  
10  
1.1  
1
0.9  
0.8  
0.7  
5
0
–40  
–20  
0
20  
40  
60  
C)  
80  
100  
1
2
5
10  
20  
50  
100  
T , AMBIENT TEMPERATURE (  
°
PW , LED TRIGGER PULSE WIDTH (µs)  
A
in  
Figure 5. Trigger Current versus Temperature  
Figure 6. LED Current Required to Trigger  
versus LED Pulse Width  
+400  
Vdc  
R
1. The mercury wetted relay provides a high speed repeated  
pulse to the D.U.T.  
TEST  
R = 10 k  
2. 100x scope probes are used, to allow high speeds and  
voltages.  
C
PULSE  
INPUT  
3. The worst–case condition for static dv/dt is established by  
triggering the D.U.T. with a normal LED input current, then  
TEST  
MERCURY  
WETTED  
RELAY  
X100  
SCOPE  
PROBE  
removingthecurrent.ThevariableR allowsthedv/dttobe  
TEST  
gradually increased until the D.U.T. continues to trigger in  
response to the applied voltage pulse, even after the LED  
current has been removed. The dv/dt is then decreased until  
D.U.T.  
the D.U.T. stops triggering.  
recorded.  
is measured at this point and  
RC  
V
= 400 V  
max  
APPLIED VOLTAGE  
WAVEFORM  
252 V  
RC  
0.63 V  
max  
RC  
378  
RC  
dv dt  
0 VOLTS  
Figure 7. Static dv/dt Test Circuit  
MOC3061, MOC3062, MOC3063  
Typical circuit for use when hot line switching is required.  
In this circuit the “hot” side of the line is switched and the  
load connected to the cold or neutral side. The load may be  
connected to either the neutral or hot line.  
V
R
in  
CC  
360 Ω  
1
6
5
HOT  
2
3
MOC3061–63  
39  
R
is calculated so that I is equal to the rated I of the  
in  
F
FT  
240 Vac  
part, 15 mA for the MOC3061, 10 mA for the MOC3062,  
and 5 mA for the MOC3063. The 39 ohm resistor and 0.01  
µF capacitor are for snubbing of the triac and may or may  
not be necessary depending upon the particular triac and  
load used.  
4
0.01  
LOAD  
360  
NEUTRAL  
Figure 8. Hot–Line Switching Application Circuit  
240 Vac  
D1  
R1  
Suggested method of firing two, back–to–back SCR’s,  
with a Motorola triac driver. Diodes can be 1N4001; resis-  
tors, R1 and R2, are optional 330 ohms.  
1
2
6
5
V
CC  
R
in  
SCR  
MOC3061–63  
SCR  
360  
3
4
NOTE: This optoisolator should not be used to drive a load directly.  
It is intended to be a trigger device only.  
D2  
R2  
LOAD  
Figure 9. Inverse–Parallel SCR Driver Circuit  
MOC3061, MOC3062, MOC3063  
PACKAGE DIMENSIONS  
–A–  
NOTES:  
1. DIMENSIONING AND TOLERANCING PER ANSI  
6
4
3
Y14.5M, 1982.  
2. CONTROLLING DIMENSION: INCH.  
3. DIMENSION L TO CENTER OF LEAD WHEN  
FORMED PARALLEL.  
–B–  
1
INCHES  
MILLIMETERS  
DIM  
A
B
C
D
E
MIN  
MAX  
0.350  
0.260  
0.200  
0.020  
0.070  
0.014  
MIN  
8.13  
6.10  
2.93  
0.41  
1.02  
0.25  
MAX  
8.89  
6.60  
5.08  
0.50  
1.77  
0.36  
C
F 4 PL  
L
0.320  
0.240  
0.115  
0.016  
0.040  
0.010  
N
F
–T–  
SEATING  
PLANE  
K
G
J
K
L
M
N
0.100 BSC  
2.54 BSC  
0.008  
0.100  
0.012  
0.150  
0.21  
2.54  
0.30  
3.81  
J 6 PL  
G
0.300 BSC  
7.62 BSC  
M
M
M
0.13 (0.005)  
T
B
A
M
0
15  
0
15  
E 6 PL  
0.015  
0.100  
0.38  
2.54  
D 6 PL  
M
M
M
0.13 (0.005)  
T
A
B
STYLE 6:  
PIN 1. ANODE  
2. CATHODE  
3. NC  
4. MAIN TERMINAL  
5. SUBSTRATE  
6. MAIN TERMINAL  
THRU HOLE  
–A–  
6
4
3
NOTES:  
–B–  
1. DIMENSIONING AND TOLERANCING PER ANSI  
Y14.5M, 1982.  
2. CONTROLLING DIMENSION: INCH.  
1
INCHES  
MILLIMETERS  
DIM  
A
B
C
D
E
MIN  
MAX  
0.350  
0.260  
0.200  
0.020  
0.070  
0.014  
MIN  
8.13  
6.10  
2.93  
0.41  
1.02  
0.25  
MAX  
8.89  
6.60  
5.08  
0.50  
1.77  
0.36  
L
F 4 PL  
0.320  
0.240  
0.115  
0.016  
0.040  
0.010  
H
C
F
–T–  
SEATING  
PLANE  
G
H
J
K
L
0.100 BSC  
2.54 BSC  
G
J
0.020  
0.008  
0.006  
0.320 BSC  
0.332  
0.025  
0.012  
0.035  
0.51  
0.20  
0.16  
8.13 BSC  
8.43  
0.63  
0.30  
0.88  
K 6 PL  
0.13 (0.005)  
M
E 6 PL  
M
M
M
T
B
A
D 6 PL  
S
0.390  
9.90  
M
M
0.13 (0.005)  
T
A
B
SURFACE MOUNT  
MOC3061, MOC3062, MOC3063  
NOTES:  
–A–  
1. DIMENSIONING AND TOLERANCING PER ANSI  
Y14.5M, 1982.  
2. CONTROLLING DIMENSION: INCH.  
3. DIMENSION L TO CENTER OF LEAD WHEN  
FORMED PARALLEL.  
6
4
3
–B–  
INCHES  
MILLIMETERS  
1
DIM  
A
B
C
D
E
MIN  
MAX  
0.350  
0.260  
0.200  
0.020  
0.070  
0.014  
MIN  
8.13  
6.10  
2.93  
0.41  
1.02  
0.25  
MAX  
8.89  
6.60  
5.08  
0.50  
1.77  
0.36  
0.320  
0.240  
0.115  
0.016  
0.040  
0.010  
L
N
F 4 PL  
F
C
G
J
K
L
0.100 BSC  
2.54 BSC  
0.008  
0.100  
0.400  
0.015  
0.012  
0.150  
0.425  
0.040  
0.21  
2.54  
0.30  
3.81  
–T–  
SEATING  
PLANE  
10.16  
0.38  
10.80  
1.02  
N
G
J
K
D 6 PL  
0.13 (0.005)  
E 6 PL  
M
M
M
T
A
B
0.4" LEAD SPACING  
DISCLAIMER  
FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO  
ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION OR DESIGN. FAIRCHILD DOES NOT ASSUME  
ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN;  
NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS.  
LIFE SUPPORT POLICY  
FAIRCHILD’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES  
OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF FAIRCHILD SEMICONDUCTOR  
CORPORATION. As used herein:  
1. Life support devices or systems are devices or systems  
which, (a) are intended for surgical implant into the body,  
or (b) support or sustain life, and (c) whose failure to  
perform when properly used in accordance with  
instructions for use provided in the labeling, can be  
reasonably expected to result in a significant injury of the  
user.  
2. A critical component in any component of a life support  
device or system whose failure to perform can be  
reasonably expected to cause the failure of the life support  
device or system, or to affect its safety or effectiveness.  
www.fairchildsemi.com  
© 2000 Fairchild Semiconductor Corporation  
Product Folder - Fairchild P/N MOC3061-M - 6-Pin 600V Zero Crossing Triac Driver Output Coupler  
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Dotted line  
Design tools  
The MOC3061, MOC3062 and MOC3063  
devices consist of a gallium arsenide infrared  
emitting diodes optically coupled to a  
monolithic silicon detectors performing the  
functions of zero voltage crossing bilateral  
triac drivers.  
technical information  
buy products  
They are designed for use with a triac in the  
interface of logic systems to equipment  
powered from 115/240 Vac lines, such as solid  
state relays, industrial controls, motors,  
solenoids and consumer appliances, etc.  
Simplifies logic control of 115/240 Vac power  
Zero voltage crossing dv/dt of 1500 V/µs  
typical, 600 V/µs guaranteed.  
technical support  
my Fairchild  
company  
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Applications  
Recommended for 115/240 Vac rms)  
Solenoid/Valve Controls  
Lighting controls  
Static power switches  
AC motor drives  
Temperature controls  
E.M. contractors  
AC motor starters  
 
Product Folder - Fairchild P/N MOC3061-M - 6-Pin 600V Zero Crossing Triac Driver Output Coupler  
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Ordering information  
To order devices that are tested and marked per VDE 0884 requirements, the suffix "V" must be  
included at end of part number. VDE 0884 is a test option.  
The following options can be ordered with this part:  
Order Entry  
Identifier  
Option  
Description  
F
F
Low profile, surface mount  
Surface mount  
S
S
T
T
0.4" Lead bend  
V
V
VDE 0884  
FV  
SV  
TV  
FR2  
FR2V  
SR2  
SR2V  
FV  
Low profile, surface mount; VDE 0884  
Surface mount; VDE 0884  
0.4" Lead bend; VDE 0884  
Low profile, surface mount; T&R  
Low profile, surface mount; T&R; VDE 0884  
Surface mount; T&R  
SV  
TV  
FR2  
FR2V  
SR2  
SR2V  
Surface mount; T&R; VDE 0884  
back to top  
Product status/pricing/packaging  
Product  
MOC3061F-M  
Product status Pricing* Package type Leads Packing method  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
$0.44  
$0.448  
$0.448  
$0.44  
N/A  
DIP  
DIP  
N/A  
N/A  
N/A  
DIP  
DIP  
DIP  
N/A  
N/A  
N/A  
N/A  
6
RAIL  
TAPE REEL  
TAPE REEL  
RAIL  
MOC3061FR2-M  
MOC3061FR2V-M  
MOC3061FV-M  
MOC3061-M  
6
N/A  
N/A  
N/A  
6
$0.422  
$0.422  
$0.431  
$0.431  
$0.422  
$0.422  
$0.422  
$0.422  
RAIL  
MOC3061S-M  
RAIL  
MOC3061SR2-M  
MOC3061SR2V-M  
MOC3061SV-M  
MOC3061T-M  
MOC3061TV-M  
MOC3061V-M  
TAPE REEL  
TAPE REEL  
RAIL  
6
6
N/A  
N/A  
N/A  
RAIL  
RAIL  
RAIL  
* 1,000 piece Budgetary Pricing  
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Safety agency certificates  
Cetificate  
Agency  
DEMKO DEMKO Testing & Certification  
NEMKO NEMKO  
310983-01 (95 K)  
P01101866 (383 K)  
CR/0117 (424 K)  
102497 (1629 K)  
1113639 (111 K)  
0134082 (136 K)  
FI 17434 (47 K)  
BABT  
VDE  
British Approvals Board of Telecommunications  
VDE Pruf-und Zertifizierungsinstitut  
Canadian Standards Association  
SEMKO  
CSA  
SEMKO  
FIMKO  
UL  
FIMKO  
E90700, Vol. 2 (254 K)  
Underwriters Laboratories Inc.  
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© Copyright 2002 Fairchild Semiconductor  
Last updated: April 7, 2002  
Product Folder - Fairchild P/N MOC3062-M - 6-Pin 600V Zero Crossing Triac Driver Output Coupler  
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a
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a
s
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Products groups  
6-Pin 600V Zero Crossing Triac Driver Output  
Coupler  
Analog and Mixed  
Signal  
Discrete  
Interface  
Logic  
Microcontrollers  
Non-Volatile  
Memory  
Optoelectronics  
Markets and  
applications  
New products  
Product selection and  
parametric search  
Cross-reference  
search  
Request samples  
Dotted line  
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Datasheet  
Download this  
datasheet  
Contents  
Dotted line  
General description | Applications | Ordering  
information | Product  
status/pricing/packaging | Safety agency  
certificates  
Product Change Notices  
(PCNs)  
PDF  
Dotted line  
Support  
Dotted line  
Distributor and field sales  
representatives  
e-mail this datasheet  
[E-  
General description  
Dotted line  
Quality and reliability  
This page  
Print version  
Dotted line  
Design tools  
The MOC3061, MOC3062 and MOC3063  
devices consist of a gallium arsenide infrared  
emitting diodes optically coupled to a  
monolithic silicon detectors performing the  
functions of zero voltage crossing bilateral  
triac drivers.  
technical information  
buy products  
They are designed for use with a triac in the  
interface of logic systems to equipment  
powered from 115/240 Vac lines, such as solid  
state relays, industrial controls, motors,  
solenoids and consumer appliances, etc.  
Simplifies logic control of 115/240 Vac power  
Zero voltage crossing dv/dt of 1500 V/µs  
typical, 600 V/µs guaranteed.  
technical support  
my Fairchild  
company  
back to top  
Applications  
Recommended for 115/240 Vac rms)  
Solenoid/Valve Controls  
Lighting controls  
Static power switches  
AC motor drives  
Temperature controls  
E.M. contractors  
AC motor starters  
 
Product Folder - Fairchild P/N MOC3062-M - 6-Pin 600V Zero Crossing Triac Driver Output Coupler  
back to top  
Ordering information  
To order devices that are tested and marked per VDE 0884 requirements, the suffix "V" must be  
included at end of part number. VDE 0884 is a test option.  
The following options can be ordered with this part:  
Order Entry  
Identifier  
Option  
Description  
F
F
Low profile, surface mount  
Surface mount  
S
S
T
T
0.4" Lead bend  
V
V
VDE 0884  
FV  
SV  
TV  
FR2  
FR2V  
SR2  
SR2V  
FV  
Low profile, surface mount; VDE 0884  
Surface mount; VDE 0884  
0.4" Lead bend; VDE 0884  
Low profile, surface mount; T&R  
Low profile, surface mount; T&R; VDE 0884  
Surface mount; T&R  
SV  
TV  
FR2  
FR2V  
SR2  
SR2V  
Surface mount; T&R; VDE 0884  
back to top  
Product status/pricing/packaging  
Product  
MOC3062F-M  
Product status Pricing* Package type Leads Packing method  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
$0.44  
$0.448  
$0.448  
$0.44  
N/A  
DIP  
DIP  
N/A  
N/A  
N/A  
DIP  
DIP  
DIP  
N/A  
N/A  
N/A  
N/A  
6
RAIL  
TAPE REEL  
TAPE REEL  
RAIL  
MOC3062FR2-M  
MOC3062FR2V-M  
MOC3062FV-M  
MOC3062-M  
6
N/A  
N/A  
N/A  
6
$0.422  
$0.422  
$0.431  
$0.431  
$0.422  
$0.422  
$0.422  
$0.422  
RAIL  
MOC3062S-M  
RAIL  
MOC3062SR2-M  
MOC3062SR2V-M  
MOC3062SV-M  
MOC3062T-M  
MOC3062TV-M  
MOC3062V-M  
TAPE REEL  
TAPE REEL  
RAIL  
6
6
N/A  
N/A  
N/A  
RAIL  
RAIL  
RAIL  
* 1,000 piece Budgetary Pricing  
Product Folder - Fairchild P/N MOC3062-M - 6-Pin 600V Zero Crossing Triac Driver Output Coupler  
back to top  
Safety agency certificates  
Cetificate  
Agency  
DEMKO DEMKO Testing & Certification  
NEMKO NEMKO  
310983-01 (95 K)  
P01101866 (383 K)  
CR/0117 (424 K)  
102497 (1629 K)  
1113639 (111 K)  
0134082 (136 K)  
FI 17434 (47 K)  
BABT  
VDE  
British Approvals Board of Telecommunications  
VDE Pruf-und Zertifizierungsinstitut  
Canadian Standards Association  
SEMKO  
CSA  
SEMKO  
FIMKO  
UL  
FIMKO  
E90700, Vol. 2 (254 K)  
Underwriters Laboratories Inc.  
back to top  
Home | Find products | Technical information | Buy products |  
Support | Company | Contact us | Site index | Privacy policy  
© Copyright 2002 Fairchild Semiconductor  
Last updated: April 7, 2002  
Product Folder - Fairchild P/N MOC3063-M - 6-Pin 600V Zero Crossing Triac Driver Output Coupler  
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The MOC3061, MOC3062 and MOC3063  
devices consist of a gallium arsenide infrared  
emitting diodes optically coupled to a  
monolithic silicon detectors performing the  
functions of zero voltage crossing bilateral  
triac drivers.  
technical information  
buy products  
They are designed for use with a triac in the  
interface of logic systems to equipment  
powered from 115/240 Vac lines, such as solid  
state relays, industrial controls, motors,  
solenoids and consumer appliances, etc.  
Simplifies logic control of 115/240 Vac power  
Zero voltage crossing dv/dt of 1500 V/µs  
typical, 600 V/µs guaranteed.  
technical support  
my Fairchild  
company  
back to top  
Applications  
Recommended for 115/240 Vac rms)  
Solenoid/Valve Controls  
Lighting controls  
Static power switches  
AC motor drives  
Temperature controls  
E.M. contractors  
AC motor starters  
 
Product Folder - Fairchild P/N MOC3063-M - 6-Pin 600V Zero Crossing Triac Driver Output Coupler  
back to top  
Ordering information  
To order devices that are tested and marked per VDE 0884 requirements, the suffix "V" must be  
included at end of part number. VDE 0884 is a test option.  
The following options can be ordered with this part:  
Order Entry  
Identifier  
Option  
Description  
F
F
Low profile, surface mount  
Surface mount  
S
S
T
T
0.4" Lead bend  
V
V
VDE 0884  
FV  
SV  
TV  
FR2  
FR2V  
SR2  
SR2V  
FV  
Low profile, surface mount; VDE 0884  
Surface mount; VDE 0884  
0.4" Lead bend; VDE 0884  
Low profile, surface mount; T&R  
Low profile, surface mount; T&R; VDE 0884  
Surface mount; T&R  
SV  
TV  
FR2  
FR2V  
SR2  
SR2V  
Surface mount; T&R; VDE 0884  
back to top  
Product status/pricing/packaging  
Product  
MOC3063F-M  
Product status Pricing* Package type Leads Packing method  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
Full Production  
$0.493  
$0.50  
N/A  
DIP  
DIP  
N/A  
N/A  
N/A  
DIP  
DIP  
DIP  
N/A  
N/A  
N/A  
N/A  
6
RAIL  
TAPE REEL  
TAPE REEL  
RAIL  
MOC3063FR2-M  
MOC3063FR2V-M  
MOC3063FV-M  
MOC3063-M  
$0.50  
6
$0.493  
$0.475  
$0.475  
$0.484  
$0.484  
$0.475  
$0.475  
$0.475  
$0.475  
N/A  
N/A  
N/A  
6
RAIL  
MOC3063S-M  
RAIL  
MOC3063SR2-M  
MOC3063SR2V-M  
MOC3063SV-M  
MOC3063T-M  
MOC3063TV-M  
MOC3063V-M  
TAPE REEL  
TAPE REEL  
RAIL  
6
6
N/A  
N/A  
N/A  
RAIL  
RAIL  
RAIL  
* 1,000 piece Budgetary Pricing  
Product Folder - Fairchild P/N MOC3063-M - 6-Pin 600V Zero Crossing Triac Driver Output Coupler  
back to top  
Safety agency certificates  
Cetificate  
Agency  
DEMKO DEMKO Testing & Certification  
NEMKO NEMKO  
310983-01 (95 K)  
P01101866 (383 K)  
CR/0117 (424 K)  
102497 (1629 K)  
1113639 (111 K)  
0134082 (136 K)  
FI 17434 (47 K)  
BABT  
VDE  
British Approvals Board of Telecommunications  
VDE Pruf-und Zertifizierungsinstitut  
Canadian Standards Association  
SEMKO  
CSA  
SEMKO  
FIMKO  
UL  
FIMKO  
E90700, Vol. 2 (254 K)  
Underwriters Laboratories Inc.  
back to top  
Home | Find products | Technical information | Buy products |  
Support | Company | Contact us | Site index | Privacy policy  
© Copyright 2002 Fairchild Semiconductor  
Last updated: April 7, 2002  
Former Motorola Products Now Supplied by Fairchild - Fairchild Semiconductor  
SEARCH | Parametric | Cross Reference  
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Select a product number to download its datasheet in PDF format  
(Adobe Acrobat Reader required). A -M suffix indicates a former  
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4N25-M  
4N27-M  
4N25A-M obsoleted, 4N26-M  
no replacement  
4N28-M  
4N29-M replaced  
by 4N29  
4N29A-M replaced  
by 4N29  
4N30-M replaced  
by 4N30  
4N31-M replaced  
by 4N31  
technical information  
buy products  
4N32-M replaced  
by 4N32  
4N33-M replaced  
by 4N33  
4N35-M  
4N36-M  
4N37-M  
4N38-M replaced  
by 4N38  
technical support  
my Fairchild  
4N38A-M replaced  
by 4N38  
company  
back to top  
Datasheets for products beginning with CNY  
CNY17-1-M  
back to top  
CNY17-2-M  
CNY17-3-M  
Datasheets for products beginning with H11  
H11A1-M  
H11AA1-M replaced H11AA2-M replaced  
by H11AA1 by H11AA2  
Former Motorola Products Now Supplied by Fairchild - Fairchild Semiconductor  
H11AA3-M replaced H11AA4-M replaced H11AV1-M  
by H11AA3 by H11AA4  
H11AV1A-M H11AV2-M  
H11AV2A-M  
H11B1-M replaced  
by H11B1  
H11B3-M replaced H11D1-M replaced  
by H11B3 by H11D1  
H11D2-M replaced  
by H11D2  
H11G1-M replaced H11G2-M replaced  
by H11G1  
by H11G2  
H11G3-M replaced  
by H11G3  
H11L1-M  
H11L2-M  
H11L3-M  
back to top  
Datasheets for products beginning with MCT  
MCT2-M  
MCT2E-M  
back to top  
Datasheets for products beginning with MOC  
MOC205-M  
MOC208-M  
MOC213-M  
MOC217-M  
MOC3010-M  
MOC3020-M  
MOC3023-M  
MOC3033-M  
MOC3043-M  
MOC3061-M  
MOC3081-M  
MOC3162-M  
MOC5008-M  
MOC206-M  
MOC211-M  
MOC215-M  
MOC223-M  
MOC3011-M  
MOC3021-M  
MOC3031-M  
MOC3041-M  
MOC3051-M  
MOC3062-M  
MOC3081-M  
MOC3163-M  
MOC5009-M  
MOC207-M  
MOC212-M  
MOC216-M  
MOC256-M  
MOC3012-M  
MOC3022-M  
MOC3032-M  
MOC3042-M  
MOC3052-M  
MOC3063-M  
MOC3083-M  
MOC5007-M  
MOC8030-M  
replaced  
by MOC8030  
Former Motorola Products Now Supplied by Fairchild - Fairchild Semiconductor  
MOC8050-M  
replaced  
by MOC8050  
MOC8080-M  
replaced  
by MOC8080  
MOC8100-M  
MOCD208-M  
MOCD217-M  
MOC8204-M  
replaced  
by MOC8204  
MOCD207-M  
MOCD211-M  
MOCD223-M  
MOCD213-M  
back to top  
Home | Find products | Technical information | Buy products |  
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© Copyright 2002 Fairchild Semiconductor  
Last updated: March 19, 2002  

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