MOC3041X [ETC]

OPTICALLY COUPLED BILATERAL SWITCH LIGHT ACTIVATED ZERO VOLTAGE CROSSING TRIAC; 光耦合双向开关光敏电压过零点TRIAC
MOC3041X
型号: MOC3041X
厂家: ETC    ETC
描述:

OPTICALLY COUPLED BILATERAL SWITCH LIGHT ACTIVATED ZERO VOLTAGE CROSSING TRIAC
光耦合双向开关光敏电压过零点TRIAC

光电 开关 三端双向交流开关 输出元件
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中文:  中文翻译
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MOC3040, MOC3041, MOC3042, MOC3043  
MOC3040X, MOC3041X, MOC3042X, MOC3043X  
OPTICALLYCOUPLEDBILATERAL  
SWITCHLIGHTACTIVATEDZERO  
VOLTAGECROSSINGTRIAC  
Dimensions in mm  
2.54  
'X'SPECIFICATIONAPPROVALS  
l
VDE 0884 in 3 available lead form : -  
- STD  
1
6
5
4
7.0  
6.0  
2
3
- G form  
-SMDapprovedtoCECC00802  
1.2  
3.0  
DESCRIPTION  
7.62  
6.62  
7.62  
0.26  
4.0  
3.0  
The MOC304_ Series are optically coupled  
isolators consisting of a Gallium Arsenide  
infrared emitting diode coupled with a mono-  
lithic silicon detector performing the functions  
of a zero crossing bilateral triac mounted in a  
standard 6 pin dual-in-line package.  
13°  
Max  
0.5  
3.35  
0.5  
ABSOLUTE MAXIMUM RATINGS  
(25 °C unless otherwise noted)  
FEATURES  
l
Options :-  
-550C-+1500C  
10mm lead spread - add G after part no.  
Surface mount - add SM after part no.  
Tape&reel - add SMT&R after part no.  
High Isolation Voltage (5.3kVRMS ,7.5kVPK  
Zero Voltage Crossing  
400V Peak Blocking Voltage  
All electrical parameters 100% tested  
Custom electrical selections available  
Storage Temperature  
Operating Temperature  
Lead Soldering Temperature  
(1.6mm from case for 10 seconds)  
-400C - +1000C  
2600C  
l
l
l
l
l
)
INPUTDIODE  
Forward Current  
Reverse Voltage  
Power Dissipation  
50mA  
6V  
APPLICATIONS  
120mW  
l
l
l
l
l
CRTs  
Power Triac Driver  
Motors  
Consumer appliances  
Printers  
(derate linearly 1.41mW/0C above 250C)  
OUTPUT PHOTO TRIAC  
Off-State Output Terminal Voltage  
ForwardCurrent(Peak)  
400V  
1A  
150mW  
OPTION G  
OPTION SM  
SURFACEMOUNT  
Power Dissipation  
7.62  
(deratelinearly1.76mW/0Cabove250C)  
POWERDISSIPATION  
0.6  
1.25  
0.1  
0.26  
0.75  
10.46  
9.86  
Total Power Dissipation  
250mW  
10.16  
(derate linearly 2.94mW/0C above 250C)  
ISOCOM INC  
1024 S.GreenvilleAve,Suite240,  
Allen, TX75002 USA  
ISOCOMCOMPONENTSLTD  
Unit25B, ParkViewRoadWest,  
Park View Industrial Estate, Brenda Road  
Tel:(214)495-0755 Fax:(214)495-0901  
e-mail info@isocom.com  
Hartlepool,TS251YDEnglandTel:(01429)863609  
Fax:(01429)863581 e-mail sales@isocom.co.uk  
http://www.isocom.com  
http://www.isocom.com  
28/3/03  
DB91048m-AAS/A6  
ELECTRICAL CHARACTERISTICS ( TA = 25°C Unless otherwise noted )  
PARAMETER  
MIN TYP MAX UNITS  
TEST CONDITION  
Input  
ForwardVoltage(VF)  
Reverse Current (IR)  
1.2  
1.4  
10  
V
µA  
IF =20mA  
VR =6V  
Output  
Peak Off-state Current ( IDRM  
Peak Blocking Voltage( VDRM  
)
)
500 nA  
V
VDRM =400V(note1)  
IDRM =500nA  
400  
On-state Voltage ( VTM  
)
3.0  
V
ITM = 100mA ( peak )  
Critical rate of rise of  
off-state Voltage ( dv/dt )  
600 1500  
V/µs  
Coupled Input Current to Trigger ( IFT )(note 2 )  
MOC3040  
MOC3041  
MOC3042  
30  
15  
10  
mA  
mA  
mA  
VTM = 3V ( note 2 )  
MOC3043  
5
mA  
Holding Current , either direction ( IH )  
Input to Output Isolation Voltage VISO  
400  
5300  
7500  
µA  
VRMS  
VPK  
See note 3  
See note 3  
Zero  
Inhibit Voltage ( VIH  
)
20  
V
IF= Rated IFT  
Crossing  
Charact-  
-eristic  
MT1-MT2 Voltage  
above which device  
will not trigger  
Leakage in Inhibited State ( IS )  
500  
mA  
IF= Rated IFT  
VDRM = Rated VDRM  
Off-state  
Note 1. Test voltage must be applied within dv/dt rating.  
Note 2. Guaranteed to trigger at an IF value less than or equal to max. IFT , recommended IF lies  
between Rated IFT and absolute max. IF .  
Note 3. Measured with input leads shorted together and output leads shorted together.  
28/3/03  
DB91048m-AAS/A6  
CHARACTERISTIC CURVES  
Fig.1 Forward Current vs.  
Ambient Temperature  
Fig.2 On-state Current vs. Ambient  
Temperature  
60  
50  
40  
30  
20  
10  
0
0.10  
0.05  
0
-40 -20  
0
20 40 60 80 100 120  
-40 -20  
0
20 40 60 80 100 120  
Ambient temperature Ta (oC)  
Ambient temperature Ta (oC)  
Fig.3 Minimum Trigger Current  
Fig.4 Forward Current vs. Forward  
Voltage  
vs. Ambient Temperature  
10  
100  
VP= 6V  
R
L
= 100  
8
6
4
2
0
60oC  
40oC  
20oC  
80oC  
100oC  
10  
1
20  
40  
60  
80  
100  
0.4  
0.8  
1.2  
1.6  
2.0  
Ambient temperature ( oC)  
Forward voltage VF (V)  
Fig.5 On-state Voltage vs. Ambient  
Temperature  
Fig.6 Holding Current vs.  
Ambient Temperature  
3.0  
1
ITM= 100mA  
VP= 6V  
2.6  
2.2  
1.8  
1.4  
1.0  
0.1  
0.01  
20  
40  
60  
80  
100  
20  
40  
60  
80  
100  
Ambient temperature Ta ( o C)  
Ambient Temperature Ta ( oC)  
28/03/03  
DB91048m-AAS/A6  
CHARACTERISTIC CURVES  
Fig.7 Turn-on Time vs. Forward  
Current  
Fig.8 Repetitive Peak Off-state Current  
vs. Temperature  
10  
1000  
VP= 9V  
RL= 100  
8
6
4
2
0
100  
10  
1
10  
20  
30  
40  
50  
20  
40  
60  
80  
100  
O
Forward current IF (mA)  
Ambient temperature Ta ( C)  
Fig.9 On-state Current vs.  
On-state Voltage  
Static dv/dt Test Circuit  
100  
80  
60  
40  
20  
0
+ 400  
Vdc  
RTEST  
R= 10k  
CTEST  
PULSE  
INPUT  
X100  
SCOPE  
PROBE  
MERCURY  
WETTED  
RELAY  
D.U.T.  
APPLIED VOLTAGE  
WAVEFORM  
Vmax = 400V  
252 V  
τRC  
0
0.5 1.0 1.5 2.0 2.5 3.0  
On-state voltage VTM (V)  
0.63 Vmax  
378  
0 VOLTS  
dv/dt=  
=
τRC  
τRC  
28/03/03  
DB91048m-AAS/A6  

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