MOC8020-SM [ISOCOM]

Optocoupler - Transistor Output, 1 CHANNEL DARLINGTON OUTPUT OPTOCOUPLER, SURFACE MOUNT, PLASTIC, DIP-6;
MOC8020-SM
型号: MOC8020-SM
厂家: ISOCOM COMPONENTS    ISOCOM COMPONENTS
描述:

Optocoupler - Transistor Output, 1 CHANNEL DARLINGTON OUTPUT OPTOCOUPLER, SURFACE MOUNT, PLASTIC, DIP-6

输出元件
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MOC8020, MOC8021  
NON BASE LEAD  
OPTICALLY COUPLED ISOLATOR  
PHOTODARLINGTON OUTPUT  
Dimensions in mm  
APPROVALS  
2.54  
l
ULrecognised,FileNo.E91231  
1
2
6
5
7.0  
6.0  
'X'SPECIFICATIONAPPROVALS  
l
VDE0884in3availableleadform:-  
-STD  
-Gform  
3
4
1.2  
-SMDapprovedtoCECC00802  
7.62  
6.62  
7.62  
4.0  
3.0  
DESCRIPTION  
The MOC8020, MOC8021 series of optically  
coupled isolators consist of an infrared light  
emitting diode and NPN silicon photodarlington  
in a standard 6pin dual in line plastic package  
with the base pin unconnected.  
13°  
Max  
0.5  
3.0  
0.26  
3.35  
0.5  
ABSOLUTE MAXIMUM RATINGS  
(25°C unless otherwise specified)  
FEATURES  
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Options :-  
10mm lead spread - add G after part no.  
Surface mount - add SM after part no.  
Tape&reel - add SMT&R after part no.  
High Current Transfer Ratio (500% min)  
BVceo35V  
HighIsolationVoltage(5.3kVRMS,7.5kVPK)  
Base pin unconnected for improved noise  
immunity in high EMI environment  
High sensitivity to low input drive current  
Custom electrical selections available  
Storage Temperature  
OperatingTemperature  
Lead Soldering Temperature  
-40°Cto+125°C  
-25°Cto+100°C  
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(1/16 inch (1.6mm) from case for 10 secs) 260°C  
INPUT DIODE  
ForwardCurrent  
Reverse Voltage  
Power Dissipation  
50mA  
6V  
70mW  
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APPLICATIONS  
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Computer terminals  
Industrial systems controllers  
Measuring instruments  
Signal transmission between systems of  
different potentials and impedances  
OUTPUT TRANSISTOR  
Collector-emitterVoltageBVCEO  
Emitter-collectorVoltageBVECO  
Power Dissipation  
35V  
6V  
150mW  
OPTION G  
7.62  
OPTION SM  
SURFACE MOUNT  
POWER DISSIPATION  
Total Power Dissipation  
(derate linearly 3.3mW/°C above 25°C)  
170mW  
0.6  
0.1  
1.25  
0.75  
0.26  
10.46  
9.86  
10.16  
ISOCOM COMPONENTS LTD  
Unit 25B, Park View Road West,  
Park View Industrial Estate, Brenda Road  
Hartlepool, Cleveland, TS25 1YD  
Tel: (01429) 863609 Fax :(01429) 863581  
28/3/03  
DB92152m-AAS/A5  
ELECTRICAL CHARACTERISTICS ( TA = 25°C Unless otherwise noted )  
PARAMETER  
MIN TYP MAX UNITS  
TEST CONDITION  
Input  
ForwardVoltage(VF)  
1.2  
1.4  
10  
V
IF =10mA  
Reverse Current (IR)  
µA  
V
VR =4V  
Output  
Collector-emitterBreakdown(BVCEO  
)
35  
6
IC =0.1mA  
Emitter-collectorBreakdown(BVECO  
Collector-emitterDarkCurrent(ICEO  
)
V
IE =10µA  
)
10-6  
Α
VCE =10V  
Coupled Output Collector Current ( IC )(Note 2)  
MOC8020  
MOC8021  
50  
100  
mA  
mA  
10mAIF,5VV  
10mA IF , 5V CVECE  
Input to Output Isolation Voltage VISO  
Input-output Isolation Resistance RISO  
5300  
7500  
VRMS  
VPK  
(note 1)  
(note 1)  
1011  
VIO = 500V (note 1)  
Response Time (Rise), tr  
ResponseTime(Fall), tf  
60  
53  
µs  
µs  
V =2V,IC=10mA,  
RLCE=100,fig.1  
Note 1  
Note 2  
Measured with input leads shorted together and output leads shorted together.  
Special Selections are available on request. Please consult the factory.  
FIGURE 1  
DB92152m-AAS/A5  
28/3/03  
Fig.1 Forward Current vs.  
Ambient Temperature  
Fig.2 Collector Power Dissipation vs.  
Ambient Temperature  
60  
50  
40  
30  
20  
10  
0
200  
150  
100  
50  
0
-25  
-25  
0
25  
50  
75 100 125  
0
25  
50  
75 100 125  
Ambient temperature Ta (oC)  
Ambient temperature Ta (oC)  
Fig.3 Current Transfer Ratio vs. Forward  
Current  
Fig.4 Forward Current vs. Forward  
Voltage  
3500  
100  
VCE= 2V  
3000  
2500  
2000  
1500  
1000  
500  
100oC  
80oC  
40oC  
20oC  
60oC  
10  
0
0.1  
1
1
10  
0.5 0.7 0.9 1.1 1.3 1.5 1.7 1.9  
Forward voltage (V)  
Forward current IF (mA)  
Fig.5 Collector Current vs.  
Collector-emitter Voltage  
Fig.6 Collector Current vs.  
Collector-emitter Voltage  
60  
100  
PC(MAX.)  
90  
PC(MAX.)  
50  
80  
I = 5mA  
F
70  
60  
50  
40  
30  
20  
10  
0
I = 1mA  
F
40  
30  
20  
10  
0
0.9mA  
0.8mA  
0.7mA  
0.6mA  
2mA  
1mA  
0.5mA  
0.4mA  
0.3mA  
0.2mA  
0.1mA  
0
2
4
6
8
10  
0
1
2
3
4
5
Collector-emitter voltage Vce (V)  
Collector-emitter voltage Vce (V)  
28/03/03  
DB92152m-AAS/A5  
Fig.7 Relative Current Transfer Ratio  
vs. Ambient Temperature  
Fig.8 Collector-emitter Saturation Voltage  
vs. Ambient Temperature  
1.0  
1.00  
IF= 1mA  
VCE= 2V  
IF= 20mA  
Ic= 5mA  
0.80  
0.8  
0.6  
0.4  
0.2  
0
0.60  
0.40  
0.20  
0.00  
20  
40  
60  
80  
100  
20  
40  
60  
80  
100  
O
O
Ambient temperature Ta ( C)  
Ambient temperature Ta ( C)  
Fig.9 Collector Dark Current vs.  
Ambient Temperature  
Fig.10 Response Time vs. Load  
Resistance  
10.00  
5
VCE= 10V  
VCE= 2V  
IC= 10mA  
2
103  
5
tf  
1.00  
0.10  
0.01  
2
102  
5
tr  
2
10  
5
td  
ts  
2
100  
20  
40  
60  
80  
100  
0.1  
1
10  
O
Ambient temperature Ta ( C)  
Load resistance RL (k  
)
Fig.11 Frequency Response  
Test Circuit for Response Time  
Input  
Vcc  
VCE= 2V  
IC= 2mA  
Output  
RL  
10%  
90%  
Output  
Input  
RD  
0
td  
ts  
tr  
tf  
Test Circuit for Frequency Response  
-10  
RL= 10k  
0.1  
1k  
100  
Vcc  
RL  
RD  
Output  
-20  
1
10  
100  
Frequency f (kHz)  
28/03/03  
DB92152m-AAS/A5  

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