MOC8102-X016 Vishay, MOC8102-X016 Datasheet - Page 4

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MOC8102-X016

Manufacturer Part Number
MOC8102-X016
Description
Transistor Output Optocouplers Phototransistor Out Single CTR > 73-117%
Manufacturer
Vishay
Datasheet

Specifications of MOC8102-X016

Maximum Input Diode Current
60 mA
Maximum Reverse Diode Voltage
6 V
Output Device
Phototransistor
Output Type
DC
Configuration
1 Channel
Input Type
DC
Maximum Collector Emitter Voltage
30 V
Maximum Collector Emitter Saturation Voltage
0.4 V
Isolation Voltage
5300 Vrms
Current Transfer Ratio
117 %
Maximum Forward Diode Voltage
1.5 V
Maximum Collector Current
50 mA
Maximum Power Dissipation
250 mW
Maximum Operating Temperature
+ 100 C
Minimum Operating Temperature
- 55 C
Package / Case
PDIP-6
Number Of Elements
1
Reverse Breakdown Voltage
6V
Forward Voltage
1.5V
Forward Current
60mA
Collector-emitter Voltage
30V
Package Type
PDIP
Collector Current (dc) (max)
50mA
Power Dissipation
250mW
Collector-emitter Saturation Voltage
0.4V
Pin Count
6
Mounting
Through Hole
Operating Temp Range
-55C to 100C
Operating Temperature Classification
Industrial
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
MOC8102-X016
Quantity:
70 000
MOC8101/MOC8102/MOC8103/MOC8104/MOC8105
Vishay Semiconductors
www.vishay.com
4
imoc8101_04
Fig. 3 - Collector Current vs. Collector Emitter Voltage
imoc8101_05
Fig. 4 - Collector Current vs. Ambient Temperature
0.1
10
25
20
15
10
1
5
0
- 60 - 40
0
I F = 10 mA
Normalized to T
1
imoc81010_01
2
Input
3
I
F
A
= 25 °C
4
T (°C)
V CE (V)
20
5
For technical questions, contact: optocoupler.answers@vishay.com
Test circuit
40
6
MOC8103
MOC8105
MOC8102
MOC8101
MOC8104
Optocoupler, Phototransistor Output,
60
Fig. 7 - Switching Time Test Circuit and Waveforms
I
V
I
F
7
CE
C
= 10 mA
V
= 10 V
CC
80
8
= 10 V
R
100 120
Output
9
L
No Base Connection
= 100 Ω
10
90 %
10 %
t
on
Fig. 5 - Collector Emitter Dark Current vs. Ambient Temperature
imoc8101_06
imoc8101_07
10000
1000
100
20
18
16
14
12
10
10
8
6
4
2
0
1
0.1
Waveforms
0.01
0
t
r
Fig. 6 - Capacitance vs. Voltage
Normalized to V
V
CE
20
0.1
= 30 V
C
CE
Input pulse
Output pulse
CE
V
t
40
t
Voltage (V)
of f
CE
f
= 10 V
T A (°C)
= 10 V
1
C
LED
60
Document Number: 83660
1 0
Rev. 1.5, 11-Jan-08
f = 1 MHz
80
100
100

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