Technical Documents
Specifications
Brand
VishayProduct Type
Optocoupler
Mount Type
Surface
Maximum Forward Voltage
1.6V
Packaging
Tape & Reel
Number of Channels
1
Number of Pins
4
Package Type
Surface Mount
Input Current Type
DC
Typical Rise Time
3μs
Maximum Input Current
60mA
Isolation Voltage
5kVrms
Minimum Operating Temperature
-55°C
Maximum Current Transfer Ratio
80%
Maximum Operating Temperature
110°C
Typical Fall Time
4.7μs
Standards/Approvals
FIMKO: FI25155, EN 60950-1:2006, DIN EN 60747-5-5 (VDE 0884), cUL 1577, CQC file no. 09001038077, BSI: EN 60065:2002, 09001038080, UL 1577
Minimum Current Transfer Ratio
50%
Series
VO
Automotive Standard
No
Product Details
Vishay low input current optocoupler with a phototransistor output VO615A, VO617A, VO618A series protect equipment users from electrical shocks and protect the microprocessors within these systems from being damaged by voltage spikes.
Stock information temporarily unavailable.
€ 3.20
€ 0.32 Each (Supplied on a Reel) (Exc. VAT)
€ 3.78
€ 0.378 Each (Supplied on a Reel) (inc. VAT)
Production pack (Reel)
10
€ 3.20
€ 0.32 Each (Supplied on a Reel) (Exc. VAT)
€ 3.78
€ 0.378 Each (Supplied on a Reel) (inc. VAT)
Stock information temporarily unavailable.
Production pack (Reel)
10
Technical Documents
Specifications
Brand
VishayProduct Type
Optocoupler
Mount Type
Surface
Maximum Forward Voltage
1.6V
Packaging
Tape & Reel
Number of Channels
1
Number of Pins
4
Package Type
Surface Mount
Input Current Type
DC
Typical Rise Time
3μs
Maximum Input Current
60mA
Isolation Voltage
5kVrms
Minimum Operating Temperature
-55°C
Maximum Current Transfer Ratio
80%
Maximum Operating Temperature
110°C
Typical Fall Time
4.7μs
Standards/Approvals
FIMKO: FI25155, EN 60950-1:2006, DIN EN 60747-5-5 (VDE 0884), cUL 1577, CQC file no. 09001038077, BSI: EN 60065:2002, 09001038080, UL 1577
Minimum Current Transfer Ratio
50%
Series
VO
Automotive Standard
No
Product Details
Vishay low input current optocoupler with a phototransistor output VO615A, VO617A, VO618A series protect equipment users from electrical shocks and protect the microprocessors within these systems from being damaged by voltage spikes.