Documentos Técnicos
Especificações
Brand
VishayProduct Type
Optocoupler
Mount Type
Surface Mount
Maximum Forward Voltage
1.6V
Packaging
Tape & Reel
Number of Channels
1
Number of Pins
4
Package Type
SOP
Input Current Type
DC
Typical Rise Time
5μs
Maximum Input Current
60mA
Isolation Voltage
3.75kVrms
Minimum Operating Temperature
-55°C
Logic Output
Yes
Maximum Current Transfer Ratio
600%
Maximum Operating Temperature
110°C
Minimum Current Transfer Ratio
40%
Typical Fall Time
29μs
Standards/Approvals
UL1577, FIMKO EN60065, EN60950-1, DIN EN 60747-5-5 (VDE 0884), CSA 22.2, CQC GB8898-2001
Series
VOM
Automotive Standard
No
País de Origem
Philippines
Detalhes do produto
Optocoupler, Transistor Output, VOM Series, Vishay Semiconductor
Vishay low input current optocoupler with a phototransistor output VOM617A and VOM618A series protect equipment users from electrical shocks and protect the microprocessors within these systems from being damaged by voltage spikes.
Optocouplers, Vishay Semiconductor
Informações de estoque temporariamente indisponíveis.
P.O.A.
Each (In a Bag of 10) (Sem VAT)
Padrão
10
P.O.A.
Each (In a Bag of 10) (Sem VAT)
Informações de estoque temporariamente indisponíveis.
Padrão
10
Documentos Técnicos
Especificações
Brand
VishayProduct Type
Optocoupler
Mount Type
Surface Mount
Maximum Forward Voltage
1.6V
Packaging
Tape & Reel
Number of Channels
1
Number of Pins
4
Package Type
SOP
Input Current Type
DC
Typical Rise Time
5μs
Maximum Input Current
60mA
Isolation Voltage
3.75kVrms
Minimum Operating Temperature
-55°C
Logic Output
Yes
Maximum Current Transfer Ratio
600%
Maximum Operating Temperature
110°C
Minimum Current Transfer Ratio
40%
Typical Fall Time
29μs
Standards/Approvals
UL1577, FIMKO EN60065, EN60950-1, DIN EN 60747-5-5 (VDE 0884), CSA 22.2, CQC GB8898-2001
Series
VOM
Automotive Standard
No
País de Origem
Philippines
Detalhes do produto
Optocoupler, Transistor Output, VOM Series, Vishay Semiconductor
Vishay low input current optocoupler with a phototransistor output VOM617A and VOM618A series protect equipment users from electrical shocks and protect the microprocessors within these systems from being damaged by voltage spikes.
