Transistor, Photovoltaic Output Optoisolators

Results: 3
Manufacturer
Littelfuse Inc.Vishay Semiconductor Opto Division
Voltage - Isolation
3750Vrms4420Vrms
Current Transfer Ratio (Min)
0.73% @ 2mA ~ 10mA-
Current Transfer Ratio (Max)
1.07% @ 2mA ~ 10mA-
Rise / Fall Time (Typ)
1µs, 1µs-
Voltage - Output (Max)
500mV-
Current - Output / Channel
70µA (Typ)-
Voltage - Forward (Vf) (Typ)
1.2V1.25V-
Current - DC Forward (If) (Max)
60 mA100 mA
Operating Temperature
-55°C ~ 100°C-40°C ~ 85°C-
Mounting Type
Surface MountThrough Hole
Package / Case
8-DIP (0.300", 7.62mm)8-SMD, Gull Wing
Supplier Device Package
8-DIP8-FlatPack
Stocking Options
Environmental Options
Media
Marketplace Product
3Results

Showing
of 3
Compare
Mfr Part #
Quantity Available
Price
Series
Package
Product Status
Number of Channels
Voltage - Isolation
Current Transfer Ratio (Min)
Current Transfer Ratio (Max)
Turn On / Turn Off Time (Typ)
Rise / Fall Time (Typ)
Input Type
Output Type
Voltage - Output (Max)
Current - Output / Channel
Voltage - Forward (Vf) (Typ)
Current - DC Forward (If) (Max)
Vce Saturation (Max)
Operating Temperature
Mounting Type
Package / Case
Supplier Device Package
8-DIP
IL300
OPTOISO 5.3KV LINEAR PHVOLT 8DIP
Vishay Semiconductor Opto Division
1,310
In Stock
1 : ¥40.38000
Tube
-
Tube
Active
1
4420Vrms
-
-
-
1µs, 1µs
DC
Photovoltaic, Linearized
500mV
70µA (Typ)
1.25V
60 mA
-
-55°C ~ 100°C
Through Hole
8-DIP (0.300", 7.62mm)
8-DIP
8-SMD
LOC112P
OPTOISOLATOR 3.75KV PHVOLT 8SMD
Littelfuse Inc.
123
In Stock
1 : ¥25.76000
Tube
-
Tube
Active
1
3750Vrms
-
-
-
-
DC
Photovoltaic, Linearized
-
-
1.2V
-
-
-40°C ~ 85°C
Surface Mount
8-SMD, Gull Wing
8-FlatPack
8-SMD
LOC111P
OPTOCOUPLER TRANSISTOR 8 FLTPK
Littelfuse Inc.
905
In Stock
1 : ¥28.73000
Tube
-
Tube
Active
1
3750Vrms
0.73% @ 2mA ~ 10mA
1.07% @ 2mA ~ 10mA
-
-
DC
Photovoltaic, Linearized
-
-
-
100 mA
-
-
Surface Mount
8-SMD, Gull Wing
8-FlatPack
Showing
of 3

Transistor, Photovoltaic Output Optoisolators


Transistor or photovoltaic output optoisolators use light to transmit information across an electrical insulation barrier, usually for safety or functional reasons. They are distinguished from other optoisolator types by their use of a simple phototransistor or photovoltaic cell (solar cell) as an output device. The outputs of these devices do not require an external power source for operation and are analog in character, allowing their use for transmitting analog information between circuits which cannot be electrically connected.