Vishay, ILD205T DC Input Phototransistor Output Dual Optocoupler, Surface Mount, 8-Pin SOIC

RS Stock No.: 903-4709Brand: VishayManufacturers Part No.: ILD205T
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Technical Document

Specifications

Brand

Vishay

Mounting Type

Surface Mount

Output Device

Phototransistor

Maximum Forward Voltage

1.55V

Number of Channels

2

Number of Pins

8

Package Type

SOIC

Input Current Type

DC

Typical Rise Time

3µs

Isolation Voltage

4000 Vrms

Maximum Current Transfer Ratio

80%

Typical Fall Time

4.7µs

Series

ILD

Special Features

Compatible with Dual Wave, Vapor Phase and IR Reflow Soldering

Country of Origin

Malaysia

Product details

Optocoupler, Transistor Output, IL, ILD, ILQ Series, Vishay Semiconductor

Optocouplers, Vishay Semiconductor

2.970 OMR

0.297 OMR Each (In a Pack of 10) (ex VAT)

3.118 OMR

0.312 OMR Each (In a Pack of 10) (inc. VAT)

Vishay, ILD205T DC Input Phototransistor Output Dual Optocoupler, Surface Mount, 8-Pin SOIC
Select packaging type

2.970 OMR

0.297 OMR Each (In a Pack of 10) (ex VAT)

3.118 OMR

0.312 OMR Each (In a Pack of 10) (inc. VAT)

Vishay, ILD205T DC Input Phototransistor Output Dual Optocoupler, Surface Mount, 8-Pin SOIC

Stock information temporarily unavailable.

Select packaging type

Stock information temporarily unavailable.

QuantityUnit pricePer Pack
10 - 900.297 OMR2.970 OMR
100 - 2400.292 OMR2.915 OMR
250 - 4900.248 OMR2.475 OMR
500 - 9900.209 OMR2.090 OMR
1000+0.182 OMR1.815 OMR

Technical Document

Specifications

Brand

Vishay

Mounting Type

Surface Mount

Output Device

Phototransistor

Maximum Forward Voltage

1.55V

Number of Channels

2

Number of Pins

8

Package Type

SOIC

Input Current Type

DC

Typical Rise Time

3µs

Isolation Voltage

4000 Vrms

Maximum Current Transfer Ratio

80%

Typical Fall Time

4.7µs

Series

ILD

Special Features

Compatible with Dual Wave, Vapor Phase and IR Reflow Soldering

Country of Origin

Malaysia

Product details

Optocoupler, Transistor Output, IL, ILD, ILQ Series, Vishay Semiconductor

Optocouplers, Vishay Semiconductor