Vishay, 4N27 DC Input Phototransistor Output Optocoupler, Through Hole, 6-Pin PDIP

RS tootekood: 708-5288Bränd: VishayTootja Part nr.: 4N27
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Tehnilised dokumendid

Spetsifikatsioonid:

Brand

Vishay

Mounting Type

Through Hole

Output Device

Phototransistor

Maximum Forward Voltage

1.5V

Number of Channels

1

Number of Pins

6

Package Type

PDIP

Input Current Type

DC

Typical Rise Time

2µs

Maximum Input Current

60 mA

Isolation Voltage

5000 V ac

Maximum Current Transfer Ratio

30%

Typical Fall Time

2µs

Minimum Current Transfer Ratio

10 %

Toote üksikasjad

Optocoupler, Transistor Output, 4Nxx Series, Vishay Semiconductor

Each optocoupler consists of gallium arsenide infrared LED and a silicon NPN phototransistor.

Optocouplers, Vishay Semiconductor

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Palun kontrollige hiljem uuesti.

Lao andmed ajutiselt ei ole saadaval.

€ 0,428

tk (pakis 20) (ilma käibemaksuta)

€ 0,522

tk (pakis 20) (koos käibemaksuga)

Vishay, 4N27 DC Input Phototransistor Output Optocoupler, Through Hole, 6-Pin PDIP
Valige pakendi tüüp

€ 0,428

tk (pakis 20) (ilma käibemaksuta)

€ 0,522

tk (pakis 20) (koos käibemaksuga)

Vishay, 4N27 DC Input Phototransistor Output Optocoupler, Through Hole, 6-Pin PDIP
Lao andmed ajutiselt ei ole saadaval.
Valige pakendi tüüp

Osta lahtiselt

kogusÜhikuhindPer Pakend
20 - 180€ 0,428€ 8,56
200 - 480€ 0,347€ 6,94
500 - 980€ 0,322€ 6,44
1000 - 1980€ 0,28€ 5,60
2000+€ 0,269€ 5,38

Tehnilised dokumendid

Spetsifikatsioonid:

Brand

Vishay

Mounting Type

Through Hole

Output Device

Phototransistor

Maximum Forward Voltage

1.5V

Number of Channels

1

Number of Pins

6

Package Type

PDIP

Input Current Type

DC

Typical Rise Time

2µs

Maximum Input Current

60 mA

Isolation Voltage

5000 V ac

Maximum Current Transfer Ratio

30%

Typical Fall Time

2µs

Minimum Current Transfer Ratio

10 %

Toote üksikasjad

Optocoupler, Transistor Output, 4Nxx Series, Vishay Semiconductor

Each optocoupler consists of gallium arsenide infrared LED and a silicon NPN phototransistor.

Optocouplers, Vishay Semiconductor