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KPC744 Datasheet

Part Number KPC744
Manufacturers Kodenshi
Logo Kodenshi
Description Photocoupler
Datasheet KPC744 DatasheetKPC744 Datasheet (PDF)

Photocoupler KPC714 • KPC724 • KPC744 These Photocouplers consist of two Gallium Arsenide Infrared Emitting Diodes connected in a reverse-paralled configuration for AC-input and a Silicon NPN Phototransistor per a channel The KPC714 has one channel in a 4-pin DIP package The KPC724 has two channels in a 8-pin DIP package The KPC744 has four channels in a 16-pin DIP package FEATURES • Small Package Size • Collector-Emitter Voltage : Min.35V • Current Transfer Ratio : 50% Min.(at IF= 5mA) • Ele.

  KPC744   KPC744






Photocoupler

Photocoupler KPC714 • KPC724 • KPC744 These Photocouplers consist of two Gallium Arsenide Infrared Emitting Diodes connected in a reverse-paralled configuration for AC-input and a Silicon NPN Phototransistor per a channel The KPC714 has one channel in a 4-pin DIP package The KPC724 has two channels in a 8-pin DIP package The KPC744 has four channels in a 16-pin DIP package FEATURES • Small Package Size • Collector-Emitter Voltage : Min.35V • Current Transfer Ratio : 50% Min.(at IF= 5mA) • Electrical Isolation Voltage : AC2500Vrms • UL Recognized File No. E107486 APPLICATIONS • AC Signal Input • Interface between two circuits of difference • Vending Machine • Cordless Phone, Key Phone • Programmable Logic Control DIMENSION KPC714 43 KPC724 (Unit : mm) 87 65 6.5 0.25 6.5 0.25 Orientation Mark 4.6 0.25 12 7.62 0.25 6.5 0.51Min. 3.5 0.25 2.5Min. 0.5 1.2 2.54 0.25 0 ~15 KPC744 0.25 Orientation Mark 9.7 0.25 12 3 4 7.62 0.25 6.5 0.51Min. 3.5 0.25 2.5Min. 0.5 1.2 2.54 0.25 0 ~15 0.25 16 15 14 13 12 11 10 9 6.5 0.25 Orientation Mark 19.8 0.25 0.51Min. 3.5 0.25 0.5 1.2 2.54 0.25 2.5Min. 123 45 6 78 7.62 0.25 6.5 0 ~15 1/3 0.25 Photocoupler KPC714 • KPC724 • KPC744 MAXIMUM RATINGS Parameter Input Forward Current Peak Forward Current*1 Power Dissipation Collector-Emitter Breakdown Voltage Output Emitter-Collector Breakdown Voltage Collector Current Collector Power Dissipation Input to Output Isolation Voltage*2 Storage Temperature Operating.


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