DescriptionThe PC4N25V is designed as one kind of general purpose type photocoupler. Typical applications include I/O interfaces for computers, system appliances, measuring instruments and signal transmission between circuits of differential potentials and impedances.PC4N25V has two features. (1)R...
PC4N25V: DescriptionThe PC4N25V is designed as one kind of general purpose type photocoupler. Typical applications include I/O interfaces for computers, system appliances, measuring instruments and signal tr...
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The PC4N25V is designed as one kind of general purpose type photocoupler. Typical applications include I/O interfaces for computers, system appliances, measuring instruments and signal transmission between circuits of differential potentials and impedances.
PC4N25V has two features. (1)Response time typ 3us at Vce=10V and Ic=2mA and RL=100ohms. (2)UL recognized, file No.E64380 TUV approoved. Those are all the main features.
Some absolute maximum ratings of PC4N25V have been concluded into several points as follow. (1)Its forward current would be 80mA. (2)Its input peak forward current would be 3A. (3)Its input reverse voltage would be 6V. (4)Its input power dissipation would be 150mW. (5)Its collector to emitter voltage would be 30V. (6)Its emitter to collector voltage would be 7V. (7)Its collector to base voltage would be 70V. (8)Its collector current would be 100mA. (9)Its collector power dissipation would be 150mW. (10)Its total power dissipation would be 250mW. (11)Its isolation voltage would be 2500Vrms. (12)Its operating temperature range would be from -55°C to 100°C. (13)Its storage temperature range would be from -55°C to 150°C. (14)Its soldering temperature would be 260°C. It should be noted that stresses above those listed in absolute maximum ratings may cause permanent damage to device.
Also some electrical characteristics of PC4N25V are concluded as follow. (1)Its input forward voltage would be typ 1.2V and max 1.5V. (2)Its input reverse current would be max 10uA. (3)Its input terminal capacitance would be typ 50pF. (4)Its collector dark current would be max 5x10^-8 amps. (5)Its collector to emitter breakdown voltage would be min 30V. (6)Its emitter to collector breakdown voltage would be min 7V. (7)Its collector to base breakdown voltage would be min 70V. (8)Its collector to emitter saturation voltage would be typ 0.1V and max 0.5V. And so on. If you have any question or suggestion or want to know more information please contact us for details. Thank you!