DescriptionThe PS2705 is a kind of AC input response photocoupler which is an optically coupled isolator. It is designed for high density mounting applications. It can be use in accosions such as programmable logic controllers,small power supply,hybrid IC,FA/OA equipment,telephone or fax. It is av...
PS2705: DescriptionThe PS2705 is a kind of AC input response photocoupler which is an optically coupled isolator. It is designed for high density mounting applications. It can be use in accosions such as pr...
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The PS2705 is a kind of AC input response photocoupler which is an optically coupled isolator. It is designed for high density mounting applications. It can be use in accosions such as programmable logic controllers,small power supply,hybrid IC,FA/OA equipment,telephone or fax. It is available in the SOP package.
The following is some information about PS2705's features. (1) AC input response; (2) high collector to emitter voltage; (3) high isolation voltage; (4) small and thin (SOP) package; (5) high-speed switching; (6) ordering number of taping product; (7) UL approved; (8) VDE0884 approved.
Then is some description concerning PS2705's absolute maximum ratings when TA is 25 . (1): forward current (IF) is ±50 mA; (2): reverse voltage (VR) is 6 V; (3):peak forward current is ±1 A; (4): power dissipaton (PD) is 80 mW/ch; (5): operating temperature (TA) is from -55 to 100 ; (6): storage temperature (Tstg) is from -55 to 100 ; (7): collector current (IC) is 80 mA/ch; (8): isolation voltage is 3750 Vrms; (9): collector to emitter voltage (VCEO) is 120 V,the emitter to collector voltage (VECO) is 6 V. The following is about its elecrtical characters when TA is 25 . (1): the typical forward voltage (VF) is 1.1 V,the maximum is 1.4 V; (2): the typical terminal capacitance is 60 pF when V is 0 and f is 1 MHz; (3): isolation capacitance is 0.4 pF; (4): the maximum current transfer ratio is 300 %,the typical is 100 %,the minimum is 50 %; (5): the maximum collector to emitter current is 100 nA when VCE is 120 V and IF is 0; (6): the typical rise time is 3 s and fall time is 5 s.