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PC817 Series Current transfer ratio CTR: MIN. ,VCE=5V) High isola
Top Searches for this datasheetPC817 Series PC817 Series Current transfer ratio CTR: MIN. ,VCE=5V) High isolation voltage between input output Viso 000V Compact dual-in-line package PC817 1-channel type PC827 2-channel type PC837 3-channel type PC847 4-channel type Recognized file E64380 High Density Mounting Type Photocoupler Applications Computer terminals System appliances, measuring instruments Registers, copiers, automatic vending machines Electric home appliances, such heaters, etc. Signal transmission between circuits different potentials impedances Lead forming type type taping reel type type also available. PC817I/PC817P VDE0884 approved type also available option. Outline Dimensions PC817 2.54 0.25 PC817 rank mark Anode mark Internal connection diagram Anode mark Unit PC827 PC817 2.54 0.25 PC817 Internal connection diagram 4.58 7.62 0.5TYP. Anode Cathode Emitter Collector 9.66 7.62 Anode Cathode Emitter Collector 0.5TYP. 0.26 0.26 PC837 Anode mark 2.54 0.25 PC817 PC817 Anode mark Internal connection diagram PC847 2.54 0.25 Internal connection diagram PC817 PC817 PC817 PC817 0.5TYP. PC817 0.5TYP. 14.74 Anode Cathode Emitter Collector 7.62 7.62 19.82 0.26 Emitter Collector 0.26 Anode Cathode absence confirmation device specification sheets, SHARP takes responsibility defects that occur equipment using SHARP's devices, shown catalogs, data books, etc. Contact SHARP order obtain latest version device specification sheets before using SHARP's device." PC817 Series Absolute Maximum Ratings Parameter Forward current Peak forward current Reverse voltage Power dissipation Collector-emitter voltage Emitter-collector voltage Collector current Collector power dissipation Total power dissipation Isolation voltage Operating temperature Storage temperature Soldering temperature Symbol Rating 25°C Unit Input Output Pulse width <=100µs, Duty ratio 0.001 minute seconds Electro-optical Characteristics Parameter Forward voltage Peak forward voltage Reverse current Terminal capacitance Collector dark current Current transfer ratio Collector-emitter saturation voltage Isolation resistance Floating capacitance Cut-off frequency Rise time Response time Fall time Symbol CE(sat) Conditions 20mA 0.5A 1kHz 5mA, 20mA, DC500V, 1MHz 2mA, 2mA, MIN. 1010 TYP. 1011 25°C MAX. Unit Input Output Transfer characteristics Classification table current transfer ratio shown below. Fig. Forward Current Ambient Temperature Model PC817A PC817B PC817C PC817D PC8g7AB PC8g7BC g7CD g7AC PC8g7BD g7AD Rank mark mark Forward current Ambient temperature PC817 Series Fig. Collector Power Dissipation Ambient Temperature Collector power dissipation Fig. Peak Forward Current Duty Ratio Pulse width <=100 25°C Peak forward current Ambient temperature Duty ratio Fig. Current Transfer Ratio Forward Current Current transfer ratio 25°C Fig. Forward Current Forward Voltage Forward current 75°C 50°C 25°C 25°C Forward current Forward voltage Fig. Collector Current Collector-emitter Voltage 30mA Collector current 20mA 25°C MAX. Fig. Relative Current Transfer Ratio Ambient Temperature Relative current transfer ratio 10mA Collector-emitter voltage Ambient temperature PC817 Series Fig. Collector-emitter Saturation Voltage Ambient Temperature 0.16 Collector-emitter saturation voltage CE(sat) Collector dark current 0.14 0.12 0.10 0.08 0.06 0.04 0.02 Ambient temperature (°C) Fig. Collector Dark Current Ambient Temperature 20mA Ambient temperature Fig.10 Response Time Load Resistance Response time Load resistance 25°C Fig.11 Frequency Response Voltage gain 25°C Frequency Test Circuit Response Time Input Output Input Output Fig.12 Collector-emitter Saturation Voltage Forward Current Collector-emitter saturation voltage CE(sat) 25°C 0.5mA Test Circuit Frepuency Response Output Forward current Please refer chapter Precautions Application Circuits NOTICE qThe circuit application examples this publication provided explain representative applications SHARP devices intended guarantee circuit design license intellectual property rights. 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SHARP takes responsibility damage caused improper devices which does meet conditions absolute maximum ratings used specified relevant specification sheet meet following conditions: devices this publication designed general electronic equipment designs such Personal computers Office automation equipment Telecommunication equipment [terminal] Test measurement equipment Industrial control Audio visual equipment Consumer electronics (ii)Measures such fail-safe function redundant design should taken ensure reliability safety when SHARP devices used connection with equipment that requires higher reliability such Transportation control safety equipment (i.e., aircraft, trains, automobiles, etc.) Traffic signals leakage sensor breakers Alarm equipment Various safety devices, etc. (iii)SHARP devices shall used connection with equipment that requires extremely high level reliability safety such Space applications Telecommunication equipment [trunk lines] Nuclear power control equipment Medical other life support equipment (e.g., scuba). qContact SHARP representative advance when intending SHARP devices "specific" applications other than those recommended SHARP when unclear which category mentioned above controls intended use. 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