PC817A SHARP | Alldatasheet
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High Density Mounting Type Photocoupler n Features 1. Current transfer ratio 2. High isolation voltage between input and 3. Compact dual-in-line package n Applications 1. Computer terminals 2. System appliances, measuring instruments 3. Registers, copiers, automatic vending 4. Electric home appliances, such as fan output (V iso machines heaters, etc. n Outline Dimensions ( Unit : mm) data books, etc. Contact SHARP in order to obtain the latest version of the device specification sheets before using any SHARP's device.” “ In the absence of confirmation by device specification sheets, SHARP takes no responsibility for any defects that occur in equipment using any of SHARP's devices, shown in catalogs, 4. Recognized by UL, file No. E64380 θθ PC847 diagram Internal connection PC817 Anode mark PC817 PC817 PC817 PC817 PC817 Anode mark PC817 Internal connection diagram PC837 PC827 PC817 PC817 PC817 PC817 θθ
1 Anode
2 Cathode
3 Emitter
4 Collector
θ = 0 to 13˚ 1 2 34 5678 12 34 5678 1 3 Anode 2 4 Cathode 5 7 Emitter 6 8 Collector Anode mark θ θ θ= 0 to 13˚ 1 2 34 56 7 8
1357 Anode
2468 Cathode
θ θ θ = 0 to 13˚ 1 2 34 56 789 12 34 56 789
135 Anode
246 Cathode
8 Collector
θ = 0 to 13˚ 9 Emitter Collector Internal connection diagram Internal connection diagram PC817 : 1-channel type PC827 : 2-channel type PC837 : 3-channel type PC847 : 4-channel type 5. Signal transmission between circuits of different potentials and impedances Anode mark hh TUV (VDE0884 ) approved type is also available as an option. (CTR: MIN. 50% at IF = 5mA ,VCE =5V) CTR rank mark h Lead forming type (I type) and taping reel type (P type) are also available. (PC817I/PC817P ) : 5 000Vrms ) 4.58± 0.5 3.5± 0.53.0± 0.5 0.5± 0.1 7.62± 0.3 0.26± 0.1 1.2± 0.3 0.9± 0.2 6.5± 0.5 2.54± 0.25 2.7± 0.5 0.5TYP. 2.54± 0.25 6.5± 0.5 0.9± 0.2 1.2± 0.3 9.66± 0.5 3.5± 0.53.0± 0.5 0.5TYP. 0.5± 0.1 2.7± 0.5 0.26± 0.1 7.62± 0.3 2.54± 0.25 6.5± 0.5 0.9± 0.2 1.2± 0.3 19.82± 0.5 3.5± 0.53.0± 0.5 0.5TYP. 0.5± 0.1 2.7± 0.5 0.26± 0.1 7.62± 0.3 2.54± 0.25 6.5± 0.5 0.9± 0.2 1.2± 0.3 14.74± 0.5 0.5TYP. 3.5± 0.53.0± 0.5 0.5± 0.1 2.7± 0.2 0.26± 0.1 7.62± 0.3 111213141516 111213141516 23 45 6 7 8
*1 Pulse width <=100µs, Duty ratio : 0.001 *3 For 10 seconds Parameter Symbol Rating Unit Input Forward current I F 50 mA *1Peak forward current I FM 1A Reverse voltage V R 6V Power dissipation P 70 mW Output Collector-emitter voltage V CEO 35 V Emitter-collector voltage V ECO 6V Collector current I C 50 mA Collector power dissipation P C 150 mW Total power dissipation P tot 200 mW *2Isolation voltage V iso Operating temperature T opr - 30 to + 100 ˚C Storage temperature T stg - 55 to + 125 ˚C *3Soldering temperature T sol 260 ˚C *4 Classification table of current transfer ratio is shown below. PC817 Series n Absolute Maximum Ratings n Electro-optical Characteristics Model No. CTR (% ) PC817A PC817B PC817C PC817D Rank mark A B C D A or B B or C C or D A, B or C B, C or D A, B, C or D 80 to 160 130 to 260 200 to 400 300 to 600 80 to 260 130 to 400 200 to 600 80 to 400 130 to 600 80 to 600 50 to 600 A, B, C, D or No mark -2 5 0 25 50 75 100 125 Fig. 1 Forward Current vs. Ambient Temperature Ambient temperature Ta (˚C) (Ta= 25˚C ) (Ta= 25˚C ) Forward current IF (mA ) 5 000 *2 40 to 60% RH, AC for 1 minute Parameter Symbol Conditions MIN. TYP. MAX. Unit Input Forward voltage V F IF = 20mA - 1.2 1.4 V Peak forward voltage V FM IFM = 0.5A - - 3.0 V Reverse current I R V R =4 V - - 1 0 µ A Terminal capacitance C t V = 0, f = 1kHz - 30 250 pF Output Collector dark current I CEO V CE = 20V - - 10 -7 A Transfer charac- teristics *4Current transfer ratio CTR IF = 5mA, V CE = 5V 50 - 600 % Collector-emitter saturation voltage V CE (sat) IF = 20mA, IC = 1mA - 0.1 0.2 V Isolation resistance R ISO DC500V, 40 to 60% RH 5 x 10 10 1011 - Ω Floating capacitance C f V = 0, f = 1MHz - 0.6 1.0 pF Cut-off frequency f c V CE = 5V, IC = 2mA, R L = 100Ω , - 3dB - 80 - kHz Response time Rise time t r V CE = 2V, IC = 2mA, R L = 100Ω -4 1 8 µ s -3 1 8 µ sFall time t f V rms PC8 h 7AB PC8 h 7BC PC8 h 7CD PC8 h 7AC PC8 h 7BD PC8 h 7AD PC8 h 7 h : 1 or 2 or 3 or 4
Pulse width <=100µ s 100 200 500 210 -3 10 -25 2 10 -15 2 5 Fig. 3 Peak Forward Current vs. Duty Ratio Current transfer ratio CTR (% ) 200 2 5 10 20 50 160 120 100 140 180 100 150 0 2 55 07 5 1 0 0 Relative current transfer ratio (% ) Fig. 7 Relative Current Transfer Ratio vs. Ambient Temperature 23 45 6789 20mA 10mA 5mA Fig. 6 Collector Current vs. Collector-emitter Voltage Peak forward current IFM (mA ) Fig. 4 Current Transfer Ratio vs. Forward Current Forward current IF (mA ) Collector current IC (mA ) Collector-emitter voltage VCE (V ) Ambient temperature Ta (˚C) 0 125 100 200 150 25 50 75 100 Ambient TemperatureC (mW ) -3 0 Fig. 2 Collector Power Dissipation vs. PC817 Series a (˚C) Collector power dissipation P Ambient temperature T V CE =5 V IF = 30mA P C (MAX. ) IF = 5mA V CE =5 V Fig. 5 Forward Current vs. Forward Voltage 10 000 5 000 2 000 1 000 T a = 25˚C T a = 25˚C 50˚C 25˚C 0˚C 100 200 500 - 25˚C T a= 75˚C Forward current IF (mA ) Forward voltage VF (V ) -3 0 T a= 25˚C
0.02 - 25 0 25 50 75 100 0.04 0.06 0.08 0.10 0.12 0.14 0.16 Fig. 8 Collector-emitter Saturation Voltage vs. Ambient Temperature 250 50 75 100 Collector dark current ICEO (A ) Fig.11 Frequency Response Frequency f (kHz ) -20 0.5 1 2 5 -10 200100502010 500 1k Ω 100 Ω Fig. 9 Collector Dark Current vs. CE (sat) (V ) Ambient TemperatureVoltage gain Av (dB ) 0.2 0.1 0.5 Response time (µ s) 0.1 1 10 100 200 500 L (k Ω ) Collector-emitter saturation voltage VCE (sat) (V ) Forward current IF (mA ) 51 0 7mA Fig.12 Collector-emitter Saturation Voltage vs. Forward Current PC817 Series Test Circuit for Response Time VCC ttr ts 90% 10% td Output Input RLInput OutputRD VCC RL OutputRD Test Circuit for Frepuency Response Collector-emitter saturation voltage V Ambient temperature Ta (˚C) f IF = 20mA IC = 1mA 10 -1 1 10 -1 0 10 -9 10 -8 10 -7 10 -6 10 -5 -2 5 V CE = 20V Ambient temperature Ta (˚C) tr tf ts td V CE =2 V IC = 2mA Ta = 25˚C R L = 10k Ω V CE =2 V 1mA 3mA 5mA T a = 25˚C IC = 2mA IC = 0.5mA T a = 25˚C Please refer to the chapter “ Precautions for Use ” Fig.10 Response Time vs. Load Resistance Load resistance R l