PC715V SHARP | Alldatasheet
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- High current transfer ratio 2. High isolation voltage between input and n Applications 1. System appliances, measuring instruments 2. Copiers, automatic vending machines 3. Signal transmission between circuits of *3 For 10 seconds Internal connection diagram PC715VAnode mark θθ (CTR : MIN. 600% at IF = 1mA, V CE =2 V) output (V iso n Outline Dimensions ( Unit : mm) n Absolute Maximum Ratings (Ta= 25˚C ) 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 80 mA Collector power dissipation P C 150 mW Total power dissipation P tot 170 mW *2Isolation voltage V iso Operating temperature T opr - 25 to + 100 ˚C Storage temperature T stg - 40 to + 125 ˚C *3Soldering temperature T sol 260 ˚C *1 Pulse width <=100µs, Duty ratio : 0.001 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, 123 12 3 65 4 hh TUV (VDE0884 ) approved type is also available as an option.
1 Anode
2 Cathode
3 N C
4 Emitter
5 Collector
6 N C
- Recognized by UL, file No. E64380 different potentials and impedances 5 000 *2 40 to 60% RH, AC for 1 minutes h Lead forming type (I type) and taping reel type (P type) are also available. (PC715VI/PC715VP ) : 5 000Vrms ) V rms θ = 0 to 13˚ 6.5± 0.5 1.2± 0.30.9± 0.2 7.12± 0.5 3.5± 0.53.7± 0.5 0.5TYP. 0.5± 0.1 2.54± 0.25 3.35± 0.5 0.26± 0.1 7.62± 0.3
n Electro-optical Characteristics (Ta= 25˚C ) -2 5 0 25 50 75 100 125 Fig. 1 Forward Current vs. Ambient Temperature Ambient temperature Ta (˚C) Duty ratio Pulse width <=100µ s 100 200 500 210 -3 10 -25 2 10 -15 2 5 Fig. 3 Peak Forward Current vs. Duty Ratio Peak forward current IFM (mA ) Fig. 4 Forward Current vs. Forward Voltage Forward voltage VF (V ) 0 125 100 200 150 25 50 75 100 Ambient Temperature -2 5 Fig. 2 Collector Power Dissipation vs. Forward current IF (mA ) Collector power dissipation PC (mW )Forward current IF (mA ) Parameter Symbol Conditions MIN. TYP. MAX. Unit Input V F IF = 10mA - 1.2 1.4 V V FM IFM = 0.5A - - 3.0 V IR V R =4 V - 1 0 µ A C t V = 0, f = 1kHz - 30 250 pF Output Collector dark current I CEO V CE = 10V, IF =0 - - 1 0 -6 A Transfer charac- teristics Current transfer ratio CTR I F = 1mA, V CE = 2V 600 % Collector-emitter saturation voltage VCE (sat) IF = 20mA, IC = 5mA - - 1.0 V Isolation resistance R ISO 5x1 0 10 1011 - Ω Floating capacitance C f V = 0, f = 1MHz - 0.6 1.0 pF Cut-off frequency f C V CE = 2V, IC = 2mA, R L - 6 - kHz Response time Rise time Fall time tr tf V CE = 2V, IC = 10mA, R L = 100Ω - 60 250 µ s - 53 250 µ s Ambient temperature Ta (˚C) Forward voltage Peak forward voltage Reverse current Terminal capacitance DC500V, 40 to 60% RH 1 600 7 500 = 100Ω , - 3dB 50˚C 25˚C 0˚C 100 200 500 - 25˚C T a= 75˚C T a= 25˚C 10 000 5 000 2 000 1 000
0.1 Current transfer ratio CTR (% ) 400 800 600 200 0.2 0.5 1 2 5 10 Forward current IF (mA ) -2 5 250 50 75 10 -1 0 100 10 -9 10 -8 10 -7 10 -6 10 -5 10 -1 1 Ambient Temperature Collector current IC (mA) 14 0.9mA 0.8mA 0.7mA 0.6mA 0.5mA 0.4mA 0.3mA 0.2mA0.1mA 12345 100 5mA 2mA 1mA Collector-emitter Voltage 0.2 -2 5 0.4 0.6 0.8 1.0 100 150 Relative current transfer ratio (% ) Ambient Temperature Fig. 5 Current Transfer Ratio vs. Forward Current Collector-emitter voltage VCE Collector current IC (mA ) Collector-emitter voltage VCE (V ) Ambient temperature Ta (˚C) Collector emitter saturation voltage VCE (sat) (V ) Fig. 9 Collector Dark Current vs. Collector dark current ICEO (A ) Ambient temperature Ta (˚C) vs. Ambient Temperature Collector-emitter Voltage (MAX. ) Ambient temperature Ta (˚C) Fig. 6-a Collector Current vs. Fig. 6-b Collector Current vs. V CE =2 V (V ) P C IF = 1mA IF = 1mA V CE =2 V -2 5 IF = 20mA IC = 5mA V CE = 10V 123456789 1 0 1 1 1 2 1 3 0 2 55 07 5 1 0 0 0 2 55 07 5 1 0 0 T a = 25˚C (T a = 25˚C) T a = 25˚C IF = 10mA P C ( MAX.) 2 000 1 800 1 600 1 400 1 200 1 000 Fig. 7 Relative Current Transfer Ratio vs. Fig. 8 Collector-emitter Saturation Voltage
Frequency f (kHz ) -2 0 0.05 0.1 0.2 0.5 -1 0 2010521 50 1k Ω 100 Ω 100 PC715V Fig.11 Frequency Response Voltage gain Av (dB ) Response time (µ s) 0.1 1 10 100 10 2 10 3 Test Circuit for Response Time VCC trtr ts 90% 10% td Output Input RLInput Output RD VCC RL OutputRD Test Circuit for Frepuency Response V CE =2 V IC = 10mA Ta = 25˚C tf tr td ts R L = 10kΩ V CE = 2V IC = 2mA Ta = 25˚C Please refer to the chapter “ Precautions for Use ” . Fig.10 Response Time vs. Load Resistance Load resistance RL (k Ω ) l