PC410 SHARP | Alldatasheet
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Parameter Symbol Rating Unit Input IF mA Reverse voltage V R V Power dissipation P mW Output V CC V V V iso Operating temperature T opr ˚C Storage temperature T stg ˚C T sol 260 ˚C n Features n Outline Dimensions ( Unit : mm) 1. Hybrid substrate which requires high den- 2. Personal computers, office computers and sity mounting peripheral equipment High level output voltege Low level output current V OH IOL P O - 40 to + 125 mA mW (Ta= 25˚C )n Absolute Maximum Ratings PC410 1. Mini-flat package 2. Ultra-high speed response 3. Isolation voltage between input and output (V iso rms ) Output collector power dissipation 0 to + 70 4. Audio equipment 3. Electronic musical instruments PC410 (tPLH , tPHL : TYP. 50ns at RL = 350Ω ) voltage CMH : TYP. 500V/µ s n Package Specifications *1 Ta = 0 to + 70˚C *4 For 10 seconds. *1 Forward current *2Supply voltage *3 Isolation voltege
6 Vcc
0.2mm or more *3 AC for 1 minute, 40 to 60% RH. Apply the specified voltage between the whole of the *2 For 1 minute MAX. electrode pins on the input side and the whole of the electrode pins on the output side. 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,
1 Anode
3 Cathode
6 ˚ (Input Side) Diameter of reelTape width 12 mm 12 mm Compact, Surface Mount Ultra-high Speed Response OPIC Photocoupler An OPIC consists of a light-detecting element and signal- processing circuit integrated onto a single chip. * “ OPIC ” (Optical IC) is a trademark of the SHARP Corporation.
4 GND
5 V o
: 2 500 V 4. Instantaneous common mode rejection 5. Recognized by UL(No.64380) Model No. Package specifications PC410 PC410T Taping package (Net: 750pcs.) PC410Z Sleeve package (Net: 100pcs.) 2 500 Taping package (Net:3 000pcs.) 370 mm 180 mm C0.4 4.4± 0.2 1.27± 0.25 2.54± 0.25 0.4± 0.1 2.6± 0.20.1± 0.1 3.6± 0.3 5.3± 0.3 0.2± 0.05 0.5+ 0.4 -0.2 7.0+ 0.2 -0.7 V rms
n Electro-optical Characteristics Parameter Symbol Conditions Input Forward voltage V F Reverse current I R Ta = 25˚C, VR =5 V Terminal capacitance C t Output Transfer charac- teristics High level supply current I CCH “H → L ” threshold input current I FHL Isolation resistance R ISO Floating capacitance tPHL tPLH tf tr CM H CM L V CC = 5.5V, IF =0 V CC = 5V, VO = 0.8V, RL = 350Ω Ta = 25˚C, DC500V, 40 to 60% RH Ta = 25˚C, V = 0, f = 1MHz Ta = 25˚C V CC = 5V, IF R L = 350Ω , CL = 15pF Fig. 1 IF =0 V O (MIN. )=2 V IF = 5mA V O (MAX. )= 0.8V Low level output voltage High level output current Low level supply current V OL ICCL IOH Ta = 25˚C, IF = 10mA Ta = 25˚C, V = 0, f = 1MHZ IOL = 13mA, VCC = 5.5V, IF = 5mA V CC =V O = 5.5V, IF V CC = 5.5V, IF = 10mA Note ) All typical values : at Ta = 25˚C, VCC =5 V Each characteristics shall be measured under opaque condition. Ta = 25˚C V CC =5 V R L = 350Ω Fig. 2 V CM = 10V(Peak ) n Recommended Operation Conditions PC410 (Ta= 0 to + 70˚C unless otherwise specified) Connect a by-pass ceramic capacitor (0.01 to 0.1µ F ) between VCC and GND at the position within 1cm from lead pin. Parameter Symbol MIN. MAX. Unit Low level input current I FL 0 250 µ A High level input current I FH 7 15 mA Supply voltage V CC 4.5 5.5 V Fanout (TTL load ) N - 8 - Operating temperature T opr 0 70 ˚C MIN. TYP. MAX. Unit - 1.6 1.9 V -- 1 0 µ A - 60 150 0.6 V - 2 250 µ A -1 3 1 8 m A - 7 15 mA - 2.5 5 mA 5x1 010 1011 - Ω 0.6 pF 50 120 ns- 50 120 -3 0 6 0 -3 0 6 0 100 500 - V/ µ s - 100 - 500 - “H → L ” propagation delay time “L → H ” propagation delay time Fall time Response Rise time CMR time C f 0.4- Instantaneous common mode rejection voltage “ High level output ” Instantaneous common mode rejection voltage “ Low level output ” = 7.5mA pF = 250 m A
Collector power dissipation PC (mW ) Ambient temperature Ta (˚C) 50˚C 25˚C 70˚C 1.0 0.01 0.1 100 Fig. 4 Forward Current vs. Forward Voltage Fig. 3 Collector Power Dissipation vs. Ambient Temperature Forward voltage VF (V ) F (mA ) 350 Ω 47Ω Pulse input AB GL SW 90% 10% 7.5mA 3.75mA 0mA 1.5V 10V IF CL VO *CL includes the probe and wiring capacitance. Fig. 1 Test Circuit for tPHL , tPLH , tr and tf IF VCM IF VO tPHL tPLH VOL trtf VCM VO VO (IF = 0mA ) (IF = 5mA ) VOL 350 Ω CL VO5 Forward current I 0.01µ F0.01µ F when GL SW is A When GL SW is B VO (MIN.) VO (MAX.) 25 50 T a = 0˚C Fig. 2 Test Circuit for Instantaeus Common Mode Rejection Voltage
Fig. 5 High Level Output Current vs. Ambient Temperature Ambient temperature Ta (˚C) 0.2 Low level output voltage V 0.3 0.5 0 25 50 100 0.1 0.4 12.8mA 9.6mA 6.4mA Fig. 6 Low Level Output Voltage vs. Ambient Temperature Ambient temperature Ta (˚C) High level output current IOH ( µ A ) 1k Ω 4k Ω Forward CurrentO (V ) Forward current I O (V ) 100 120 10 15 205 1kΩ 350Ω 1k Ω 4k Ω Forward Current Fig. 8 Propagation Delay Time vs. PHL , tPLH (ns) 100 120 0 25 50 75 100 1kΩ 350Ω 1k Ω 4k Ω Ambient Temperature Fig. 9 Propagation Delay Time vs. Ambient temperature Ta (˚C) OL (V ) F (mA ) PLH (ns)PHL , tPropagation delay time t Propagation delay time t Output voltage V Output voltage V Forward current IF (mA ) Forward current IF (mA ) Fig. 7-a Output Voltage vs. Fig. 7-b Output Voltage vs. Forward Current (Ambient Temp. Characteristics) IF = 250 µ A V CC = 5.5V V O = 5.5V IF = 5mA V CC = 5.5V IO = 16mA R L = 350Ω R L =1 kΩ V CC =5 V T a = 0 to 70˚C R L = 350Ω V CC =5 V T a = 25˚C V CC =5 V T a = 25˚C R L=4 kΩ R L = 350Ω tPLH tPLH tPLH tPHL IF = 7.5mA V CC =5 V R L= 4kΩ R L = 350Ω tPLH tPHL
1k Ω 1k Ω 4k Ω 350 Ω Ambient Temperature Fig.10 Rise Time,Fall Time vs. Rise time, fall time (ns) Ambient temperature Ta (˚C) n Precautions for Use (1) Handle this product the same as with other integrated circuits against static electricity. (2) As for other general cautions, refer to the chapter “ Precautions for Use.” IF =7.5mA tr R L =4 k Ω tr tr tf R L = 350Ω V CC =5 V t,r tf