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PC410 PC410 s Features 1. Mini-flat package 2. Ultra-high speed response ( t PLH , t PHL : TYP. 50ns at R L = 350 ) 3. Isolation voltage between input and output ( Viso : 2 500 V rms ) 4. Instantaneous common mode rejection voltage CM H : TYP. 500V/ s 5. Recognized by UL(No.64380) Compact, Surface Mount Ultra-high Speed Response OPIC Photocoupler s Outline Dimensions ( Unit : mm ) 1.27 0.25 6 5 4 Internal connection diagram 6 5 4 Anode mark 2.54 0.25 4.4 0.2 PC410 1 0.4 0.1 3 s Applications 1. Hybrid substrate which requires high density mounting 2. Personal computers, office computers and peripheral equipment 3. Electronic musical instruments 4. Audio equipment 0.1 0.1 2.6 0.2 1 3.6 0.3 3 0.2 0.05 C0.4 ( Input Side) 0.5 + 0.4 - 0.2 6 1 Anode 3 Cathode 4 GND 5 Vo 6 Vcc 5.3 0.3 7.0 + 0.2 - 0.7 s Package Specifications Model No. PC410 PC410T PC410Z Package specifications Taping package Taping package Sleeve package ( Net:3 000pcs. ) ( Net: 750pcs.) ( Net: 100pcs.) Diameter of reel 370 mm 180 mm Tape width 12 mm 12 mm - * " OPIC " ( Optical IC ) is a trademark of the SHARP Corporation. An OPIC consists of a light-detecting element and signalprocessing circuit integrated onto a single chip. s Absolute Maximum Ratings Parameter *1 Forward current Input Reverse voltage Power dissipation *2 Supply voltage High level output voltege Output Low level output current Output collector power dissipation *3 Isolation voltege Operating temperature Storage temperature *4 Soldering temperature Symbol IF VR P V CC V OH IOL PO V iso T opr T stg T sol ( Ta = 25C ) Rating 20 5 40 7 7 50 85 2 500 0 to + 70 - 40 to + 125 260 Unit mA V mW V V mA mW V rms C C C Soldering area *1 Ta = 0 to + 70C *2 For 1 minute MAX. *3 AC for 1 minute, 40 to 60% RH. Apply the specified voltage between the whole of the electrode pins on the input side and the whole of the electrode pins on the output side. *4 For 10 seconds. " 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, data books, etc. Contact SHARP in order to obtain the latest version of the device specification sheets before using any SHARP's device." 0.2mm or more PC410 s Electro-optical Characteristics Parameter Forward voltage Reverse current Terminal capacitance Low level output voltage High level output current Low level supply current High level supply current " HL " threshold input current Isolation resistance Floating capacitance " HL " propagation delay time " LH " propagation delay time Fall time Rise time Instantaneous common mode rejection voltage " High level output " Instantaneous common mode rejection voltage " Low level output " Response time CMR Symbol VF IR Ct V OL IOH ICCL ICCH I FHL R ISO Cf t PHL t PLH tf tr CMH ( Ta = 0 to + 70C unless otherwise specified ) Conditions Ta = 25C, I F = 10mA Ta = 25C, V R = 5V Ta = 25C, V = 0, f = 1MH Z IOL = 13mA, VCC = 5.5V, I F = 5mA VCC = VO = 5.5V, I F = 250 m A VCC = 5.5V, I F = 10mA VCC = 5.5V, I F = 0 VCC = 5V, V O = 0.8V, R L = 350 Ta = 25C, DC500V, 40 to 60% RH Ta = 25C, V = 0, f = 1MHz Ta = 25C VCC = 5V, I F = 7.5mA RL = 350 , C L = 15pF Fig. 1 IF = 0 Ta = 25C VO( MIN. ) = 2V VCC = 5V VCM = 10V ( Peak ) IF = 5mA RL = 350 VO( MAX. ) = 0.8V Fig. 2 30 30 60 60 Input Output MIN. 5 x 1010 - TYP. 1.6 60 0.4 2 13 7 2.5 1011 0.6 50 50 MAX. 1.9 10 150 0.6 250 18 15 5 120 120 Unit V A pF V A mA mA mA pF ns Transfer characteristics 100 500 V/ s CML - 100 - 500 - Note ) All typical values : at Ta = 25C, VCC = 5V Each characteristics shall be measured under opaque condition. s Recommended Operation Conditions Parameter Low level input current High level input current Supply voltage Fanout ( TTL load ) Operating temperature Symbol I FL I FH V CC N T opr MIN. 0 7 4.5 0 MAX. 250 15 5.5 8 70 Unit A mA V C Connect a by-pass ceramic capacitor ( 0.01 to 0.1 F ) between V CC and GND at the position within 1cm from lead pin. PC410 Fig. 1 Test Circuit for t PHL, t PLH, t r and t f 7.5mA IF Pulse input 1 6 5V 350 0.01 F 5 VO 90% CL VO 10% 1.5V VOL 5V IF t PHL t PLH 3.75mA 0mA 3 47 4 *C L includes the probe and wiring capacitance. tf tr Fig. 2 Test Circuit for Instantaeus Common Mode Rejection Voltage GL SW IF 1 6 5V 350 0.01 F 10V B A 5 VO CL VCM 0V 3 VCM + - 4 when GL SW is A VO (IF = 0mA) 5V VO(MIN.) VO(MAX.) VOL When GL SW is B VO (IF = 5mA) Fig. 3 Collector Power Dissipation vs. Ambient Temperature 100 Collector power dissipation P C ( mW ) 90 85 80 70 60 50 40 30 Fig. 4 Forward Current vs. Forward Voltage 100 Forward current I F ( mA ) 10 1 T a = 0C 25C 50C 70C 0.1 20 10 0 0 25 50 70 75 a 100 0.01 1.0 1.2 1.4 1.6 1.8 2.0 2.2 Ambient temperature T ( C ) Forward voltage V F ( V ) PC410 Fig. 5 High Level Output Current vs. Ambient Temperature 4 High level output current I OH ( A ) I F = 250 A VCC = 5.5V VO = 5.5V Fig. 6 Low Level Output Voltage vs. Ambient Temperature 0.5 I F = 5mA Low level output voltage V OL ( V ) VCC = 5.5V 0.4 I O = 16mA 0.3 12.8mA 9.6mA 6.4mA 3 2 1 0.2 0 0 25 50 Ambient temperature T a 0.1 75 ( C ) 100 0 25 50 75 Ambient temperature T a ( C ) 100 Fig. 7-a Output Voltage vs. Forward Current 6 VCC = 5V T a = 25C Fig. 7-b Output Voltage vs. Forward Current ( Ambient Temp. Characteristics ) 6 VCC = 5V T a = 0 to 70C 5 Output voltage VO ( V ) 5 Output voltage VO ( V ) 4 RL = 350 3 1k 4k 2 4 RL = 350 3 RL = 1k 2 1 0 0 1 2 3 Forward current I F 1 0 4 ( mA ) 5 6 0 1 2 3 4 Forward current I F ( mA ) 5 6 Fig. 8 Propagation Delay Time vs. Forward Current 120 ( ns ) VCC = 5V T a = 25C t PLH t PLH k RL= 4 1k 350 Fig. 9 Propagation Delay Time vs. Ambient Temperature 120 ( ns ) I F = 7.5mA VCC = 5V 100 PLH Propagation delay time t PHL , t Propagation delay time t PHL , t PLH 100 RL= 4k 1k 350 t PLH 80 t PLH 80 60 t PHL 40 RL = 350 1k 4k 5 10 Forward current I 15 ( mA ) 20 60 t PHL RL = 350 40 1k 4k 20 0 25 50 75 Ambient temperature T a ( C ) 100 20 0 F PC410 Fig.10 Rise Time,Fall Time vs. Ambient Temperature 320 280 Rise time, fall time t r , t f (ns) 240 200 160 120 80 40 0 tr tr 1k 350 tf RL = 350 1k 4k 75 ( C ) 100 tr RL = 4k I F =7.5mA VCC = 5V 25 50 Ambient temperature T a s 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." |
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