PC417 SHARP | Alldatasheet
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Technical content
n Features n Outline Dimensions (Unit : mm) 1. Hybrid substrate which requires high den- 2. Personal computers, office computers and sity mounting peripheral equipment (Ta= 25˚C )n Absolute Maximum Ratings 1. Mini-flat package 2. Ultra-high speed response 3. Isolation voltage between input and output (V iso rms ) PC417 (tPHL , tPLH : TYP. 0.3µ s at RL = 1.9kΩ ) PC417 3. Audio equipment Parameter Symbol Rating Unit Input IF mA Reverse voltage V R V Pm W Output V CC V V mW V iso Operating temperature T opr ˚C Storage temperature T stg ˚C T sol 260 ˚C P O P tot - 40 to + 125 mA mW Power dissipation Output current Power dissipation Total power dissipation Isolation voltege V O IO 100 100 - 40 to + 100 - 0.5 to + 15 - 0.5 to + 15 *1 Ta = 0 to + 70˚C *2 For 1 minute max. *4 For 10 seconds. n Package Specifications internal connection diagram Anode mark PC417 Soldering area 0.2mm or more 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, side and the whole of the electrode pins on the output side.
1 Anode
3 Cathode
(Input Side) Model No. Diameter of reel Tape width PC417 φ 370mm 12mm PC417T φ 178mm 12mm PC417Z -- 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
tion voltage (CM H : TYP. 1kV/µ s) Output voltage *1 Forward current *2Supply voltage *4 Soldering temperature : 2 500 V 4. High instantaneous common mode rejec- 5. Recognized by UL(No.64380) Package specifications Taping package (Net: 750pcs.) Sleeve package (Net: 100pcs.) Taping package (Net:3 000pcs.) 2 500 *3 40 to 60% RH, For AC 1 minute, Apply the specified voltage between the whole of the electrode pins on the input C0.4 V rms
5 V O
6 V CC
0.5+ 0.4 -0.2 7.0+ 0.2 -0.7 0.2± 0.05 5.3± 0.3 1.27± 0.254.4± 0.2 2.5± 0.25 0.4± 0.1 3.6± 0.3 2.6± 0.20.1± 0.1
n Electro-optical Characteristics Parameter Symbol Conditions MIN. TYP. MAX. Unit Input Forward voltage V F - 1.7 1.95 V Reverse current I R -- 1 0 µ A Terminal capacitance C t - 60 250 Output Transfer charac- teristics High level output IOH (1) current I OH (2) IOH (3) High level supply ICCH (1) current ICCH (2) ICCL V OL voltage Current transfer ratio CTR “H → L” propagation delay tPHL time “L → H” propagation delay tPLH time Instantaneous common CM Hmode rejection voltage “ High level output” Instantaneous common CM Lmode rejection voltage “ Low level output” Isolation resistance R ISO Floating capacitance C f IF =0, VCC =5.5V V O =5.5V IF =0, VCC IF =0, VCC IF =16mA, V CC =15V IF =16mA, V CC =4.5V IF =16mA, V CC =4.5V V O =0.4V,*5 IF =16mA, V CC =5V R L =1.9kΩ IF =0, RL =1.9kΩ V CM =10V P-P , V CC =5V IF =16mA, R L =1.9kΩ V CM =10V P-P , V CC =5V DC500V, 40 to 60% RH - 3 500 nA - - 1.0 µ A-- 5 0 - 200 - µ A - - 0.4 V 19 - - % 0.3 0.8 µ s - 0.3 1.2 - 1 000 - V/ µ s - - 1 000 - V/ µ s 5x1 010 1011 - Ω 0.6 1.0 pF IF = 16mA V R =5 V V F = 0, f = 1MHZ PC417 (Ta= 25˚C ) *6 Test circuit for propagation delay time is shown in the next page. Each characteristics shall be measured under opaque condition. *7 Test circuit for instantaneous common mode rejection voltage is shown in the next page. Low level supply Low level output current IO =2.4mA *5 IF = 0, VCC = 15V, VO = OPEN *5 V=0V, f=1MHz *5 Temperature range : Ta = 0 to 70˚C V O =OPEN *5 =15V, VO =OPEN IF =0, VCC =15V, VO =15V *5 =15V, VO =15V pF
µ F 10 µ s 100 Ω 0.01 RL VO VCC Pulse input Pulse width Duty radio monitor I F IF = 5V CL = 15pF 1.5V VOL VO I F 1.5V 1 6 VCM RL VCCIF A B VFF VO = 5V 0.8V CM H VO VOCM L VCM 0V tr 10V 10% 90% 10% VOL IF = 0mA IF = 16mA *6 Test Circuit for Propagation Delay Time *7 Test Circuit for Instantaneous Common Mode Rejection Voltage 0.01µ F 90% when GLSW is A when GLSW is B t f SW tPHL tPLH - 40 0 25 50 75 100 125 Ambient Temperature Ambient temperature Ta (˚C ) Fig. 1 Forward Current vs. 120 P 0 25 50 75 100 125 100 Fig. 2 Power Dissipation vs. Ambient Temperature P O Power dissipation P, PO (mW ) Ambient temperature Ta (˚C ) - 40 Forward Current IF (mA )
Relative current transfer ratio (% ) Ambient Temperature Ambient temperature Ta (˚C) 50˚C 25˚C 70˚C 1.0 0.01 F (mA ) 0.1 100 Forward Voltage Forward voltage VF (V ) Dotted line shows 4 6 8 10 12 14 16 18 20 pulse characteristics 20mA 15mA 10mA 5mA Output current IO (mA ) Output voltage VO (V ) 0.1 CTR = 100% at 100 150 1 10 100 Forward Current Forward current IF (mA ) 200 400 600 800 - 60 - 20 20 60 100 80400-4 0 Ambient Temperature Ambient temperature Ta (˚C) High level output current IOH - 60 - 40 - 20 0 20 100 806040 Ambient Temperature Ambient temperature Ta (˚C) PHL , tPLH (ns) Forward current IPropagation delay time t 10 -1 1 10 -1 0 10 -9 10 -8 10 -7 10 -6 10 -5 (A ) Relative current transfer ratio (% ) Fig. 3 Forward Current vs. Fig. 4 Output Current vs. Output Voltage Fig. 5 Relative Current Transfer Ratio vs. Fig. 6 Relative Current Transfer Ratio vs. Fig. 7 Propagation Delay Time vs. Fig. 8 High Level Output Current vs. T a = 0˚C V CC =5 V T a = 25˚C IF = 25mA -6 0 -4 0 -2 0 CTR = 100% at Ta = 25˚C IF = 16mA V O = 0.4V V CC =5 V V CC =5 V V O = 0.4V T a = 25˚C IF = 16mA IF = 16mA V CC =5 V R L = 1.9kΩ tPHL tPLH V CC =V O =5 V
Voltage gain Av (dB ) Frequency f (MHz ) -2 0 -1 5 -1 0 -2 5 -3 0 0.1 0.2 0.5 1 2 5 10 220 Ω 470 Ω 1k Ω 100Ω 15V VO 560Ω AC Input 20kΩ RL 1.6V DC 0.25VP - PAC Test Circuit for Frequency Response (1) It is recommended that a by-pass capacitor of more than 0.01µ F be added between VCC and GND near the device in order to stabilize power supply line. (2) Transistor of detector side in bipolar configuration is apt to be affected by static electricity for its minute design. When handling them, general counterplan against static electricity should be taken to avoid breakdown of devices or degradation of characteristics. n Precautions for Use R L = 100Ω IF = 16mA T a = 25˚C (3) As for other general cautions, refer to the chapter “ Precautions for Use ” Fig. 9 Frequency Response