Detector center. (Ta= 25 C) ( R0.2 )
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1 IS IS High Speed Response Type OPIC Light Detector Features. High speed response ( : TYP.ns ). Uses a pattern to allow for possible positional deviation of the semiconductor laser spot.. Compact, mini-flat package Applications. Laser beam printers Absolute Maximum Ratings Parameter * Supply voltage High level output voltage Low level output current Operating temperature Storage temperature * Soldering temperature Power dissipation R O terminal power dissipation * Incident light intensity * Radiant intensity * For minute * For seconds at the position shown in the following drawing. * Maximum allowable incident light intensity and radiant intensity of laser beam (λ = 78nm ) to the device. Soldering area Electro-optical Characteristics Symbol Rating Unit V CC -. to + 7 V V OH 7 V IOL ma T opr - to + 8 C T stg - to + 8 C Tsol C P mw P RO P I Ee Soldering area (Ta= C) Detector center.±. Internal connection diagram * E VHL, E VHL represent illuminance by CIE standard light source A (tungsten lamp) when output goes from high to low. mw mw WB Outline Dimensions ( R. ) ±. (Unit : mm ) Gain resistor(ro) (Outer mounting ) R O V O GND V CC * 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. ( VCC = V, Ta= C) Parameter Symbol Conditions MIN. TYP. MAX. Unit High level output voltage V OH R O=kΩ, E V= V Low level output voltage V OL IOL=mA, E V= lx -.. V High level supply current I CCH R O=kΩ, E V= -.. ma Low level supply current ICCL R O=kΩ, E V= lx -.8. ma * High Low threshold illuminance E VHL R O=kΩ 7 lx * High Low threshold illuminance E VHL R O=.kΩ lx High Low threshold incident light intensity P IHL RO=.kΩ, l =78nm - - µw High Low propagation delay time - ns CL=pF, Duty=: Response Low High propagation delay time P I=.mW, λ =78nm - ns time Rise time t r RO=.kΩ, R L=Ω - ns Fall time tf - ns ± V REF. ± ± ±.. ±.. ±. 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.
2 IS Recommended Operating Conditions Parameter Symbol MIN. MAX. Unit Operating supply voltage V cc.. V Operating temperature T opr C Incident light intentity (λ = 78nm ) P I -. mw In order to stabilize power supply line, connect a by-pass capacitor of.µ F between Vcc and GND near the device. Fig. Total Power Dissipation vs. Fig. Low Level Output Voltage vs. Low Level Output Current Total power dissipation P ( mw ) Low level output voltage VOL (V) Low level output Current I OL ( ma ) Fig. Low Level Output Voltage vs. Low level output voltage VOL ( ma ).. ma.... I OL = ma Fig. Supply Current vs. Supply Voltage Supply current I CC (ma) I CCL I CCH - 7 Supply voltage V CC (V) 7 8
3 IS Fig. Supply Current vs. V CC =.V Fig. High Low Threshold Incident Light Intensity vs. Gain Resistanse Supply current I CC ( ma ) I CCH I CCL High Low threshold incident light intensity P IHL ( µ W) Gain resistance R O (k Ω) Fig. 7 High Low Threshold Incident Light Intensity vs. V CC =.V R O =.kω Fig. 8 High Low Threshold Incident Light Intensity vs. Supply Voltage R O =.kω High Low threshold incident light intensity P IHL ( µ W) 8 High Low threshold incident light intensity PIHL ( µ W) Supply voltage V CC ( V) Fig. 9 Propagation Delay Time vs. Incident Light Intensity PLH, (ns ) Propagation delay time t R O V CC =.V R L = Ω R O : Dotted line..... Incident light intensity P I (mw ). Fig. Propagation Delay Time vs. Gain Resistance PLH, (ns ) Propagation delay time t Gain resistance R O (kω) V CC = V, P I =.mw R L = kω,
4 IS Fig. Propagation Delay Time vs. Propagation delay time, (ns ) V CC = V, R O =.KΩ R L = Ω - 7 Fig. Rise Time, Fall Time vs. Load Resistance r, t f (ns ) Rise time, fall time t t f Load resistance R L (K Ω ) t r Fig. Rise Time, Fall Time vs. Rise time, fall time t r, t f (ns ) 8 V CC = V, R O =.KΩ R L = Ω t r t f Fig. Spectral Sensitivity Relative sensitivity (% ) Wavelength λ (nm )
5 IS Test Circuit for Response Time Constant current V CC = V. kω Ω Laser diode V ref. µ F CL Output.mW Incident light intensity.mw mw 9% Output %.V t f t r Please refer to the chapter Precautions for Use.
6 Application Circuits NOTICE The circuit application examples in this publication are provided to explain representative applications of SHARP devices and are not intended to guarantee any circuit design or license any intellectual property rights. SHARP takes no responsibility for any problems related to any intellectual property right of a third party resulting from the use of SHARP's devices. Contact SHARP in order to obtain the latest device specification sheets before using any SHARP device. SHARP reserves the right to make changes in the specifications, characteristics, data, materials, structure, and other contents described herein at any time without notice in order to improve design or reliability. Manufacturing locations are also subject to change without notice. Observe the following points when using any devices in this publication. SHARP takes no responsibility for damage caused by improper use of the devices which does not meet the conditions and absolute maximum ratings to be used specified in the relevant specification sheet nor meet the following conditions: (i) The devices in this publication are designed for use in general electronic equipment designs such as: --- Personal computers --- Office automation equipment --- Telecommunication equipment [terminal] --- Test and measurement equipment --- Industrial control --- Audio visual equipment --- Consumer electronics (ii)measures such as fail-safe function and redundant design should be taken to ensure reliability and safety when SHARP devices are used for or in connection with equipment that requires higher reliability such as: --- Transportation control and safety equipment (i.e., aircraft, trains, automobiles, etc.) --- Traffic signals --- Gas leakage sensor breakers --- Alarm equipment --- Various safety devices, etc. (iii)sharp devices shall not be used for or in connection with equipment that requires an extremely high level of reliability and safety such as: --- Space applications --- Telecommunication equipment [trunk lines] --- Nuclear power control equipment --- Medical and other life support equipment (e.g., scuba). Contact a SHARP representative in advance when intending to use SHARP devices for any "specific" applications other than those recommended by SHARP or when it is unclear which category mentioned above controls the intended use. If the SHARP devices listed in this publication fall within the scope of strategic products described in the Foreign Exchange and Foreign Trade Control Law of Japan, it is necessary to obtain approval to export such SHARP devices. This publication is the proprietary product of SHARP and is copyrighted, with all rights reserved. Under the copyright laws, no part of this publication may be reproduced or transmitted in any form or by any means, electronic or mechanical, for any purpose, in whole or in part, without the express written permission of SHARP. Express written permission is also required before any use of this publication may be made by a third party. Contact and consult with a SHARP representative if there are any questions about the contents of this publication.
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