2.54 Lead base GP1FA501RZ. Amp. Amp.

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1 GPFA50TZ/ Features. Shutter system unnecessary to remove the protection cap. Uni-diretional data tramission using plastic optical fiber cable. The optical receiver can be directly connectable the TTL, due to the use of OPIC Applicatio. DD players. CD players. MD players Absolute Maximum Ratings (T a =5 C) Parameter Symbol Rating Unit Supply voltage 0.5 to +7.0 Output current () * For 5s ( times or less) I OH I OL 4 (Source current) 4 (Sink current) ma voltage (GPFA50TZ) 0.5 to +0.5 Operating temperature T opr 0 to +70 C Storage temperature T stg 0 to +80 C *Soldering temperature T sol 60 C Shutter System Fiber Optic Tramitter/ Receiver Outline Dimeio.54 Lead base Lead base OPIC light detector Internal equivalent circuit Comp & output circuit (Unit : mm) φ.5 fixing hole φ4 GPFA50TZ LED Drive IC 6 4 ±0.5 Drive IC : Silicon 6 Recommended drilling as viewd from the soldering face (Upecified tolerance : ±0.mm). ± φ ±0.05 -φ Upecified tolerance : ±0.mm OPIC (Optical IC) is a trademark of the SHARP Corporation. An OPIC coists of a light-detecting element and signalprocessing circuit integrated onto a single chip. Notice Internet In the absence of confirmation by device specification sheets, SHARP takes no respoibility for any defects that may occur in equipment using any SHARP devices shown in catalogs, data books, etc. Contact SHARP in order to obtain the latest device specification sheets before using any SHARP device. Internet address for Electronic Components Group

2 Recommended Operating Conditio (GPFA50TZ) (T a =5 C) Parameter Symbol MIN. TYP. MAX. Unit Operating supply voltage * Operating trafer rate T 8 Mb/s * NRZ signal duty Recommended Operating Conditio () (T a =5 C) Parameter Symbol MIN. TYP. MAX. Unit Operating supply voltage **4 Operating trafer rate T 0. 8 Mb/s *5 optical power level P C dbm * The above operating trafer rate is the value when NRZ signal, "00.." continuous signal of duty is tramitted *4 The output (H/L level) of are not fixed cotantly when it receivers the modulating light (including DC light, no input light) less than 0.Mb/s *5 Peak optical output Electro-optical Characteristics (GPFA50TZ) Parameter Symbol Conditio MIN. (T a =5 C, =5) TYP. MAX. Unit Peak emission wavelength Optical power output coupling with fiber Dissipation current λ p P C I CC Refer to Fig. Refer to Fig nm dbm ma High level input voltage Low level input voltage IH IL Refer to Fig. Refer to Fig. 0.8 Low High delay time High Low delay time Refer to Fig. Refer to Fig. Refer to Fig Jitter Refer to Fig. 5 Electro-optical Characteristics () (T a =5 C, =5) Parameter Symbol Conditio MIN. TYP. MAX. Unit Peak seitivity wavelength Dissipation current High level output voltage Low level output voltage Rise time Fall time λ p I CC OH OL t r t f Refer to Fig nm ma Low High delay time High Low delay time Jitter Refer to Fig.6, P C =4.5dBm 0 Refer to Fig.6, P C =4dBm 0 Mechanical Characteristics Parameter Symbol Conditio MIN. TYP. MAX. Unit Iertion force, withdrawal force Initial value when a GPC in used N

3 Fig. Measuring Method of Optical Output Coupling with Fiber GPFA50TZ Unit to be measured Standard optical fiber cable Optical power meter (Anritsu) ML9B D The optical power meter must be calibrated to have the wavelength seitivity of 660nm (0dB=mW) Note () ; 5.0 (State of operating) () To bundle up the standard fiber optic cable, make it into a loop with the diameter D=0cm or more (The standard fiber optic cable will be specified elsewhere.) Fig. Measuring Method of Intput oltage and Supply Current GPFA50TZ Unit to be measured Standard fiber optic cable Optical power meter (Anritsu) ML9B I CC D The optical power meter must be calibrated to have the wavelength seitivity of 660nm (0dB=mW) conditio and judgement method Conditio =.0 or more =0.8 or less Note =5.0 (State of operating) Judgement method P C 5dBm, I CC =0mA or less P C 6dBm, I CC =0mA or less

4 Fig. Measuring Method of Pulse Respoe and Jitter Standard fiber optic cable GPFA50TZ Unit to be measured Standard receiver Output signal 0 0 signal Mb/s biphase mark PRBS signal Oscilloscope CH CH Tektronix 784 or 794 type Trigger;CH Storage mode signal t PLH t PHL Standard receiver output r f Parameter Low High delay time High Low delay time Low High jitter High Low jitter Symbol r f Conditio Refer to the above mentioned prescription Refer to the above mentioned prescription = Set the trigger on the rise of input signal to measure the jitter of the rise of output Set the trigger on the fall of input signal to measure the jitter of the fall of output Notes () The waveform write time shall be 4s. But do not allow the waveform to be distorted by increasing the brightness too much () =5.0 (State of operating) () The probe for the oscilloscope must be more than MΩ and less than 0pF Fig.4 Supply Current Supply voltage Fiber coupling light output Standard tramitter input signal conditio =5.0 P C =4.5dBm 6Mb/s NRZ, Duty or Mb/s biphase mark PRBS signal Measuring method Measured on an ammeter (DC average amperage) Standard tramitter Fiber optic cable Unit to be measured 5 A Am meter

5 Fig.5 Measuring Method of Output oltage and Pulse Respoe GPFA50TZ/ Standard tramitter Fiber optic cable Unit to be measured R SO 5 R SI 6Mb/s NRZ, Duty CH CH Tektronix 784 or 794 type Oscilloscope Low High pulse delay time High Low pulse delay time Rise time Fall time = High level output voltage Low level output voltage Symbol t r t f OH OL Notes () =5.0 (State of operating) () The fiber coupling light output set at 4.5dBm/4dBm () The probe for the oscilloscope must be more than MΩ and less than 0pF (4) R SI, R SO :Standard load resistance (R SI :.kω, R SO :.kω) (5) The output (H/L level) of are not fixed cotantly when it receives the modulating light (including DC light, no input light) less than 0.Mb/s Standard tramitter signal (CH) Output signal (CH) OH OL t r t f 90% 0%

6 Fig.6 Measuring Method of Jitter Fiber optic cable Standard tramitter Unit to be measured 5 R SO R Si signal Mb/s biphase, PRBS signal Oscilloscope CH CH Tektronix 784 or 794 type Trigger : CH Storage mode Sweep : AUTO/NORM Jitter Symbol Test condition Set the trigger on the rise of input signal to measure the jitter of the rise of output Set the trigger on the fall of input signal Jitter to measure the jitter of the fall of output Notes () The fiber coupling light output set at 4.5dBm/4dBm () R SI, R SO :Standard load resistance (R SI :.kω, R SO :.kω) () The waveform write time shall be s. But do not allow the waveform to be distorted by increasing the brightness too much (4) =5.0 (State of operating) (5) The probe for the oscilloscope must be more than MΩ and less than 0pF signal output

7 NOTICE The circuit application examples in this publication are provided to explain representative applicatio of SHARP devices and are not intended to guarantee any circuit design or licee any intellectual property rights. SHARP takes no respoibility 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 specificatio, characteristics, data, materials, structure, and other contents described herein at any time without notice in order to improve design or reliability. Manufacturing locatio are also subject to change without notice. Observe the following points when using any devices in this publication. SHARP takes no respoibility for damage caused by improper use of the devices which does not meet the conditio and absolute maximum ratings to be used specified in the relevant specification sheet nor meet the following conditio: (i) The devices in this publication are designed for use in general electronic equipment desig such as: --- Personal computers --- Office automation equipment --- Telecommunication equipment [terminal] --- Test and measurement equipment --- Industrial control --- Audio visual equipment --- Coumer electronics (ii) Measures such as fail-safe function and redundant design should be taken to eure reliability and safety when SHARP devices are used for or in connection with equipment that requires higher reliability such as: --- Traportation control and safety equipment (i.e., aircraft, trai, automobiles, etc.) --- Traffic signals --- Gas leakage seor breakers --- Alarm equipment --- arious 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 applicatio --- Telecommunication equipment [trunk lines] --- Nuclear power control equipment --- Medical and other life support equipment (e.g., scuba). If the SHARP devices listed in this publication fall within the scope of strategic products described in the Foreign Exchange and Foreign Trade 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 tramitted in any form or by any mea, 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 coult with a SHARP representative if there are any questio about the contents of this publication.

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