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GP1F38T/GP1F38T2 Uni-directional data transmission using plastic
Top Searches for this datasheetGP1F38T/GP1F38T2 GP1F38T/GP1F38T2 Uni-directional data transmission using plastic fiber Signal transmission speed MAX. 8Mbps (NRZ signal) (GP1F38T) MAX. 12.5Mbps (GP1F38T2) voltage drive Operating voltage (GP1F38T) Minimum input optical power MIN. -21dBm (EIAJ) high speed C-MOS LOGIC compatible GP1F37R1 recommended receiver side GP1F38T2. Uni-directional, Fiber Optic Transmitter Outline Dimensions (Unit fixing hole fixing hole Depth 10.1 players players players 10.6 Absolute Maximum Ratings Parameter Symbol Supply voltage Input voltage Operating temperature Topr Tstg Storage temperature Tsol Soldering temperature times less) (Ta=25°C) Unit Internal equivalent circuit Rating -0.5 +7.0 -0.5 +0.5 Drive Recommended drilling viewd from soldering face (Unspecified tolerance ±0.1mm) +0.1 2-2.0-0 2.54 2.54 Unspecified tolerance ±0.3mm 3-0.8 Notice absence confirmation device specification sheets, SHARP takes responsibility defects that occur equipment using SHARP devices shown catalogs, data books, etc. Contact SHARP order obtain latest device specification sheets before using SHARP device. Internet Internet address Electronic Components Group http://www.sharp.co.jp/ecg/ 4±0.5 Applications 2.54 2.54 GP1F38T/GP1F38T2 Recommended Operating Conditions Parameter Operating supply voltage Operating transfer rate GP1F38T GP1F38T2 GP1F38T GP1F38T2 Symbol MIN. 4.75 TYP. MAX. 5.25 12.5 Unit Mbps Electro-optical Characteristics Parameter Peak emission wavelength Optical power output coupleing with fiber Dissipation current High level input voltage level input voltage High delay time High delay time Pulse width distortion Jitter GP1F38T GP1F38T2 GP1F38T GP1F38T2 GP1F38T GP1F38T2 Symbol tpLH tpHL Conditions Refer Fig.1 Refer Fig.2 Refer Fig.2 Refer Fig.2 Refer Fig.3 Refer Fig.3 Refer Fig.3 Refer Fig.3 MIN. TYP. MAX. (Ta=25°C) Unit Mechanical Characteristics Parameter Insertion force, withdrawal force Symbol MIN. TYP. MAX. Unit Conditions Initial value when GP1C331 used. Fig.1 Measuring Method Optical Output Coupling with Fiber Standard optical fiber cable GP1F38T/GP1F38T2 Unit measured Optical power meter (Anritsu)ML93B optical power meter must calibrated have wavelength sensitivity 660nm. (0dBm=1mW) Notes GP1F38T VCC=3.0±0.05V (State operating) GP1F38T2 VCC=5.0V (State operating) bundle standard fiber optic cable, make into loop with diameter D=10cm more. (The standard fiber optic cable will specified elsewhere.) GP1F38T/GP1F38T2 Fig.2 Measuring Method Intput Voltage Supply Current Standard optical fiber cable GP1F38T/GP1F38T2 Unit measured optical power meter must calibrated have wavelength sensitivity 660nm. (0dBm=1mW) Optical power meter (Anritsu)ML93B Input conditions judgement method Conditions Vin=2.1V more Vin=0.8V less Judgement method -21<=PC<=-15dBm, ICC=12mA less (GP1F38T) -21<=PC<=-15dBm, ICC=13mA less (GP1F38T2) PC<=-36dBm, ICC=12mA less (GP1F38T) PC<=-36dBm, ICC=13mA less (GP1F38T2) Note) GP1F38T VCC=3.0±0.05V (State operating) GP1F38T2 VCC=5.0V (State operating) GP1F38T/GP1F38T2 Fig.3 Measuring Method Pulse Response Jitter Standard optical fiber cable GP1F38T/GP1F38T2 Unit measured Standard receiver Output signal Oscilloscope Tektronix 7834 7934 type Trigger Storage mode Input Input signal Input signal 3Mbps biphase PRBS signal (GP1F38T), 6.25Mbps biphase PRBS signal (GP1F38T2) tPLH Standard receiver output tPHL Test item Test item High pulse delay time High pulse delay time Pulse width distortion High Jitter High Jitter Symbol tPLH tPHL Test condition Refer above prescriptions Refer above prescriptions tw=tPHL-tPLH trigger rise input signal measure jitter rise output trigger fall input signal measure jitter fall output Notes waveform write time shall seconds. allow waveform distorted increasing brightness much. GP1F38T VCC=3.0±0.05V (State operating) GP1F38T2 VCC=5.0V (State operating) probe oscilloscope must more than less than 10pF. Application Circuits NOTICE qThe circuit application examples this publication provided explain representative applications SHARP devices intended guarantee circuit design license intellectual property rights. SHARP takes responsibility problems related intellectual property right third party resulting from SHARP's devices. qContact SHARP order obtain latest device specification sheets before using SHARP device. SHARP reserves right make changes specifications, characteristics, data, materials, structure, other contents described herein time without notice order improve design reliability. Manufacturing locations also subject change without notice. qObserve following points when using devices this publication. SHARP takes responsibility damage caused improper devices which does meet conditions absolute maximum ratings used specified relevant specification sheet meet following conditions: devices this publication designed general electronic equipment designs such Personal computers Office automation equipment Telecommunication equipment [terminal] Test measurement equipment Industrial control Audio visual equipment Consumer electronics (ii)Measures such fail-safe function redundant design should taken ensure reliability safety when SHARP devices used connection with equipment that requires higher reliability such Transportation control safety equipment (i.e., aircraft, trains, automobiles, etc.) Traffic signals leakage sensor breakers Alarm equipment Various safety devices, etc. (iii)SHARP devices shall used connection with equipment that requires extremely high level reliability safety such Space applications Telecommunication equipment [trunk lines] Nuclear power control equipment Medical other life support equipment (e.g., scuba). qContact SHARP representative advance when intending SHARP devices "specific" applications other than those recommended SHARP when unclear which category mentioned above controls intended use. 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