Ordering Code SP000063861 SP000063853
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SFH350 / SFH350V Plastic Fiber Optic Phototransistor Detector Plastic Connector Housing Data Sheet The SFH350 is a low-cost 650nm receiver for simple optical data transmission with polymer optical fiber. The phototransistor yields a high output crurrent even at low optical input power and can be used for speeds up to 15kBd. The transparent plastic package has an aperture where the 2.2mm fiber-end can be inserted and fixed with glue. This easy coupling method is extremely costeffective. The V-housing allows easy coupling of unconnectorized 2.2mm plastic optical fiber by means of an axial locking screw. Ordering Information Type SFH350 SFH350V Ordering Code SP000063861 SP000063853 • mm Aperture holds Standard 1000 Micron Plastic Fiber • No Fiber Stripping Required • Good Linearity • Sensitive in visible and near IR Range • Molded Microlens for Efficient Coupling Plastic Connector Housing • Mounting Screw Attached to the Connector • Interference Free Transmission from light-Tight Housing • Transmitter and Receiver can be flexibly positioned • No Cross Talk • Auto insertable and Wave solderable • Supplied in Tubes • Household Electronics • Power Electronics • Optical Network Technical Data Absolute Maximum Ratings Symbol TOP TSTG TS VCE IC ICP VEB VR PTOT RthJA Limit Values min. max. Unit +100 Characteristics TA = 25°C Parameter Maximum Photosensitivity Wavelength Photosensitivity Spectral Range S = 10% Smax Dark Current VR = 20 V Capacitance f = 1 MHz, without light VCE = 0 V VCB = 0 V VEB = 0 V Rise and Fall Times ofPhoto Current RL = 1 k Ω, VCE = 5 V, IC = mA, λ = 959 nm 10% to 90% 90% to 10% Current Gain Collector Dark Current VCE = 5 V Photo Current VCE = 5 = 10 uW coupled from the end of a plastic fiber, λ = 660nm Temperature Coefficient HFE Temperature Coefficient ICE λ = 560 to 660 nm Temperature Coefficient ICE λ = 830 nm Temperature Coefficient ICE λ = 950 nm Symbol min. λSmax CCE CCB CEB tR tF HFE ICE0 ICE TCHFE TCI Values typ. max. Unit 1100 nm Figure Relative Spectral Sensitivity Srel = f λ Figure Capacitance C = f VR , f = 1 MHz, EV = 0 Figure Photocurrent IC = VCE = 5 V, λ = nm Figure Current Gain HFE = f IC , VCE = 5 V, TA = 25°C |
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