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  HFD3876 silicon pin photodiode outline dimensions in inches (mm) description st is a registered trademark of at & t. the HFD3876 pin photodiode is designed for high speed use in fiber optic receivers. it has a large area detector, providing efficient response to 50 - 100 m diameter fibers at wavelengths of 650 to 950 nanometers. light is collected using a 600 micron micro lens mounted on the detector surface. the HFD3876 is comprised of an hfd3033 pin photodiode which is mounted in a low profile st fiber optic connector. the st connector housing aligns the component's optical axis with the axis of the optical fiber. the HFD3876s case is electrically isolated from the anode and cathode terminals to enhance the emi/rfi shielding which increases the sensitivity and speed. the metal st housing acts as a shield for the pin photodiode component. features low capacitance high speed: t2 = 1.2 ns typical high responsivity: 0.33 a/w typical industry standard st-lp fiber connector housing electrically isolated wave solderable .805 .188 2-56 threads thru .375-32 unef-2a .325 .385 .210 .400 .375 .250 .105 pin 1 pin 3 .500 pin 2 .375 fiber103.dim fiber209.tif pinout 1. anode 2. cathode 3. not connected honeywell reserves the right to make changes in order to improve design and supply the best products possible. h 409 qcvhn?nfqwww.cecb2b.com free datasheet http://
HFD3876 silicon pin photodiode typ electro-optical characteristics (t = 25?c unless otherwise stated) units test conditions min parameter symbol max 50 m core fiber flux res p onsivit y, ?= 850 nm r a/w 0.30 0.33 v? = 30 v dark current i na 0.05 1.5 v? = 5 v total ca p acitance c p f 1.5 res p onse time v? = 3.5 v 10-90% t? ns 1.2 3 v? = 3.5 v 90-10% t? ns 1.2 3 field of view fov de g rees 32 absolute maximum ratings (tcase = 25?c unless otherwise noted) -40 to +100?c storage temperature -40 to +100?c operating temperature 260?c for 10 s lead solder temperature 50 v reverse voltage stresses greater than those listed under "absolute maximum ratings" may cause permanent damage to the device. this is a stress rating only and functional operation of the device at these or any other conditions above those indicated in the operational section of this specification is not implied. exposure to absolute maximum rating conditions for extended periods of time may affect reliability. description catalog listing order guide HFD3876-002 standard silicon pin photodiode the inherent design of this component causes it to be sensitive to electrostatic discharge (esd). to prevent esd-induced damage and/or degradation to equipment, take normal esd precautions when handling this product. c a u ti o n fiber interface honeywell detectors are designed to interface with multimode fibers with sizes (core/cladding diameters) ranging from 50/125 to 200/230 microns. honeywell performs final tests using 50/125 micron core fiber. the fiber chosen by the end user will depend upon a number of application issues (distance, link budget, cable attenuation, splice attenuation, and safety margin). the 50/125 and 62.5/125 micron fibers have the advantages of high bandwidth and low cost, making them ideal for higher bandwidth installations. the use of 100/140 and 200/230 micron core fibers results in greater power being coupled by the transmitter, making it easier to splice or connect in bulkhead areas. optical cables can be purchased from a number of sources. honeywell reserves the right to make changes in order to improve design and supply the best products possible. 410 h qcvhn?nfqwww.cecb2b.com free datasheet http://
HFD3876 silicon pin photodiode relative response vs polar angle fig. 1 fiber043.gra spectral responsivity fig. 2 fiber102.g r relative responsivity vs temperature fig. 3 fiber063.gra dark leakage current vs temperature fig. 4 fiber064.g r honeywell reserves the right to make changes in order to improve design and supply the best products possible. h 411 qcvhn?nf??q`w`w`w`.`c`e`c`b`2`b`.`c`o`m free datasheet http://


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