HFE8500-020/XBA
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HFE8500-020/XBA (pdf) |
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Fiber Optic LAN Components 1310nm SLED FEATURES • High coupled power, 30µW typical into 62.5/125µm fibre. • 85MHz operating Bandwidth • -40°C to + 85°C operating temperature • Hermetically sealed package installed in industry standard ST housing • High reliability HFE8500-020/XBA The HFE8500-020/XBA is a high-performance InGaAsP surface emitting LED that offers high coupling powers in 1300nm fibre optic transmission applications. The LED is mounted in an industry standard low profile ST connector housing, optimised for low cost multi-mode systems where high bandwidth and long distance links are required. APPLICATION The HFE8500-020/XBA employs a high speed 1300nm SLED packaged in a TO-18 metal can and optically aligned within a low profile ST connector housing. Data rates can vary from DC to 85MHz depending upon component application. The LED is designed to convert electrical energy into optical output power that can be used in fibre optic communications and other applications. The HFE8500-020/XBA is designed to be used with inexpensive silicon or gallium arsenide detectors in 1300nm multi-mode applications but can also be used in some single-mode systems. Honeywell Control Systems FOR INFORMATION ONLY Fiber Optic LAN Components 1310nm SLED ABSOLUTE MAXIMUM RATINGS Storage temperature -55 to +125°C Operating temperature -40 to +85°C Forward current 100 mA Soldering temperature +260 °C, 10 secs HFE8500-020/XBA NOTICE 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 operations section for extended periods of time may affect reliability. ELECTRO-OPTICAL CHARACTERISTICS Tests made at 25°C unless otherwise specified Parameter Test conditions Symbol Min Typ Max If = 100 mA Ir = 10 µA Vf BVR Capacitance Vr = 0 V, = 1 MHz Fiber Coupled Power If = 100 mA, 50 µm core dia, NA Fiber Coupled Power If = 100 mA, µm core Poc dia, NA Total Optical Power Response Time Peak Wavelength If = 100 mA 10%-90%, 1 V Prebias, If = 100 mA If = 100 mA |
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