86387-1904 MOLEX | Alldatasheet
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FEATURES AND SPECIFICATIONS LC2 Metallic Optical Connectors 86387 Features and Benefits n All metal housing provides a robust connector housing which resists breakage; includes durable stainless steel latches clips n 1.25mm (.049”) LumaCore terminus includes a high-performance Ceramic ferrule with hex register tuning, available for singlemode, multimode and angle-polish applications Take LC2 where no optical SFF connector has gone before, in harsh environments Innovatively designed LC2 connectors are a ruggedized, all-metal-housed version of the familiar LC Small Form Factor optical connectors. Molex’s LC2 connectors incorporate the ceramic ferrule based, LumaCore™ optical terminus technology. The LC2 connector is 100% compatible with the industry standard LC connectors and adapters. The terminus is designed to achieve superior optical performance in a durable housing. Molex’s LC2 connectors provide a high-performance, discrete-fiber termination solution for use in equipment designed for severe environments, including military COTS, aviation and aerospace applications. The LC2 connectors are capable of continuous operating temperatures of 135°C with short term temperatures of up to 150°C when used with high temperature optical fibers. Using Molex’s LumaCore technology, LC2 connectors are complimentary to other field proven LumaCore based products. The LC2 connector provides a color-coded, anodized- aluminum housing with a stainless-steel latching mechanism to ensure optimal LC performance in harsh mechanical and environmental environments. In addition, the housings can be removed as needed without disruption of the terminus tuning or crimped cable jacketing. When terminated, LC2 connectors meet a minimum of all the dimensional and performance requirements of Telcordia GR-326-CORE and TTIA/EIA-604-10a (FOCIS-10). Reference Information Packaging: Bag Mates With: Standard LC adapters Series 106124, 106125, 106126, 106127, 106115 Designed In: Inches Mechanical Durability: Minimum 200 mate/demate cycles Physical Housing: Anodized Aluminum Ferrule: Zirconia Ceramic Operating Temperature: -40 to +135°C FEATURES AND SPECIFICATIONS n Removable connector housing enables direct inspection of fiber bonding areas and replacement of connector body components without fiber re-termination n Multiple boot styles support many cable sizes and applications including including 900µm, 1.20mm and 2.00mm (.079”) as well as 45 and 90° configurations
Lisle, Illinois 60532 U.S.A. 1-800-78MOLEX amerinfo@molex.com Asia Pacific North Headquarters Yamato, Kanagawa, Japan 81-462-65-2324 feninfo@molex.com Asia Pacific South Headquarters Jurong, Singapore 65-6268-6868 fesinfo@molex.com European Headquarters Munich, Germany 49-89-413092-0 eurinfo@molex.com Corporate Headquarters 2222 Wellington Ct. Lisle, IL 60532 U.S.A. 630-969-4550 Fax:630-969-1352Visit our website at www.molex.com/fiber/lc2.html Order No. 987650-0591 Printed in USA/JI/2006.12 ©2006, Molex LC2 Metallic Optical Connectors 86387
ORDERING INFORMATION
Order No. Mode Type Ferrule Size Housing Color Cable Diameter Boot 86387-1904 Singlemode Simplex 126µm Blue 900µm Straight 86387-1929 1.20 to 1.60mm (.047 to .063”) Straight 86387-1304 1.80 to 2.00mm (.070 to .079”) Straight 86387-1989 1.20 to 1.60mm (.047 to .063”) 90° 86387-1364 1.80 to 2.00mm (.070 to .079”) 90° 86387-1979 1.20 to 1.60mm (.047 to .063”) 45° 86387-1654 1.80 to 2.00mm (.070 to .079”) 45° 86387-2102 Multimode 127µm Gold 900µm Straight 86387-2127 1.20 to 1.60mm (.047 to .063”) Straight 86387-1502 1.80 to 2.00mm (.070 to .079”) Straight 86387-2187 1.20 to 1.60mm (.047 to .063”) 90° 86387-1562 1.80 to 2.00mm (.070 to .079”) 90° 86387-2177 1.20 to 1.60mm (.047 to .063”) 45° 86387-1552 1.80 to 2.00mm (.070 to .079”) 45° n Telecommunication/Datacommunication - Base Stations - Vault I/O’s - Wireless Antennas - Video Transmission n Industrial - Factory Automation - Sensors - Process Equipment - Security Cameras n Aerospace - Avionics - Communications - Satellites - Data Terminals - Signal Processors - Sensors - Space Systems