BoxOptronics' 1310 nm Single Mode SM Fiber Optic Circulators are available unterminated, with FC/PC connectors, or with FC/APC connectors. Our 1310 nm SM Fiber Optic Circulators have a maximum power handling of 500 mW (CW). The 1310 nm Single Mode SM Fiber Optic Circulators advanced micro optics design, it features low insertion loss, low polarization sensitivity, high isolation, and high stability. The excellent characteristics of this product make it an ideal choice for application in fiber amplifier systems, pump laser diodes, and optical fiber sensors.
Read MoreSend InquiryThe C-Band Raman Amplifier Module is used to amplify optical signal in long distance optical transmission system and dense wavelength division multiplexing optical transmission system. It can amplify optical signal in C or L-band with high gain and low noise.
Read MoreSend InquiryThe 808nm 8W 200um Multimode Fiber Diode Laser offer up to 8 watts of CW output power from a 200 µm fiber. They are Fabry-Perot single emitter devices. The model referenced in this product listing has a numerical aperture of 0.22. The fiber is un-terminated for direct coupling to your sample or fiber cladding layer. The 915nm 10W series multimode pump modules offer high brightness, a small footprint and simplified thermal management by distributing the laser diodes and dissipating the heat source.
Read MoreSend InquiryBoxOptronics' 1550 nm Single Mode SM Fiber Optical Circulators are available unterminated, with FC/PC connectors, or with FC/APC connectors. Our 1550 nm Single Mode SM Fiber Optical Circulators have a maximum power handling of 500 mW (CW). The 1550 nm Single Mode SM Fiber Optical Circulators advanced micro optics design, it features low insertion loss, low polarization sensitivity, high isolation, and high stability. This circulators are widely used in DWDM system, bi-directional pumps and and chromatic dispersion compensation devices.
Read MoreSend InquiryThe 808nm 10W 2 Pin Fiber Coupled Laser Diodes are manufactured with new specialized fiber-coupling techniques. High efficiency, stability and superior beam quality. The 2-pins lasers are achieved by transforming the asymmetric radiation from the laser diode chip into an output fiber with small core diameter by using special microptics. Inspecting and burn-in procedures in every aspect come to a result product with reliability, stability and long lifetime.
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