Jiangsu Xuben Photoelectric Technology Co., Ltd.
Jiangsu Xuben Photoelectric Technology Co., Ltd.
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China Multi-Purpose Breakout Cable Manufacturer, Supplier, Factory

we can easily provide top quality solutions, competitive value and best client company. Our destination is "You come here with difficulty and we provide you a smile to take away" for Multi-Purpose Breakout Cable, Our ultimate objective is always to rank as a top brand also to lead as a pioneer inside our field. We're sure our prosperous experience in tool generation will gain customer's trust, Wish to co-operate and co-create an even better upcoming with you!
Multi-Purpose Breakout Cable, We provide good quality but unbeatable low price and the best service. Welcome to post your samples and color ring to us .We are going to produce the items according to your request. If you are interested in any items we offer, please feel free to contact us directly by mail, fax, telephone or internet. We've been here to answer your questions from Monday to Saturday and looking forward to cooperating with you.

Hot Products

  • Uni-tube Non-metallic 73 Sheath Light-weight Lighting Anti-rodent Fiber Optic Cable

    Uni-tube Non-metallic 73 Sheath Light-weight Lighting Anti-rodent Fiber Optic Cable

    The structure of uni-tube non-metallic 73 sheath light-weight lighting anti-rodent fiber optic cable is to put single-mode optical fiber or multi-mode optical fiber into a loose tube made of high modulus polyester material, and the tube is filled with waterproof compound. Water-blocking material is added to the loose tube to ensure the waterproof performance of the optical cable. The loose tube is wrapped with FRP rod, and a layer of polyethylene inner sheath is extruded on the cable core. After the FRP belt is longitudinally wrapped, a polyethylene outer sheath is extruded to form a cable.
  • Aramid Yarn Access Building Fiber Optic Cable

    Aramid Yarn Access Building Fiber Optic Cable

    The structure of aramid yarn access building fiber optic cable is to put Φ250μm optical fiber into a loose tube made of high modulus material, and the loose tube is filled with waterproof compound. The loose tube is coated with a layer of aramid reinforcement element, and then a layer of double-sided plastic coated steel belt (PSP) is longitudinally wrapped, and a layer of low smoke zero halogen material (LSZH, low smoke, halogen free, flame retardant) is extruded on the outside.
  • Single-mode Optical Fiber G.657.B3

    Single-mode Optical Fiber G.657.B3

    Single-mode optical fiber G.657.B3 is designed for fiber-to-the-home (FTTH), enterprise networks, and any other application that requires ultra-low bending losses at small bend radii.
  • Stranded Loose Tube Non-metallic Strength Member Armored Fiber Optic Cable

    Stranded Loose Tube Non-metallic Strength Member Armored Fiber Optic Cable

    The structure of stranded loose tube non-metallic strength member armored fiber optic cable is to put 250μm optical fiber into a loose tube made of high modulus material, and the loose tube is filled with waterproof compound. The center of the cable core is a non-metallic reinforcement core (FRP). For optical cables with certain cores, a layer of polyethylene (PE) needs to be extruded outside the non-metallic reinforcement core.
  • Single-mode Optical Fiber G.652D

    Single-mode Optical Fiber G.652D

    Single-mode optical fiber G.652D is designed for optical transmission systems operating in the entire wavelength window of 1260nm to 1625nm. By suppressing the water peak near 1383 nm due to hydroxyl (OH-) ion absorption in traditional single-mode fiber, the fiber is able to open the E-band (1360-1460 nm) for operation, thus providing a usable wavelength of more than 100nm.
  • Bow-type Duct Fiber Optic Drop Cable

    Bow-type Duct Fiber Optic Drop Cable

    The Bow-type Duct Fiber Optic Drop Cable is made by placing the butterfly-shaped optical cable as the optical communication subunit in the center, placing two parallel reinforcement elements on both sides, wrapping it with water-blocking tape, and finally extruding a layer of sheath.

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