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The 90R12 is a mass fusion splicer capable of splicing up to 12 fiber ribbon cables simultaneously. In previous mass fusion splicer models, the v-grooves could become dirty over time due to debris and glass deposits from splicing accumulating in the v-grooves. Which in turn, could lead to fibre offsets and high losses if they were not regularly cleaned which added to the overall process time. The 90R12 comes with a first of its kind, innovative user replaceable V-groove assembly which makes this issue a thing of the past and is supplied as standard equipment with the 90R12 kit. This new V-groove assembly can be quickly and easily fitted in the field, minimizing downtime and maximising productivity. In addition, the new V-groove design enables splicing of both conventional type 12-fiber encapsulated ribbon and SWR (Spider Web Ribbon) whilst also accommodating 250um and 200um pitch fibers. The 90R12 can also splice single fibers if required. also making use of Active Blade Management Technology, which now can connect to two CT50 cleavers simultaneously.

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SS01 have one hole for stripping 250 um cable down to glass fiber.

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The RS02 is designed and developed with emphasis on operability and usability where less force is required for the stripping process. Furthermore wireless link with smartphones for operational parameters adjustment. These fiber stripping tools are also compatible with stripping Fujikura latest Spider Web RibbonTM ,which consists of optical fibers (with a coating diameter of 250μm or 200 μm) fixed intermittently.

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LTC-01 is the special tool for removing loose tube without damage to the UV acrylate coated optical fiber inside the loose tube.

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The FP-03 series is the industry standard for durable and lasting protection of single fiber splices in field installations. The FPS01 series are specially designed for optical components, where small packaging is a priority. These micro sleeves provide the known reliability of Fujikura sleeves in the smallest possible lengths. This easy and cost effective method is a great alternative to recoating. The FPS01 and FPS04 series offer a wide range of options to accommodate various coating sizes, and are manufactured in a variety of lengths. This gives great flexibility in designing optical modules.

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The FAT-04 is designed to arrange 250μm coated fibers and to make a temporary ribbon configutation so that the fibers may be mass fusion spliced using the same procedures as conventional ribbon fiber.

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Whether splicing similar fiber types or double clad LDF fibers for high power lasers, the FSM-100P+ splicers provide multiple solutions for diverse production needs. The FSM-100 + series sets the standard for fusion splicing with a multitude of new features designed to make splicing easier.

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AFL’s LZM-100 LAZERMaster is a glass processing and splicing system that uses a CO2 laser heat source rather than electrodes, ensuring repeatable performance and low maintenance, and eliminating electrode or filament maintenance and instability. Splicing or adiabatic tapering (to create mode field adapters or pump combiners) can be performed with glass diameters of 2.3 mm or less. The high resolution optical analysis system works in conjunction with on-board firmware for fully automatic splicing, tapering and other glass shaping processes.

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SS03 have three holes. The smallest hole is for stripping 250 um cable down to glass fiber. The second hole is for stripping 900 um buffer coating down to 250 um buffer coating. The biggest hole is for stripping 2-3mm fiber jacket down to 900 um buffer coating.

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RS03 - 80 is a tool for removing the optical fiber coating for clad diameter 80 μm. By heating and softening the coating, the coating can be easily removed. By using an optional spacer, a short lead (3 mm to 5 mm) is also possible. Fiber holder is compatible with FH - 100 series and FH - 40 series. Furthermore,equipped with new features such as large capacity battery for 600 stripping cycles, 6 times larger than conventional stripper, and wireless link with smartphones for operational parameters adjustment.

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The PCS-100 has been designed for stripping polyimide coating optical fibers. Do not attempt to use this machine for other applications. Fujikura Ltd. gives careful consideration and regard to personal injury. Misuse of the machine may result in electric shock, fire and/or serious personal injury.

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The APM-101 perform all the steps required to prepare optical fibers before splicing – automatically and with high consistency. This includes stripping the fiber without degrading fiber quality, cleaning fiber with alcohol to remove coating residue, and cleaving consistently at a right angle to the fiber axis. The entire process is complete in as little as 23 seconds.

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The APM-102 perform all the steps required to prepare optical fibers before splicing – automatically and with high consistency. This includes stripping the fiber without degrading fiber quality, cleaning fiber with alcohol to remove coating residue, and cleaving consistently at a right angle to the fiber axis. The entire process is complete in as little as 23 seconds.

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HTS-12 is designed for stripping single count of silica optical fiber by keeping the stripped fiber's glass surface free from any physical contact. In order to achieve the above condition, the HTS-12 has a precise linear slide base for stripping action. The fiber is not scuffed by the blade or any other materials when being stripped. The HTS-12 is equipped with a heater to soften the fiber coating. The HTS-12 accepts the FH-40 series and FH-100 series Fiber Holder System

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AFL PowerStrip is a thermal stripper used in high strength splicing. Using the proven blade and centering design of the Schleuniger FiberStrip 7030 in addition to the fiber holder system, the AFL PowerStrip automatically centers the fiber, heats the buffer or coating, and strips the buffer at a controlled rate with perfect alignment. The fiber holder system reduces fiber handling, making this tool ideal for any production environment.

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The Fujikura specialty fiber splicer FSM-100P series offers a host of innovative technologies to address the rapidly expanding splicing needs for factory, manufacturing, laboratory and R&D applications. These capabilities is revolutionizing the way users splice various types of specialty fibers, LDFs, PMFs and so on.

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