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Laser fiber cleaver.
Laser cleavers optek s unique machine tools are in service around the world producing laser processed fiber ends of unmatched quality and reproducibility with many millions of optek processed ends in service in telecoms datacoms medical aerospace and defence applications.
The core values of the laser cleave are the elimination of mechanical scribing and the reduction of polishing steps required for connector finishing.
Significant cost savings and reduction in process variation associated with cracking typical of mechanical cleaving methods.
Microscopes and or interferometers are used in the analysis of fiber end surfaces.
The base model of the laser cleave product family is designed to cut fiber and epoxy on a single fiber connector ferrule prior to conventional polishing.
Speedwolf ftth high precision optical fiber cleaver 16 surface blade fiber cutter tool for 250μm 900μm 3 0mm indoor fiber splicing with 4in1 holder scrap collector and more than 38 000 cleaves.
The laser cleave can also be precisely positioned with respect to other features on the fiber such as metallization or a connector body.
Our industry leading products include optisaber laser cleavers world renowned optical fiber polishing machines abrasave fixtures optispec microscopes and more.
This includes the stripping of fiber claddings the cleaning and cleaving of fibers and splicing or polishing depending on the application.
Additional time savings include uniform starting point.
The optisaber laser cleaver is the finest fiber forming machine on the market which increases production yield on multi fiber mtp mpo and single fiber applications.
This model is capable of cleaving through the polyimide coating of a fiber.
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The fk11 cleaver cleaves fibers with diameters of from 80 µm to 200 µm and the fk11 ldf cleaver for large diameter fibers cleaves fibers with diameters of from 180 µm to 400 µm.
The hard coating does not need to be removed for a clean cleave.
Our optisaber laser cleaver series provides simple fast and affordable cleaving eliminating cracking of fiber caused by mechanical cleaving.
The core technology of the laser cleaving process can also be applied to more complex end face geometries allowing the creation of multi faceted forms and a range of lens geometries.