GPX3800 and GPX3850 Glass Processors User Guide

2022-08-10
●Introduction
■This manual is intended to convey the basic instructions necessary for operating the glass processor.
■The Vytran Glass Processors are a versatile glass processing platform for the fabrication of splices, tapers, terminations, couplers and combiners. All systems incorporate a filament furnace assembly that provides a stable high temperature heat source for precise control of glass processing conditions. An embedded real time control system and powerful machine level macro programming language allow the user to develop unique event-driven routines for fast and flexible process development. All high level system communication is through a user-friendly, PC based graphical interface that provides for easy operation and convenient data storage. This level of control combined with the consistency of filament fusion technology makes the glass processors a multipurpose platform for the production of fiber laser and other specialty fiber applications.
■The Vytran Glass Processors consist of four different models designed to perform high-quality fusion splicing and tapering of specialty fibers. The system consists of a filament-based heater, precision stages with multi-axis control, microscopic high resolution CCD imaging system and a personal computer. The filament assembly can heat optical fiber to temperatures up to 3000 °C, which makes it possible to fuse and process various fiber types and sizes. The multi-axis stages precisely control and aid the alignment and positioning of the fibers for high quality splicing and tapering. The imaging system displays magnified fiber image with sub-micron resolution. The fiber can be viewed both from fiber side and fiber end. All glass processors have the ability to rotate fibers; making it possible to align PM fibers, eccentric core fibers or non-circular fibers.

Hanyu

GPX3800GPX3850

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Glass Processors

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User's Guide

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English Chinese Chinese and English Japanese

July 24, 2017

Rev A

TTN047534-D02

2.9 MB

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