1996European Conference on Optical CommunicationRequires access

Arc fusion splices with near pristine strengths and improved optical loss

J. T. Krause, Sanjay Kher, Dimitrios Stroumbakis

Open publisher page 5 citations

Abstract

Factors affecting arc fusion splice strengths are listed, which collectively lead to splices having strengths near to that of the pristine fiber, and with improved losses; a breakthrough in arc fusion splice technology for expanded applications and greater reliability. The attainment of near pristine are fusion splice strengths coupled with improved splice loss is certainly a milestone in splicing technology. We have listed the various important considerations necessary in their attainment and suggested that high strength, the characteristic of primary importance in this paper, be viewed in two ways. High strength, per se, wherever applications require it, and high strength as a means of assuring high mechanical reliability by reducing the probability of pop-in cracks from surface defects.

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What this paper is about

Factors affecting arc fusion splice strengths are listed, which collectively lead to splices having strengths near to that of the pristine fiber, and with improved losses; a breakthrough in arc fusion splice technology for expanded applications and greater reliability. The attainment of near pristine are fusion splice strengths coupled with improved splice loss is certainly a milestone in splicing technology. We have listed the various important considerations necessary in their attainment and suggested that high strength, the characteristic of primary importance in this paper, be viewed in two ways. High strength, per se, wherever applications require it, and high strength as a means of assuring high mechanical reliability by reducing the probability of pop-in cracks from surface defects.

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Factors affecting arc fusion splice strengths are listed, which collectively lead to splices having strengths near to that of the pristine fiber, and with improved losses; a breakthrough in arc fusion splice technology for expanded applications and greater reliability. The attainment of near pristine are fusion splice strengths coupled with improved splice loss is certainly a milestone in splicing technology. We have listed the various important considerations necessary in their attainment and suggested that high strength, the characteristic of primary importance in this paper, be viewed in two ways. High strength, per se, wherever applications require it, and high strength as a means of assuring high mechanical reliability by reducing the probability of pop-in cracks from surface defects.

Key concepts: Fusion splicing, splice, Fusion, Reliability (semiconductor), Milestone, Arc (geometry), Materials science, Mechanical strength

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