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US Patent 10209447 Micro splice protector

Patent 10209447 was granted and assigned to II-VI Incorporated on February, 2019 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
II-VI Incorporated
II-VI Incorporated
Current Assignee
II-VI Incorporated
II-VI Incorporated
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10209447
Date of Patent
February 19, 2019
Patent Application Number
15215705
Date Filed
July 21, 2016
Patent Citations Received
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US Patent 11886009 Coating fusion spliced optical fibers and subsequent processing methods thereof
0
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US Patent 11360264 Telecommunications splice arrangements
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US Patent 11360265 Fiber optic cable assembly with overlapping bundled strength members, and fabrication method and apparatus
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US Patent 11867947 Cable assembly having routable splice protectors
0
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US Patent 11561344 Fiber optic cable assembly with thermoplastically overcoated fusion splice, and related method and apparatus
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US Patent 10921540 Optical fiber fan-out assembly with ribbonized interface for mass fusion splicing, and fabrication method
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US Patent 10976492 Cable with overcoated non-coplanar groups of fusion spliced optical fibers, and fabrication method
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US Patent 11347014 Optical fiber fan-out assembly with ribbonized interface for mass fusion splicing, and fabrication method
...
Patent Primary Examiner
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Jerry Blevins
Patent abstract

A micro splice protector for a fusion connection between a pair of optical fibers takes the form of a cylindrical sleeve of dimensions similar to that of the fusion splice itself, with an epoxy material used to encase the fusion splice within the sleeve. The sleeve is formed to exhibit an inner diameter only slightly greater than the outer diameter of the optical fibers, with the length of the sleeve typically formed to be only slightly longer than the stripped end terminations of the pair of fibers being spliced together. The cylindrical sleeve is formed of a rigid, but lightweight, material (e.g., stainless steel, fused silica) and an epoxy material is injected into the configuration to fill any gaps between the fusion connection and the inner surface of the sleeve. The result is relatively stiff fusion splice protector that is extremely small in size and well-suited for use in optical component packages where space is at a minimum.

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