Invention Grant
- Patent Title: High resolution and high flexibility fiber optical cables and microfabrication methods for making same
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Application No.: US17307833Application Date: 2021-05-04
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Publication No.: US11745454B2Publication Date: 2023-09-05
- Inventor: Komal Kampasi , Razi-Ul Muhammad Haque , Michael Gregory Triplett
- Applicant: Lawrence Livermore National Security, LLC
- Applicant Address: US CA Livermore
- Assignee: Lawrence Livermore National Security, LLC
- Current Assignee: Lawrence Livermore National Security, LLC
- Current Assignee Address: US CA Livermore
- Agency: Harness, Dickey & Pierce, P.L.C.
- Main IPC: G02B6/02
- IPC: G02B6/02 ; B29D11/00

Abstract:
The present disclosure relates to methods of forming a fiber optic core, and a fiber optic component with a highly uniform cladding covering the fiber optic core. In one microfabrication process a first sacrificial tubing is provided which has a predetermined inner diameter. A quantity of a curable polymer is also provided. The first sacrificial tubing is at least partially filled with the curable polymer. The curable polymer is then cured. The first sacrificial tubing is then removed to produce a finished fiber optic core. Additional operations may be performed by which the fiber optic core is placed inside a thermoplastic tubing, which is itself placed inside a sacrificial heat shrink. Heat is applied to reflow the thermoplastic tubing around the fiber optic core, thus forming a highly uniform thickness cladding. When the sacrificial heat shrink tubing is removed a finished fiber optic component is present. Additional microfabrication methods are disclosed which involve dip coating a pre-formed fiber optic core in a polymer, and then curing the polymer to form a finished fiber optic component with a uniform thickness cladding.
Public/Granted literature
- US20220355558A1 HIGH RESOLUTION AND HIGH FLEXIBILITY FIBER OPTICAL CABLES AND MICROFABRICATION METHODS FOR MAKING SAME Public/Granted day:2022-11-10
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