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US Patent 11891729 Machine-knittable conductive hybrid yarns

Patent 11891729 was granted and assigned to Propel LLC on February, 2024 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Patent Applicant
Propel LLC
Propel LLC
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Current Assignee
Propel LLC
Propel LLC
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
118917290
Patent Inventor Names
Clare King0
Anjali Khemani0
Birgit Leitner0
Date of Patent
February 6, 2024
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Patent Application Number
168457960
Date Filed
April 10, 2020
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Patent Citations
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US Patent 7779656 Knitting techniques
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US Patent 6941775 Tubular knit fabric and system
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US Patent 7133227 Head polarity detection algorithm and apparatus
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US Patent 7308294 Textile-based electrode system
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US Patent 7319895 Garment for the medical monitoring of a patient
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US Patent 7592276 Woven electronic textile, yarn and article
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US Patent 10070815 Vertical conductive textile traces and methods of knitting thereof
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US Patent 10144193 Textile structure
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Patent Primary Examiner
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Shaun R. Hurley
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CPC Code
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D02G 3/443
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D02G 3/441
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D02G 3/36
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D02G 3/045
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D02G 3/047
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D10B 2501/00
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D02G 3/12
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D10B 2401/16
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Patent abstract

A machine knittable hybrid yarn for providing conductive traces through a textile is disclosed. The hybrid yarn includes conductive wires coated with an insulating material and twisted together with a nonconductive yarn. The nonconductive yarn is from a strong, inelastic, and nonconductive fiber, such as a meta-aramid or para-aramid that protects the integrity of the conductive wire during knitting. The conductive wire can be copper-clad stainless steel or copper wire is coated with polyurethane, and the nonconductive yarn can have no-drip and no-drip properties to allow ablation of the hybrid yarn to remove the conductive yarn and insulating coating on the wire such that the ablated region becomes externally conductive and suitable for making an electrical contact. The hybrid yarn can be bonded with nylon or similar polymer after twisting.

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