Abstract: A method of estimating a topography of at least first and second parts of a body may involve: causing at least one processor circuit to receive at least one signal representing at least one measurement of deformation of at least a portion of the body; causing the at least one processor circuit to associate the deformation with relative positions of at least the first and second parts of the body; and causing the at least one processor circuit to produce at least one output signal representing the relative positions of at least the first and second parts of the body. Systems are also disclosed.
Type:
Application
Filed:
April 18, 2019
Publication date:
August 19, 2021
Applicant:
TEXAVIE TECHNOLOGIES INC.
Inventors:
Peyman Servati, Amir Servati, Zenan Jiang, Saeid Soltanian, Harishkumar Narayana, Jennifer Angelica Ongko
Abstract: This invention pertains to a low cost, low noise strain sensor based on a web of continuous core-shell nanofibers with conductive shell and mechanically robust core that can be attached or embedded on a variety objects for directional monitoring of static or dynamic changes in mechanical deformation and pressure. This is a low cost, highly sensitive strain sensor, with low noise and ease of integration for different applications from synthetic tactile skins, to vibrational and health monitoring.
Type:
Grant
Filed:
October 21, 2019
Date of Patent:
January 19, 2021
Assignee:
TEXAVIE TECHNOLOGIES INC.
Inventors:
Peyman Servati, Frank K. Ko, Saeid Soltanian, Amir Servati
Abstract: This invention pertains to a low cost, low noise strain sensor based on a web of continuous core-shell nanofibers with conductive shell and mechanically robust core that can be attached or embedded on a variety objects for directional monitoring of static or dynamic changes in mechanical deformation and pressure. This is a low cost, highly sensitive strain sensor, with low noise and ease of integration for different applications from synthetic tactile skins, to vibrational and health monitoring.
Type:
Grant
Filed:
November 14, 2016
Date of Patent:
November 19, 2019
Assignee:
TEXAVIE TECHNOLOGIES INC.
Inventors:
Peyman Servati, Frank K. Ko, Saeid Soltanian, Amir Servati
Abstract: This invention pertains to a low cost, low noise strain sensor based on a web of continuous core-shell nanofibers with conductive shell and mechanically robust core that can be attached or embedded on a variety objects for directional monitoring of static or dynamic changes in mechanical deformation and pressure. This is a low cost, highly sensitive strain sensor, with low noise and ease of integration for different applications from synthetic tactile skins, to vibrational and health monitoring.
Type:
Grant
Filed:
April 3, 2014
Date of Patent:
November 15, 2016
Assignee:
TEXAVIE TECHNOLOGIES INC.
Inventors:
Peyman Servati, Frank K. Ko, Saeid Soltanian, Amir Servati