Patents by Inventor Jacob N. Chamoun
Jacob N. Chamoun has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 11796584Abstract: A system for evaluating a high voltage asset (HV asset) comprises a PD detector disposed in the HV asset. The PD detector comprises an electrical coupler configured to couple electrical disturbances indicative of a partial discharge from a high voltage conductor of the HV asset to an electrical-to-optical converter. The electrical-to-optical converter comprises a light emitter, and is configured to convert the electrical disturbances to a light signal. An optical power receiver is disposed in the high voltage asset and coupled to the PD detector. The optical power receiver is configured to receive optical power from an external optical power source via a non-conducting optical fiber arrangement. The electrical-to-optical converter is configured to communicate the light signal indicative of the partial discharge to an electronic device external of high voltage asset via the non-conducting optical fiber arrangement.Type: GrantFiled: January 3, 2022Date of Patent: October 24, 2023Assignee: XEROX CORPORATIONInventors: Jacob N. Chamoun, Peter Kiesel, Saman Mostafavi, Qiushu Chen
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Patent number: 11761896Abstract: An analyzing system includes a detection area with a transparent window past which an analyte moves and emits or transmits light. One or more polarizing elements receive and polarize the light into respective two or more different polarization components. One or more optical detectors receive the respective two or more polarization components and generate respective at least two signals in response. A processor is coupled to the optical detectors and configured to determine a polarization status of the light from the analyte based on the at least two signals.Type: GrantFiled: December 8, 2022Date of Patent: September 19, 2023Assignee: XEROX CORPORATIONInventors: Qiushu Chen, Peter Kiesel, Jacob N. Chamoun, Norman Nan Shi, Noble M. Johnson
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Publication number: 20230266554Abstract: An apparatus has a chassis having a base. A first wall extends substantially perpendicularly from the base at a first edge of the base. The first wall is configured to be a first attachment point for an optical cable comprising one or more optical sensors. An opposing second wall extends substantially perpendicularly from the base at a second edge of the base. A mobile attachment point is configured to be a second attachment point for the optical cable. A spring is coupled to the second wall and the mobile attachment point. The spring is configured to provide a specified force as the mobile attachment point moves.Type: ApplicationFiled: April 25, 2023Publication date: August 24, 2023Inventor: Jacob N. Chamoun
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Publication number: 20230213570Abstract: A system for evaluating a high voltage asset (HV asset) comprises a PD detector disposed in the HV asset. The PD detector comprises an electrical coupler configured to couple electrical disturbances indicative of a partial discharge from a high voltage conductor of the HV asset to an electrical-to-optical converter. The electrical-to-optical converter comprises a light emitter, and is configured to convert the electrical disturbances to a light signal. An optical power receiver is disposed in the high voltage asset and coupled to the PD detector. The optical power receiver is configured to receive optical power from an external optical power source via a non-conducting optical fiber arrangement. The electrical-to-optical converter is configured to communicate the light signal indicative of the partial discharge to an electronic device external of high voltage asset via the non-conducting optical fiber arrangement.Type: ApplicationFiled: January 3, 2022Publication date: July 6, 2023Inventors: Jacob N. Chamoun, Peter Kiesel, Saman Mostafavi, Qiushu Chen
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Patent number: 11668889Abstract: An apparatus has a chassis having a base. A first wall extends substantially perpendicularly from the base at a first edge of the base. The first wall is configured to be a first attachment point for an optical cable comprising one or more optical sensors. An opposing second wall extends substantially perpendicularly from the base at a second edge of the base. A mobile attachment point is configured to be a second attachment point for the optical cable. A spring is coupled to the second wall and the mobile attachment point. The spring is configured to provide a specified force as the mobile attachment point moves.Type: GrantFiled: April 20, 2021Date of Patent: June 6, 2023Assignee: Palo Alto Research Center IncorporatedInventor: Jacob N. Chamoun
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Patent number: 11619794Abstract: An apparatus has a cassette configured to hold optical fiber comprising one or more optical sensors. The cassette has a spool configured to one or more of extract and retract the optical fiber from the cassette. A pre-strain mechanism is configured to apply a predetermined pre-strain to the one or more optical sensors. An optical fiber installation tool is configured to mount the optical fiber comprising the one or more pre-strained optical sensors to a surface.Type: GrantFiled: April 20, 2021Date of Patent: April 4, 2023Assignee: Palo Alto Research Center IncorporatedInventors: Jacob N. Chamoun, Qiushu Chen, Peter Kiesel, Kyle Arakaki
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Publication number: 20230054682Abstract: An optical fiber mold device has a first portion that includes a base layer having a longitudinal feature configured to receive an optical fiber. At least one second portion is disposed over the base layer. The second portion has a center wall and front and back end walls. The center wall, the front end wall, and the back end wall form a mold cavity. At least one first hole is disposed in the mold cavity and is configured to allow mold material to enter the mold cavity. At least one second hole in the mold cavity is configured to allow air displaced by the mold material to exit the mold cavity.Type: ApplicationFiled: August 23, 2021Publication date: February 23, 2023Inventors: Sanggeon Lee, Peter Kiesel, Qiushu Chen, Jacob N. Chamoun
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Patent number: 11543611Abstract: An apparatus includes a cassette configured to hold optical fiber comprising one or more optical sensors. The cassette comprises a spool configured to one or more of extract and retract the optical fiber from the cassette. A fiber monitor is coupled to the cassette. The fiber monitor is configured to monitor at least one parameter of the optical fiber as the optical fiber is extracted from the cassette.Type: GrantFiled: April 20, 2021Date of Patent: January 3, 2023Assignee: Palo Alto Research Center IncorporatedInventors: Jacob N. Chamoun, Qiushu Chen, Peter Kiesel, Kyle Arakaki
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Patent number: 11525769Abstract: An analyzing system includes a fluidic stream that guides an analyte in a detection area where the analyte emits or transmits light. One or more polarizing elements polarize the light into respective two or more different polarization components. One or more optical detectors receive the respective two or more polarization components and generate respective at least two signals in response. A processor is coupled to the optical detectors and configured to determine the polarization status of the light from the object based on the signals.Type: GrantFiled: December 1, 2020Date of Patent: December 13, 2022Assignee: Palo Alto Research Center IncorporatedInventors: Qiushu Chen, Peter Kiesel, Jacob N. Chamoun, Norman Nan Shi, Noble M. Johnson
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Publication number: 20220334333Abstract: A cassette for optical fiber includes one or more optical sensors. The cassette has a spool for handling optical fiber. An adjustable shaft is disposed such that the spool is configured to rotate about the adjustable shaft. The adjustable shaft is configured to handle spools having different diameters. A spool controller is coupled to the adjustable shaft and configured to rotate the adjustable shaft to perform one or more of extract and retract the optical fiber. One or more bushings are disposed proximate the spool and are configured to prevent the optical fiber from jumping off the spool.Type: ApplicationFiled: April 20, 2021Publication date: October 20, 2022Inventors: Jacob N. Chamoun, Qiushu Chen, Peter Kiesel, Mark R. Teepe, Kyle Arakaki
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Publication number: 20220332103Abstract: An apparatus includes one or more stamps configured to install an optical fiber on a surface of a structure. Each stamp includes a backing. A first adhesive is disposed on one or more first regions of the backing and is configured to provide a temporary bond between the optical fiber and the surface. A second adhesive is disposed on at least a second region of the backing and is configured to provide a substantially permanent bond between the optical fiber and the surface. A liner is removably adhered to the first adhesive.Type: ApplicationFiled: April 20, 2021Publication date: October 20, 2022Inventors: Jacob N. Chamoun, Qiushu Chen, Peter Kiesel
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Publication number: 20220334335Abstract: An apparatus has a chassis having a base. A first wall extends substantially perpendicularly from the base at a first edge of the base. The first wall is configured to be a first attachment point for an optical cable comprising one or more optical sensors. An opposing second wall extends substantially perpendicularly from the base at a second edge of the base. A mobile attachment point is configured to be a second attachment point for the optical cable. A spring is coupled to the second wall and the mobile attachment point. The spring is configured to provide a specified force as the mobile attachment point moves.Type: ApplicationFiled: April 20, 2021Publication date: October 20, 2022Inventor: Jacob N. Chamoun
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Publication number: 20220334320Abstract: An apparatus includes an installation tool for attaching an optical fiber to a structure. The tool includes a body. One or more contact portions are supported by the body and configured to secure the optical fiber. An adhesive dispenser is disposed proximate the body. The adhesive dispenser is configured to dispense at least one adhesive to the optical fiber and the structure. A dispenser controller is operatively coupled to the adhesive dispenser. The dispenser controller is configured to control the adhesive dispenser.Type: ApplicationFiled: April 20, 2021Publication date: October 20, 2022Inventors: Qiushu Chen, Jacob N. Chamoun, Peter Kiesel
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Publication number: 20220334334Abstract: An apparatus has a cassette configured to hold optical fiber comprising one or more optical sensors. The cassette has a spool configured to one or more of extract and retract the optical fiber from the cassette. A pre-strain mechanism is configured to apply a predetermined pre-strain to the one or more optical sensors. An optical fiber installation tool is configured to mount the optical fiber comprising the one or more pre-strained optical sensors to a surface.Type: ApplicationFiled: April 20, 2021Publication date: October 20, 2022Inventors: Jacob N. Chamoun, Qiushu Chen, Peter Kiesel, Kyle Arakaki
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Publication number: 20220334336Abstract: An apparatus includes a cassette configured to hold optical fiber comprising one or more optical sensors. The cassette comprises a spool configured to one or more of extract and retract the optical fiber from the cassette. A fiber monitor is coupled to the cassette. The fiber monitor is configured to monitor at least one parameter of the optical fiber as the optical fiber is extracted from the cassette.Type: ApplicationFiled: April 20, 2021Publication date: October 20, 2022Inventors: Jacob N. Chamoun, Qiushu Chen, Peter Kiesel, Kyle Arakaki
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Patent number: 11460658Abstract: A cassette for optical fiber includes one or more optical sensors. The cassette has a spool for handling optical fiber. An adjustable shaft is disposed such that the spool is configured to rotate about the adjustable shaft. The adjustable shaft is configured to handle spools having different diameters. A spool controller is coupled to the adjustable shaft and configured to rotate the adjustable shaft to perform one or more of extract and retract the optical fiber. One or more bushings are disposed proximate the spool and are configured to prevent the optical fiber from jumping off the spool.Type: GrantFiled: April 20, 2021Date of Patent: October 4, 2022Assignee: Palo Alto Research Center IncorporatedInventors: Jacob N. Chamoun, Qiushu Chen, Peter Kiesel, Mark R. Teepe, Kyle Arakaki
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Publication number: 20220170846Abstract: An analyzing system includes a fluidic stream that guides an analyte in a detection area where the analyte emits or transmits light. One or more polarizing elements polarize the light into respective two or more different polarization components. One or more optical detectors receive the respective two or more polarization components and generate respective at least two signals in response. A processor is coupled to the optical detectors and configured to determine the polarization status of the light from the object based on the signals.Type: ApplicationFiled: December 1, 2020Publication date: June 2, 2022Inventors: Qiushu Chen, Peter Kiesel, Jacob N. Chamoun, Norman Nan Shi, Noble M. Johnson
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Patent number: 11207907Abstract: Formation of a multi-colored image in thermochromic material involves controlling operation of first, second, and third heat sources. The first heat source heats pixels of the thermochromic material to activate the pixels. The second and third heat sources are selectively controlled to heat different sets of pixels using neither, one, or both of the second and third heat sources.Type: GrantFiled: November 2, 2020Date of Patent: December 28, 2021Assignee: Palo Alto Research Center IncorporatedInventors: Fatemeh Nazly Pirmoradi, Christopher L. Chua, Kyle Arakaki, Jacob N. Chamoun
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Publication number: 20210053377Abstract: Formation of a multi-colored image in thermochromic material involves controlling operation of first, second, and third heat sources. The first heat source heats pixels of the thermochromic material to activate the pixels. The second and third heat sources are selectively controlled to heat different sets of pixels using neither, one, or both of the second and third heat sources.Type: ApplicationFiled: November 2, 2020Publication date: February 25, 2021Inventors: Fatemeh Nazly Pirmoradi, Christopher L. Chua, Kyle Arakaki, Jacob N. Chamoun
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Patent number: 10875343Abstract: Formation of a multi-colored image in thermochromic material involves controlling operation of first, second, and third heat sources. The first heat source heats pixels of the thermochromic material to activate the pixels. The second and third heat sources are selectively controlled to heat different sets of pixels using neither, one, or both of the second and third heat sources.Type: GrantFiled: December 6, 2018Date of Patent: December 29, 2020Assignee: Palo Alto Research Center IncorporatedInventors: Fatemeh Nazly Pirmoradi, Christopher L. Chua, Kyle Arakaki, Jacob N. Chamoun