Patents by Inventor Tom Westfall
Tom Westfall 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: 12616810Abstract: A patient ventilation interface has a throat body defining a venturi throat that is open to ambient air, a nasal pillow disposed around the venturi throat to define a plenum between the venturi throat and the nasal pillow, a jet nozzle arranged to output ventilation gas into the venturi throat, and a pressure sensing tube having a pressure sensing port positioned to be in fluid communication with the plenum. The nasal pillow may be an integral part of the throat body. An expected error in the sensed patient airway pressure Psense may be corrected by applying a correction factor Pdelta indexed by the sensed patient airway pressure Psense and a jet nozzle flow V?n of the jet nozzle. Delivery of the ventilation gas output by the jet nozzle may be controlled in response to the corrected patient airway pressure.Type: GrantFiled: April 4, 2022Date of Patent: May 5, 2026Assignee: HILL-ROM SERVICES PTE.LTD.Inventors: Gary John LaTorraca, Tom Westfall, Simon Jung
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Publication number: 20260034329Abstract: A method of controlling a portable gas source connected to a ventilator includes receiving, via a user interface, a mix setting corresponding to a user-selected percentage of oxygen in a mixture of oxygen and ambient air to be delivered by the ventilator, determining, based on a measured airflow demand on the ventilator, a maximum percentage of oxygen in the mixture at which the mixture still meets the measured airflow demand, and overriding the mix setting with the maximum mix value in response to the maximum mix value being less than the user-selected percentage.Type: ApplicationFiled: May 16, 2025Publication date: February 5, 2026Inventors: Tom Westfall, Gary LaTorraca
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Patent number: 12383693Abstract: A variable throat jet venturi for delivering ventilation gas to a patient includes a jet nozzle, a deformable throat body arranged to receive ventilation gas output by the jet nozzle and defining a gas inlet and a gas outlet, and a housing containing the deformable throat body. The housing may define an entrainment opening which is open to ambient air and a pilot pressure port for pressurizing a plenum between an outer wall of the deformable throat body and an inner wall of the housing. A pilot pressure line may be fluidly coupled to the pilot pressure port. A controller may be programmed to energize the pilot pressure line to constrict the deformable throat body during an exhalation phase of positive end-expiratory pressure (PEEP) therapy.Type: GrantFiled: December 28, 2021Date of Patent: August 12, 2025Assignee: HILL-ROM SERVICES PTE. LTD.Inventors: Gary John LaTorraca, Tom Westfall
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Patent number: 12178961Abstract: A multifunctional ventilator interface for selectively providing ventilation and continuous oxygen therapy to a patient includes tubing defining a high-pressure gas lumen, a low-pressure gas lumen, and a pressure sensing lumen, a manifold housing defining a gas pathway, a jet pump housing coupled to the manifold housing and defining an entrainment port, a sleeve rotatably engaged to the jet pump housing, and a jet nozzle defining high- and low-pressure jet nozzle outlet ports operative to introduce gas from the high- and low-pressure gas lumens into the gas pathway.Type: GrantFiled: October 20, 2021Date of Patent: December 31, 2024Assignee: HILL-ROM SERVICES PTE. LTD.Inventors: Timothy Fitch, Tom Westfall
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Publication number: 20240408343Abstract: An oxygen concentrator includes one or more adsorbent sieve beds operable to remove nitrogen from air to produce concentrated oxygen gas at respective outlets thereof, a product tank fluidly coupled to the respective outlets of the sieve bed(s), a compressor operable to pressurize ambient air, one or more sieve bed flow paths from the compressor to respective inlets of the sieve bed(s), a bypass flow path from the compressor to the product tank that bypasses the sieve bed(s), and a valve unit operable to selectively allow flow of pressurized ambient air from the compressor along the one or more sieve bed flow paths and along the bypass flow path in response to a control signal. The valve unit may be controlled in response to a command issued by a ventilator based on a calculated or estimated total flow of gas and entrained air or % FiO2 of a patient.Type: ApplicationFiled: August 20, 2024Publication date: December 12, 2024Inventors: Tom Westfall, Enrico Brambilla
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Patent number: 12102767Abstract: An oxygen concentrator includes one or more adsorbent sieve beds operable to remove nitrogen from air to produce concentrated oxygen gas at respective outlets thereof, a product tank fluidly coupled to the respective outlets of the sieve bed(s), a compressor operable to pressurize ambient air, one or more sieve bed flow paths from the compressor to respective inlets of the sieve bed(s), a bypass flow path from the compressor to the product tank that bypasses the sieve bed(s), and a valve unit operable to selectively allow flow of pressurized ambient air from the compressor along the one or more sieve bed flow paths and along the bypass flow path in response to a control signal. The valve unit may be controlled in response to a command issued by a ventilator based on a calculated or estimated total flow of gas and entrained air or % FiO2 of a patient.Type: GrantFiled: February 14, 2023Date of Patent: October 1, 2024Assignee: Breathe Technologies, Inc.Inventors: Tom Westfall, Enrico Brambilla
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Publication number: 20240033161Abstract: A high-frequency chest wall oscillation (HFCWO) system includes a garment configured to be worn around a chest of a user. At least one fluid pod is housed by the garment and is configured to receive a fluid. The at least one fluid pod includes a housing configured to be pulsated by the fluid.Type: ApplicationFiled: June 27, 2023Publication date: February 1, 2024Inventors: Gee Han Png, Yaolong Lou, Aaron Alexander Ayu, Barry Eng Keong Tay, Tom Westfall, Deny D. Barilea
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Publication number: 20230181861Abstract: An oxygen concentrator includes one or more adsorbent sieve beds operable to remove nitrogen from air to produce concentrated oxygen gas at respective outlets thereof, a product tank fluidly coupled to the respective outlets of the sieve bed(s), a compressor operable to pressurize ambient air, one or more sieve bed flow paths from the compressor to respective inlets of the sieve bed(s), a bypass flow path from the compressor to the product tank that bypasses the sieve bed(s), and a valve unit operable to selectively allow flow of pressurized ambient air from the compressor along the one or more sieve bed flow paths and along the bypass flow path in response to a control signal. The valve unit may be controlled in response to a command issued by a ventilator based on a calculated or estimated total flow of gas and entrained air or % FiO2 of a patient.Type: ApplicationFiled: February 14, 2023Publication date: June 15, 2023Inventors: Tom Westfall, Enrico Brambilla
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Patent number: 11642486Abstract: A portable oxygen concentrator retrofit system and method in which an existing portable oxygen concentrator may be retrofitted to output an enriched oxygen gas at a flow rate suitable for use in a patient ventilation system without the need for an external source of compressed gas.Type: GrantFiled: April 29, 2020Date of Patent: May 9, 2023Assignee: BREATHE TECHNOLOGIES, INC.Inventors: Tom Westfall, Enrico Brambilla
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Patent number: 11607519Abstract: An oxygen concentrator includes one or more adsorbent sieve beds operable to remove nitrogen from air to produce concentrated oxygen gas at respective outlets thereof, a product tank fluidly coupled to the respective outlets of the sieve bed(s), a compressor operable to pressurize ambient air, one or more sieve bed flow paths from the compressor to respective inlets of the sieve bed(s), a bypass flow path from the compressor to the product tank that bypasses the sieve bed(s), and a valve unit operable to selectively allow flow of pressurized ambient air from the compressor along the one or more sieve bed flow paths and along the bypass flow path in response to a control signal. The valve unit may be controlled in response to a command issued by a ventilator based on a calculated or estimated total flow of gas and entrained air or % FiO2 of a patient.Type: GrantFiled: May 14, 2020Date of Patent: March 21, 2023Assignee: Breathe Technologies, Inc.Inventors: Tom Westfall, Enrico Brambilla
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Publication number: 20220339378Abstract: A patient ventilation interface has a throat body defining a venturi throat that is open to ambient air, a nasal pillow disposed around the venturi throat to define a plenum between the venturi throat and the nasal pillow, a jet nozzle arranged to output ventilation gas into the venturi throat, and a pressure sensing tube having a pressure sensing port positioned to be in fluid communication with the plenum. The nasal pillow may be an integral part of the throat body. An expected error in the sensed patient airway pressure Psense may be corrected by applying a correction factor Pdelta indexed by the sensed patient airway pressure Psense and a jet nozzle flow V?n of the jet nozzle. Delivery of the ventilation gas output by the jet nozzle may be controlled in response to the corrected patient airway pressure.Type: ApplicationFiled: April 4, 2022Publication date: October 27, 2022Inventors: Gary John LaTorraca, Tom Westfall, Simon Jung
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Publication number: 20220249797Abstract: A variable throat jet venturi for delivering ventilation gas to a patient includes a jet nozzle, a deformable throat body arranged to receive ventilation gas output by the jet nozzle and defining a gas inlet and a gas outlet, and a housing containing the deformable throat body. The housing may define an entrainment opening which is open to ambient air and a pilot pressure port for pressurizing a plenum between an outer wall of the deformable throat body and an inner wall of the housing. A pilot pressure line may be fluidly coupled to the pilot pressure port. A controller may be programmed to energize the pilot pressure line to constrict the deformable throat body during an exhalation phase of positive end-expiratory pressure (PEEP) therapy.Type: ApplicationFiled: December 28, 2021Publication date: August 11, 2022Inventors: Gary John LaTorraca, Tom Westfall
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Publication number: 20220126052Abstract: A multifunctional ventilator interface for selectively providing ventilation and continuous oxygen therapy to a patient includes tubing defining a high-pressure gas lumen, a low-pressure gas lumen, and a pressure sensing lumen, a manifold housing defining a gas pathway, a jet pump housing coupled to the manifold housing and defining an entrainment port, a sleeve rotatably engaged to the jet pump housing, and a jet nozzle defining high- and low-pressure jet nozzle outlet ports operative to introduce gas from the high- and low-pressure gas lumens into the gas pathway.Type: ApplicationFiled: October 20, 2021Publication date: April 28, 2022Inventors: Timothy Fitch, Tom Westfall
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Publication number: 20200368482Abstract: An oxygen concentrator includes one or more adsorbent sieve beds operable to remove nitrogen from air to produce concentrated oxygen gas at respective outlets thereof, a product tank fluidly coupled to the respective outlets of the sieve bed(s), a compressor operable to pressurize ambient air, one or more sieve bed flow paths from the compressor to respective inlets of the sieve bed(s), a bypass flow path from the compressor to the product tank that bypasses the sieve bed(s), and a valve unit operable to selectively allow flow of pressurized ambient air from the compressor along the one or more sieve bed flow paths and along the bypass flow path in response to a control signal. The valve unit may be controlled in response to a command issued by a ventilator based on a calculated or estimated total flow of gas and entrained air or % FiO2 of a patient.Type: ApplicationFiled: May 14, 2020Publication date: November 26, 2020Inventors: Tom Westfall, Enrico Brambilla
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Publication number: 20200360644Abstract: A portable oxygen concentrator retrofit system and method in which an existing portable oxygen concentrator may be retrofitted to output an enriched oxygen gas at a flow rate suitable for use in a patient ventilation system without the need for an external source of compressed gas.Type: ApplicationFiled: April 29, 2020Publication date: November 19, 2020Inventors: Tom Westfall, Enrico Brambilla