Patents Assigned to Serveron Corporation
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Patent number: 10495623Abstract: A gas analysis system for analyzing dissolved gas in electrical insulating fluid includes a trap that selectively captures or releases one or more gases, a temperature control device for controlling a temperature of the trap that determining whether the trap is in a gas capture mode or a gas release mode, and a gas sensor for analyzing the gas that was not selectively captured by the trap. The trap may be heated to a first temperature that enables the gas to be adsorbed by the trap, and the trap may be heated to a second temperature that enables the gas to be desorbed by the trap. The gas analysis system may further include a gas flow diverter for directing gas flow past the trap. The captured or released gases may be interfering matrix gases. A method and analyzer for analyzing dissolved gas in an electrical insulating fluid are also disclosed.Type: GrantFiled: November 15, 2016Date of Patent: December 3, 2019Assignee: Serveron CorporationInventors: John Hinshaw, Steven Mahoney, Thomas Waters
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Patent number: 10119954Abstract: A gas monitoring apparatus and system that provides for reliable and accurate monitoring of gaseous hydrogen and other compounds in dielectric oil. The apparatus provides an environment for and is used in conjunction with metal oxide semiconductor sensors. Thermal conditioning zones for oil provide an environment in which variations in oil temperature and ambient temperature are eliminated to insure that analytical data are not affected by these environmental conditions.Type: GrantFiled: December 31, 2015Date of Patent: November 6, 2018Assignee: Serveron CorporationInventors: Steven Mahoney, Thomas Waters
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Publication number: 20160116451Abstract: A gas monitoring apparatus and system that provides for reliable and accurate monitoring of gaseous hydrogen and other compounds in dielectric oil. The apparatus provides an environment for and is used in conjunction with metal oxide semiconductor sensors. Thermal conditioning zones for oil provide an environment in which variations in oil temperature and ambient temperature are eliminated to insure that analytical data are not affected by these environmental conditions.Type: ApplicationFiled: December 31, 2015Publication date: April 28, 2016Applicant: Serveron CorporationInventors: Steven Mahoney, Thomas Waters
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Patent number: 9239322Abstract: A gas monitoring apparatus and system that provides for reliable and accurate monitoring of gaseous hydrogen and other compounds in dielectric oil. The apparatus provides an environment for and is used in conjunction with metal oxide semiconductor sensors. Thermal conditioning zones for oil provide an environment in which variations in oil temperature and ambient temperature are eliminated to insure that analytical data are not affected by these environmental conditions.Type: GrantFiled: January 23, 2012Date of Patent: January 19, 2016Assignee: Serveron CorporationInventors: Steven Mahoney, Thomas Waters
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Patent number: 9194857Abstract: A gas monitoring apparatus and system that provides for reliable and accurate monitoring of gaseous hydrogen and other compounds in dielectric oil. The apparatus provides an environment for and is used in conjunction with metal oxide semiconductor sensors. Apparatus for creating a fluid-tight environment for the metal oxide semiconductor and a heating manifold are detailed.Type: GrantFiled: May 8, 2013Date of Patent: November 24, 2015Assignee: Serveron CorporationInventor: Steven Mahoney
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Patent number: 8999723Abstract: A reliable, low cost device for determining when dangerous levels of hydrogen gas have been generated in a transformer is disclosed. The hydrogen indicator is defined by a module assembly that threads into either the headspace or into the oil-filled body of a transformer. The module has an open interior that contains a film that incorporates a hydrogen-sensitive chemochromic indicator. The indicator film is visible through a lens. When the film has been exposed to hydrogen, chemical changes in the chemochromic indicator cause the film to change color—the color change is immediately visible through the lens.Type: GrantFiled: April 16, 2014Date of Patent: April 7, 2015Assignee: Serveron CorporationInventor: Steven Mahoney
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Publication number: 20140329328Abstract: A reliable, low cost device for determining when dangerous levels of hydrogen gas have been generated in a transformer is disclosed. The hydrogen indicator is defined by a module assembly that threads into either the headspace or into the oil-filled body of a transformer. The module has an open interior that contains a film that incorporates a hydrogen-sensitive chemochromic indicator. The indicator film is visible through a lens. When the film has been exposed to hydrogen, chemical changes in the chemochromic indicator cause the film to change color—the color change is immediately visible through the lens.Type: ApplicationFiled: April 16, 2014Publication date: November 6, 2014Applicant: Serveron CorporationInventor: Steven Mahoney
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Patent number: 8142547Abstract: A method for extraction of gas from liquid provides for reliable and accurate extraction of gases dissolved in fluids and routing the extracted gas to an analytical instrument. An extraction module comprises one or more fluorosilicone membranes molded into the shape of a flattened disk. The membranes are retained in a housing in a spaced apart relationship. The membrane is permeable to target gas(es), but not to the fluid. Porous support members support the membranes and prevent damage to them and the housing defines separate fluid flow paths for the fluid and the gas extracted from it. Fluid is passed over the membrane in a first fluid phase; target compounds in the fluid diffuse across the membrane to a second fluid phase until equilibrium is achieved.Type: GrantFiled: November 15, 2011Date of Patent: March 27, 2012Assignee: Serveron CorporationInventors: Steven Mahoney, Thomas Waters
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Publication number: 20120055332Abstract: A method for extraction of gas from liquid provides for reliable and accurate extraction of gases dissolved in fluids and routing the extracted gas to an analytical instrument. An extraction module comprises one or more fluorosilicone membranes molded into the shape of a flattened disk. The membranes are retained in a housing in a spaced apart relationship. The membrane is permeable to target gas(es), but not to the fluid. Porous support members support the membranes and prevent damage to them and the housing defines separate fluid flow paths for the fluid and the gas extracted from it. Fluid is passed over the membrane in a first fluid phase; target compounds in the fluid diffuse across the membrane to a second fluid phase until equilibrium is achieved.Type: ApplicationFiled: November 15, 2011Publication date: March 8, 2012Applicant: SERVERON CORPORATIONInventors: Steven Mahoney, Thomas Waters
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Patent number: 8075675Abstract: A gas extraction apparatus provides for reliable and accurate extraction of gases dissolved in fluids and routing the extracted gas to an analytical instrument. An extraction module comprises one or more fluorosilicone membranes molded into the shape of a flattened disk. The membranes are retained in a housing in a spaced apart relationship. The membrane is permeable to target gas(es), but not to the fluid. Porous support members support the membranes and prevent damage to them and the housing defines separate fluid flow paths for the fluid and the gas extracted from it.Type: GrantFiled: June 12, 2008Date of Patent: December 13, 2011Assignee: Serveron CorporationInventors: Steven Mahoney, Thomas Waters
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Publication number: 20090308246Abstract: A gas extraction apparatus provides for reliable and accurate extraction of gases dissolved in fluids and routing the extracted gas to an analytical instrument. An extraction module comprises one or more fluorosilicone membranes molded into the shape of a flattened disk. The membranes are retained in a housing in a spaced apart relationship. The membrane is permeable to target gas(es), but not to the fluid. Porous support members support the membranes and prevent damage to them and the housing defines separate fluid flow paths for the fluid and the gas extracted from it.Type: ApplicationFiled: June 12, 2008Publication date: December 17, 2009Applicant: SERVERON CORPORATIONInventors: Steven Mahoney, Thomas Waters
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Patent number: 7377291Abstract: A multiport rotary valve has a stator with plural flow paths and a rotary valve plate having plural flow channels. The rotary valve plate defines a rotor that rotates relative to the stator to define unique plural fluid pathways from the stator, through the valve plate, and returning through the stator. Rotation of the rotary valve plate is controlled by a microprocessor, which includes an optical sensor to determine the position of the rotor.Type: GrantFiled: December 28, 2005Date of Patent: May 27, 2008Assignee: Serveron CorporationInventors: Jim Moon, John Hinshaw, Steve Mahoney
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Patent number: 7347080Abstract: A thermal conductivity detector (TCD) utilizes a modular thermistor assembly that mounts to the TCD body. The thermistor assembly is easily replaceable in the TCD. Within the TCD, a thermistor bead is always held in the same relative location in a gas flow path, which is designed to produce laminar, low velocity gas flow across the thermistor bead. Two TCDs, each having a heater, are mounted in an insulated enclosure. The heaters are activated to bring the TCDs to operating temperature, and are then deactivated during analysis.Type: GrantFiled: December 23, 2005Date of Patent: March 25, 2008Assignee: Serveron CorporationInventors: Steve Mahoney, John Hinshaw
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Patent number: 6391096Abstract: A tubular membrane extractor column is connected to an oil filled electrical component such as a transformer. Fault gases dissolved in the transformer oil are extracted from the oil in the separator and are isolated in a second phase. Oil and second phase gas are circulated in separate flow paths until equilibrium is reached. Equilibrated gas is routed to a gas chromatograph or other analytical instrument requiring controlled fluid flow, and which incorporates a manifold assembly that eliminates the need for many of the external fittings and connections required in the instrument. A manifold block has plural fluid flow paths formed therethrough to route fluids to selected components. A collar mates to the block and adapts to a rotary injection valve to provide the continued fluid paths from the block to the injector valve and the other components of the instrument.Type: GrantFiled: June 9, 2000Date of Patent: May 21, 2002Assignee: Serveron CorporationInventors: Thomas Waters, Raymond Bushnell
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Patent number: 6365105Abstract: A gas chromatograph or other analytical instrument requiring controlled fluid flow incorporates a manifold assembly that eliminates the need for many of the external fittings and connections required in the instrument. A manifold block has plural fluid flow paths formed therethrough to route fluids to selected components. A collar mates to the block and adapts to a rotary injection valve to provide the continued fluid paths from the block to the injector valve and the other components of the instrument.Type: GrantFiled: March 17, 2000Date of Patent: April 2, 2002Assignee: Serveron CorporationInventors: Thomas Waters, Raymond Bushnell