Patents by Inventor Uwe KANIGOWSKI
Uwe KANIGOWSKI 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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Publication number: 20220076939Abstract: A dielectric barrier VUV excimer lamp has an elongated dielectric tube for holding an excimer-forming gas, a first electrode disposed within the dielectric tube, and a second electrode arranged outside of the dielectric tube. The first electrode is a wire electrode disposed along a centre axis of the dielectric tube, axially symmetric with respect to the centre axis, and physically connected to each end of the dielectric tube. The dielectric barrier VUV excimer lamp is an AC dielectric barrier discharge VUV excimer lamp or the dielectric barrier VUV excimer lamp is a pulsed DC dielectric barrier discharge VUV excimer lamp. A photochemical system has the dielectric barrier VUV excimer lamp. An excimer lamp system has the dielectric barrier VUV excimer lamp, and also has a power supply to supply electric power to the first electrode and the second electrode.Type: ApplicationFiled: November 5, 2019Publication date: March 10, 2022Applicant: Xylem Europe GmbHInventors: Manfred Salvermoser, Nicole Brüggemann, Reiner Fietzek, Ralf Fiekens, Uwe Kanigowski, Andre Wojciechowski
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Publication number: 20220076938Abstract: A VUV excimer lamp has a dielectric tube for holding an excimer-forming gas, a first electrode disposed within the dielectric tube, and a second electrode arranged outside of the dielectric tube. The first electrode has an outer diameter less than 0.5 mm, is elongated, and includes at least one thin wire with an outer diameter between 0.02 mm and 0.4 mm. The thin wire is an elongated thin wire, and is substantially straight and defines a straight axis of elongation. A photochemical system has the VUV excimer lamp. An excimer lamp system has the VUV excimer lamp, and also has a power supply to supply AC electric power to the first electrode and the second electrode.Type: ApplicationFiled: November 5, 2019Publication date: March 10, 2022Applicant: Xylem Europe GmbHInventors: Manfred Salvermoser, Nicole Brüggemann, Reiner Fietzek, Ralf Fiekens, Uwe Kanigowski, Andre Wojciechowski
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Patent number: 11183380Abstract: A germicidal UV amalgam lamp with an elongated tubular lamp body and at least two filaments located on opposite ends of the lamp body. The lamp body is hermetically sealed with a pinch-sealed portion at both opposite ends, confining a gas volume in which a gas discharge can be produced along a discharge path between the filaments. Each filament has two electrical connectors, each including an internal portion connected to the filament and pinch-sealed into the lamp body. Each connector also includes an external portion located outside the lamp body for electrical connection of the lamp to a controlled power supply. The pinch-sealed portion bears a socket with an electrical temperature sensor and at least two electrical connections mounted to the socket. The at least two electrical connections of the temperature sensor are connected in parallel to the electrical connectors of the filament.Type: GrantFiled: January 24, 2019Date of Patent: November 23, 2021Inventors: Dirk Riepe, Uwe Kanigowski, Jan Boris Loesenbeck, Sven Kaemmerer
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Publication number: 20210057205Abstract: A germicidal UV amalgam lamp with an elongated tubular lamp body and at least two filaments located on opposite ends of the lamp body. The lamp body is hermetically sealed with a pinch-sealed portion at both opposite ends, confining a gas volume in which a gas discharge can be produced along a discharge path between the filaments. Each filament has two electrical connectors, each including an internal portion connected to the filament and pinch-sealed into the lamp body. Each connector also includes an external portion located outside the lamp body for electrical connection of the lamp to a controlled power supply. The pinch-sealed portion bears a socket with an electrical temperature sensor and at least two electrical connections mounted to the socket. The at least two electrical connections of the temperature sensor are connected in parallel to the electrical connectors of the filament.Type: ApplicationFiled: January 24, 2019Publication date: February 25, 2021Applicant: Xylem Europe GmbHInventors: Dirk Riepe, Uwe Kanigowski, Jan Boris Loesenbeck, Sven Kaemmerer
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Patent number: 10593536Abstract: An ultraviolet mercury low-pressure amalgam lamp includes a tube having a first end and a second end, a first electrode placed in the first end of the tube, and a second electrode placed in the second end of the tube, whereby when the lamp is energized a discharge path is formed between the first and second electrodes. At least one amalgam deposit is adjacent to one of the first and second electrodes out of the discharge path between the first and second electrodes. The tube has at least one constriction, wherein the at least one amalgam deposit is placed behind the constriction with respect to the discharge path such that the at least one amalgam deposit is protected by the constriction from the heat emitted by the electrodes.Type: GrantFiled: July 7, 2017Date of Patent: March 17, 2020Assignee: XYLEM IP MANAGEMENT S.À R.L.Inventors: Andre Wojciechowski, Michael Lang, Uwe Kanigowski
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Publication number: 20190244802Abstract: An ultraviolet mercury low-pressure amalgam lamp includes a tube having a first end and a second end, a first electrode placed in the first end of the tube, and a second electrode placed in the second end of the tube, whereby when the lamp is energized a discharge path is formed between the first and second electrodes. At least one amalgam deposit is adjacent to one of the first and second electrodes out of the discharge path between the first and second electrodes. The tube has at least one constriction, wherein the at least one amalgam deposit is placed behind the constriction with respect to the discharge path such that the at least one amalgam deposit is protected by the constriction from the heat emitted by the electrodes.Type: ApplicationFiled: July 7, 2017Publication date: August 8, 2019Applicant: Xylem IP Management S.à r.l.Inventors: Andre Wojciechowski, Michael Lang, Uwe Kanigowski
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Patent number: 10254221Abstract: Method for determining the UV transmittance of water in a UV disinfection plant, through which water flows, wherein the UV disinfection plant has a plurality of radiator arrangements, each with a UV radiation source, a sleeve tube which surrounds the UV radiation source and which has an end face at an open end, and with a UV-C sensor which detects the UV radiation emerging from the sleeve tube without the influence of the water, and with at least one further UV sensor which is arranged at a distance from the sleeve tubes of the radiator arrangements, wherein the method includes the following steps: measuring the UV radiant power emerging from the sleeve tube; measuring an amount of the transmitted radiant power by the further UV sensor; and determining the transmittance of the water by an amount of the emerged radiant power and of the transmitted radiant power.Type: GrantFiled: January 15, 2016Date of Patent: April 9, 2019Assignee: XYLEM IP MANAGEMENT S.À R.L.Inventors: Friedhelm Krüger, Uwe Kanigowski
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Patent number: 10221081Abstract: An emitter arrangement includes a UV irradiation source, a cladding tube surrounding the UV irradiation source, and a UV-C sensor. The cladding tube has an end face on an open end. The UV-C sensor has a sensitive area, wherein the UV-C sensor is in optical connection with the end face of the cladding tube, so that the sensitive area of the UV-C sensor can detect the UV irradiation emerging from the end face of the cladding tube during the operation of the UV irradiation source.Type: GrantFiled: October 22, 2015Date of Patent: March 5, 2019Assignee: XYLEM IP MANAGEMENT S.ÀR.L.Inventors: Friedhelm Krüger, Uwe Kanigowski
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Publication number: 20180141830Abstract: An emitter arrangement includes a UV irradiation source, a cladding tube surrounding the UV irradiation source, and a UV-C sensor. The cladding tube has an end face on an open end. The UV-C sensor has a sensitive area, wherein the UV-C sensor is in optical connection with the end face of the cladding tube, so that the sensitive area of the UV-C sensor can detect the UV irradiation emerging from the end face of the cladding tube during the operation of the UV irradiation source.Type: ApplicationFiled: October 22, 2015Publication date: May 24, 2018Applicant: XYLEM IP MANAGEMENT S.À R.L.Inventors: Friedhelm KRÜGER, Uwe KANIGOWSKI
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Publication number: 20180011019Abstract: Method for determining the UV transmittance of water in a UV disinfection plant, through which water flows, wherein the UV disinfection plant has a plurality of radiator arrangements, each with a UV radiation source, a sleeve tube which surrounds the UV radiation source and which has an end face at an open end, and with a UV-C sensor which detects the UV radiation emerging from the sleeve tube without the influence of the water, and with at least one further UV sensor which is arranged at a distance from the sleeve tubes of the radiator arrangements, wherein the method includes the following steps: measuring the UV radiant power emerging from the sleeve tube; measuring an amount of the transmitted radiant power by the further UV sensor; and determining the transmittance of the water by an amount of the emerged radiant power and of the transmitted radiant power.Type: ApplicationFiled: January 15, 2016Publication date: January 11, 2018Applicant: XYLEM IP MANAGEMENT S.À.R.L.Inventors: Friedhelm KRÜGER, Uwe KANIGOWSKI