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公开(公告)号:US20250025586A1
公开(公告)日:2025-01-23
申请号:US18908313
申请日:2024-10-07
Applicant: Vyv, Inc.
Inventor: Cori Winslow , Robert Barron , Kasia Kozak , Aram Kuzmak
Abstract: A device configured to inactivate microorganisms may include a container comprising at least one surface and an internal volumetric space, a removable cover comprising at least one substrate facing into the internal volumetric space, and a first array of light emitters disposed on the substrate and configured to emit a first light, within a wavelength range of 380-420 nanometers (nm) and having a first intensity, into the internal volumetric space, wherein the first intensity comprises an intensity sufficient to initiate inactivation of microorganisms, and wherein the first light creates a multi-dimensional space of disinfection associated with the internal volumetric space.
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公开(公告)号:US20230043115A1
公开(公告)日:2023-02-09
申请号:US17864204
申请日:2022-07-13
Applicant: Vyv, Inc.
Inventor: Robert Barron , Cori Winslow , Nicholas Jones
Abstract: Disclosed herein is a multiple light emitter device which inactivates microorganisms. The device includes at least two light emitters and at least one light-converting material arranged to convert at least a portion of light from the light emitters. Any unconverted light emitted from the light emitters and converted light emitted from the at least one light-converting material mixes to form a combined light, the combined light being white. In one aspect, the light emitters include at least one blue light emitter and at least one violet light emitter. In another aspect, the light emitters include one blue light emitter and one emitter within the range of approximately yellow to infrared light.
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公开(公告)号:US12115267B2
公开(公告)日:2024-10-15
申请号:US18208439
申请日:2023-06-12
Applicant: Vyv, Inc.
Inventor: Cori Winslow , Robert Barron , Kasia Kozak , Aram Kuzmak
CPC classification number: A61L2/084 , A61L2/26 , A61L2202/11 , A61L2202/121 , A61L2202/122
Abstract: A system may include an area configured to accept an object for disinfection, a first light emitter configured to emit a first light within a wavelength range of 380-420 nanometers (nm) and having a first intensity, and a second light emitter configured to emit a second light within a wavelength range of 380-420 nanometers (nm) and having a second intensity, wherein the first intensity and the second intensity comprise an intensity sufficient to initiate inactivation of microorganisms, and wherein the first light and the second light create a multi-dimensional space of disinfection.
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公开(公告)号:US20240189464A1
公开(公告)日:2024-06-13
申请号:US18544661
申请日:2023-12-19
Applicant: Vyv, Inc.
Inventor: Robert Barron , Cori Winslow , Jorel Lalicki , James Peterson
CPC classification number: A61L2/084 , A61L2/24 , A61L2202/11 , A61L2202/14
Abstract: Methods and systems involving disinfecting light subcomponents are provided. An example system may include a substrate with one or more light emitters disposed on the substrate. The one or more light emitters may be configured to inactivate microorganisms on a surface by emitting light. The light may comprise a proportion of spectral energy of the light, measured in a 380 nanometers (nm) to 420 nm wavelength range. The light may comprise an irradiance at the surface sufficient to initiate inactivation of microorganisms on the surface.
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公开(公告)号:US20230405171A1
公开(公告)日:2023-12-21
申请号:US18242332
申请日:2023-09-05
Applicant: Vyv, Inc.
Inventor: Jorel Lalicki , Robert Barron , Cori Joslyn Winslow , Yichuan Wang
CPC classification number: A61L2/24 , A61L2/084 , A61L2/10 , A61L9/20 , A61L2/28 , A61L2202/11 , A61L2202/14 , G01N31/226
Abstract: Radiant energy control systems, methods, and apparatuses are provided. An example light emitting device may comprise a sensor operable to detect whether a space is occupied, and a controller in communication with the sensor and operable to cause output, via a first light emitter white light comprising a wavelength range of 380 to 420 nm, and cause output, via a second light emitter a non-white light comprising a wavelength range of 380 to 420 nm.
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公开(公告)号:US20230165983A1
公开(公告)日:2023-06-01
申请号:US17957289
申请日:2022-09-30
Applicant: Vyv, Inc.
Inventor: Cori Winslow , Robert Barron , Kasia Kozak , Aram Kuzmak
CPC classification number: A61L2/084 , A61L2/24 , A61L2202/11 , A61L2202/14
Abstract: Devices, methods, and systems for disinfection with light are disclosed. In some examples, a lighting source is operable to provide light at wavelength range of about 380 nm - 420 nm with an irradiance and/or dosage sufficient for disinfection. One or more sensors and a control system may be used to control operation of the lighting source, such as by adjusting the lighting source in response to various inputs.
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公开(公告)号:US20240226353A1
公开(公告)日:2024-07-11
申请号:US18404419
申请日:2024-01-04
Applicant: Vyv, Inc.
Inventor: Cori Winslow , Jonas Ciemny , Edward Kiegle
IPC: A61L2/10 , A61L2/08 , A61L2/26 , D06F23/02 , D06F33/43 , D06F34/06 , D06F34/20 , D06F37/04 , D06F37/26 , D06F39/14 , D06F103/24 , D06F105/54 , D06F105/56
CPC classification number: A61L2/10 , A61L2/084 , A61L2/26 , D06F23/02 , D06F33/43 , D06F34/06 , D06F34/20 , D06F37/04 , D06F37/266 , D06F39/14 , A61L2202/11 , A61L2202/14 , D06F2103/24 , D06F2105/54 , D06F2105/56
Abstract: A system or device configured to disinfect an appliance may include at least one or more light emitters configured to emit disinfecting light. The system may be further configured to direct the disinfecting light to illuminate a surface of an appliance.
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公开(公告)号:US12018801B2
公开(公告)日:2024-06-25
申请号:US18207562
申请日:2023-06-08
Applicant: Vyv, Inc.
Inventor: Robert Barron , Jorel Lalicki , James W. Peterson , Nicholas Jones , Cori J. Winslow
CPC classification number: F21K9/64 , A61L2/082 , A61L2/084 , H01L33/502 , H05B45/20 , A61L2202/11 , F21V9/30 , F21Y2115/10 , H01L33/52
Abstract: Methods, systems, and devices for inactivating microorganisms are disclosed. An example light emitting device that inactivates microorganisms on a surface comprises a light emitter configured to emit a first light comprising a first wavelength in a range of 380 nanometers (nm) to 420 nm, a first light-converting material configured to convert a first portion of the first light to at least a second light comprising a second wavelength different from the first wavelength, and a second light-converting material configured to convert a second portion of the first light to at least a third light comprising a third wavelength different from the first wavelength, wherein at least the first light, the second light, and the third light mix to form a disinfecting white light.
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公开(公告)号:US11878084B2
公开(公告)日:2024-01-23
申请号:US16577766
申请日:2019-09-20
Applicant: Vyv, Inc.
Inventor: Robert Barron , Cori Winslow , Jorel Lalicki , James Peterson
CPC classification number: A61L2/084 , A61L2/24 , A61L2202/11 , A61L2202/14
Abstract: Methods, systems, and apparatuses involving disinfecting light subcomponents are provided. An example system comprises a substrate with one or more light emitters disposed on the substrate. The one or more light emitters may be configured to inactivate microorganisms on a surface by emitting light. The light may comprise a proportion of spectral energy of the light, measured in a 380 nanometers (nm) to 420 nm wavelength range, greater than 50%. The light may comprise a full width half max (FWHM) emission spectrum of less than 20 nm and centered at a wavelength of approximately 405 nm to concentrate a spectral energy of the light and minimize energy associated with wavelengths that bleed into an ultraviolet wavelength range. The light may comprise an irradiance at the surface sufficient to initiate inactivation of microorganisms on the surface.
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公开(公告)号:US11639897B2
公开(公告)日:2023-05-02
申请号:US16833082
申请日:2020-03-27
Applicant: Vyv, Inc.
Inventor: Robert Barron , Cori J. Winslow
Abstract: Systems and methods for bacterial load sensing devices are disclosed. An example contamination sensing device may comprise a body, a light emitter disposed on the body and configured to emit an excitation wavelength of light toward a surface, a sensor disposed on the body, configured to detect light, and directed toward the surface, and a filter adjuster configured to determine, based on the excitation wavelength of light, a filter configured to remove light outside of an emission wavelength range, wherein the emission wavelength range corresponds to wavelengths of light emitted by contamination upon exposure to the excitation wavelength of light, and adjustably move the filter in front of the sensor.
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