Systems and methods for implementing selective electromagnetic energy filtering objects and coatings using selectably transmissive energy scattering layers

US11358370B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11358370-B2
Application numberUS-201916505684-A
CountryUS
Kind codeB2
Filing dateJul 8, 2019
Priority dateApr 14, 2015
Publication dateJun 14, 2022
Grant dateJun 14, 2022

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  1. Title

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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  7. Citations and related patents

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Abstract

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A system and method are provided for forming energy filter layers or shutter components, including energy scattering layers that are actively electrically switchable. The energy filters or shutter components are operable between at least a first mode in which the layers, and thus the presentation of the shutter components, appear substantially transparent when viewed from an energy/light incident side, and a second mode in which the layers, and thus the presentation of the energy filters or shutter components, appear opaque to the incident energy impinging on the energy incident side. The differing modes are selectable by electrically energizing, differentially energizing and/or de-energizing electric fields in a vicinity of the energy scattering layers. Refractive indices of transparent particles, and the transparent matrices in which the particles are fixed, are tunable according to the applied electric fields. The energy scattering layers may conceal a sensor such as a camera or photovoltaic cell.

First claim

Opening claim text (preview).

We claim: 1. A concealable sensor, comprising: an electromagnetic energy filtering structure for concealing a sensor, comprising: an energy scattering layer, comprising a plurality of substantially-transparent particles and a substantially-transparent matrix material that fixes the particles in a layer arrangement to form the energy scattering layer, the energy scattering layer having an energy-incident surface and an opposite surface; at least one transparent electrode positioned adjacent to one of the energy-incident surface or the opposite surface of the energy scattering layer; and a power source that generates an electrical field via the at least one transparent electrode; wherein portions of the energy scattering layer are configured to allow at least one first determined wavelength of electromagnetic energy to pass through the portion of the energy scattering layer subjected to effects from the generated electrical field, and to simultaneously cause at least one second determined wavelength of electromagnetic energy to be to be scattered; and a sensor disposed so as to receive said at least one first wavelength of electromagnetic energy impinging on said energy-incident surface and passing therethrough, after said first wavelength of electromagnetic energy has passed through said energy-incident surface; wherein said sensor is defined as being selected from the group consisting of a camera and a photovoltaic cell. 2. The concealable sensor of claim 1 , wherein said electromagnetic energy filtering structure further comprises at least one other transparent electrode positioned adjacent to the other one of the energy-incident surface or the opposite surface of the energy scattering layer, the power source generating the electrical field between the at least one transparent electrode and the at least one other transparent electrode. 3. The concealable sensor of claim 1 , a refractive index of at least a portion of the substantially-transparent matrix being modified by the generated electrical field between a first mode having a first refractive index and a second mode having a second refractive index. 4. The concealable sensor of claim 3 , the first refractive index rendering the energy scattering layer transparent at least in discrete portions in the first mode. 5. The concealable sensor of claim 3 , the particles being fixed in the matrix material in a non-homogeneous structure of the energy scattering layer, the particles being formed of at least two separate physical or material compositions, the non-homogeneous structure in the energy scattering layer comprising particles of a first one of the two separate physical or material compositions being fixed in the matrix material in first discrete portions and particles of a second one of the two separate physical or material compositions being fixed in the matrix in second discrete portions; and the first discrete portions and the second discrete portions exhibiting different second refractive indices in the second mode. 6. The concealable sensor of claim 3 , the at least one transparent electrode positioned on one of an energy-incident surface or the opposite surface of the energy scattering layer being formed to have a plurality of discrete electrode portions for inducing a plurality of separate electrical fields acting on the energy scattering layer, discrete portions of the energy scattering layer exhibiting different responses in the second mode. 7. The concealable sensor of claim 3 , the energy scattering layer in the second mode reflecting a same wavelength of incident light from the energy-incident surface in a manner that causes the energy-incident surface to appear as a single-color opaque surface. 8. The concealable sensor of claim 3 , the energy scattering layer in the second mode reflecting a first wavelength of incident light from first discrete portions of the energy-incident surface and at least one second wavelength of the incident light from one or more second discrete portions of the energy-incident surface in a manner that causes the energy-incident surface to appear as at least one of a multi-color or texturized opaque surface.

Assignees

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Classifications

  • as the main or only constituent of a layer, {which is} next to another layer of {the same or of} a {different material (next to a layer of a particular substance B32B9/045; next to a bituminous or tarry layer B32B11/046; next to a water setting substance layer B32B13/12; next to a metal layer B32B15/08; next to a glass layer B32B17/10; next to a layer formed of natural mineral fibres or particles B32B19/045; next to a wood layer B32B21/08; next to a cellulosic plastic layer B32B23/08; next to a natural or synthetic rubber layer B32B25/08)} · CPC title

  • Refractive · CPC title

  • Multiple coating on one surface · CPC title

  • B32B17/00Primary

    Layered products essentially comprising sheet glass, or glass, slag, or like fibres · CPC title

  • Photographic equipment or accessories · CPC title

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What does patent US11358370B2 cover?
A system and method are provided for forming energy filter layers or shutter components, including energy scattering layers that are actively electrically switchable. The energy filters or shutter components are operable between at least a first mode in which the layers, and thus the presentation of the shutter components, appear substantially transparent when viewed from an energy/light incide…
Who is the assignee on this patent?
Face Int Corp
What technology area does this patent fall under?
Primary CPC classification B32B17/00. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Jun 14 2022 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 11 related publications on this page (citations in our corpus or others sharing the same primary CPC).