IP Library Patent Application 15823401
Patent Application
App. No. 15/823,401

THERMALLY AND ELECTRICALLY SWITCHED WINDOWS FOR COMBINED VISIBLE AND INFRARED LIGHT ATTENUATION

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Quick Facts
Patent No.
US None
App. No.
15/823,401
Abstract

Thermally and electrically driven dynamic filters for smart windows are configured to filter electromagnetic radiation in the infrared range of wavelengths. Some thermochromic filters embodiments are configured to filter both electromagnetic radiation in the infrared range of wavelengths and electromagnetic radiation in the visible range of wavelengths.

Claims (39)

1 . A filter assembly, comprising:

a first chiral nematic liquid crystal layer having a first handedness;

a second chiral nematic liquid crystal layer having a second handedness; and

a nematic liquid crystal layer having a nematic-isotropic clearing point temperature chosen to be within the working temperature of the filter positioned between the first and second chiral nematic liquid crystal layers; wherein

in the nematic state,

the first chiral nematic liquid crystal layer blocks a first half of infrared light incident on the filter as infrared light of a first circular polarization and transmits a second half of the incident infrared light as polarized light of a second circular polarization to the nematic liquid crystal layer; and

the nematic liquid crystal layer functions as a half wave plate and inverts the transmitted infrared light into light of the first circular polarization, which is then transmitted through the second chiral nematic liquid crystal layer; and

in the isotropic state,

the first chiral nematic liquid crystal layer blocks a first half of infrared light incident on the filter as light of a first circular polarization and transmits a second half of the incident infrared light as polarized light of a second circular polarization to the nematic liquid crystal layer; and

the half-wave plate function of the nematic liquid crystal layer vanishes and the transmitted infrared light is blocked by the second chiral nematic liquid crystal layer as infrared light of a second circular polarization.

2 . The filter assembly of claim 1 , further comprising a transparent substrate that functions as a mechanical carrier for at least the first chiral nematic liquid crystal layer.

3 . The filter assembly of claim 1 , further comprising an alignment layer.

4 . The filter assembly of claim 3 , wherein the alignment layer is coupled to the first chiral nematic liquid crystal layer.

5 . The filter assembly of claim 3 , wherein the alignment layer is coupled to the nematic liquid crystal layer.

6 . The filter assembly of claim 1 , further comprising microspheres that act as spacers to define a cell gap of the nematic liquid crystal layer.

7 . The filter assembly of claim 6 , wherein the microspheres create a spacing that defines a retardation and central wavelength of a reflection band such that the nematic liquid crystal layer acts as a half wave plate of the 0 th order.

8 . The filter assembly of claim 6 , wherein the microspheres are embedded in alignment layer associated with the nematic liquid crystal layer.

9 . The filter assembly of claim 1 , wherein the filter is configured to filter infrared radiation.

10 . The filter assembly of claim 1 , further comprising a negative dichroic dye for filtering radiation in the visible spectrum.

11 . The filter assembly of claim 1 , further comprising a first linear polarizer, a second linear polarizer, and twisted nematic liquid crystal for filtering radiation in the visible spectrum.

12 . The filter assembly of claim 1 , wherein the first chiral nematic liquid crystal layer, the second chiral nematic liquid crystal layer, and the nematic liquid crystal layer form an infrared filtering stack, the filter assembly further comprising a visible spectrum stack having a positive dichroic dye.

13 . The filter assembly of claim 12 , wherein the infrared filtering stack and the visible spectrum filtering stack are integrated in a common insulated glass unit.

14 . The filter assembly of claim 12 , wherein the infrared filtering stack and the visible spectrum filtering stack share a common substrate.

15 . A filter assembly, comprising:

a first chiral nematic liquid crystal layer having a first handedness;

a second chiral nematic liquid crystal layer having a second handedness; and

a nematic liquid crystal layer having a nematic-isotropic clearing point temperature chosen to be outside of the working temperature of the filter positioned between the first and second chiral nematic liquid crystal layers;

a transparent conducting layer positioned adjacent to the nematic liquid crystal layer; wherein

in a first voltage state applied to the transparent conducting layer,

the first chiral nematic liquid crystal layer blocks a first half of infrared light incident on the filter as light of a first circular polarization and transmits a second half of the incident infrared light as polarized infrared light of a second circular polarization to the nematic liquid crystal layer; and

the nematic liquid crystal layer functions as a half wave plate and inverts the transmitted infrared light into infrared light of the first circular polarization, which is then transmitted through the second chiral nematic liquid crystal layer; and

in a second voltage state applied to the transparent conducting layer,

the first chiral nematic liquid crystal layer blocks a first half of infrared light incident on the filter as infrared light of a first circular polarization and transmits a second half of the incident infrared light as polarized infrared light of a second circular polarization to the nematic liquid crystal layer; and

the half-wave plate function of the nematic liquid crystal layer vanishes and the transmitted infrared light is blocked by the second chiral nematic liquid crystal layer as infrared light of a second circular polarization.

16 . The filter assembly of claim 15 , further comprising a transparent substrate that functions as a mechanical carrier for at least the first chiral nematic liquid crystal layer.

17 . The filter assembly of claim 15 , further comprising an alignment layer.

18 . The filter assembly of claim 17 , wherein the alignment layer is coupled to the first chiral nematic liquid crystal layer.

19 . The filter assembly of claim 17 , wherein the alignment layer is coupled to the nematic liquid crystal layer.

20 . The filter assembly of claim 15 , further comprising microspheres that act as spacers to define a cell gap of the nematic liquid crystal layer.

Assignments (3)
SECURITY INTEREST Recorded May 16, 2019
From: RAVENBRICK LLC
To: ROSELLA HOLDINGS LIMITED
Reel/Frame 049197/0683 →
SECURITY INTEREST Recorded Feb 22, 2019
From: RAVENBRICK LLC
To: ROSELLA HOLDINGS LIMITED
Reel/Frame 048412/0285 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 25, 2018
From: IGLESIAS, WILDER; POPOV, PIOTR
To: RAVENBRICK LLC
Reel/Frame 045636/0121 →