Optical film
US-2016187554-A1 · Jun 30, 2016 · US
US11536987B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11536987-B2 |
| Application number | US-201816608007-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 30, 2018 |
| Priority date | Apr 28, 2017 |
| Publication date | Dec 27, 2022 |
| Grant date | Dec 27, 2022 |
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A light modulation device is disclosed herein. In some embodiments, a light modulation device includes a first polymer film substrate, a second polymer film substrate, an active liquid crystal layer disposed between the first and second polymer film substrates, a reflective layer, wherein the active liquid crystal layer is capable of switching between a first orientation state and a second orientation state different from the first orientation state upon application of a voltage, each of the polymer film substrates has an in-plane retardation of 4,000 nm or more for light having a wavelength of 550 nm, a ratio of an elongation (E1) in a first direction to an elongation (E2) in a second direction perpendicular to the first direction of 3 or more, and wherein an angle formed by the first directions of the first and second polymer film substrates is in a range of 0 degrees to 10 degrees.
Opening claim text (preview).
The invention claimed is: 1. A light modulation device, comprising: an active liquid crystal film layer; and a reflective layer, wherein the active liquid crystal film layer comprises: a first polymer film substrate; a second polymer film substrate; and an active liquid crystal layer disposed between the first and second polymer film substrates, wherein the active liquid crystal layer contains a liquid crystal host and a dichroic dye guest, wherein the active liquid crystal layer is capable of switching between a first orientation state and a second orientation state different from the first orientation state upon application of a voltage, each of the first and second polymer film substrates has an in-plane retardation of 4,000 nm or more for light having a wavelength of 550 nm, wherein each of the first and second polymer film substrates are stretched films, wherein the stretched films having a machine direction, a transverse direction, and a third direction, wherein the machine direction is perpendicular to the transverse direction, wherein an angle between the third direction and both the transverse direction and the machine direction ranges from 40 degrees to 50 degrees, wherein the machine direction, the transverse direction, and the third direction are in-plane directions, wherein the first and second polymer film substrates have an elongation (E1) in the transverse direction and an elongation (E2) in the machine direction, wherein each of the first and second polymer film substrates have an elongation (E3) in the third direction that is larger than E1, wherein a ratio of E3 to E2 is 5 or more, and wherein an angle formed by the transverse direction of the first polymer film substrate and the transverse direction of the second polymer film substrate is in a range of 0 degrees to 10 degrees. 2. The light modulation device according to claim 1 , wherein the first and second polymer film substrates are polyester film substrates. 3. The light modulation device according to claim 1 , wherein the first polymer film substrate has a first electrode layer disposed directly thereon, wherein the second polymer film substrate has a second electrode layer disposed directly thereon, and wherein the second electrode layer faces the first electrode layer. 4. The light modulation device according to claim 1 , wherein a ratio of E1 to E2 is 3 or more. 5. The light modulation device according to claim 4 , wherein E1 in each of the first and second polymer film substrates is 15% or more. 6. The light modulation device according to claim 1 , wherein each of the first and second polymer film substrates has a ratio (CTE2/CTE1) of a coefficient of thermal expansion (CTE2) in the machine direction to a coefficient of thermal expansion (CTE1) in the transverse direction of 1.5 or more. 7. The light modulation device according to claim 6 , wherein CTE2 is in a range of 5 to 150 ppm/° C. 8. The light modulation device according to claim 1 , wherein each of the first and second polymer film substrates has a ratio (YM1/YM2) of an elastic modulus (YM1) in the transverse direction to an elastic modulus (YM2) in the machine direction of 1.5 or more. 9. The light modulation device according to claim 8 , wherein YM1 is in a range of 4 to 10 GPa. 10. The light modulation device according to claim 1 , wherein each of the first and second polymer film substrates has a ratio (MS1/MS2) of a maximum stress (MS1) in the transverse direction to a maximum stress (MS2) in the machine direction of 2 or more. 11. The light modulation device according to claim 10 , wherein MS1 is in a range of 150 to 250 MPa. 12. The light modulation device according to claim 1 , wherein the reflective layer is a mirror reflective layer. 13. The light modulation device according to claim 12 , further comprising a quarter wavelength plate disposed between the active liquid crystal layer and the reflective layer. 14. The light modulation device according to claim 1 , wherein the reflective layer further comprising a first reflective polarizer and a second reflective polarizer. 15. The light modulation device according to claim 14 , further comprising: a light modulation film layer having a second active liquid crystal layer containing a liquid crystal compound, wherein the active liquid crystal layer, the first reflective polarizer, the light modulation film layer and the second reflective polarizer are included in this order. 16. Eyewear, comprising: a left eye lens and a right eye lens; and a frame for supporting the left eye lens and the right eye lens, wherein the left eye lens and the right eye lens each comprise the light modulation device of claim 1 .
based on guest-host interaction (G02F1/13762, G02F1/13737, take precedence) · CPC title
Birefringent elements, e.g. for optical compensation · CPC title
Eyeglass type (eyeglass details G02C) · CPC title
having an electro-optical light valve (electro-optical elements per se G02F) · CPC title
the liquid crystal being selectively controlled between a twisted state and a non-twisted state, e.g. TN-LC cell (G02F1/141 takes precedence) · CPC title
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