Rearview mirror

US10137837B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10137837-B2
Application numberUS-201514908829-A
CountryUS
Kind codeB2
Filing dateJul 28, 2015
Priority dateMar 3, 2015
Publication dateNov 27, 2018
Grant dateNov 27, 2018

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A rearview mirror, including a first substrate ( 100 ), a second substrate ( 200 ) cell-assembled to the first substrate ( 100 ), and a crystal material ( 300 ) filled between the first substrate ( 100 ) and the second substrate ( 200 ), a plurality of strip electrodes ( 11 ) are disposed on a side of the first substrate ( 100 ) that faces to the second substrate ( 200 ), an interval is formed between two adjacent strip electrodes ( 110 ), the strip electrodes ( 110 ) are made of a transparent electrode material, a planar electrode ( 210 ) capable of at least partially reflecting light is disposed on a side of the second substrate ( 200 ) that faces to the first substrate ( 100 ). In the present application, the refractive indices of the liquid crystal material ( 300 ) in the rearview mirror are changed by changing the voltage signal provided to the rearview mirror, such that an anti-glare operation mode of the rearview mirror is achieved.

First claim

Opening claim text (preview).

What is claimed is: 1. A rearview mirror, comprising: a first substrate, a second substrate cell-assembled to the first substrate, a liquid crystal material filled between the first substrate and the second substrate, and a control circuit, wherein a plurality of strip electrodes are disposed on a side of the first substrate that faces to the second substrate, an interval is formed between two adjacent strip electrodes, and a planar electrode capable of at least partially reflecting light is disposed on a side of the second substrate, which side faces to the first substrate; the rearview mirror is configured to have a normal operation mode, in which the control circuit is configured to provide the plurality of strip electrodes with a same electric signal concurrently. 2. The rearview mirror according to claim 1 , wherein the strip electrodes are made of a transparent electrode material. 3. The rearview mirror according to claim 1 , wherein the control circuit is further configured for providing an electric signal to the strip electrodes and providing an electric signal to the planar electrode, in order to control a deflection of liquid crystal molecules of the liquid crystal material, and the strip electrodes are independently connected to the control circuit. 4. The rearview mirror according to claim 1 , wherein the planar electrode is a total reflection electrode. 5. The rearview mirror according to claim 1 , wherein the planar electrode is a half-transmission-half-reflection electrode. 6. The rearview mirror according to claim 1 , wherein the rearview mirror further comprises a display panel disposed on a side of the second substrate, which side faces away from the liquid crystal material, and the rearview mirror is further configured to have a display mode, in which the display panel is configured for displaying an image. 7. The rearview mirror according to claim 6 , wherein the second substrate together with a substrate where a light-exit surface of the display panel lies forms into one integrated body, or the second substrate and the substrate where the light-exit surface of the display panel lies are a same substrate. 8. The rearview mirror according to claim 6 , wherein the display panel is a liquid crystal display panel or an organic light-emitting diode display panel. 9. The rearview mirror according to claim 1 , wherein the rearview mirror further comprises a brightness sensor, the brightness sensor is configured for detecting a brightness change around the rearview mirror, wherein the brightness sensor is configured to send a sensor signal to the control circuit according to the brightness change detected by the brightness sensor, and the control circuit is configured to provide various voltage signals or a same voltage signal to the plurality of strip electrodes respectively upon receiving the first sensor signal. 10. A method for controlling the rearview mirror according to claim 1 , comprising providing various different electric signals to the plurality of strip electrodes. 11. The method according to claim 10 , further comprising providing a same electric signal to the plurality of strip electrodes. 12. The method according to claim 10 , wherein providing various different electric signals to the plurality of strip electrodes comprises providing electric signals which change periodically along an arrangement direction of the plurality of strip electrodes to the plurality of strip electrodes. 13. The method according to claim 11 , wherein providing various different electric signals to the plurality of strip electrodes comprises providing electric signals which change periodically along an arrangement direction of the plurality of strip electrodes to the plurality of strip electrodes. 14. The rearview mirror according to claim 2 , wherein the control circuit is configured for providing an electric signal to the strip electrodes and providing an electric signal to the planar electrode, in order to control a deflection of liquid crystal molecules of the liquid crystal material, and the strip electrodes are independently connected to the control circuit. 15. The rearview mirror according to claim 2 , wherein the control circuit is configured for providing an electric signal to the strip electrodes and providing an electric signal to the planar electrode, in order to control a deflection of liquid crystal molecules of the liquid crystal material, wherein, the rearview mirror is further configured to have an anti-glare operation mode; the control circuit is configured for providing a same electric signal to the plurality of strip electrodes in the normal operation mode; and the control circuit is configured for providing different electric signals to the plurality of strip electrodes in the anti-glare operation mode. 16. The rearview mirror according to claim 2 , wherein the planar electrode is a total reflection electrode. 17. The rearview mirror according to claim 2 , wherein the planar electrode is a half-transmission-half-reflection electrode. 18. A rearview mirror, comprising a first substrate, a second substrate cell-assembled to the first substrate, and a liquid crystal material filled between the first substrate and the second substrate, wherein a plurality of strip electrodes are disposed on a side of the first substrate that faces to the second substrate, an interval is formed between two adjacent strip electrodes, and a planar electrode capable of at least partially reflecting light is disposed on a side of the second substrate, which side faces to the first substrate, and the rearview mirror comprises a control circuit, the control circuit is configured for providing an electric signal to the strip electrodes and providing an electric signal to the planar electrode, in order to control a deflection of liquid crystal molecules of the liquid crystal material, wherein, the rearview mirror is configured to have a normal operation mode and an anti-glare operation mode; the control circuit is configured for providing a same electric signal to the plurality of strip electrodes in the normal operation mode; and the control circuit is configured for providing different electric signals to the plurality of strip electrodes in the anti-glare operation mode. 19. A rearview mirror, comprising a first substrate, a second substrate cell-assembled to the first substrate, and a liquid crystal material filled between the first substrate and the second substrate, wherein a plurality of strip electrodes are disposed on a side of the first substrate that faces to the second substrate, an interval is formed between two adjacent strip electrodes, and a planar electrode capable of at least partially reflecting light is disposed on a side of the second substrate, which side faces to the first substrate; the rearview mirror further comprises a control circuit and a display panel disposed on a side of the second substrate, which side faces away from the liquid crystal material, and the rearview mirror is configured to have a display mode, in which the display panel is configured for displaying an image; the control circuit is configured for providing a same electric signal to the plurality of strip electrodes, so that light emitted by the display panel can exit after passing through the second substrate, the liquid crystal material between the first substrate and the second substrate, and the first substrate sequentially. 20. The rearview mirror according to claim 19 , wherein the rearview mirror further comprise

Assignees

Inventors

Classifications

  • Reflecting elements (associated to illuminating devices G02F1/133605) · CPC title

  • characterised by their geometrical arrangement · CPC title

  • with cameras, video cameras or video screens · CPC title

  • Mirror assemblies combined with other articles, e.g. clocks · CPC title

  • B60R1/088Primary

    using a cell of electrically changeable optical characteristic, e.g. liquid-crystal or electrochromic mirrors · CPC title

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Frequently asked questions

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What does patent US10137837B2 cover?
A rearview mirror, including a first substrate ( 100 ), a second substrate ( 200 ) cell-assembled to the first substrate ( 100 ), and a crystal material ( 300 ) filled between the first substrate ( 100 ) and the second substrate ( 200 ), a plurality of strip electrodes ( 11 ) are disposed on a side of the first substrate ( 100 ) that faces to the second substrate ( 200 ), an interval is formed …
Who is the assignee on this patent?
Boe Technology Group Co Ltd, Chengdu Boe Optoelect Tech Co
What technology area does this patent fall under?
Primary CPC classification B60R1/088. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Nov 27 2018 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 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).