Beam deflector and holographic three-dimensional image display apparatus employing the same

US11803087B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11803087-B2
Application numberUS-202017107271-A
CountryUS
Kind codeB2
Filing dateNov 30, 2020
Priority dateFeb 19, 2018
Publication dateOct 31, 2023
Grant dateOct 31, 2023

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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 beam deflector and a holographic three-dimensional image display apparatus employing the same are provided. The beam deflector deflects light through two stages by a first beam deflector that deflects the light in a first moving direction making an angle with a horizontal direction and a vertical direction, such that the deflected light is oriented to a first location, and a second beam deflector that deflects the light incident from the first beam deflector such that the light is deflected in a second moving direction making an angle with the horizontal direction and the vertical direction at the first location and is oriented to a second location.

First claim

Opening claim text (preview).

What is claimed is: 1. A beam deflector comprising: a first beam deflector which is configured to deflect incident light in a first moving direction making an angle with a horizontal direction and a vertical direction, respectively, such that the light deflected from the first beam deflector is oriented to a first location; a second beam deflector which is configured to deflect the light deflected from the first beam deflector in a second moving direction making an angle with the horizontal direction and the vertical direction, respectively, at the first location, such that the light deflected from the second beam deflector is oriented to a second location; and a polarization converter provided between the first beam deflector and the second beam deflector and configured to convert polarization of the light incident to the second beam deflector such that the light deflected to the first moving direction by the first beam deflector is deflected to the second moving direction by the second beam deflector, wherein the first beam deflector comprises: a first electrode layer comprising a plurality of first pattern electrodes provided in the first moving direction and having a stripe shape extending in a direction crossing the first moving direction; and a second electrode layer used as a common electrode on a second substrate, and wherein the second beam deflector comprises: a third electrode layer comprising the plurality of second pattern electrodes on a third substrate; and a fourth electrode layer used as a common electrode on a fourth substrate. 2. The beam deflector of claim 1 , wherein the first moving direction and the second moving direction make an angle of 45° or less with the horizontal direction and the vertical direction, respectively. 3. A backlight unit comprising: a light source configured to emit light; a beam deflector configured to deflect the light emitted by the light source through two stages; and a light guide plate configured to guide the light deflected by the beam deflector and configured to output the light through a light-output surface of the light guide plate, wherein the beam deflector comprises the beam deflector in claim 1 . 4. A beam deflector comprising: a first beam deflector which is configured to deflect incident light in a first moving direction making an angle with a horizontal direction and a vertical direction, respectively, such that the light deflected from the first beam deflector is oriented to a first location; a second beam deflector which is configured to deflect the light deflected from the first beam deflector in a second moving direction making an angle with the horizontal direction and the vertical direction, respectively, at the first location, such that the light deflected from the second beam deflector is oriented to a second location; and a polarization converter provided between the first beam deflector and the second beam deflector and configured to convert polarization of the light incident to the second beam deflector such that the light deflected to the first moving direction by the first beam deflector is deflected to the second moving direction by the second beam deflector, wherein the first beam deflector comprises a plurality of first pattern electrodes provided in the first moving direction and having a stripe shape extending in a direction crossing the first moving direction, the first beam deflector being configured to deflect the incident light in the first moving direction and oriented to the first location, and the first beam deflector comprising liquid crystals aligned such that long axes of the liquid crystals are parallel to the first moving direction when an electric field is not applied thereto, and the second beam deflector comprises a plurality of second pattern electrodes provided in the second moving direction and having a stripe shape extending in a direction crossing the second moving direction, the second beam deflector being configured to deflect the incident light in the second moving direction at the first location and oriented to the second location, and the second beam deflector comprising liquid crystals aligned such that long axes of the liquid crystals are parallel to the second moving direction when an electric field is not applied thereto. 5. The beam deflector of claim 4 , wherein the first beam deflector comprises: a first electrode layer comprising the plurality of first pattern electrodes on a first substrate; a second electrode layer used as a common electrode on a second substrate; and a first liquid crystal layer comprising liquid crystals aligned between the first substrate and the second substrate such that long axes of the liquid crystals are parallel to the first moving direction when the electric field is not applied thereto, and wherein the second beam deflector comprises: a third electrode layer comprising the plurality of second pattern electrodes on a third substrate; a fourth electrode layer used as a common electrode on a fourth substrate; and a second liquid crystal layer comprising liquid crystals aligned between the third substrate and the fourth substrate such that long axes of the liquid crystals are parallel to the second moving direction when the electric field is not applied thereto. 6. The beam deflector of claim 4 , wherein the plurality of first pattern electrodes and the plurality of second pattern electrodes make an angle of 45° or less with the horizontal direction and the vertical direction. 7. The beam deflector of claim 4 , wherein the plurality of first pattern electrodes and the plurality of second pattern electrodes comprise a plurality of unit electrodes, each unit electrode comprising n pattern electrodes, and wherein ith pattern electrodes of respective unit electrodes are electrically connected to each other such that a same voltage is applied to each of the ith pattern electrodes. 8. The beam deflector of claim 7 , wherein the n pattern electrodes comprise 720 or 1024 pattern electrodes, and the plurality of unit electrodes comprise 7 to 10 unit electrodes. 9. The beam deflector of claim 7 , comprising n line electrodes comprising an ith line electrode connecting the ith pattern electrodes of the respective unit electrodes. 10. The beam deflector of claim 9 , wherein the n line electrodes are provided in a direction parallel to the horizontal direction or the vertical direction. 11. A beam deflector comprising: a first beam deflector which is configured to deflect incident light in a first moving direction making an angle with a horizontal direction and a vertical direction, respectively, such that the light deflected from the first beam deflector is oriented to a first location; a second beam deflector which is configured to deflect the light deflected from the first beam deflector in a second moving direction making an angle with the horizontal direction and the vertical direction, respectively, at the first location, such that the light deflected from the second beam deflector is oriented to a second location; and a polarization converter provided between the first beam deflector and the second beam deflector and configured to convert polarization of the light incident to the second beam deflector such that the light deflected to the first moving direction by the first beam deflector is deflected to the second moving direction by the second beam deflector, wherein the polarization converter comprises a quarter waveplate.

Assignees

Inventors

Classifications

  • in which all the liquid crystal cells or layers remain transparent, e.g. FLC, ECB, DAP, HAN, TN, STN, SBE-LC cells (G02F1/13475 takes precedence) · CPC title

  • Polarising elements (light-modulating devices with active elements G02F1/00) · CPC title

  • Holograms used as optical elements · CPC title

  • Reflective elements · CPC title

  • Electrodes {(reflective electrodes G02F1/133553)} · CPC title

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What does patent US11803087B2 cover?
A beam deflector and a holographic three-dimensional image display apparatus employing the same are provided. The beam deflector deflects light through two stages by a first beam deflector that deflects the light in a first moving direction making an angle with a horizontal direction and a vertical direction, such that the deflected light is oriented to a first location, and a second beam defle…
Who is the assignee on this patent?
Samsung Electronics Co Ltd
What technology area does this patent fall under?
Primary CPC classification G02F1/13471. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Oct 31 2023 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 5 related publications on this page (citations in our corpus or others sharing the same primary CPC).