Backlight unit and display device
US-2024142692-A1 · May 2, 2024 · US
US10191196B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10191196-B2 |
| Application number | US-201514926095-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 29, 2015 |
| Priority date | Nov 20, 2014 |
| Publication date | Jan 29, 2019 |
| Grant date | Jan 29, 2019 |
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A backlight unit (BLU), for a binocular holographic display apparatus, and the binocular holographic display apparatus including the BLU are provided. The BLU includes: a light source unit that emits coherent illumination light; and a light guide plate that is transparent and includes a light incidence surface onto which the coherent illumination light emitted by the light source unit is incident and a light emission surface through which the illumination light is output. The light source unit includes a beam deflector that adjusts an incidence angle of the illumination light incident onto the light guide plate.
Opening claim text (preview).
What is claimed is: 1. A backlight unit (BLU) comprising: a light source unit that emits illumination light; a light guide plate that is transparent and comprises a light incidence surface, on which the illumination light emitted by the light source unit is incident, and a light emission surface through which the illumination light is emitted; an input coupler that directs the illumination light from the light source unit into the light guide plate; and an output coupler that is disposed on the light emission surface of the light guide plate, wherein the illumination light is emitted from the light guide plate through the output coupler, wherein the light source unit comprises a beam deflector that controls an incidence angle of the illumination light incident onto the light guide plate, wherein the beam deflector is selectively controlled to change a traveling direction of the illumination light onto the light guide plate based on changes in positions of pupils of an observer, wherein the light guide plate has a flat panel shape such that the light guide plate totally internally reflects the illumination light emitted by the light source unit, wherein the light guide plate has an upper surface and a lower surface, and wherein the illumination light entering into the light guide plate is totally internally reflected between the upper surface and the lower surface. 2. The BLU of claim 1 , wherein: the light source unit further comprises: a first light source unit that emits first illumination light that is directed to a first viewing zone and a second light source unit that emits second illumination light that is directed to a second viewing zone, different from the first viewing zone; the light incidence surface of the light guide plate comprises a first light incidence surface on which the first illumination light is incident and a second light incidence surface on which the second illumination light is incident; and the input coupler comprises a first input coupler, wherein the first illumination light is incident on the first light incidence surface through the first input coupler, and a second input coupler, wherein the second illumination light is incident on the second light incidence surface through the second input coupler. 3. The BLU of claim 2 , wherein the first light incidence surface is disposed on a first side of the light guide plate, and the second light incidence surface is disposed on a second side of the light guide plate, opposite the first side; wherein the first light source unit faces the first light incidence surface, and the second light source unit faces the second light incidence surface. 4. The BLU of claim 2 , wherein the light guide plate is configured such that the first illumination light and the second illumination light are both emitted through the same light emission surface, and the output coupler is configured such that the first illumination light is emitted at a first angle and the second illumination light is emitted at a second angle, different from the first angle. 5. The BLU of claim 2 , wherein the first light source unit comprises: a first light source that generates the first illumination light; a first collimator that collimates the first illumination light; a first beam expander that increases a beam diameter of the first illumination light, output by the first collimator; and a first beam deflector that adjusts an incidence angle of the first illumination light, output by the first beam expander, onto the first light incidence surface. 6. The BLU of claim 5 , wherein the second light source unit comprises: a second light source that generates the second illumination light; a second collimator collimates the second illumination light; a second beam expander that increases a beam diameter of the second illumination light, output by the second collimator; and a second beam deflector that adjusts an incidence angle of the second illumination light, output by the second beam expander, incident onto the second light incidence surface. 7. The BLU of claim 6 , wherein the first light source and the second light source emit coherent white light. 8. The BLU of claim 1 , wherein the light source unit further comprises: a light source that generates the illumination light; a collimator that collimates the illumination light; a beam expander that increases a beam diameter of the illumination light, output by the collimator, and outputs provides the illumination light to the beam deflector; and a beam splitter that splits the illumination light, output by the beam deflector into first illumination light and second illumination light, wherein the beam deflector is disposed on an optical path between the beam expander and the beam splitter. 9. The BLU of claim 8 , wherein: the light incidence surface comprises a first light incidence surface onto which the first illumination light is incident and a second light incidence surface onto which the second illumination light is incident; and the input coupler comprises a first input coupler that directs the first illumination light into the light guide plate and a second input coupler that directs the second illumination light into the light guide plate. 10. The BLU of claim 9 , wherein the first light incidence surface is disposed on a first side of the light guide plate, and the second light incidence surface is disposed on a second side of the light guide plate, opposite the first side. 11. The BLU of claim 9 , wherein the light guide plate is configured such that the first illumination light and the second illumination light are both emitted through the same light emission surface, and the output coupler is configured such that the first illumination light is emitted into a first viewing zone and the second illumination light is emitted into a second viewing zone, different from the first viewing zone. 12. The BLU of claim 1 , wherein the light source unit comprises: a light source that generates the illumination light; a collimator that collimates the illumination light; a beam expander that increases a beam diameter of the illumination light, output by the collimator; and a beam splitter that splits the illumination light, output from the beam expander, into first illumination light and second illumination light. 13. The BLU of claim 12 , wherein: the beam deflector comprises a first beam deflector that adjusts an incidence angle of the first illumination light and a second beam deflector that adjusts an incidence angle of the second illumination light; the light incidence surface comprises a first light incidence surface onto which the first illumination light is incident and a second light incidence surface onto which the second illumination light is incident; and the input coupler comprises a first input coupler that directs the first illumination light into the light guide plate and a second input coupler that directs the second illumination light into the light guide plate. 14. The BLU of claim 13 , wherein the first light incidence surface is disposed on a first side of the light guide plate and the second light incidence surface is surfaces disposed on a second side of the light guide plate, opposite the first side. 15. The BLU of claim 13 , wherein the light guide plate is configured such that the first illumination light and the second illumination light are both emitted through the same light emission surface, and the output coupler is configured such that the first illumination light is emitted into a first viewing zone and the second illumination light is emitted into a se
Holograms used as optical elements · CPC title
Particular reconstruction light (G03H1/24 takes precedence); Beam properties · CPC title
Optical waveguide, e.g. optical fibre, rod · CPC title
provided by one optical element, or plurality thereof, placed on the light output side of the light guide · CPC title
provided by one optical element, or plurality thereof, placed between the light guide and the light source, or around the light source · CPC title
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