IP Library › Granted Patent US 8,624,799
Granted Patent B2
US 8,624,799 · App. 13/410,402 · Granted Jan 7, 2014

Illumination unit, projection display unit, and direct view display unit

Inventor: Koji Miura (Tokyo, JP)
Assignee: Sony Corporation
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Quick Facts
Patent No.
US 8,624,799
App. No.
13/410,402
Granted
Jan 7, 2014
Kind
B2
Abstract

An illumination unit includes: one or more light sources, an optical member, and an optical device. The optical member includes an integrator having a first fly-eye lens on which light from a solid-state light-emitting device is incident and a second fly-eye lens on which the light from the first fly-eye lens is incident. The integrator uniformalizes an illuminance distribution of light in a predetermined illumination region illuminated by the light incident from the solid-state light-emitting device. The optical device is disposed on an optical path between the first fly-eye lens and one or more light sources including one or more chips configured by the laser diode, and allows a shape of a luminance distribution of incidence light on an incidence plane of the first fly-eye lens to be expanded along a minor axis direction of the shape of the luminance distribution.

Claims (93)

1. An illumination unit, comprising:

one or more light sources each including a solid-state light-emitting device configured to emit light from a light emission region including a single or a plurality of light-emitting spots;

an optical member allowing the light incident from the solid-state light-emitting device to pass therethrough and exit therefrom; and

an optical device,

the solid-state light-emitting device including a single chip or a plurality of chips each emitting the light,

wherein

one or more of the chips in the one or more light sources as a whole is a laser diode,

the optical member includes an integrator having a first fly-eye lens on which the light from the solid-state light-emitting device is incident and a second fly-eye lens on which the light from the first fly-eye lens is incident, the integrator uniformalizing an illuminance distribution of light in a predetermined illumination region illuminated by the light incident from the solid-state light-emitting device, and

the optical device is disposed on an optical path between the first fly-eye lens and the one or more light sources including the one or more chips configured by the laser diode, and allows a shape of a luminance distribution of incidence light on an incidence plane of the first fly-eye lens to be expanded along a minor axis direction of the shape of the luminance distribution.

2. The illumination unit according to claim 1 , wherein

each of the first fly-eye lens and the second fly-eye lens includes a plurality of cells,

the cells in the first fly-eye lens are arranged along a first direction and a second direction that intersect each other, and

the optical device includes an anamorphic lens having a focal distance in the first direction that is longer than a focal distance in the second direction.

3. The illumination unit according to claim 1 , further comprising an optical path branching device provided on the optical path between the first fly-eye lens and the one or more light sources including the one or more chips configured by the laser diode, the optical path branching device branching an optical path of the incidence light into a plurality of optical paths along the minor axis direction of the shape of the luminance distribution of the incidence light.

4. The illumination unit according to claim 3 , wherein the optical path branching device includes a diffractive device, a half mirror, or a prism.

5. The illumination unit according to claim 1 , wherein

the first fly-eye lens is disposed substantially in a focal position of the second fly-eye lens, and

the second fly-eye lens is disposed substantially in a focal position of the first fly-eye lens.

6. The illumination unit according to claim 1 , wherein the optical member includes:

one or more traveling-direction angle conversion devices each converting a traveling-direction-angle of the light incident from the solid-state light-emitting device; and

the integrator uniformalizing the illuminance distribution of the light in the predetermined illumination region illuminated by the light having passed through the one or more traveling-direction angle conversion devices.

7. The illumination unit according to claim 1 , wherein the one or more light sources is formed in a manner of a package incorporating the solid-state light-emitting device, or is formed in a manner of a package where the solid-state light-emitting device is mounted on a substrate.

8. An illumination unit, comprising:

one or more light sources each including a solid-state light-emitting device configured to emit light from a light emission region including a single or a plurality of light-emitting spots;

an optical member allowing the light incident from the solid-state light-emitting device to pass therethrough and exit therefrom; and

an optical path branching device,

the solid-state light-emitting device including a single chip or a plurality of chips each emitting the light,

wherein

one or more of the chips in the one or more light sources as a whole is a laser diode,

the optical member includes an integrator having a first fly-eye lens on which the light from the solid-state light-emitting device is incident and a second fly-eye lens on which the light from the first fly-eye lens is incident, the integrator uniformalizing an illuminance distribution of light in a predetermined illumination region illuminated by the light incident from the solid-state light-emitting device, and

the optical path branching device is provided on an optical path between the first fly-eye lens and the one or more light sources including the one or more chips configured by the laser diode, the optical path branching device branching an optical path of incidence light on an incidence plane of the first fly-eye lens into a plurality of optical paths along a minor axis direction of a shape of a luminance distribution of the incidence light.

9. The illumination unit according to claim 8 , wherein the optical path branching device includes a diffractive device, a half mirror, or a prism.

10. The illumination unit according to claim 8 , wherein

the first fly-eye lens is disposed substantially in a focal position of the second fly-eye lens, and

the second fly-eye lens is disposed substantially in a focal position of the first fly-eye lens.

11. The illumination unit according to claim 8 , wherein the optical member includes:

one or more traveling-direction angle conversion devices each converting a traveling-direction-angle of the light incident from the solid-state light-emitting device; and

the integrator uniformalizing the illuminance distribution of the light in the predetermined illumination region illuminated by the light having passed through the one or more traveling-direction angle conversion devices.

12. The illumination unit according to claim 8 , wherein the one or more light sources is formed in a manner of a package incorporating the solid-state light-emitting device, or is formed in a manner of a package where the solid-state light-emitting device is mounted on a substrate.

13. A projection display unit, comprising:

an illumination optical system;

a spatial modulation device modulates, based on a picture signal inputted, light from the illumination optical system to thereby generate image light; and

a projection optical system projecting the image light generated by the spatial modulation device,

the illumination optical system including

one or more light sources each including a solid-state light-emitting device configured to emit the light from a light emission region including a single or a plurality of light-emitting spots,

an optical member allowing the light incident from the solid-state light-emitting device to pass therethrough and exit therefrom, and

an optical device,

the solid-state light-emitting device including a single chip or a plurality of chips each emitting the light,

wherein

one or more of the chips in the one or more light sources as a whole is a laser diode,

the optical member includes an integrator having a first fly-eye lens on which the light from the solid-state light-emitting device is incident and a second fly-eye lens on which the light from the first fly-eye lens is incident, the integrator uniformalizing an illuminance distribution of light in a predetermined illumination region illuminated by the light incident from the solid-state light-emitting device, and

the optical device is disposed on an optical path between the first fly-eye lens and the one or more light sources including the one or more chips configured by the laser diode, and allows a shape of a luminance distribution of incidence light on an incidence plane of the first fly-eye lens to be expanded along a minor axis direction of the shape of the luminance distribution.

14. A projection display unit, comprising:

an illumination optical system;

a spatial modulation device modulates, based on a picture signal inputted, light from the illumination optical system to thereby generate image light; and

a projection optical system projecting the image light generated by the spatial modulation device,

the illumination optical system including

one or more light sources each including a solid-state light-emitting device configured to emit the light from a light emission region including a single or a plurality of light-emitting spots,

an optical member allowing the light incident from the solid-state light-emitting device to pass therethrough and exit therefrom, and

an optical path branching device,

the solid-state light-emitting device including a single chip or a plurality of chips each emitting the light,

wherein

one or more of the chips in the one or more light sources as a whole is a laser diode,

the optical member includes an integrator having a first fly-eye lens on which the light from the solid-state light-emitting device is incident and a second fly-eye lens on which the light from the first fly-eye lens is incident, the integrator uniformalizing an illuminance distribution of light in a predetermined illumination region illuminated by the light incident from the solid-state light-emitting device, and

the optical path branching device is provided on an optical path between the first fly-eye lens and the one or more light sources including the one or more chips configured by the laser diode, the optical path branching device branching an optical path of incidence light on an incidence plane of the first fly-eye lens into a plurality of optical paths along a minor axis direction of a shape of a luminance distribution of the incidence light.

15. A direct view display unit, comprising:

an illumination optical system;

a spatial modulation device modulates, based on a picture signal inputted, light from the illumination optical system to thereby generate image light;

a projection optical system projecting the image light generated by the spatial modulation device; and

a transmissive screen on which the image light projected from the projection optical system is displayed,

the illumination optical system including

one or more light sources each including a solid-state light-emitting device configured to emit the light from a light emission region including a single or a plurality of light-emitting spots,

an optical member allowing the light incident from the solid-state light-emitting device to pass therethrough and exit therefrom, and

an optical device,

the solid-state light-emitting device including a single chip or a plurality of chips each emitting the light,

wherein

one or more of the chips in the one or more light sources as a whole is a laser diode,

the optical member includes an integrator having a first fly-eye lens on which the light from the solid-state light-emitting device is incident and a second fly-eye lens on which the light from the first fly-eye lens is incident, the integrator uniformalizing an illuminance distribution of light in a predetermined illumination region illuminated by the light incident from the solid-state light-emitting device, and

the optical device is disposed on an optical path between the first fly-eye lens and the one or more light sources including the one or more chips configured by the laser diode, and allows a shape of a luminance distribution of incidence light on an incidence plane of the first fly-eye lens to be expanded along a minor axis direction of the shape of the luminance distribution.

16. A direct view display unit, comprising:

an illumination optical system;

a spatial modulation device modulates, based on a picture signal inputted, light from the illumination optical system to thereby generate image light;

a projection optical system projecting the image light generated by the spatial modulation device; and

a transmissive screen on which the image light projected from the projection optical system is displayed,

the illumination optical system including

one or more light sources each including a solid-state light-emitting device configured to emit the light from a light emission region including a single or a plurality of light-emitting spots,

an optical member allowing the light incident from the solid-state light-emitting device to pass therethrough and exit therefrom, and

an optical path branching device,

the solid-state light-emitting device including a single chip or a plurality of chips each emitting the light,

wherein

one or more of the chips in the one or more light sources as a whole is a laser diode,

the optical member includes an integrator having a first fly-eye lens on which the light from the solid-state light-emitting device is incident and a second fly-eye lens on which the light from the first fly-eye lens is incident, the integrator uniformalizing an illuminance distribution of light in a predetermined illumination region illuminated by the light incident from the solid-state light-emitting device, and

the optical path branching device is provided on an optical path between the first fly-eye lens and the one or more light sources including the one or more chips configured by the laser diode, the optical path branching device branching an optical path of incidence light on an incidence plane of the first fly-eye lens into a plurality of optical paths along a minor axis direction of a shape of a luminance distribution of the incidence light.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2012
From: MIURA, KOJI
To: SONY CORPORATION
Reel/Frame 027795/0152 →
Priority Claims (1)
JP 2011-071152 · Mar 28, 2011 · national
Continuity (1)
Related Publication 20120249621A1 · Oct 4, 2012