Laser based display system
The present invention is directed to display technologies. More specifically, various embodiments of the present invention provide projection display systems where one or more laser diodes are used as a light source.
1. A light apparatus comprising:
a housing;
a plurality of edge emitting laser diode devices arranged within the housing;
an application configured with the plurality of edge emitting laser diode devices, the application selected from projection display, defense pointer, illuminator, biomedical instrumentation, therapeutics, industrial imaging, and 3D display, at least one of the plurality of edge emitting laser diode devices comprising:
a gallium and nitrogen containing material;
an n-cladding layer with a thickness of greater than about 100 nm and a Si doping level of about 1E17 cm−3 to about 3E18 cm−3;
an n-side separate confinement heterostructure (SCH) layer comprised of InGaN;
at least one quantum well region;
a p-cladding layer; and
a p++ contact layer;
an optical member configured to receive laser beams output from the plurality of edge emitting laser diode devices, the optical member including a waveguide coupled to the plurality of edge emitting laser diode devices and a phosphor material arranged to be excited by the laser beams, the optical member configured to provide a substantially white light output.
2. The apparatus of claim 1 wherein the substantially white light output is provided in a projection system.
3. The apparatus of claim 1 wherein the phosphor material is selected from at least one of a red phosphor, a green phosphor, or a blue phosphor.
4. The apparatus of claim 1 further comprising a reflector coupled to an output of the plurality of edge emitting laser diode devices.
5. The apparatus of claim 1 further comprising a controller coupled to the plurality of edge emitting laser diode devices.
6. The apparatus of claim 1 further comprising a reflector coupled to an output of the plurality of edge emitting laser diode devices and a controller coupled to the plurality of edge emitting laser diode devices.
7. The apparatus of claim 1 further comprising a controller coupled to the plurality of edge emitting laser diode devices and a reflector coupled to an output of the plurality of edge emitting laser diode devices.
8. The apparatus of claim 1 further comprising a controller coupled to the plurality of edge emitting laser diode devices and a reflector coupled to an output of the plurality of edge emitting laser diode devices, the light apparatus further comprising a projection device configured to receive the substantially white light output.
9. A light source apparatus comprising:
a housing having an aperture;
a plurality of edge emitting laser diode devices each comprising a gallium and nitrogen containing material coupled to the housing, the plurality of edge emitting laser diode devices configured to output laser beams, wherein at least one of the plurality of edge emitting laser diode devices comprises:
an n-cladding layer with a thickness from about 100 nm to about 5000 nm and a Si doping level of about 1E17 cm−3 to about 3E18 cm−3;
an n-side separate confinement heterostructure (SCH) layer comprised of InGaN;
at least one quantum well region;
a p-cladding layer; and
a p++-GaN contact layer;
an application configured with the plurality of edge emitting laser diode devices, the application selected from projection display, defense pointer, illuminator, biomedical instrumentation, therapeutics, industrial imaging, and 3D display; and
one or more optical members including a waveguide coupled to the plurality of edge emitting laser diode devices and phosphor material arranged to receive the laser beams output from the plurality of edge emitting laser diode devices and provide a substantially white emission.
10. The apparatus of claim 9 wherein at least one of the laser beams is characterized by a blue color.
11. The apparatus of claim 9 further comprising a reflector coupled to the one or more optical members.
12. The apparatus of claim 9 further comprising a controller coupled to the plurality of edge emitting laser diode devices.
13. A light apparatus, the apparatus comprising:
a housing;
a plurality of edge emitting laser diode devices arranged within the housing, at least one of the plurality of edge emitting laser diode devices comprising a gallium and nitrogen containing material, wherein at least one of the plurality of edge emitting laser diode devices comprises:
an n-cladding layer with a thickness from about 100 nm to about 5000 nm and a Si doping level of about 1E17 cm−3 to about 3E18 cm−3;
an n-side separate confinement heterostructure (SCH) layer comprised of InGaN;
at least one quantum well region;
a p-cladding layer; and
a p++-GaN contact layer;
an optical member configured to receive laser beams output from the plurality of edge emitting laser diode devices;
a phosphor material arranged to be excited by the laser beams to provide a substantially white light output;
a reflector coupled to an output of the plurality of edge emitting laser diode devices;
a controller coupled to the plurality of edge emitting laser diode devices;
wherein the optical member comprises a waveguide coupled to the plurality of edge emitting laser diode devices.
14. The apparatus of claim 13 wherein the gallium and nitrogen containing material includes a non-polar or semipolar surface configuration.
15. The apparatus of claim 13 further comprising an application configured with the plurality of edge emitting laser diode devices, the application selected from projection display, defense pointer, illuminator, biomedical instrumentation, therapeutics, industrial imaging, and 3D display.