IP Library › Granted Patent US 9,948,065
Granted Patent B2
US 9,948,065 · App. 15/123,381 · Granted Apr 17, 2018

Semiconductor light-emitting device with an axis of symmetry

Inventors: Yury Georgievich Shreter (Saint-Petersburg, RU); Yury Toomasovich Rebane (Saint-Petersburg, RU); Aleksey Vladimirovich Mironov (Saint-Petersburg, RU)
H01S5/4043F21V9/16H01S5/2031H01S5/34333H01S5/4018F21Y2115/30
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Quick Facts
Patent No.
US 9,948,065
App. No.
15/123,381
Granted
Apr 17, 2018
Kind
B2
Abstract

The present invention proposes a semiconductor light-emitting device having an axis of symmetry, the device including two or more laser diodes, each of the laser diodes has an axis of symmetry, wherein the laser diodes are arranged in series on the axis of symmetry of the light-emitting device in such a way that their axes of symmetry coincide, wherein faces of the laser diodes are connected so that they are in electric and mechanic contact and form a bar of the laser diodes, a directional pattern of radiation thereof has an axis of symmetry coinciding with the axis of symmetry of the light-emitting device. The proposed light-emitting device can be used in laser lamps of white light for exciting phosphors since it provides a high degree of flare of cylindrical surfaces.

Claims (18)

1. A semiconductor light-emitting device having an axis of symmetry, the device comprising two or more laser diodes each of the laser diodes has an axis of symmetry wherein the laser diodes are arranged in series on the axis of symmetry of the light-emitting device in such a way that their axes of symmetry coincide, wherein faces of the laser diodes are connected such that they are in electrical and mechanic contact and form a bar of laser diodes, a directional pattern of radiation of the laser diodes has an axis of symmetry coinciding with the axis of symmetry of the light-emitting device and is directed perpendicularly to the axis of symmetry of the light-emitting device, wherein light is emitted from each of the laser diodes homogeneously in all directions perpendicular to the axis of symmetry of the semiconductor light-emitting device.

2. The semiconductor light-emitting device according to claim 1 , wherein each of the laser diodes has a disk optical resonator.

3. The semiconductor light-emitting device according to claim 1 , wherein each of the laser diodes has a hollow disk optical resonator.

4. The semiconductor light-emitting device according to claim 1 , wherein each of the laser diodes has a ring optical resonator.

5. The semiconductor light-emitting device according to claim 1 , wherein each of the laser diodes has a polygonal optical resonator.

6. The semiconductor light-emitting device according to claim 1 , wherein each of the laser diodes has a hollow polygonal optical resonator.

7. The semiconductor light-emitting device according to claim 1 , wherein each of the laser diodes is made of III-nitrides.

8. The semiconductor light-emitting device according to claim 1 , wherein the light is a source of visible or ultra-violet light.

9. A laser lamp with a phosphor, wherein the lamp comprises a semiconductor light-emitting device having an axis of symmetry, the device comprising two or more laser diodes, each of the laser diodes has an axis of symmetry wherein the laser diodes are arranged in series on the axis of symmetry of the light-emitting device in such a way that their axes of symmetry coincide, wherein faces of the laser diodes are connected such that they are in electrical and mechanic contact and form a bar of laser diodes, a directional pattern of radiation of the laser diodes has an axis of symmetry coinciding with the axis of symmetry of the light-emitting device and is directed perpendicularly to the axis of symmetry of the light-emitting device, wherein light is emitted from each of the laser diodes homogeneously in all directions perpendicular to the axis of symmetry of the semiconductor light-emitting device, the device being a source of the light for optical excitation of the phosphor.

10. The laser lamp according to claim 9 , wherein the lamp has an axis of symmetry, the light-emitting device placed inside the lamp in such a way that the axis of symmetry of the light-emitting device and the axis of symmetry of the lamp coincide so that the light of the device optically excites the phosphor that results in white light being emitted homogeneously in all directions perpendicular to the axis of symmetry of the lamp.

11. The laser lamp according to claim 9 , wherein the lamp comprises a cylinder having an axis of symmetry, the light-emitting device placed inside cylinder in such a way that the axis of symmetry of the light-emitting device and the axis of symmetry of the cylinder coincide, the phosphor disposed on exterior of the cylinder so that the light of the device optically excites the phosphor that results in white light being emitted homogeneously in all directions perpendicular to the axis of symmetry of the cylinder.

12. The laser lamp according to claim 9 , wherein each of the laser diodes of the device has a disk optical resonator.

13. The laser lamp according to claim 9 , wherein each of the laser diodes of the device has a hollow disk optical resonator.

14. The laser lamp according to claim 9 , wherein each of the laser diodes of the device has a ring optical resonator.

15. The laser lamp according to claim 9 , wherein each of the laser diodes of the device has a polygonal optical resonator.

16. The laser lamp according to claim 9 , wherein each of the laser diodes of the device has a hollow polygonal optical resonator.

17. The laser lamp according to claim 9 , wherein each of the laser diodes of the device is made of III-nitrides.

18. The laser lamp according to claim 9 , wherein the light is a source of visible or ultra-violet light.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2025
From: SHRETER, YURY GEORGIEVICH; MIRONOV, ALEKSEY VLADIMIROVICH; REBANE, YURY TOOMASOVICH
To: SHRETER, YURY GEORGIEVICH; MIRONOV, ALEKSEY VLADIMIROVICH
Reel/Frame 070802/0437 →
Priority Claims (1)
RU 2014108564 · Mar 5, 2014 · national
Continuity (1)
Related Publication 20170110853A1 · Apr 20, 2017