IP Library Granted Patent US 10,649,086
Granted Patent B2
US 10,649,086 · App. 16/270,448 · Granted May 12, 2020

Lidar systems including a gallium and nitrogen containing laser light source

Inventors: James W. Raring (Santa Barbara, CA); Melvin McLaurin (Santa Barbara, CA); Paul Rudy (Manhattan Beach, CA); Vlad Novotny (Los Gatos, CA)
Assignee: Soraa Laser Diode, Inc.
G01S17/10F21K9/64F21V29/70G01S7/487G01S7/4817G01S17/023G01S17/89G01S17/936H01S5/0085H01S5/02212H01S5/02248H01S5/02284H01S5/02469H01S5/34333H01S5/4012H01S5/0215H01S5/0217H01S5/0287H01S5/02268H01S5/02276H01S5/02292H01S5/22H01S5/4031
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Quick Facts
Patent No.
US 10,649,086
App. No.
16/270,448
Granted
May 12, 2020
Kind
B2
Abstract

The present disclosure provides a mobile machine including a laser diode based lighting system having an integrated package holding at least a gallium and nitrogen containing laser diode and a wavelength conversion member. The gallium and nitrogen containing laser diode is configured to emit a first laser beam with a first peak wavelength. The wavelength conversion member is configured to receive at least partially the first laser beam with the first peak wavelength to excite an emission with a second peak wavelength that is longer than the first peak wavelength and to generate the white light mixed with the second peak wavelength and the first peak wavelength. The mobile machine further includes a light detection and ranging (LIDAR) system configured to generate a second laser beam and manipulate the second laser beam to sense a spatial map of target objects in a remote distance.

Claims (26)

1. A mobile machine comprising:

a laser diode based lighting system comprising a gallium and nitrogen containing laser diode and a wavelength conversion member, the gallium and nitrogen containing laser diode being configured to emit a first laser beam with a first peak wavelength, the wavelength conversion member being configured as a remote pumped phosphor, the laser diode based lighting system further comprising a space supporting free-space-optics to guide at least partially the first laser beam from the gallium and nitrogen containing laser diode to the remote pumped phosphor to excite an emission with a second peak wavelength that is longer than the first peak wavelength and to generate white light mixed with the second peak wavelength and the first peak wavelength; and

a light detection and ranging (LIDAR) system configured to generate a second laser beam and manipulate the second laser beam to sense a spatial map of target objects in a remote distance.

2. The mobile machine of claim 1 wherein the second laser beam is generated from the first laser beam.

3. The mobile machine of claim 1 wherein the second laser beam is generated from a laser diode separate from the gallium and nitrogen containing laser diode.

4. The mobile machine of claim 1 wherein the laser diode based lighting system further comprises a scanning MEMS or other beam scanner for directing the white light.

5. The mobile machine of claim 1 wherein the LIDAR system comprises a scanning MEMS or other beam scanner for manipulating the second laser beam.

6. The mobile machine of claim 1 wherein the gallium and nitrogen containing laser diode is remotely coupled with the wavelength conversion member.

7. The mobile machine of claim 1 wherein the white light illuminates the target objects and their surrounding environment.

8. The mobile machine of claim 1 wherein the wavelength conversion member comprises a phosphor material configured to operate in a mode selected from at least one of a reflective mode or a transmissive mode.

9. A mobile machine comprising:

a laser diode based lighting system comprising a gallium and nitrogen containing laser diode and a wavelength conversion member, the gallium and nitrogen containing laser diode being configured to emit a first laser beam with a first peak wavelength, the wavelength conversion member being configured as a remote pumped phosphor, the laser diode based lighting system further comprising an optical fiber to guide at least partially the first laser beam from the gallium and nitrogen containing laser diode to the remote pumped phosphor to excite an emission with a second peak wavelength that is longer than the first peak wavelength and to generate white light mixed with the second peak wavelength and the first peak wavelength; and

a light detection and ranging (LIDAR) system configured to generate a second laser beam and manipulate the second laser beam to sense a spatial map of target objects in a remote distance.

10. The mobile machine of claim 9 wherein the second laser beam is generated from the first laser beam.

11. The mobile machine of claim 9 wherein the second laser beam is generated from a laser diode separate from the gallium and nitrogen containing laser diode.

12. The mobile machine of claim 9 wherein the laser diode based lighting system further comprises a scanning MEMS or other beam scanner for directing the white light.

13. The mobile machine of claim 9 wherein the LIDAR system comprises a scanning MEMS or other beam scanner for manipulating the second laser beam.

14. The mobile machine of claim 9 wherein the gallium and nitrogen containing laser diode is remotely coupled with the wavelength conversion member.

15. The mobile machine of claim 9 wherein the white light illuminates the target objects and their surrounding environment.

16. A mobile machine comprising:

a laser diode based lighting system comprising a surface mount device (SMD) package including a common support member configured to support a gallium and nitrogen containing laser diode and a wavelength conversion member, the gallium and nitrogen containing laser diode being configured to emit a first laser beam with a first peak wavelength, the wavelength conversion member being configured to receive at least partially the first laser beam to excite an emission with a second peak wavelength that is longer than the first peak wavelength and to generate white light mixed with the second peak wavelength and the first peak wavelength; and

a light detection and ranging (LIDAR) system configured to generate a second laser beam and manipulate the second laser beam to sense a spatial map of target objects in a remote distance.

17. The mobile machine of claim 16 wherein the second laser beam is generated from the first laser beam.

18. The mobile machine of claim 16 wherein the second laser beam is generated from a laser diode separate from the gallium and nitrogen containing laser diode.

19. The mobile machine of claim 16 wherein the white light illuminates the target objects and their surrounding environment.

20. The mobile machine of claim 16 wherein the wavelength conversion member comprises a phosphor material configured to operate in a mode selected from at least one of a reflective mode or a transmissive mode.

Assignments (2)
CHANGE OF NAME Recorded Mar 15, 2021
From: SORAA LASER DIODE, INC.
To: KYOCERA SLD LASER, INC.
Reel/Frame 056001/0313 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2019
From: RARING, JAMES W.; MCLAURIN, MELVIN; RUDY, PAUL; NOVOTNY, VLAD
To: SORAA LASER DIODE, INC.
Reel/Frame 048272/0076 →
Continuity (2)
Continuation 15841053 · Dec 13, 2017
Related Publication 20190187284A1 · Jun 20, 2019
Cited By (3)
US 12,399,278 US 12,399,279 US 12,578,586