IP Library Granted Patent US 10,473,299
Granted Patent B2
US 10,473,299 · App. 16/173,022 · Granted Nov 12, 2019

Optical converter colour wheel

Inventors: Louisa Yu (Shanghai, CN); Jie Fan (Shanghai, CN); Xianjiang Wang (Shanghai, CN)
Assignee: Materion Corporation
F21V17/002B60Q1/02F21S41/125F21S41/16F21S41/176F21S41/192F21V9/40F21V17/162G02B7/006G02B26/008G03B21/204G03B33/08G02B1/11H04N9/3158
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Quick Facts
Patent No.
US 10,473,299
App. No.
16/173,022
Granted
Nov 12, 2019
Kind
B2
Abstract

A light converter comprises: a solid-state optical member configured to absorb light of an excitation wavelength and generate light of an emission wavelength; a base; and a mechanical fastener attaching the solid-state optical member to the base. The light converter may be part of a light engine, a phosphor wheel or an automotive headlight. A method of manufacturing such a phosphor wheel is also provided.

Claims (36)

1. A light converter comprising:

an annular solid-state optical member comprising a phosphor, the annular solid state optical member configured to absorb light of an excitation wavelength and generate light of an emission wavelength;

a disk-shaped base; and

a cover ring secured with the disk-shaped base and retaining the annular solid-state optical member by engaging an outer rim of the annular solid-state optical member;

wherein no clamping force is applied to an inner rim of the optical converter.

2. The light converter of claim 1 wherein the annular solid state optical member comprises a plurality of color segments wherein the cover ring retains the color segments by engaging the outer rims of the color segment.

3. The light converter of claim 2 wherein the cover ring does not engage the inner rims of the color segments.

4. The light converter of claim 1 wherein the cover ring does not engage the inner rim of the annular solid-state optical member.

5. The light converter of claim 1 wherein the outer rim of the annular solid-state optical member is disposed between the disk-shaped base and the cover ring.

6. The light converter of claim 1 , wherein the annular solid-state optical member is configured to absorb blue light and generate at least one of yellow light and green light.

7. The light converter of claim 1 , wherein the annular solid-state optical member comprises an annular ceramic phosphor member.

8. The light converter of claim 1 , wherein the disk-shaped base includes a central opening.

9. A phosphor wheel comprising:

the light converter of claim 1 ; and

a motor arranged to rotate the disk-shaped base around an axis passing through the disk-shaped base and normal to a planar surface of the annular solid-state optical member.

10. The light converter of claim 1 wherein no adhesive secures the annular solid-state optical member to the disk-shaped base.

11. A light converter comprising:

an annular solid-state optical member comprising a phosphor, the annular solid state optical member configured to absorb light of an excitation wavelength and generate light of an emission wavelength;

a disk-shaped base; and

a cover ring secured with the disk-shaped base and retaining the annular solid-state optical member by engaging an outer rim of the annular solid-state optical member;

wherein the cover ring is secured with the disk-shaped base by plugs projecting from one of an outer flank of the disk-shaped base and the cover ring mated with corresponding notches of the other of the outer flank of the disk-shaped base and the cover ring.

12. A phosphor wheel comprising:

an annular ceramic phosphor member;

a disk-shaped base; and

a cover ring secured with the disk-shaped base and retaining the annular ceramic phosphor member by engaging an outer rim of the annular ceramic phosphor member;

wherein the cover ring is secured with the disk-shaped base by plugs projecting from one of an outer flank of the disk-shaped base and the cover ring mated with corresponding notches of the other of the outer flank of the disk-shaped base and the cover ring.

13. The phosphor wheel of claim 12 wherein the outer rim of the annular ceramic phosphor member is disposed between the disk-shaped base and the cover ring.

14. The phosphor wheel of claim 12 , wherein the annular ceramic phosphor member is configured to absorb blue light and generate at least one of yellow light and green light.

15. The phosphor wheel of claim 12 wherein the disk-shaped base is configured for connection with a motor for rotating the disk-shaped base around an axis passing through the disk-shaped base and normal to a planar surface of the annular ceramic phosphor member by a threaded adapter or a central opening of the disk-shaped base.

16. The phosphor wheel of claim 12 further comprising:

a motor connected with the disk-shaped base for rotating the disk-shaped base around an axis passing through the disk-shaped base and normal to a planar surface of the annular ceramic phosphor member.

17. The phosphor wheel of claim 12 wherein the annular ceramic phosphor member comprises a plurality of color segments wherein the cover ring retains the color segments by engaging the outer rims of the color segments.

18. The phosphor wheel of claim 17 wherein the cover ring does not engage the inner rims of the color segments.

19. A projector for generating color sequential illumination, the projector comprising:

the phosphor wheel of claim 17 ; and

a light source arranged to apply exciting light to the annular ceramic phosphor member.

Assignments (2)
SECURITY INTEREST Recorded Sep 25, 2019
From: MATERION CORPORATION
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 050493/0809 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 31, 2019
From: YU, LOUISA; FAN, JIE; WANG, XIANJIANG
To: MATERION CORPORATION
Reel/Frame 048211/0618 →
Continuity (2)
Continuation 14737816 · Jun 12, 2015
Related Publication 20190170331A1 · Jun 6, 2019