IP Library Granted Patent US 10,042,240
Granted Patent B2
US 10,042,240 · App. 15/495,853 · Granted Aug 7, 2018

Projection system, light source system and light source assembly

Inventors: Fei Hu (Shenzhen, CN); Yi Li (Pleasanton, CA); Yi Yang (Shenzhen, CN)
Assignee: APPOTRONICS CORPORATION LIMITED
G03B21/204F21K9/64F21S10/007F21V9/08F21V9/10F21V13/08G02B26/008G03B21/14G03B21/2066G03B21/28H04N9/315H04N9/3114H04N9/3117H04N9/3155F21V9/16F21Y2115/00
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Quick Facts
Patent No.
US 10,042,240
App. No.
15/495,853
Granted
Aug 7, 2018
Kind
B2
Abstract

Provided is a projection system, a light source system, and a light source assembly. The light source system ( 100 ) comprises an excitation light source ( 101 ), a wavelength conversion device ( 106 ), a color filtering device ( 107 ), a drive device ( 108 ), and a first optical assembly. The wavelength conversion device ( 106 ) comprises at least one wavelength conversion region. The optical filtering device ( 107 ) is fixed face-to-face with the wavelength conversion device ( 106 ), and comprises at least a first optical filtering region. The drive device ( 108 ) drives the wavelength conversion device ( 106 ) and the optical filtering device ( 107 ), allowing the wavelength conversion region and the first optical filtering region to act synchronously, and the wavelength conversion region is periodically set on the propagation path of the excitation light, thereby converting the excitation light wavelength into converted light. The first optical assembly allows the converted light to be incident on the first optical filtering region. The first optical filtering region filters the converted light, so as to enhance the color purity of the converted light. The light source system is simple in structure, easy to implement, and highly synchronous.

Claims (41)

1. A light source system, comprising:

an excitation light source for generating an excitation light;

a wavelength conversion device including at least one wavelength conversion area, the wavelength conversion area being disposed in a propagation path of the excitation light from the excitation light source at least some of the time, wherein the wavelength conversion area converts the excitation light into a converted light and transmits the converted light; and

a red illumination light source for generating a red illumination light, wherein the red illumination light and the converted light are output along a common optical path,

wherein the excitation light and the red illumination light are incident on a same side of the wavelength conversion device along another common optical path.

2. The light source system of claim 1 ,

wherein the wavelength conversion device further includes a red light transmission area,

wherein the light source system further includes a driving device for driving the wavelength conversion device, and as the wavelength conversion device is driven by the driving device, the wavelength conversion area and the red light transmission area of the wavelength conversion device are sequentially and periodically disposed on optical paths of the excitation light generated by the excitation light source and the red illumination light generated by the red illumination light source,

wherein the wavelength conversion area converts the excitation light incident on it into a converted light and transmits the converted light,

wherein the red light transmission area transmits the red illumination light incident on it, and

wherein the converted light and the red illumination light are output from the wavelength conversion device from a side that is opposite the side where the excitation light source is disposed on.

3. The light source system of claim 2 , further comprising a first dichroic mirror for combining light paths of the excitation light from the excitation light source and the red illumination light form the red illumination light source.

4. The light source system of claim 2 , wherein the excitation light source is a blue excitation light source for generating a blue excitation light,

wherein the wavelength conversion device includes a blue light transmission area;

wherein as the wavelength conversion device is driven by the driving device, the wavelength conversion area, the red light transmission area and the blue light transmission area of the wavelength conversion device are sequentially and periodically disposed on optical paths of the blue excitation light generated by the excitation light source and the red illumination light generated by the red illumination light source, and wherein the blue light transmission area transmits the blue excitation light incident thereon, and

wherein the blue excitation light and the converted light are output from the wavelength conversion device along the common optical path.

5. The light source system of claim 2 , further comprising:

a blue illumination light source for generating a blue illumination light; and

an optical assembly, for combining the optical paths of the converted light and the red illumination light output from the wavelength conversion device and the blue illumination light generated by the blue illumination light source.

6. The light source system of claim 5 , wherein the optical assembly includes a second dichroic mirror,

wherein the converted light and the red illumination light output from the wavelength conversion device are incident on one side of the second dichroic mirror,

wherein the blue illumination light from the blue illumination light source is incident on another side of the second dichroic mirror, and

wherein the second dichroic mirror combines optical paths of the converted light, the red illumination light and the blue illumination light.

7. The light source system of claim 6 , wherein the optical assembly includes a reflecting mirror set, which includes at least one reflecting mirror,

wherein the reflecting mirror set reflects the converted light and the red illumination light from the wavelength conversion device to the second dichroic mirror.

8. The light source system of claim 5 , wherein the excitation light source, the red illumination light source and the blue illumination light source are controlled to turn on at different times, and at any given time, only one of the excitation light, the blue illumination light and the red illumination light is generated.

9. The light source system of claim 5 , further comprising:

a light homogenization device, for homogenizing lights that has been combined by the optical assembly.

10. The light source system of claim 2 , wherein the red light transmission area is a red filter area.

11. The light source system of claim 2 , wherein the red light transmission area includes a light scattering material.

12. The light source system of claim 1 , wherein the excitation light source is a UV excitation light source.

13. The light source system of claim 12 , wherein the wavelength conversion area includes a blue wavelength conversion area.

14. The light source system of claim 1 , wherein the wavelength conversion area includes at least one of a green wavelength conversion area and a yellow wavelength conversion area.

15. The light source system of claim 1 , wherein the excitation light source is a blue excitation light source for generating a blue excitation light,

wherein the wavelength conversion device includes a blue light transmission area;

wherein as the wavelength conversion device is driven by the driving device, the wavelength conversion area and the blue light transmission area of the wavelength conversion device are sequentially and periodically disposed on optical paths of the blue excitation light generated by the excitation light source, and wherein the blue light transmission area transmits the blue excitation light incident thereon, and

wherein the blue excitation light and the converted light are output from the wavelength conversion device along the common optical path.

16. The light source system of claim 15 , wherein the blue light transmission area includes a light scattering material.

17. The light source system of claim 1 , further comprising a blue illumination light source for generating a blue illumination light, and

wherein the blue illumination light and the converted light are output along the common optical path.

18. A projection system, comprising the light source system of claim 1 .

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2019
From: HU, FEI; LI, YI; YANG, YI
To: APPOTRONICS CHINA CORPORATION
Reel/Frame 048417/0181 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2017
From: APPOTRONICS CHINA CORPORATION
To: APPOTRONICS CORPORATION LIMITED
Reel/Frame 043898/0022 →
Priority Claims (3)
CN 2010 1 0579909 · Dec 8, 2010 · national
CN 2010 1 0624857 · Dec 30, 2010 · national
CN 2011 1 0191454 · Jul 8, 2011 · national
Continuity (2)
Continuation 13992243
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