IP Library Granted Patent US 11,796,156
Granted Patent B2
US 11,796,156 · App. 18/000,864 · Granted Oct 24, 2023

Fluorescent plate, wavelength conversion member, and light source device

Inventors: Shohei Takaku (Nagoya, JP); Hiroki Yamauchi (Nagoya, JP); Shinji Ban (Nagoya, JP); Hiroki Takeuchi (Nagoya, JP)
Assignee: NITERRA CO., LTD.
F21V9/40F21V7/26F21V29/502F21V29/70
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Quick Facts
Patent No.
US 11,796,156
App. No.
18/000,864
Granted
Oct 24, 2023
Kind
B2
Abstract

A fluorescent plate includes a fluorescent phase which emits fluorescence by excitation light, a light-transmitting phase which allows passage of the excitation light, and a plurality of voids surrounded by the fluorescent phase and the light-transmitting phase, wherein, in a cross section of the fluorescent plate including cross sections of the voids, an average ratio of a portion of the circumference of a void, which portion is in contact with the fluorescent phase to the entire circumference of the void, is higher than an area ratio of the area of the fluorescent phase present in the fluorescent plate to the total area of the fluorescent phase and the light-transmitting phase present in the fluorescent plate.

Claims (50)

1. A fluorescent plate comprising:

a fluorescent phase which emits fluorescence by excitation light,

a light-transmitting phase which allows passage of the excitation light, and

a plurality of voids surrounded by the fluorescent phase and the light-transmitting phase,

wherein, in a cross section of the fluorescent plate including cross sections of the voids, an average ratio of a portion of the circumference of a void, which portion is in contact with the fluorescent phase to the entire circumference of the void, is higher than

a ratio of the area of the fluorescent phase present in the fluorescent plate to the total area of the fluorescent phase and the light-transmitting phase present in the fluorescent plate.

2. The fluorescent plate according to claim 1 ,

wherein the ratio of the portion of the circumference of a void in contact with the fluorescent phase to the entire circumference of the void is higher, by 5% or more, than the ratio of the area of the fluorescent phase present in the fluorescent plate to the total area of the fluorescent phase and the light-transmitting phase present in the fluorescent plate.

3. The fluorescent plate according to claim 1 ,

wherein, in a cross section of the fluorescent plate including cross sections of the voids, the plurality of voids have an average equivalent circle diameter of 1 micrometer or greater and smaller than 10 micrometers.

4. The fluorescent plate according to claim 1 ,

wherein, in a cross section of the fluorescent plate including cross sections of the voids, a ratio of the area of the fluorescent phase present in the fluorescent plate to the total area of the fluorescent phase and the light-transmitting phase present in the fluorescent plate is 21% or higher.

5. The fluorescent plate according to claim 1 ,

wherein, in a cross section of the fluorescent plate including cross sections of the voids, a ratio of the area of the fluorescent phase present in the fluorescent plate to the total area of the fluorescent phase and the light-transmitting phase present in the fluorescent plate is 90% or lower.

6. A wavelength conversion member comprising:

the fluorescent plate as recited in claim 1 , and

a reflection member which is attached to the fluorescent plate and which reflects the excitation light and the fluorescence.

7. The fluorescent plate according to claim 2 ,

wherein, in a cross section of the fluorescent plate including cross sections of the voids, the plurality of voids have an average equivalent circle diameter of 1 micrometer or greater and smaller than 10 micrometers.

8. The fluorescent plate according to claim 2 ,

wherein, in a cross section of the fluorescent plate including cross sections of the voids, a ratio of the area of the fluorescent phase present in the fluorescent plate to the total area of the fluorescent phase and the light-transmitting phase present in the fluorescent plate is 21% or higher.

9. The fluorescent plate according to claim 2 ,

wherein, in a cross section of the fluorescent plate including cross sections of the voids, a ratio of the area of the fluorescent phase present in the fluorescent plate to the total area of the fluorescent phase and the light-transmitting phase present in the fluorescent plate is 90% or lower.

10. A wavelength conversion member comprising:

the fluorescent plate as recited in claim 2 , and

a reflection member which is attached to the fluorescent plate and which reflects the excitation light and the fluorescence.

11. The fluorescent plate according to claim 3 ,

wherein, in a cross section of the fluorescent plate including cross sections of the voids, a ratio of the area of the fluorescent phase present in the fluorescent plate to the total area of the fluorescent phase and the light-transmitting phase present in the fluorescent plate is 21% or higher.

12. The fluorescent plate according to claim 3 ,

wherein, in a cross section of the fluorescent plate including cross sections of the voids, a ratio of the area of the fluorescent phase present in the fluorescent plate to the total area of the fluorescent phase and the light-transmitting phase present in the fluorescent plate is 90% or lower.

13. A wavelength conversion member comprising:

the fluorescent plate as recited in claim 3 , and

a reflection member which is attached to the fluorescent plate and which reflects the excitation light and the fluorescence.

14. The fluorescent plate according to claim 4 ,

wherein, in a cross section of the fluorescent plate including cross sections of the voids, a ratio of the area of the fluorescent phase present in the fluorescent plate to the total area of the fluorescent phase and the light-transmitting phase present in the fluorescent plate is 90% or lower.

15. A wavelength conversion member comprising:

the fluorescent plate as recited in claim 4 , and

a reflection member which is attached to the fluorescent plate and which reflects the excitation light and the fluorescence.

16. The wavelength conversion member according to claim 6 , further comprising a heat radiation member for radiating heat of the fluorescent plate to an outside atmosphere.

17. A light source device comprising:

the wavelength conversion member as recited in claim 6 , and

a light source which radiates the excitation light to the florescent plate.

18. The fluorescent plate according to claim 7 ,

wherein, in a cross section of the fluorescent plate including cross sections of the voids, a ratio of the area of the fluorescent phase present in the fluorescent plate to the total area of the fluorescent phase and the light-transmitting phase present in the fluorescent plate is 90% or lower.

19. A wavelength conversion member comprising:

the fluorescent plate as recited in claim 5 , and

a reflection member which is attached to the fluorescent plate and which reflects the excitation light and the fluorescence.

20. A light source device comprising:

the wavelength conversion member as recited in claim 16 , and

a light source which radiates the excitation light to the florescent plate.

Assignments (3)
CHANGE OF NAME Recorded Sep 7, 2023
From: NGK SPARK PLUG CO., LTD.
To: NITERRA CO., LTD.
Reel/Frame 064842/0215 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2022
From: TAKAKU, SHOHEI; BAN, SHINJI; TAKEUCHI, HIROKI
To: NGK SPARK PLUG CO., LTD.
Reel/Frame 061996/0012 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2022
From: YAMAUCHI, HIROKI
To: NGK SPARK PLUG CO., LTD.
Reel/Frame 061996/0118 →
Priority Claims (1)
JP 2020-099394 · Jun 8, 2020 · national
Continuity (1)
Related Publication 20230213172A1 · Jul 6, 2023