IP Library › Granted Patent US 11,641,009
Granted Patent B2
US 11,641,009 · App. 16/972,947 · Granted May 2, 2023

Light-emitting device

Inventors: Takashi Fukuda (Tsukuba, JP); Tetsuya Gouda (Himeji, JP); Yuta Sakimoto (Himeji, JP); Naoto Hirosaki (Tsukuba, JP); Kohsei Takahashi (Tsukuba, JP)
Assignees: NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGY; PHOENIX ELECTRIC CO., LTD.; NATIONAL INSTITUTE FOR MATERIALS SCIENCE
H01L33/504C09K11/77927H01L27/322H01L33/505H01S5/0087H05B33/14
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Quick Facts
Patent No.
US 11,641,009
App. No.
16/972,947
Granted
May 2, 2023
Kind
B2
Abstract

A light-emitting device including a solid-state light source that emits light having a peak wavelength in the range of 480 nm or less and a fluorescent film that covers the solid-state light source and includes at least one kind of phosphor, wherein the fluorescent film includes at least one kind of near-infrared phosphor that is excited by light from the solid-state light source, has a peak wavelength in the range exceeding 700 nm, and has an emission spectrum with a full width at half maximum of 100 nm or more in a range including the peak wavelength.

Claims (20)

1. A light-emitting device comprising at least a solid-state light source that emits light having a peak wavelength in the range of 480 nm or less and a fluorescent film that covers the solid-state light source and includes at least one kind of phosphor, wherein

the fluorescent film includes at least one kind of near-infrared phosphor that is excited by light from the solid-state light source and emits light having a peak wavelength in the range exceeding 700 nm and having an emission spectrum with a full width at half maximum of 100 nm or more in a range including the peak wavelength,

the light emitting device has a continuous emission spectrum at least in the range of 400 nm or more to 1,000 nm or less, and

the continuous emission spectrum means the emission intensity of the emission spectrum is 0.01 or more, as a value relative to an 800 nm reference, across the entire region within this range.

2. The light-emitting device according to claim 1 , wherein the fluorescent film further includes at least one kind of visible phosphor that is excited by light from the solid-state light source and emits light having a peak wavelength in the range of 350 nm or more to 700 nm or less.

3. The light-emitting device according to claim 2 , wherein the fluorescent film includes, as the visible phosphor, one or more kinds of each of: a visible phosphor A that is excited by light from the solid-state light source and emits light having a peak wavelength in the range of 350 nm or more to less than 430 nm; a visible phosphor B that is excited by light from the solid-state light source and emits light having a peak wavelength in the range of 430 nm or more to less than 500 nm; and a visible phosphor C that is excited by light from the solid-state light source and emits light having a peak wavelength in the range of 500 nm or more to 700 nm or less.

4. The light-emitting device according to claim 3 , wherein the fluorescent film is formed with two or more layers and the visible phosphors A and B are included in different layers.

5. The light-emitting device according to claim 3 , wherein

the fluorescent film is formed with two or more layers each having a different kind of phosphor included therein, and

the two or more layers are laminated, in the traveling direction of light from the solid-state light source, in an order from a layer including a phosphor having a longer peak wavelength to a layer including a phosphor having a shorter peak wavelength.

6. The light-emitting device according to claim 4 , wherein each layer of the fluorescent film includes one or more and three or less kinds of phosphors.

7. The light-emitting device according to claim 3 , wherein the fluorescent film has, on a same surface, two or more regions each having a different kind of phosphor included therein.

8. The light-emitting device according to claim 7 , wherein the two or more regions each having a different kind of phosphor have at least a region including the near-infrared phosphor and a region including the visible phosphor.

9. The light-emitting device according to claim 1 , comprising two or more of the solid-state light sources.

10. The light-emitting device according to claim 1 , wherein the solid-state light source is at least one selected from a light-emitting diode, a laser diode, and an organic electroluminescent light-emitting element.

11. The light-emitting device according to claim 1 , wherein the near-infrared phosphor includes divalent europium.

12. A fluorescent film including: at least one kind of near-infrared phosphor that, due to light having a peak wavelength in the range of 480 nm or less, emits light having a peak wavelength in the range exceeding 700 nm and having an emission spectrum with a full width at half maximum of 100 nm or more in a range including the peak wavelength; and at least one kind of visible phosphor that, due to the light, emits light having a peak wavelength in the range of 350 nm or more to 700 nm or less,

wherein the near-infrared phosphor has a composition represented by formula (I)

Li a Sr b La c Si d N e Eu f   (I)

wherein a-f are numbers satisfying: a+b+c+d+e+f=100; and 0<a≤8.22, 0.22≤b≤17.33, 1.12≤c≤11.36, 22.41≤d≤38.09, 49.47≤e≤56.09, and 0.88≤f≤1.01.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2025
From: PHOENIX ELECTRIC CO., LTD.
To: NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGY; NATIONAL INSTITUTE FOR MATERIALS SCIENCE
Reel/Frame 070130/0594 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2020
From: FUKUDA, TAKASHI; GOUDA, TETSUYA; SAKIMOTO, YUTA; HIROSAKI, NAOTO; TAKAHASHI, KOHSEI
To: NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGY; PHOENIX ELECTRIC CO., LTD.; NATIONAL INSTITUTE FOR MATERIALS SCIENCE
Reel/Frame 054567/0739 →
Priority Claims (2)
JP JP2018-111551 · Jun 12, 2018 · national
JP JP2018-211960 · Nov 12, 2018 · national
Continuity (1)
Related Publication 20210249569A1 · Aug 12, 2021
Cited By (1)
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