IP Library Patent Application 10920496
Patent Application
App. No. 10/920,496

Device and method for emitting output light using group IIB element selenide-based phosphor material and/or thiogallate-based phosphor material

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Patent No.
US None
App. No.
10/920,496
Abstract

A device and method for emitting output light utilizes Group IIB element Selenide-based phosphor material and/or Thiogallate-based phosphor material to convert at least some of the original light emitted from a light source of the device to longer wavelength light to change the optical spectrum of the output light. Thus, the device and method can be used to produce white color light.

Claims (33)

1 . A device for emitting output light, said device comprising:

a light source that emits first light of a first peak wavelength; and

a wavelength-shifting region optically coupled to said light source to receive said first light, said wavelength-shifting region including Group IIB element Selenide-based phosphor material having a property to convert some of said first light to second light of a second peak wavelength, said wavelength-shifting region further including Thiogallate-based phosphor material having a property to convert some of said first light to third light of a third peak wavelength, said second light and said third light being components of said output light.

2 . The device of claim 1 wherein at least one of said Group IIB element Selenide-based phosphor material and said Thiogallate-based phosphor material is doped with at least one rare earth element.

3 . The device of claim 1 wherein said Group IIB element Selenide-based phosphor material of said wavelength-shifting region includes one of Zinc Selenide and Cadmium Selenide.

4 . The device of claim 3 wherein said Group IIB element Selenide-based phosphor material includes said Zinc Selenide activated by at least one element selected from a group consisting of Copper, Chlorine, Fluorine, Bromine and Silver.

5 . The device of claim 1 wherein said Thiogallate-based phosphor material has a structure defined by MN x S y where M is an element selected from a group consisting of Barium, Calcium, Strontium and Magnesium, N is an element selected from a group consisting of Aluminum, Gallium and Indium, and x and y are numbers.

6 . The device of claim 5 wherein said Thiogallate-based phosphor material has a structure defined by one of MN 2 S 4 and MN 4 S 7 .

7 . The device of claim 1 wherein said Thiogallate-based phosphor material includes Barium Gallium Sulfide activated by a rare metal element.

8 . The device of claim 7 wherein said Thiogallate-based phosphor material includes said Barium Gallium Sulfide activated by Europium as defined by the formula: BaGa 4 S 7 :Eu.

9 . The device of claim 1 wherein at least one of said Group IIB element Selenide-based phosphor material and said Thiogallate-based phosphor material includes phosphor particles having a silica coating.

10 . The device of claim 1 wherein said Group IIB element Selenide-based phosphor material includes phosphor particles having particle size of less than or equal to 30 microns.

11 . The device of claim 1 wherein said Thiogallate-based phosphor material includes phosphor particles having particle size of less than or equal to 40 microns.

12 . A method of emitting output light, said method comprising:

generating first light of a first peak wavelength;

receiving said first light, including converting some of said first light to second light of a second peak wavelength using Group IIB element Selenide-based phosphor material and converting some of said first light to third light of a third peak wavelength using Thiogallate-based phosphor material; and

emitting said second light and said third light as components of said output light.

13 . The method of claim 12 wherein at least one of said Group IIB element Selenide-based phosphor material and said Thiogallate-based phosphor material is doped with at least one rare earth element.

14 . The method of claim 12 wherein said Group IIB element Selenide-based phosphor material includes one of Zinc Selenide and Cadmium Selenide.

15 . The method of claim 12 wherein said Thiogallate-based phosphor material has a structure defined by MN x S y , where M is an element selected from a group consisting of Barium, Calcium, Strontium and Magnesium, N is an element selected from a group consisting of Aluminum, Gallium and Indium, and x and y are numbers.

16 . The method of claim 15 wherein said Thiogallate-based phosphor material has a structure defined by one of MN 2 S 4 and MN 4 S 7 .

17 . The method of claim 12 wherein said Thiogallate-based phosphor material includes Barium Gallium Sulfide activated by a rare metal element.

18 . The method of claim 12 wherein at least one of said Group IIB element Selenide-based phosphor material and said Thiogallate-based phosphor material includes phosphor particles having a silica coating.

19 . The method of claim 12 wherein said Group IIB element Selenide-based phosphor material includes phosphor particles having particle size of less than or equal to 30 microns, and wherein said Thiogallate-based phosphor material includes phosphor particles having particle size of less than or equal to 40 microns.

20 . A device for emitting output light, said device comprising:

a light source that emits first light of a first peak wavelength; and

a wavelength-shifting region optically coupled to said light source to receive said first light, said wavelength-shifting region including Thiogallate-based phosphor material having a structure defined by MN x S y , where M is an element selected from a group consisting of Barium, Calcium, Strontium and Magnesium, N is an element selected from a group consisting of Aluminum, Gallium and Indium, and x and y are numbers, said Thiogallate-based phosphor material having a property to at least convert some of said first light to second light of a second peak wavelength, said second light being a component of said output light.

21 . The device of claim 20 wherein said wavelength-shifting region includes Group IIB element Selenide-based phosphor material having a property to convert some of said first light to third light of a third peak wavelength, said third light being a component of said output light.

22 . The device of claim 21 wherein one of said Thiogallate-based phosphor material and said Group IIB element Selenide-based phosphor material is doped with at least one rare earth element.

23 . The device of claim 20 wherein at least one of said Group IIB element Selenide-based phosphor material and said Thiogallate-based phosphor material includes phosphor particles having a silica coating.

24 . The device of claim 20 wherein said Thiogallate-based phosphor material has a structure defined by MN 2 S 4 .

25 . The device of claim 20 wherein said Thiogallate-based phosphor material has a structure defined by MN 4 S 7 .

26 . The method of claim 20 wherein said Thiogallate-based phosphor material includes phosphor particles having a silica coating.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME PREVIOUSLY RECORDED AT REEL: 017206 FRAME: 0666. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded May 6, 2016
From: AGILENT TECHNOLOGIES, INC.
To: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
Reel/Frame 038632/0662 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2006
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES ECBU IP (SINGAPORE) PTE. LTD.
Reel/Frame 017675/0518 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2006
From: AGILENT TECHNOLOGIES, INC.
To: AVAGO TECHNOLOGIES GENERAL IP PTE. LTD.
Reel/Frame 017206/0666 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2004
From: CHUA, JANET BEE YIN; NG, KEE YEAN; AHMAD, AZLIDA
To: AGILENT TECHNOLOGIES INC
Reel/Frame 015266/0987 →