IP Library Granted Patent US 9,835,902
Granted Patent B2
US 9,835,902 · App. 15/223,495 · Granted Dec 5, 2017

Quantum dot light emitting device, backlight module, and display device

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Quick Facts
Patent No.
US 9,835,902
App. No.
15/223,495
Granted
Dec 5, 2017
Kind
B2
Abstract

The disclosure provides a quantum dot light emitting device, a backlight module, and a display device. The quantum dot light emitting device arranged on a first substrate which is a printed circuit board of a display device includes at least one backlight light source and a quantum dot optical element, wherein the at least one backlight light source is arranged on the first substrate, and configured to emit light; and the quantum dot optical element is fixed by a bracket on the first substrate above the at least one backlight light source, and configured to transmit the light emitted by the at least one backlight light source; wherein the quantum dot optical element includes two second substrates arranged opposite to each other, at least two blocking layers arranged opposite to each other, and a plurality of quantum dots, wherein the at least two blocking layers are arranged respectively at edges of the two second substrates so that an airtight space is defined by the two second substrates and the at least two blocking layers; and the quantum dots are filled in the airtight space. There will be a smaller number of quantum dots in this disclosure, and thus there will be a lower cost.

Claims (35)

1. A quantum dot light emitting device, arranged on a first substrate which is a printed circuit board of a display device, the quantum dot light emitting device comprises at least one backlight light source and a quantum dot optical element, wherein:

the at least one backlight light source is arranged on the first substrate, and configured to emit light; and

the quantum dot optical element is fixed by a bracket on the first substrate above the at least one backlight light source, and configured to transmit the light emitted by the at least one backlight light source;

wherein the quantum dot optical element comprises two second substrates arranged opposite to each other, at least two blocking layers arranged opposite to each other, and a plurality of quantum dots, wherein the at least two blocking layers are arranged respectively at edges of the two second substrates so that an airtight space is defined by the two second substrates and the at least two blocking layers; and the quantum dots are filled in the airtight space.

2. The quantum dot light emitting device according to claim 1 , wherein the quantum dots are filled in the airtight space in the form of quantum dot colloids.

3. The quantum dot light emitting device according to claim 2 , wherein the quantum dot colloids are filled with inert gas bubbles, the number of which matches volume of the airtight space.

4. The quantum dot light emitting device according to claim 1 , wherein each of the two second substrates is shaped in a triangle, and the quantum dot optical element comprises three blocking layers defining together with the two second substrates the airtight space.

5. The quantum dot light emitting device according to claim 1 , wherein the at least one backlight light source is arrayed in M rows and N columns, wherein M is a positive integer, and N is a positive integer; and there are P backlight light sources in the M rows, and Q backlight light sources in the N columns, wherein P is a positive integer, and Q is a positive integer.

6. The quantum dot light emitting device according to claim 5 , wherein the P backlight light sources are spaced at a uniform interval, and the Q backlight light sources are spaced at a uniform interval.

7. A direct-type backlight module, comprising a rear panel, a plurality of quantum dot light emitting devices, and an optical membrane located above the quantum dot light emitting devices, wherein:

each of the quantum dot light emitting devices comprises at least one backlight light source and a quantum dot optical element, wherein:

the at least one backlight light source is arranged on the rear panel, and configured to emit light; and

the quantum dot optical element is fixed by a bracket on the rear panel above the at least one backlight light source, and configured to transmit the light emitted by the at least one backlight light source;

wherein the quantum dot optical element comprises two substrates arranged opposite to each other, at least two blocking layers arranged opposite to each other, and a plurality of quantum dots, wherein the at least two blocking layers are arranged respectively at edges of the two substrates so that an airtight space is defined by the two substrates and the at least two blocking layers; and the quantum dots are filled in the airtight space;

wherein the quantum dot light emitting devices are fixed on the rear panel.

8. The direct-type backlight module according to claim 7 , wherein a reflecting film is arranged on the rear panel, and the quantum dot light emitting devices are fixed on the reflecting film on the rear panel.

9. The direct-type backlight module according to claim 7 , wherein the quantum dots are filled in the airtight space in the form of quantum dot colloids.

10. The direct-type backlight module according to claim 9 , wherein the quantum dot colloids are filled with inert gas bubbles, the number of which matches the volume of the airtight space.

11. The direct-type backlight module according to claim 7 , wherein each of the two substrates is shaped in a triangle, and the quantum dot optical element comprises three blocking layers defining together with the two substrates the airtight space.

12. The direct-type backlight module according to claim 7 , wherein the at least one backlight light source is arrayed in M rows and N columns, wherein M is a positive integer, and N is a positive integer; and there are P backlight light sources in the M rows, and Q backlight light sources in the N columns, wherein P is a positive integer, and Q is a positive integer.

13. The direct-type backlight module according to claim 12 , wherein the P backlight light sources are spaced at a uniform interval, and the Q backlight light sources are spaced at a uniform interval.

14. A display device, comprising a direct-type backlight module, and a display panel, wherein:

the direct-type backlight module comprises a rear panel, a plurality of quantum dot light emitting devices, and an optical membrane located above the quantum dot light emitting devices, wherein:

each of the quantum dot light emitting devices comprises at least one backlight light source and a quantum dot optical element, wherein:

the at least one backlight light source is arranged on the rear panel, and configured to emit light; and

the quantum dot optical element is fixed by a bracket on the rear panel above the at least one backlight light source, and configured to transmit the light emitted by the at least one backlight light source;

wherein the quantum dot optical element comprises two substrates arranged opposite to each other, at least two blocking layers arranged opposite to each other, and a plurality of quantum dots, wherein the at least two blocking layers are arranged respectively at edges of the two substrates so that an airtight space is defined by the two substrates and the at least two blocking layers; and the quantum dots are filled in the airtight space;

wherein the quantum dot light emitting devices are fixed on the rear panel; and

wherein the display panel is arranged above the backlight module.

15. The display device according to claim 14 , wherein a reflecting film is arranged on the rear panel, and the quantum dot light emitting devices are fixed on the reflecting film on the rear panel.

16. The display device according to claim 14 , wherein the quantum dots are filled in the airtight space in the form of quantum dot colloids.

17. The display device according to claim 16 , wherein the quantum dot colloids are filled with inert gas bubbles, the number of which matches the volume of the airtight space.

18. The display device according to claim 14 , wherein each of the two substrates is shaped in a triangle, and the quantum dot optical element comprises three blocking layers defining together with the two substrates the airtight space.

19. The display device according to claim 14 , wherein the at least one backlight light source is arrayed in M rows and N columns, wherein M is a positive integer, and N is a positive integer; and there are P backlight light sources in the M rows, and Q backlight light sources in the N columns, wherein P is a positive integer, and Q is a positive integer.

20. The display device according to claim 19 , wherein the P backlight light sources are spaced at a uniform interval, and the Q backlight light sources are spaced at a uniform interval.

Assignments (6)
CHANGE OF NAME Recorded Dec 3, 2021
From: MAXELL HOLDINGS, LTD.
To: MAXELL, LTD.
Reel/Frame 058666/0407 →
MERGER Recorded Nov 29, 2021
From: MAXELL, LTD.
To: MAXELL HOLDINGS, LTD.
Reel/Frame 058255/0579 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2021
From: HISENSE VISUAL TECHNOLOGY CO., LTD.
To: MAXELL, LTD.
Reel/Frame 056681/0441 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2021
From: HISENSE USA CORPORATION; HISENSE INTERNATIONAL CO., LTD.
To: HISENSE VISUAL TECHNOLOGY CO., LTD.
Reel/Frame 056371/0923 →
CHANGE OF NAME Recorded May 27, 2021
From: HISENSE ELECTRIC CO., LTD.
To: HISENSE VISUAL TECHNOLOGY CO., LTD.
Reel/Frame 056408/0336 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2016
From: SONG, ZHICHENG
To: HISENSE ELECTRIC CO., LTD.; HISENSE USA CORPORATION; HISENSE INTERNATIONAL CO., LTD.
Reel/Frame 039291/0600 →