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Light source of quantum dot luminous diode and luminous diode

A quantum dot light-emitting and light-emitting diode technology, which is applied in the field of lighting and backlight display, can solve the problems of short service life, large light decay of phosphors, poor particle uniformity, etc., and achieve cost reduction, color rendering and color gamut coverage. High, life-enhancing effect

Inactive Publication Date: 2017-05-24
YICHANG HUIKE TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] With the global energy crisis and the gradual enhancement of people's awareness of energy conservation and environmental protection, a large number of energy-saving and environmentally friendly materials have entered our lives. Light-emitting diodes are gradually replacing traditional lighting materials due to their advantages such as low energy consumption, low heat, and long life, and become a new generation. Lighting source. At present, phosphor luminescent materials have been widely used in light-emitting diode (LED) lighting and display technology, but phosphor has large light decay, poor particle uniformity, and short service life. It is still not the best LED Light-emitting materials, and the current traditional blue-ray chip plus phosphor packaged light-emitting diode (LED), its color rendering, color gamut coverage, and luminous effect are low

Method used

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  • Light source of quantum dot luminous diode and luminous diode
  • Light source of quantum dot luminous diode and luminous diode
  • Light source of quantum dot luminous diode and luminous diode

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] A quantum dot light-emitting diode light source, comprising a quantum dot transparent tube 1 and a blue light source 2, characterized in that: the quantum dot transparent tube 1 is arranged above the blue light source 2, and the quantum dot transparent tube 1 is coated with quantum dots parts.

[0036] The interior of the quantum dot transparent tube 1 is hollow, and the shape of the quantum dot transparent tube 1 can be oval.

[0037] The quantum dot transparent tube 1 has a length of 20 mm, a diameter of 0.7 mm, and a wall thickness of 0.02 mm.

[0038] The quantum dot transparent tube 1 is a component made of glass material.

[0039] For the light-emitting diode made by using the quantum dot light-emitting diode light source, the length of the light-emitting diode is 0.2 mm, the width is 0.2 mm, and the height is 0.2 mm.

Embodiment 2

[0041] A quantum dot light-emitting diode light source, comprising a quantum dot transparent tube 1 and a blue light source 2, characterized in that: the quantum dot transparent tube 1 is arranged above the blue light source 2, and the quantum dot transparent tube 1 is coated with quantum dots parts.

[0042] The interior of the quantum dot transparent tube 1 is hollow, and the shape of the quantum dot transparent tube 1 can be rectangular.

[0043] The quantum dot transparent tube 1 has a length of 1800 mm, a diameter of 5 mm, and a wall thickness of 5 mm.

[0044] The quantum dot transparent tube 1 is a component made of ultrafine polymethyl methacrylate powder material.

[0045] For the light-emitting diode made by using the quantum dot light-emitting diode light source, the length of the light-emitting diode is 8.0 mm, the width is 8.0 mm, and the height is 6.0 mm.

Embodiment 3

[0047] A quantum dot light-emitting diode light source, comprising a quantum dot transparent tube 1 and a blue light source 2, characterized in that: the quantum dot transparent tube 1 is arranged above the blue light source 2, and the quantum dot transparent tube 1 is coated with quantum dots parts.

[0048] The inside of the quantum dot transparent tube 1 is hollow, and the shape of the quantum dot transparent tube 1 can be semicircular.

[0049] The quantum dot transparent tube 1 has a length of 1000 mm, a diameter of 4.5 mm, and a wall thickness of 3.5 mm.

[0050] The quantum dot transparent tube 1 is a component made of plastic polyester elastic rubber material.

[0051] The light-emitting diode made by using the quantum dot light-emitting diode light source has an appearance length of 5.5 mm, a width of 5 mm, and a height of 4.5 mm.

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Abstract

The invention belongs to the field of lighting and particularly relates to a light source of a quantum dot luminous diode and the luminous diode. The light source of the quantum dot luminous diode comprises a quantum dot transparent tube and a blue light source; the quantum dot transparent tube is installed above the blue light source and is a component coated with quantum dots, the interior of the quantum dot transparent tube is hollow, and the quantum dot transparent tube can be in an oval shape or a rectangular shape or a semi-circular shape; the length of the quantum dot transparent tube is 20-1800 mm, the diameter of the quantum dot transparent tube is 0.7-5 mm, and the wall thickness is 0.02-5 mm; and the quantum dot transparent tube is a component prepared from glass or super-fine polymethyl methacrylate powder or plastic polyester elastic rubber materials, and the luminous diode is prepared from the light source of the quantum dot luminous diode. According to the light source of the quantum dot luminous diode and the luminous diode, compared with a light source of an existing luminous diode, the light source is promoted by 30%-40%, generated heat can be transmitted through a base, and the service life is greatly prolonged.

Description

technical field [0001] The invention belongs to the fields of illumination and backlight display, and in particular relates to a quantum dot light-emitting diode light source and a light-emitting diode. Background technique [0002] With the global energy crisis and the gradual enhancement of people's awareness of energy conservation and environmental protection, a large number of energy-saving and environmentally friendly materials have entered our lives. Light-emitting diodes are gradually replacing traditional lighting materials due to their advantages such as low energy consumption, low heat, and long life, and become a new generation. Lighting source. At present, phosphor luminescent materials have been widely used in light-emitting diode (LED) lighting and display technology, but phosphor has large light decay, poor particle uniformity, and short service life. It is still not the best LED Light-emitting materials, and the current traditional blue-ray chip plus phosphor...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F21K9/20F21V3/02F21V3/04F21Y115/10
CPCF21K9/00F21V3/02F21V3/061F21V3/062
Inventor 丁仁雄敬鑫清刘斌朱其
Owner YICHANG HUIKE TECH
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