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Light-emitting backlight source of annular vertical separation double-different-surface cathode rear dragging oblique curve gating structure

A technology of backlight source and cathode, which is applied to the field of light-emitting backlight source with a dragging oblique gate control structure behind a ring-vertical separation double-heteroplane cathode, can solve the problems of small cathode current and the like

Inactive Publication Date: 2020-08-11
JINLING INST OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

Second, the cathode current provided by the carbon nanotube cathode is relatively small

Method used

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  • Light-emitting backlight source of annular vertical separation double-different-surface cathode rear dragging oblique curve gating structure
  • Light-emitting backlight source of annular vertical separation double-different-surface cathode rear dragging oblique curve gating structure
  • Light-emitting backlight source of annular vertical separation double-different-surface cathode rear dragging oblique curve gating structure

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Experimental program
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Embodiment Construction

[0049] The present invention will be further described below in conjunction with the accompanying drawings and embodiments, but the present invention is not limited to this embodiment.

[0050] In this embodiment, the light-emitting backlight of the oblique gating structure is dragged after the double-different-plane cathode is separated by a ring vertically. figure 1 , figure 2 with image 3 As shown, it includes a vacuum enclosure and a getter 25 accessory components located in the vacuum enclosure. The vacuum enclosure is composed of a front hard transparent glass plate 21, a rear hard transparent glass plate 1 and a glass narrow frame strip 26; The transparent glass plate 1 has an anode low object film block layer 22, an anode interextended trace layer 23 and a thin luminescent layer 24, and the anode low object film block layer 22 is connected to the anode interextended trace layer 23, and the The thin light-emitting layer 24 is made on the anode low-material film bloc...

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Abstract

The invention discloses a light-emitting backlight source of an annular vertical separation double-different-surface cathode rear dragging oblique curve gating structure. The source comprises a vacuumsealing body and a getter accessory element positioned in the vacuum sealing body, and is characterized in that the vacuum sealing body consists of a front hard transparent glass plate, a rear hard transparent glass plate and a glass narrow frame strip; the front hard transparent glass plate is provided with an anode low-material film block layer, an anode mutual-extension printing line layer anda thin light-emitting layer, the anode low-material film block layer is connected with the anode mutual-extension printing line layer, and the thin light-emitting layer is manufactured on the anode low-material film block layer; and the rear hard transparent glass plate is provided with an annular vertical separation double-different-surface cathode rear dragging oblique curve gating structure. The light-emitting backlight source has the advantages of being excellent in light-emitting intensity uniformity and high in light-emitting brightness.

Description

technical field [0001] The present invention belongs to the fields of integrated circuit science and technology, nanometer science and technology, microelectronic science and technology, plane display technology, optoelectronic science and technology, vacuum science and technology, and semiconductor science and technology. It relates to the manufacture of a planar light-emitting backlight source, in particular to the manufacture of a planar light-emitting backlight source with a carbon nanotube cathode, in particular to a light-emitting backlight source and its production process. Background technique [0002] Carbon nanotubes are hollow tubular substances with excellent properties, and are also suitable cathode materials for vacuum components. Due to its extremely high heat resistance, carbon nanotubes can provide cathode electrons for a long time without being burned; due to their good electron emission performance, carbon nanotubes can provide suitable large cathode curr...

Claims

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Application Information

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IPC IPC(8): H01J17/06H01J17/12H01J9/02H01J9/14
CPCH01J9/025H01J9/14H01J17/066H01J17/12
Inventor 李玉魁
Owner JINLING INST OF TECH
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