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Enhanced three-effect integrated display screen module

A display module and enhanced technology, applied in the fields of magnetic/electric field shielding, optics, instruments, etc., can solve problems such as not having good performance matching fighter jets, display freezing, danger, etc., to improve sunlight readability and avoid Glare, to ensure the effect of normal work

Pending Publication Date: 2016-12-21
苏州奥科飞光电科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] At present, the reflectivity of glass on ordinary displays is roughly between 4% and 6%. This reflectivity will cause the display to be blurred under strong sunlight
For example, it is used for the glass on the display of fighter jets. When the fighter jet is operating at high altitude, the sunlight shining on the display will cause glare on the display. When the pilot looks at the display, it will stab the pilot's eyes and even cause danger.
[0003] Secondly, the display needs to be shielded from the electromagnetic radiation it generates, and the screen glass commonly used on displays at present has poor sunlight readability and cannot meet the matching requirements of fighter jets.
[0004] In addition, in severe cold weather (such as minus 40 degrees Celsius in Northeast China), the display will freeze due to the low temperature, which will cause the display to fail and not work
[0005] Based on the above three defects, the current display does not have good performance to match fighter jets, so a display glass with sunlight readability, electromagnetic shielding and cold resistance needs to be urgently presented to solve the disadvantages of ordinary displays

Method used

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Examples

Experimental program
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Effect test

Embodiment 1

[0037] This embodiment 1 discloses an enhanced three-in-one display module, including a display K and a glass layer 1, an anti-reflection layer 6 with sunlight readability is arranged on the front of the glass layer 1, and the glass layer 1 A set of shielding layer groups and heating layers are arranged in sequence from near to far on the back of the glass layer, wherein the shielding layer group includes a first transparent conductive wire mesh 3 with electromagnetic shielding function and a plastic Film 2, the heating layer includes a second transparent conductive wire mesh 5 with electromagnetic shielding function, wherein the second transparent conductive wire mesh 5 is connected to a power supply and has conductive heating performance, and one side of the second transparent conductive wire mesh 5 is connected with the plastic The film 2 is bonded with glue, and the other side of the second transparent conductive wire mesh 5 is bonded with the display screen K with glue 7 ....

Embodiment 2

[0040] This embodiment 2 discloses an enhanced three-in-one display module, including a display K and a glass layer 1, an anti-reflection layer 6 with sunlight readability is arranged on the front of the glass layer 1, and the glass layer 1 A heating layer and a set of shielding layer groups are arranged in sequence from near to far on the back of the glass layer, wherein the heating layer group includes a second transparent conductive wire mesh 5 with electromagnetic shielding function bonded to the back of the glass layer 1 through glue 7, and the shielding layer The layer group includes a plastic film 2 and a first transparent conductive wire mesh 3 with electromagnetic shielding function, wherein the second transparent conductive wire mesh 5 is connected to a power supply and has conductive heating performance, and the other side of the second transparent conductive wire mesh 5 It is bonded with the plastic film 2 through glue, and the first transparent conductive wire mesh...

Embodiment 3

[0043] Embodiment 3 discloses an enhanced three-in-one display module, comprising a display K and a glass layer 1, an anti-reflection layer 6 with sunlight readability is arranged on the front of the glass layer 1, and the glass layer 1 The back of the backside is provided with the first shielding layer group, the heating layer and the second shielding layer group in sequence from near to far, the heating layer group includes the second transparent conductive wire mesh 5, and the first shielding layer group includes a plastic film 21 and has an electromagnetic shielding function. The first transparent conductive wire mesh 31, the second shielding layer group includes plastic film 22 and the third transparent conductive wire mesh 32 with electromagnetic shielding function, wherein, the second transparent conductive wire mesh 5 and plastic film 21 and The plastic film 22 is bonded with the glue 7 , the first transparent conductive wire mesh 31 is bonded with the glass layer 1 wit...

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Abstract

The invention discloses an enhanced three-effect integrated display screen module. The module comprises a display screen and a glass layer, wherein an antireflection layer with sunlight reading property is arranged on the front side of the glass layer; at least one set of shielding layer and a heating layer are arranged on the rear side of the glass layer; the heating layer is glued to or separated from the rear side of the glass layer; the shielding layer set comprises a plastic film and a first transparent conductive wire mesh which is loaded on the plastic film and has an electromagnetic shielding function; the heating layer comprises a second transparent conductive wire mesh with the electromagnetic shielding function; the second transparent conductive wire mesh is connected with a power supply and has an electric conductive heating property; the heating layer or the shielding layer set furthest away from the rear side of the glass layer is glued with the display screen through the glue. The enhanced three-effect integrated display screen module has the electromagnetic shielding property and the sunlight reading property and has cold resistance, so that the normal work of the display screen module can be guaranteed.

Description

technical field [0001] The invention relates to a display screen, in particular to an enhanced three-in-one display screen module. Background technique [0002] At present, the reflectance of glass on an ordinary display is roughly between 4% and 6%. This reflectance will cause the display to be blurred under strong sunlight. For example, the glass used on the display of a fighter jet. When the fighter jet is operating at high altitude, the sunlight shining on the display will cause glare on the display. When the pilot looks at the display, it will stab the pilot's eyes and even cause danger. [0003] Secondly, the display needs to be shielded from the electromagnetic radiation it generates, and the silk screen glass commonly used on the display at present has poor sunlight readability and cannot meet the matching requirements of fighter jets. [0004] In addition, in severe cold weather (such as minus 40 degrees Celsius in Northeast China), the display will freeze due to t...

Claims

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Application Information

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IPC IPC(8): G09F9/00G02B1/113G02B1/115H05K7/20H05K9/00
CPCG02B1/113G02B1/115G09F9/00H05K7/20954H05K9/0054
Inventor 王长东
Owner 苏州奥科飞光电科技有限公司
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