Printed flexible touch display based on resistive effect

A technology of flexible touch and resistance effect, applied in nonlinear optics, static indicators, electrical digital data processing, etc., can solve the problems of difficult color, high production cost, slow response speed, etc., and achieve simple manufacturing process and low production cost , the effect of short response time

Inactive Publication Date: 2011-12-07
BEIJING SAN WU JIU INVESTMENT
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] At present, although some progress has been made in the flexible display screen based on electrophoresis, there are still a series of problems that need to be solved, such as slow response speed (hundreds of milliseconds), difficulty in realizing color (using different filters to achieve color), and high production cost.

Method used

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  • Printed flexible touch display based on resistive effect
  • Printed flexible touch display based on resistive effect

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0024] like figure 1 As shown, the bottom layer of the display screen provided in this embodiment is the printing layer, the printing ink layer is attached to the printing layer, and the light-transmitting layer, the electrode layer A, the electronically controlled light switch layer, the electrode layer are attached from the bottom to the top of the printing ink layer. Layer B, isolation layer, electrode layer C, substrate layer C and diffuse reflection layer, the thickness of the display screen is not more than 5mm.

[0025] The printing layer is made of foldable and printable flexible insulating materials such as paper, plastic, cloth, etc. Printing ink on the printing layer produces a CMYK color ink dot matrix to obtain a printing ink layer. The light-transmitting layer adopts flexible light-transmitting materials, such as ETEE (ETEE is a copolymer of tetrafluoroethylene and ethylene) plastic film, PET plastic film or shadowless glue, to increase the distance between the ...

Embodiment 2

[0031] The bottom layer of the printed flexible touch display screen provided in this embodiment is the printing layer, and the printing ink layer is attached to the printing layer. Light control switch layer, electrode layer B, isolation layer, electrode layer C and substrate layer C, the thickness of the display screen does not exceed 5mm. In this embodiment, the light-transmitting layer adopts shadowless glue, and the materials used for other layers are the same as those in Embodiment 1.

[0032] The preparation method of the printed flexible touch display screen based on the resistance effect of the present invention is as follows:

[0033] (1) Use gravure printing to print ink on the printing layer to generate CMYK color ink dot matrix, and obtain the printing layer with the printing ink layer attached. The process flow is: flexible substrate preparation → printing plate → adjustment rules → formal printing → printing post-processing. The gravure printing machine has a ...

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Abstract

The invention discloses a print type flexible contact display screen based on a resistance effect. The print type flexible contact display screen comprises a printing layer, a print ink layer, a light transmitting layer, an electrode layer A, an electric control photo switch layer, an electrode layer B, an isolation layer, an electrode layer C and a substrate layer C, wherein the printing layer is foldable and is made of a printable flexible insulation material; the print ink layer is a CMYK (Cyan, Magenta, Yellow, black) ink dot matrix printed on the printing layer; the light transmitting layer is made of a flexible light transmitting material; the electric control photo switch layer is a PDLC (polymer dispersed cholesteric texture) film; the isolation layer is a hollow flexible transparent latticed film; the substrate layer C is a flexible transparent organic film; the electrode layer A, the electrode layer B and the electrode layer C are ITO (indium tin oxide) films printed with electrode matrixes; and the matrix direction of the electrode layer A is the same with that of the electrode layer C, and the matrix direction of the electrode layer A is vertical to that of the electrode layer B. The display screen provided by the invention has a contact function, is short in response time, low in drive voltage, simple in production technology and low in production cost.

Description

technical field [0001] The invention relates to a printed flexible touch display screen based on resistance effect, which belongs to the field of printing and also the field of electronics. Background technique [0002] The current display technology can be divided into two categories: one is paper display, which is mainly characterized by: displaying content by reflecting ambient light, easy to display in color, large viewing angle (close to 180°), and soft media. The other type is CRT, LCD, LED and other electronic displays. Its main features are: information can be refreshed quickly, and the content is displayed by relying on the internal light of the display itself. It consumes a lot of power during work, it is easy to make people tired when reading, and the medium is not soft. . [0003] In the past ten years, people have been developing paper-like reflective flexible displays (commonly known as electronic paper), trying to overcome the shortcomings of the aforemention...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G02F1/1343G02F1/1334G02F1/1335G02F1/133G06F3/041
Inventor 钱俊唐超群胡继承周奕华刘锋石新智祈昶陈娜马立胜
Owner BEIJING SAN WU JIU INVESTMENT
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