CN113031819A - Module display structure for image processing - Google Patents

Module display structure for image processing Download PDF

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Publication number
CN113031819A
CN113031819A CN202110314334.6A CN202110314334A CN113031819A CN 113031819 A CN113031819 A CN 113031819A CN 202110314334 A CN202110314334 A CN 202110314334A CN 113031819 A CN113031819 A CN 113031819A
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China
Prior art keywords
color
screen
colors
adjusting module
purity
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CN202110314334.6A
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Chinese (zh)
Inventor
宋成龙
吴声亮
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Shenzhen Weilaixin Technology Co ltd
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Shenzhen Weilaixin Technology Co ltd
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Priority to CN202110314334.6A priority Critical patent/CN113031819A/en
Publication of CN113031819A publication Critical patent/CN113031819A/en
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Telephone Set Structure (AREA)

Abstract

The invention provides a module display structure for image processing, which relates to the technical field of image processing and comprises a machine body, wherein a mounting groove is formed in the machine body, a mounting substrate is embedded in the mounting groove, the edge of the mounting substrate and the inner wall of the machine body are coated with rubber materials, a sealing rubber material is coated on a gap generated at the joint of the mounting substrate and the machine body, a clamping groove is formed in the surface of the mounting substrate, a touch integrated screen is embedded in the clamping groove, the edge of the touch integrated screen and the inner wall of the clamping groove are completely attached, the rubber materials are coated on the inner walls of the touch integrated screen and the clamping groove, the touch integrated screen and the clamping groove are fixedly bonded through the rubber materials, a rear cover plate is arranged on the bottom surface of the machine body, and the rubber materials are. The invention solves the design of the inner screen and the outer screen of the traditional mobile phone, integrates the inner screen and the outer screen into the touch integrated screen, has more comprehensive display setting for the touch integrated screen in the mobile phone body, can be used for all people, and can adapt to more environments.

Description

Module display structure for image processing
Technical Field
The invention relates to the technical field of image processing, in particular to a module display structure for image processing.
Background
Image processing (image processing) techniques that analyze an image with a computer to achieve a desired result. Also known as image processing. Image processing generally refers to digital image processing. Digital images are large two-dimensional arrays of elements called pixels and values called gray-scale values, which are captured by industrial cameras, video cameras, scanners, etc. Image processing techniques generally include image compression, enhancement and restoration, matching, description and identification of 3 parts. The digital image processing has huge data volume, and when processing an image, the algorithm execution time is long, so the algorithm is very necessary for realizing a high-performance image processing system, but the traditional image algorithm has low speed, low precision, large workload and low efficiency.
For the traditional mobile phone image processing design, firstly, the installation is complex, meanwhile, the mobile phone can divide an inner screen and an outer screen, the replacement and the adaptation are not convenient, and secondly, the display design of the mobile phone is not suitable for most people, for example, people with color weakness, color blindness and the like have certain difficulty in use.
Disclosure of Invention
Aiming at the defects of the prior art, the invention provides a module display structure for image processing, which solves the problem of design of an inner screen and an outer screen of a traditional mobile phone, integrates the inner screen and the outer screen into a touch integrated screen, and has more comprehensive display setting for the touch integrated screen in a mobile body, so that the module display structure can be used for all people and can adapt to more environments.
In order to achieve the purpose, the invention is realized by the following technical scheme:
a module display structure for image processing comprises a machine body, wherein a mounting groove is formed in the machine body, a mounting base plate is embedded in the mounting groove, the edge of the mounting base plate and the inner wall of the machine body are coated with a rubber material, the mounting base plate and the machine body are bonded and fixed through the rubber material, a sealing rubber material is coated on a gap generated at the joint of the mounting base plate and the machine body, a clamping groove is formed in the surface of the mounting base plate, a touch integrated screen is embedded in the clamping groove, the edge of the touch integrated screen and the inner wall of the clamping groove are completely attached, the rubber material is coated on the inner wall of the touch integrated screen and the inner wall of the clamping groove, the touch integrated screen and the clamping groove are bonded and fixed through the rubber material, a rear cover plate is arranged on the bottom surface of the machine body, the rubber material is coated on the surface of the rear cover plate and the surface of the machine body, a bulge is formed, and the foam cotton is fixedly bonded with the machine body and the rear cover plate.
Preferably, the inside of the machine body comprises an adjacent color adjusting module, a brightness adjusting module, a purity adjusting module and a main control module, and the machine body performs the following steps for the image processing of the touch integrated screen:
the screen chromaticity is distinguished when the integral screen is touched by the main control module, and the color brightness and purity of the display content are controlled under the condition that the chromaticity of the display content is adjacent to the color;
the main control module controls the display of the content of the touch integrated screen and automatically sends signals to an adjusting module in the machine body according to different people;
when the mobile phone user is in a weak color, the main control module can automatically send signals to the adjacent color adjusting module and the similar color adjusting module, automatically adjust the colors with the adjacent colors or the adjacent colors displayed in the touch integrated screen, and increase the discrimination degree between the colors;
when the user of the mobile phone is color blindness or weak eyesight, the main control module sends a signal to the purity adjusting module and the lightness adjusting module, and the identification degree of the user on the touch integrated screen is increased by improving the lightness and the purity of the color.
Preferably, the adjacent color adjusting module is used for adjusting the relationship between two adjacent colors which are separated by 90 degrees or five or six digits in the hue ring, the lightness of one color between the two adjacent colors is increased and the other color is kept unchanged by matching with the lightness adjusting module to achieve the rated color difference, and the lightness of each color is adjusted by adopting a step form for adjusting a plurality of adjacent colors and the rated color difference is achieved between each color.
Preferably, the brightness adjusting module is used for adjusting brightness between colors according to the intensity of the light source and adjusting brightness according to the intensity of the illuminating light source and the reflection coefficient of the surface of the object, so as to increase the chromaticity difference between colors for a user, wherein the brightness not only determines the illumination degree of the object but also depends on the reflection coefficient of the surface of the object,
preferably, the purity adjusting module is used for adjusting the percentages of the colors and the primary colors, the color with the highest purity is the primary color, the color becomes dark and light with the decrease of the purity, the purity is decreased to the lowest degree, namely the color is lost, and the color becomes achromatic, namely black, white and gray, the purity is increased by increasing the content of the color, the vividness of the color is improved, and different purities and brightnesses are adjusted according to different use conditions by matching with the use of the brightness adjusting module.
Preferably, the body includes a luminosity adjusting module inside, and for automatically adjusting luminosity according to the on-site environment under the condition of strong light or weak light, the purity and brightness are automatically adjusted through the main control module during weak light, the vividness of color is reduced, and the self condition of a mobile phone user is met.
The invention provides a module display structure for image processing, which has the following beneficial effects:
the invention adopts the touch integrated screen which replaces the traditional inner screen and the outer screen of the mobile phone, the integrated design is simpler, the installation is simpler, the touch integrated screen can be directly replaced when the mobile phone screen is damaged, the inner screen or the outer screen does not need to be replaced independently, if the inner screen or the outer screen is replaced independently, the two screens are not matched, the touch is easy to be interrupted or is different from the previous use condition, and the problem is avoided by using one single touch integrated screen.
The invention adopts the adjacent color adjusting module, the brightness adjusting module and the purity adjusting module, increases the adjustment of the display screen, can be suitable for more crowds, and can adjust the actual screen display condition according to different crowds. When the mobile phone user is in a weak color, the main control module can automatically send signals to the adjacent color adjusting module and the similar color adjusting module, so that the colors with adjacent colors or adjacent colors displayed in the touch integrated screen are automatically adjusted, and the discrimination degree between the colors is increased; when the user of the mobile phone is color blindness or weak eyesight, the main control module sends a signal to the purity adjusting module and the lightness adjusting module, and the identification degree of the user on the touch integrated screen is increased by improving the lightness and the purity of the color. The adjacent color adjusting module is used for adjusting the relation of two adjacent colors which are separated by 90 degrees or five or six digits in the hue ring, the brightness of one color is increased between the two adjacent colors by matching with the brightness adjusting module, the brightness of the other color is kept unchanged, the rated color difference is achieved, the brightness of each color is adjusted by adopting a step form for adjusting various adjacent colors, and the rated color difference is achieved between each color.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
fig. 2 is a cross-sectional view of the present invention.
Wherein: 1. a touch integrated screen; 2. a card slot; 3. a mounting substrate; 4. a body; 5. mounting grooves; 6. a back cover plate.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
The first embodiment is as follows:
as shown in fig. 1 and 2, a module display structure for image processing includes a body 4, a mounting groove 5 is formed in the body 4, a mounting substrate 3 is embedded in the mounting groove 5, and the edge of the mounting substrate 3 and the inner wall of the body 4 are both coated with a glue material, the mounting substrate 3 and the body 4 are bonded and fixed by the glue material, and a gap generated at the junction of the mounting substrate 3 and the body 4 is coated with a sealing glue material, a slot 2 is formed in the surface of the mounting substrate 3, a touch screen 1 is embedded in the slot 2, and the edge of the touch screen 1 and the inner wall of the slot 2 are completely attached, and the inner walls of the touch screen 1 and the slot 2 are both coated with the glue material, the touch screen 1 and the slot 2 are bonded and fixed by the glue material, a back cover plate 6 is arranged on the bottom surface of the body 4, the back cover plate 6 and the surface of the body 4 are both coated with the glue material, and a protrusion is formed between the, and foam cotton is filled between the bulges formed by the rear cover plate 6 and the machine body 4, and the foam cotton is bonded and fixed with the machine body 4 and the rear cover plate 6.
Adopt integrative screen of touch 1, integrative screen of touch 1 has replaced traditional cell-phone inner screen and outer screen, the design of integration is simpler, simultaneously also simpler to the installation aspect, and can directly change integrative screen of touch 1 when the cell-phone screen damages, do not need solitary change inner screen or outer screen, if inner screen or outer screen of changing alone, the discomfortable of two kinds of screens can appear, the easy disconnected touch that appears or with the preceding in service behavior different, this kind of problem has also been avoided to integrative screen of solitary touch 1.
The machine body comprises an adjacent color adjusting module, a brightness adjusting module, a purity adjusting module and a main control module, and the machine body processes the image of the touch integrated screen and comprises the following steps:
sp 1: the chromaticity of the screen is distinguished when the touch integrated screen is displayed through the main control module, the chromaticity of the display content can have the condition of adjacent colors, and the lightness and the purity of the color of the display content are controlled;
sp 2: the main control module displays the content of the touch integrated screen and automatically sends signals to an adjusting module in the machine body according to different people;
sp 3: when the mobile phone user is in a weak color, the main control module can automatically send signals to the adjacent color adjusting module and the similar color adjusting module, so that the colors with adjacent colors or adjacent colors displayed in the touch integrated screen are automatically adjusted, and the discrimination degree between the colors is increased;
sp 4: when the user of the mobile phone is color blindness or weak eyesight, the main control module sends a signal to the purity adjusting module and the lightness adjusting module, and the identification degree of the user on the touch integrated screen is increased by improving the lightness and the purity of the color. The adjacent color adjusting module is used for adjusting the relation of two adjacent colors which are separated by 90 degrees or five or six digits in the hue ring, the brightness of one color between the two adjacent colors is increased by matching with the brightness adjusting module, the other color is kept unchanged, the rated color difference is achieved, the brightness of each color is adjusted by adopting a step form for adjusting a plurality of adjacent colors, and the rated color difference is achieved between each color.
The brightness adjusting module is used for adjusting brightness among colors, the brightness depends on not only the illumination degree of a fixed object but also the reflection coefficient of the surface of the fixed object, if the light rays seen by people come from a light source, the brightness is adjusted according to the intensity of the light source, if the light rays seen by people come from the surface of the object, the brightness is adjusted according to the intensity of the light source for illumination and the reflection coefficient of the surface of the object, and the chromaticity difference between the colors is increased when the brightness is adjusted.
The purity adjusting module is used for adjusting the purity and the brightness according to different use conditions, the color with the highest purity is the primary color, the color can become dark and light along with the reduction of the purity, the purity is reduced to the lowest degree and is lost, and the color becomes achromatic, namely black, white and gray.
The body is internally provided with a luminosity adjusting module, luminosity can be automatically adjusted according to the field environment under the condition of strong light or weak light, and meanwhile, the purity and the brightness are automatically adjusted through the main control module when the light is weak, the vividness of color is reduced, and the self condition of a mobile phone user is met.
The adoption is close to look adjusting module, luminance adjusting module, purity adjusting module, and the increase can be applicable to more crowds to the regulation of display screen to can adjust actual screen display condition according to the crowd of difference. When the mobile phone user is in a weak color, the main control module can automatically send signals to the adjacent color adjusting module and the similar color adjusting module, so that the colors with adjacent colors or adjacent colors displayed in the touch integrated screen are automatically adjusted, and the discrimination degree between the colors is increased; when the user of the mobile phone is color blindness or weak eyesight, the main control module sends a signal to the purity adjusting module and the lightness adjusting module, and the identification degree of the user on the touch integrated screen is increased by improving the lightness and the purity of the color. The adjacent color adjusting module is used for adjusting the relation of two adjacent colors which are separated by 90 degrees or five or six digits in the hue ring, the brightness of one color between the two adjacent colors is increased by matching with the brightness adjusting module, the other color is kept unchanged, the rated color difference is achieved, the brightness of each color is adjusted by adopting a step form for adjusting a plurality of adjacent colors, and the rated color difference is achieved between each color.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising a reference structure" does not exclude the presence of other identical elements in a process, method, article, or apparatus that comprises the element.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a module display structure for image processing, a serial communication port, includes organism (4), mounting groove (5) have been seted up to organism (4) inside, mounting substrate (3) have been inlayed to mounting groove (5) inside, and the edge of mounting substrate (3) and organism (4) inner wall have all been coated and have been glued the material, it is fixed to bond mounting substrate (3) and organism (4) through gluing the material, and the gap coating that produces in mounting substrate (3) and organism (4) handing-over department has the sealing glue material, draw-in groove (2) have been seted up on mounting substrate (3) surface, touch integrative screen (1) have been inlayed to draw-in groove (2) inside, and the edge of touch integrative screen (1) and draw-in groove (2) inner wall laminate completely, and all coat at touch integrative screen (1) and draw-in groove (2) inner wall and have the material, touch integrative screen (1) and draw-in groove (2) are fixed through, organism (4) bottom surface is equipped with back shroud (6), back shroud (6) and organism (4) surface all coat and have glued the material, and form the arch between the gluey material on back shroud (6) surface and the gluey material on organism (4) surface, and it has the foam cotton to fill between the arch that back shroud (6) and organism (4) formed, and the foam cotton all bonds fixedly with organism (4), back shroud (6).
2. A modular display structure for image processing as recited in claim 1, wherein: the machine body comprises an adjacent color adjusting module, a brightness adjusting module, a purity adjusting module and a main control module, and executes the following steps for the image processing of the touch integrated screen:
the screen chromaticity is distinguished when the integral screen is touched by the main control module, and the color brightness and purity of the display content are controlled under the condition that the chromaticity of the display content is adjacent to the color;
the main control module controls the display of the content of the touch integrated screen and automatically sends signals to an adjusting module in the machine body according to different people;
when the mobile phone user is in a weak color, the main control module can automatically send signals to the adjacent color adjusting module and the similar color adjusting module, automatically adjust the colors with the adjacent colors or the adjacent colors displayed in the touch integrated screen, and increase the discrimination degree between the colors;
when the user of the mobile phone is color blindness or weak eyesight, the main control module sends a signal to the purity adjusting module and the lightness adjusting module, and the identification degree of the user on the touch integrated screen is increased by improving the lightness and the purity of the color.
3. A modular display structure for image processing as recited in claim 2, wherein: the adjacent color adjusting module is used for adjusting the relation between two adjacent colors which are separated by 90 degrees or five or six digits in the hue ring, the lightness of one color between the two adjacent colors is increased by matching with the lightness adjusting module, the other color is kept unchanged, the rated color difference is achieved, the lightness of each color is adjusted by adopting a step form for adjusting various adjacent colors, and the rated color difference is achieved between each color.
4. A modular display structure for image processing as recited in claim 3, wherein: the brightness adjusting module is used for adjusting brightness among the colors according to the intensity of the light source and adjusting brightness according to the intensity of the illuminating light source and the reflection coefficient of the surface of the object, so that the chromaticity difference between the colors for a user is increased, wherein the brightness not only determines the illumination degree of the object, but also determines the reflection coefficient of the surface of the object.
5. A modular display structure for image processing as recited in claim 2, wherein: the purity adjusting module is used for adjusting the percentages of colors and primary colors, the color with the highest purity is the primary color, the color can become dark and light along with the reduction of the purity, the purity is reduced to the lowest degree, namely the purity is lost, and the color becomes achromatic, namely black, white and gray.
6. A modular display structure for image processing as recited in claim 1, wherein: the mobile phone is characterized in that the mobile phone body comprises a luminosity adjusting module, luminosity is automatically adjusted according to the field environment under the condition of strong light or weak light, and meanwhile, the purity and the brightness are automatically adjusted through the main control module during weak light, so that the vividness of colors is reduced, and the self condition of a mobile phone user is met.
CN202110314334.6A 2021-03-24 2021-03-24 Module display structure for image processing Pending CN113031819A (en)

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CN202110314334.6A CN113031819A (en) 2021-03-24 2021-03-24 Module display structure for image processing

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Application Number Priority Date Filing Date Title
CN202110314334.6A CN113031819A (en) 2021-03-24 2021-03-24 Module display structure for image processing

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CN113031819A true CN113031819A (en) 2021-06-25

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