CN111309239A - Touch control system for realizing multiple pictures - Google Patents
Touch control system for realizing multiple pictures Download PDFInfo
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- CN111309239A CN111309239A CN202010063688.3A CN202010063688A CN111309239A CN 111309239 A CN111309239 A CN 111309239A CN 202010063688 A CN202010063688 A CN 202010063688A CN 111309239 A CN111309239 A CN 111309239A
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input 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
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0487—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
- G06F3/0488—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B20/00—Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
- Y02B20/40—Control techniques providing energy savings, e.g. smart controller or presence detection
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Abstract
A touch control system for realizing multiple pictures comprises a picture ID input module, an initialization module, a data input module, a data transmission module, a data conversion module and a data processing module. The picture ID input module comprises a picture ID card and a slot. The picture ID card is not provided with a notch or is provided with at least one notch, the notch represents '0' in the binary system, the two notches represent '1' in the binary system, and the slot is provided with an ID reading module for reading the notch information of the picture ID card. The data input module is used for inputting instructions for controlling the output of the panel. The data processing module is used for selecting one from the vibration motor, the LED lamp and the display picture according to the control command output by the data conversion module and controlling the vibration motor, the LED lamp and the display picture to be started to work. When the user needs to change different advertisement contents or switch the configuration, only the different picture ID cards 111 need to be changed, so that the change of the different advertisement contents and the configuration can be realized, the display of a shopping mall can keep up with the era, and the experience of the user of the shopping mall can be provided.
Description
Technical Field
The invention relates to the technical field of control, in particular to a touch control system for realizing multiple pictures.
Background
At present, the interaction function of products on a market display rack is mainly realized by a tablet personal computer, a mechanical key or a touch key. The tablet personal computer is also called a portable computer, is a small-sized and portable personal computer, and takes a touch screen as basic input equipment. It has a touch screen that allows a user to do work with a stylus or a digital pen rather than a conventional keyboard or mouse. The user may enter the input through built-in handwriting recognition, on-screen soft keyboard, voice recognition, or a real keyboard if the model is equipped. But the cost of the tablet computer is high, for a market, most functions of the tablet computer are in a waste state, and more staff in the market can damage the tablet computer and cause a high enterprise with the cost. For mechanical key type products, the appearance is single, the function is simple, and for today that is increasingly intelligent, the appearance is not the trend of the times, and the user experience of a market is reduced. For the touch key, the functional area is fixed and can not be changed at will, which is not beneficial to the user experience of the market, brings much trouble to the shopper or the staff in the market, and leads people to abandon the device gradually.
Disclosure of Invention
In view of the above, the present invention provides a touch control system for implementing multiple screens, which can achieve output of a control panel according to a client requirement to enhance user experience, so as to solve the above problems.
A touch control system for realizing multiple pictures is used for controlling the working state of a panel, and the panel comprises a vibration motor, an LED lamp and a display picture. The touch control system for realizing multiple pictures comprises a picture ID input module, an initialization module, a data input module, a data transmission module, a data conversion module and a data processing module. The picture ID input module comprises a picture ID card and a slot for inserting the picture ID card. The picture ID card is not provided with a notch or is provided with at least one notch, the notch represents '0' in the binary system, the two notches represent '1' in the binary system, and the slot is provided with an ID reading module for reading the notch information of the picture ID card. The initialization module comprises an LED lamp initialization unit, a vibration motor initialization unit and an ID initialization unit. The LED lamp initialization unit is used for initializing a starting instruction of the LED lamp, the vibration motor initialization unit is used for initializing a starting instruction of the vibration motor, and the ID initialization unit is used for initializing a display instruction of the display picture. The data input module is used for inputting instructions for controlling the output of the panel. The data transmission module is used for transmitting the instruction input by the data input module to the data conversion module. The data conversion module is used for converting the instruction input by the data input module into an instruction format which can be processed by the data processing module. The data processing module is used for selecting one from the vibration motor, the LED lamp and the display picture according to the control command output by the data conversion module and controlling the vibration motor, the LED lamp and the display picture to be started to work.
Further, the data input module comprises a touch screen, and the touch screen is used for a user to input an instruction and receive the instruction.
Further, the panel also comprises a data storage module, the data storage module is used for storing different picture information, and when different picture ID cards are inserted into the slots, corresponding advertisement content and configuration information in the data storage module are activated.
Further, the data transmission module is a USB _ HUB controller.
Further, the data conversion module is a USB to UART controller.
Further, the data processing module is a single chip microcomputer.
Furthermore, the touch control system for realizing multiple pictures further comprises a judging module, and the judging module is used for comparing the instruction input by the data input module with the starting instruction set by the initialization module respectively.
Further, the judging module is electrically connected with the data conversion module and receives an output instruction from the data conversion module, and when the instruction input by the data input module is compared with one of the starting instructions set by the initialization module and the output of the judging module is negative, the judging module compares the instruction input by the data input module with the next starting instruction set by the initialization module.
Further, when the output of the judging module is negative after the instruction input by the data input module is compared with all the starting instructions set by the initialization module, the data processing module transmits the output of the judging module to the data input module so as to make the data input module ready for re-input.
Compared with the prior art, when the touch control system for realizing multiple pictures needs to replace advertisement content and configuration, only different picture ID cards need to be replaced at first to trigger different versions of software configuration and advertisement demonstration content stored in the system. After a user inputs a user instruction through the data input module, the data transmission module transmits the instruction to the data conversion module, the data conversion module converts the instruction into data suitable for processing by the data processing module, and finally the data processing module starts corresponding equipment in combination with a starting instruction preset by the initialization module, for example, a display picture displays advertisement content, the user inputs feedback vibration or enables an LED lamp to be turned on and flash, and error alarm can be defined. Because when the switching of various advertisement contents and configurations is needed, only different picture ID cards 111 need to be replaced, the replacement of different advertisement contents and configurations can be realized, and then the display of a market can keep up with the era, and the experience of users in the market can be provided.
Drawings
Fig. 1 is a schematic diagram of a touch control system for implementing multiple screens according to the present invention.
Fig. 2 is a schematic configuration diagram of a touch panel on which the touch control system for realizing a plurality of screens shown in fig. 1 is mounted.
Detailed Description
Specific examples of the present invention will be described in further detail below. It should be understood that the description herein of embodiments of the invention is not intended to limit the scope of the invention.
As shown in fig. 1 to fig. 2, the schematic diagrams of a touch control system for implementing multiple screens according to the present invention are shown. The touch control system for realizing multiple pictures is used for controlling the working state of one touch panel. The touch panel, as a prior art, should include at least a display module 10, an LED lamp 20, and a vibration motor (not shown). The display image module 10 is used for displaying an image to be displayed according to display information, and should include a display panel, a signal processing module, and the like, which are the prior art and are not described herein again. The LED lamp 20 and the vibration motor are generally used to give a prompt or feedback to reveal that the touch input is effective when the user inputs a command, and also to make a light blink or vibrate when the user inputs a command incorrectly so as to prompt the user to input again. It will be appreciated that the LED lamp 20 and the rumble motor may be operated simultaneously or alternatively. . The vibration motor should also be a conventional one, which is widely used in mobile phones and will not be described herein. The touch control system for realizing multiple pictures is used for controlling the functional modules to start running or return to an original interface according to a user instruction so as to enable a user to reselect. The touch control system for realizing multiple pictures comprises a picture ID input module 11, an initialization module 12, a data input module 13, a data transmission module 14, a data conversion module 15, a judgment module 16 and a data processing module 17. It is understood that the touch control system for implementing multiple screens may further include other functional modules, such as an electrical connection component, a sound module, and the like, which are well known to those skilled in the art and will not be described in detail herein.
The screen ID input module 11 includes at least one screen ID card 111 and a slot 112 for inserting the screen ID card. The picture ID card 111 may have a plurality of pictures, different pictures correspond to different picture ID numbers, and bottom notches of the picture ID card 111 corresponding to different pictures are different. As shown in fig. 2, it is a structural form of a screen ID card 111. The picture ID card is not provided with a notch or is provided with at least one notch, wherein the notch represents '0' in the binary system, and the position between the two notches represents '1' in the binary system. In this embodiment, the bottom of the picture ID card 111 has A, B, C, D, E5 small gaps 113, and by these small gaps at the bottom of the picture, different codes, i.e. ID numbers, such as 10000, 01000, 11000, etc., can be programmed for various pictures. Different ID numbers correspond to different pictures, and then the display picture display module 10 reads out the corresponding advertisement content and configuration in the corresponding ID number for display. Of course, if the picture ID card is not provided with a notch, i.e., the ID number is 00000, it represents only one picture. The condition is suitable for small-sized display, and the aim of reducing the cost can be fulfilled. The slot 112 has a structure corresponding to the screen ID card 111, and can read a corresponding screen according to an instruction to be displayed by the screen display module 10. As for the working principle of the picture ID card 111, it is prior art and will not be described herein.
The initialization module 12 is used to initialize the input and output commands of various input or output devices and is compatible with the data processing module 17. The initialization module 12 includes an LED initialization unit 121, a vibration motor initialization unit 122, and an ID card initialization unit 123. The structure and input/output commands are different for different devices. Therefore, when the devices such as the LED lamp 20 or the vibration motor are loaded on the touch panel, it is necessary to add an instruction format suitable for the touch panel, particularly the data processing module 17, to the touch panel, so that the initialization module 12 is required to assign values to various devices, including address and control instructions, and the operation principle thereof should be the prior art, and will not be described herein again.
The data input module 13 may be a touch screen for a user to input and receive commands. When the picture ID card 111 is inserted into the slot 112, it will have a corresponding picture displayed on the screen, and it can display a plurality of pictures on one screen, and then the user can click the corresponding picture to input instructions so that the corresponding picture displays more information, such as the price of the product, the date of production, the big picture of the picture, the storage location of the goods, etc. When the input is correct, the vibrating motor or the LED lamp 20 can give feedback or prompt, and the user experience is increased. Of course, if the inputted command is not satisfactory, the vibration motor or the LED lamp 20 is also operated to generate vibration or light flickering.
The data transmission module 14 may be a USB _ HUB controller, and is configured to forward the touch information sent by the data input module 13 to the data conversion module 15 and then to transmit the touch information to the data processing module 17. The USB _ HUB controller may extend one USB interface to a plurality of USB interfaces, and may enable the USB interfaces to be used simultaneously, the data input module 13 is electrically connected to the data conversion module 15 through one USB interface, and of course, the vibration motor or the LED lamp 20 may also be electrically connected to the data conversion module 15 through another USB interface, so as to achieve unification of various data, and enable various data to be freely processed by the data processing module 17.
The data conversion module 15 may be a USB to UART controller, which is used to convert the instruction input by the data input module 13 and the instruction transmitted by the data transmission module 14 into an instruction format that can be processed by the data processing module 17. The USB-to-UART controller is also called a USB-to-serial port controller and is used for realizing the conversion from a USB interface of a computer to a universal serial port. By means of the data conversion module 15, the data input module 13, and the instructions input through the USB interface, can be converted into an instruction format that can be processed by the data processing module 17.
The judging module 16 is electrically connected to the data converting module 15 and receives an output command from the data converting module 15, and is configured to judge whether the command signal output by the data converting module 15 is consistent with the initialized command of the initializing module 12, only when the command signal output by the data converting module 15 is consistent with one of the plurality of initialized commands of the initializing module 12, the device corresponding to the command is started, otherwise, the device returns to the original state, that is, the display screen returns to the initial state. The judging module 16 is configured to compare the instructions input by the data input module 13 with the start instructions set by the initialization module 12, respectively. When the instruction input by the data input module 13 is compared with one of the start instructions set by the initialization module 12 and the output of the judgment module 16 is no, the judgment module 16 compares the instruction input by the data input module 13 with the next start instruction set by the initialization module 12. Certainly, in the real standard use, since the touch panel is used for displaying the image, and the vibration motor or the LED lamp 20 is used for giving prompt and feedback, or giving an alarm, the start instruction for starting the display image has a high priority, and then the start instruction for the vibration motor and the LED lamp 20 is used. Of course, the priority of the activation command of the vibration motor and the LED lamp 20 may be set as desired. When the output of the determining module 16 is negative after the instruction input by the data input module 13 is compared with all the start instructions set by the initializing module 12, the data processing module 17 transmits the output of the determining module 16 to the data input module 13 to make it ready for re-input.
The data processing module 17 is used for selecting one of the vibration motor, the LED lamp 20 and the display screen module 10 according to the control command output by the data conversion module 15 and controlling the selected one to be turned on for operation. The data processing module 17 may be a data processing module such as a single chip or a PLC. It is conceivable that the data processing module 17 is loaded with a processing program, and it should be known to those skilled in the art that the processing program can be obtained by programming in the existing programming languages, such as VC, VB, etc., as long as those skilled in the art know the idea of the present invention, and will not be described herein again. Specifically, when the determination module 16 outputs a yes command, the data processing module 17 processes the control command output by the data conversion module 15, and the control command alternatively activates one of the vibration motor, the LED lamp 20, and the display module 10, thereby implementing the control of the touch panel.
It is understood that the touch control system for implementing various screens further includes a data storage module 18. The data storage module 18 is used for storing different picture information, and when a different picture ID card 111 is inserted into the slot 112 or a different ID code is activated, the corresponding picture information in the data storage module 18 is activated and displayed on the display screen. It is of course conceivable that both the data storage technique and the data acquisition technique should be prior art and will not be described further herein.
Compared with the prior art, when the advertisement content and the configuration need to be replaced, the touch control system for realizing multiple pictures provided by the invention only needs to replace the different picture ID cards 111 to trigger different pictures stored in the panel. After a user inputs a user instruction through the data input module 13, the data transmission module 13 transmits the instruction to the data conversion module 14, the data conversion module 14 converts the instruction into data suitable for processing by the data processing module 17, and finally the data processing module 17 starts corresponding equipment in combination with a starting instruction preset by the initialization module 12, for example, the display picture 10 displays a picture, the vibration motor starts vibrating, or the LED lamp 20 is turned on to flash, so that the purpose of prompting is achieved, and the user experience is increased. Because when the switching of various advertisement contents and configurations is needed, only different picture ID cards 111 need to be replaced, thereby realizing the replacement of different advertisement contents and configurations, further enabling the display of a market to keep up with the era, and improving the experience of users in the market.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the scope of the present invention, and any modifications, equivalents or improvements that are within the spirit of the present invention are intended to be covered by the following claims.
Claims (9)
1. A touch control system for realizing multiple pictures is used for controlling the working state of a panel, the panel comprises a vibration motor, an LED lamp and a display picture, and the touch control system is characterized in that: the touch control system for realizing multiple pictures comprises a picture ID input module, an initialization module, a data input module, a data transmission module, a data conversion module and a data processing module, wherein the picture ID input module comprises a picture ID card and a slot for inserting the picture ID card, the picture ID card is not provided with a notch or is provided with at least one notch, the notch represents '0' in a binary system, the position between the two notches represents '1' in the binary system, the slot is provided with an ID reading module for reading the notch information of the picture ID card, the initialization module comprises an LED lamp initialization unit, a vibration motor initialization unit and an ID initialization unit, the LED lamp initialization unit is used for initializing a starting instruction of an LED lamp, and the vibration motor initialization unit is used for initializing the starting instruction of a vibration motor, the ID initialization unit is used for initializing a display instruction of the display picture, the data input module is used for inputting an instruction for controlling the output of the panel, the data transmission module is used for transmitting the instruction input by the data input module to the data conversion module, the data conversion module is used for converting the instruction input by the data input module into an instruction format which can be processed by the data processing module, and the data processing module is used for selecting one of the vibration motor, the LED lamp and the display picture according to the control instruction output by the data conversion module and controlling the vibration motor, the LED lamp and the display picture to be started to work.
2. The touch control system for realizing multiple screens according to claim 1, wherein: the data input module comprises a touch screen, and the touch screen is used for inputting instructions by a user and receiving the instructions.
3. The touch control system for realizing multiple screens according to claim 1, wherein: the panel also comprises a data storage module, wherein the data storage module is used for storing different picture information, and when different picture ID cards are inserted into the slots, the corresponding picture information in the data storage module is activated.
4. The touch control system for realizing multiple screens according to claim 1, wherein: the data transmission module is a USB _ HUB controller.
5. The touch control system for realizing multiple screens according to claim 1, wherein: the data conversion module is a USB-to-UART controller.
6. The touch control system for realizing multiple screens according to claim 1, wherein: the data processing module is a single chip microcomputer.
7. The touch control system for realizing multiple screens according to claim 1, wherein: the touch control system for realizing multiple pictures further comprises a judging module, and the judging module is used for comparing the instruction input by the data input module with the starting instruction set by the initialization module respectively.
8. The touch control system for realizing multiple screens according to claim 7, wherein: the judging module is electrically connected with the data conversion module and receives an output instruction from the data conversion module, and when the instruction input by the data input module is compared with one of the starting instructions set by the initialization module and the output of the judging module is negative, the judging module compares the instruction input by the data input module with the next starting instruction set by the initialization module.
9. The touch control system for realizing multiple screens according to claim 8, wherein: and when the output of the judging module is negative after the instruction input by the data input module is compared with all the starting instructions set by the initialization module, the data processing module transmits the output of the judging module to the data input module so as to make the data input module ready for re-input.
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