A method, device and storage medium for one-key automatic printing
Through the one-click automatic printing method, the coordinated work of the core CPU, sensor and FPGA is used to solve the problems of inefficiency and complex operation of traditional printers, and the automated and intelligent printing process is realized, which improves printing efficiency and quality.
Patent Information
- Application Number
- CN202410480488.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-19
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2044-04-19
AI Technical Summary
Traditional printers are inefficient in printing, complex in operation, and lack batch printing management functions, which leads to users who need to choose one by one when printing in batches, increasing operation difficulty and time-consuming.
Through the one-click automatic printing method, users can select multiple pictures at once and set up printing tasks. The system automatically executes the printing process, including the collaborative work of the core CPU, sensor and FPGA, realizing real-time monitoring and control of the printer status, and automated and intelligent printing processes.
Improve printing efficiency and quality, simplify operational processes, reduce manual intervention, realize multi-task automated execution and priority scheduling, and improve production efficiency and work efficiency.
Smart Images

Figure CN118394288B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of printers, and specifically to a one-key automatic printing method, device and storage medium. Background Art
[0002] Currently, many printers designs are simple. When printing, each time it is necessary to select a picture and then press the print button. At the same time, there is a lack of management functions for batch printing tasks. Users cannot easily select multiple pictures for batch printing, resulting in the need to select each picture for printing one by one when frequently changing materials, increasing the operation complexity and time consumption. Summary of the Invention
[0003] The purpose of the present invention is to provide a one-key automatic printing method, device and storage medium, which solves the problems of low efficiency and complex operation in the traditional printing process, realizes the automation and intelligence of the printing process, improves the printing efficiency and quality, makes the operation more convenient and fast. At the same time, through the task priority setting and multi-task management function, the system can more flexibly respond to different printing requirements, improving the production efficiency and work efficiency.
[0004] The purpose of the present invention can be achieved by the following technical solutions:
[0005] The present application provides a one-key automatic printing method, including the following steps:
[0006] S1. First, select the pictures, connect to the printing software, and put the pictures into the task list. Detect and judge whether the one-key printing is selected in the host computer operation.
[0007] S2. According to the judgment in S1, if the one-key printing is not selected, then it is necessary to click the start printing button and execute the conventional printing process; if the one-key printing is selected, the host computer operation starts printing, and the button for conventional printing becomes invalid.
[0008] S3. When the host computer starts to work, the platen enters the preparation working state, the RAEDY button starts to be triggered. Select the prepared platen for printing according to the task list, execute printing task one. After completion, delete task one. If there are multiple tasks, the number of copies is reduced by one.
[0009] S4. After completing the task, the platen returns to the origin, the printhead returns to the ink station position and waits without capping. If the RAEDY button is triggered again within 5 seconds, then execute the process of step S3 again, and loop in this way until the printing is completed. If the RAEDY button is not triggered again within 5 seconds, then directly cap the printhead.
[0010] Furthermore, the printing software further includes a core CPU, which includes waveform data and a parameter table. The core CPU is bidirectionally connected to the host computer through the XC new protocol. The output end of the core CPU is connected to the output port of the printing software. The printing software also includes various sensors, including a limit sensor. The output end of the limit sensor is connected to the input end of the core CPU. The output end of the core CPU is also connected to the input end of the main board FPGA. The output end of the main board FPGA is also connected to the input ends of the X-axis, Y1-axis, Y2-axis, Z-axis of each motor and the ink station motor. The main board FPGA communicates bidirectionally with the carriage FPGA through FPGA optical fiber communication. The carriage FPGA outputs waveforms and transmits them to the print head. The carriage FPGA is bidirectionally connected to the carriage CPU through SRAM synchronous communication for simulating and reading / writing registers. The carriage FPGA is also connected to a sensitive sensor.
[0011] The printing software further includes a platen A and a platen B. A cross beam is provided on the platen A and the platen B, and the carriage FPGA is provided on the cross beam.
[0012] Furthermore, for the connected printing software according to step S1, first open the printing software, ensure that the software is connected to the printer and in a normal working state. In the printing software interface, select the picture file to be printed;
[0013] After selecting the required picture file, add the picture file to the task list. Check in the printing software interface whether the one-key printing function needs to be used, and ensure that this option is checked; if one-key printing is not required, keep it unchecked.
[0014] Furthermore, when the host computer starts working and the platen enters the preparation working state, the RAEDY button starts to trigger printing. The carriage FPGA is responsible for receiving and processing the waveform data of the printing task, converting it into control signals. The waveform data contains the specific information of the printed image and control instructions. Through the transmission and processing of the waveform data, the carriage FPGA can accurately control the movement and inkjet operation of the print head to perform precise printing of the image.
[0015] Among them, when preparing the printing task, the carriage FPGA will receive waveform data to prepare for executing specific printing operations, including pixel information of the image, printing path, and ink jet control instructions;
[0016] When switching to the next printing task, the carriage FPGA receives new waveform data for new printing operations, and according to the requirements of different tasks in the task list, the carriage FPGA will receive and process different waveform data;
[0017] During the printing process, the printing parameters are adjusted according to the printing needs. The trolley FPGA receives the updated waveform data to apply the new parameters for printing.
[0018] Furthermore, when executing the printing task, the main board FPGA is responsible for controlling the movement trajectories and speeds of each motor, ensuring that the print head performs precise printing at the correct position, coordinating the movements of different motors to make each motor work synchronously, enabling the stable movement and accurate positioning of the platen during the printing process, and then cooperating with the trolley FPGA to accurately execute the printing task, ensuring that the nozzle moves along the specified path and speed to complete the printing of the image.
[0019] Furthermore, select the prepared platen for printing according to the task list. After completing a printing task, detect the remaining number of copies of the current task in the task list. If the remaining number of copies is greater than 0, continue to print the next copy and subtract one from the number of copies; when the remaining number of copies of this task in the task list is 0, it means that this task has been completely printed, and this task is deleted from the task list. The management of multiple tasks is carried out through the following content:
[0020] Set the total number of copies of the task as Total_Copies. After each printing task is completed, subtract one from the remaining number of copies, that is, Remaining_Copies = Total_Copies - 1;
[0021] When judging whether to continue printing the next task, it is decided according to the value of Remaining_Copies.
[0022] If Remaining_Copies > 0, continue to execute the next printing task; execute Remaining_Copies = Remaining_Copies - 1;
[0023] If Remaining_Copies = 0, it means that the current task has been completely printed, and this task is deleted from the task list.
[0024] A device for one-key automatic printing includes at least one processor, at least one memory, and computer program instructions stored in the memory. When the computer program instructions are executed by the processor, the above-mentioned method is implemented.
[0025] A storage medium stores computer program instructions, and when the computer program instructions are executed by the processor, the above-mentioned method is implemented.
[0026] The beneficial effects of the present invention are:
[0027] Through the functions of task presetting and one-key printing, the operation process is simplified, manual intervention of operators is reduced, and printing efficiency is improved. Just select the picture and set the task, and the system will automatically execute the printing process, reducing the operation difficulty and the probability of errors, making the operation more convenient. Then, through the task list and multi-task management functions, the automatic execution and priority scheduling of multiple tasks are realized, improving the production efficiency and the flexibility of task execution. When there are multiple tasks, the system can automatically execute the printing tasks in a loop without manual intervention, continuously printing multiple tasks, improving the production efficiency and continuity. Furthermore, by using technologies such as the core CPU, sensors, and FPGA, the real-time monitoring and control of the printer status are achieved, ensuring the printing quality and equipment stability. Brief Description of the Drawings
[0028] For a better understanding and implementation, the technical solution of the present application will be described in detail below with reference to the drawings.
[0029] Figure 1 It is a flowchart of a one-key automatic printing method provided in Embodiment 1 of the present application;
[0030] Figure 2 It is a schematic structural diagram of a one-key automatic printing method provided in Embodiment 1 of the present application;
[0031] Figure 3 It is a printing structure diagram of a one-key automatic printing method provided in Embodiment 1 of the present application. Detailed Embodiments
[0032] To further elaborate on the technical means and effects adopted by the present invention to achieve the predetermined invention purpose, the exemplary embodiments will be described in detail here, and the examples are shown in the drawings. When the following description refers to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. On the contrary, they are only examples of methods and systems consistent with some aspects of the present application as detailed in the appended claims.
[0033] The terms used in the present application are only for the purpose of describing specific embodiments and are not intended to limit the present application. The singular forms "a", "the", and "said" used in the present application and the appended claims are also intended to include the plural forms unless the context clearly indicates otherwise. It should also be understood that the term "and / or" used herein refers to and includes any or all possible combinations of one or more of the associated listed items.
[0034] The following will describe in detail the specific embodiments, features, and their effects of the present invention with reference to the drawings and preferred embodiments.
[0035] Example 1
[0036] Please refer to Figures 1-3 , this embodiment provides a one-key automatic printing method, device and storage medium, which solves the problems of low efficiency and complex operation in the traditional printing process, realizes the automation and intelligence of the printing process, improves the printing efficiency and quality, and makes the operation more convenient and fast. At the same time, through the task priority setting and multi-task management function, the system can more flexibly respond to different printing requirements, and improves the production efficiency and work efficiency.
[0037] The present invention provides a one-key automatic printing method, including the following steps:
[0038] S1. First, select a picture, connect to the printing software, and put the picture into the task list. Detect and judge whether the upper computer work checks one-key printing;
[0039] S2. According to the judgment in S1, if one-key printing is not selected, then click the start printing button and execute the conventional printing process; if one-key printing is selected and the upper computer work starts printing, the conventional printing button becomes invalid;
[0040] S3. When the upper computer starts to work, the platen enters the preparation state, the RAEDY button starts to be triggered, select the prepared platen according to the task list for printing, the printing executes printing task one, and after completion, task one is deleted. If there are multiple tasks, the number of copies is reduced by one;
[0041] S4. After completing the task, the platen returns to the origin, the print head returns to the ink station position and waits without capping. If the RAEDY button is triggered again within 5 seconds, the process of step S3 is executed again, and this cycle continues until printing is completed. If the RAEDY button is not triggered again within 5 seconds, the print head is directly capped.
[0042] By setting tasks in advance and confirming with buttons, the printing efficiency is improved, making it convenient for workers to operate. As long as they operate according to the displayed content and put the consumables into the corresponding idle platen, the printing efficiency can be improved and it is convenient for workers to operate.
[0043] In this embodiment, the printing software further includes a core CPU, which includes waveform data and a parameter table. The core CPU is bidirectionally connected to the host computer through the new XC protocol. The core CPU is responsible for processing the waveform data and parameter table of the printing task, communicating bidirectionally with the host computer through the new XC protocol, and controlling the key parameters of the printing process. The output end of the core CPU is connected to the output port of the printing software. The printing software also includes various sensors, including a limit sensor. The output end of the limit sensor is connected to the input end of the core CPU. The limit sensor is used to detect the position limit of each component of the printer and transmit the information to the core CPU to ensure the accuracy and safety of the printing process. The output end of the core CPU is also connected to the input end of the main board FPGA. The main board FPGA is used to control the movement trajectory and speed of each motor. The output end of the main board FPGA is also connected to the input ends of the X-axis, Y1-axis, Y2-axis, Z-axis of each motor and the ink station motor. The main board FPGA communicates bidirectionally with the carriage FPGA through FPGA optical fiber communication. The carriage FPGA outputs waveforms and transmits them to the print head. The carriage FPGA is bidirectionally connected to the carriage CPU through SRAM synchronous communication for simulating and reading / writing registers. The carriage FPGA is also connected to a sensitive sensor. The carriage FPGA receives the waveform data output by the core CPU, controls the movement and inkjet operation of the print head, and is connected to the carriage CPU through SRAM synchronous communication to implement the simulation and reading / writing operations of the registers.
[0044] The printing software further includes a stage A and a stage B. A cross beam is arranged on the stage A and the stage B, and the carriage FPGA is arranged on the cross beam.
[0045] Through the cooperation of the core CPU and the sensors, precise control and monitoring of the key parameters of the printing process are achieved, improving the printing accuracy and stability. Through the communication connection and cooperation between components, automatic control and execution of the printing process are realized, reducing manual intervention and improving operation efficiency. Through the application of sensors and FPGA, real-time monitoring and feedback of the printer status are achieved, and anomalies are processed in a timely manner to ensure printing quality. The connection and communication between components make the operation of the printing software more intelligent and convenient, enhancing the user experience.
[0046] In this embodiment, for the connected printing software according to step S1, first open the printing software to ensure that the software is connected to the printer and in a normal working state. In the printing software interface, select the picture file to be printed;
[0047] After selecting the required picture files, add the picture files to the task list, which facilitates the user to manage and schedule multiple printing tasks, improving the organization and execution efficiency of printing tasks; check whether the one-key printing function is required in the printing software interface, realizing the fast batch printing function, saving the time and effort of the user's manual operation, and improving the printing efficiency; ensure that this option is checked; if one-key printing is not required, keep it unchecked.
[0048] The user can quickly and easily prepare the printing task and make settings, ensuring the smooth progress and efficiency improvement of the printing process.
[0049] In this embodiment, when the host computer starts to work and the platen enters the preparation state, the RAEDY button starts to trigger printing. The trolley FPGA is responsible for receiving and processing the waveform data of the printing task, and can accurately control the movement of the print head and the inkjet operation, realizing the precise printing of the image, improving the printing quality and accuracy; convert it into a control signal. The waveform data contains the specific information and control instructions of the printed image. Through the transmission and processing of the waveform data, the trolley FPGA can accurately control the movement of the print head and the inkjet operation, realizing the precise printing of the image.
[0050] Among them, when preparing the printing task, the trolley FPGA will receive waveform data to prepare for executing specific printing operations, including instructions such as pixel information of the image, printing path, and inkjet control.
[0051] When switching to the next printing task, the trolley FPGA receives new waveform data for new printing operations, and according to the requirements of different tasks in the task list, the trolley FPGA will receive and process different waveform data to ensure the smooth switching between printing tasks, improving the production efficiency and continuity.
[0052] In this embodiment, during the printing process, adjust the printing parameters according to the printing needs, such as printing speed, ink volume, etc. The trolley FPGA receives the updated waveform data to apply the new parameters for printing.
[0053] Receive the updated waveform data. When the printing parameters need to be adjusted, the trolley FPGA receives the updated waveform data, which contains the new printing parameter settings.
[0054] Then parse the waveform data. The trolley FPGA parses the updated waveform data, extracts the new printing parameter information contained therein, such as the adjusted printing speed, ink volume, etc. settings, and then according to the new parameter information obtained by parsing, the trolley FPGA adjusts the settings of the printing control system to apply the new parameters for printing.
[0055] The trolley FPGA adjusts the operating state of the printer according to the new printing parameter settings, controls the moving speed of the print head, the ink ejection volume, etc., to ensure the effective application of the new parameters;
[0056] During the printing process, the trolley FPGA continuously monitors the printing effect and the machine state, and dynamically adjusts the parameters according to the actual situation to ensure the printing quality and efficiency.
[0057] The trolley FPGA can receive and apply the updated waveform data, and adjust according to the new printing parameters, realizing the flexible adjustment and dynamic control of the printing parameters, ensuring that various parameters during the printing process can be adjusted according to the set requirements to meet the needs of different printing tasks, and improving the printing quality and efficiency.
[0058] In this embodiment, when executing a printing task, the main board FPGA is responsible for controlling the movement trajectories and speeds of each motor, ensuring that the print head performs precise printing at the correct position, coordinating the movements of different motors, enabling each motor to work synchronously, ensuring the stable movement and accurate positioning of the platen during the printing process, and then cooperating with the trolley FPGA to achieve the accurate execution of the printing task, ensuring that the print head moves along the specified path and speed to complete the printing of the image.
[0059] In this embodiment, the prepared platen is selected according to the task list for printing. After completing a printing task, the remaining number of copies of the current task in the task list is detected. If the remaining number of copies is greater than 0, the next copy is continued to be printed and the number of copies is reduced by one; when the remaining number of copies of this task in the task list is 0, it means that this task has been completely printed, and the system will delete this task from the task list. The management of multiple tasks is carried out through the following content:
[0060] Set the total number of copies of the task as Total_Copies. After each printing task is completed, the remaining number of copies is reduced by one, that is, Remaining_Copies = Total_Copies - 1;
[0061] When judging whether to continue printing the next task, it is decided according to the value of Remaining_Copies.
[0062] If Remaining_Copies > 0, continue to execute the next printing task; execute Remaining_Copies = Remaining_Copies - 1;
[0063] If Remaining_Copies = 0, it means that the current task has been completely printed, and this task is deleted from the task list.
[0064] When processing multiple tasks, in addition to determining whether to continue printing the next task according to the remaining number of copies, task management and scheduling can also be carried out in combination with the priority of the tasks;
[0065] Set the priority identifier of the task, such as high (H), medium (M), low (L), etc., to indicate the importance and urgency of the task;
[0066] Among them, high-priority tasks, such as important customer orders and urgent tasks, need to be processed first to ensure timely completion. Medium-priority tasks are general orders or regular tasks, which are processed according to the normal process to ensure completion within a reasonable time; low-priority tasks are non-urgent tasks or secondary tasks, which can be processed after high- and medium-priority tasks are completed. Users can adjust the priority setting options of the tasks, allowing users to flexibly adjust the priority settings of the tasks and execute the tasks in the following order: high-priority tasks > medium-priority tasks > low-priority tasks, ensuring that high-priority tasks are processed first.
[0067] When processing multiple tasks, in combination with the priority and the remaining number of copies of the tasks, the tasks are processed in turn according to the set priority order, ensuring a reasonable execution order of the tasks, and displaying the priority identifier of the tasks in the task list, so that users can intuitively understand the importance of each task and facilitate priority adjustment and task management.
[0068] A device for one-key automatic printing, including at least one processor, at least one memory, and computer program instructions stored in the memory, which implement the above-mentioned method when the computer program instructions are executed by the processor.
[0069] A storage medium, on which computer program instructions are stored, which implement the above-mentioned method when the computer program instructions are executed by the processor.
[0070] Embodiment 2
[0071] In this embodiment, users can conveniently and quickly batch-select and print multiple pictures, reducing operation complexity and time consumption, improving printing efficiency and user experience. This method can effectively solve the problems of simple printer operation and inconvenient batch printing management, making it easier for users to perform batch printing operations.
[0072] A method for one-key automatic printing, specifically including:
[0073] Open the printing software and connect to the printer to ensure normal communication between the software and the printer. Save all the picture files to be printed in the same folder for subsequent one-key selection;
[0074] Set up the one-key automatic printing function. Locate and enable the one-key automatic printing function in the printing software interface to ensure that the function is activated. Users can make one-key printing-related settings according to their needs, such as print quality, paper size, etc.;
[0075] Batch-select pictures. Locate the option to batch-select pictures in the printing software interface, such as importing through a folder or directly dragging and dropping, and select all the picture files to be printed;
[0076] Trigger printing with one key. After confirming that all the pictures to be printed have been loaded, click the one-key printing button. The printing software will automatically process each picture in sequence and print them one by one, without the user having to select or operate on each picture individually;
[0077] Automatic printing process. The printer automatically performs the printing task and continuously prints each picture. After completing one picture, it automatically switches to the next one. Users can view the printing progress and status in real time during the printing process to ensure the smooth progress of one-key automatic printing;
[0078] When all the pictures have been printed, the system will prompt that the printing task is completed. Users can view the printing results and perform necessary operations. The printer automatically ends the printing process, and users can close the printing software or perform other operations.
[0079] The above is only a preferred embodiment of the present invention and does not impose any form of limitation on the present invention. Although the present invention has been disclosed as above with a preferred embodiment, it is not intended to limit the present invention. Any person skilled in the art can make some changes or modifications to the equivalent embodiments by using the disclosed technical content within the scope of the technical solution of the present invention. However, as long as it does not depart from the content of the technical solution of the present invention, any brief modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present invention still fall within the scope of the technical solution of the present invention.
Claims
1. A one-key automatic printing method, characterized in that: The steps include: S1. Select the picture first, connect to the printing software, put the picture into the task list, detect and judge whether the upper computer has checked the one-key printing; S2. According to the judgment of S1, when one-key printing is not selected, you need to click the start printing button and execute the regular printing process; when one-key printing is selected, the host computer starts printing, and the regular printing button becomes invalid; S3. When the host computer starts working, the platen enters the ready-to-work state, the RAEDY button starts to trigger, and the prepared platen is selected according to the task list for printing. Printing executes printing task one, and after completion, task one is deleted. If the current printing task is a multi-copy task, the number of copies is reduced by one; S4. After the task is completed, the platen returns to the origin, and the nozzle returns to the ink station position to wait without sealing. If the RAEDY button is triggered again within 5 seconds, step S3 is executed again, and the cycle continues until the printing is completed. If the RAEDY button is not triggered again within 5 seconds, the nozzle is directly sealed. When the host computer starts working and the platen enters the ready-to-work state, the RAEDY button starts to trigger printing. The trolley FPGA is responsible for receiving and processing the waveform data of the printing task and converting it into a control signal. The waveform data contains specific information and control instructions for the printed image. Through the transmission and processing of the waveform data, the trolley FPGA can accurately control the movement of the nozzle and the inkjet operation to perform accurate printing of the image. Among them, when preparing a printing task, the car FPGA will receive waveform data to prepare to perform specific printing operations, including image pixel information, printing path, and ink jet control instructions; When switching to the next printing task, the car FPGA receives new waveform data for a new printing operation, and according to the requirements of different tasks in the task list, the car FPGA will receive and process different waveform data; During the printing process, the printing parameters are adjusted according to the printing needs, and the FPGA of the car receives the updated waveform data to apply the new parameters for printing; When processing multiple tasks, in addition to determining whether to continue printing the next task based on the number of remaining copies, task management and scheduling are also performed based on task priority; Set the priority of the task, which can be high (H), medium (M), or low (L) to indicate the importance and urgency of the task; Among them, high-priority tasks, important customer orders, and urgent tasks need to be handled first to ensure timely completion. Medium-priority tasks are general orders or routine tasks, which are handled according to normal procedures to ensure completion within a reasonable time. Low-priority tasks are non-urgent tasks or secondary tasks, which are processed after high- and medium-priority tasks are completed. Users can flexibly adjust the priority settings of tasks according to the option to adjust the priority of tasks, and execute tasks in the following order: high-priority tasks > medium-priority tasks > low-priority tasks, ensuring that high-priority tasks are processed first; When executing the printing task, the mainboard FPGA is responsible for controlling the movement trajectory and speed of each motor to ensure that the print head prints accurately at the correct position, and coordinates the movement of different motors to make each motor work synchronously, so that the platen can move stably and accurately position during the printing process, and then cooperates with the trolley FPGA to accurately execute the printing task, ensure that the nozzle moves according to the specified path and speed, and complete the printing of the image; Select the prepared platen for printing according to the task list. After completing a printing task, check the remaining number of copies of the current task in the task list. If the remaining number of copies is greater than 0, continue to print the next copy, and the number of copies will be reduced by one. When the remaining number of copies of the task in the task list is 0, it means that the task has been completely printed, and the task will be deleted from the task list. Multiple tasks are managed through the following content: Set the total number of copies of the task to Total_Copies. After each printing task is completed, the remaining number of copies is reduced by one, that is, Remaining_Copies = Total_Copies - 1, where Remaining_Copies refers to the remaining number of copies; When judging whether to continue printing the next job, it is determined based on the value of Remaining_Copies. If Remaining_Copies > 0, continue to execute the next print task; execute Remaining_Copies = Remaining_Copies - 1; If Remaining_Copies = 0, it means the current task has been completely printed and the task is deleted from the task list.
2. The one-key automatic printing method according to claim 1, characterized in that: The printing software also includes a core CPU, which includes waveform data and a parameter table. The core CPU is bidirectionally connected to the host computer through the XC new protocol. The output end of the core CPU is connected to the output port of the printing software. The printing software also includes various sensors, including a limit sensor. The output end of the limit sensor is connected to the input end of the core CPU. The output end of the core CPU is also connected to the input end of the mainboard FPGA. The output end of the mainboard FPGA is also connected to the X-axis, Y1-axis, Y2-axis, Z-axis and ink station motor of each motor. The mainboard FPGA is bidirectionally connected to the trolley FPGA through FPGA optical fiber communication. The trolley FPGA outputs a waveform and transmits it to the nozzle. The trolley FPGA is bidirectionally connected to the trolley CPU through SRAM synchronous communication for simulating and reading and writing registers. The trolley FPGA is also connected to a sensitive sensor. The printing software also includes a platen A and a platen B, a crossbeam is arranged above the platen A and the platen B, and a trolley FPGA is arranged on the crossbeam.
3. The one-key automatic printing method according to claim 1, characterized in that: According to the connection printing software described in step S1, first open the printing software, ensure that the software is connected to the printer and is in normal working state, and select the image file to be printed in the printing software interface; After selecting the required image file, add the image file to the task list, and check whether you need to use the one-click printing function option in the printing software interface to make sure that the option is checked; if one-click printing is not required, keep the option unchecked.
4. A one-key automatic printing device, characterized in that: The invention comprises at least one processor, at least one memory and computer program instructions stored in the memory, and when the computer program instructions are executed by the processor, a one-key automatic printing method as described in any one of claims 1 to 3 is implemented.
5. A storage medium having computer program instructions stored thereon, characterized in that: When the computer program instructions are executed by the processor, the one-key automatic printing method described in any one of claims 1 to 3 is implemented.
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