Original record information management system and management method
By using a standard process template mechanism and parameter classification configuration, the system enables quick configuration and efficient querying of original records in hybrid integrated circuit production, solving the problems of complex configuration and low query efficiency in existing MES systems and simplifying the process iteration.
Patent Information
- Application Number
- CN202511390227.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-26
- Publication Date
- 2026-01-02
AI Technical Summary
Existing MES systems have complex original record configurations, high modification costs, and low information retrieval efficiency in hybrid integrated circuit manufacturing, making them difficult to adapt to the production needs of rapid process iteration.
The system adopts a standard work step template mechanism, and through the work step call relationship configuration subsystem, parameter configuration subsystem, rendering subsystem and information entry and storage subsystem, it realizes quick configuration and convenient query of original records. The parameter configuration module supports parameter classification and drop-down menu configuration, and the information storage module supports multi-dimensional storage and classification query.
It reduces repetitive configuration work, improves information retrieval efficiency, supports rapid process iteration, simplifies the later modification process, and is easy to operate.
Smart Images

Figure CN121257504A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of information management, in particular to a kind of original record information management system and management method. BACKGROUND
[0002] In the production process of hybrid integrated circuits, to meet the product quality traceability and process control requirements, the key information such as standard, equipment status, material batch, processing content, operator involved in the whole process of product processing needs to be recorded in detail.
[0003] Due to the complexity and diversity of product process, the number of processing steps in the whole process is large, and the original records filled in each step are different, so the configuration process of the existing commercial MES system is relatively complex, and the later modification and maintenance of the original record of the existing MES system requires code-level development, which leads to long configuration period and high modification cost, and it is difficult to adapt to the production demand of process rapid iteration. In addition, due to the inconsistency of the items and contents filled in each step, the existing system cannot display the original records of all steps on a single page, and frequent interface switching is required for query, which leads to low information acquisition efficiency and is not conducive to rapid decision-making and traceability in production site.
[0004] Therefore, it is urgent to design a system that can realize the quick configuration of original records and facilitate information query. SUMMARY
[0005] In view of the above problems of the prior art, the technical problem to be solved by the present application is to provide an original record information management system and management method which can realize the quick configuration of original records and facilitate information query.
[0006] To solve the above technical problems, one technical scheme of the present application is to provide an original record information management system, comprising: A step calling relationship configuration subsystem is used to obtain a standard step creation instruction, create a standard step based on the standard step creation instruction, and configure associated steps that can call the standard step; A parameter configuration subsystem is used to obtain a parameter configuration instruction, configure parameter information of each standard step based on the parameter configuration instruction, and the parameter information includes parameter name, input mode and parameter classification; A rendering subsystem is used to obtain a current step selection instruction, match a standard step based on the current step selection instruction, read the parameter information of the matched standard step, and render according to the parameter information to generate an original record filling interface of the current step; An information filling and storage subsystem is used to obtain an information filling instruction, fill in the original record in the filling interface based on the information filling instruction, and store the original record.
[0007] Further, it also includes: The original record query subsystem is configured to obtain a query instruction, display original records of all work steps in the same page based on the query instruction, and display parameter information of the same category in the same column according to a category of the parameters.
[0008] Further, the parameter configuration subsystem is configured to obtain a parameter configuration instruction triggered by clicking a standard work step that needs to be configured, and generate a parameter configuration interface based on the parameter configuration instruction to configure parameter information of the standard work step. The parameter configuration interface includes: A parameter increase / decrease control is configured to obtain a parameter increase instruction or a parameter decrease instruction, and generate a parameter item of the standard work step based on the parameter increase instruction or the parameter decrease instruction. A parameter configuration module is configured to configure parameter information of each parameter item, and the parameter configuration module includes a parameter name setting control, an entry mode selection control, and a parameter category selection control.
[0009] Further, the entry mode selection control is configured to obtain an entry mode selection instruction, display all entry modes based on the entry mode selection instruction, and configure a selected entry mode, and the entry mode includes text filling, number filling, date filling, a single selection box, a multiple selection box, an attachment, and time filling. The parameter configuration subsystem is further configured to obtain a drop-down menu configuration instruction when the entry mode is configured as the single selection box or the multiple selection box, and generate a drop-down menu configuration interface based on the drop-down menu configuration instruction to configure drop-down menu content.
[0010] Further, the way of configuring the drop-down menu content includes text entry and direct calling of drop-down menu content of a corresponding parameter in another standard work step. The drop-down menu configuration interface includes: A selection box content input control is configured to obtain a text entry instruction triggered by an operator by inputting selectable content in a parameter drop-down menu, and enter the selectable content in the parameter drop-down menu based on the text entry instruction. An option increase / decrease control is configured to obtain an increase drop-down option instruction and increase the selection box content input control based on the increase drop-down option instruction, and obtain a decrease drop-down option instruction and decrease the selection box content input control based on the decrease drop-down option instruction. A parameter calling control is configured to obtain a selection instruction, and generate a parameter selection interface based on the selection instruction to allow an operator to select a parameter of a standard work step to be called according to a requirement.
[0011] Further, the information filling and storage subsystem includes: The quick data entry module is used to read the original records of the current work steps that can be called and display them on the current original record entry interface to complete the quick data entry. The information storage module is used to save the original records of the current work step filled in by the quick fill module.
[0012] Furthermore, the quick form filling module includes: The query submodule is used to obtain quick reference instructions and read the original records of the steps that can be called by the current step based on the quick reference instructions; The echo rendering submodule is used to classify and echo the original records read by the query submodule according to the parameter name and type on the current original record filling interface.
[0013] Furthermore, the quick reference instructions include the instruction to refer to the most recent record of this process step, the instruction to refer to the most recent record of this batch of processes step, and the instruction to refer to the most recent record of this batch of processes step on the local machine. The query submodule includes: The "Reference to the Most Recent Record of This Work Step" control is used to obtain the "Reference to the Most Recent Record of This Work Step" instruction, and read the most recent original record of the current work step from the database based on the "Reference to the Most Recent Record of This Work Step" instruction. The reference to the most recent record of this batch and process step control is used to obtain the instruction for the most recent record of this batch and process step, and read the most recent original record of the current process step and the current product batch in the database based on the instruction for the most recent record of this batch and process step. The reference local batch process step recent record control is used to obtain the reference local batch process step recent record instruction, and read the most recent original record of the current process step, current product batch and current workstation computer IP in the database based on the reference local batch process step recent record instruction.
[0014] Furthermore, the information storage module includes: The judgment submodule is used to repeatedly judge whether the filling status of all parameters in the current process step meets the requirements. If it does not meet the requirements, a prompt will be given. The storage submodule is used to associate and store the original records of the current work step according to different dimensions after the judgment submodule determines that the filling status of all parameters meets the requirements.
[0015] To solve the above-mentioned technical problems, another technical solution adopted by the present invention is to provide a method for managing original record information, comprising the following steps: Obtain the standard work step creation instruction, create a standard work step based on the standard work step creation instruction, and configure associated work steps that can call the standard work step; Obtain parameter configuration instructions, and configure parameter information for each standard process step based on the parameter configuration instructions. The parameter information includes parameter name, input method, and parameter category. Obtain the current work step selection instruction, match the standard work step based on the current work step selection instruction, read the parameter information of the matched standard work step, and render according to the parameter information to generate the original record filling interface of the current work step. Obtain information entry instructions, enter original records on the entry interface based on the information entry instructions, and store the original records.
[0016] The original record information management system and method of the present invention have at least the following beneficial effects: The present invention adopts a standard work step template mechanism, allowing processes with different work step names but the same parameter requirements to share a template, reducing the workload of repetitive configuration; the rendering subsystem automatically generates interactive controls adapted to parameter types, and combined with the quick fill module, it supports quick querying and recalling of historical records based on work step, batch, and workstation IP information, avoiding repetitive input and improving work efficiency; the parameter configuration module classifies parameters according to man, machine, material, method, and environment, and the information storage module stores the classification information together with the original records in the database. During querying, original records of the same parameter type are displayed in one column, realizing the display of original records of multiple work steps by category on the same page, greatly improving query efficiency; the parameter configuration and interface rendering logic are separated, and subsequent modifications only require adjusting the configuration information in the database to synchronously update the front-end display, without the need for code-level development, making operation simple. Attached Figure Description
[0017] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings: Figure 1 This is a system block diagram of one embodiment of the original record information management system of the present invention.
[0018] Figure 2 This is an example diagram of a standard work step list.
[0019] Figure 3 Example diagram of the interface for configuring call relationships.
[0020] Figure 4 Example screenshot of the parameter configuration interface.
[0021] Figure 5 This is an example diagram of the interface for filling in the original records for a single process step.
[0022] Figure 6 Example diagram of the original record entry interface for another step.
[0023] Figure 7 This is an example diagram showing the parameter list for the standard process step "Welding G".
[0024] Figure 8 for Figure 7 Example diagram of the drop-down menu configuration interface for production equipment.
[0025] Figure 9 Example image of the parameter selection interface.
[0026] Figure 10 This is an example diagram of the product processing flow interface.
[0027] Figure 11 This is an example diagram for querying raw records.
[0028] Figure 12 This is a flowchart of one embodiment of the original record information management method of the present invention. Detailed Implementation
[0029] The invention will now be further described with reference to the accompanying drawings.
[0030] Please see Figure 1 The original record information management system of the present invention includes a step call relationship configuration subsystem, a parameter configuration subsystem, a rendering subsystem, and an information filling and storage subsystem. The step call relationship configuration subsystem is used to obtain standard step creation instructions, create standard steps based on the standard step creation instructions, and configure associated steps that can call the standard steps. The parameter configuration subsystem is used to obtain parameter configuration instructions, configure parameter information for each standard step based on the parameter configuration instructions, the parameter information including parameter name, input method, and parameter category. The rendering subsystem is used to obtain a current step selection instruction, match standard steps based on the current step selection instruction, read the parameter information of the matched standard steps, and render according to the parameter information to generate the original record filling interface for the current step. The information filling and storage subsystem is used to obtain information filling instructions, fill in the original record on the filling interface based on the information filling instructions, and store the original record.
[0031] Because in the actual processing, some steps may have different names but the same essence and the same parameter information that needs to be filled in. Therefore, they can share a single reporting module. In order to simplify the configuration process of the original record, this solution has set up a standard step. All such steps can share a standard step template.
[0032] The work step call relationship configuration subsystem includes a standard work step creation module and a call relationship configuration module. In this embodiment, the standard work step creation module is used to obtain standard work step creation instructions, create standard work steps based on the standard work step creation instructions, and obtain a list of standard work steps after creation. Please refer to [link to relevant documentation]. Figure 2 The standard work step list also includes an add work step control. This add work step control is used to receive a user's add standard work step instruction triggered by clicking the add work step control, and to add a new standard work step based on the add standard work step instruction. The call relationship configuration module is configured as a call relationship configuration interface; please refer to [link to relevant documentation]. Figure 3 Each standard work step's call relationship configuration interface includes an associated work step name input control, an associated work step add control, and an associated work step remove control. The associated work step name input control is configured as a call step name input box, where the operator can enter the name of the associated work step. The associated work step add control is used to obtain an associated work step add instruction and add an associated work step name input control based on the instruction. The associated work step remove control is used to obtain an associated work step remove instruction and delete the associated work step name input control in the same row as the associated work step remove control.
[0033] The parameter configuration subsystem is used to obtain the parameter configuration instruction triggered by clicking the standard work step that needs to be configured, and to generate a parameter configuration interface based on the parameter configuration instruction so that the operator can configure the parameter information of the selected standard work step. Please refer to [link to relevant documentation]. Figure 4 The parameter configuration interface includes parameter addition / reduction controls and a parameter configuration module. The parameter addition / reduction controls are used to obtain parameter addition or reduction instructions, and generate parameter items for standard work steps based on these instructions. The parameter addition / reduction controls include parameter addition sub-controls and parameter reduction sub-controls. The parameter configuration module is used to configure the parameter information for each parameter. The parameter configuration module includes a parameter name setting control, an input method selection control, and a parameter category selection control. The parameter name setting control is used to obtain parameter name setting instructions triggered by operator input, and complete the parameter name setting based on these instructions. The input method selection control is used to obtain input method selection instructions, display all input methods based on these instructions, and configure the selected input method. Input methods include text input, number input, date input, radio buttons, checkboxes, attachments, and time input. The parameter category selection control is used to obtain parameter category selection instructions, display all parameter categories based on these instructions, and configure the selected parameter category. Parameter categories include specifications, parameters, equipment, instruments, tools, fixtures, materials, and processing content.
[0034] In a preferred embodiment, the parameter configuration module further includes a default value setting control, a mandatory field setting control, and a trigger function setting control. The default value setting control is used to set the default value of the parameter. When the input method is text, the default content is displayed to save filling time, and the operator can modify it during the filling process. The mandatory field setting control is used to obtain a filling necessity instruction and set whether the parameter is a mandatory field based on the filling necessity instruction. In different work steps, some parameters are not mandatory. If they are set as non-mandatory fields, the operator can leave them blank when filling in the original record, thus saving filling time and improving work efficiency. The trigger function setting control is configured as a trigger function input box, where the operator enters a trigger function to perform a function calculation on the specific parameter. Please refer to [link to relevant documentation]. Figure 5 and Figure 6 After setting the trigger function during configuration, the relevant parameter information can be directly displayed in the data entry interface after rendering. For example, when the material type is 18um gold wire or 25um gold wire, the default parameters of first-weld ultrasonic time, first-weld pressure, first-weld power, second-weld ultrasonic time, second-weld pressure, second-weld power, substrate preheating temperature, substrate heating temperature, and compressed air pressure are displayed respectively.
[0035] To facilitate traceability and restriction of operator permissions, as a preferred implementation, the parameter configuration module further includes a name input control and a personal verification code input control. The name input control is configured as a name input box for entering the operator's name. The personal verification code input control is used to obtain the verification code entered by the operator. Only when the verification code is correct can the operator perform the operation, ensuring operational security.
[0036] Please see Figure 7 This diagram shows the parameter list generated after parameter configuration for a standard process step. The parameter list includes an "Add Original Record" field control, which is used to obtain an add instruction and add new parameters based on that instruction. The parameter configuration subsystem is also used to obtain a drop-down menu configuration instruction triggered by clicking a parameter name in the parameter list when the parameter entry method is configured as a radio button or checkbox. Based on this instruction, a drop-down menu configuration interface is generated to configure the drop-down menu content.
[0037] In addition to manually entering text, dropdown menu content can also be configured by directly accessing dropdown menu content for corresponding parameters in other standard work steps. Please refer to [link to relevant documentation]. Figure 8The drop-down menu configuration interface includes a selection box content input control, an option add / delete control, and a parameter call control. The selection box content input control is used to receive text input instructions triggered by the operator inputting selectable content from the parameter drop-down menu, and then inputs the selectable content based on these instructions. The option add / delete controls include a drop-down option add control and a drop-down option decrease control. The drop-down option add control receives an add drop-down option instruction and adds a selection box content input control based on this instruction. The drop-down option decrease control receives a decrease drop-down option instruction and decreases the selection box content input control based on this instruction. The parameter call control receives a selection instruction and generates a parameter selection interface based on this instruction, allowing the operator to select the parameters of the standard process step to be called according to their needs. Please refer to [link to relevant documentation]. Figure 9 The parameter selection interface includes a search content input box, a search control, and a search result display box. The search control is used to obtain search instructions and search for the process name or parameter name in the search content input box based on the search instructions. The search result display box displays all the search results and obtains the selection instructions triggered by the operator selecting one of the results according to their needs. Based on the selection instructions, the corresponding parameter in the standard process to be called is selected.
[0038] The rendering subsystem is used to obtain the current work step selection instruction, match a standard work step based on the current work step selection instruction, read the parameter information of the matched standard work step, and render according to the parameter information to generate the original record entry interface for the current work step. During the rendering process, different types of parameters will generate different input controls. For example, text, numbers, and remarks are rendered as text boxes; dates are rendered as date selection modules; single and multiple selections are rendered as drop-down lists; and attachments are rendered as upload modules. Please refer to [link to relevant documentation]. Figure 10 This displays a pre-set product processing flow interface. Operators click on the step name in the product processing flow interface to enter the original record entry interface for the current step. Please refer to [link / reference]. Figure 5 and Figure 6 This is the interface for filling in the original records rendered by the rendering subsystem.
[0039] Please see Figure 1The information entry and storage subsystem includes a quick entry module and an information storage module. The quick entry module reads the original records of the steps that can be called by the current work step and displays them on the current original record entry interface to complete the quick entry. The quick entry module includes a query submodule and a display rendering submodule. The query submodule obtains quick reference instructions and reads the original records of the steps that can be called by the current work step based on these instructions. Specifically, the quick reference instructions include instructions to refer to the most recent record of this work step, instructions to refer to the most recent record of this batch of work steps, and instructions to refer to the most recent record of this batch of work steps on the local machine. The query submodule includes controls to refer to the most recent record of this work step, controls to refer to the most recent record of this batch of work steps, and controls to refer to the most recent record of this batch of work steps on the local machine. The controls to refer to the most recent record of this work step are used to obtain instructions to refer to the most recent record of this work step and read the most recent original record of the current work step from the database based on these instructions. The "Recent Record of Reference Batch Step" control is used to obtain the instruction for the recent record of the reference batch step, and based on the instruction, reads the most recent original record of the current step and the current product batch from the database. The "Recent Record of Reference Local Batch Step" control is used to obtain the instruction for the recent record of the reference local batch step, and based on the instruction, reads the most recent original record of the current step, the current product batch, and the current workstation computer IP from the database. The echo rendering submodule is used to classify and echo the original records read by the query submodule according to parameter name and type on the current original record entry interface.
[0040] The information storage module is used to save the original records of the current work step filled in by the quick fill module. The information storage module includes a judgment submodule and a storage submodule. The judgment submodule is used to iteratively judge whether the filling status of all parameters in the current work step meets the requirements; if it does not meet the requirements, a prompt is given. The storage submodule is used to associate and store the original records of the current work step according to different dimensions after the judgment submodule determines that the filling status of all parameters meets the requirements. In this embodiment, the storage submodule associates and stores the original records according to three dimensions. First, it stores the product model, batch number, processing quantity, and IP information of the computer at the operating station; second, it stores the specific product number; and finally, it stores all the parameter information currently filled in. It should be noted that when storing parameter information, the classification information of each parameter needs to be stored simultaneously.
[0041] To facilitate querying, as a preferred implementation, the original record information management system further includes an original record query subsystem. This subsystem retrieves query instructions and displays all original records based on those instructions. Because the parameter configuration subsystem categorizes parameters during configuration, and the information storage module stores the parameter classification information simultaneously, parameters of the same type can be displayed in the same column during querying. This allows all original records for each process step to be displayed on the same page. Please refer to [link to relevant documentation]. Figure 11 This is an example image for querying original records. In the image, specifications, equipment, instruments, fixtures, parameters, materials, and processing content are all parameter types.
[0042] Another embodiment of the present invention discloses a method for managing original record information, which is implemented based on the original record information management system described above. Please refer to [link / reference]. Figure 12 This is a flowchart of an embodiment of the original record information management method of the present invention. This embodiment specifically includes the following steps: S100, Configure the process step call relationship.
[0043] Specifically, the process involves obtaining a standard work step creation instruction, creating a standard work step based on the instruction, and configuring associated work steps that can call the standard work step. When creating a standard work step, the process involves obtaining the standard work step creation instruction, creating the standard work step based on the instruction, and obtaining a list of standard work steps after creation. When configuring associated work steps for a standard work step, the process involves obtaining an associated work step add instruction or a associated work step remove instruction. Based on the associated work step add instruction, an associated work step name input control is added; or based on the associated work step remove instruction, an associated work step name input control in the row containing the associated work step name input control is deleted. The associated work step name input control is a call work step name input box, where the operator can enter the name of the associated work step.
[0044] S200, configuration parameter information.
[0045] Specifically, the process involves obtaining parameter configuration instructions and configuring parameter information for each standard work step based on these instructions. The parameter information includes parameter name, input method, and parameter category. In practice, the process obtains the parameter configuration instruction triggered by clicking the standard work step to be configured. Based on this instruction, a parameter configuration interface is generated for the operator to configure the parameter information of the selected standard work step. This interface includes parameter addition / reduction controls and a parameter configuration module. The process also involves obtaining parameter addition or reduction instructions triggered by selecting the parameter addition / reduction controls and generating parameter items for the standard work step based on these instructions. The parameter configuration module includes a parameter name setting control, an input method selection control, and a parameter category selection control. When configuring parameters, it acquires the parameter name setting instruction triggered by the operator entering a parameter name in the parameter name setting control, and completes the parameter name setting based on this instruction. It also acquires the input method selection instruction triggered by clicking the input method selection control, displays all input methods based on this instruction, and configures the selected input method. Finally, it acquires the parameter category selection instruction triggered by clicking the parameter category selection control, displays all parameter categories based on this instruction, and configures the selected parameter category. The parameter categories include specifications, parameters, equipment, instruments, fixtures, materials, and processing content. The input methods include entering text, entering numbers, entering dates, radio buttons, checkboxes, attachments, and entering time. When the parameter input method is configured as a radio button or checkbox, it acquires the drop-down menu configuration instruction triggered by clicking the parameter name, and generates a drop-down menu configuration interface based on this instruction to configure the drop-down menu content.
[0046] In addition to manual text input, dropdown menu content can be configured by directly calling dropdown menu content corresponding to parameters in other standard work steps. When configuring dropdown menu content via manual text input, the system obtains a text input command triggered by the operator entering selectable content from the parameter dropdown menu in the selection box input control, and inputs the selectable content from the parameter dropdown menu based on this command. When adding dropdown menu content, the system obtains an "Add Dropdown Option" command triggered by selecting the dropdown option addition control, and adds the selection box content input control based on this command. When removing dropdown menu content, the system obtains a "Remove Dropdown Option" command triggered by selecting the dropdown option reduction control, and reduces the selection box content input control based on this command. When configuring dropdown menu content by calling dropdown menu content corresponding to parameters in other standard work steps, the system obtains a selection command triggered by selecting the parameter call control, and generates a parameter selection interface for the operator to select parameters from the standard work steps to be called. This parameter selection interface includes a search content input box, a search control, and a search result display box. When calling the parameters of a standard process step, a search instruction is obtained, and the process step name or parameter name in the search content input box is searched based on the search instruction. All the search results are displayed in the search results display box. A selection instruction triggered by the operator selecting one of the results according to the requirements is obtained, and the corresponding parameter in the standard process step to be called is selected based on the selection instruction.
[0047] S300, Render and generate the original record entry interface.
[0048] Specifically, the process involves obtaining the current step selection instruction, matching a standard step based on the current step selection instruction, reading the parameter information of the matched standard step, and rendering the result based on the parameter information to generate the original record entry interface for the current step. The steps for obtaining the current step selection instruction include: obtaining the current step selection instruction triggered by the operator selecting the step name in the product processing flow interface.
[0049] S400, Information Submission and Storage.
[0050] Specifically, the process involves obtaining an information entry instruction, entering the original record on the entry interface based on the instruction, and storing the original record. When performing quick entry, the information entry instruction becomes a quick reference instruction. This step specifically includes: The process involves obtaining a quick reference instruction, reading the original records of steps that can be accessed by the current work step based on the quick reference instruction, and then displaying the read original records in the current original record entry interface, categorized by parameter name and type. Specifically, the quick reference instructions include instructions to refer to the most recent record of this work step, instructions to refer to the most recent record of this batch of work steps, and instructions to refer to the most recent record of this batch of work steps on the current machine. The step of reading the original records of steps that can be accessed by the current work step based on the quick reference instruction specifically includes: obtaining the instruction to refer to the most recent record of this work step, and reading the most recent original record of the current work step in the database based on the instruction to refer to the most recent record of this work step; obtaining the instruction to refer to the most recent record of this batch of work steps, and reading the most recent original records of the current work step and the current product batch in the database based on the instruction to refer to the most recent record of this batch of work steps; and obtaining the instruction to refer to the most recent record of this batch of work steps on the current machine, and reading the most recent original records of the current work step, the current product batch, and the current workstation computer IP in the database based on the instruction to refer to the most recent record of this batch of work steps on the current machine.
[0051] After completing the quick form filling, a save command is obtained. Based on the save command, the system iteratively judges whether the filling status of all parameters of the current work step meets the requirements. If it does not meet the requirements, a prompt is given. If it meets the requirements, the original record of the current work step is associated and stored according to different dimensions.
[0052] As a preferred embodiment, the method further includes the following steps: S500, Query original records.
[0053] Specifically, a query command is obtained, and all original records are displayed based on the query command. In this solution, parameter information of the same category can be displayed in the same column according to the parameter classification, and the original records of all processes can be displayed on the same page.
[0054] This invention employs a standard work step template mechanism, allowing processes with different names but identical parameter requirements to share a template, reducing repetitive configuration workload. The rendering subsystem automatically generates interactive controls adapted to parameter types, and combined with the quick entry module, it supports rapid querying and retrieving of historical data based on work step, batch, and workstation IP information, avoiding repetitive input and improving work efficiency. The parameter configuration module categorizes parameters according to man, machine, material, method, and environment. When storing original records, the information storage module stores the category information in the database. During querying, original records of the same parameter type are displayed in a single column, enabling the display of original records of multiple work steps by category on the same page, greatly improving query efficiency. The parameter configuration and interface rendering logic are separated, and subsequent modifications only require adjusting the configuration information in the database to synchronously update the front-end display, eliminating the need for code-level development and simplifying operation.
[0055] The above description merely illustrates preferred embodiments of the present invention and is quite specific and detailed; however, it should not be construed as limiting the scope of the invention. It should be noted that those skilled in the art can make various modifications and improvements without departing from the inventive concept, and these all fall within the scope of protection of the present invention. Therefore, the scope of protection of this invention should be determined by the appended claims.
Claims
1. A raw record information management system, characterized in that, include: The process step call relationship configuration subsystem is used to obtain standard process step creation instructions, create standard process steps based on the standard process step creation instructions, and configure associated process steps that can call the standard process steps; The parameter configuration subsystem is used to obtain parameter configuration instructions and configure the parameter information of each standard process step based on the parameter configuration instructions. The parameter information includes parameter name, input method and parameter category. The rendering subsystem is used to obtain the current step selection instruction, match the standard step based on the current step selection instruction, read the parameter information of the matched standard step, and render according to the parameter information to generate the original record filling interface of the current step. The information entry and storage subsystem is used to obtain information entry instructions, enter original records on the entry interface based on the information entry instructions, and store the original records.
2. The original record information management system as described in claim 1, characterized in that, Also includes: The original record query subsystem is used to obtain query instructions and display all original records based on the query instructions; Parameter information of the same category is displayed in the same column according to the parameter classification, and the original records of all processes are displayed on the same page.
3. The original record information management system as described in claim 1, characterized in that, The parameter configuration subsystem is used to obtain the parameter configuration instruction triggered by clicking the standard work step that needs to be configured, and generate a parameter configuration interface based on the parameter configuration instruction to configure the parameter information of the standard work step. The parameter configuration interface includes: A parameter increment / decrement control is used to obtain parameter increment or decrement instructions and generate parameter items for standard steps based on the parameter increment or decrement instructions. The parameter configuration module is used to configure the parameter information for each parameter. The parameter configuration module includes a parameter name setting control, an input method selection control, and a parameter category selection control.
4. The original record information management system as described in claim 3, characterized in that: The input method selection control is used to obtain input method selection instructions, display all input methods based on the input method selection instructions, and configure the selected input method. The input methods include filling in text, filling in numbers, filling in dates, radio buttons, check boxes, attachments, and filling in time. The parameter configuration subsystem is also used to obtain drop-down menu configuration instructions when the input method is configured as a radio button or checkbox, and generate a drop-down menu configuration interface based on the drop-down menu configuration instructions to configure the drop-down menu content.
5. The original record information management system as described in claim 4, characterized in that, The drop-down menu content can be configured by text input or by directly calling the drop-down menu content of the corresponding parameters in other standard steps; The drop-down menu configuration interface includes: The selection box content input control is used to obtain the text input instruction triggered by the operator through the content selectable in the input parameter drop-down menu, and input the content selectable in the parameter drop-down menu based on the text input instruction; The option add / remove control is used to obtain an instruction to add a drop-down option and add a selection box content input control based on the instruction to add a drop-down option; it is also used to obtain an instruction to remove a drop-down option and remove the selection box content input control based on the instruction to remove a drop-down option. The parameter call control is used to obtain selection instructions and generate a parameter selection interface based on the selection instructions so that operators can select the parameters of the standard process to be called according to their needs.
6. The original record information management system as described in claim 1, characterized in that, The information entry and storage subsystem includes: The quick data entry module is used to read the original records of the current work steps that can be called and display them on the current original record entry interface to complete the quick data entry. The information storage module is used to save the original records of the current work step filled in by the quick fill module.
7. The original record information management system as described in claim 6, characterized in that, The quick form filling module includes: The query submodule is used to obtain quick reference instructions and read the original records of the steps that can be called by the current step based on the quick reference instructions; The echo rendering submodule is used to classify and echo the original records read by the query submodule according to the parameter name and type on the current original record filling interface.
8. The original record information management system as described in claim 7, characterized in that, The quick reference instructions include the instruction to refer to the most recent record of this process step, the instruction to refer to the most recent record of this batch of process steps, and the instruction to refer to the most recent record of this batch of process steps on this machine. The query submodule includes: The "Reference to the Most Recent Record of This Work Step" control is used to obtain the "Reference to the Most Recent Record of This Work Step" instruction, and read the most recent original record of the current work step from the database based on the "Reference to the Most Recent Record of This Work Step" instruction. The reference to the most recent record of this batch and process step control is used to obtain the instruction for the most recent record of this batch and process step, and read the most recent original record of the current process step and the current product batch in the database based on the instruction for the most recent record of this batch and process step. The reference local batch process step recent record control is used to obtain the reference local batch process step recent record instruction, and read the most recent original record of the current process step, current product batch and current workstation computer IP in the database based on the reference local batch process step recent record instruction.
9. The original record information management system as described in claim 6, characterized in that, The information storage module includes: The judgment submodule is used to repeatedly judge whether the filling status of all parameters in the current process step meets the requirements. If it does not meet the requirements, a prompt will be given. The storage submodule is used to associate and store the original records of the current work step according to different dimensions after the judgment submodule determines that the filling status of all parameters meets the requirements.
10. A method for managing original record information, characterized in that, Includes the following steps: Obtain the standard work step creation instruction, create a standard work step based on the standard work step creation instruction, and configure associated work steps that can call the standard work step; Obtain parameter configuration instructions, and configure parameter information for each standard process step based on the parameter configuration instructions. The parameter information includes parameter name, input method, and parameter category. Obtain the current work step selection instruction, match the standard work step based on the current work step selection instruction, read the parameter information of the matched standard work step, and render according to the parameter information to generate the original record filling interface of the current work step. Obtain information entry instructions, enter original records on the entry interface based on the information entry instructions, and store the original records.