Screen printing normalization management method and device, computer device and storage medium
By constructing a relationship table between silkscreen graphic information and configuration information and utilizing a substrate controller and indicating device, dynamic management of server silkscreen printing was achieved, solving the maintenance problems caused by ambiguous expressions, reducing management costs and error risks, and improving maintenance efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2026-03-27
AI Technical Summary
The server silkscreen uses a vague method of expression, making it difficult to know the specific usage of the multi-functional interfaces during maintenance, which increases the maintenance difficulty and the risk of errors.
By acquiring the configuration information of the multi-functional interface, a relationship table between the screen printing graphic information and the configuration information is constructed to form a set of screen printing instruction information. The target screen printing graphic information is then displayed using the substrate controller, non-volatile memory, and indicator device, thereby realizing dynamic management and unified printing of screen printing.
It reduces the difficulty of screen printing management, saves hardware and management costs, reduces the number and types of structural parts, reduces the risk of assembly errors, and improves maintenance efficiency.
Smart Images

Figure CN119671314B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of screen printing, in particular to a screen printing normalization management method and device, computer equipment and a storage medium. BACKGROUND
[0002] Server screen printing refers to using screen printing technology to make the identification on the outside of the server case, which is used to identify the position name number and other information of each component of the server, and it is helpful for fault positioning and maintenance operation indication of the server. In the server system, the screen printing is fixed on the frame and various structural parts outside the case, and it is configured and assembled during production. The screen printing is generally printed on the shell or circuit board by stickers or laser, and different configurations of the machine need to take different screen printing shells. With the production of different server configurations, the screen printing is always changing, which leads to an increase in the maintenance of structural parts. Each configuration needs to maintain a new set of server screen printing. In order to avoid too many structural parts, the screen printing is expressed in a fuzzy way, such as the PCIE slot can insert NIC network card, GPU and raid card, but only PCIEX is written on the screen printing. However, when maintaining the server, it is difficult to know which one of the NIC network card, GPU and raid card is connected to the PCIE slot identified by PCIEX, so the server screen printing information needs to be refined and the specific use of the multifunctional interface needs to be known when maintaining the server. SUMMARY
[0003] Therefore, the present application provides a screen printing normalization management method and device, computer equipment and a storage medium, which are used to solve the technical problem that the server screen printing is expressed in a fuzzy way, which makes it difficult to know the specific use of the multifunctional interface when maintaining the server.
[0004] In one aspect, a screen printing normalization management method is provided, which includes:
[0005] Obtaining configuration information of a multifunctional interface, obtaining screen printing text information corresponding to the configuration information, and forming a screen printing indication information set of the multifunctional interface with a plurality of screen printing text information;
[0006] Storing the screen printing indication information set, and screen printing the screen printing indication information set corresponding to the multifunctional interface;
[0007] When a target component is connected to the multifunctional interface, reading the configuration information of the target component, and analyzing the screen printing relationship corresponding to the configuration information of the target component;
[0008] Obtaining target screen printing text information corresponding to the screen printing relationship in the screen printing indication information set, and displaying the target screen printing text information.
[0009] In one embodiment, the step of obtaining configuration information of the multifunctional interface, obtaining silk screen text information corresponding to the configuration information, and forming a silk screen instruction information set from a plurality of silk screen text information of the multifunctional interface comprises:
[0010] constructing a relationship table corresponding to the silk screen text information and the configuration information;
[0011] obtaining configuration information of the multifunctional interface, and obtaining silk screen text information corresponding to the configuration information in the relationship table;
[0012] sequentially arranging a plurality of silk screen text information of the multifunctional interface to form a silk screen instruction information set.
[0013] In one embodiment, the step of storing the silk screen instruction information set and screen printing the silk screen instruction information set corresponding to the multifunctional interface comprises:
[0014] when a plurality of configuration information corresponds to one silk screen text information, setting one silk screen text information in the silk screen instruction information set.
[0015] In one embodiment, the silk screen normalization management method further comprises:
[0016] obtaining a display mode of the target silk screen text information, wherein the display mode of the target silk screen text information comprises a single-color indicator light, a color indicator light, or a display screen;
[0017] when the display mode of the target silk screen text information is a single-color indicator light, and the multifunctional interface is screen printed with the silk screen instruction information set, the number of single-color indicator light points of the silk screen text information in the silk screen instruction information set is also screen printed; when the target silk screen text information is displayed, the target silk screen text information is displayed through the number of single-color indicator light points.
[0018] when the display mode of the target silk screen text information is a color indicator light, and the multifunctional interface is screen printed with the silk screen instruction information set, the color of the silk screen text information in the silk screen instruction information set is also screen printed; when the target silk screen text information is displayed, the target silk screen text information is displayed through the color of the color indicator light.
[0019] when the display mode of the target silk screen text information is a display screen, the target silk screen text information is displayed through the display screen.
[0020] According to the corresponding relationship between the silk screen text information and the configuration information in the silk screen instruction information set, the configuration information corresponding to the target silk screen text information is obtained.
[0021] In one embodiment, the storing the set of silk screen instruction information comprises:
[0022] The set of silk screen instruction information is stored in a non-volatile memory through a substrate controller, the non-volatile memory is connected to a display through an indicator light driver, and the display comprises a monochrome indicator light, a color indicator light or a display screen;
[0023] The displaying the target silk screen graphic information comprises:
[0024] The non-volatile memory, the indicator light driver and the display are powered by a backup power supply module, and the backup power supply module is enabled when the server is powered off;
[0025] The indicator light driver reads the target silk screen graphic information from the non-volatile memory, and the indicator light driver controls the display to display the target silk screen graphic information.
[0026] In one embodiment, the silk screen normalization management method further comprises:
[0027] In response to the server being powered off, detecting the power of the backup power supply module;
[0028] When the power of the backup power supply module is greater than a first threshold, the display is controlled to adopt a constant light mode, and when the power of the backup power supply module is less than the first threshold, the display is controlled to adopt an on-off mode.
[0029] In one embodiment, the silk screen normalization management method further comprises:
[0030] In response to reading the set of silk screen instruction information, the set of silk screen instruction information stored in the non-volatile memory is read through the substrate controller and feedback is provided.
[0031] On the other hand, a silk screen normalization management device is provided, the device comprises a substrate controller, an indicator device and a backup power supply module, the indicator device comprises a non-volatile memory, an indicator light driver and a display; the backup power supply module is connected to the indicator device;
[0032] The substrate controller is used to obtain configuration information of a multifunctional interface, obtain silk screen graphic information corresponding to the configuration information, and form a set of silk screen instruction information from a plurality of silk screen graphic information of the multifunctional interface;
[0033] The non-volatile memory is connected to the substrate controller, and the non-volatile memory is used to store the set of silk screen instruction information;
[0034] The indicator light driver is connected to the non-volatile memory, and the indicator light driver reads configuration information of the target component in response to the target component being connected to the multifunctional interface, parses a silk screen relationship corresponding to the configuration information of the target component, and obtains target silk screen graphic information corresponding to the silk screen relationship in the silk screen indication information set;
[0035] The display is connected to the indicator light driver, and the display is configured to display the target silk screen graphic information.
[0036] In another aspect, a computer device is provided, including a memory, a processor, and a computer program stored in the memory and executable on the processor, and the processor implements the following steps when executing the computer program:
[0037] Obtaining configuration information of a multifunctional interface, obtaining silk screen graphic information corresponding to the configuration information, and forming a silk screen indication information set from multiple silk screen graphic information of the multifunctional interface;
[0038] Storing the silk screen indication information set and screen printing the silk screen indication information set corresponding to the multifunctional interface;
[0039] Reading configuration information of a target component in response to the target component being connected to the multifunctional interface, parsing a silk screen relationship corresponding to the configuration information of the target component;
[0040] Obtaining target silk screen graphic information corresponding to the silk screen relationship in the silk screen indication information set and displaying the target silk screen graphic information.
[0041] In another aspect, a computer readable storage medium is provided, and a computer program is stored on the computer readable storage medium, and the computer program is executed by a processor to implement the following steps:
[0042] Obtaining configuration information of a multifunctional interface, obtaining silk screen graphic information corresponding to the configuration information, and forming a silk screen indication information set from multiple silk screen graphic information of the multifunctional interface;
[0043] Storing the silk screen indication information set and screen printing the silk screen indication information set corresponding to the multifunctional interface;
[0044] Reading configuration information of a target component in response to the target component being connected to the multifunctional interface, parsing a silk screen relationship corresponding to the configuration information of the target component;
[0045] Obtaining target silk screen graphic information corresponding to the silk screen relationship in the silk screen indication information set and displaying the target silk screen graphic information.
[0046] The silk screen normalization management method, device, computer device and storage medium can correspond to the silk screen printing of the silk screen indication information set through the multifunctional interface, read the configuration information of the target component when the target component is connected to the multifunctional interface, analyze the target silk screen graphic information corresponding to the silk screen relationship of the configuration information of the target component, and display the target silk screen graphic information. When the server is maintained, the corresponding configuration information can be accurately obtained based on the displayed target silk screen graphic information. Moreover, the silk screen indication information set can refine the function corresponding to the configuration information, realize unified silk screen printing, reduce the silk screen management difficulty, save the hardware cost and management cost, greatly reduce the number and types of managed structural parts in the production engineering, greatly reduce the bill of materials of the product, reduce the project material management difficulty and cost, and make the assembly and maintenance of the product of the production line simpler, greatly reduce the risk of assembly errors, and improve the maintenance efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0047] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative effort.
[0048] Figure 1 The application environment diagram of the silk screen normalization management method in one embodiment of the present application;
[0049] Figure 2 The flowchart of the silk screen normalization management method in one embodiment of the present application;
[0050] Figure 3 The flowchart of the step of obtaining the configuration information of the multifunctional interface, obtaining the silk screen graphic information corresponding to the configuration information, and forming the silk screen indication information set of the multifunctional interface in one embodiment of the present application;
[0051] Figure 4 The structure block diagram of the silk screen normalization management device in one embodiment of the present application;
[0052] Figure 5 The structure diagram of the silk screen normalization management device applied to the server in one embodiment of the present application;
[0053] Figure 6 The internal structure diagram of the computer device in one embodiment of the present application. DETAILED DESCRIPTION
[0054] In order to make the purposes, technical solutions and advantages of the present application clearer, the present application will be further described in detail below with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and not to limit the present application.
[0055] As described in the background, in order to avoid too many structural elements, a fuzzy way is used for silk printing, such as a hard disk slot can be inserted into a mechanical hard disk, a solid state hard disk, or an NVME hard disk. In order to maintain the structure of the hard disk, a way of writing only HDD (hard disk driver) is used to express fuzzily, or a PCIE slot can be inserted into a NIC card, a GPU, or a raid card, but only PCIEX is written on the silk printing. Moreover, some early shipments may be in a lower level state, or need to be shipped to a distributor for reconfiguration, and the supplier cannot change the existing silk printing after reconfiguration, resulting in a mismatch between the silk printing and the actual situation after final shipment. Changing the silk printing will also cost excessive expenses. When maintaining, the server is powered off, making it difficult to know which one of the NIC card, GPU, or raid card is connected to the PCIE slot with the PCIEX identifier.
[0056] The silk printing normalization management method provided by the present application can be applied to an application environment as shown in Figure 1 The server is provided with a baseboard controller 1, which can manage each part of the server system through various interfaces reserved on the mainboard, and can monitor the configuration of various information components of the server. An indicating device 2 is used to deliver visual information. A display 21 such as a BCD nixie tube, a multi-color LED, or multiple LED lights is used to display silk printing text information. The silk printing text information is stored in a non-volatile memory 23 (not lost after power failure), so that people can easily see the information that can be used for indication, such as numbers, colors, or the number of lighted lamps. A backup power supply module 3, which can be a capacitor, a battery, or the like, is also needed, because the server system needs to be powered off during maintenance, especially during replacement. After power failure, the backup power supply module 3 drives the indicating device 2 and the storage device, and the indicating device 2 can be displayed through a key or a constant light mode. The baseboard controller 1 is connected to the non-volatile memory 23 in the indicating device 2, the non-volatile memory 23 is connected to an indicating light driver 22, the indicating light driver 22 is connected to the display 21, and the backup power supply module 3 is connected to the indicating device 2. The indicating light driver 22 is not necessarily required, and can be directly integrated in the display screen or the non-volatile memory 23. The backup power supply module 3 can be a capacitor, a battery, but is not limited to these energy storage devices.
[0057] In one embodiment, as shown in Figure 2As shown, a silk screen normalization management method is provided, comprising the following steps:
[0058] Step S1, obtaining the configuration information of the multifunctional interface, obtaining the silk screen text information corresponding to the configuration information, forming a silk screen instruction information set of the multifunctional interface with multiple silk screen text information;
[0059] Step S2, storing the silk screen instruction information set, and screen printing the silk screen instruction information set corresponding to the multifunctional interface;
[0060] Step S3, in response to the connection of the target component on the multifunctional interface, reading the configuration information of the target component through the baseboard controller 1, and analyzing the silk screen relationship corresponding to the configuration information of the target component;
[0061] Step S4, writing the silk screen relationship into the non-volatile memory 23, obtaining the target silk screen text information corresponding to the silk screen relationship in the silk screen instruction information set, and displaying the target silk screen text information.
[0062] Among them, through the screen printing of the silk screen instruction information set corresponding to the multifunctional interface, when the target component is connected on the multifunctional interface, the configuration information of the target component is read through the baseboard controller 1, the silk screen relationship corresponding to the configuration information of the target component is analyzed, the target silk screen text information corresponding to the silk screen relationship is found and obtained, and the target silk screen text information is displayed. When the server is maintained, the corresponding configuration information corresponding to the function can be accurately known based on the displayed target silk screen text information, and the silk screen instruction information set can be refined to correspond to the function of the configuration information, realize the silk screen unified printing, reduce the silk screen management difficulty, save the hardware cost and management cost, the number and type of structural parts managed in the production engineering will be greatly reduced, the bill of materials of the product will be greatly reduced, the difficulty and cost of project material management will be reduced, the assembly and maintenance of the production line to the product will be more simple, the risk of assembly error will be greatly reduced, and the maintenance efficiency will be improved.
[0063] Specifically, the silk screen design and the information provided by the indicating device 2 show a corresponding relationship: the silk screen design and the configuration correspond to each other or other conditions, and a relationship table is designed according to the corresponding relationship of the silk screen and the configuration or other conditions, such as product configuration 1 corresponds to silk screen 1, configuration 2 corresponds to silk screen 2, or is bound to the corresponding conditions, such as after configuring the GPU, the space hard disk of NVME0-3 can only start from NVME4, and the like; after the silk screen corresponding relationship is sorted out, the silk screen is printed on the structure according to the corresponding relationship, such as five configurations of a certain model correspond to four silk screens, such as a PCIE slot in five configurations, configuration 1-2 corresponds to GPU0, 3 corresponds to NIC0, 4 corresponds to RAID 0, and 5 corresponds to HCA0, and the silk screen is printed on the structure to form a silk screen + indicating information set such as: (1-2) GPU0|(3) NIC0|(4) RAID0|(5) HCA0 or different colors to represent GPU0|NIC0|RAID0|HCA0, the representation method is various, and is mainly based on the color, numerical value and other information that can be indicated by the indicating device.
[0064] As shown in Figure 3 In this embodiment, the step of obtaining the configuration information of the multifunctional interface, obtaining the silk screen text information corresponding to the configuration information, and arranging the multiple silk screen text information of the multifunctional interface to form a silk screen indicating information set comprises:
[0065] Step S11, constructing a relationship table of the silk screen text information and the configuration information;
[0066] Step S12, obtaining the configuration information of the multifunctional interface, and obtaining the silk screen text information corresponding to the configuration information in the relationship table;
[0067] Step S13, arranging the multiple silk screen text information of the multifunctional interface in sequence to form a silk screen indicating information set.
[0068] In this embodiment, when the multiple silk screen text information of the multifunctional interface is arranged in sequence to form a silk screen indicating information set, the printing order of the silk screen text information can be set in advance, and the multiple silk screen text information is arranged in sequence according to the printing order of the silk screen text information to form a silk screen indicating information set.
[0069] In this embodiment, the step of storing the silk screen indicating information set and silk screen printing the silk screen indicating information set corresponding to the multifunctional interface comprises:
[0070] When multiple configuration information corresponds to one silk screen text information, one silk screen text information is arranged in the silk screen indicating information set.
[0071] Preferably, 10 silk screen printing information is unified into a silk screen printing indication information set, the project overall silk screen printing is reduced to the original tenth quantity, the hardware cost and management cost are saved, the structure quantity and type managed in the production engineering are greatly reduced, the product BOM scale is greatly reduced, the project material management difficulty and cost are reduced, the product assembly and maintenance of the production line are also simpler, and the assembly error risk is greatly reduced.
[0072] It can be understood that when the number of silk screen printing information is 18, the result of dividing the number of silk screen printing components by the number of silk screen printing information threshold of the silk screen printing indication information set is 18 / 10=2, only 2 silk screen printing indication information sets are needed, the silk screen printing indication information set reduces the overall silk screen printing management difficulty, the structure quantity and type managed in the production engineering are greatly reduced, the product BOM scale is greatly reduced, and the project material management difficulty and cost are reduced.
[0073] In the embodiment, the silk screen printing normalization management method further comprises:
[0074] Obtaining a display mode of the target silk screen printing information, the display mode of the target silk screen printing information includes a single-color indicator light, a color indicator light or a display screen;
[0075] In response to the display mode of the target silk screen printing information being a single-color indicator light, the number of single-color indicator light points of the silk screen printing information in the silk screen printing indication information set is further silk screen printed when the multifunctional interface silk screen prints the silk screen printing indication information set; when the target silk screen printing information is displayed, the target silk screen printing information is displayed through the number of single-color indicator light points;
[0076] In response to the display mode of the target silk screen printing information being a color indicator light, the color of the silk screen printing information in the silk screen printing indication information set is further silk screen printed when the multifunctional interface silk screen prints the silk screen printing indication information set; when the target silk screen printing information is displayed, the target silk screen printing information is displayed through the color of the color indicator light;
[0077] In response to the display mode of the target silk screen printing information being a display screen, the target silk screen printing information is displayed through the display screen;
[0078] According to the corresponding relationship between the silk screen printing information and the configuration information in the silk screen printing indication information set, the configuration information corresponding to the target silk screen printing information is obtained.
[0079] The dynamic management of silk screen printing is realized by the linkage design of the substrate controller 1 through the indicating device 2, which is fundamentally different from the fixed way of silk screen printing in the past. This change realizes that the silk screen printing can correctly correspond after the product is freely modified and added. The substrate controller 1 realizes the display of the target silk screen text information through dynamic configuration information reading after the system is started.
[0080] The substrate controller 1 determines the silk screen information that needs to be displayed in the current system through various physical sensing channels and communication methods, such as silk screen and system configuration correspondence. The substrate controller 1 determines the system configuration and drives the indicating device to display the indicating information (such as writing the silk screen indicating information into the non-volatile storage device after determining the relationship). For numerical silk screen indication, the number can be directly indicated in the form of BCD nixie tube, or the number can be indicated by the number and order of the low-cost monochrome LED light. If the target silk screen text information is color indication, different colored LEDs can be driven to indicate the current target silk screen text information. The substrate controller 1 reads the information of the entire system in real time, so that the silk screen of the entire system can change with the change of the system. For example, the customer replaces the mechanical hard disk on a machine with an NVME solid state disk. After the substrate controller 1 reads this change, the silk screen indicating information changes to the corresponding silk screen of the current configuration. In this way, the silk screen information realizes real-time change and update without the need for correction through correction and other methods.
[0081] It can be understood that when the display mode of the target silk screen text information is a color indicating lamp, the method further includes:
[0082] Obtaining the silk screen text information corresponding to the silk screen printing of the silk screen indicating information set of the multifunctional interface, and the color of the silk screen text information; wherein the color of each silk screen text information in the silk screen indicating information set is different;
[0083] Obtaining the display color of the color indicating lamp, and finding the silk screen text information with the same color in the silk screen indicating information set as the target silk screen text information according to the display color of the color indicating lamp;
[0084] According to the target silk screen text information, the configuration information corresponding to the target silk screen text information is obtained.
[0085] Wherein, the current function of the multifunctional interface of the server can be quickly compared and found through different display colors, indicating to the maintenance personnel which silk screen is currently configured and used in the current multiple silk screens. The color indicating lamp is low in cost and can be realized by low-cost equipment to accurately obtain the configuration information, which is convenient for server maintenance.
[0086] If the silk screen indication information set is (1-2) GPU0|(3) NIC0|(4) RAID0|(5) HCA0, when three points of the monochrome indicator light are displayed, the corresponding target silk screen text information is NIC0, and the function corresponding to the configuration information can be obtained according to the NIC0, thereby facilitating server maintenance.
[0087] If the silk screen indication information set is GPU0 (first color) | NIC0 (second color) | RAID0 (third color) | HCA0 (fourth color), when the indicator light of the first color is lighted in the color indicator light, the corresponding target silk screen text information is GPU0, and the function corresponding to the configuration information can be obtained according to the GPU0, thereby facilitating server maintenance.
[0088] In the embodiment, the storing of the silk screen indication information set comprises:
[0089] The silk screen indication information set is written into the non-volatile memory 23 by the baseboard controller 1, the non-volatile memory 23 is connected to the display 21 through the indicator light driver 22, and the display 21 comprises a monochrome indicator light, a color indicator light or a display screen.
[0090] The displaying of the target silk screen text information comprises:
[0091] The non-volatile memory 23, the indicator light driver 22 and the display 21 are powered by the backup power supply module 3, and the backup power supply module 3 is enabled when the server is powered off.
[0092] The indicator light driver 22 reads the target silk screen text information from the non-volatile memory 23, and the indicator light driver 22 controls the display 21 to display the target silk screen text information.
[0093] The baseboard controller 1 reads the configuration of the computer system and parses the silk screen indication information set, the baseboard controller 1 writes the silk screen relationship corresponding to the number of silk screens and display colors into the indicating device 2, and the display device 2 indicates the silk screen to the maintenance personnel according to different types of indications, using digital, color, number and other information to indicate which set of silk screens is currently used in the current multiple sets of silk screens.
[0094] In the embodiment, the silk screen normalization management method further comprises:
[0095] In response to the server being powered off, the power of the backup power supply module 3 is detected.
[0096] When the power of the backup power supply module 3 is greater than the first threshold, the display 21 is controlled to adopt a constant light mode; when the power of the backup power supply module 3 is less than the first threshold, the display 21 is controlled to adopt a switch mode.
[0097] For a server system that has the need of power-off maintenance, when powered off, the backup power supply module 3 is enabled, and the indication device 2 adopts a constant light mode or a switch mode according to the need of selection. If the backup power is relatively large, the constant light mode can be adopted; if the backup power is relatively small, the switch mode can be adopted, and the indication function after power-off needs to be manually turned on by using a switch. If there is no need of power-off maintenance, the backup power supply module 3 can be removed.
[0098] In the embodiment, the silk screen normalization management method further includes:
[0099] In response to reading the set of silk screen indication information, the set of silk screen indication information stored in the non-volatile memory 23 is read by the substrate controller 1 and fed back.
[0100] In this way, the server system can send a read configuration information command to the substrate controller 1, the substrate controller 1 reads the set of silk screen indication information stored in the non-volatile memory 23 and feeds back to the server system, and the set of silk screen indication information is read. Moreover, the server system can further correct the set of stored silk screen indication information.
[0101] During server maintenance, the set of silk screen indication information corresponding to the interface of the server can be seen under the action of the backup power supply system 3, and the target silk screen graphic information corresponding to the target silk screen graphic information can be obtained according to the displayed target silk screen graphic information, so the function of the target component connected to the interface of the server can be directly obtained.
[0102] In the above-mentioned silk screen normalization management method, the set of silk screen indication information is printed on the multifunctional interface by silk screen printing, when the target component is connected to the multifunctional interface, the configuration information of the target component is read, the target silk screen graphic information corresponding to the silk screen relationship is obtained by analyzing the configuration information of the target component, and the target silk screen graphic information is displayed. During server maintenance, the corresponding function of the configuration information can be accurately obtained based on the displayed target silk screen graphic information, and the set of silk screen indication information details the function corresponding to the configuration information, realizes unified silk screen printing, reduces the difficulty of silk screen management, saves hardware cost and management cost, greatly reduces the number and types of managed structural parts in production engineering, greatly reduces the scale of the bill of materials of the product, reduces the difficulty and cost of project material management, and makes the assembly and maintenance of the production line for the product simpler, greatly reduces the risk of assembly errors, and improves the maintenance efficiency.
[0103] In one embodiment, asFigure 4 As shown, a silk screen normalization management device 10 is provided, comprising a substrate controller 1, an indication device 2 and a backup power supply module 3, the indication device 2 comprising a non-volatile memory 23, an indication lamp driver 22 and a display 21; the backup power supply module 3 is connected to the indication device 2;
[0104] The substrate controller 1 is used to obtain configuration information of a multifunctional interface, obtain silk screen text information corresponding to the configuration information, and form a silk screen indication information set from a plurality of silk screen text information of the multifunctional interface.
[0105] The non-volatile memory 23 is connected to the substrate controller 1, and the non-volatile memory 23 is used to store the silk screen indication information set.
[0106] The indication lamp driver 22 is connected to the non-volatile memory 23, and the indication lamp driver 22 reads the configuration information of the target component through the substrate controller 1 in response to the connection of the target component on the multifunctional interface, analyzes the silk screen relationship corresponding to the configuration information of the target component, writes the silk screen relationship into the non-volatile memory 23, and obtains target silk screen text information corresponding to the silk screen relationship in the silk screen indication information set.
[0107] The display 21 is connected to the indication lamp driver 22, and the display 21 is used to display the target silk screen text information.
[0108] In this embodiment, the step of obtaining configuration information of a multifunctional interface, obtaining silk screen text information corresponding to the configuration information, and forming a silk screen indication information set from a plurality of silk screen text information of the multifunctional interface comprises:
[0109] Building a relationship table corresponding to the silk screen text information and the configuration information;
[0110] Obtaining configuration information of the multifunctional interface and obtaining silk screen text information corresponding to the configuration information in the relationship table;
[0111] Arranging a plurality of silk screen text information of the multifunctional interface in sequence to form a silk screen indication information set.
[0112] In this embodiment, the step of storing the silk screen indication information set and silk screen printing the silk screen indication information set corresponding to the multifunctional interface comprises:
[0113] When a plurality of configuration information corresponds to one silk screen text information, one silk screen text information is set in the silk screen indication information set.
[0114] In this embodiment, the silk screen normalization management method further comprises:
[0115] The method for displaying the target silkscreen graphic information is obtained, and the method for displaying the target silkscreen graphic information includes monochrome indicator lights, color indicator lights, or a display screen;
[0116] The target silkscreen graphic information is displayed in response to a monochrome indicator light. When the silkscreen indicator information set is silkscreened corresponding to the multi-functional interface, the number of monochrome indicator lights lit in the silkscreen graphic information set is also silkscreened. When the target silkscreen graphic information is displayed, the target silkscreen graphic information is displayed by the number of monochrome indicator lights lit.
[0117] The target silkscreen graphic information is displayed in response to a color indicator light. When the silkscreen indicator information set is silkscreened corresponding to the multi-functional interface, the color of the silkscreen graphic information in the silkscreen indicator information set is also silkscreened. When the target silkscreen graphic information is displayed, the target silkscreen graphic information is displayed by illuminating the color of the color indicator light.
[0118] The target silkscreen graphic information is displayed in response to a display screen.
[0119] Based on the correspondence between printed graphic information and configuration information in the silkscreen instruction information set, the configuration information corresponding to the target silkscreen graphic information is obtained.
[0120] like Figure 5 As shown, the target silkscreen graphic information is displayed on the monitor 21. If the silkscreen indicator information set is (1-2)GPU0|(3)NIC0|(4)RAID0|(5)HCA0, then when three single-color indicator lights are lit, the corresponding target silkscreen graphic information is NIC0. Configuration information can be obtained based on NIC0, which is convenient for server maintenance. If the silkscreen indicator information set is GPU0 (first color)|NIC0 (second color)|RAID0 (third color)|HCA0 (fourth color), when the indicator light of the first color in the color indicator lights is lit, the corresponding target silkscreen graphic information is GPU0. Configuration information can be obtained based on GPU0, which is convenient for server maintenance.
[0121] In this embodiment, storing the silkscreen indication information set includes:
[0122] The silkscreen indicator information set is written into a non-volatile memory 23 for storage via a substrate controller 1. The non-volatile memory 23 is connected to a display 21 via an indicator light driver 22. The display 21 includes monochrome indicator lights, color indicator lights, or a display screen.
[0123] The displaying of the target silk screen printing information includes:
[0124] The non-volatile memory 23, the indicator light driver 22 and the display 21 are powered by the backup power supply module 3, and when the server is powered off, the backup power supply module 3 is controlled to be enabled;
[0125] The indicator light driver 22 reads the target silk screen printing information from the non-volatile memory 23, and the indicator light driver 22 controls the display 21 to display the target silk screen printing information.
[0126] In the embodiment, the silk screen printing normalization management method further includes:
[0127] In response to the server being powered off, the power of the backup power supply module 3 is detected;
[0128] When the power of the backup power supply module 3 is greater than a first threshold, the display 21 is controlled to be in a constant-on mode, and when the power of the backup power supply module 3 is less than the first threshold, the display 21 is controlled to be in an on-off mode.
[0129] In the embodiment, the silk screen printing normalization management method further includes:
[0130] In response to reading the set of silk screen printing indication information, the set of silk screen printing indication information stored in the non-volatile memory 23 is read by the substrate controller 1 and fed back.
[0131] In the above silk screen printing normalization management device, the set of silk screen printing indication information is printed by corresponding to the multifunctional interface, when the target component is connected to the multifunctional interface, the configuration information of the target component is read, the silk printing relationship corresponding to the configuration information of the target component is parsed to obtain the target silk screen printing information corresponding to the silk printing relationship, and the target silk screen printing information is displayed. When the server is maintained, the corresponding configuration information corresponding to the function can be accurately obtained based on the displayed target silk screen printing information, and the silk screen printing indication information set is refined to correspond to the function of the configuration information, the silk screen printing is unified, the management difficulty is reduced, the hardware cost and the management cost are saved, the number and types of structural parts managed in the production engineering are greatly reduced, the bill of materials of the product is greatly reduced, the difficulty and cost of project material management are reduced, the assembly and maintenance of the production line for the product are also more simple, the risk of assembly error is greatly reduced, and the maintenance efficiency is improved.
[0132] The specific definition of the screen printing normalization management device can refer to the definition of the screen printing normalization management method in the foregoing, and will not be described here. Each module in the screen printing normalization management device can be realized by software, hardware, or a combination thereof. The above-mentioned modules can be embedded in or independent of the processor in the computer device in hardware form, or can be stored in the memory in the computer device in software form, so that the processor calls and executes the operations corresponding to each module.
[0133] In one embodiment, a computer program product is provided, comprising a computer program which, when executed by a processor, implements the following steps:
[0134] Obtaining configuration information of the multifunctional interface, obtaining screen printing text information corresponding to the configuration information, and forming a screen printing instruction information set from a plurality of screen printing text information of the multifunctional interface;
[0135] Storing the screen printing instruction information set and screen printing the screen printing instruction information set corresponding to the multifunctional interface;
[0136] In response to connecting a target component on the multifunctional interface, reading configuration information of the target component and analyzing a screen printing relationship corresponding to the configuration information of the target component;
[0137] Obtaining target screen printing text information corresponding to the screen printing relationship in the screen printing instruction information set and displaying the target screen printing text information.
[0138] In the embodiment, the step of obtaining configuration information of the multifunctional interface, obtaining screen printing text information corresponding to the configuration information, and forming a screen printing instruction information set from a plurality of screen printing text information of the multifunctional interface comprises:
[0139] Constructing a relationship table corresponding to the screen printing text information and the configuration information;
[0140] Obtaining configuration information of the multifunctional interface and obtaining screen printing text information corresponding to the configuration information in the relationship table;
[0141] Sequentially arranging a plurality of screen printing text information of the multifunctional interface to form a screen printing instruction information set.
[0142] In the embodiment, the step of storing the screen printing instruction information set and screen printing the screen printing instruction information set corresponding to the multifunctional interface comprises:
[0143] In response to a plurality of configuration information corresponding to one screen printing text information, setting one screen printing text information in the screen printing instruction information set.
[0144] In the embodiment, the screen printing normalization management method further comprises:
[0145] obtaining a display mode of the target screen printing text information, the display mode of the target screen printing text information comprising a single-color indicator light, a color indicator light or a display screen;
[0146] in response to the display mode of the target screen printing text information being a single-color indicator light, when the multifunctional interface screen prints the set of screen printing indication information, a number of single-color indicator light points corresponding to the screen printing text information in the set of screen printing indication information is also screen printed; when the target screen printing text information is displayed, the target screen printing text information is displayed through the number of single-color indicator light points;
[0147] in response to the display mode of the target screen printing text information being a color indicator light, when the multifunctional interface screen prints the set of screen printing indication information, a color corresponding to the screen printing text information in the set of screen printing indication information is also screen printed; when the target screen printing text information is displayed, the target screen printing text information is displayed through the color of the color indicator light;
[0148] in response to the display mode of the target screen printing text information being a display screen, the target screen printing text information is displayed through the display screen;
[0149] according to the correspondence between the screen printing text information and the configuration information in the set of screen printing indication information, obtaining the configuration information corresponding to the target screen printing text information.
[0150] In the embodiment, the storing of the set of screen printing indication information comprises:
[0151] the set of screen printing indication information is stored in a non-volatile memory through a substrate controller, the non-volatile memory is connected to a display through an indicator light driver, and the display comprises a single-color indicator light, a color indicator light or a display screen;
[0152] the displaying of the target screen printing text information comprises:
[0153] the non-volatile memory, the indicator light driver and the display are powered by a backup power supply module, and the backup power supply module is enabled when the server is powered off;
[0154] the indicator light driver reads the target screen printing text information from the non-volatile memory, and the indicator light driver controls the display to display the target screen printing text information.
[0155] In the embodiment, the screen printing normalization management method further comprises:
[0156] In response to the server being powered off, detecting the power of the backup power supply module;
[0157] When the power of the backup power supply module is greater than the first threshold, controlling the display to adopt a constant light mode; and when the power of the backup power supply module is less than the first threshold, controlling the display to adopt an on-off mode.
[0158] In the embodiment, the silk screen normalization management method further includes:
[0159] In response to reading the set of silk screen indication information, reading the set of silk screen indication information stored in the non-volatile memory by the substrate controller and feeding back.
[0160] The specific limitation of the computer program when executed by the processor to implement the steps can refer to the limitation of the method of silk screen normalization management in the foregoing, which will not be described here.
[0161] In one embodiment, a computer device is provided, which can be a server, and an internal structure diagram thereof can be as shown in Figure 6 The computer device includes a processor, a memory, a network interface and a database connected through a system bus. The processor of the computer device is used to provide computing and control capabilities. The memory of the computer device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system, a computer program and a database. The internal memory provides an environment for the operating system and the computer program in the non-volatile storage medium to run. The database of the computer device is used to store silk screen normalization management data. The network interface of the computer device is used to communicate with an external terminal through a network connection. The computer program is executed by the processor to implement a silk screen normalization management method.
[0162] Those skilled in the art can understand that Figure 6 The structure shown in the figure is only a block diagram of part of the structure related to the scheme of the present application, and does not constitute a limitation on the computer device to which the scheme of the present application is applied. The specific computer device can include more or fewer components than those shown in the figure, or combine certain components, or have a different arrangement of components.
[0163] In one embodiment, a computer device is provided, which includes a memory, a processor and a computer program stored in the memory and executable on the processor. The processor executes the computer program to implement the following steps:
[0164] Obtaining configuration information of the multifunctional interface, obtaining silk screen graphic information corresponding to the configuration information, and forming a set of silk screen indication information from a plurality of silk screen graphic information of the multifunctional interface;
[0165] store the screen printing instruction information set, and screen print the screen printing instruction information set on the multifunctional interface;
[0166] read configuration information of the target component in response to connecting the target component on the multifunctional interface, and analyze the screen printing relationship corresponding to the configuration information of the target component;
[0167] acquire target screen printing graphic information corresponding to the screen printing relationship in the screen printing instruction information set, and display the target screen printing graphic information.
[0168] In the embodiment, the step of acquiring configuration information of the multifunctional interface, acquiring screen printing graphic information corresponding to the configuration information, and forming screen printing instruction information set from the screen printing graphic information of the multifunctional interface includes:
[0169] construct a relationship table of screen printing graphic information and configuration information;
[0170] acquire configuration information of the multifunctional interface, and acquire screen printing graphic information corresponding to the configuration information in the relationship table;
[0171] sequentially arrange the screen printing graphic information of the multifunctional interface to form the screen printing instruction information set.
[0172] In the embodiment, the step of storing the screen printing instruction information set and screen printing the screen printing instruction information set on the multifunctional interface includes:
[0173] when a plurality of configuration information corresponds to one screen printing graphic information, set one screen printing graphic information in the screen printing instruction information set.
[0174] In the embodiment, the screen printing normalization management method further includes:
[0175] acquire a display mode of the target screen printing graphic information, and the display mode of the target screen printing graphic information includes monochrome indicator light, color indicator light, or display screen;
[0176] when the display mode of the target screen printing graphic information is monochrome indicator light, further screen print the number of monochrome indicator light points of screen printing graphic information in the screen printing instruction information set when screen printing the screen printing instruction information set on the multifunctional interface; and display the target screen printing graphic information through the number of monochrome indicator light points when displaying the target screen printing graphic information;
[0177] The display mode of the target silk-screen text information is a color indicator, and the color of the target silk-screen text information is printed when the multifunctional interface silk-screen prints the set of silk-screen indication information. The target silk-screen text information is displayed by lighting the color indicator.
[0178] The display mode of the target silk-screen text information is a display screen, and the target silk-screen text information is displayed on the display screen.
[0179] According to the correspondence between the silk-screen text information and the configuration information in the set of silk-screen indication information, the configuration information corresponding to the target silk-screen text information is obtained.
[0180] In this embodiment, the storing of the set of silk-screen indication information includes:
[0181] The set of silk-screen indication information is stored in a non-volatile memory through a substrate controller, and the non-volatile memory is connected to a display through an indicator driver. The display includes a monochrome indicator, a color indicator, or a display screen.
[0182] The display of the target silk-screen text information includes:
[0183] The non-volatile memory, the indicator driver, and the display are powered by a backup power supply module. When the server is powered off, the backup power supply module is enabled.
[0184] The indicator driver reads the target silk-screen text information from the non-volatile memory, and the indicator driver controls the display to display the target silk-screen text information.
[0185] In this embodiment, the silk-screen normalization management method further includes:
[0186] In response to the server being powered off, the power of the backup power supply module is detected.
[0187] When the power of the backup power supply module is greater than a first threshold, the display is controlled to be in a constant-on mode. When the power of the backup power supply module is less than the first threshold, the display is controlled to be in an on-off mode.
[0188] In this embodiment, the silk-screen normalization management method further includes:
[0189] In response to reading the set of silk-screen indication information, the set of silk-screen indication information stored in the non-volatile memory is read through the substrate controller and feedback is provided.
[0190] The specific limitation of the step implemented when the processor executes the computer program can refer to the limitation of the method for managing the screen printing normalization described above, which will not be described here again.
[0191] In one embodiment, a computer readable storage medium is provided, which stores a computer program, and the computer program is executed by a processor to implement the following steps:
[0192] Obtain the configuration information of the multifunctional interface, obtain the screen printing text information corresponding to the configuration information, and form a screen printing indication information set from the multiple screen printing text information of the multifunctional interface;
[0193] Store the screen printing indication information set, and screen print the screen printing indication information set corresponding to the multifunctional interface;
[0194] In response to connecting a target component on the multifunctional interface, read the configuration information of the target component, and parse the screen printing relationship corresponding to the configuration information of the target component;
[0195] Obtain the target screen printing text information corresponding to the screen printing relationship in the screen printing indication information set, and display the target screen printing text information.
[0196] In this embodiment, the step of obtaining the configuration information of the multifunctional interface, obtaining the screen printing text information corresponding to the configuration information, and forming a screen printing indication information set from the multiple screen printing text information of the multifunctional interface comprises:
[0197] Construct a relationship table corresponding to the screen printing text information and the configuration information;
[0198] Obtain the configuration information of the multifunctional interface, and obtain the screen printing text information corresponding to the configuration information in the relationship table;
[0199] Arrange the multiple screen printing text information of the multifunctional interface in sequence to form a screen printing indication information set.
[0200] In this embodiment, the step of storing the screen printing indication information set and screen printing the screen printing indication information set corresponding to the multifunctional interface comprises:
[0201] In response to multiple configuration information corresponding to one screen printing text information, one screen printing text information is arranged in the screen printing indication information set.
[0202] In this embodiment, the method for managing the screen printing normalization further comprises:
[0203] Obtain the display mode of the target screen printing text information, and the display mode of the target screen printing text information comprises a single-color indicator light, a color indicator light, or a display screen;
[0204] The display mode of the target silk-screen text information is a single-color indicator light. When the multifunctional interface silk-screens the set of silk-screen indication information, the number of single-color indicator light points corresponding to the silk-screen text information in the set of silk-screen indication information is also silk-screened. When the target silk-screen text information is displayed, the target silk-screen text information is displayed by the number of single-color indicator light points.
[0205] The display mode of the target silk-screen text information is a color indicator light. When the multifunctional interface silk-screens the set of silk-screen indication information, the color corresponding to the silk-screen text information in the set of silk-screen indication information is also silk-screened. When the target silk-screen text information is displayed, the target silk-screen text information is displayed by the color of the color indicator light.
[0206] The display mode of the target silk-screen text information is a display screen. The target silk-screen text information is displayed by the display screen.
[0207] According to the correspondence between the silk-screen text information and the configuration information in the set of silk-screen indication information, the configuration information corresponding to the target silk-screen text information is obtained.
[0208] In this embodiment, the storing of the set of silk-screen indication information includes:
[0209] The set of silk-screen indication information is written into a non-volatile memory by a substrate controller, and the non-volatile memory is connected to a display through an indicator light driver. The display includes a single-color indicator light, a color indicator light, or a display screen.
[0210] The display of the target silk-screen text information includes:
[0211] The non-volatile memory, the indicator light driver, and the display are powered by a backup power supply module. When the server is powered off, the backup power supply module is enabled.
[0212] The indicator light driver reads the target silk-screen text information from the non-volatile memory, and the indicator light driver controls the display to display the target silk-screen text information.
[0213] In this embodiment, the silk-screen normalization management method further includes:
[0214] In response to the server being powered off, the power of the backup power supply module is detected.
[0215] When the power of the backup power supply module is greater than a first threshold, the display is controlled to adopt a constant-on mode. When the power of the backup power supply module is less than the first threshold, the display is controlled to adopt an on-off mode.
[0216] In the embodiment, the silk screen normalization management method further comprises:
[0217] In response to reading the set of silk screen indication information, reading the set of silk screen indication information stored in the non-volatile memory by the substrate controller and feeding back.
[0218] The specific limitation of the computer program when the processor is executed to realize the steps can refer to the above-mentioned limitation of the method of silk screen normalization management, which will not be described here.
[0219] A person of ordinary skill in the art can understand that all or part of the processes in the above-mentioned embodiment method can be completed by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer readable storage medium. When the computer program is executed, it can include the processes of the above-mentioned embodiments of the method. Any reference to memory, storage, database or other medium used in the embodiments provided by the present application can include non-volatile and / or volatile memory. Non-volatile memory can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM) or flash memory. Volatile memory can include random access memory (RAM) or external cache memory. As an illustration but not limitation, RAM is available in various forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), synchronous link (Synchlink) DRAM (SLDRAM), memory bus (Rambus) direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM), etc.
[0220] Any combination of the technical features of the above embodiments can be made. In order to make the description simple, all possible combinations of the technical features in the above-mentioned embodiments are not described, however, as long as the combination of the technical features does not exist, it should be considered as the scope of the present application.
[0221] The above-mentioned embodiments only express several implementation manners of the present application, and the description is more specific and detailed, but it should not be understood as a limitation on the scope of the patent. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, some modifications and improvements can be made, which are within the scope of the present application. Therefore, the scope of the patent of the present application should be subject to the appended claims.
Claims
1. A standardized management method for screen printing, characterized in that, include: Obtain the configuration information of the multi-functional interface, obtain the silkscreen graphic information corresponding to the configuration information, and form a silkscreen indication information set from the various silkscreen graphic information of the multi-functional interface. The silkscreen instruction information set is stored, and the silkscreen instruction information set is screen printed corresponding to the multi-functional interface; When a target component is connected to the multi-functional interface, the configuration information of the target component is read, and the silkscreen relationship corresponding to the configuration information of the target component is parsed out. Obtain the target silkscreen graphic information corresponding to the silkscreen relationship from the silkscreen indication information set, and display the target silkscreen graphic information; The method for displaying the target silkscreen graphic information is obtained, and the method for displaying the target silkscreen graphic information includes monochrome indicator lights, color indicator lights, or a display screen; The target silkscreen graphic information is displayed in response to a monochrome indicator light. When the silkscreen indicator information set is silkscreened corresponding to the multi-functional interface, the number of monochrome indicator lights lit in the silkscreen graphic information set is also silkscreened. When the target silkscreen graphic information is displayed, the target silkscreen graphic information is displayed by the number of monochrome indicator lights lit. The target silkscreen graphic information is displayed in response to a color indicator light. When the silkscreen indicator information set is silkscreened corresponding to the multi-functional interface, the color of the silkscreen graphic information in the silkscreen indicator information set is also silkscreened. When the target silkscreen graphic information is displayed, the target silkscreen graphic information is displayed by illuminating the color of the color indicator light. The target silkscreen graphic information is displayed in response to a display screen. Based on the correspondence between printed graphic information and configuration information in the silkscreen instruction information set, obtain the configuration information corresponding to the target silkscreen graphic information; The storage of the silkscreen indication information set includes: The silkscreen indicator information set is written into a non-volatile memory for storage via a substrate controller. The non-volatile memory is connected to a display via an indicator light driver. The display includes monochrome indicator lights, color indicator lights, or a display screen. The step of displaying the target silkscreen graphic information includes: The non-volatile memory, the indicator light driver, and the display are powered by a backup power supply module, which is activated when the server is powered off. The indicator light driver is controlled to read the target silkscreen graphic information from the non-volatile memory, and the indicator light driver controls the display to display the target silkscreen graphic information; When the display method in response to the target silkscreen graphic information is a color indicator light, the method further includes: Obtain the screen printing graphic information corresponding to the screen printing instruction information set for the multi-functional interface, as well as the color of the screen printing graphic information; wherein each screen printing graphic information in the screen printing instruction information set has a different color; Obtain the display color of the color indicator light, and search for silk screen printing text information with the same color in the silk screen indicator information set according to the display color of the color indicator light as the target silk screen printing text information; The configuration information corresponding to the target silkscreen image information is obtained based on the target silkscreen image information.
2. The screen printing normalization management method according to claim 1, characterized in that, The steps of obtaining configuration information of the multi-functional interface, obtaining silkscreen graphic information corresponding to the configuration information, and forming a silkscreen indication information set from the various silkscreen graphic information of the multi-functional interface include: Construct a relationship table between silkscreen graphic information and configuration information; Obtain the configuration information of the multi-functional interface, and retrieve the silkscreen graphic information corresponding to the configuration information from the relationship table; The various silkscreen graphic information of the multi-functional interface are arranged sequentially to form a silkscreen instruction information set.
3. The screen printing normalization management method according to claim 2, characterized in that, The step of arranging the various silkscreen graphic information of the multi-functional interface sequentially to form a silkscreen indication information set includes: When multiple configuration information corresponds to one silkscreen graphic information, a silkscreen graphic information is set in the silkscreen instruction information set.
4. The screen printing normalization management method according to claim 1, characterized in that, The screen printing normalization management method also includes: In response to the server power failure, the power level of the backup power supply module is detected; When the power of the backup power supply module is greater than the first threshold, the display is controlled to be in a constant-on mode; when the power of the backup power supply module is less than the first threshold, the display is controlled to be in a switch mode.
5. The screen printing normalization management method according to claim 1, characterized in that, The screen printing normalization management method also includes: In response to reading the silkscreen indication information set, the substrate controller reads the silkscreen indication information set stored in the non-volatile memory and provides feedback.
6. A screen printing standardization management device, characterized in that, For implementing the screen printing normalization management method according to any one of claims 1 to 5, the screen printing normalization management device includes a substrate controller, an indicator device, and a backup power supply module; the indicator device includes a non-volatile memory, an indicator light driver, and a display; the backup power supply module is connected to the indicator device; The baseboard controller is used to obtain configuration information of the multi-functional interface, obtain silkscreen graphic information corresponding to the configuration information, and form a silkscreen indication information set of various silkscreen graphic information of the multi-functional interface. The non-volatile memory is connected to the substrate controller, and the non-volatile memory is used to store the silkscreen indication information set; The indicator light driver is connected to the non-volatile memory. When the target component is connected to the multi-function interface, the indicator light driver reads the configuration information of the target component, parses the silkscreen relationship corresponding to the configuration information of the target component, and obtains the target silkscreen graphic information corresponding to the silkscreen relationship from the silkscreen indication information set. The display is connected to the indicator light driver, and the display is used to display the target silkscreen graphic information.
7. A computer device, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the computer program, it implements the steps of the method according to any one of claims 1 to 5.
8. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by a processor, it implements the steps of the method according to any one of claims 1 to 5.
Citation Information
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