Display device for enterprise data circulation
By designing foldable display components and detachable support components, the problem of existing enterprise data flow display devices being bulky, inconvenient to transport and maintain has been solved, achieving the effect of being easy to carry and maintain.
Patent Information
- Application Number
- CN202423259003.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Existing enterprise data flow display devices are usually large in size, making them inconvenient to move, carry, and maintain, and their applicability and flexibility are poor.
Design a display device that includes foldable display components and detachable support components, reducing its size and weight through folding and disassembly for easy carrying and maintenance.
This makes the device easy to carry and maintain, improving its flexibility and applicability.
Smart Images

Figure CN223550198U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of display devices, and more particularly to display devices for enterprise data circulation. Background Technology
[0002] Enterprise data circulation refers to the process of data being transmitted, shared, and exchanged between different entities within and outside an enterprise. This process aims to maximize the utilization of data, enabling it to play a role in all aspects of the enterprise, thereby supporting enterprise decision-making and business development. Enterprise data circulation display devices are mainly used to present data in visual forms such as graphics, charts, and maps, helping users understand complex data, improve decision-making efficiency, and enhance data interaction capabilities.
[0003] Existing enterprise data flow display devices are usually designed as a single piece, with a fixed connection between the support structure and the display structure. They are bulky, inconvenient to move and carry, and difficult to maintain and repair, resulting in poor applicability and flexibility.
[0004] Therefore, in view of the problems that the existing enterprise data circulation display devices are usually large in size, making them inconvenient to carry, transport, and maintain, and have poor applicability and flexibility, an enterprise data circulation display device with a foldable display structure and a detachable support structure can be designed. The size can be reduced by folding and disassembling, making it easier to carry and maintain, and more flexible and applicable. Utility Model Content
[0005] To overcome the problems of existing enterprise data flow display devices being typically large in size, inconvenient to move, carry, and maintain, and having poor applicability and flexibility.
[0006] The technical solution of this utility model is as follows: a display device for enterprise data circulation, including a display component, a control component, and a support component. The display component has a foldable structure. A foldable control component for operating the content displayed on the display component is fixedly installed in the middle of the lower end of the display component. Two sets of support components for supporting the display component are detachably installed in a symmetrical manner at the lower end of the display component. The display component includes a main display screen, an auxiliary display screen, a magnetic block, a first connecting block, a support block, and a connecting seat. Two sets of auxiliary display screens for increasing display diversity are arranged in a symmetrical manner at the left and right ends of the main display screen. The upper and lower ends of the auxiliary display screen and the main display screen are rotatably connected through the first connecting block. A magnetic block for magnetic attraction with the rear end of the auxiliary display screen is fixedly installed on the rear side. Two sets of support blocks are fixedly installed in a symmetrical manner at the lower end of the main display screen. A connecting seat for detachable connection with the support component is fixedly installed at the lower end of the support block. The upper end of the connecting seat has first mounting holes evenly distributed around the four corners for installing and fixing the connecting seat.
[0007] Preferably, the control component includes an operation panel, a second connecting block, and a third connecting block. The upper left side of the operation panel is provided with a display screen for displaying operation information, and the upper right side of the operation panel is provided with multiple sets of control buttons for operation. The upper right side of the operation panel is provided with a touch button for fingerprint recognition below the operation buttons. The left and right rear ends of the operation panel are rotatably connected to the third connecting block, and the third connecting block is rotatably connected to the display component through the second connecting block.
[0008] Preferably, the support assembly includes a telescopic sleeve column, a mounting base, a first support base, a fourth connecting block, a support column, a fifth connecting block, and a second support base. The upper end of the telescopic sleeve column is fixedly mounted with a mounting base, and the upper end of the mounting base is provided with second mounting holes evenly distributed around the four corners, which are detachably connected to the display assembly.
[0009] Preferably, multiple sets of limiting holes for adjusting the height of the telescopic sleeve are evenly distributed from top to bottom on the side of the sleeve. The telescopic sleeve is fixed by bolts, and the height of the telescopic sleeve is adjusted by connecting the bolts to the limiting holes at different positions.
[0010] Preferably, a fourth connecting block is fixedly connected to the rear end of the telescopic sleeve, and a support column for supporting the telescopic sleeve is rotatably connected between the fourth connecting block and the fifth connecting block.
[0011] Preferably, the upper and lower ends of the support column are detachably connected to the fourth and fifth connecting blocks by bolts and nuts. The lower end of the telescopic sleeve column is fixedly connected to a first support seat to increase the stability of the support, and the lower end of the fifth connecting block is fixedly connected to a second support seat to increase the stability of the support.
[0012] Preferably, the upper end of the first support base is provided with three mounting holes evenly distributed around the four corners for installing and fixing the first support base, and the upper end of the second support base is provided with four mounting holes evenly distributed around the four corners for installing and fixing the second support base.
[0013] The beneficial effects of this utility model are:
[0014] 1. By setting up foldable display and control components, as well as detachable support components, the volume of the display structure can be reduced by folding, and the weight of the device can be reduced by disassembling the support structure, making it easier to carry and maintain, and more flexible and applicable. Attached Figure Description
[0015] Figure 1 The diagram shown is a three-dimensional structural schematic of the enterprise data circulation display device of this utility model.
[0016] Figure 2 The diagram shown is a three-dimensional structural schematic of the enterprise data circulation display device of this utility model from another angle.
[0017] Figure 3 The diagram shown is a three-dimensional structural schematic of the display components of the enterprise data circulation display device of this utility model.
[0018] Figure 4 The diagram shown is a three-dimensional structural schematic of the support components of the enterprise data circulation display device of this utility model.
[0019] Explanation of reference numerals in the attached drawings: 101, Main display screen; 102, Auxiliary display screen; 103, Magnetic block; 104, First connecting block; 105, Support block; 106, Connecting seat; 107, First mounting hole; 201, Operation panel; 202, Second connecting block; 203, Third connecting block; 301, Telescopic sleeve column; 302, Limiting hole; 303, Mounting seat; 304, Second mounting hole; 305, First support seat; 306, Third mounting hole; 307, Fourth connecting block; 308, Support column; 309, Fifth connecting block; 310, Second support seat; 311, Fourth mounting hole. Detailed Implementation
[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0021] Enterprise data circulation refers to the process of exchanging, sharing, and transmitting data between different departments within an enterprise and between the enterprise and external partners (such as suppliers, customers, and regulatory agencies). This data includes, but is not limited to, business transaction data, customer information, production data, and financial data.
[0022] importance:
[0023] Optimize internal processes: By allowing data to flow between various departments within an enterprise (such as sales, purchasing, production, finance, etc.), information sharing can be achieved, avoiding information silos and thus optimizing business processes. For example, customer order data from the sales department can be transmitted to the production department in a timely manner, allowing the production department to arrange production plans based on order requirements and improve production efficiency.
[0024] Improving decision-making quality: Enterprise management can gain a comprehensive understanding of the company's operations based on circulating data, and make more accurate decisions. For example, by combining market sales data and financial data, they can analyze the profitability of products and determine the direction of product R&D investment and marketing strategies.
[0025] Strengthening external cooperation: Data sharing with external partners helps to build closer partnerships. For example, when companies share inventory and production planning data with suppliers, suppliers can better arrange raw material supply, reduce inventory costs, and achieve supply chain synergy.
[0026] Data circulation methods
[0027] Internal circulation within the enterprise:
[0028] System integration: By integrating internal enterprise software systems such as Enterprise Resource Planning (ERP) systems and Customer Relationship Management (CRM) systems, automatic data transfer between different systems can be achieved. For example, customer order information in the CRM system can be integrated into the production module of the ERP system to achieve seamless connection between orders and production.
[0029] Database sharing: Establish an internal shared database within the enterprise. Departments can access and update data in the database according to their permissions. For example, the enterprise's human resources database can store basic employee information, performance data, etc. The finance department and the administration department can access the relevant data according to their authorization for work such as payroll calculation and welfare distribution.
[0030] Internal network communication: Data is exchanged through a company’s internal local area network (LAN) or virtual private network (VPN) via file sharing, messaging, etc. For example, files can be transferred and reports shared within the company via instant messaging tools.
[0031] Enterprises and external circulation:
[0032] Application Programming Interface (API): By opening up APIs, enterprises allow external partners (such as third-party software developers, e-commerce platforms, etc.) to securely access and interact with enterprise data. For example, an enterprise's e-commerce platform can connect with a third-party logistics system through APIs to transmit order delivery information to the logistics system and realize automated tracking of logistics and delivery.
[0033] Data file exchange: Exchanging data with external partners in the form of Electronic Data Interchange (EDI), Extensible Markup Language (XML) files, etc. For example, enterprises and suppliers exchange purchase orders, shipping notices and other documents through EDI to ensure the accuracy and timeliness of the data.
[0034] Cloud service sharing: Enterprises store data in the cloud and share it with external partners through cloud service platforms. For example, some multinational companies share market research reports, financial statements and other data with their overseas branches through cloud storage services, which facilitates remote collaboration and data management.
[0035] An enterprise data flow visualization device is a device used to intuitively present the internal data flow and interaction with external data within an enterprise. It can visually display complex data flow paths, data volume, data types, data update frequency, and other information.
[0036] Function:
[0037] Data flow path display: Clearly depicts the data flow paths between various departments within the enterprise (such as sales, production, finance, R&D, etc.) and between the enterprise and external partners (suppliers, customers, regulatory agencies, etc.). For example, a graphical interface can be used to show how data flows between the sales system, inventory system, and logistics system from the moment a customer places an order until the product is delivered.
[0038] Data flow and frequency display: It can display the data flow volume (such as the number of bytes of data, the number of files, etc.) and the data update frequency (such as real-time update, daily update, weekly update, etc.) between different links. This helps enterprises understand which links have more active data flow and which links may have data congestion.
[0039] Data type and source display: Show the type of data in circulation (such as transaction data, customer information, market research data, etc.) as well as the source and destination of the data. For example, use different colors or icons to distinguish financial data and market data, and clearly indicate whether the data comes from the company's internal system or external partners.
[0040] Data security status display: The security status of data during the circulation process is displayed through indicator lights, icons or color changes. For example, green indicates that the data is transmitted securely and encrypted, yellow indicates that the data may have certain security risks (such as weak encryption), and red indicates that the data is in an insecure state (such as unencrypted or attacked).
[0041] Enterprise data flow visualization devices play a crucial role in data visualization, real-time monitoring, interactive analysis, and decision support, making them indispensable data management tools for modern enterprises. However, these devices often encounter problems in practical use. Below are some common issues and their causes: 1. Difficulty in Guaranteeing Data Accuracy: Data displayed on the visualization screen may be inaccurate, affecting decision-making. Reasons: Diverse and complex data sources, incomplete data processing and cleaning, and a lack of effective data verification mechanisms. 2. Information Overload: Too much information is displayed on the screen, making it difficult for users to quickly obtain key information. Reasons: Information is not properly filtered and categorized, and there is a lack of hierarchical information display methods. 3. Insufficient Interactivity: Limited user interaction with the screen hinders in-depth data analysis. Reasons: Inadequate interactive function design and a lack of intelligent technologies such as voice recognition and natural language processing. 4. Slow Response Speed: The screen responds slowly when processing large amounts of data, impacting user experience. Reasons: Insufficient system performance, lack of distributed computing and parallel processing technologies, and the need for hardware upgrades. 5. High Maintenance Costs: The hardware, software, and human maintenance costs for the screen are high. Reasons: 6. Delayed Data Updates: Data displayed on the large screen fails to update in real time, leading to decision-making errors. Reasons: Inefficient data update mechanism, lack of real-time data push technology, and unstable data source. 7. Inappropriate Chart Design: Charts are not intuitive, making it difficult for users to understand the data. Reasons: Inappropriate chart type selection, complex color scheme, unclear labels and titles, and lack of dynamic prompts.
[0042] Currently, various types of enterprise data flow display devices exist on the market, aiming to present and interpret business data in a visual way, helping enterprises better understand and analyze data, thereby making more informed business decisions and promoting the free flow and value creation of data. For example: 1. Large-screen display equipment: Large-screen display equipment typically includes LCD screens, LED screens, etc., used to display data and information on large screens. They integrate structured or unstructured data through a series of processing steps such as data collection, cleaning, and transformation, and present it on large screens using visualization tools such as charts (e.g., bar charts, line charts, pie charts), maps, and graphs. These devices are widely used in enterprise conference rooms, control centers, and public display areas, supporting real-time data updates and facilitating team-based collective analysis and discussion. Problems: Large-screen display equipment may face issues such as difficulty in guaranteeing data accuracy, information overload, slow response speed, and high maintenance costs. Data accuracy is affected by incomplete data processing and cleaning; information overload may be due to the lack of proper screening and classification of information; slow response speed may be due to insufficient system performance or the lack of efficient data processing technology; high maintenance costs are related to rapid hardware aging, the need for frequent replacements, and the high demand for specialized personnel. 2. Mobile Devices: Mobile devices, including smartphones and tablets, connect to the data platform via mobile internet, enabling real-time data synchronization and sharing. Data visualization applications on mobile devices typically have user-friendly interfaces and interactive experiences, making data analysis more intuitive and convenient. Enterprise management can view and analyze data anytime, anywhere via mobile devices for decision-making. Problems: While portable, mobile devices have relatively small screen sizes, which may limit the visualization of complex data. Furthermore, the battery life and performance of mobile devices may be insufficient to support prolonged or intensive data analysis and visualization work. 3. Computers: Computers are one of the most common and fundamental devices for data platform visualization. Whether desktop or laptop, they can be used for data visualization and analysis. Computers connect to databases or the data platform to acquire, process, analyze, and visualize data. Users can interact with the data using software tools on the computer, such as zooming in, zooming out, filtering, and sorting, to meet different analytical needs. Problems: As data visualization devices, computers may face issues related to data security, privacy protection, and software compatibility. Data may be attacked or leaked during transmission and storage; inconsistencies in data formats and interfaces between different software programs can lead to difficulties in data exchange and sharing.
[0043] In summary, enterprise data flow display devices vary in type, working method, and existing problems. Enterprises need to comprehensively consider factors such as their own needs, data characteristics, and budget when selecting and using these devices.
[0044] Please see Figures 1-2 This utility model provides an embodiment of a display device for enterprise data circulation, which includes a display component, a control component, and a support component. The display component has a foldable structure. A foldable control component for operating the content displayed on the display component is fixedly installed in the middle of the lower end of the display component. Two sets of support components for supporting the display component are detachably installed in a symmetrical manner at the lower end of the display component.
[0045] Please see Figures 2-3 In this embodiment, the display component includes a main display screen 101, an auxiliary display screen 102, a magnetic block 103, a first connecting block 104, a support block 105, and a connecting seat 106. The main display screen 101 has two sets of auxiliary display screens 102 arranged opposite each other on the left and right sides to increase the diversity of the display. The auxiliary display screens 102 and the main display screen 101 are rotatably connected at the top and bottom ends through the first connecting block 104. The rear side of the auxiliary display screen 102 is fixedly installed with a magnetic block 103 for magnetic attraction with the rear end of the main display screen 101. The lower end of the main display screen 101 has two sets of support blocks 105 fixedly installed symmetrically on the left and right sides. The lower end of the support block 105 is fixedly installed with a connecting seat 106 for detachable connection with the support component. The upper end of the connecting seat 106 has first mounting holes 107 evenly distributed around the four corners for mounting and fixing the connecting seat 106.
[0046] Please see Figure 3 In this embodiment, the control component includes an operation panel 201, a second connecting block 202, and a third connecting block 203. The upper left side of the operation panel 201 is provided with a display screen for displaying operation information. The upper right side of the operation panel 201 is provided with multiple sets of control buttons for operation. The upper right side of the operation panel 201 is provided with a touch button for fingerprint recognition below the operation buttons. The rear of both the left and right ends of the operation panel 201 are rotatably connected to the third connecting block 203. The third connecting block 203 is rotatably connected to the display component through the second connecting block 202.
[0047] Please see Figure 4In this embodiment, the support assembly includes a telescopic sleeve 301, a mounting base 303, a first support base 305, a fourth connecting block 307, a support column 308, a fifth connecting block 309, and a second support base 310. The upper end of the telescopic sleeve 301 is fixedly mounted with the mounting base 303. Second mounting holes 304 are evenly distributed around the four corners of the upper end of the mounting base 303, allowing for detachable connection to the display assembly via the second mounting holes 304. Multiple sets of limiting holes 302 for adjusting the height of the telescopic sleeve 301 are evenly distributed along the sides of the telescopic sleeve 301 from top to bottom. The telescopic sleeve 301 is fixed with bolts. The height of the telescopic sleeve 301 is adjusted by connecting the bolts to the limiting holes 302 at different positions. The rear end of the telescopic sleeve 301 is fixedly connected to a first support base 305. Four connecting blocks 307, the fourth connecting block 307 and the fifth connecting block 309 are rotatably connected to a support column 308 for supporting the telescopic sleeve column 301. The upper and lower ends of the support column 308 are detachably connected to the fourth connecting block 307 and the fifth connecting block 309 by bolts and nuts. The lower end of the telescopic sleeve column 301 is fixedly connected to a first support seat 305 for increasing support stability. The lower end of the fifth connecting block 309 is fixedly connected to a second support seat 310 for increasing support stability. The upper end of the first support seat 305 has three mounting holes 306 evenly distributed around its four corners for mounting and fixing the first support seat 305. The upper end of the second support seat 310 has four mounting holes 311 evenly distributed around its four corners for mounting and fixing the second support seat 310.
[0048] When working, first install and fix the support component on the lower end of the display component, place the connector 106 on the mounting base 303, and install and fix the connector 106 on the mounting base 303 through the first mounting hole 107 and the second mounting hole 304.
[0049] Then unfold the display components and control components in sequence, rotate the two auxiliary display screens 102 to be on the same horizontal line as the main display screen 101, and rotate the operation panel 201 to a horizontal state;
[0050] Then, adjust the display components to a suitable height according to the actual situation. Fix the telescopic sleeve 301 by connecting the bolts to the limiting holes 302 at the corresponding positions of the telescopic sleeve 301, and adjust it to the corresponding height.
[0051] Then rotate the support column 308 and the fifth connecting block 309 to adjust the support column 308 to a suitable support angle, adjust the second support seat 310 to a horizontal state and put it in contact with the ground, tighten the bolts and nuts at both ends of the support column 308, and install and fix the first support seat 305 and the second support seat 310 through the third mounting hole 306 and the fourth mounting hole 311.
[0052] Finally, unlock the operation panel 201 using the fingerprint recognition button on the operation panel 201, and display the relevant information on the main display screen 101 and the auxiliary display screen 102 by controlling the operation buttons;
[0053] When the device needs to be moved or carried, the display and control components are folded up, the auxiliary display screen 102 is rotated backward so that the magnetic block 103 on the auxiliary display screen 102 is magnetically attracted to the rear end of the main display screen 101, and the operation panel 201 is folded upward to reduce the volume of the display and control components. The overall weight of the device is reduced by removing the support component from the display component.
[0054] Through the above steps, by setting foldable display components, control components, and detachable support components, the volume of the display structure can be reduced by folding, and the weight of the device can be reduced by disassembling the support structure. This makes it easier to carry and maintain, and more flexible and applicable. This solves the problem that existing enterprise data flow display devices are usually set up as a one-piece molded structure, with a fixed connection between the support structure and the display structure. They are large in size, inconvenient to carry and maintain, and have poor applicability and flexibility.
Claims
1. A display device for enterprise data circulation, comprising display components; characterized in that: It also includes control components and support components. The display component has a foldable structure. A foldable control component for operating the content displayed on the display component is fixedly installed at the lower center of the display component. Two sets of support components for supporting the display component are detachably installed on the lower end of the display component. The display component includes a main display screen (101), an auxiliary display screen (102), a magnetic block (103), a first connecting block (104), a support block (105), and a connecting base (106). Two sets of auxiliary display screens (102) for increasing the diversity of the display are arranged on the left and right sides of the main display screen (101). The upper and lower ends of the auxiliary display screen (102) and the main display screen (101) are rotatably connected by the first connecting block (104). The rear side of the auxiliary display screen (102) is fixedly installed with a magnetic block (103) for magnetic attraction with the rear end of the main display screen (101). The lower end of the main display screen (101) is fixedly installed with two sets of support blocks (105) symmetrically. The lower end of the support block (105) is fixedly installed with a connecting seat (106) for detachable connection with the support component. The upper end of the connecting seat (106) has first mounting holes (107) evenly distributed around the four corners for mounting and fixing the connecting seat (106).
2. The enterprise data circulation display device according to claim 1, characterized in that: The control component includes an operation panel (201), a second connecting block (202), and a third connecting block (203). The upper left side of the operation panel (201) is provided with a display screen for displaying operation information. The upper right side of the operation panel (201) is provided with multiple sets of control buttons for operation. The upper right side of the operation panel (201) is provided with a touch button for fingerprint recognition below the operation buttons. The rear of both the left and right ends of the operation panel (201) are rotatably connected to the third connecting block (203). The third connecting block (203) and the display component are rotatably connected through the second connecting block (202).
3. The enterprise data circulation display device according to claim 1, characterized in that: The support assembly includes a telescopic sleeve column (301), a mounting base (303), a first support base (305), a fourth connecting block (307), a support column (308), a fifth connecting block (309), and a second support base (310). The upper end of the telescopic sleeve column (301) is fixedly installed with the mounting base (303). The upper end of the mounting base (303) has second mounting holes (304) evenly distributed around the four corners. The mounting base (303) is detachably connected to the display assembly through the second mounting holes (304).
4. The enterprise data circulation display device according to claim 3, characterized in that: The telescopic sleeve (301) has multiple sets of limiting holes (302) evenly distributed from top to bottom on its side for adjusting the height of the telescopic sleeve (301). The telescopic sleeve (301) is fixed by bolts, and the height of the telescopic sleeve (301) is adjusted by connecting the bolts to the limiting holes (302) at different positions.
5. The enterprise data circulation display device according to claim 3, characterized in that: The rear end of the telescopic sleeve (301) is fixedly connected to a fourth connecting block (307), and a support column (308) for supporting the telescopic sleeve (301) is rotatably connected between the fourth connecting block (307) and the fifth connecting block (309).
6. The enterprise data circulation display device according to claim 3, characterized in that: The upper and lower ends of the support column (308) are detachably connected to the fourth connecting block (307) and the fifth connecting block (309) by bolts and nuts. The lower end of the telescopic sleeve column (301) is fixedly connected to the first support seat (305) for increasing the support stability, and the lower end of the fifth connecting block (309) is fixedly connected to the second support seat (310) for increasing the support stability.
7. The enterprise data circulation display device according to claim 3, characterized in that: The upper end of the first support base (305) is provided with three mounting holes (306) evenly distributed around the four corners for installing and fixing the first support base (305), and the upper end of the second support base (310) is provided with four mounting holes (311) evenly distributed around the four corners for installing and fixing the second support base (310).