A consumable inventory based supplier capacity real-time computing device

CN122507682APending Publication Date: 2026-08-04BEIJING XUFU DIGITAL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
BEIJING XUFU DIGITAL TECHNOLOGY CO LTD
Filing Date
2026-05-14
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

[0002]对于供应商而言,库存往往是使用人工进行盘点,即入库存留了多少,使用了多少,消耗了多少,因此在需要计算库存的存量,消耗量,产能之间的互相关联性较为困难,且人工盘点,计算量庞大,易出错,数据丢失,无法实时对库存和产能之间的比例进行汇报

Benefits of technology

[0015] In the above solution, by setting up a weighing device, a display, and a data storage unit, the weight displayed on the weighing device can be compared with the product weight to determine the quantity of heavy products. The data is transmitted to the display, and the relationship between the quantity of a single product and the production capacity can be compared to determine the ratio of consuming inventory to production capacity. The data storage unit can store real-time data for easy viewing by users.

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Abstract

This invention provides a real-time supplier capacity calculation device based on consumable inventory, belonging to the technical field of such devices. It includes: an operating console, a display, a weighing device, and a data storage unit. The display is fixedly mounted on the top of the operating console; the weighing device is located on the side of the operating console; multiple data storage units are installed inside the operating console; the device monitors raw material data in real time through the weighing device. The processor calculates the consumable inventory and converts the consumable inventory into production capacity in real time based on a preset unit consumption. The results are visualized on a touchscreen display, and operators can input parameters via a keyboard. All data is stored in the data storage units within the operating console. When not in use, the dust cover on the shelf behind the display can be lowered to cover the screen for dust protection; the end of the cloth can be used to clean the screen simultaneously.
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Description

Technical Field

[0001] This invention relates to the field of equipment for real-time calculation of supplier capacity based on consumable inventory, and particularly to an equipment for real-time calculation of supplier capacity based on consumable inventory. Background Technology

[0002] For suppliers, inventory is often counted manually, which involves tracking how much is received, how much is used, and how much is consumed. Therefore, it is difficult to calculate the correlation between inventory levels, consumption, and production capacity. Furthermore, manual inventory counting involves a huge amount of calculation, is prone to errors and data loss, and cannot provide real-time reports on the ratio between inventory and production capacity.

[0003] This makes it inefficient when it is necessary to calculate and compare consumable inventory and production capacity.

[0004] Therefore, this application provides a supplier capacity real-time calculation device based on consumable inventory to meet the demand. Summary of the Invention

[0005] The purpose of this invention is to solve the problems existing in the above-mentioned background art, and to propose a supplier capacity real-time calculation device based on consumable inventory.

[0006] The technical problem this invention aims to solve is to provide a real-time supplier capacity calculation device based on consumable inventory. This addresses the issue that existing real-time supplier capacity calculation devices based on consumable inventory often rely on manual inventory checks, which involve counting how much inventory was received, how much was used, and how much was consumed. Therefore, it is difficult to calculate the correlation between inventory levels, consumption, and capacity. Furthermore, manual inventory checks are computationally intensive, prone to errors and data loss, and cannot provide real-time reporting of the ratio between inventory and capacity.

[0007] To solve the above-mentioned technical problems, the present invention provides the following technical solution: A supplier capacity real-time calculation device based on consumable inventory includes: an operating console, a display, a weighing device, and a data storage unit; A display is fixedly installed on the top of the control panel; a weighing device is installed on the side of the control panel; and multiple data storage units are installed inside the control panel.

[0008] Preferably, the operating console includes: The cabinet door is hinged and movably mounted to the front section of the operating table; A storage cabinet is located inside the control panel; Data storage units are evenly arranged inside the storage cabinet; The keyboard is embedded in the top of the console.

[0009] Preferably, the weighing device includes: A shelf is installed on top of the weighing device; The connecting lines are all connected to the bottom of the weighing device.

[0010] Preferably, the display includes: The display consists of a processor and a display screen; A display screen, which is embedded in the top of the display; A processor, which is mounted at the rear end of the display screen; The other end of the connecting line is connected to the rear of the display.

[0011] Preferably, the display includes: Shelves are installed at both ends of the rear side of the display; Storage rods are fixedly installed between the storage racks; A dustproof cloth is wrapped around the storage rod, with one end fixedly sleeved onto the outer surface.

[0012] Preferably, the other end of the dustproof cloth / net is provided with a wiping cloth.

[0013] Preferably, the display screen is a touch-interactive display screen.

[0014] Preferably, there are gaps between the data storage units.

[0015] In the above solution, by setting up a weighing device, a display, and a data storage unit, the weight displayed on the weighing device can be compared with the product weight to determine the quantity of heavy products. The data is transmitted to the display, and the relationship between the quantity of a single product and the production capacity can be compared to determine the ratio of consuming inventory to production capacity. The data storage unit can store real-time data for easy viewing by users. Attached Figure Description

[0016] The accompanying drawings, which are incorporated herein and form part of the specification, illustrate embodiments of the present disclosure and, together with the specification, further serve to explain the principles of the present disclosure and enable those skilled in the art to implement and use the present disclosure.

[0017] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the dustproof cloth connection structure in this invention; Figure 3 This is a schematic diagram of the display structure in this invention; Figure 4 This is a schematic diagram of the internal structure of the operating console in this invention.

[0018] [Figure Labels] 1. Control panel; 2. Shelf; 3. Weighing device; 4. Connecting cables; 5. Monitor; 6. Shelf; 7. Keyboard; 8. Cabinet door; 9. Storage rod; 10. Dustproof cloth; 11. Processor; 12. Display screen; 13. Storage cabinet; 14. Data storage unit. Detailed Implementation

[0019] In this embodiment, as Figure 1-4 As shown, it includes: an operating console 1, a display 5, a weighing device 3, and a data storage unit 14; the display 5 is fixedly installed on the top of the operating console 1; the weighing device 3 is arranged on the side of the operating console 1; multiple data storage units 14 are installed inside the operating console 1; the weighing device 3 includes: a shelf 2, which is installed on the top of the weighing device 3; a connecting line, one end of which is connected to the bottom of the weighing device 3; the display 5 consists of a processor 11 and a display screen 12; the display screen 12 is embedded in the top of the display 5; the processor 11 is installed at the rear end of the display screen 12; the connecting line 4, the other end of which is connected to the rear side of the display 5; the display screen 12 is a touch-interactive display screen 12. A weighing device 3 is installed on the side of the operating table 1 for real-time measurement of the weight of raw materials consumed. Multiple data storage units 14 are installed inside the operating table 1 to cache the collected raw data and the calculated production capacity results.

[0020] The placement plate 2 is installed on top of the weighing device 3 and is used to place the raw materials to be weighed or to hold the containers. One end of the connecting line 4 is connected to the bottom of the weighing device 3 and is used to transmit the weight signal collected by the weighing sensor to the processor 11 in real time.

[0021] The display screen 12 is a touch screen that can be used for interactive operation. Operators can directly configure parameters, view historical data, or manually enter bill of materials information through the screen.

[0022] The operator places the raw materials to be monitored, such as steel or chemical raw materials, on the shelf 2, or continuously feeds them through the hopper. The high-precision sensor built into the weighing device 3 monitors the weight changes of the raw materials in real time and transmits the weight signal to the processor 11 through the connecting line 4. The data storage unit 14 synchronously records the timestamp and weight value of each weighing, forming a continuous data stream; The processor 11 internally stores the standard quota of raw materials required per unit of product from the bill of materials. Based on the logic of "consumption ÷ unit consumption = output", the processor 11 converts the raw material consumption into the current production capacity in real time. For example, if the equipment detects that there are 10,000 kg of steel available in the inventory, and producing one product requires 2 kg of steel, then the current real-time production capacity is 5,000 products.

[0023] The converted real-time production capacity data is presented intuitively on display screen 12, including current production capacity value, historical production capacity trend chart, and production time that remaining raw materials can support. Operators can interact with the system via touchscreen, such as adjusting calculation parameters, exporting data, or setting production capacity warning thresholds. All original weighing data and calculated production capacity data are stored in multiple data storage units 14, achieving redundant backup and long-term traceability of data, facilitating subsequent production capacity analysis.

[0024] In this embodiment, as Figure 1 and Figure 4 As shown; the operating table 1 includes: a cabinet door 8, which is hinged and movably installed at the front of the operating table 1; a storage cabinet 13, which is disposed inside the operating table 1; data storage units 14, which are evenly disposed inside the storage cabinet 13; a keyboard 7, which is embedded in the top of the operating table 1; there are gaps between the data storage units 14; The control panel 1 serves as the physical support and storage unit for the equipment. Its internal structure has been optimized to improve the security of data storage, the convenience of operation and interaction, and the neatness of on-site deployment.

[0025] A cabinet door 8 is hinged to the front end of the control panel 1. The cabinet door 8 can rotate around the hinge axis to open or close, providing physical protection for the interior space of the control panel 1. Optional locking mechanisms can be fitted to the cabinet door 8 to prevent unauthorized personnel from accessing the internal components.

[0026] The operating console 1 is equipped with a storage cabinet 13. This storage cabinet 13 is a shelf-type or drawer-type structure fixed to the inner wall of the operating console 1, used to neatly house electronic components. Multiple data storage units 14 are evenly arranged inside the storage cabinet 13. The data storage units 14 are preferably industrial-grade solid-state drives or high-capacity storage arrays, employing a redundant layout such as RAID configuration to ensure that raw material consumption data and calculated production capacity data are not lost due to single-point failures during long-term continuous collection. By centrally arranging the data storage units 14 in the storage cabinet 13 inside the operating console 1, and using a lockable cabinet door 8, physical protection is formed for the core data carrier, effectively preventing damage to the storage equipment from dust, accidental impacts, or human error in the industrial environment. Simultaneously, the even layout within the storage cabinet 13 facilitates quick plug-and-play replacement during later maintenance and also supports flexible expansion of storage capacity according to data volume growth needs.

[0027] A keyboard 7 is also embedded in the top of the control panel 1. Located in front of the display 5 and electrically connected to the processor 11, the keyboard 7 is used by on-site operators for data entry, parameter configuration, or system maintenance. The keyboard 7 is embedded, with its top surface flush with or slightly lower than the control panel surface, reducing protrusion and preventing damage from bumps in the industrial environment. It also facilitates cleaning. The embedded keyboard 7 provides a convenient input method for on-site operations. When it is necessary to enter standard consumption quantities from the bill of materials, adjust calculation parameters, or manually record abnormal situations, operators can directly operate through the keyboard 7 without the need for an external keyboard, improving the integration and ease of use of the equipment. The flush mounting of the embedded keyboard 7 with the control panel surface avoids the risk of accidental damage from bumps during equipment handling or daily use. Simultaneously, the closable cabinet door 8 provides additional dust and moisture protection for the storage device, making the entire system more adaptable to the complex industrial environments that may exist at the supplier's site.

[0028] In this embodiment, as Figure 1-2 As shown; the display 5 includes: shelves 6, which are respectively installed at both ends of the rear side of the display 5; a shelf rod 9, which is fixedly disposed between the shelves 6; a dustproof cloth 10, which is wrapped around the shelf rod 9, and one end is fixedly sleeved on the outer surface; the other end of the dustproof cloth 10 is provided with a wiping cloth; in this embodiment, as Figure 4 As shown; the display 5 serves as the core human-machine interface of the device, and a cleaning and protection structure is additionally provided on its rear side, which aims to solve the problem of reduced visibility caused by dust pollution on the display screen in industrial sites, while providing a convenient means of screen cleaning.

[0029] A shelf 6 is installed at each of the two rear ends of the display 5. The shelf 6 is a symmetrically arranged support component, which can be made of metal or high-strength plastic, and is fixed to the rear shell of the display 5 by screws or clips. A shelf rod 9 is fixedly installed between the two shelves 6, which spans across the rear of the display 5, and its two ends are fixedly connected to the inner side of the left and right shelves 6 respectively.

[0030] A dustproof cloth 10 is wrapped around the storage rod 9. This dustproof cloth 10 has a flexible roller blind structure; one end is fixedly fitted onto the outer surface of the storage rod 9 and can be wrapped around and stored around it. The other end of the dustproof cloth 10 extends outwards, its size matching the display screen 12 area of ​​the display 5. In this embodiment, a wiping cloth is provided at the end of the dustproof cloth 10 away from the storage rod 9. This wiping cloth is made of microfiber material, which has the characteristic of absorbing dust without damaging the screen.

[0031] When the equipment is in standby mode or not operated for an extended period, the operator can pull the dust cover 10 from the storage rod 9 to cover the front of the display screen 12, preventing dust and oil mist from adhering to the screen surface. When the equipment needs to be operated, the operator can lift the dust cover 10 upwards, allowing it to automatically roll back and wrap around the storage rod 9, exposing the display screen 12 for interaction. During the process of pulling out or retracting the dust cover 10, the wiping cloth at its end makes slight contact with the surface of the display screen 12, simultaneously wiping away any small amount of accumulated dust on the screen, thus achieving a cleaning function.

[0032] By incorporating a retractable dustproof cloth 10, a physical barrier is provided for the display screen 12, effectively preventing dust, oil, and splashes from directly contaminating the screen, extending its lifespan, and ensuring long-term visibility. The dustproof cloth 10 is wrapped and stored behind the display 5, taking up no extra space and avoiding the problem of easily lost individual dust covers. The wiping cloth at the end of the dustproof cloth 10 automatically cleans the screen surface each time it is pulled out or rolled up, eliminating the need for operators to search for additional cleaning tools. This design is particularly suitable for dusty environments at supplier sites, ensuring operators always have a clear screen display. The storage lever 9 structure allows for flexible retraction and retraction of the dustproof cloth 10, making operation simple and intuitive. Operators can pull out the cover or lift and roll it up with one hand, without interfering with normal production monitoring and equipment operation.

[0033] Working Principle: This equipment monitors raw material consumption in real time via a weighing device 3. The operator places the raw materials on the shelf 2, and the weighing sensor collects the weight changes, transmitting the data to the processor 11 via connection line 4. The processor 11 calculates the consumption rate and, based on the preset bill of materials unit quantity, converts the consuming inventory into current production capacity in real time. The calculation results are visualized on a touchscreen display 12, and the operator can input parameters or adjust configurations via keyboard 7. All raw data and calculated production capacity are stored in the data storage unit 14 of the internal storage cabinet 13 of the operating console 1, enabling data traceability. When idle, the dustproof cloth 10 on the rear shelf 9 of the display 5 can be pulled down to cover the screen for dust protection; the wiping cloth at its end can clean the screen simultaneously during the unfolding and retraction.

Claims

1. A consumable inventory based real-time computing device for supplier capacity, comprising: include: The control panel (1), display (5), weighing device (3) and data storage unit (14) are included. A display (5) is fixedly installed on the top of the operating table (1); a weighing device (3) is provided on the side of the operating table (1); and multiple data storage units (14) are installed inside the operating table (1).

2. A consumable inventory based real-time supplier capacity calculation device according to claim 1, wherein, The operating console (1) includes: The cabinet door (8) is hinged and movably mounted on the front section of the operating table (1); Storage cabinet (13), which is located inside the operating table (1); Data storage units (14) are evenly arranged inside the storage cabinet (13); The keyboard (7) is embedded in the top of the console (1).

3. The consumable inventory based real-time supplier capacity calculation device of claim 1, wherein, The weighing device (3) includes: A shelf (2) is mounted on top of the weighing device (3); The connecting lines are all connected to the bottom of the weighing device (3).

4. The supplier capacity real-time calculation device based on consumable inventory according to claim 1, characterized in that, The display (5) includes: The display (5) consists of a processor (11) and a display screen (12); A display screen (12) is embedded in the top of the display (5); A processor (11) is mounted at the rear end of the display screen (12); The other end of the connecting line (4) is connected to the rear side of the display (5).

5. The supplier capacity real-time calculation device based on consumable inventory according to claim 1, characterized in that, The display (5) includes: Shelves (6) are respectively installed at both ends of the rear side of the display (5); A storage rod (9) is fixedly installed between the storage racks (6); A dustproof cloth (10) is wrapped around the storage rod (9), and one end is fixedly sleeved on the outer surface.

6. The supplier capacity real-time calculation device based on consumable inventory according to claim 5, characterized in that, The other end of the dustproof cloth (10) is provided with a wiping cloth.

7. A supplier capacity real-time calculation device based on consumable inventory according to claim 4, characterized in that, The display screen (12) is a touch-interactive display screen (12).

8. The supplier capacity real-time calculation device based on consumable inventory according to claim 1, characterized in that, There are gaps between the data storage units (14).