MES management system in medical and health industry

By designing the MES management system of the medical and health industry, using computers and Android smart terminals to weigh products and print barcode labels, the problem of inaccurate and timely product weight data in the medical and health industry has been solved, and real-time control and management efficiency of product production, warehouse entry, warehouse exit and other processes has been improved.

CN120124936APending Publication Date: 2025-06-10GUANGDONG HONGCHUANG INTERNET TECH CO LTD
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Patent Information

Application Number
CN202510194169.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-20
Publication Date
2025-06-10

AI Technical Summary

Technical Problem

Most product weight data in the medical and health industry are recorded manually, resulting in inaccurate and timely data, affecting inventory management and production data statistics.

Method used

Design a MES management system in the medical and health industry, including basic setup module, production instruction list issuance module, product label printing module, finished product warehousing module, finished product warehousing module, after-sales tracking module, inventory statistics module and auxiliary statistics module, and use computers and Android smart terminals to perform product weighing and barcode label printing to realize real-time control of product production, warehousing, warehousing and other processes.

Benefits of technology

By automatically collecting and sharing product weight data, the accuracy and timeliness of data can be improved, real-time control and management of product production, warehouse entry, warehouse exit and other processes can be achieved, communication costs can be reduced, and management efficiency can be improved.

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Abstract

The invention is suitable for the technical field of MES management, and provides a medical and health industry MES management system, which comprises a basic setting module, a production instruction sheet issuing module and a product label printing module, and is characterized in that a computer is utilized to compile a production plan sheet, a computer module is adopted to weigh a product and print a bar code label, and a product production file is established at the same time. Product bar code scanning is carried out to automatically generate a product warehouse-in and warehouse-out record, thereby realizing real-time control and management of processes of product production, warehouse-in, warehouse-out and the like by utilizing bar code identification, realizing factory digital and transparent management, introducing technologies of cloud computing and the like, realizing cloud deployment, and getting rid of the problems of high cost, complexity, redundancy, difficulty in application and the like of a traditional MES (Manufacturing Execution System). Compared with the prior art, management cost invested by a server and the like of a client is saved, convenience of using the system in different places is achieved, under any internet condition, real-time use is achieved, order progress and related reports are inquired in real time on a mobile phone terminal WeChat applet, and communication cost is greatly reduced.
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Description

Technical Field

[0001] The present invention belongs to the technical field of MES management, and particularly relates to an MES management system for the medical and health industry. Background Art

[0002] The weight of products is the first management factor in many industries such as knitting, printing and dyeing, and non-woven fabrics. For a long time, most of this data has been recorded manually, making it difficult to ensure its accuracy and timeliness, thus affecting inventory management and the statistics of various production data. To solve the above problems, it is necessary to realize the automatic collection and sharing of product weight data to provide a basic guarantee for the informatization of production management. Summary of the Invention

[0003] The present invention provides an MES management system for the medical and health industry, aiming to solve the above problems.

[0004] The present invention is implemented as follows. An MES management system for the medical and health industry includes: a basic setting module, a production order issuance module, a product label printing module, a finished product warehousing module, a finished product shipping module, a after-sales tracking module, an inventory statistics module, and an auxiliary statistics module. The basic setting module, the production order issuance module, the product label printing module, the finished product warehousing module, the finished product shipping module, the after-sales tracking module, the inventory statistics module, and the auxiliary statistics module are connected to a computer module and a cloud computing module.

[0005] Preferably, the basic setting module includes department setting, employee setting, customer setting, and permission management;

[0006] The production order issuance module is used to issue production orders according to the production plan;

[0007] The product label printing module is used to scan the corresponding production order during product packaging or inspection, automatically collect the quantity and weight, and print the corresponding barcode label;

[0008] The finished product warehousing module is used to automatically retrieve the corresponding product information, generate and print the warehousing form;

[0009] The finished product shipping module is used to automatically generate the shipping form and the product flow record;

[0010] The after-sales tracking module is used to automatically query the production information, packaging information, and shipping record of the product according to the product barcode provided by the customer, and assist the after-sales service department to determine the final flow of the product;

[0011] The inventory statistics module can provide real-time detailed product inventory data, and can be classified according to information such as number, specification, date, etc., and automatically generate the finished product inventory in and out report;

[0012] The auxiliary statistics module can calculate the piecework wages of the packaging or production teams according to the production records of the products.

[0013] Preferably, the basic setting module further includes a login interface which is set on the computer module. The login module is used for information login, classification input of products, etc. The login interface includes an initial user name, password, entry confirmation of materials, and classification confirmation of products.

[0014] Preferably, the production order issuance module further includes an issuance interface which is set on the computer module. The issuance interface includes a production order placement selection. The production order placement selection interface is also provided with information filling, and the information filling includes filling in the gram weight, width, and roll length of the product information. The production order issuance module further includes an automatic generation module which is used for automatically generating production order numbers.

[0015] Preferably, the product label printing module includes a printing page which includes input of the production order number and also includes filling in information corresponding to the machine and shift. The product label printing module further includes a printing confirmation module which is used for printing operations and operations such as withdrawal, cancellation, calibration, zeroing, and reprinting.

[0016] Preferably, the finished product warehousing module and the finished product outbound module include using a handheld device to scan the product, displaying the outbound and warehousing positions, and then uploading.

[0017] Preferably, the finished product outbound module includes a set outbound interface which searches by keywords such as date, customer, and product name. The finished product outbound module can enter the editing interface of the outbound order by double-clicking the outbound order number, select the customer, enter other information, save the disk, and after verification, can select to print the outbound code list or delivery note according to requirements.

[0018] Preferably, the finished product warehousing module includes the generation of a warehousing order, which can be queried in the finished product in-out - finished product warehousing. The warehousing interface is searched by keywords such as date, customer, product name, etc. The finished product warehousing module can enter the editing interface of the outbound order by double-clicking the outbound order number, select the customer, enter other information, save the disk, and after review, according to requirements, select to print the warehousing code list or the purchase order. It also includes a merged outbound box re-warehousing selection module. The merged outbound box re-warehousing selection module is used to merge multiple outbound orders into one outbound order. In the finished product outbound editing interface of the outbound order that needs to be merged, enter the outbound order number (the outbound order number can be found in the finished product outbound query) in "Merge Outbound Order". After confirmation, the details of the entered outbound order will be merged into this outbound order. In the outbound order, delete the ones that are re-warehoused. After scanning and uploading with a handheld device for warehousing, enter the warehousing order number (the warehousing order number can be found in the finished product warehousing query) in "Delete Inbound Order Number". After confirmation, the details of the entered warehousing order will be deleted.

[0019] Preferably, the after-sales tracking module further includes a label management module. The label management module is used to view label situations in detail or in summary, filter by keywords such as time, product specifications, etc., and manage and view the production status of labels, whether they are in stock, not yet warehoused, or already shipped.

[0020] Preferably, the inventory statistics module includes a production progress query module. The production progress query module can compare the order quantity and the quantity already produced in the production order to obtain the production progress of the product and generate a report. The inventory statistics module also includes viewing the inventory situation of each specification, which can be filtered by keywords such as product name, product specifications, etc., and view the in-out warehouse situation in detail or in summary, which can be filtered by keywords such as time, product specifications, etc.

[0021] Compared with the prior art, the embodiments of the present application mainly have the following beneficial effects:

[0022] The present invention uses a computer to compile a production plan order, weighs products and prints barcode labels using computer modules, and simultaneously establishes a product production file. By scanning the product barcode, product in-out warehouse records are automatically generated, thereby using barcode identification to achieve real-time control of product production, warehousing, outbound, etc. processes, realizing digital and transparent management of the factory, introducing technologies such as cloud computing, achieving cloud deployment, getting rid of problems such as high cost, complexity, redundancy, and difficult application of traditional MES, saving the management cost of the customer's server and other investments, realizing the convenience of using the system remotely, and being able to use it in real time under any Internet conditions. On the mobile phone WeChat mini-program, the order progress and relevant reports can be queried in real time, greatly reducing the communication cost. Description of the Drawings

[0023] Figure 1 It is a schematic structural diagram of a MES management system for the medical and health industry of the present invention;

[0024] Figure 2 It is a schematic flow structure diagram of the present invention; Specific embodiments

[0025] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which this application belongs; the terms used in the description of this application in the specification are only for the purpose of describing specific embodiments and are not intended to limit this application; the terms "including" and "having" and any variations thereof in the specification and claims of this application and the above drawings are intended to cover non-exclusive inclusion. The terms "first", "second", etc. in the specification and claims of this application or the above drawings are used to distinguish different objects and not to describe a specific order.

[0026] Referring to "embodiments" herein means that specific features, structures, or characteristics described in connection with the embodiments can be included in at least one embodiment of this application. The phrase appears in various places in the specification and does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment mutually exclusive with other embodiments. Those skilled in the art will explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.

[0027] An embodiment of the present invention provides a MES management system for the medical and health industry, which includes, as shown in the figure: a basic setting module, a production order issuing module, a product label printing module, a finished product warehousing module, a finished product outbound module, an after-sales tracking module, an inventory statistics module, and an auxiliary statistics module. The basic setting module, the production order issuing module, the product label printing module, the finished product warehousing module, the finished product outbound module, the after-sales tracking module, the inventory statistics module, and the auxiliary statistics module are connected to a computer module and a cloud computing module through a wireless local area network and an Android mobile device.

[0028] Preferably, it further includes a terminal device connected to the computer module.

[0029] The basic setting module includes department setting, employee setting, customer setting, and permission management;

[0030] The production order issuing module is used to issue a production order according to the production plan;

[0031] The product label printing module is used to scan the corresponding production order during product packaging or inspection, automatically collect the quantity and weight, and print the corresponding barcode label;

[0032] The finished product warehousing module is used to automatically retrieve the corresponding product information, generate and print a warehousing slip;

[0033] The finished product warehouse-out module is used to automatically generate warehouse-out slips and records of the product flow direction.

[0034] The after-sales tracking module is used to automatically query the production information, packaging information and shipping records of a product according to the product barcode provided by the customer, and assist the after-sales service department to determine the final flow direction of the product.

[0035] The inventory statistics module can provide real-time detailed product inventory data, classify it according to information such as number, specification, date, etc., and automatically generate finished product inventory in-and-out reports.

[0036] The auxiliary statistics module can calculate the piecework wages of the packaging or production teams according to the production records of the products.

[0037] The basic settings module also includes a login interface, which is set on the computer module. The login module is used for information login, classification entry of products, etc. The login interface includes the initial username and password, entry confirmation of materials, and classification confirmation of products.

[0038] The production order issuance module also includes an issuance interface, which is set on the computer module. The issuance interface includes production order placement selection. The production order placement selection interface is also provided with information filling, and the information filling includes filling in the gram weight, width, and roll length of the product information. The production order issuance module also includes an automatic generation module, which is used to automatically generate production order numbers.

[0039] The product label printing module includes a printing page, which includes the input of the production order number, and also includes the filling in of corresponding machine and shift information. The product label printing module also includes a printing confirmation module, which is used for printing operations and operations such as withdrawal, cancellation, calibration, zeroing, and reprinting.

[0040] The finished product warehouse-in module and the finished product warehouse-out module include uploading after scanning the product with a handheld device to display the warehouse-out position and the warehouse-in position.

[0041] The finished product warehouse-out module includes a set warehouse-out interface, which searches through keywords such as date, customer, product name, etc. The finished product warehouse-out module can enter the editing interface of the warehouse-out slip by double-clicking the warehouse-out order number, select the customer, enter other information, save it, and after verification, it can, according to requirements, select to print the warehouse-out code slip or the delivery note.

[0042] The finished product warehousing module includes generating a warehousing order, which can be queried in the finished product in and out - finished product warehousing. The warehousing interface searches by keywords such as date, customer, and product name. The finished product warehousing module can enter the editing interface of the outbound order by double - clicking the outbound order number, select the customer, enter other information, save, and after verification, according to requirements, select to print the warehousing code list or the purchase order. It also includes a module for merging outbound boxes and re - warehousing selection. The module for merging outbound boxes and re - warehousing selection is used to merge multiple outbound orders into one outbound order. In the finished product outbound editing interface of the outbound orders that need to be merged, enter the outbound order number in "Merge Outbound Orders" (the outbound order number can be found in the finished product outbound query). After confirmation, the details of the entered outbound order will be merged into this outbound order. In the outbound order, for the ones that are re - warehoused and need to be deleted, after scanning and uploading with a handheld device for warehousing, enter the warehousing order number in "Delete Inbound Order Number" (the warehousing order number can be found in the finished product warehousing query). After confirmation, the details of the entered warehousing order will be deleted.

[0043] The after - sales tracking module also includes a label management module. The label management module is used to view label situations in a detailed or summary manner, filter by keywords such as time and product specifications, and manage and view the production status of labels, whether they are in stock, not yet warehoused, or already out of the warehouse.

[0044] The inventory statistics module includes a production progress query module. The production progress query module can compare the order quantity and the already produced quantity in the production order to obtain the production progress of the product and generate a report. The inventory statistics module also includes viewing the inventory situation of each specification, filtering by keywords such as product name and product specification, and viewing the in - and - out warehouse situation in a detailed or summary manner, and filtering by keywords such as time and product specification.

[0045] This invention provides a MES management system specifically developed for the medical and health industries such as non-woven fabrics and cast films. It uses a computer to compile production plan sheets, employs Android intelligent terminals to weigh products and print barcode labels, and simultaneously establishes product production files. Through a wireless local area network and Android mobile collectors, product barcodes are scanned, thereby automatically generating product in-and-out warehouse records. By using barcode identification, real-time control and management of product production, warehousing, and shipping processes are achieved, realizing digital and transparent management of the factory. By introducing technologies such as cloud computing, cloud deployment is realized, getting rid of problems such as high cost, complexity, redundancy, and difficult application of traditional MES. As shown in the charts, the core functions are as follows. Different charts can be used to display production scheduling management. According to the delivery requirements of sales orders, production planning and scheduling are carried out according to the optimal production scheduling rules and matching production equipment resources. Through the Gantt chart method, production scheduling is quickly simulated, helping enterprises quickly respond to customer needs and deliver on time. Weighing and labeling, by entering the order number through the intelligent terminal, obtaining production task information, and automatically reading the weight to print product labels, reducing the labor cost of workshop operators. Warehouse management, through the handheld terminal scanning of product barcodes to realize inbound and outbound operations, automatically generating inbound and outbound orders, delivery orders, and yard tickets, greatly improving the efficiency and accuracy of loading and shipping. Production progress management, in real-time understanding of the order production volume currently produced in the workshop and the production situation of each machine, accurately and conveniently supervising production according to the daily production volume and other situations, saving the management cost of the customer's server and other investments, realizing the convenience of using the system remotely. Under any Internet condition, it can be used in real-time. On the mobile phone WeChat mini-program, the order progress and relevant reports can be queried in real-time, greatly reducing communication costs.

[0046] It should be noted that for the foregoing embodiments, for the sake of simple description, they are all expressed as a series of action combinations. However, those skilled in the art should know that the present invention is not limited by the described action sequence, because according to the present invention, certain steps may be performed in other sequences or simultaneously. Secondly, those skilled in the art should also know that the embodiments described in the specification are all preferred embodiments, and the actions and modules involved are not necessarily essential to the present invention.

[0047] In several embodiments provided by this application, it should be understood that the disclosed device can be implemented in other ways. For example, the device embodiments described above are only illustrative. For example, the above-mentioned unit division may have other division methods in actual implementation. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the shown or discussed coupling or communication connection between each other can be through some interfaces. The indirect coupling or communication connection between devices or units can be in the form of telecommunications or other forms.

[0048] The units described above as separate components may or may not be physically separated. The components shown as units may or may not be physical units, that is, they may be located in one place or may be distributed over multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of this embodiment.

[0049] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the protection scope of the invention. Obviously, the described embodiments are only some embodiments of the present invention, rather than all embodiments. Based on these embodiments, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention. Although the present invention has been described in detail with reference to the above embodiments, those of ordinary skill in the art can still, without conflict and without creative efforts, combine, add or delete the features in the embodiments of the present invention according to the situation or make other adjustments, so as to obtain different technical solutions that are essentially not divorced from the concept of the present invention, and these technical solutions also belong to the scope of protection of the present invention.

Claims

1. A MES management system for the medical and health industry, characterized in that: include: A basic setting module, a production instruction sheet issuing module, a product label printing module, a finished product warehousing module, a finished product outbound module, an after-sales tracking module, an inventory statistics module and an auxiliary statistics module. The basic setting module, the production instruction sheet issuing module, the product label printing module, the finished product warehousing module, the finished product outbound module, the after-sales tracking module, the inventory statistics module and the auxiliary statistics module are connected to a computer module and a cloud computing module.

2. A medical and health industry MES management system as claimed in claim 1, characterized in that: The basic setting module includes department setting, employee setting, customer setting, and authority management; The production instruction sheet issuing module is used to issue a production instruction sheet according to the production plan; The product label printing module is used to scan the corresponding production instruction sheet during product packaging or inspection, automatically collect the quantity and weight, and print the corresponding barcode label; The finished product warehouse entry module is used to automatically retrieve the corresponding product information, generate and print the warehouse entry form; The finished product delivery module is used to automatically generate delivery orders and product flow records; The after-sales tracking module is used to automatically query the production information, packaging information and delivery records of the product according to the product barcode provided by the customer, and assist the after-sales service department to determine the final destination of the product; The inventory statistics module can provide real-time product inventory details, and can classify according to information such as number, specification, date, etc., and automatically generate finished product inventory reports; The auxiliary statistics module can count the piece-rate wages of the packaging or production team based on the production records of the products.

3. A medical and health industry MES management system as claimed in claim 1, characterized in that: The basic setting module also includes a login interface, which is set on the computer module. The login module is used for logging in information, entering product categories, etc. The login interface includes an initial user name and password, data entry confirmation, and product category confirmation.

4. A medical and health industry MES management system as claimed in claim 1, characterized in that: The production instruction form issuing module also includes an issuing interface, which is arranged on the computer module. The issuing interface includes a production order selection. The production order selection interface is also provided with information filling, and the information filling includes filling in the weight, width and roll length of the product information. The production instruction form issuing module also includes an automatic generation module, and the automatic generation module is used to automatically generate a production order number.

5. The MES management system for medical and health industry as claimed in claim 1, characterized in that: The product label printing module includes a printing page, which includes the input of the production order number and the filling of the corresponding machine and shift information. The product label printing module also includes a printing confirmation module, which is used to perform printing operations as well as withdrawal, cancellation, calibration, zeroing and reprinting operations.

6. A medical and health industry MES management system as claimed in claim 1, characterized in that: The finished product entry module and the finished product exit module include scanning the product with a handheld device and then displaying the exit position and the entry position and then uploading them.

7. A medical and health industry MES management system as claimed in claim 6, characterized in that: The finished product outbound module includes a set outbound interface, which is searched by keywords such as date, customer, product name, etc. The finished product outbound module can enter the editing interface of the outbound order by double-clicking the outbound order number, select the customer, enter other information, save it, and after review, you can choose to print the outbound code list or delivery note according to your needs.

8. A medical and health industry MES management system as claimed in claim 7, characterized in that: The finished product warehouse entry module includes generating a warehouse entry order, which can be queried in the finished product entry and exit-finished product warehouse entry. The warehouse entry interface can be searched by keywords such as date, customer, product name, etc. The finished product warehouse entry module can enter the editing interface of the warehouse exit order by double-clicking the warehouse exit order number, select the customer, enter other information, save it, and after review, you can choose to print the warehouse entry code list or the purchase order according to your needs. It also includes a merged warehouse exit box re-entry selection module. The merged warehouse exit box re-entry selection module is used for multiple warehouse exits. To merge the outbound orders into one delivery order, you can enter the delivery order number in "Merge delivery order" in the finished product delivery editing interface of the delivery order to be merged (the delivery order number can be found in the finished product delivery query). After confirmation, the details of the entered delivery order will be merged into the delivery order. To delete the delivery order and re-enter the warehouse, you can use the handheld device to scan and upload the warehouse entry, and then enter the entry order number in "Delete entry order number" (the entry order number can be found in the finished product entry query). After confirmation, the details of the entered entry order will be deleted.

9. A medical and health industry MES management system as claimed in claim 1, characterized in that: The after-sales tracking module also includes a label management module, which is used to view the label status in detail or summary, filter by keywords such as time and product specifications, and manage and view the label production status, whether it is in stock, not in stock, or out of stock.

10. The MES management system for medical and health industry according to claim 1, characterized in that: The inventory statistics module includes a production progress query module, which can compare the order quantity in the production order with the production quantity to obtain the production progress of the product and generate a report. The inventory statistics module also includes checking the inventory status of each specification, which can be filtered by keywords such as product name and product specification, and checking the in-and-out warehouse status in detail or summary, which can be filtered by keywords such as time and product specification.