A patch machine paperless material preparation method and system

The paperless material preparation method and system solves the time-consuming and costly paper printing of material preparation information for placement machines, thereby achieving efficient paperless management and cost reduction.

CN114331240BActive Publication Date: 2025-10-17SHENXUN COMP KUNSHAN
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Patent Information

Application Number
CN202011042413.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-09-28
Publication Date
2025-10-17
Estimated Expiration
2040-09-28

AI Technical Summary

Technical Problem

In the prior art, printing the material preparation information of the placement machine on paper is time-consuming and costly.

Method used

A paperless material preparation method is adopted, which receives material preparation information, filters information and generates screening results. The screening results, including the bill of materials number, component number and its attributes, are displayed on the screen using display signals, and the execution program is obtained using a QR code.

Benefits of technology

It realizes paperless management of material preparation for placement machines, improves efficiency and reduces costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a patch machine paperless material preparation method and system, the patch machine paperless material preparation method comprises the following steps: (1) receiving uploaded material preparation information; (2) receiving screening information; (3) obtaining a screening result according to the material preparation information and the screening information; (4) sending a display signal according to the screening result. After uploading the material preparation information, the patch machine paperless material preparation method and system can obtain a screening result according to different screening information, realize paperless management of material preparation, improve efficiency and reduce cost.
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Description

[0001] The present application relates to paperless production technology field, especially a kind of patching machine paperless material preparation method and system.

BACKGROUND

[0002] In the production workshop of patching machine, there are often multiple production lines, and multiple patching machines on each production line. Each patching machine needs to be supplied with various components during production. The information of components required by a patching machine is summarized to form a material number table. After summarizing all material number tables on the same production line, a material list table is formed. The information recorded on the material list table is the material preparation information.

[0003] The information of components required by each patching machine needs to be notified to the warehouse personnel and production line operators. In the prior art, we use paper to print the information of components required by each patching machine and distribute it to the warehouse personnel and production line operators. However, this method takes a long time to check and print the information every day, and the cost of printing paper is also high.

[0004] Therefore, it is necessary to improve the existing technology.

SUMMARY

[0005] The technical problem to be solved by the present application is to solve the problem of long time and high cost of printing material preparation information on paper and distributing it to the warehouse personnel and operators. The present application provides a patching machine paperless material preparation method and system to solve the above problem.

[0006] The solution to the technical problem of the present application is a patching machine paperless material preparation method, comprising the following steps:

[0007] (1) receiving uploaded material preparation information;

[0008] (2) receiving screening information;

[0009] (3) obtaining screening results according to the material preparation information and the screening information;

[0010] (4) sending display signals according to the screening results.

[0011] Preferably, the material preparation information includes multiple material order numbers, each material order number has a material number attribute and a production line number attribute;

[0012] The material preparation information also includes multiple component numbers, each component number also has a material number attribute and a production line number attribute;

[0013] The screening information is a first attribute value and a second attribute value.

[0014] ​Preferably, the step (3) is specifically adding the material order number with the material number attribute equal to the first attribute value and the production line number attribute equal to the second attribute value into the screening result.

[0015] The component number with the material number attribute equal to the first attribute value and the production line number attribute equal to the second attribute value is added into the screening result.

[0016] Preferably, each of the component numbers also has a required number attribute and a station information attribute.

[0017] The display signal is used to display the material order number in the screening result on the screen.

[0018] The display signal is also used to display the component number in the screening result, the value of the required number attribute and the value of the station information attribute possessed by the component number on the screen.

[0019] Preferably, the material preparation information further comprises a plurality of two-dimensional codes, the material order number is one-to-one corresponding to the two-dimensional code; wherein scanning the two-dimensional code can obtain the execution program of the corresponding material order number.

[0020] The display signal is also used to display the two-dimensional code corresponding to the material order number in the screening result on the screen.

[0021] The application further provides a paperless material preparation system of a chip mounter, comprising:

[0022] An uploading module is used to upload material preparation information.

[0023] A storage module is connected with the uploading module, and is used to receive and store the uploaded material preparation information.

[0024] A receiving module is used to receive screening information.

[0025] A processing module is connected with the storage module and the receiving module, and is used to derive a screening result according to the material preparation information and the screening information.

[0026] A display module is connected with the processing module, and is used to send a display signal according to the screening result.

[0027] Preferably, the material preparation information comprises a plurality of material order numbers, each of the material order numbers has a material number attribute and a production line number attribute.

[0028] The material preparation information further comprises a plurality of component numbers, each of the component numbers also has a material number attribute and a production line number attribute.

[0029] The screening information is a first attribute value and a second attribute value.

[0030] As preferred, deriving the screening result according to the preparation information and the screening information specifically comprises adding a component number with a component number attribute equal to the first attribute value and a production line number attribute equal to the second attribute value into the screening result;

[0031] As preferred, deriving the screening result according to the preparation information and the screening information specifically comprises adding a component number with a component number attribute equal to the first attribute value and a production line number attribute equal to the second attribute value into the screening result;

[0032] As preferred, each of the component numbers further has a required number attribute and a station information attribute;

[0033] The display signal is used for displaying the component numbers in the screening result on a screen;

[0034] The display signal is used for displaying the component numbers in the screening result on a screen;

[0035] As preferred, the preparation information further comprises a plurality of two-dimensional codes, the component numbers correspond to the two-dimensional codes one by one; wherein scanning the two-dimensional code can obtain the execution program of the corresponding component number;

[0036] The display signal is used for displaying the component numbers in the screening result on a screen;

[0037] The display signal is used for displaying the component numbers in the screening result on a screen;

DRAWINGS EXPLANATION

[0038] Figure 1 is a flow chart of a patch machine paperless preparation method of the present application.

[0039] Figure 2 is a schematic diagram of a patch machine paperless preparation system of the present application.

CONCRETE IMPLEMENTATION METHOD

[0040] In order to further illustrate the technical means adopted by the present application and its effects, the following will be described in detail in combination with the embodiments of the present application and its drawings.

[0041] Please refer to Figure 1 and Figure 2 , Figure 1 a flow chart of a patch machine paperless preparation method of the present application is shown, Figure 2 a schematic diagram of a patch machine paperless preparation system of the present application is shown.

[0042] Referring to Figure 1 The present application provides a patch machine paperless material preparation method, comprising the following steps:

[0043] S1: receiving uploaded material preparation information;

[0044] S2: receiving screening information;

[0045] S3: obtaining screening results according to the material preparation information and the screening information;

[0046] S4: sending a display signal according to the screening results.

[0047] Among them, the material preparation information includes a plurality of material order numbers, each material order number has a material number attribute and a production line number attribute. The material preparation information also includes a plurality of component numbers, each component number also has a material number attribute and a production line number attribute. The screening information is a first attribute value and a second attribute value.

[0048] Among them, step S3 is specifically adding the material order number with the material number attribute equal to the first attribute value and the production line number attribute equal to the second attribute value to the screening results. Add the component number with the material number attribute equal to the first attribute value and the production line number attribute equal to the second attribute value to the screening results.

[0049] Among them, each component number also has a required number attribute and a station information attribute. The display signal is used to display the material order number in the screening results to the screen, and the display signal is also used to display the component number in the screening results and the value of the required number attribute and the value of the station information attribute to the screen. The material number and the production line number can be used to determine the material order number and the required component number, which is convenient for inquiry. It should be noted that the value of the required number attribute represents the number of required material preparation for the component, and the value of the station information attribute represents the position of the component in the warehouse, which is convenient for warehouse personnel to check and prepare material.

[0050] Among them, the material preparation information also includes a plurality of two-dimensional codes, and the material order number corresponds to the two-dimensional code one by one; wherein scanning the two-dimensional code can obtain the execution program of the corresponding material order number. The display signal is also used to display the two-dimensional code corresponding to the material order number in the screening results to the screen. It should be noted that the execution program here is a program that can be executed by the patch machine on the production line, and the types and quantities of various components required by the patch machine when executing different programs are not the same. By scanning the two-dimensional code, the execution program of the corresponding material order number can be obtained, which is convenient for engineers to upload it to the patch machine.

[0051] Referring to Figure 2 The present application also provides a patch machine paperless material preparation system 100, comprising:

[0052] The uploading module 1 is used to upload the material preparation information.

[0053] a storage module 2, the storage module 2 being connected with the uploading module 1, the storage module 2 being configured to receive and store the uploaded material information.

[0054] a receiving module 3, the receiving module 3 being configured to receive screening information.

[0055] a processing module 4, the processing module 4 being connected with the storage module 2 and the receiving module 3, the processing module 4 being configured to derive screening results according to the material information and the screening information.

[0056] a display module 5, the display module 5 being connected with the processing module 4, the display module 5 being configured to send display signals according to the screening results.

[0057] The material information includes a plurality of material order numbers, each of which has a material number attribute and a production line number attribute. The material information also includes a plurality of component numbers, each of which also has a material number attribute and a production line number attribute. The screening information is a first attribute value and a second attribute value.

[0058] The processing module 4 derives the screening results according to the material information and the screening information by adding the material order number with the material number attribute equal to the first attribute value and the production line number attribute equal to the second attribute value to the screening results. The processing module 4 also adds the component number with the material number attribute equal to the first attribute value and the production line number attribute equal to the second attribute value to the screening results.

[0059] Each component number also has a required number attribute and a station information attribute. The display signals are used to display the material order numbers in the screening results on the screen. The display signals are also used to display the component numbers in the screening results, as well as the values of the required number attribute and the station information attribute, on the screen. The material order numbers and the required component numbers can be determined by the material number and the production line number, which is convenient for inquiry. It should be noted that the value of the required number attribute represents the number of required materials for the component, and the value of the station information attribute represents the location of the component in the warehouse, which is convenient for warehouse personnel to check and prepare materials.

[0060] The material information also includes a plurality of two-dimensional codes, and the material order numbers correspond one-to-one to the two-dimensional codes. Scanning the two-dimensional codes can obtain the execution program of the corresponding material order number. The display signals are also used to display the two-dimensional codes corresponding to the material order numbers in the screening results on the screen. It should be noted that the execution program is a program that can be executed by the placement machine on the production line, and the types and quantities of components required by the placement machine when executing different programs are not the same. By scanning the two-dimensional code, the execution program of the corresponding material order number can be obtained, which is convenient for engineers to upload it to the placement machine.

[0061] The patch machine paperless material preparation method and system has the beneficial effects that after uploading the material preparation information, the patch machine paperless material preparation method and system can obtain screening results according to different screening information, realizes paperless management of material preparation, improves efficiency, and reduces cost.

[0062] It should be noted that the present application is not limited to the above embodiments, and any simple modification, equivalent change and modification of the above embodiments based on the technical scheme of the present application made by any person skilled in the art fall within the protection scope of the present application.

Claims

1. A paperless material preparation method for a chip placement machine, characterized in that: The following steps are involved: (1) Receive uploaded material preparation information; (2) receiving screening information; (3) obtaining a screening result based on the material preparation information and the screening information; (4) sending a display signal according to the screening result; The material preparation information includes a plurality of bill of material numbers, each of which has a material number attribute and a production line number attribute; The material preparation information also includes multiple component numbers, each of which also has a material number attribute and a production line number attribute; The screening information is a first attribute value and a second attribute value; Specifically, the step (3) includes adding the bill of material number whose material number attribute is equal to the first attribute value and whose production line number attribute is equal to the second attribute value to the screening result; Adding the component number whose material number attribute is equal to the first attribute value and whose production line number attribute is equal to the second attribute value to the screening result; Each of the component numbers also has a required number attribute and a station information attribute; The display signal is used to display the material order number in the screening result on the screen; The display signal is further used to display the component number in the screening result, the value of its required quantity attribute, and the value of the station information attribute on the screen.

2. The paperless material preparation method for a chip mounter according to claim 1, wherein: The material preparation information also includes multiple QR codes, and the material order numbers correspond to the QR codes one by one; wherein, scanning the QR codes can obtain the execution program corresponding to the material order numbers; The display signal is also used to display the QR code corresponding to the material order number in the screening result on the screen.

3. A paperless material preparation system for a placement machine, characterized in that: include: An upload module, which is used to upload material preparation information; A storage module, the storage module is connected to the upload module, and the storage module is used to receive and store the uploaded material preparation information; A receiving module, configured to receive screening information; a processing module, the processing module being connected to the storage module and the receiving module, and the processing module being configured to obtain a screening result based on the material preparation information and the screening information; A display module, the display module is connected to the processing module, and the display module is used to send a display signal according to the screening result; The material preparation information includes a plurality of bill of material numbers, each of which has a material number attribute and a production line number attribute; The material preparation information also includes multiple component numbers, each of which also has a material number attribute and a production line number attribute; The screening information is a first attribute value and a second attribute value; Specifically, obtaining a screening result based on the material preparation information and the screening information includes adding a bill of material number having a material number attribute equal to the first attribute value and a production line number attribute equal to the second attribute value to the screening result; Adding the component number whose material number attribute is equal to the first attribute value and whose production line number attribute is equal to the second attribute value to the screening result; Each of the component numbers also has a required number attribute and a station information attribute; The display signal is used to display the material order number in the screening result on the screen; The display signal is further used to display the component number in the screening result, the value of its required quantity attribute, and the value of the station information attribute on the screen.

4. A paperless material preparation system for a chip mounter according to claim 3, characterized in that: The material preparation information also includes multiple QR codes, and the material order numbers correspond to the QR codes one by one; wherein, scanning the QR codes can obtain the execution program corresponding to the material order numbers; The display signal is also used to display the QR code corresponding to the material order number in the screening result on the screen.