CN209765563U - factory order production system capable of reducing cost - Google Patents

factory order production system capable of reducing cost Download PDF

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Publication number
CN209765563U
CN209765563U CN201920812578.5U CN201920812578U CN209765563U CN 209765563 U CN209765563 U CN 209765563U CN 201920812578 U CN201920812578 U CN 201920812578U CN 209765563 U CN209765563 U CN 209765563U
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China
Prior art keywords
production
order
encryption
production line
server
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CN201920812578.5U
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Chinese (zh)
Inventor
刘燕燕
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JOVISION TECHNOLOGY Co Ltd
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JOVISION TECHNOLOGY Co Ltd
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Priority to CN201920812578.5U priority Critical patent/CN209765563U/en
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Abstract

The utility model relates to a chip equipment production field discloses a reduce cost's mill order production system very much. This reduce cost's factory order production system, including MES system server and order production's test station, its characterized in that: the MES system server is connected with a central encryption server through a network, and the central encryption server is connected with a plurality of encryption order operation platforms in parallel; each test station is provided with a router, the router is connected to a production line switch through a fixed IP, each fixed IP is correspondingly connected with a production line client, and the production line switch is connected with an encrypted order operating platform through a network. The utility model relates to a rationally, save time has reduced manpower and material resources cost, combines together product production flow and encryption production flow, encrypts corresponding chip quantity and signal according to the actual production condition of product, avoids causing the waste of various resources, is suitable for extensive popularization and application.

Description

factory order production system capable of reducing cost
(I) technical field
the utility model relates to a chip equipment production field, in particular to reduce cost's mill order production system.
(II) background of the invention
the production flow of the existing chip equipment product is as follows:
step 1: creating product lot numbers
Developing to create a product material number according to product requirements, wherein the product material number comprises related bom codes;
step 2: creating a production order
the factory plans to receive a business department sales decomposition order, carries out system ordering in SAP, fills in product material number and quantity, and the quantity-system automatically takes out BOM and the system generates a production order;
Step 3: production of
the factory schedules production according to the production order.
the current related encryption production flow is as follows:
Step 1: creating a template
An encryption manager creates an equipment encryption template according to information such as equipment model and encryption type required by a product;
Step 2: creating an order
The factory planning department selects a corresponding equipment template according to the requirements of a production plan and creates an encrypted order;
Step 3: auditing encrypted orders
The encrypted order is required to be checked by a checker after being created, and the order can be automatically issued to the corresponding factory client after the check is passed;
Step 4: writing encryption chip according to order
the client automatically pulls the encrypted production order, and an encryption operator finishes the operation of programming the encryption chip according to the description of the order;
step 5: encrypted chip warehouse-in standby
And after the encryption chip finishes the programming operation, the encryption chip is put into a warehouse for production and use.
The existing product production flow and the encryption production flow are independent, an encryption manager can encrypt some chips in advance according to a production plan to be stored for use in production, and if the plan is changed, the burnt encryption chips are wasted or need to be burnt again, time is wasted, and the cost of manpower and material resources is increased.
Disclosure of the invention
The utility model discloses a remedy prior art not enough, provide an use nimble, low in production cost, save time's reduce cost's mill order production system.
the utility model discloses a realize through following technical scheme:
a reduced cost factory order production system comprising a MES system server and a test station for order production, characterized by: the MES system server is connected with a central encryption server through a network, and the central encryption server is connected with a plurality of encryption order operation platforms in parallel; each test station is provided with a router, the router is connected to a production line switch through a fixed IP, each fixed IP is correspondingly connected with a production line client, and the production line switch is connected with an encrypted order operating platform through a network.
the utility model discloses manage and use encryption system as MES's subsystem to encryption chip in equipment manufacture process, chip is encrypted to equipment of actual production, has reduced the waste of chip and the input cost of manpower and materials.
the utility model discloses a more excellent technical scheme does:
the network platform of the production line switch is connected with a test environment server for monitoring and maintaining the network environment and ensuring the stable operation of the system.
Each production line client is connected with a plurality of test stations in parallel through a fixed IP and connected with an encrypted order operating platform through a production line switch, and the production line client is positioned to the test stations through the fixed IP, so that the production line can independently distribute tasks for each station.
The network is a waln, wifi, 3G or 4G internet, and is suitable for wide application of the system.
The application of the factory order production system with the reduced cost comprises the following steps:
(1) A central encryption server administrator creates an encryption template;
(2) the MES system server administrator creates a corresponding production order according to the product material number in the encryption template;
(3) An auditor audits the production order;
(4) The encrypted order operation desk logs in the central encryption server to obtain the production orders passing the audit, and then different orders are distributed to different production line clients;
(5) The production line client distributes different orders to different stations for production, and the chips are encrypted during production.
Preferably:
in the step (4), the production line client logs in an encrypted order operation desk to obtain the distributed orders.
in the step (5), the encryption information of the chip includes the device model and the encryption type.
the utility model discloses in, encrypt the order operation panel and be responsible for producing the distribution order of line customer end, produce the distribution that the line customer end is responsible for determining which station produces which order, realize that equipment of actual production encrypts a chip. The existing production flow is to encrypt a batch of chips in batch firstly and put the chips into stock for standby, for example, encrypt a batch of chips with equipment model A in batch firstly, but then do not need the chip with model A and need the chip with model B, and need to encrypt a batch of chips with model B again, if the chips with model A are not needed subsequently, the chips encrypted before will be wasted, or need to be encrypted again manually, which causes waste of labor and material costs, and cannot be processed according to actual use conditions.
The utility model discloses the system can make different production lines produce different orders, and different stations of same production line produce different orders, and a plurality of orders are produced simultaneously, have improved the efficiency and the flexibility of production line production; compared with the existing network environment, only one order can be produced from one production line, and the flexibility is low.
The utility model relates to a rationally, save time has reduced manpower and material resources cost, combines together product production flow and encryption production flow, encrypts corresponding chip quantity and signal according to the actual production condition of product, avoids causing the waste of various resources, is suitable for extensive popularization and application.
(IV) description of the drawings
the present invention will be further described with reference to the accompanying drawings.
Fig. 1 is a schematic diagram of a network topology of the present invention;
Fig. 2 is a schematic view of an application process of the present invention.
In the figure, 1 MES system server, 2 testing station, 3 center encryption server, 4 encryption order operation table, 5 router, 6 production line switch, 7 production line client, 8 testing environment server.
(V) detailed description of the preferred embodiments
The attached drawing is a concrete embodiment of the utility model. The system comprises an MES system server 1 and a test station 2 for order production, wherein the MES system server 1 is connected with a central encryption server 3 through a network, and the central encryption server 3 is connected with a plurality of encryption order operation platforms 4 in parallel; each test station 2 is provided with a router 5, the router 5 is connected to a production line switch 6 through a fixed IP, each fixed IP is correspondingly connected with a production line client 7, and the production line switch 6 is connected with an encrypted order operating platform 4 through a network; and a network platform of the production line switch 6 is connected with a test environment server 8.
On the premise of maintaining the original network deployment of the production line as much as possible, each test station 2 is provided with one router 5, the routers 5 are connected to a production line switch 6 through fixed IP, and thus a production line client 7 can be positioned to the test stations 2 through the fixed IP, and the production line can distribute tasks for each station independently. The encrypted order operation console 4 is responsible for allocating orders to the production line client, and the production line client 7 is responsible for allocating which order is produced by which stations.
The necessary logic method and the complete operation steps of the utility model are as follows:
(1) Deploying a network environment according to a network topological graph;
(2) An encryption server administrator creates an encryption template;
(3) the MES system administrator creates a corresponding production order according to the product material number in the encryption template;
(4) an auditor audits the production order;
(5) The encrypted order operation platform logs in an encryption server to obtain the production orders which pass the verification, and then different orders are distributed to different production line clients (the production line clients log in the encrypted order operation platform);
(6) The production line client distributes different orders to different stations for production and encryption of chips during production, and the encryption information comprises information required by equipment such as equipment models.
The utility model discloses an environment of use: the used network comprises the interconnection network of waln, wifi, 3G, 4G and the like.
the utility model discloses reform transform the main content and make through MES system and encryption system, manage and use encryption system as MES's subsystem, order product production flow as follows:
Step 1: creating an encryption template;
Step 2: creating a product material number;
adding a step of binding an encryption template on the original product material number establishing process, namely, each product type has a corresponding encryption template corresponding to the corresponding encryption template;
step 3: creating a sales order;
Step 4: creating a production order;
selecting a corresponding product material number to generate a production order according to the requirement of the sales order;
Step 5: checking a production order;
step 6: arranging a production line for production;
receiving a production order at an encryption operation console, and selecting a production line client to arrange a production task;
Step 7: the production line client executes the production task.

Claims (4)

1. a reduced cost factory order production system comprising a MES system server (1) and a test station (2) for order production, characterized by: the MES system server (1) is connected with a central encryption server (3) through a network, and the central encryption server (3) is connected with a plurality of encryption order operation platforms (4) in parallel; each testing station (2) is provided with a router (5), the routers (5) are connected to a production line switch (6) through fixed IPs, each fixed IP is correspondingly connected with a production line client (7), and the production line switch (6) is connected with an encrypted order operating platform (4) through a network.
2. The reduced cost factory order production system of claim 1, wherein: and a network platform of the production line switch (6) is connected with a test environment server (8).
3. The reduced cost factory order production system of claim 1, wherein: each production line client (7) is connected with a plurality of test stations (2) in parallel through a fixed IP and is connected with an encrypted order operating platform (4) through a production line switch (6).
4. The reduced cost factory order production system of claim 1, wherein: the network is a waln, wifi, 3G or 4G internet.
CN201920812578.5U 2019-05-31 2019-05-31 factory order production system capable of reducing cost Active CN209765563U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920812578.5U CN209765563U (en) 2019-05-31 2019-05-31 factory order production system capable of reducing cost

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920812578.5U CN209765563U (en) 2019-05-31 2019-05-31 factory order production system capable of reducing cost

Publications (1)

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CN209765563U true CN209765563U (en) 2019-12-10

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110097299A (en) * 2019-05-31 2019-08-06 济南中维世纪科技有限公司 A kind of factory order production system and its application reducing cost

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110097299A (en) * 2019-05-31 2019-08-06 济南中维世纪科技有限公司 A kind of factory order production system and its application reducing cost

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