Intelligent factory production equipment, production system and production equipment traceability method

By using information recording devices and control systems for production equipment in intelligent factories, real-time monitoring and data integrity of mobile tanks are achieved, solving the risks of human error and data incompleteness in existing technologies, meeting the data recording requirements of pharmaceutical production, and ensuring the stability and safety of product quality.

CN116414084BActive Publication Date: 2026-05-29SICHUAN YUANDASHUYANG PHARM CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SICHUAN YUANDASHUYANG PHARM CO LTD
Filing Date
2021-12-29
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing mobile tanks lack efficient real-time monitoring and data integrity in pharmaceutical production, posing a risk of human error and failing to meet the requirements for data record integrity, reliability, and accuracy in drug production, especially under large-scale, high-frequency use.

Method used

The system employs intelligent factory production equipment, including information recording devices, lower-level machines, communication modules, and control systems. It achieves equipment identification and location positioning through multi-pin connectors and fixed sockets, and combines instruments and valve islands for status monitoring and parameter setting, enabling real-time data acquisition and traceability.

Benefits of technology

It enables real-time status monitoring and data integrity of mobile tanks, reduces the risk of human error, meets GMP data integrity requirements, and ensures product quality stability and safety.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present disclosure provides a kind of intelligent factory production equipment, especially relates to the intelligent factory production equipment in the medical field, it includes: equipment body, equipment body is used to execute process step to material in equipment body;Information recording device, information recording device is set to equipment body, for recording the first identity information of equipment body;Lower computer, lower computer is connected to information recording device, for obtaining the first identity information of equipment body recorded by information recording device;And communication module, lower computer is connected with control system by communication module, control system obtains the first identity information by communication with lower computer;And control system is also used to obtain the position where equipment body with the first identity information currently is;And according to the first identity information of equipment body and the current position of equipment body, distinguish different equipment body.The present disclosure also provides an intelligent factory production system and the traceability method of the production equipment.
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Description

Technical Field

[0001] This disclosure relates to pharmaceutical equipment, and more particularly to intelligent factory production equipment, production system, and traceability method for production equipment in the pharmaceutical field. Background Technology

[0002] Mobile containers, as easily movable vessels that can participate in reactions and / or store substances, are widely used in manufacturing activities. When used as reaction vessels in the demanding field of pharmaceutical production, it is necessary to monitor the reaction status of the mobile container reaction system in real time, and also to record operating information such as the cleanliness and sterilization status of the mobile container used for the reaction.

[0003] Chinese patent CN202670524U discloses a dedicated sterilization mobile tank for Schisandra chinensis distillate in "Shengmai Injection". This sterilization mobile tank serves as a storage tank and has a sterilization function, specifically achieved by high-temperature steam sterilizing the interior of the mobile tank through a feed pipe. Another example is CN205241656U, which specifically discloses a connecting component on a mobile tank. By setting up this component, the sterility of the mobile tank connected to it and surrounding auxiliary facilities can be guaranteed. Yet another example is CN205361340U, which discloses a mobile reaction tank with sampling function for chemical production. This tank is equipped with a sampling device, including a sampling tube, a connecting tube, a pressure gauge, a negative pressure vacuum pump, a sampling container, and a PLC controller. The PLC controller controls the negative pressure vacuum pump to extract air from the sampling container and the opening and closing of valves. The mobile tanks disclosed in the above-mentioned prior art do not specifically focus on and monitor the operating conditions of the mobile tank, such as production, cleaning, and sterilization, in real time.

[0004] In some common production scenarios, operators monitor the current status of mobile tanks through manual on-site verification. This includes manually verifying information such as material pipeline connections, the location of the mobile tank, and its cleanliness during material transfer. However, these monitoring methods are inherently prone to human error, which significantly compromises the controllability and safety of pharmaceutical production. Furthermore, paper records or partially electronic records cannot fully meet the regulatory requirements for the completeness, reliability, timeliness, and accuracy of pharmaceutical production data recording.

[0005] In certain specific fields, the monitoring of mobile can usage status is achieved through plug-in sensors. However, the long-term use of this method for monitoring mobile can status has significant problems. Specifically, the sensor probes are prone to deformation during insertion, leading to loose connections, signal interruptions, and unstable data transmission, thus affecting the integrity of critical product quality data. Therefore, the lack of efficient and effective monitoring of key aspects such as the use, cleaning, and sterilization of mobile cans greatly increases the risk of incomplete data, which has a significant impact on the pharmaceutical field, where data integrity is paramount.

[0006] Therefore, for intelligent factories that use mobile tanks on a large scale and at high frequency, continuing to use traditional mobile tank and equipment monitoring and data collection methods will pose significant difficulties and challenges in terms of operator standardization, work efficiency, and data integrity traceability. There is an urgent need to develop mobile tanks that can be used in large-scale intelligent production factories and can achieve real-time monitoring. Summary of the Invention

[0007] To address one of the aforementioned technical problems, this disclosure provides a production equipment, production system, and traceability method for production equipment used in intelligent factories.

[0008] According to one aspect of this disclosure, a production device for an intelligent factory is provided, comprising:

[0009] The equipment body is used to perform process steps on the materials within the equipment body.

[0010] An information recording device is disposed on the device body and is used to record the first identity information of the device body;

[0011] The lower-level machine, connected to the information recording device, is used to acquire the first identity information of the device body recorded by the information recording device; and

[0012] The lower-level machine is connected to the control system through the communication module. The control system obtains the first identity information through communication with the lower-level machine. The control system is also used to obtain the current location of the device body with the first identity information and to distinguish different device bodies based on the first identity information of the device body and the current location of the device body.

[0013] According to at least one embodiment of the intelligent factory production equipment of the present disclosure, the information recording device includes a multi-pin movable connector, through which the first identity information of the equipment body is represented.

[0014] According to at least one embodiment of the intelligent factory production equipment disclosed herein, the lower-level machine stores a second identity information of the equipment body. When the lower-level machine is connected to the control system through the communication module, the control system obtains the second identity information through communication with the lower-level machine. The control system stores a mapping table of first and second identity information of the equipment body, and obtains the first identity information of the intelligent factory production equipment based on the second identity information.

[0015] According to at least one embodiment of the intelligent factory production equipment of this disclosure, the second identity information is the IP address of the intelligent factory production equipment.

[0016] According to at least one embodiment of the intelligent factory production equipment disclosed herein, when the equipment body is moved to a certain fixed position, the multi-pin movable connector is connected to a fixed socket located at the current fixed position; wherein, the fixed socket has identification information, so that when the multi-pin movable connector is connected to the fixed socket, the control system obtains the current position of the equipment body through a mapping table between the identification information of the fixed socket and the installation position of the fixed socket.

[0017] According to at least one embodiment of the intelligent factory production equipment of this disclosure, the fixed socket includes:

[0018] A multi-pin fixed socket, which mates with a multi-pin movable socket, wherein when the intelligent factory production equipment is connected to the fixed socket, the multi-pin movable socket is inserted into the multi-pin fixed socket; and

[0019] A fixed communication interface is connected to the control system, and the fixed communication interface includes identity information. The control system obtains the identity information of the fixed socket based on the identity information of the fixed communication interface.

[0020] According to at least one embodiment of the intelligent factory production equipment of the present disclosure, the control system determines whether the current fixed socket is connected to the intelligent factory production equipment based on whether the fixed communication interface is used.

[0021] According to at least one embodiment of the intelligent factory production equipment of this disclosure, when the multi-pin movable socket is connected to the fixed socket, the control system receives the first identity information of the intelligent factory production equipment input by the user, or the control system prompts the user to input the first identity information of the intelligent factory production equipment and receives the first identity information of the intelligent factory production equipment input by the user.

[0022] When the first identity information of the intelligent factory production equipment input by the user is the same as the first identity information of the intelligent factory production equipment obtained by the control system, the control system obtains the current status information of the intelligent factory production equipment and allows the parameters of the intelligent factory production equipment to be set.

[0023] According to at least one embodiment of the intelligent factory production equipment of this disclosure, when the first identity information of the intelligent factory production equipment input by the user is different from the first identity information of the intelligent factory production equipment obtained by the control system, the control system prompts the user that the identity information of the intelligent factory production equipment input by the user does not match the intelligent factory production equipment connected to the current fixed socket.

[0024] According to at least one embodiment of the intelligent factory production equipment of the present disclosure, the control system obtains the current status information of the intelligent factory production equipment by acquiring one or more of the following current status information: temperature, pressure, valve status, agitator status, batch number, current cumulative time and remaining time.

[0025] According to at least one embodiment of the intelligent factory production equipment disclosed herein, the control system sets the parameters of the intelligent factory production equipment by modifying at least one of the following parameters: storage time, pressure, and temperature of the equipment body.

[0026] According to at least one embodiment of the intelligent factory production equipment of this disclosure, when the control system modifies at least one of the temporary storage time, pressure and temperature of the equipment body, the control system records the modification.

[0027] According to at least one embodiment of the intelligent factory production equipment of this disclosure, when the multi-pin movable socket is connected to the fixed socket, power is supplied to the intelligent factory production equipment through the fixed socket so that the lower-level machine can work.

[0028] According to at least one embodiment of the intelligent factory production equipment of this disclosure, the multi-pin movable connector is an aviation connector or a pin header, and some of the terminals of the multi-pin movable connector are set to a high level or a low level, thereby forming a device identification code through the high level or low level of the aviation connector or pin header.

[0029] The intelligent factory production equipment according to at least one embodiment of the present disclosure further includes:

[0030] Instruments, the instruments being used to detect the status of the production equipment used in the intelligent factory;

[0031] The control system is used to obtain the status of the intelligent factory production equipment detected by the instrument and record the status of the intelligent factory production equipment to the control system.

[0032] The intelligent factory production equipment according to at least one embodiment of the present disclosure further includes:

[0033] A valve island, connected to the lower-level machine, for control of the valve island via the lower-level machine; and

[0034] A valve, wherein the valve island is connected to the valve so that the lower-level machine controls the opening or closing of the valve through the valve island.

[0035] The intelligent factory production equipment according to at least one embodiment of the present disclosure further includes:

[0036] A stirring frequency converter is connected to the lower-level machine, which controls the start and stop of the stirring frequency converter and controls the stirring speed of the stirring frequency converter.

[0037] According to another aspect of this disclosure, a production device for an intelligent factory is provided, comprising:

[0038] The equipment body is used to perform process steps on the materials within the equipment body.

[0039] An information recording device, wherein the information recording device is disposed on the device body, is used to record the first identity information of the device body; and

[0040] A communication module is connected to both the control system and the lower-level machine to enable communication between them.

[0041] The control system is also connected to an identification device, which includes identity information. When the distance between the device body and the identification device is within a preset range, the identification device acquires the first identity information recorded in the information recording device and transmits the first identity information to the control system. The control system obtains the current position of the device body according to the mapping table between the identity information of the identification device and the installation position of the identification device, and distinguishes different device bodies according to the first identity information of the device body and the current position of the device body.

[0042] According to at least one embodiment of the intelligent factory production equipment of this disclosure, the information recording device is selected from at least one of barcodes, QR codes, and RFID tags; and / or, the identification device is selected from one or more of card readers, cameras, and barcode scanners, wherein, when the information recording device includes an RFID tag, the identification device includes a card reader to read the first identity information of the device body recorded in the RFID tag through the card reader; when the information recording device includes a barcode or a QR code, the identification device includes a camera or a barcode scanner to obtain the first identity information of the device body associated with the barcode or QR code through the camera or barcode scanner.

[0043] According to at least one embodiment of the intelligent factory production equipment disclosed herein, the lower-level machine stores a second identity information of the equipment body. When the lower-level machine is connected to the control system through the communication module, the control system obtains the second identity information through communication with the lower-level machine. The control system stores a mapping table of first and second identity information of the equipment body, and obtains the first identity information of the intelligent factory production equipment based on the second identity information.

[0044] According to at least one embodiment of the intelligent factory production equipment of this disclosure, the second identity information is the IP address of the intelligent factory production equipment.

[0045] According to at least one embodiment of the intelligent factory production equipment of the present disclosure, the identification device is set at a fixed position, and the control system establishes a mapping table between the identification device's identity information and the fixed position of the identification device, so that when the current identification device identifies that there is an information recording device for intelligent factory production equipment nearby, the position of intelligent factory production equipment is obtained according to the current location information of the identification device.

[0046] According to at least one embodiment of the intelligent factory production equipment of this disclosure, the communication module includes a wired communication module and / or a wireless communication module.

[0047] According to at least one embodiment of the intelligent factory production equipment of this disclosure, when the control system and the lower-level machine are connected, the control system prompts the user to input the first identity information of the intelligent factory production equipment and receives the first identity information of the intelligent factory production equipment input by the user.

[0048] When the first identity information of the intelligent factory production equipment input by the user is the same as the first identity information of the intelligent factory production equipment obtained by the control system, the control system obtains the current status information of the intelligent factory production equipment and sets the parameters of the intelligent factory production equipment.

[0049] According to at least one embodiment of the intelligent factory production equipment of this disclosure, when the first identity information of the intelligent factory production equipment input by the user is different from the first identity information of the intelligent factory production equipment obtained by the control system, the control system prompts the user that the identity information of the intelligent factory production equipment input by the user does not match the intelligent factory production equipment connected to the current fixed socket.

[0050] According to another aspect of this disclosure, an intelligent factory production system is provided, characterized in that it includes a control system and the aforementioned intelligent factory production equipment; wherein the control system is signal-connected to the intelligent factory production equipment, and is used to receive information transmitted from the intelligent factory production equipment, and monitor the position and / or status of each of the intelligent factory production equipment according to the received information.

[0051] According to at least one embodiment of the present disclosure, a production system for intelligent factories is provided, wherein the control system is configured to acquire first identity information and current location information of the production equipment for intelligent factories, and to distinguish different production equipment for intelligent factories based on the first identity information and current location information of the production equipment for intelligent factories.

[0052] According to at least one embodiment of the intelligent factory production system disclosed herein, the control system obtains the first identity information and current location information of the intelligent factory production equipment through communication with the lower-level machine of the intelligent factory production equipment.

[0053] According to at least one embodiment of the intelligent factory production system of the present disclosure, the control system obtains second identity information of the intelligent factory production equipment, and obtains first identity information of the intelligent factory production equipment based on the second identity information.

[0054] According to at least one embodiment of the intelligent factory production system of this disclosure, the control system is further configured to receive first identity information of the intelligent factory production equipment input by a user, and determine whether the first identity information of the intelligent factory production equipment input by the user is the same as the first identity information of the intelligent factory production equipment obtained by the control system. When the first identity information of the intelligent factory production equipment input by the user is the same as the first identity information of the intelligent factory production equipment obtained by the control system, the control system obtains the current status information of the intelligent factory production equipment and allows the parameters of the intelligent factory production equipment to be set.

[0055] According to at least one embodiment of the intelligent factory production system of the present disclosure, the control system obtains the current status information of the intelligent factory production equipment by means of: the control system obtaining one or more current status information of the intelligent factory production equipment, including temperature, pressure, valve status, agitator status, batch number, current cumulative time and remaining time.

[0056] According to at least one embodiment of the intelligent factory production system disclosed herein, the control system sets the parameters of the intelligent factory production equipment by modifying at least one of the following parameters: storage time, pressure, and temperature of the equipment body.

[0057] According to at least one embodiment of the intelligent factory production system of this disclosure, when the control system modifies at least one of the following parameters of the equipment body: storage time, pressure, and temperature, the control system records the modification.

[0058] According to another aspect of this disclosure, a method for tracing production equipment used in intelligent factories is provided, comprising:

[0059] Move the production equipment used in the smart factory to the vicinity of the selected fixed socket;

[0060] The information recording device of the intelligent factory production equipment is inserted into the multi-pin fixed socket of the fixed socket; power is supplied to the information recording device through the multi-pin fixed socket.

[0061] Connecting intelligent factory production equipment to the control system via a communication module; and

[0062] The control system obtains the first identity information of the production equipment used in the intelligent factory and the location of the production equipment in the intelligent factory with the first identity information when it connects to the control system.

[0063] The intelligent factory production equipment mentioned above is selected from the intelligent factory production equipment mentioned above.

[0064] According to another aspect of this disclosure, a method for tracing production equipment used in intelligent factories is provided, comprising:

[0065] Move production equipment in the smart factory to the vicinity of the selected identification device;

[0066] The identification device obtains the first identity information of the intelligent factory production equipment.

[0067] Connecting intelligent factory production equipment to the control system via a communication module; and

[0068] The control system obtains the first identity information of the production equipment used in the intelligent factory, and obtains the location of the production equipment used in the intelligent factory based on the location information corresponding to the identity information of the identification device;

[0069] The intelligent factory production equipment mentioned above is selected from the intelligent factory production equipment mentioned above.

[0070] The traceability method for intelligent factory production equipment according to at least one embodiment of this disclosure further includes:

[0071] The system receives the first identity information of the production equipment used in the intelligent factory from the user, or the system prompts the user to input the first identity information of the production equipment used in the intelligent factory and receives the first identity information of the production equipment used in the intelligent factory from the user.

[0072] When the first identity information of the intelligent factory production equipment input by the user is the same as the first identity information of the intelligent factory production equipment obtained by the control system, the control system obtains the current status information of the intelligent factory production equipment and sets the parameters of the intelligent factory production equipment.

[0073] According to at least one embodiment of the traceability method for intelligent factory production equipment of this disclosure, when the first identity information of the intelligent factory production equipment input by the user is different from the first identity information of the intelligent factory production equipment obtained by the control system, the control system prompts the user that the identity information of the intelligent factory production equipment input by the user does not match the intelligent factory production equipment connected to the current fixed socket.

[0074] According to at least one embodiment of the traceability method for intelligent factory production equipment of the present disclosure, the control system obtains the current status information of the intelligent factory production equipment by acquiring one or more of the following current status information: temperature, pressure, valve status, agitator status, batch number, current cumulative time and remaining time of the intelligent factory production equipment.

[0075] According to at least one embodiment of the traceability method for intelligent factory production equipment, the control system sets the parameters of the intelligent factory production equipment by modifying at least one of the following parameters: storage time, pressure, and temperature of the equipment body.

[0076] According to at least one embodiment of the traceability method for intelligent factory production equipment, when the control system modifies at least one parameter among the temporary storage time, pressure, and temperature of the equipment body, the control system records the modification. Attached Figure Description

[0077] The accompanying drawings illustrate exemplary embodiments of the present disclosure and, together with the description thereof, serve to explain the principles of the present disclosure. These drawings are included to provide a further understanding of the present disclosure and are incorporated in and constitute a part of this specification.

[0078] Figure 1 This is a structural schematic diagram of a production equipment for an intelligent factory according to one embodiment of the present disclosure.

[0079] Figure 2 This is a schematic diagram of the connection relationship of production equipment for an intelligent factory according to one embodiment of the present disclosure.

[0080] Figure 3 This is a schematic diagram of the connection relationship of production equipment for an intelligent factory according to another embodiment of the present disclosure.

[0081] Figure 4 This is a flowchart of a method for tracing production equipment in an intelligent factory according to one embodiment of the present disclosure.

[0082] Figure 5 This is a flowchart of a method for tracing production equipment in an intelligent factory according to one embodiment of the present disclosure.

[0083] The specific labels in the attached figures are as follows:

[0084] 100 Intelligent Factory Production Equipment

[0085] 110 Equipment body

[0086] 120 Information Recording Device

[0087] 130 Lower-level machine

[0088] 140 Communication Module

[0089] 150 Control System

[0090] 160 Fixed Socket

[0091] 161 multi-pin fixing connector

[0092] 162 Fixed Communication Interface

[0093] 170 Identification device. Detailed Implementation

[0094] The present disclosure will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are for illustrative purposes only and are not intended to limit the scope of the disclosure. Furthermore, it should be noted that, for ease of description, only the parts relevant to the present disclosure are shown in the accompanying drawings.

[0095] It should be noted that, where there is no conflict, the embodiments and features described in this disclosure can be combined with each other. The technical solutions of this disclosure will now be described in detail with reference to the accompanying drawings and embodiments.

[0096] Unless otherwise stated, the exemplary implementations / embodiments shown are to be understood as providing exemplary features of various details that provide ways in which the technical concepts of this disclosure can be implemented in practice. Therefore, unless otherwise stated, the features of various implementations / embodiments may be additionally combined, separated, interchanged and / or rearranged without departing from the technical concepts of this disclosure.

[0097] The use of crosshairs and / or shading in the accompanying drawings is generally used to clarify the boundaries between adjacent components. Thus, unless otherwise stated, the presence or absence of crosshairs or shading does not convey or indicate any preference or requirement for the specific material, material properties, dimensions, proportions, commonalities between the illustrated components, or any other characteristics, properties, etc., of the components. Furthermore, in the accompanying drawings, the dimensions and relative dimensions of components may be exaggerated for clarity and / or descriptive purposes. When exemplary embodiments can be implemented differently, a specific process sequence may be performed in a different order than that described. For example, two consecutively described processes may be performed substantially simultaneously or in the reverse order of their description. Furthermore, the same reference numerals denote the same components.

[0098] When a component is referred to as being "on" or "above" another component, "connected to," or "joined to" another component, the component may be directly on, directly connected to, or directly joined to the other component, or there may be intermediate components. However, when a component is referred to as being "directly on" another component, "directly connected to," or "directly joined to" another component, there are no intermediate components. Therefore, the term "connection" can refer to a physical connection, an electrical connection, etc., and may or may not have intermediate components.

[0099] For descriptive purposes, this disclosure may use spatial relative terms such as “below,” “under,” “below,” “down,” “above,” “above,” “higher,” and “side (e.g., in a “sidewall”)” to describe the relationship between one component and another component as shown in the accompanying drawings. In addition to the orientations depicted in the drawings, the spatial relative terms are also intended to encompass different orientations of the device during use, operation, and / or manufacture. For example, if the device in the drawings is flipped, a component described as “below” or “under” another component or feature would subsequently be positioned “above” said other component or feature. Thus, the exemplary term “below” can encompass both “above” and “below” orientations. Furthermore, the device may be otherwise positioned (e.g., rotated 90 degrees or in other orientations), thus interpreting the spatial relative descriptive terms used herein accordingly.

[0100] The terminology used herein is for the purpose of describing particular embodiments and is not intended to be limiting. As used herein, unless the context clearly indicates otherwise, the singular forms “a” and “the” are intended to include the plural forms as well. Furthermore, when the terms “comprising” and / or “including” and variations thereof are used in this specification, it indicates the presence of the stated features, integrals, steps, operations, parts, components, and / or groups thereof, but does not exclude the presence or addition of one or more other features, integrals, steps, operations, parts, components, and / or groups thereof. It should also be noted that, as used herein, the terms “substantially,” “about,” and other similar terms are used as approximate terms rather than as terms of degree, thus explaining the inherent biases in measurements, calculated values, and / or provided values ​​that would be recognized by one of ordinary skill in the art.

[0101] Figure 1 This is a structural schematic diagram of a production equipment 100 for an intelligent factory according to one embodiment of the present disclosure. Figure 2 This is a schematic diagram of the connection relationship of production equipment for an intelligent factory according to one embodiment of the present disclosure.

[0102] like Figure 1 and Figure 2The intelligent factory production equipment 100 shown includes: an equipment body 110, an information recording device 120, a lower-level machine 130, and a communication module 140. The equipment body 110 is used to execute process steps on materials within the equipment body 110; the information recording device 120 is disposed on the equipment body 110 and is used to record the first identity information of the equipment body 110; the lower-level machine 130 is connected to the information recording device 120 and is used to acquire the first identity information of the equipment body 110 recorded by the information recording device 120; the lower-level machine 130 is connected to a control system 150 through the communication module 140, and the control system 150 obtains the first identity information through communication with the lower-level machine 130; the control system 150 is also used to obtain the current position of the equipment body 110 with the first identity information; and to distinguish different equipment bodies 110 based on the first identity information and the current position of the equipment body 110.

[0103] In this invention, the intelligent factory production equipment 100 can be a mobile container. In this case, the intelligent factory production equipment 100 is a traceable mobile container. When using mobile containers in the prior art, it is difficult to distinguish the identity of the mobile container and the ongoing process. However, the intelligent factory production equipment 100 of this disclosure, when in use, can accurately determine the identity and location of the current intelligent factory production equipment 100 by defining identity characteristics of the equipment itself, thus achieving traceability of the intelligent factory production equipment 100.

[0104] Preferably, the information recording device 120 includes a multi-pin movable connector, at least a portion of the terminals of which are short-circuited to represent the first identity information of the device body through the multi-pin movable connector.

[0105] In an optional embodiment of this disclosure, the lower-level machine 130 stores second identity information. When the lower-level machine 130 is connected to the control system 150 through the communication module 140, the control system 150 obtains the second identity information through communication with the lower-level machine 130.

[0106] The control system 150 stores a mapping table of first identity information and second identity information of the intelligent factory production equipment 100. The control system 150 obtains the first identity information of the intelligent factory production equipment based on the second identity information.

[0107] In other words, once the control system 150 obtains the second identity information of the device body 110, it can obtain the first identity information through the second identity information. At this time, the lower-level machine 130 does not need to transmit the first identity information to the control system 150.

[0108] In this disclosure, the communication module 140 includes an Ethernet module, and the second identity information is the IP address of the intelligent factory production equipment. That is, each intelligent factory production equipment 100 corresponds to a fixed IP address, so that the identity of the current intelligent factory production equipment 100 can be represented by the fixed IP address.

[0109] In this disclosure, when the intelligent factory production equipment 100 is in use, when the equipment body 110 is moved to a certain fixed position, the multi-pin movable power strip is connected to the fixed socket 160 set at the current fixed position; wherein, the fixed socket 160 has identity information, so that when the fixed socket 160 is connected to the multi-pin movable power strip, the control system 150 obtains the current position of the intelligent factory production equipment 100.

[0110] In this disclosure, the control system 150 stores a mapping table between the identity information of the fixed socket 160 and the installation position of the fixed socket 160, so that the control system 150 can obtain the position of the intelligent factory production equipment based on the identity information of the fixed socket 160 connected to the intelligent factory production equipment 100.

[0111] In an optional embodiment of this disclosure, the fixed socket 160 includes:

[0112] A multi-pin fixed socket 161 is provided, which cooperates with the multi-pin movable power strip. When the intelligent factory production equipment 100 is connected to the fixed socket 160, the multi-pin movable power strip of the intelligent factory production equipment 100 is inserted into the multi-pin fixed socket 161.

[0113] A fixed communication interface 162 is connected to the control system 150, and the fixed communication interface 162 includes identity information. The control system 150 obtains the identity information of the fixed socket 160 based on the identity information of the fixed communication interface 162.

[0114] In this disclosure, the identity information of the fixed communication interface 162 is the same as the identity information of the fixed socket 160.

[0115] In an optional embodiment of this disclosure, the control system 150 determines whether the current fixed socket 160 is connected to the intelligent factory production equipment 100 based on whether the fixed communication interface 162 is used.

[0116] In other words, the fixed socket 160 is a socket specifically designed for connecting to the intelligent factory production equipment 100. When the fixed communication interface 162 is used, it means that the fixed socket 160 is connected to the intelligent factory production equipment. Of course, when the fixed communication interface 162 is not used, it means that the fixed socket 160 is not connected to any device. That is to say, the communication module is connected to the fixed communication interface 162.

[0117] In this disclosure, the multi-pin movable power strip is an aviation connector or a pin header, and some of the terminals of the multi-pin movable power strip are set to a high level or a low level, thereby forming a device identification code through the high level or low level of the aviation connector or pin header.

[0118] Accordingly, the multi-pin fixed connector 161 corresponds to the multi-pin movable connector. For example, when the multi-pin movable connector is a male connector of an aviation connector, the multi-pin fixed connector 161 is a female connector of an aviation connector; or, when the multi-pin movable connector is a female connector of an aviation connector, the multi-pin fixed connector 161 is a male connector of an aviation connector.

[0119] When the multi-pin movable power strip is a pin header, the multi-pin fixed socket 161 can be a pin header socket or a pin header, and the pin header of the intelligent factory production equipment 100 is connected to the pin header of the multi-pin fixed socket 161 through a connecting cable.

[0120] In this disclosure, when the multi-pin movable power strip is connected to the fixed socket 160, the control system 150 receives the first identity information of the intelligent factory production equipment 100 input by the user, or the control system 150 prompts the user to input the first identity information of the intelligent factory production equipment 100 and receives the first identity information of the intelligent factory production equipment 100 input by the user.

[0121] When the first identity information of the intelligent factory production equipment 100 input by the user is the same as the first identity information of the intelligent factory production equipment 100 obtained by the control system 150, the control system 150 obtains the current status information of the intelligent factory production equipment 100 and allows the setting of the parameters of the intelligent factory production equipment 100.

[0122] On the other hand, when the first identity information of the intelligent factory production equipment 100 input by the user is different from the first identity information of the intelligent factory production equipment 100 obtained by the control system 150, the control system 150 prompts the user that the identity information of the intelligent factory production equipment 100 input by the user does not match the intelligent factory production equipment 100 connected to the current fixed socket 160, and requires the user to re-enter the first identity information of the intelligent factory production equipment 100 until the first identity information of the intelligent factory production equipment 100 input by the user matches the intelligent factory production equipment 100 connected to the current fixed socket 160. Otherwise, the user is not allowed to operate the intelligent factory production equipment 100 connected to the current fixed socket 160.

[0123] In this disclosure, the control system 150 obtains the current status information of the intelligent factory production equipment 100, including: the control system 150 obtains one or more current status information of the intelligent factory production equipment 100, such as temperature, pressure, valve status, agitator status, batch number, current cumulative time and remaining time.

[0124] The cumulative time can be the cumulative time that the production equipment 100 has been working continuously, or the cumulative working time of the production equipment 100 in the current product batch.

[0125] The remaining time can be the sum of the time that production equipment 100 still needs to work.

[0126] In this disclosure, the setting of parameters for the intelligent factory production equipment 100 by the control system 150 includes: the control system 150 modifying at least one of the following parameters of the equipment body 110: storage time, pressure, and temperature.

[0127] More preferably, when the control system 150 modifies at least one of the parameters of the device body 110, namely the storage time, pressure, and temperature, the control system 150 records the modification.

[0128] The aforementioned temporary storage time can be understood as the time from the start to the end of the work of the equipment body 110, or as the time used for each production process of the equipment body 110 during its work, or as the time node of each process of the equipment body 110 during its work.

[0129] In this disclosure, when the multi-pin movable power strip is connected to the fixed socket 160, power is supplied to the intelligent factory production equipment 100 through the fixed socket 160 so that the lower-level machine 130 can work.

[0130] In this disclosure, the intelligent factory production equipment 100 further includes:

[0131] The instrument is used to detect the status of the production equipment 100 in the intelligent factory;

[0132] The control system 150 is used to obtain the status of the intelligent factory production equipment 100 detected by the instrument, and record the status of the intelligent factory production equipment 100 to the control system 150.

[0133] More preferably, the intelligent factory production equipment 100 further includes:

[0134] A valve island, connected to the lower-level machine 130, for control of the valve island via the lower-level machine 130; and

[0135] A valve, wherein the valve island is connected to the valve so that the lower-level machine 130 controls the opening or closing of the valve through the valve island.

[0136] In an optional embodiment of this disclosure, the intelligent factory production equipment 100 further includes:

[0137] A stirring frequency converter is connected to the lower-level machine 130. The lower-level machine 130 controls the start and stop of the stirring frequency converter and controls the stirring speed of the stirring frequency converter.

[0138] According to at least one embodiment of this disclosure, the control system 150 is a process control system, which may include a host computer, a controller, and network communication equipment, etc. Of course, it may also include only a host computer, and / or the slave computer 130 is a programmable logic controller.

[0139] The intelligent factory production equipment disclosed herein adopts ring network technology, treating each intelligent factory production equipment as a mobile node in the middle of the network. As the intelligent factory production equipment is used in different functional rooms, the system monitors the connection position of the intelligent factory production equipment at any time and monitors the process data of the intelligent factory production equipment in real time. When the process data deviates, it promptly transmits the alarm to the operator for handling, effectively ensuring the traceability and stability of the product.

[0140] Furthermore, by uniquely coding the usage points of production equipment in intelligent factories, the system automatically identifies and locates the points when the equipment is connected. The pre-configured usage conditions (allowed feeding, CIP completed, SIP completed, allowed discharging, incubation completed, etc.) ensure that the tank can only be used when it is in normal condition, thus ensuring that the entire usage process is traceable and meeting the GMP requirements for data integrity when using intelligent factory production equipment on a large scale.

[0141] The intelligent factory production equipment disclosed herein can automatically identify tank numbers and the location of the equipment, achieve automatic valve control, record the entire production process, and reduce the risk of human error. Data acquisition complies with GMP regulatory requirements, saves cable costs, uses standardized pins and sockets for easy sharing and maintenance, and features a disconnection alarm function for enhanced maintenance convenience. It achieves full traceability of the intelligent factory production equipment status and production process, and responds promptly to changes in the process to ensure product quality stability, safety, and consistency, perfectly meeting the GMP data integrity requirements.

[0142] The intelligent factory production equipment disclosed herein can also monitor the operation of the production equipment in real time by setting a specific time node. Specifically, when the operating time of the production equipment is approaching the set time node, the control system will issue a prompt to ensure the stability, safety, and effectiveness of the process. Simultaneously, the parameters generated by the production equipment at that time node can be traced through the set time node.

[0143] Figure 3 This is a schematic diagram of the connection relationship of production equipment for an intelligent factory according to another embodiment of the present disclosure.

[0144] According to another aspect of this disclosure, such as Figure 3 As shown, an intelligent factory production equipment is provided, and the same contents as those in the intelligent factory production equipment in the above-described implementation will not be described in detail.

[0145] The difference between this implementation of the intelligent factory production equipment and the above-described implementation is that the intelligent factory production equipment 100 includes: an equipment body 110, an information recording device 120, and a communication module 140; wherein, the equipment body 110 is used to perform process steps on the materials within the equipment body 110; the information recording device 120 is disposed on the equipment body 110 and is used to record the first identity information of the equipment body 110; the communication module 140 is connected to the control system 150 and the lower-level machine 130 respectively, so as to enable communication between the control system 150 and the lower-level machine 130.

[0146] The control system 150 is also connected to an identification device 170, which includes identity information. When the distance between the device body 110 and the identification device 170 is within a preset range, the identification device 170 acquires the first identity information recorded in the information recording device 120 and transmits the first identity information to the control system 150. The control system 150 obtains the current position of the device body 110 according to the mapping table between the identity information of the identification device 170 and the installation position of the identification device 170, and distinguishes different device bodies 110 according to the first identity information of the device body 110 and the current position of the device body 110.

[0147] Preferably, the information recording device 120 is selected from at least one of barcodes, QR codes, and RFID tags; and / or, the identification device 170 is selected from one or more of card readers, cameras, and barcode scanners, wherein when the information recording device 120 includes an RFID tag, the identification device 170 includes a card reader to read the first identity information of the device body 110 recorded in the RFID tag; when the information recording device 120 includes a barcode or a QR code, the identification device 170 includes a camera or a barcode scanner to obtain the first identity information of the device body 110 associated with the barcode or QR code through the camera or barcode scanner.

[0148] In this embodiment, the identification device 170 is set at a fixed position. The control system 150 establishes a mapping table between the identification device 170's identity information and the fixed position of the identification device 170, so that when the current identification device 170 identifies that there is an information recording device 120 for intelligent factory production equipment 100 nearby, the position of the intelligent factory production equipment 100 can be obtained based on the current location information of the identification device 170.

[0149] In this embodiment, the communication module 140 includes a wired communication module 140 and / or a wireless communication module 140.

[0150] According to another aspect of this disclosure, an intelligent factory production system is provided, which includes the aforementioned intelligent factory production equipment 100.

[0151] Preferably, the intelligent factory production system further includes a control system 150, which is used to acquire the first identity information and current location information of the intelligent factory production equipment, and to distinguish different intelligent factory production equipment 100 based on the first identity information and current location information of the intelligent factory production equipment.

[0152] In one implementation, the control system 150 is connected to the lower-level machine of the intelligent factory production equipment 100 to obtain the first identity information and current location information of the intelligent factory production equipment through communication with the lower-level machine of the intelligent factory production equipment 100.

[0153] On the other hand, the control system 150 is also connected to the fixed socket to accurately know the identity information and installation location of a fixed socket, and stores a mapping table between the identity information of the fixed socket and the installation location of the fixed socket in the memory of the control system 150.

[0154] Furthermore, the control system 150 can also be connected to an identification device 170, which includes identity information. When the distance between the device body and the identification device 170 is within a preset range, the identification device 170 acquires the first identity information recorded in the information recording device and transmits the first identity information to the control system 150. The control system 150 obtains the current position of the device body according to the mapping table between the identity information of the identification device 170 and the installation position of the identification device 170, and distinguishes different device bodies according to the first identity information of the device body and the current position of the device body.

[0155] In this disclosure, the control system 150 obtains the second identity information of the intelligent factory production equipment 100, and obtains the first identity information of the intelligent factory production equipment 100 based on the second identity information.

[0156] Furthermore, the control system 150 is also used to receive the first identity information of the intelligent factory production equipment 100 input by the user, and to determine whether the first identity information of the intelligent factory production equipment 100 input by the user is the same as the first identity information of the intelligent factory production equipment 100 obtained by the control system 150. When the first identity information of the intelligent factory production equipment 100 input by the user is the same as the first identity information of the intelligent factory production equipment 100 obtained by the control system 150, the control system 150 obtains the current status information of the intelligent factory production equipment 100 and allows the parameters of the intelligent factory production equipment 100 to be set.

[0157] On the other hand, when the first identity information of the intelligent factory production equipment 100 input by the user is different from the first identity information of the intelligent factory production equipment 100 obtained by the control system 150, the control system 150 prompts the user that the identity information of the intelligent factory production equipment 100 input does not match the intelligent factory production equipment 100 connected to the current fixed socket, and does not allow the control system 150 to obtain the current status information of the intelligent factory production equipment 100, and / or does not allow the parameters of the intelligent factory production equipment 100 to be set.

[0158] Preferably, the control system 150 obtains the current status information of the intelligent factory production equipment 100 by acquiring one or more of the following current status information: temperature, pressure, valve status, agitator status, batch number, current cumulative time, and remaining time of the intelligent factory production equipment 100.

[0159] The control system 150 sets the parameters of the intelligent factory production equipment 100, including modifying at least one of the following parameters: storage time, pressure, and temperature of the equipment body.

[0160] Furthermore, when the control system 150 modifies at least one of the parameters of the device body's storage time, pressure, and temperature, the control system 150 records the modification so that the modification process can be traced.

[0161] Figure 4 This is a flowchart of a method for tracing production equipment in an intelligent factory according to one embodiment of the present disclosure.

[0162] According to another aspect of this disclosure, a traceability method for intelligent factory production equipment 100 is provided, wherein the intelligent factory production equipment 100 can be the aforementioned intelligent factory production equipment 100, and the traceability method for the intelligent factory production equipment includes:

[0163] 202. Move the intelligent factory production equipment 100 to the vicinity of the selected fixed socket 160.

[0164] In this disclosure, when it is necessary to operate the intelligent factory production equipment 100, it is necessary to connect the intelligent factory production equipment 100 to the fixed socket 160.

[0165] Since multiple fixed sockets 160 are installed in the same operating room, the control system 150 assigns identity information to each fixed socket 160, and the control system 150 obtains the accurate location of the fixed socket 160 in the operating room based on the identity information of the fixed socket 160.

[0166] For example, the identity information of the fixed socket 160 in the temporary storage room of Zone 6 of the actual production line is 662.

[0167] Therefore, when it is necessary to connect the intelligent factory production equipment 100 to the fixed socket 160 with the identity information 662, the intelligent factory production equipment 100 is first moved to the vicinity of the fixed socket 160.

[0168] 204. Insert the information recording device 120 of the intelligent factory production equipment 100 into the multi-pin fixing socket 161 of the fixing socket 160 to provide power to the information recording device 120 through the multi-pin fixing socket 161. Observe whether the intelligent factory production equipment 100 is powered on. If the intelligent factory production equipment 100 is not powered on, that is, the power indicator light of the intelligent factory production equipment 100 is not lit, the fault needs to be eliminated before operating the intelligent factory production equipment 100.

[0169] 206. Connect the intelligent factory production equipment 100 to the control system 150 via Ethernet to confirm that the intelligent factory production equipment 100 and the control system 150 communicate normally.

[0170] 208. The control system 150 obtains the first identity information of the intelligent factory production equipment 100 and the location of the intelligent factory production equipment 100 with the first identity information when it connects to the control system 150.

[0171] Figure 5 This is a flowchart of a method for tracing production equipment in an intelligent factory according to one embodiment of the present disclosure.

[0172] On the other hand, such as Figure 5 As shown, this disclosure also provides a method for tracing the source of production equipment used in intelligent factories, which includes:

[0173] 302. Move the intelligent factory production equipment 100 to the vicinity of the selected identification device 170;

[0174] 304. Obtain the first identity information of the intelligent factory production equipment 100 through the identification device 170;

[0175] 306. The lower-level machine 130 of the intelligent factory production equipment 100 is connected to the control system 150 via the communication module 140; and

[0176] 308. The control system 150 obtains the first identity information of the intelligent factory production equipment 100, and obtains the position of the intelligent factory production equipment 100 according to the position information corresponding to the identity information of the identification device 170.

[0177] The intelligent factory production equipment 100 is selected from the aforementioned intelligent factory production equipment 100.

[0178] In an optional embodiment of this disclosure, the traceability method for the intelligent factory production equipment further includes: inputting the first identity information of the intelligent factory production equipment 100, wherein the control system 150 receives the first identity information of the intelligent factory production equipment 100 input by the user, or the control system 150 prompts the user to input the first identity information of the intelligent factory production equipment 100 and receives the first identity information of the intelligent factory production equipment 100 input by the user.

[0179] When the first identity information of the intelligent factory production equipment 100 input by the user is the same as the first identity information of the intelligent factory production equipment 100 obtained by the control system 150, the control system 150 obtains the current status information of the intelligent factory production equipment 100 and sets the parameters of the intelligent factory production equipment 100.

[0180] On the other hand, when the first identity information of the intelligent factory production equipment 100 input by the user is different from the first identity information of the intelligent factory production equipment 100 obtained by the control system 150, the control system 150 prompts the user that the identity information of the intelligent factory production equipment 100 input does not match the intelligent factory production equipment 100 connected to the current fixed socket 160.

[0181] In this disclosure, the control system 150 obtains the current status information of the intelligent factory production equipment 100, including: the temperature, pressure, valve status, agitator status, batch number, current cumulative time and remaining time of the intelligent factory production equipment 100.

[0182] In this disclosure, the setting of parameters for the intelligent factory production equipment 100 by the control system 150 includes: the control system 150 modifying at least one of the following parameters of the equipment body 110: storage time, pressure, and temperature.

[0183] More preferably, when the control system 150 modifies at least one of the parameters of the device body 110, namely the storage time, pressure, and temperature, the control system 150 records the modification.

[0184] In the description of this specification, the references to terms such as "one embodiment / mode," "some embodiments / modes," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment / mode or example is included in at least one embodiment / mode or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment / mode or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments / modes or examples. Furthermore, without contradiction, those skilled in the art can combine and integrate the different embodiments / modes or examples described in this specification, as well as the features of different embodiments / modes or examples.

[0185] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0186] Those skilled in the art should understand that the above embodiments are merely for illustrating the present disclosure and are not intended to limit the scope of the disclosure. Those skilled in the art can make other changes or modifications based on the above disclosure, and these changes or modifications still fall within the scope of the present disclosure.

Claims

1. A production equipment for an intelligent factory, characterized in that, include: The equipment body is used to perform process steps on the materials inside the equipment body; the equipment body is a mobile tank. An information recording device is disposed on the device body and is used to record the first identity information of the device body; the information recording device includes a multi-pin movable connector, through which the first identity information of the device body is represented. The lower-level machine is connected to the information recording device and is used to obtain the first identity information of the device body recorded by the information recording device; as well as The lower-level machine is connected to the control system through the communication module. The control system obtains the first identity information through communication with the lower-level machine. The control system is also used to obtain the current location of the device body with the first identity information and to distinguish different device bodies based on the first identity information of the device body and the current location of the device body. When the device body is moved to a fixed position, the multi-pin movable connector is connected to a fixed socket located at the current fixed position. The fixed socket has identification information so that when the multi-pin movable connector is connected to the fixed socket, the control system obtains the current position of the device body through a mapping table between the identification information of the fixed socket and the installation position of the fixed socket. The fixed socket includes a multi-pin fixed connector and a fixed communication interface; the multi-pin fixed connector cooperates with the multi-pin movable connector, and when the intelligent factory production equipment is connected to the fixed socket, the multi-pin movable connector is inserted into the multi-pin fixed connector; the fixed communication interface is connected to the control system, and the fixed communication interface includes identity information, and the control system obtains the identity information of the fixed socket based on the identity information of the fixed communication interface; When the multi-pin movable connector is connected to the fixed socket, the control system receives the first identity information of the intelligent factory production equipment input by the user, or the control system prompts the user to input the first identity information of the intelligent factory production equipment and receives the first identity information of the intelligent factory production equipment input by the user; when the first identity information of the intelligent factory production equipment input by the user is the same as the first identity information of the intelligent factory production equipment obtained by the control system, the control system obtains the current status information of the intelligent factory production equipment and allows the parameters of the intelligent factory production equipment to be set; When the first identity information of the intelligent factory production equipment entered by the user is different from the first identity information of the intelligent factory production equipment obtained by the control system, the control system prompts the user that the identity information of the intelligent factory production equipment entered by the user does not match the intelligent factory production equipment connected to the current fixed socket. The lower-level machine stores the second identity information of the device body. When the lower-level machine is connected to the control system through the communication module, the control system obtains the second identity information through communication with the lower-level machine. The control system stores a mapping table of the first identity information and the second identity information of the device body. The control system obtains the first identity information of the intelligent factory production equipment based on the second identity information. The second identity information is the IP address of the intelligent factory production equipment.

2. The intelligent factory production equipment as described in claim 1, characterized in that, The control system determines whether the current fixed socket is connected to the production equipment of the intelligent factory based on whether the fixed communication interface is being used.

3. The intelligent factory production equipment as described in claim 1, characterized in that, The control system obtains the current status information of the intelligent factory production equipment by acquiring one or more of the following: temperature, pressure, valve status, agitator status, batch number, current cumulative time, and remaining time.

4. The intelligent factory production equipment as described in claim 3, characterized in that, The control system sets the parameters of the production equipment used in the intelligent factory, including modifying at least one of the following parameters: storage time, pressure, and temperature of the equipment body.

5. The intelligent factory production equipment as described in claim 4, characterized in that, When the control system modifies at least one of the parameters of the equipment body, namely the storage time, pressure, and temperature, the control system records the modification.

6. The intelligent factory production equipment as described in claim 1, characterized in that, When the multi-pin movable connector is connected to the fixed socket, power is supplied to the intelligent factory production equipment through the fixed socket so that the lower-level machine can work.

7. The intelligent factory production equipment as described in claim 1, characterized in that, The multi-pin movable connector is an aviation connector or a pin header. Some of the terminals of the multi-pin movable connector are set to a high level or a low level, thereby forming a device identification code through the high level or low level of the aviation connector or pin header.

8. The intelligent factory production equipment as described in claim 1, characterized in that, Also includes: Instruments, the instruments being used to detect the status of the production equipment used in the intelligent factory; The control system is used to obtain the status of the intelligent factory production equipment detected by the instrument and record the status of the intelligent factory production equipment to the control system.

9. The intelligent factory production equipment as described in claim 8, characterized in that, Also includes: A valve island, which is connected to the lower-level machine so that the lower-level machine can control the valve island; as well as A valve, wherein the valve island is connected to the valve so that the lower-level machine controls the opening or closing of the valve through the valve island.

10. The intelligent factory production equipment as described in claim 9, characterized in that, Also includes: A stirring frequency converter is connected to the lower-level machine, which controls the start and stop of the stirring frequency converter and controls the stirring speed of the stirring frequency converter.

11. A production system for an intelligent factory, characterized in that, The system includes a control system and intelligent factory production equipment according to any one of claims 1-10; wherein the control system is signal-connected to the intelligent factory production equipment, and is used to receive information transmitted from the intelligent factory production equipment, and monitor the position and / or status of each of the intelligent factory production equipment according to the received information.

12. The intelligent factory production system as described in claim 11, characterized in that, The control system is also used to acquire the first identity information and current location information of the intelligent factory production equipment, and to distinguish different intelligent factory production equipment based on the first identity information and current location information of the intelligent factory production equipment.

13. The intelligent factory production system as described in claim 12, characterized in that, The control system obtains the first identity information and current location information of the intelligent factory production equipment by communicating with the lower-level machine of the intelligent factory production equipment.

14. The intelligent factory production system as described in claim 11, characterized in that, The control system obtains the second identity information of the production equipment used in the intelligent factory, and obtains the first identity information of the production equipment used in the intelligent factory based on the second identity information.

15. The intelligent factory production system as described in claim 12, characterized in that, The control system is also configured to receive the first identity information of the intelligent factory production equipment input by the user, and determine whether the first identity information of the intelligent factory production equipment input by the user is the same as the first identity information of the intelligent factory production equipment obtained by the control system. When the first identity information of the intelligent factory production equipment input by the user is the same as the first identity information of the intelligent factory production equipment obtained by the control system, the control system obtains the current status information of the intelligent factory production equipment and allows the parameters of the intelligent factory production equipment to be set.

16. The intelligent factory production system as described in claim 15, characterized in that, The control system obtains the current status information of the intelligent factory production equipment by acquiring one or more of the following: temperature, pressure, valve status, agitator status, batch number, current cumulative time, and remaining time.

17. The intelligent factory production system as described in claim 15, characterized in that, The control system sets the parameters of the production equipment used in the intelligent factory, including modifying at least one of the following parameters: storage time, pressure, and temperature of the equipment body.

18. The intelligent factory production system as described in claim 17, characterized in that, When the control system modifies at least one of the parameters of the equipment body, namely the storage time, pressure, and temperature, the control system records the modification.

19. A method for tracing the source of production equipment used in intelligent factories, characterized in that, include: Move the production equipment used in the smart factory to the vicinity of the selected fixed socket; The information recording device of the intelligent factory production equipment is inserted into the multi-pin fixed socket of the fixed socket; power is supplied to the information recording device through the multi-pin fixed socket. Connecting intelligent factory production equipment to the control system via a communication module; and The control system obtains the first identity information of the production equipment used in the intelligent factory and the location of the production equipment in the intelligent factory with the first identity information when it connects to the control system. The intelligent factory production equipment mentioned herein is selected from the intelligent factory production equipment according to any one of claims 1-10.

20. The traceability method for production equipment in an intelligent factory as described in claim 19, characterized in that, Also includes: The system receives the first identity information of the production equipment used in the intelligent factory from the user, or the system prompts the user to input the first identity information of the production equipment used in the intelligent factory and receives the first identity information of the production equipment used in the intelligent factory from the user. When the first identity information of the intelligent factory production equipment input by the user is the same as the first identity information of the intelligent factory production equipment obtained by the control system, the control system obtains the current status information of the intelligent factory production equipment and sets the parameters of the intelligent factory production equipment.

21. The traceability method for production equipment in an intelligent factory as described in claim 20, characterized in that, When the first identity information of the intelligent factory production equipment entered by the user is different from the first identity information of the intelligent factory production equipment obtained by the control system, the control system prompts the user that the identity information of the intelligent factory production equipment entered by the user does not match the intelligent factory production equipment connected to the current fixed socket.

22. The traceability method for production equipment in an intelligent factory as described in claim 20, characterized in that, The control system obtains the current status information of the intelligent factory production equipment, including: the temperature, pressure, valve status, agitator status, batch number, current cumulative time, and remaining time of the intelligent factory production equipment.

23. The traceability method for production equipment in an intelligent factory as described in claim 20, characterized in that, The control system sets the parameters of the production equipment used in the intelligent factory, including modifying at least one of the following parameters: storage time, pressure, and temperature of the equipment body.

24. The traceability method for production equipment in an intelligent factory as described in claim 23, characterized in that, When the control system modifies at least one of the parameters of the equipment body, namely the storage time, pressure, and temperature, the control system records the modification.