Forming and capacity-grading line concentration device and forming and capacity-grading device
By dividing the standard and non-standard interface areas of the capacity-capacity junction device, and combining it with a double-layer PCBA circuit board and relay control, a stable connection of the lithium battery back-end equipment is achieved, solving the production difficulties caused by numerous interfaces in the existing technology, improving production efficiency and reducing costs.
Patent Information
- Application Number
- CN202520402766.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-07
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-03-07
AI Technical Summary
The electrical component connection harnesses of the lithium battery back-end formation and capacity testing equipment are numerous and have complex interfaces, which makes harness generation, harness manufacturing and workshop assembly difficult, consumes a lot of manpower and resources, and affects the production schedule.
The device adopts a modular, multi-functional hub, which includes standard and non-standard interface areas. Combined with a double-layer PCBA circuit board, it connects the main control equipment and storage equipment through standard cables, uses relays to control on/off states, and is equipped with interface indicator lights to simplify the wiring process.
This reduced the skill requirements for operators, lowered the error rate, increased production efficiency, shortened project cycles, and reduced costs.
Smart Images

Figure CN223912655U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of device wiring, in particular to a formation and dispensing hub device and a formation and dispensing device. BACKGROUND
[0002] In the field of lithium battery back-end equipment, the project delivery cycle is greatly shortened, which puts forward very high requirements on the design generation process. In response to this change, the industry generally takes measures such as optimizing the design production process, reducing the cost of the whole process, fronting production work, and modularizing the design. However, as a batch equipment, the lithium battery back-end formation and dispensing equipment has various types of electrical component connection bundles and complex interfaces, which causes great difficulties in the generation of bundle tables, the production of bundles, and the assembly of workshops.
[0003] In the prior art, each device is usually connected by using a junction box or a terminal-to-terminal plug-in connection. However, this method requires certain skills of the person connecting the wires, and may cause the device to malfunction due to mispositioning of the wires. Moreover, the formation and dispensing equipment has a large number of devices, and the plug-in connection of the wires may consume a large amount of manpower and resources, thereby affecting the production progress. CONTENT OF THE UTILITY MODEL
[0004] The present application aims to solve the problem of consuming a large amount of manpower and resources in the prior art by providing a formation and dispensing hub device and a formation and dispensing device.
[0005] To achieve the above-mentioned purpose, the technical solution adopted by the present application is as follows:
[0006] In a first aspect, the present application provides a formation and dispensing hub device, which comprises a standard interface area, a non-standard interface area, and a double-layer PCBA circuit board.
[0007] The standard interface area and the non-standard interface area are located on the double-layer PCBA circuit board, the standard interface area comprises at least one standard interface, and the non-standard interface area comprises at least one non-standard interface.
[0008] One end of the non-standard interface is used for connecting a hardware device of a master control device or a hardware device of a storage location device, and the other end of the non-standard interface is connected to one end of the at least one standard interface via the double-layer PCBA circuit board; the other end of the standard interface is used for connecting a standard cable.
[0009] The formation and dispensing hub device is used for connecting hardware devices of a storage location device and a master control device based on at least one standard interface and at least one non-standard interface, or connecting hardware devices of a master control device and formation and dispensing hub devices of a storage location device based on at least one standard interface and at least one non-standard interface.
[0010] Optionally, the chemical preparation and dispensing hub device further comprises: at least one relay; each of the relays comprises a coil and at least one contact, the coil comprises a coil upper port and a coil lower port, and the contact comprises a contact upper port and a contact lower port;
[0011] The coil upper port of the relay is connected with one end of the at least one standard interface, and the coil lower port of the relay is connected with the other end of the at least one standard interface; the contact upper port of the relay is connected with the other end of the at least one non-standard interface, and the contact lower port of the relay is connected with one end of the at least one non-standard interface;
[0012] The relay is used for controlling the contact to be turned on or turned off based on the power-on state of the coil, so as to control the on-off between the library equipment and the master control device.
[0013] Optionally, the chemical preparation and dispensing hub device further comprises: an interface indicating lamp;
[0014] One end of the interface indicating lamp is connected with the other end of the at least one non-standard interface, and the other end of the interface indicating lamp is connected with one end of the at least one standard interface;
[0015] The interface indicating lamp is used for being lighted up when the connected non-standard interface and the standard interface are turned on.
[0016] Optionally, the standard interface region comprises: a plurality of first standard interfaces; and the non-standard interface region comprises: a plurality of first non-standard interfaces;
[0017] One end of each of the first standard interfaces comprises a plurality of first pins, the other end of each of the first non-standard interfaces comprises a plurality of second upper pins, and each of the first pins is connected with one of the second upper pins via the double-layer PCBA circuit board.
[0018] Optionally, one end of each of the first non-standard interfaces comprises a plurality of second lower pins corresponding to each of the second upper pins;
[0019] Each of the second lower pins is used for accessing the hardware device of the master control device or the hardware device of the library equipment.
[0020] Optionally, the standard interface region comprises: a plurality of second standard interfaces, the non-standard interface region comprises: a plurality of second non-standard interfaces, and the chemical preparation and dispensing hub device further comprises: a plurality of relays;
[0021] One end of each of the second standard interfaces comprises a plurality of third pins, and the other end of each of the second non-standard interfaces comprises a plurality of fourth upper pins;
[0022] The third pins are respectively connected with the upper coil port and the lower coil port of the relay via the double-layer PCBA circuit board, and the fourth upper pins in the plurality of second non-standard interfaces are respectively connected with the fourth upper pins in other second non-standard interfaces, the upper contact ports of the plurality of relays, and the lower contact ports of the plurality of relays via the double-layer PCBA circuit board.
[0023] Optionally, the chemical batching hub device further comprises at least one through hole.
[0024] The through hole penetrates the double-layer PCBA circuit board.
[0025] In a second aspect, the present application provides a chemical batching device, comprising a plurality of chemical batching hub devices according to the first aspect, a master control device, and at least one storage site device.
[0026] The chemical batching hub device is used to connect the master control device and at least one storage site device by a standard cable.
[0027] Optionally, the chemical batching device comprises a first chemical batching hub device, a second chemical batching hub device, a third chemical batching hub device, a master control device, a first storage site device, and a second storage site device.
[0028] The first chemical batching hub device is deployed on the master control device, the second chemical batching hub device is deployed on the first storage site device, and the third chemical batching hub device is deployed on the second storage site device.
[0029] One end of the first chemical batching hub device is connected with the hardware device of the master control device, and the other end of the first chemical batching hub device is connected with one end of the second chemical batching hub device and one end of the third chemical batching hub device by a standard cable.
[0030] The other end of the second chemical batching hub device is connected with the hardware device of the first storage site device.
[0031] The other end of the third chemical batching hub device is connected with the hardware device of the second storage site device.
[0032] Optionally, the chemical batching device further comprises a connecting piece.
[0033] The connecting piece penetrates the through hole in the chemical batching hub device, one end of the connecting piece is fixed on the chemical batching hub device, and the other end of the connecting piece is fixed on the master control device or the storage site device.
[0034] The beneficial effects of the present application are: the chemical composition and capacity hub device connects the hardware equipment of the master control device and the chemical composition and capacity hub device of the storage site equipment, or connects the chemical composition and capacity hub device of the master control device and the hardware equipment of the storage site equipment, so that the master control device and the storage site equipment are connected through standard cables. Due to the uniqueness of the standard cable, the stability of the connection is ensured, thereby reducing the amount of wiring harness of the staff connecting the master control device and the storage site equipment, reducing the skill requirements of the wiring personnel, and solidifying part of the electrical circuit connection, thereby reducing the error rate and improving the production efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0035] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.
[0036] Figure 1 is a structure schematic diagram of a chemical composition and capacity hub device provided by the embodiments of the present application;
[0037] Figure 2 is a structure schematic diagram of another chemical composition and capacity hub device provided by the embodiments of the present application;
[0038] Figure 3 is a structure schematic diagram of another chemical composition and capacity hub device provided by the embodiments of the present application;
[0039] Figure 4 is a structure schematic diagram of another chemical composition and capacity hub device provided by the embodiments of the present application;
[0040] Figure 5 is a structure schematic diagram of another chemical composition and capacity hub device provided by the embodiments of the present application;
[0041] Figure 6 is a structure schematic diagram of a chemical composition and capacity device provided by the embodiments of the present application. DETAILED DESCRIPTION
[0042] In order to make the purposes, technical solutions, and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. It should be understood that the drawings in the present application serve only the purpose of illustration and description, and do not serve to limit the scope of protection of the present application. In addition, it should be understood that the schematic drawings are not drawn to scale. The flowcharts used in the present application show the operations implemented according to some embodiments of the present application. It should be understood that the operations of the flowcharts can not be implemented in sequence, and the steps without logical context relationship can be reversed in sequence or implemented simultaneously. In addition, one or more other operations can be added to the flowcharts or one or more operations can be removed from the flowcharts under the guidance of the content of the present application.
[0043] In addition, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. The components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0044] It should be noted that the term “comprises” will be used in the embodiments of the present application to indicate the presence of the features declared thereafter, but does not exclude the addition of other features.
[0045] In the prior art, each device is usually connected by using a junction box or a terminal pair to plug in a wire. However, this method requires certain skills of the wiring personnel, and may cause the device to be unable to work normally due to mispositioning of the wiring. In addition, the number of formation and distribution devices is large, and the plug-in wire may consume a large amount of manpower and material resources, thereby affecting the production progress.
[0046] Based on this, the present application provides a formation and distribution hub device, which comprises a standard interface area, a non-standard interface area, and a double-layer PCBA circuit board. The hardware devices in the master control device access the standard cable via the non-standard interface in the non-standard interface area and the standard interface in the standard interface area, so as to connect other master control devices or library device. Based on this, the hardware devices in different projects are connected by using the standard cable, so as to realize the generalization between projects. In addition, based on the distribution hub module and the master hub module, the connection by the standard cable can be performed after the production of the formation and distribution hub device is completed, so as to avoid complex wiring and speed up the project cycle, thereby reducing the project cost.
[0047] Figure 1 FIG. 1 is a structural schematic diagram of a formation and distribution hub device provided by an embodiment of the present application. As shown in FIG. 1, the formation and distribution hub device comprises a standard interface area 1, a non-standard interface area 2, and a double-layer PCBA circuit board 3.Figure 1 As shown, the chemical formation and component distribution hub device includes a standard interface area, a non-standard interface area, and a double-layer PCBA circuit board.
[0048] Optionally, a double-layer printed circuit board assembly (PCBA) circuit board is provided, which can be processed, welded, and assembled to install multiple electronic components and connection devices, thereby realizing complete module functions.
[0049] Optionally, the standard interface area and the non-standard interface area are located on the double-layer PCBA circuit board, the standard interface area includes at least one standard interface, and the non-standard interface area includes at least one non-standard interface.
[0050] The standard interface can be a standard interface of 9 pins, which are respectively connected to a standard cable and a non-standard interface.
[0051] As an optional implementation, the chemical formation and component distribution hub device can include 4 standard interfaces and 4 non-standard interfaces. The number of standard interfaces and non-standard interfaces can be set according to actual project needs.
[0052] Optionally, one end of the non-standard interface is used to access a hardware device of a master control device or a hardware device of a bin location device, and the other end of the non-standard interface is connected to one end of at least one standard interface via the double-layer PCBA circuit board. The other end of the standard interface is used to access a standard cable.
[0053] It is worth noting that, Figure 1 The connection between the standard interface and the non-standard interface is only an example, and the standard interface and the non-standard interface can be a one-to-many, many-to-one, or many-to-many connection relationship, and the specific connection is set according to actual project needs.
[0054] Optionally, the hardware device of the master control device can include a master control module, and the hardware device of the bin location device can include a collection module and an execution module.
[0055] Optionally, the double-layer PCBA circuit board is sandwiched with a layer of insulating material, thereby realizing multi-layer wiring, improving electrical performance, and saving space.
[0056] Optionally, the chemical formation and component distribution hub device is used to connect the hardware device of the bin location device and the chemical formation and component distribution hub device of the master control device based on at least one standard interface and at least one non-standard interface, or to connect the chemical formation and component distribution hub device of the bin location device and the hardware device of the master control device based on at least one standard interface and at least one non-standard interface.
[0057] Specifically, the chemical formation and component distribution hub device can be a device provided at the master control device end or a device provided at the bin location device end.
[0058] Optionally, the formation and component batching hub device connects the master control device and the warehouse location device, and in the installation process, only the standard interface in the formation and component batching hub device at the master control device end and the standard interface in the formation and component batching hub device at the warehouse location device end are connected by using a standard cable.
[0059] In this embodiment, the standard interface and the non-standard interface in the formation and component batching hub device are used to connect the hardware device of the master control device and the formation and component batching hub device of the warehouse location device, or to connect the formation and component batching hub device of the master control device and the hardware device of the warehouse location device, so that the master control device and the warehouse location device are connected by a standard cable. Due to the uniqueness of the standard cable, the stability of the connection is ensured, thereby reducing the amount of wiring harness for connecting the master control device and the warehouse location device, lowering the skill requirement for the wiring personnel, and fixing part of the electrical connection, thereby reducing the error rate and improving the production efficiency.
[0060] As an optional implementation, the formation and component batching hub device further comprises at least one relay. Each relay comprises a coil and at least one contact, the coil comprises a coil upper port and a coil lower port, and the contact comprises a contact upper port and a contact lower port.
[0061] It should be understood that the coil of the relay has a corresponding relationship with the contact, for example, one coil of the relay A can correspond to two contacts, and the coil is powered on to control the contact to be turned on or off.
[0062] Optionally, the coil upper port of the relay and the coil lower port of the relay are connected to one end of the at least one standard interface, and the contact upper port of the relay and the contact lower port of the relay are connected to the other end of the at least one non-standard interface.
[0063] Optionally, the relay is used to control the contact to be turned on or off based on the power-on state of the coil, so as to control the on-off between the master control device and the warehouse location device.
[0064] Optionally, when the coil upper port and the coil lower port of the relay are powered on after being connected to the standard interface, the contact corresponding to the coil is turned on or off, so as to control the hardware device of the master control device or the hardware device of the warehouse location device corresponding to the non-standard interface connected to the contact to be powered on or off.
[0065] Optionally, the number of relays is set according to actual project requirements.
[0066] In this embodiment, the relay in the formation and component batching hub device is used to control the power-on and power-off of the corresponding hardware device.
[0067] As an optional implementation, the formation and component batching hub device further comprises an interface indicator.
[0068] Optionally, one end of the interface indication lamp is connected to the other end of the at least one non-standard interface, and the other end of the interface indication lamp is connected to one end of the at least one standard interface.
[0069] Optionally, the interface indication lamp is used to light up when the connected non-standard interface and standard interface are turned on.
[0070] Optionally, the interface indication lamp can be a light-emitting diode, and when the interface indication lamp is on, it indicates that the circuit is powered on, and when the interface indication lamp is off, it indicates that the circuit is not powered on.
[0071] Optionally, based on the wiring indication lamp in the chemical formation and capacity collection device, technicians can quickly locate the fault point and repair it during equipment maintenance, greatly reducing equipment downtime and maintenance costs.
[0072] In this embodiment, the interface indication lamp indicates whether the standard interface and non-standard interface circuit is powered on.
[0073] Optionally, the standard interface area in the chemical formation and capacity collection device includes a plurality of first standard interfaces. The non-standard interface area includes a plurality of first non-standard interfaces.
[0074] Optionally, one end of each first standard interface includes a plurality of first pins, and the other end of each first non-standard interface includes a plurality of second upper pins. Each first pin is connected to a second upper pin via a double-layer PCBA circuit board.
[0075] As an example, Figure 2 and Figure 3 is another structure diagram of a chemical formation and capacity collection device provided by the embodiment of the present application. As shown in Figure 2 and Figure 3 , the first standard interface includes standard interface A, standard interface B, standard interface C, and standard interface D, and the pins thereof are all first pins. The first non-standard interface includes non-standard interface A, non-standard interface B, non-standard interface C, and non-standard interface D, and the pins thereof are all second pins.
[0076] The pin A1, pin A2, pin A3, pin A4, and pin A5 in the standard interface A are connected to the upper port A1, upper port A2, upper port A3, upper port A4, and upper port A5 of the non-standard interface A through the back surface printed circuit of the double-layer PCBA circuit board, respectively. The pin A6, pin A7, and pin A8 of the standard interface A are connected to the upper port A6, upper port A7, and upper port A8 of the non-standard interface A through the front surface printed circuit of the double-layer PCBA circuit board, respectively. The pin A9 of the standard interface A is empty.
[0077] The pin B1, the pin B2, the pin B3, the pin B4 and the pin B5 in the standard interface B are connected with the upper port B1, the upper port B2, the upper port B3, the upper port B4 and the upper port B5 of the non-standard interface B through the back printed circuit of the double-layer PCBA circuit board respectively, the pin B6, the pin B7 and the pin B8 of the standard interface B are connected with the upper port B6, the upper port B7 and the upper port B8 of the non-standard interface B through the front printed circuit of the double-layer PCBA circuit board respectively, and the pin B9 of the standard interface B is empty.
[0078] The pin C1, the pin C2, the pin C3, the pin C4 and the pin C5 in the standard interface C are connected with the upper port C1, the upper port C2, the upper port C3, the upper port C4 and the upper port C5 of the non-standard interface C through the back printed circuit of the double-layer PCBA circuit board respectively, the pin C6, the pin C7 and the pin C8 of the standard interface C are connected with the upper port C6, the upper port C7 and the upper port C8 of the non-standard interface C through the front printed circuit of the double-layer PCBA circuit board respectively, and the pin C9 of the standard interface C is empty.
[0079] The pin D1, the pin D2, the pin D3, the pin D4 and the pin D5 in the standard interface D are connected with the upper port D1, the upper port D2, the upper port D3, the upper port D4 and the upper port D5 of the non-standard interface D through the back printed circuit of the double-layer PCBA circuit board respectively, the pin D6, the pin D7 and the pin D8 of the standard interface D are connected with the upper port D6, the upper port D7 and the upper port D8 of the non-standard interface D through the front printed circuit of the double-layer PCBA circuit board respectively, and the pin D9 of the standard interface D is empty.
[0080] In the embodiment, the first pin in the plurality of standard interfaces and the second upper pin of the first non-standard interface are connected, so that the host device or the storage site device is connected based on the standard cable.
[0081] In addition, one end of each first non-standard interface comprises a plurality of second lower pins corresponding to each second upper pin. Each second lower pin is used for connecting a hardware device of the host device or a hardware device of the storage site device.
[0082] Specifically, the second lower pin is used for plugging a cable of the hardware device in the host device or the hardware device in the storage site device.
[0083] In the embodiment, the first non-standard interface connected with the hardware device of the host device or the hardware device of the storage site device is used to connect the hardware device of the host device or the hardware device of the storage site device with the standard cable, so as to connect the host device and the storage site device, and ensure the uniformity of the connection cable.
[0084] As another optional implementation, the chemical component container hub device includes: a plurality of second standard interfaces in the standard interface area, a plurality of second non-standard interfaces in the non-standard interface area, and a plurality of relays.
[0085] Optionally, one end of each second standard interface includes a plurality of third pins, and the other end of each second non-standard interface includes a plurality of fourth upper pins.
[0086] Optionally, each third pin is connected to the upper coil port and the lower coil port of the coil of the relay via the double-layer PCBA circuit board, and the fourth upper pin in each second non-standard interface is connected to the fourth upper pin in another second non-standard interface, the upper contact port of the contact of the relay, and the lower contact port of the contact of the relay via the double-layer PCBA circuit board.
[0087] In this way, based on energizing the upper coil port and the lower coil port of the coil connected to the third pin, the corresponding non-standard interface of the upper contact port and the lower contact port of the contact corresponding to the coil can be energized or de-energized.
[0088] As an example, Figure 4 and Figure 5 is another structure diagram of a chemical component container hub device provided by the embodiments of the present application. As shown in Figure 4 and Figure 5 , in the chemical component container hub device, the second standard interface includes a standard interface E, the pins of the standard interface are third pins, the second non-standard interface includes a non-standard interface E, a non-standard interface F, and a non-standard interface G, the pins of which are fourth upper pins, and the relays A, B, C, D, E, F, and the double-layer PCBA circuit board.
[0089] The pin E1 of the standard interface E is connected to the upper coil port of the relay A via the front surface printed circuit of the double-layer PCBA circuit board, the pin E2 of the standard interface E is connected to the upper coil port of the relay B via the front surface printed circuit of the double-layer PCBA circuit board, the pin E3 of the standard interface E is connected to the upper coil port of the relay C via the front surface printed circuit of the double-layer PCBA circuit board, the pin E4 of the standard interface E is connected to the upper coil port of the relay D via the front surface printed circuit of the double-layer PCBA circuit board, the pin E5 of the standard interface E is connected to the upper coil port of the relay E via the front surface printed circuit of the double-layer PCBA circuit board, the pin E6 of the standard interface E is connected to the upper coil port of the relay F via the front surface printed circuit of the double-layer PCBA circuit board, and the pin E8 and the pin E9 of the standard interface E are empty.
[0090] The lower coil port of the relay A, the lower coil port of the relay B, the lower coil port of the relay C, the lower coil port of the relay D and the lower coil port of the relay E are connected in parallel through the back printed circuit of the double-layer PCBA circuit board and connected with the pin E7 of the standard interface E;
[0091] The pin E1 of the non-standard interface E is connected with the pin G1, the pin G2, the pin G3, the pin G4, the pin G5 and the pin G6 of the non-standard interface G through the front printed circuit of the double-layer PCBA circuit board, and the pin E2 of the non-standard interface E is connected with the upper contact port of the relay A, the relay B, the relay C, the relay D, the relay E and the relay F through the back printed circuit of the double-layer PCBA circuit board;
[0092] The lower contact port of the relay A is connected with the pin F1 of the non-standard interface F through the back printed circuit of the double-layer PCBA circuit board, the lower contact port of the relay B is connected with the pin F3 of the non-standard interface F through the back printed circuit of the double-layer PCBA circuit board, the lower contact port of the relay C is connected with the pin F5 of the non-standard interface F through the back printed circuit of the double-layer PCBA circuit board, the lower contact port of the relay D is connected with the pin F7 of the non-standard interface F through the back printed circuit of the double-layer PCBA circuit board, the lower contact port of the relay E is connected with the pin F9 of the non-standard interface F through the back printed circuit of the double-layer PCBA circuit board, and the lower contact port of the relay F is connected with the pin F11 of the non-standard interface F through the back printed circuit of the double-layer PCBA circuit board;
[0093] The other pins are empty.
[0094] As an optional implementation, the fourth lower pin in the second non-standard interface is respectively used for accessing the hardware device of the master control device or the hardware device of the library position device.
[0095] In the embodiment, the on-off of the master control device and the library position device is controlled through the on-off control of the coils in the plurality of relays, thereby being applicable to the scene that needs to control the on-off of the hardware device.
[0096] As an optional implementation, the chemical composition and capacity collection hub device further comprises at least one through hole.
[0097] Optionally, the through hole penetrates the double-layer PCBA circuit board.
[0098] Exemplarily, one chemical composition and capacity collection hub device can comprise four through holes, which are used for fixing the chemical composition and capacity collection hub device based on the four through holes.
[0099] The application further provides a chemical composition and capacity collection device, Figure 6 is a structural schematic diagram of a chemical composition and capacity collection device provided by the embodiment of the application. Figure 6As shown, the chemical component dispensing device includes the above-mentioned chemical component dispensing hub device, the master control device, and at least one storage site device.
[0100] The chemical component dispensing hub device is configured to connect the master control device and the at least one storage site device through a standard cable.
[0101] Optionally, one master control device can deploy multiple chemical component dispensing hub devices, and one storage site device can also deploy multiple chemical component dispensing hub devices.
[0102] It is worth noting that, Figure 6 Only one connection between the master control device and the storage site device through the chemical component dispensing hub device is given, and the number of chemical component dispensing hub devices deployed by the master control device, the number of chemical component dispensing hub devices deployed by the storage site device, and the connection relationship between the chemical component dispensing hub devices can be set according to the actual situation of the project, which is not limited in the present application.
[0103] As an optional embodiment, the chemical component dispensing device includes a first chemical component dispensing hub device, a second chemical component dispensing hub device, a third chemical component dispensing hub device, a master control device, a first storage site device, and a second storage site device.
[0104] The first chemical component dispensing hub device is deployed on the master control device, the second chemical component dispensing hub device is deployed on the first storage site device, and the third chemical component dispensing hub device is deployed on the second storage site device.
[0105] One end of the first chemical component dispensing hub device is connected to the hardware device of the master control device, and the other end of the first chemical component dispensing hub device is connected to one end of the second chemical component dispensing hub device and one end of the third chemical component dispensing hub device through a standard cable.
[0106] The other end of the second chemical component dispensing hub device is connected to the hardware device of the first storage site device.
[0107] The other end of the third chemical component dispensing hub device is connected to the hardware device of the second storage site device.
[0108] As an optional embodiment, the chemical component dispensing device further includes a connecting piece.
[0109] The connecting piece penetrates through the through hole in the chemical component dispensing hub device, one end of the connecting piece is fixed on the chemical component dispensing hub device, and the other end of the connecting piece is fixed on the master control device or the storage site device.
[0110] The connecting piece can be a screw or the like.
[0111] In this embodiment, the chemical component dispensing hub device is fixed by the connecting piece, thereby ensuring the communication between the master control device and the storage site device.
[0112] The above merely provides the specific implementation of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of the changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.
Claims
1. A formation and dispensing hub device, characterized by, The chemical composition and component assembly hub device comprises a standard interface area, a non-standard interface area and a double-layer PCBA circuit board; The standard interface area and the non-standard interface area are located on the double-layer PCBA circuit board, the standard interface area comprises at least one standard interface, and the non-standard interface area comprises at least one non-standard interface; One end of the non-standard interface is used for accessing the hardware device of the master control device or the hardware device of the storage location device, and the other end of the non-standard interface is connected with one end of the at least one standard interface via the double-layer PCBA circuit board; the other end of the standard interface is used for accessing a standard cable; The chemical composition and component assembly hub device is used for connecting the hardware device of the master control device and the hardware device of the storage location device based on the at least one standard interface and the at least one non-standard interface, or connecting the hardware device of the master control device and the chemical composition and component assembly hub device of the storage location device based on the at least one standard interface and the at least one non-standard interface.
2. The formation and batching hub device of claim 1, wherein, The chemical composition and component assembly hub device further comprises at least one relay, each relay comprises a coil and at least one contact, the coil comprises a coil upper port and a coil lower port, and the contact comprises a contact upper port and a contact lower port; The coil upper port of the relay is connected with the coil lower port of the relay, and one end of the at least one standard interface is connected with the contact upper port of the relay and the contact lower port of the relay and the other end of the at least one non-standard interface is connected with; The relay is used for controlling the contact to be turned on or turned off based on the power-on state of the coil, so as to control the on-off between the master control device and the storage location device.
3. The formation and dispensing hub device of claim 1, wherein, The chemical composition and component assembly hub device further comprises an interface indicating lamp; One end of the interface indicating lamp is connected with the other end of the at least one non-standard interface, and the other end of the interface indicating lamp is connected with one end of the at least one standard interface; The interface indicating lamp is used for being lighted when the connected non-standard interface and the standard interface are turned on.
4. The formation and batching hub device according to any one of claims 1-3, characterized in that, The standard interface area comprises a plurality of first standard interfaces, and the non-standard interface area comprises a plurality of first non-standard interfaces; One end of each first standard interface comprises a plurality of first pins, and the other end of each first non-standard interface comprises a plurality of second upper pins, and each first pin is connected with one second upper pin via the double-layer PCBA circuit board.
5. The formation and dispensing hub device of claim 4, wherein, One end of each first non-standard interface comprises a plurality of second lower pins corresponding to each second upper pin; Each second lower pin is used for accessing the hardware device of the master control device or the hardware device of the storage location device.
6. The formation and dispensing hub device of claim 2, wherein, The standard interface area comprises a plurality of second standard interfaces, the non-standard interface area comprises a plurality of second non-standard interfaces, and the chemical composition and component assembly hub device further comprises a plurality of relays; One end of each second standard interface comprises a plurality of third pins, and the other end of each second non-standard interface comprises a plurality of fourth upper pins; The third pins are respectively connected with the upper and lower coil ports of the relay via the double-layer PCBA circuit board, and the fourth upper pins in the plurality of second non-standard interfaces are respectively connected with the fourth upper pins in other second non-standard interfaces, the plurality of upper contact ports of the relay, and the plurality of lower contact ports of the relay via the double-layer PCBA circuit board.
7. The formation and dispensation hub device of claim 1, wherein, The chemical composition dispensing device further comprises at least one through hole; The through hole penetrates the double-layer PCBA circuit board.
8. A formation and dispensing device, characterized by The chemical composition dispensing device comprises a plurality of the chemical composition dispensing hubs, a master control device, and at least one storage site device. The chemical composition dispensing hub is used to connect the master control device and at least one storage site device through a standard cable.
9. The chemical formation and dispensing device according to claim 8, characterized by The chemical composition dispensing device comprises a first chemical composition dispensing hub, a second chemical composition dispensing hub, a third chemical composition dispensing hub, a master control device, a first storage site device, and a second storage site device. The first chemical composition dispensing hub is disposed on the master control device, the second chemical composition dispensing hub is disposed on the first storage site device, and the third chemical composition dispensing hub is disposed on the second storage site device. One end of the first chemical composition dispensing hub is connected with the hardware device of the master control device, and the other end of the first chemical composition dispensing hub is connected with one end of the second chemical composition dispensing hub and one end of the third chemical composition dispensing hub through a standard cable. The other end of the second chemical composition dispensing hub is connected with the hardware device of the first storage site device. The other end of the third chemical composition dispensing hub is connected with the hardware device of the second storage site device.
10. The formation and dispensing device according to claim 8, wherein The chemical composition dispensing device further comprises a connecting piece. The connecting piece penetrates the through hole in the chemical composition dispensing hub, one end of the connecting piece is fixed on the chemical composition dispensing hub, and the other end of the connecting piece is fixed on the master control device or the storage site device.