Wiring structure of modularized combined vending machine
By setting multiple wiring slots and wire clamps in the modular vending machine, the problem of messy wiring during the modular vending machine assembly process is solved, orderly wiring is achieved, and safety and assembly efficiency are improved.
Patent Information
- Application Number
- CN202423096230.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-13
AI Technical Summary
Existing modular vending machines suffer from messy wiring during assembly, leading to safety and efficiency issues.
A wiring structure for a modular vending machine was designed. By setting multiple wiring slots and wire clamps on the vending machine, the wires are arranged in an orderly manner during the modular assembly process, avoiding cross-connections.
This technology enables orderly wiring during the assembly process of modular vending machines, improving safety performance, avoiding the risk of wire crossing, and increasing assembly efficiency.
Smart Images

Figure CN223501410U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of vending machine technology, and in particular to a wiring structure for a modular vending machine. Background Technology
[0002] A vending machine is a device that automatically sells goods. It works by combining electronic technology and mechanical components to achieve the function of automatically selling products.
[0003] Currently, existing blind box vending machines are mainly made of sheet metal and are quite large. Examples include the panoramic blind box smart vending machine disclosed in patent publication number CN218384099U and the automatic vending machine disclosed in patent publication number CN209571012U. These machines are labor-intensive and resource-intensive to transport, and some locations cannot accommodate large blind box vending machines due to space limitations, significantly restricting their application. To address this, existing patent publication number CN113597633A discloses a modular automatic vending machine; however, this modular automatic vending machine does not consider the problem of messy wiring between the various modular vending machines.
[0004] Therefore, there is an urgent need to propose a modular and modular wiring structure for vending machines. Summary of the Invention
[0005] One of the objectives of this invention is to provide a wiring structure for a modular vending machine, which aims to solve the technical problem of messy wiring between various modular vending machines.
[0006] To achieve the above objectives, this utility model provides a wiring structure for a modular vending machine, comprising several modular vending machines. Each modular vending machine includes a vending cabinet and a circuit board. An installation part is provided inside the vending cabinet. A notch communicating with the installation part is provided on the rear side panel of the vending cabinet at a position corresponding to the installation part. The circuit board is mounted on the installation part and located inside the vending cabinet. The installation part has two terminal mounting ports, which connect the notch and the inside of the vending cabinet. The two terminal mounting ports are respectively provided with an input terminal and an output terminal electrically connected to the circuit board. A first wiring groove and a second wiring groove are provided on the bottom surface of the vending cabinet. One end of each of the first and second wiring channels is connected to a notch. The other ends of the first and second wiring channels pass through the left and right sides of the bottom surface, respectively. The input terminal is connected to an input wire, and the output terminal is connected to an output wire. The input wire and the output wire can run along the first and second wiring channels, respectively. When the two modular vending machines are combined and spliced in the left and right direction, the first wiring channel of one vending machine is connected to the second wiring channel of the other vending machine. The output wire running along the second wiring channel on one vending machine is electrically connected to the input wire running along the first wiring channel on the other vending machine.
[0007] Furthermore, the first wiring groove and / or the second wiring groove are provided with a plurality of wire-clamping parts; the wire-clamping parts are provided at both opposite ends of the first wiring groove and / or the second wiring groove.
[0008] Furthermore, the first wiring groove and / or the second wiring groove are arc-shaped wiring grooves.
[0009] Furthermore, a wire clamping part is also provided in the middle position of the first wiring groove and / or the second wiring groove.
[0010] Furthermore, a third and a fourth wiring groove are provided on the bottom surface of the vending machine. One end of the third and fourth wiring grooves is connected to a notch. A first wire-passing slot communicating with the inside of the vending machine is also provided on the bottom surface of the vending machine. The other end of the third and fourth wiring grooves is connected to the first wire-passing slot. A second wire-passing slot communicating with the inside of the vending machine is provided on the top surface of the vending machine. The input wire and the output wire can also run along the third and second wiring grooves respectively. When the two modular vending machines are combined and spliced in the vertical direction, the output wire running along the fourth wiring groove on the vending machine passes through the first wire-passing slot and is electrically connected to the input wire running along the third wiring groove on the other vending machine.
[0011] Furthermore, the third wiring groove and / or the fourth wiring groove are provided with a plurality of wire-clamping parts; the wire-clamping parts are provided at both opposite ends of the third wiring groove and / or the fourth wiring groove.
[0012] Furthermore, the third wiring groove and / or the fourth wiring groove are arc-shaped wiring grooves.
[0013] Furthermore, a fifth wiring groove is provided on the top surface of the vending machine, and the fifth wiring groove on the vending machine is directly opposite to the fourth wiring groove on the bottom surface of another vending machine.
[0014] Furthermore, the installation section also includes a connecting notch and a power cord insertion point inside the vending machine.
[0015] Furthermore, a groove communicating with the inside of the vending machine is provided on the bottom surface of the vending machine corresponding to the position of the notch. The mounting part is provided in the groove. A receiving groove is provided on the side of the mounting part facing the rear panel of the vending machine. The receiving groove communicates with the notch and the groove. The terminal mounting port and the power cord through port are both located at the top of the receiving groove.
[0016] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0017] In use, the wiring structure of this modular vending machine involves connecting the input wire to the input terminal through the notch and the output wire to the output terminal through the notch. When two modular vending machines are assembled in a left-right direction, the first wiring groove on the first vending machine is connected to the second wiring groove on the second vending machine. At this time, the input wire on the first modular vending machine is used as the power line and runs along the first wiring groove on the first modular vending machine to connect to the mains power. The output wire on the first modular vending machine runs along the second wiring groove on the first modular vending machine and is electrically connected to the input wire running along the first wiring groove on the second modular vending machine. This completes the combined power supply of the two modular vending machines, avoids the wiring chaos between the various modular vending machines, avoids the risk of wire crossing, and thus improves the safety performance of the modular vending machine. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the modular combination automatic vending machine of this utility model;
[0019] Figure 2 for Figure 1 Another structural diagram from a different angle;
[0020] Figure 3 This is a schematic diagram of the wiring structure at the bottom of a single-module vending machine in the embodiment;
[0021] Figure 4 This is a schematic diagram of the connection between the circuit board and the mounting part in the embodiment;
[0022] Figure 5 This is a schematic diagram of the vertically assembled structure of the two-module vending machine involved in the embodiment;
[0023] Figure 6 This is a schematic diagram of the structure of the two-module vending machine assembled from left and right sides in the embodiment;
[0024] Figure 7 This is a schematic diagram of the structure of the three-module vending machine in the embodiment, which is assembled from left and right sides.
[0025] Numbering in each attached figure:
[0026] 1. Modular automatic vending machine; 10. Vending cabinet; 101. Mounting section; 1011. Terminal mounting port; 1012. Power cord insertion port; 1013. Receiving slot; 102. Bottom surface; 1021. First wiring slot; 1022. Second wiring slot; 1023. Third wiring slot; 1024. Fourth wiring slot; 1025. First wire insertion slot; 1026. Groove; 103. Wire clamping section; 104. Top surface; 1041. Second wire insertion slot; 1042. Fifth wiring slot; 105. Rear side plate; 1051. Notch; 11. Circuit board; 110. Input terminal; 111. Output terminal; 2. Power cord. Detailed Implementation
[0027] It should be understood that the specific embodiments described herein are merely illustrative of the present invention and are not intended to limit the present invention.
[0028] In the description of this utility model, it should be understood that the terms "width", "upper", "lower", "front", "rear", "top", "bottom", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0029] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "setting" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection, a direct connection, or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0030] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0031] Please refer to Figure 1 - Figure 7 This utility model provides a wiring structure for a modular vending machine, including several modular vending machines 1. Each modular vending machine 1 includes a vending cabinet 10 and a circuit board 11. A vertically extending mounting portion 101 is provided inside the vending cabinet 10. A notch 1051 communicating with the mounting portion 101 is provided on the rear side panel 105 of the vending cabinet 10 at a position corresponding to the mounting portion 101 (the notch 1051 can be referred to as...). Figure 5 The circuit board 11 is mounted on the mounting part 101 and located inside the vending machine 10. The circuit board 11 is used to control the vending machine 10. The mounting part 101 is provided with two terminal mounting ports 1011, which connect the notch 1051 and the inside of the vending machine 10. The two terminal mounting ports 1011 are respectively provided with an input terminal 110 and an output terminal 111 that are electrically connected to the circuit board 11. The bottom surface 102 of the vending machine 10 is provided with a first wiring groove 1021 and a second wiring groove 1022. One end of the first wiring groove 1021 and the second wiring groove 1022 are connected to the notch 1051. The other ends of the first wiring groove 1021 and the second wiring groove 1022 pass through the left and right sides of the bottom surface 102 of the modular automatic vending machine 1, respectively. The input terminal 110 is connected to an input wire (not shown), and the output terminal 111 is connected to an output wire (not shown). The input wire and the output wire can run along the first wiring groove 1021 and the second wiring groove, respectively.
[0032] In the case where the two automatic vending machines 1 are combined and spliced together in the left and right direction, the first wiring channel 1021 of one vending cabinet 10 is connected to the second wiring channel 1022 of the other vending cabinet 10, and the output wire of one vending cabinet 10 running along the second wiring channel 1022 is electrically connected to the input wire of the other vending cabinet 10 running along the first wiring channel 1021.
[0033] In summary, the wiring structure of this modular vending machine, when in use, connects the input wire to the input terminal 110 through the notch 1051 and the output wire to the output terminal 111 through the notch 1051. For example, when two modular vending machines 1 are assembled in the left-right direction, the first wiring groove 1021 on the first vending cabinet 10 is connected to the second wiring groove on the second vending cabinet 10. At this time, the input wire on the first modular vending cabinet 10 is used as the power supply wire and runs along the first modular vending cabinet 10... The first wiring channel 1021 on the first module vending machine 10 is connected to the mains power. The output wire on the first module vending machine 10 is routed along the second wiring channel on the first module vending machine 10 and electrically connected to the input wire routed along the first wiring channel 1021 on the second module vending machine 10. In this way, the wiring can be completed when the two module vending machines 1 are horizontally combined and spliced, avoiding the wiring chaos between the various module vending machines 1 of the modular combination vending machine, avoiding the risk of wire crossing, and thus improving the safety performance of the modular combination vending machine.
[0034] In another example, when three modular vending machines 1 are combined and spliced in the left-right direction, the input wire on the first modular vending cabinet 10 is used as the power line and is routed along the first wiring groove 1021 on the first modular vending cabinet 10 to connect to the mains power; the output wire on the first modular vending cabinet 10 is routed along the second wiring groove 1022 on the first modular vending cabinet 10 and is electrically connected to the input wire that is routed along the first wiring groove 1021 on the second modular vending cabinet 10; the output wire on the second modular vending cabinet 10 is routed along the second wiring groove 1022 on the second modular vending cabinet 10 and is electrically connected to the input wire that is routed along the first wiring groove 1021 on the third modular vending cabinet 10, and so on, thus completing the wiring when multiple modular vending machines 1 are combined and spliced in the left-right direction.
[0035] It should be noted that the various modules of the automatic vending machine 1 of this utility model can be used to sell blind boxes or other gifts, and are not limited here.
[0036] In addition, a third wiring groove 1023 and a fourth wiring groove 1024 are provided on the bottom surface 102 of the vending cabinet 10. One end of the third wiring groove 1023 and the fourth wiring groove 1024 is connected to the notch 1051. A first wire-passing groove 1025 communicating with the inside of the vending cabinet 10 is also provided on the bottom surface 102 of the vending cabinet 10. The other end of the third wiring groove 1023 and the fourth wiring groove 1024 is connected to the first wire-passing groove 1025. A second wire-passing groove 1041 communicating with the inside of the vending cabinet 10 is provided on the top surface 104 of the vending cabinet 10. The input wire and the output wire can also run along the third wiring groove 1023 and the second wiring groove, respectively.
[0037] In the case where the two vending machines 1 are vertically assembled, the output wires of the vending cabinet 10 running along the fourth wiring groove 1024 pass through the first wiring slot 1025 and are electrically connected to the input wires of the other vending cabinet 10 running along the third wiring groove 1023.
[0038] For example, when two modular vending machines 1 are vertically combined, the input wire on the first modular vending machine 10 is used as a power supply line and connected to the mains power. The output wire on the first modular vending machine 10 is routed along the fourth wiring groove 1024 on the first modular vending machine 10, passes through the first wiring slot 1025 into the first modular vending machine 10, and then exits from the second wiring slot 1041 on the first modular vending machine 10 to connect with the input wire on the second modular vending machine 10, which is routed along the third wiring groove 1023 on the second modular vending machine 10. In this way, the wiring is completed when the two modular vending machines 1 are vertically combined, avoiding the wiring chaos between the various modular vending machine 1s and the risk of wire crossing, thereby improving the safety performance of the modular vending machine.
[0039] In another example, when the three modular vending machines 1 are assembled vertically, the input wire on the first modular vending cabinet 10 is used as a power supply line and connected to the mains power; the output wire on the first modular vending cabinet 10 is routed along the fourth wiring groove 1024 on the first modular vending cabinet 10, passes through the first wiring slot 1025 into the first modular vending cabinet 10, and then exits from the second wiring slot 1041 on the first modular vending cabinet 10, connecting with the third wiring groove on the second modular vending cabinet 10. The input wires of the 1023 wiring are electrically connected; the wires on the second module vending machine 10 are routed along the fourth wiring groove 1024 on the second module vending machine 10, pass through the first wiring slot 1025 and enter the third module vending machine 10, and then pass out from the second wiring slot 1041 on the second module vending machine 10 and are electrically connected to the input wires of the wires on the third module vending machine 10 along the third wiring groove 1023 on the third module vending machine 10. This process is repeated to complete the wiring when multiple module vending machines 1 are vertically combined and spliced.
[0040] Based on the above structure, the mounting part 101 is also provided with a power cord through-hole 1012 connecting the notch 1051 and the vending machine 10. The power cord through-hole 1012 allows the power cord to pass through and electrically connect to the circuit board 11. Specifically, when multiple modular vending machines 1 are combined vertically and horizontally, only one power cord connects to the circuit board 11 on one modular vending machine 1. For example, the following describes the combination of two modular vending machines 1 horizontally and vertically. Figure 1The four modular vending machines 1 are respectively modular vending machine A, modular vending machine B, modular vending machine C, and modular vending machine D. The power cord is only electrically connected to the circuit board 11 on modular vending machine A. The output wire on modular vending machine A runs along its own fourth wiring groove 1024 and passes through its own first wiring slot 1025 into modular vending machine A. Then it comes out from the second wiring slot 1041 on modular vending machine A and connects with the input wire running along the third wiring groove 1023 on modular vending machine B. The second wiring groove on modular vending machine B... The output wires of the wiring trough 1022 are connected to the input wires of the wiring along the first wiring trough 1021 of the module vending machine C. The output wires of the wiring along the fourth wiring trough 1024 of the module vending machine C pass through the second wire through slot 1041 on the module vending machine D and enter the module vending machine D. Then they pass through the first wire through slot 1025 on the module vending machine D and connect to the input wires of the wiring along the first wiring trough 1021 of the module vending machine D. In this way, the wiring can be completed when multiple module vending machines 1 are combined horizontally and vertically.
[0041] In summary, the wiring structure of this modular vending machine can realize the wiring when multiple modular vending machines 1 are connected horizontally and vertically, avoiding the messy wiring between the various modular vending machines 1 and avoiding the risk of wire crossing.
[0042] It should be noted that when the above three modules of the vending machine are combined and assembled in the left-right direction, as another application scenario, refer to... Figure 7 The intermediate module vending machine can be connected to mains power by passing the power cord 2 through the power cord slot 1012 on the intermediate module vending machine and connecting it to the circuit board on the intermediate module vending machine. Output terminals 111 are fixed to both terminal mounting ports 1011 on the intermediate module vending machine. The output wire connected to one output terminal 111 runs along the first wiring groove 1021 on the intermediate module vending machine and connects to the input wire running along the first wiring groove 1021 on the left module vending machine. The output wire connected to the other output terminal 111 runs along the second wiring groove 1022 on the intermediate module vending machine and connects to the input wire running along the second wiring groove 1022 on the right module vending machine. In other words, the intermediate module vending machine has one input terminal and two output terminals. The input terminal is connected to mains power, and the two output terminals are respectively connected to the left and right module vending machines.
[0043] In one embodiment, a plurality of wire-clamping portions 103 are provided in the first wiring groove 1021 and / or the second wiring groove 1022. The wire-clamping portions 103 can secure the input wire within the first wiring groove 1021, preventing it from coming loose. Similarly, the wire-clamping portions 103 can secure the output wire within the second wiring groove 1022, preventing it from coming loose. Specifically, the aforementioned wire-clamping portions 103 are provided at both opposite ends of the first wiring groove 1021 and / or the second wiring groove 1022, further preventing the input wire from coming loose in the first wiring groove 1021 and further preventing the output wire from coming loose in the second wiring groove. Furthermore, a wire-clamping portion 103 is also provided at the middle position of the first wiring groove 1021 and / or the second wiring groove 1022, further preventing the input wire from coming loose in the first wiring groove 1021 and further preventing the output wire from coming loose in the second wiring groove 1022.
[0044] In one embodiment, the first wiring groove 1021 and / or the second wiring groove 1022 are arc-shaped wiring grooves. Arc-shaped wiring grooves can avoid the occurrence of right angles and acute angles, thereby reducing the abruptness and messiness of the wires.
[0045] In one embodiment, a plurality of wire-clamping portions 103 are provided in the third wiring slot 1023 and / or the fourth wiring slot 1024. The wire-clamping portions 103 can hold the input wire in the third wiring slot 1023, preventing it from coming loose. Similarly, the wire-clamping portions 103 can hold the output wire in the fourth wiring slot 1024, preventing it from coming loose. Specifically, the aforementioned wire-clamping portions 103 are provided at both opposite ends of the third wiring slot 1023 and / or the fourth wiring slot 1024, further preventing the input wire from coming loose in the third wiring slot 1023 and further preventing the output wire from coming loose in the fourth wiring slot 1024. In addition, a wire clamping part 103 is also provided in the middle position of the third wiring groove 1023 and / or the fourth wiring groove 1024 to further prevent the input wire from coming loose in the third wiring groove 1023 and to further prevent the output wire from coming loose in the fourth wiring groove 1024.
[0046] In one embodiment, the third wiring groove 1023 and / or the fourth wiring groove 1024 are arc-shaped wiring grooves. The angle design of the third wiring groove 1023 and the fourth wiring groove can reduce the pressure and friction on the wires during the laying process, thereby reducing the risk of wire damage or aging. In addition, the angle of the third wiring groove 1023 and the fourth wiring groove 1024 can also effectively avoid the "sharp angle" problem that may be caused by right-angle wiring, improving the service life and safety of the wires.
[0047] In one embodiment, a fifth wiring groove 1042 is provided on the top surface 104 of the vending machine 10. The fifth wiring groove 1042 on one vending machine 10 is directly opposite to the fourth wiring groove 1024 on the bottom surface 102 of another vending machine 10. This can increase the anti-detachment performance of the output wires running along the fourth wiring groove 1024.
[0048] It should be noted that in two adjacent vending machine modules 1, the output wires running along the second wiring groove in one vending machine module 1 are shared with the input wires running along the first wiring groove 1021 in the other vending machine module 1; similarly, the output wires running along the fourth wiring groove 1024 in one vending machine module 1 are shared with the input wires running along the third wiring groove 1023 in the other vending machine module 1.
[0049] In one embodiment, a groove 1026 communicating with the interior of the vending machine 10 is provided on the bottom surface 102 of the vending machine 10 at the position corresponding to the notch 1051. The aforementioned mounting part 101 is provided in the groove 1026. The mounting part 101 extends vertically, and a receiving groove 1013 is provided on the side of the mounting part 101 facing the rear side plate 105 of the vending machine 10. The receiving groove 1013 communicates with the notch 1051 and the groove 1026. The terminal mounting port 1011 and the power cord through port 1012 are both located at the top of the receiving groove 1013. Thus, the receiving groove 1013 can accommodate the connection terminal on the input wire connected to the input terminal 110, and can also accommodate the connection terminal on the output wire connected to the output terminal 111 (not shown), preventing the connection terminals from being exposed and protecting the connection terminals on the input or output wires. It also protects the input terminal 110 and the output terminal 111.
[0050] The above description is only a preferred embodiment of the present utility model and does not limit the patent scope of the present utility model. Any equivalent structural or procedural transformations made based on the content of the present utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of the present utility model.
Claims
1. A wiring structure for a modular vending machine, characterized in that, The system comprises several modular vending machines, each including a vending cabinet and a circuit board. An installation section is located within the vending cabinet. A notch corresponding to the installation section is provided on the rear panel of the vending cabinet, communicating with the installation section. The circuit board is mounted on the installation section and located within the vending cabinet. The installation section has two terminal mounting ports, which connect to the notch and the interior of the vending cabinet. The two terminal mounting ports are respectively provided with an input terminal and an output terminal electrically connected to the circuit board. A first wiring groove and a second wiring groove are provided on the bottom surface of the vending cabinet, with one end of each of the first and second wiring grooves connected to the notch. The first and second wiring channels are connected, with the other ends of the first and second wiring channels passing through the left and right sides of the bottom surface, respectively. The input terminal is connected to the input wire, and the output terminal is connected to the output wire. The input wire and the output wire can run along the first and second wiring channels, respectively. When the two automatic vending machines are combined and spliced in the left and right direction, the first wiring channel of one vending machine is connected to the second wiring channel of the other vending machine, and the output wire running along the second wiring channel on one vending machine is electrically connected to the input wire running along the first wiring channel on the other vending machine.
2. The wiring structure of the modular combined automatic vending machine according to claim 1, characterized in that, The first wiring groove and / or the second wiring groove are provided with a plurality of wire clamping parts for clamping wires; the wire clamping parts are provided at both opposite ends of the first wiring groove and / or the second wiring groove.
3. The wiring structure of the modular combined automatic vending machine according to claim 1 or 2, characterized in that, The first wiring groove and / or the second wiring groove are arc-shaped wiring grooves.
4. The wiring structure of the modular combined automatic vending machine according to claim 2, characterized in that, The wire clamping part is also provided in the middle position of the first wiring groove and / or the second wiring groove.
5. The wiring structure of the modular combined automatic vending machine according to claim 1, characterized in that, The vending machine has a third and a fourth wiring groove on its bottom surface, one end of which is connected to a notch. The bottom surface also has a first wiring slot that communicates with the inside of the vending machine, and the other end of the third and fourth wiring grooves is connected to the first wiring slot. The top surface of the vending machine has a second wiring slot that communicates with the inside of the vending machine. The input and output wires can run along the third and second wiring grooves, respectively. When the two vending machine modules are vertically assembled, the output wire running along the fourth wiring groove on one vending machine passes through the first wiring slot and connects to the input wire running along the third wiring groove on the other vending machine.
6. The wiring structure of the modular combined automatic vending machine according to claim 5, characterized in that, The third wiring slot and / or the fourth wiring slot are provided with a plurality of wire clamping parts for clamping wires; the wire clamping parts are provided at both opposite ends of the third wiring slot and / or the fourth wiring slot.
7. The wiring structure of the modular combined automatic vending machine according to claim 6, characterized in that, The third and / or fourth wiring slots are arc-shaped wiring slots.
8. The wiring structure of the modular combined automatic vending machine according to claim 5 or 7, characterized in that, A fifth wiring groove is provided on the top surface of the vending machine, and the fifth wiring groove on the vending machine is directly opposite to the fourth wiring groove on the bottom surface of another vending machine.
9. The wiring structure of the modular combined automatic vending machine according to claim 1 or 5, characterized in that, The mounting section is also provided with a power cord opening that connects the notch to the power cord inside the vending machine.
10. The wiring structure of the modular combined automatic vending machine according to claim 9, characterized in that, The bottom surface of the vending machine has a groove corresponding to the notch and communicating with the inside of the vending machine. The mounting part is provided in the groove. The mounting part has a receiving groove on the side facing the rear panel of the vending machine. The receiving groove communicates with the notch and the groove. The terminal mounting port and the power cord through port are both located at the top of the receiving groove.
Citation Information
Patent Citations
Modular vending machines
CN113597633A
Blind box machine
CN209571012U
Panoramic blind box intelligent vending machine
CN218384099U