A charging management cabinet
Patent Information
- Application Number
- CN202521514269.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-20
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-07-20
AI Technical Summary
然而,受限于紧凑的柜体空间,以及可能存在的设计不完善、生产/安装工艺不规范、维护不当等问题,极易出现内部走线混乱的局面
[0026]本实用新型提供的充电管理柜,通过设置其中的充电格舱列,使其格舱背板和电锁侧板均为具有线缆通道的中空板,为各个充电格舱的连接线缆(电控锁的连接线和充电插口的连接线缆等)提供收纳空间,能够防止多个充电格舱的连接线缆随意混乱走线于第一柜体内;同时,通过设置格舱背板上有连通线缆通道的出线孔,使得线缆通道内的连接线缆可以经由该出线孔进入走线通道,不仅进一步实现了连接线缆收纳(多根连接线缆被一个出线孔收纳限位),还可以实现一定程度的分类(如,一个充电格栅的连接线缆可以自同一出线孔穿出);最终,通过设置格舱背板和第一柜体的第一背门板之间具有走线通道,使得各个充电格舱的连接线缆可以经由走线通道与电源设备及控制设备电连接,保证了充电管理柜内的走线规划性和有序性,提高其安全性。
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Figure CN224669488U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mechanical automation technology, and in particular to a charging management cabinet. Background Technology
[0002] A charging management cabinet is a specialized device used to centrally manage, store, and charge electrical equipment (such as mobile phones, tablets, laptops, and walkie-talkies, or electric work tools and electric vehicles). It is widely used in enterprises, schools, hospitals, factories, residential areas, and other scenarios.
[0003] Charging management cabinets, due to their inherent requirements for high density, multifunctionality, and intelligence, result in a large number and variety of cables inside. However, limited cabinet space, along with potential design flaws, non-standard manufacturing / installation processes, and improper maintenance, easily leads to a chaotic internal wiring situation. This chaos is not merely an aesthetic issue; its core dangers include severely hindering heat dissipation, increasing cable insulation damage and short-circuit risks, signal interference, increased maintenance difficulty and the risk of misoperation, ultimately posing serious safety hazards such as electrical fires, equipment damage, and electric shock. Therefore, resolving the chaotic wiring problem is one of the key technical challenges in improving the inherent safety of charging management cabinets. Utility Model Content
[0004] Therefore, in order to solve the problems in the prior art, this utility model provides a charging management cabinet with high security, which has a cable channel with connecting cables for each charging compartment.
[0005] Therefore, this utility model provides a charging management cabinet, including: a control cabinet, the control cabinet including:
[0006] First cabinet;
[0007] Two first charging compartment rows are installed inside the first cabinet. Each first charging compartment row includes a compartment back panel, an electric lock side panel, and a connecting side panel. The compartment back panel, electric lock side panel, and connecting side panel enclose an open compartment cavity, which is divided into several charging compartments by a partition. Each charging compartment has a door panel at its opening, and the electric lock of each charging compartment is located inside the electric lock side panel. Both the compartment back panel and the electric lock side panel are hollow panels with cable channels, and the compartment back panel has a cable outlet hole connecting the cable channels inside the compartment back panel and the electric lock side panel. There is a cable routing channel between the compartment back panel and the first back door panel of the first cabinet.
[0008] The control room is located inside the first cabinet and at the top of one of the first charging compartments; the control room has a control compartment door at its opening and contains power supply equipment and control equipment.
[0009] The connecting cables of each charging compartment are all stored in the cable channel. After passing through the cable outlet, the connecting cables in the cable channel are electrically connected to the power supply and control equipment via the cable routing channel.
[0010] Optionally, the grid back panel includes a first sub-back panel and a second sub-back panel, a cable channel is formed between the first sub-back panel and the second sub-back panel, and a wiring channel is formed between the second sub-back panel and the first back panel; both the first sub-back panel and the second sub-back panel are provided with a number of mounting holes corresponding to each charging grid.
[0011] Each charging compartment is also equipped with a cooling fan. The two ends of the cooling fan's axis are fixed in the mounting holes on the first and second sub-back panels, respectively. The first back panel has several heat dissipation holes, and the wiring channels and heat dissipation holes form the heat dissipation channels for the cooling fan.
[0012] Optionally, a first mounting plate and a second mounting plate are provided in the control room. The power supply equipment is fixedly mounted on the first mounting plate. A first electrical control contactor is fixed on the second mounting plate. The first electrical control contactor is connected to the current circuit breaker of the socket in each charging compartment in the control cabinet. The first electrical control contactor is electrically connected to the control equipment.
[0013] Optionally, the electric lock side plates of the two first charging compartments are arranged adjacent to each other, and there is an installation channel between the electric lock side plates of the two first charging compartments.
[0014] Optionally, the first cabinet is also provided with a first partition mounting plate, which stands upright in the mounting channel between the two first charging compartments and extends toward the first back door panel; there is a wire passage gap between the first partition mounting plate and the first back door panel.
[0015] The first temperature sensor is fixed on the first partition mounting plate and is connected to the control device.
[0016] Optionally, the control device is an industrial control all-in-one computer, and the operation display screen of the industrial control all-in-one computer is embedded in the control compartment door; the control cabinet also includes an authentication device installed on the control compartment door.
[0017] Optionally, the charging management cabinet further includes: at least one module cabinet; the module cabinet includes:
[0018] Second cabinet;
[0019] Two second charging compartment rows are installed inside the second cabinet; the structure of the second charging compartment rows is the same as that of the first charging compartment rows.
[0020] Cable routing holes are provided on the side panels of adjacent cabinets between modular cabinets and control cabinets, or between two modular cabinets. The connecting cables in each modular cabinet are electrically connected to the power supply and control equipment in the control cabinet through the corresponding cable routing holes.
[0021] Optionally, the module cabinet also includes a second electrical control contactor, which is connected to the current circuit breaker of the socket in each charging compartment of the module cabinet, and is electrically connected to the control equipment.
[0022] Optionally, a third mounting plate is provided inside the second cabinet. The third mounting plate is located at the bottom of the second cabinet and in the wiring channel between the second charging compartment and the second cabinet. The second electrical control contactor is fixed on the third mounting plate, and there is a wiring gap between the bottom of the second electrical control contactor and the bottom of the second cabinet.
[0023] Optionally, a second partition mounting plate is also provided inside the second cabinet. The second partition mounting plate is erected in the mounting channel between the two second charging compartments and extends toward the second back door panel of the second cabinet. There is a wire passage gap between the second partition mounting plate and the second back door panel.
[0024] A second temperature sensor is fixed on the second partition mounting plate, and the second temperature sensor is connected to the control equipment.
[0025] The technical solution provided by this utility model has the following advantages:
[0026] The charging management cabinet provided by this utility model features charging compartments with hollow panels on the back and side panels of the compartments and electric locks, providing storage space for the connecting cables of each charging compartment (such as the connecting cables for the electric lock and the charging ports). This prevents the connecting cables from multiple charging compartments from being haphazardly routed within the cabinet. Furthermore, the back panels of the compartments have outlet holes connecting to the cable channels, allowing the connecting cables to enter the cable routing channels. This not only further enhances cable management (multiple connecting cables are contained and limited by a single outlet hole) but also allows for a degree of categorization (e.g., connecting cables from one charging compartment can exit through the same outlet hole). Finally, the cable routing channel between the compartment back panels and the first back panel of the cabinet allows the connecting cables from each charging compartment to be electrically connected to the power supply and control equipment, ensuring the planned and orderly routing of cables within the charging management cabinet and improving its safety. Attached Figure Description
[0027] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0028] Figure 1 This is a schematic diagram of the control cabinet in the charging management cabinet provided in an embodiment of the present utility model;
[0029] Figure 2 A schematic diagram of the specific structure of a control cabinet provided for an embodiment of this utility model;
[0030] Figure 3 and Figure 4 A cross-sectional view of a control cabinet provided for an embodiment of this utility model;
[0031] Figure 5 This is a structural diagram of the control cabinet and module cabinet in the charging management cabinet provided in an embodiment of the present utility model;
[0032] Figure 6 A schematic diagram of the specific structure of a modular cabinet provided in an embodiment of this utility model;
[0033] Explanation of reference numerals in the attached figures:
[0034] 100 - Control cabinet;
[0035] 110 - First cabinet; 110a - Cable routing channel; 110b - Installation channel; 110c - Cable hole; 111 - First back door panel;
[0036] 120 - First charging compartment row; 121 - Compartment back panel; 121a - Cable outlet; 1211 - First sub-back panel; 1212 - Second sub-back panel; 122 - Electric lock side panel; 123 - Connecting side panel; 124 - Partition; 125 - Door panel; 126 - Cooling fan; 120a - Cable channel; 127 - Socket; 128 - Electric lock;
[0037] 130 - Control room; 131 - Control compartment door; 132 - Power supply equipment; 133 - Control equipment; 133a - Operation display screen; 134 - First mounting plate; 135 - Second mounting plate; 136 - Authentication equipment;
[0038] 140 - First electrical contactor;
[0039] 150 - First partition mounting plate;
[0040] 160 - First temperature sensor;
[0041] 200-Module Cabinet;
[0042] 210 - Second cabinet;
[0043] 220 - Second charging compartment;
[0044] 230 - Second electrical contactor;
[0045] 240 - Third mounting plate;
[0046] 250 - Second partition mounting plate;
[0047] 260 - Second temperature sensor. Detailed Implementation
[0048] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0049] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and 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, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0050] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" 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 or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0051] Furthermore, the technical features involved in the different embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.
[0052] Please refer to Figures 1-6 This is a schematic diagram of the structure of a charging management cabinet provided in an embodiment of the present utility model. The charging management cabinet may include only one control cabinet 100, or it may include at least one module cabinet 200 in addition to one control cabinet 100. The module cabinets 200 are detachably connected to the control cabinet 100 in sequence.
[0053] Specifically, one of the two cabinet side panels of the control cabinet 100 is provided with an interface for connecting to an external power source and a circuit breaker (generally the side panel near the control room 130 in the control cabinet 100). Therefore, the module cabinet 200 is connected to the other cabinet side panel of the control cabinet 100.
[0054] Please refer to Figures 1-4 This is a structural schematic diagram of a control cabinet 100 provided in an embodiment of the present utility model. Figures 1-4 As shown, the control cabinet 100 includes a first cabinet 110, a first charging compartment 120, and a control room 130.
[0055] Among them, such as Figure 1 and Figure 2 As shown, there are two first charging compartment rows 120, which are arranged inside the first cabinet 110 and side by side along the panel plane of the first cabinet 110.
[0056] Specifically, such as Figure 3 and Figure 4 As shown, the first charging compartment row 120 includes a compartment back panel 121, an electric lock side panel 122, and a connecting side panel 123. The compartment back panel 121, the electric lock side panel 122, and the connecting side panel 123 enclose a compartment cavity with an opening. The compartment cavity is divided into several charging compartments by a partition 124. Each charging compartment has a door panel 125 at its opening. The electric lock 128 of each charging compartment is located inside the electric lock side panel 122. Both the compartment back panel 121 and the electric lock side panel 122 are hollow panels with cable channels 120a. The compartment back panel 121 is provided with an outlet hole 121a that connects the cable channels 120a inside the compartment back panel 121 and the electric lock side panel 122. There is a cable routing channel 110a between the compartment back panel 121 and the first back door panel 111 of the first cabinet 110.
[0057] In a specific implementation, the compartment back panel 121 can be configured to include a first sub-back panel 1211 and a second sub-back panel 1212, with the aforementioned cable channel 120a formed between the first sub-back panel 1211 and the second sub-back panel 1212, and a wiring channel 110a formed between the second sub-back panel 1212 and the first back door panel 111. Similarly, the electric lock side panel 122 can be configured to include a first sub-side panel and a second sub-side panel, and the connecting side panel 123 can include a third sub-side panel and a fourth sub-side panel, with the aforementioned cable channel 120a formed between the first sub-side panel and the second sub-side panel. In a specific implementation, the overlapping and fixing methods between the various panels can be any of the existing technologies. Figure 3 and Figure 4 The overlapping method shown is one specific example and does not limit its specific implementation.
[0058] In practice, to improve assembly convenience, such as Figure 4 As shown, the electric lock side plates 122 of two first charging compartment rows 120 can be arranged adjacent to each other, and there is an installation channel 110b between the electric lock side plates 122 of the two first charging compartment rows 120.
[0059] In specific implementation, to further improve the security of the charging management cabinet in this embodiment, such as... Figures 2-4 As shown, the first sub-back panel 1211 and the second sub-back panel 1212 are provided with a number of mounting holes corresponding to each charging compartment; each charging compartment is also provided with a cooling fan 126, and the two ends of the cooling fan 126 in the axial direction are respectively fixed in the mounting holes on the first sub-back panel 1211 and the second sub-back panel 1212; the first back panel 111 is provided with a number of heat dissipation holes, and the wiring channel 110a and the heat dissipation holes form a heat dissipation channel for the cooling fan 126.
[0060] Specifically, such as Figure 1 and Figure 2 As shown, the control room 130 is located inside the first cabinet 110 and is situated at the top of one of the first charging compartment rows 120; the control room 130 has a control compartment door 131 at its opening, and the control room 130 contains a power supply device 132 and a control device 133.
[0061] In this embodiment, the connecting cables of each charging compartment are housed within the cable channel 120a. The connecting cables within the cable channel 120a pass through the outlet hole 121a and are electrically connected to the power supply device 132 and the control device 133 via the cable routing channel 110a. Specifically, the connecting cables include power connection cables and communication connection cables, wherein the power connection cables are connected to the power supply device 132, and the communication connection cables are connected to the control device 133.
[0062] Those skilled in the art should understand that the socket 127 in this embodiment is also an electrically controlled socket that is electrically connected to the control device 133 via a communication connection line; specifically, the current circuit breaker in the electrically controlled socket is electrically connected to the control device 133.
[0063] In a specific implementation, the control device 133 can be set as an industrial control all-in-one computer, and the operation display screen 133a of the industrial control all-in-one computer is embedded in the control compartment door 131. The control cabinet 100 can also include an identity verification device 136 set on the control compartment door 131. In a specific implementation, the identity verification device 136 can be set as one or more of a facial information collection camera, a barcode scanner, and a card reader.
[0064] As an optional implementation of this embodiment, in order to further improve the security of the charging management cabinet in this embodiment, such as... Figure 2As shown, a first mounting plate 134 and a second mounting plate 135 can be installed in the control room 130. The power supply equipment 132 is fixedly installed on the first mounting plate 134. A first electrical contactor 140 is fixed on the second mounting plate 135. The first electrical contactor 140 is connected to the current circuit breaker of the socket 127 in each charging compartment within the control cabinet 100. The first electrical contactor 140 is also electrically connected to the control equipment 133. In the event of an abnormality in a charging compartment within the control cabinet 100, the first electrical contactor 140 can be controlled to disconnect all sockets 127 from the power supply, thus achieving safety protection.
[0065] As an optional implementation of this embodiment, in order to further improve the security of the charging management cabinet in this embodiment, such as... Figure 2 and Figure 4 As shown, the first cabinet 110 may also include a first partition mounting plate 150. The first partition mounting plate 150 is erected within the mounting channel 110b between the two first charging compartment rows 120 and extends towards the first back door panel 111. A wire passage gap exists between the first partition mounting plate 150 and the first back door panel 111. A first temperature sensor 160 is fixed to the first partition mounting plate 150 and is connected to the control device 133. This allows monitoring of the temperature within the control cabinet 100 between the two first charging compartment rows 120, and sending a signal to the control device 133 when the temperature is abnormal, enabling the control device 133 to promptly disconnect the current circuit breakers of all sockets 127. Specifically, when the control cabinet 100 contains a first electrical contactor 140, the control device 133 can control the current circuit breakers of all sockets 127 to disconnect via the first electrical contactor 140.
[0066] Please refer to Figure 5 and Figure 6 This is a structural schematic diagram of a modular cabinet 200 provided in this embodiment. Figure 5 and Figure 6 As shown, the module cabinet 200 includes a second cabinet 210 and a second charging compartment row 220.
[0067] Among them, such as Figure 6As shown, there are two second charging compartment rows 220, which are disposed inside the second cabinet 210 and arranged side by side along the panel plane of the second cabinet 210. The structure of the second charging compartment row 220 is the same as that of the first charging compartment row 120; however, those skilled in the art should understand that, because the control cabinet 100 has a control room 130, the height of one of the first charging compartment rows 120 in the control cabinet 100 (the first charging compartment row 120 with the control room 130 on its top) is lower than that of the other first charging compartment row 120, while the module cabinet 200 does not have a control room 130, so the two second charging compartment rows 220 are the same height; this difference in size does not affect the fact that they are the same structure.
[0068] In this embodiment, as Figure 1 and 6 As shown, a cable pass-through hole 110c is provided on the adjacent cabinet side panel between the module cabinet 200 and the control cabinet 100 or between two module cabinets 200. The connecting cables in each module cabinet 200 are electrically connected to the power supply device 132 and the control device 133 in the control cabinet 100 through the corresponding cable pass-through hole 110c.
[0069] In practice, several connecting plates can be installed between the module cabinet 200 and the control cabinet 100. One end of the connecting plate is threaded to the control cabinet 100 and the other end is threaded to the module cabinet 200, so that the module cabinet 200 and the control cabinet 100 can be detachably connected. Similarly, when connecting one module cabinet 200 to another module cabinet 200, several connecting plates can be installed between the two module cabinets 200.
[0070] In this embodiment, to further improve the safety of the charging management cabinet, such as... Figure 6 As shown, the module cabinet 200 may also include a second electrical control contactor 230, which is connected to the current circuit breaker of the socket 127 in each charging compartment of the module cabinet 200, and the second electrical control contactor 230 is electrically connected to the control device 133.
[0071] In this embodiment, to further improve the safety of the charging management cabinet, such as... Figure 6 As shown, a third mounting plate 240 can be provided inside the second cabinet 210. The third mounting plate 240 is located at the bottom of the second cabinet 210 and in the wiring channel 110a between the second charging compartment 220 and the second cabinet 210. The second electrical control contactor 230 is fixed on the third mounting plate 240, and there is a wire passage gap between the bottom of the second electrical control contactor 230 and the bottom of the second cabinet 210.
[0072] In this embodiment, to further improve the safety of the charging management cabinet, such as... Figure 6As shown, the second cabinet 210 may also include a second partition mounting plate 250. The second partition mounting plate 250 is erected in the mounting channel 110b between the two second charging compartment rows 220 and extends toward the second back door panel of the second cabinet 210. There is a wire passage gap between the second partition mounting plate 250 and the second back door panel. A second temperature sensor 260 is fixed on the second partition mounting plate 250 and is connected to the control device 133.
[0073] In this embodiment, the charging management cabinet is configured with charging compartment rows, where the compartment back panels 121 and the electric lock side panels 122 are both hollow panels with cable channels 120a. This provides storage space for the connecting cables of each charging compartment (connecting cables of the electric lock 128 and charging sockets, etc.), preventing the connecting cables of multiple charging compartments from being haphazardly routed within the cabinet. Simultaneously, by providing outlet holes 121a on the compartment back panels 121 that connect to the cable channels 120a, the connecting cables within the cable channels 120a can enter the wiring channel 11 via these outlet holes 121a. 0a not only further realizes the storage of connecting cables (multiple connecting cables are stored and limited by a single outlet hole 121a), but also enables a certain degree of classification (e.g., connecting cables of a charging grid can pass through the same outlet hole 121a); finally, by setting a cable routing channel 110a between the grid back panel 121 and the first back door panel 111 of the first cabinet 110, the connecting cables of each charging grid can be electrically connected to the power supply equipment 132 and the control equipment 133 via the cable routing channel 110a, ensuring the planning and orderliness of the wiring in the charging management cabinet and improving its safety.
[0074] Obviously, the above embodiments are merely illustrative examples for clear explanation and are not intended to limit the implementation. Those skilled in the art will recognize that other variations or modifications can be made based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the protection scope of this utility model.
Claims
1. A charging management cabinet, characterized in that, include: Control cabinet, the control cabinet comprising: First cabinet; Two first charging compartment rows are arranged inside the first cabinet. Each first charging compartment row includes a compartment back panel, an electric lock side panel, and a connecting side panel. The compartment back panel, the electric lock side panel, and the connecting side panel enclose an open compartment cavity. The compartment cavity is divided into several charging compartments by a partition. Each charging compartment opening is provided with a door panel. The electric lock of each charging compartment is located inside the electric lock side panel. Both the compartment back panel and the electric lock side panel are hollow panels with cable channels. The compartment back panel is provided with a cable outlet hole connecting the cable channels inside the compartment back panel and the electric lock side panel. There is a cable routing channel between the compartment back panel and the first back door panel of the first cabinet. A control room is located inside the first cabinet and at the top of one of the first charging compartments; the control room has a control compartment door at its opening and contains power supply equipment and control equipment. The connecting cables of each of the charging compartments are housed in the cable channel. The connecting cables in the cable channel pass through the outlet hole and are electrically connected to the power supply and control equipment via the cable routing channel.
2. The charging management cabinet according to claim 1, characterized in that, The compartment back panel includes a first sub-back panel and a second sub-back panel. The cable channel is formed between the first sub-back panel and the second sub-back panel. The wiring channel is formed between the second sub-back panel and the first back panel. The first sub-back panel and the second sub-back panel are each provided with a plurality of mounting holes corresponding to each of the charging compartments. Each of the charging compartments is also equipped with a cooling fan, with both ends of the cooling fan fixed in mounting holes on the first sub-back panel and the second sub-back panel, respectively. The first back panel is provided with a plurality of heat dissipation holes, and the wiring channel and the heat dissipation holes form the heat dissipation channel for the cooling fan.
3. The charging management cabinet according to claim 1, characterized in that, The control room is provided with a first mounting plate and a second mounting plate. The power supply equipment is fixedly mounted on the first mounting plate. A first electrical control contactor is fixed on the second mounting plate. The first electrical control contactor is connected to the current circuit breaker of the socket in each charging compartment in the control cabinet. The first electrical control contactor is electrically connected to the control equipment.
4. The charging management cabinet according to claim 1, characterized in that, The electric lock side plates of the two first charging compartments are arranged adjacent to each other, and there is an installation channel between the electric lock side plates of the two first charging compartments.
5. The charging management cabinet according to claim 4, characterized in that, The first cabinet is also provided with a first partition mounting plate, which stands upright in the mounting channel between the two first charging compartment rows and extends toward the first back door panel; there is a wire passage gap between the first partition mounting plate and the first back door panel. A first temperature sensor is fixed on the first partition mounting plate, and the first temperature sensor is connected to the control device.
6. The charging management cabinet according to claim 1, characterized in that, The control device is an industrial control all-in-one computer, and the operation display screen of the industrial control all-in-one computer is embedded in the control compartment door; the control cabinet also includes an identity verification device installed on the control compartment door.
7. The charging management cabinet according to any one of claims 1-6, characterized in that, Also includes: At least one modular cabinet; the modular cabinet includes: Second cabinet; Two second charging compartment rows are installed inside the second cabinet; the structure of the second charging compartment rows is the same as that of the first charging compartment rows. The module cabinet and the control cabinet, or the adjacent cabinet side panel between two module cabinets, are provided with cable passage holes. The connecting cables in each module cabinet are electrically connected to the power supply and control equipment in the control cabinet through the corresponding cable passage holes.
8. The charging management cabinet according to claim 7, characterized in that, The module cabinet also includes a second electrical control contactor, which is connected to the current circuit breaker of the socket in each charging compartment of the module cabinet, and is also electrically connected to the control equipment.
9. The charging management cabinet according to claim 8, characterized in that, The second cabinet is provided with a third mounting plate, which is located at the bottom of the second cabinet and in the wiring channel between the second charging compartment and the second cabinet; the second electrical control contactor is fixed on the third mounting plate, and there is a wiring gap between the bottom of the second electrical control contactor and the bottom of the second cabinet.
10. The charging management cabinet according to claim 7, characterized in that, The second cabinet is also provided with a second partition mounting plate, which stands upright in the mounting channel between the two second charging compartments and extends toward the second back door panel of the second cabinet; there is a wire passage gap between the second partition mounting plate and the second back door panel; A second temperature sensor is fixed on the second partition mounting plate, and the second temperature sensor is connected to the control device.