A charging cabin and a guide device cabinet
Patent Information
- Application Number
- CN202521169711.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-09
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-06-09
AI Technical Summary
[0003]现有的导览设备柜一般采用多个充电仓格,同时多个充电仓格共用单一主电源输入或集中式电源模块,如此结构的导览设备柜在应用时,只要单点故障,如主电源线、总开关或集中式电源模块故障,则会导致整柜设备停止充电,甚至无法开柜取放设备
[0015] The charging compartment and guide equipment cabinet solution provided by this utility model adopts a pluggable module structure for the charging unit in the charging compartment. Each charging unit is detachably installed in the charging compartment using a bayonet sliding groove structure. Each charging unit is powered independently, thereby realizing single-point rapid replacement and repair of single-point faults in the charging compartment. That is, it enables quick and convenient replacement of a single charging unit without replacing the entire charging compartment, which greatly improves the fault repair efficiency of the charging compartment and/or guide equipment cabinet and reduces costs.
Smart Images

Figure CN224746285U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to electronic equipment cabinets, specifically to the charging structure of a guide equipment cabinet. Background Technology
[0002] A guidebook equipment cabinet is a specialized cabinet used for storing, managing, charging, and distributing / collecting electronic guidebooks. They are commonly found in museums, art galleries, scenic areas, theme parks, exhibition halls, historical sites, conference centers, and other venues that require guided tour services.
[0003] Existing information technology cabinets typically use multiple charging compartments, with these compartments sharing a single main power input or centralized power module. With this structure, a single point of failure—such as a faulty main power line, main switch, or centralized power module—will cause the entire cabinet to stop charging, and may even prevent the cabinet from being opened to retrieve equipment. Furthermore, this structure also presents challenges for later maintenance. If a problem occurs, the entire charging compartment needs to be replaced, resulting in a large workload and low efficiency, significantly impacting the reliability and stability of the information technology cabinet's operation. Utility Model Content
[0004] To address the problems existing in the charging compartments of tour guide equipment cabinets, the purpose of this utility model is to provide a charging compartment that adopts a structure of splicing and combining several independent charging units. Each charging unit is independently powered, thereby enabling quick replacement and maintenance of single-point faults in the charging compartment, avoiding the need to replace the entire charging compartment, and effectively improving the reliability of the charging compartment operation. On this basis, this utility model further provides a tour guide equipment cabinet using this charging compartment.
[0005] To achieve the above objectives, the present invention provides a charging case comprising a case body and several independent charging units. The case body is provided with a slot along its extension direction, and the several independent charging units are sequentially inserted into the slots on the case body. Each charging unit is independently connected to an external power supply.
[0006] Furthermore, the hopper body has a U-shaped cross-section and a groove structure, with fixing plates at both ends, and corresponding mounting slots are provided on the side walls of the hopper body.
[0007] Furthermore, the independent charging unit includes a charging circuit board and a limiting member. The charging circuit board is provided with a charging interface that can be inserted into a slot on the compartment. The limiting member has a limiting hole adapted to the guide device. The limiting member can be inserted into the slot on the compartment and is distributed above the charging circuit board, so that the limiting hole on the limiting member corresponds to the charging interface on the charging circuit board.
[0008] Furthermore, the charging interface on the charging circuit board is a magnetic contact charging interface.
[0009] Furthermore, the charging circuit board is provided with an error prevention component corresponding to the charging interface.
[0010] Furthermore, the limiting member is provided with insertion blocks at both ends, and the insertion blocks are adapted to the corresponding insertion slots on the compartment body.
[0011] Furthermore, the fixing plate is connected to the end face of the chamber body via a detachable structure.
[0012] To achieve the above objectives, the guide equipment cabinet provided by this utility model includes a cabinet body and a power supply. The cabinet body is provided with a plurality of charging compartments, and each charging unit on each charging compartment is electrically connected to the power supply.
[0013] Furthermore, the charging compartments are distributed in multiple layers within the cabinet.
[0014] Furthermore, a display component is installed on the cabinet.
[0015] The charging compartment and guide equipment cabinet solution provided by this utility model adopts a pluggable module structure for the charging unit in the charging compartment. Each charging unit is detachably installed in the charging compartment using a bayonet sliding groove structure. Each charging unit is powered independently, thereby realizing single-point rapid replacement and repair of single-point faults in the charging compartment. That is, it enables quick and convenient replacement of a single charging unit without replacing the entire charging compartment, which greatly improves the fault repair efficiency of the charging compartment and / or guide equipment cabinet and reduces costs.
[0016] The charging compartment and guide equipment cabinet solution provided by this utility model allows for the repair of faulty modular charging units without the need for professional personnel; it only requires simple plugging and unplugging for replacement, and does not affect the normal operation of other normal modular charging units. It is convenient to operate, has minimal impact on efficiency, and has low implementation costs. Attached Figure Description
[0017] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0018] Figure 1 This is a structural example diagram of the charging compartment in this utility model;
[0019] Figure 2 This is an example cross-sectional view of the compartment body in this utility model;
[0020] Figure 3 This is a structural example diagram of the charging circuit board in this utility model;
[0021] Figure 4 This is a structural example diagram of the limiting component in this utility model;
[0022] Figure 5 This is an example diagram of the charging compartment structure for installing the tour guide device in this utility model;
[0023] Figure 6 This is a structural example diagram of the guide equipment cabinet in this utility model. Detailed Implementation
[0024] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the following description, in conjunction with specific illustrations, further elaborates on this utility model.
[0025] In view of the problems existing in the operation and maintenance of the integrated charging compartment of the tour guide equipment cabinet, this utility model provides a combined charging compartment for the tour guide equipment cabinet, so as to realize single-point fault quick replacement and repair.
[0026] This modular charging case uses several independent modular charging units. These independent modular charging units are sequentially inserted into the charging case through a detachable insertion structure. In this way, if a charging unit in the charging case malfunctions, it can be removed by simply inserting the insertion structure and a new charging unit can be inserted.
[0027] See Figure 1 The diagram shown is an example of the overall structure of the charging compartment 100 provided in this utility model.
[0028] As shown in the diagram, the charging case 100 mainly comprises two parts: a case body 110 and several independent charging units 120 installed and assembled on the case body 110.
[0029] The charging compartment 110 forms the foundation of the entire charging compartment, serving to support and house several independent charging units 120. Accordingly, the charging compartment 110 has corresponding mounting slots inside it along its extension direction.
[0030] Based on this, several independent charging units 120 are sequentially inserted into the slots on the charging compartment to achieve detachable and combinable installation in the charging compartment; at the same time, each charging unit is independently connected to an external power supply, thereby enabling quick replacement and repair of a single charging unit in case of failure.
[0031] The following details the composition of each component in this charging case 100 and the possible structures involved.
[0032] The compartment 110 of this utility model adopts a U-shaped groove structure, which can facilitate the installation of several charging units while ensuring structural stability. At the same time, fixing plates (not shown in the figure) are provided at both ends of the U-shaped groove structure compartment 110 to limit the several independent charging units 120 placed in the compartment 110 and limit them in the compartment 110.
[0033] See Figure 2 The description above illustrates an example of the cross-sectional structure of the compartment 110. Referring to the diagram, the compartment 110 has an overall U-shaped groove structure. A first set of mounting slots 111 and a second set of mounting slots 112 are correspondingly provided on the inner wall of the compartment 110. The first set of mounting slots 111 is positioned along the extension direction of the compartment 110 on the inner wall, and the second set of mounting slots 112 is also positioned along the extension direction of the compartment 110 on the inner wall, and is distributed above the first set of mounting slots 111.
[0034] The first set of mounting slots 111, arranged in this manner, is used to mount the charging circuit board 121 in the charging unit 120; while the second set of mounting slots 112 is used to mount the limiting member 122 in the charging unit 120.
[0035] Furthermore, the specific structural form of the first set of socket slots 111 is not limited here and can be determined according to actual needs. As an example, the first set of socket slots 111 here is adapted to the charging circuit board 121, and preferably adopts a U-shaped socket slot, which can facilitate the quick sliding insertion of the charging circuit board 121.
[0036] As a further feature, in the U-shaped socket formed here, the width of the upper sidewall protrusion is smaller than the width of the lower sidewall protrusion, thereby enabling stable support for the inserted charging circuit board 121 without affecting the circuit structure on the charging circuit board 121.
[0037] Furthermore, the specific structural form of the second set of socket slots 112 is not limited here and can be determined according to actual needs. As an example, the second set of socket slots 112 here is adapted to the limiting member 122 in the charging unit 120, and preferably adopts a T-shaped socket slot, which can facilitate the quick sliding of the limiting member 122 and provide stable support for the limiting member 122.
[0038] Based on the above structure, the present invention provides a third set of mounting slots 113 and a fourth set of mounting slots 114 at the top and bottom of the inner wall of the compartment 110, respectively. Here, the third set of mounting slots 113 and the fourth set of mounting slots 114 are respectively provided at the top and bottom of the inner wall of the compartment 110 along the extension direction of the compartment 110.
[0039] The third set of mounting slots 113 and the fourth set of mounting slots 114, as configured in this way, can be used as mounting slots to fix the mounting plates configured on the compartment 110, so as to fix the corresponding mounting plates at both ends of the compartment 110.
[0040] Preferably, to facilitate the replacement of the charging unit 120 installed in the compartment, the fixing plate here adopts a detachable connection structure, which cooperates with the third set of mounting slots 113 and the fourth set of mounting slots 114 on the compartment 110 to realize the mounting plate at the end of the compartment 110. For example, screws can be used to screw the fixing plate through the corresponding mounting slots.
[0041] The third set of mounting slots 113 and the fourth set of mounting slots 114, arranged in this way, can also be used as light strip mounting slots to accommodate the corresponding light strips.
[0042] Furthermore, the specific structural form of the third set of mounting slots 113 and the fourth set of mounting slots 114 is not limited and can be determined according to actual needs. As an example, the third set of mounting slots 113 and the fourth set of mounting slots 114 can adopt a C-shaped slot structure.
[0043] In the specific implementation of the above-mentioned structure of the hopper body 110, a corresponding U-shaped aluminum profile can be used. However, it is not limited to this, and other solutions can also be used as needed.
[0044] The independent charging unit 120 in this utility model adopts a modular design, and each independent charging unit 120 is composed of a charging circuit board 121 and a limiting member 122.
[0045] See Figure 3 The charging circuit board 121 here is made of PCB board, and its size is adapted to the first set of slots 111 on the compartment. It can be inserted into the first set of slots 111 along the extension direction of the first set of slots 111 and move in the first set of slots 111.
[0046] Furthermore, the charging circuit board 121 is provided with a corresponding charging circuit, the specific configuration of which is conventional technology and will not be described in detail here.
[0047] Furthermore, the charging circuit board 121 is provided with a power supply interface 121a for connecting to an external power supply; the charging circuit board 121 is also provided with at least one charging interface 121b for connecting to the charging port of the tour guide device to charge it.
[0048] To facilitate actual installation and setup, the charging interface 121b is located in the middle of the charging circuit board 121, which is convenient to cooperate with the limiting member 122 to facilitate the easy insertion of the tour guide device; at the same time, the power supply interface 121a is preferably located at the top of the charging circuit board 121 for easy connection to an external power source.
[0049] The configuration of the power supply interface 121a and the charging interface 121b is not limited here and can be determined according to actual needs.
[0050] As a further preferred option, the charging interface 121b here is constructed using a magnetic contact charging interface, which facilitates quick connection and disconnection with the charging port of the inserted tour guide device, and also maintains the stability of the connection state during connection.
[0051] As a further preferred option, an error prevention component 121c can also be provided on the charging circuit board 121 corresponding to the charging interface 121b to achieve a foolproof function and avoid incorrect insertion.
[0052] The limiting member 122 in the charging unit 120 is set corresponding to the charging interface 121b on the charging circuit board 121. If there is one charging interface 121b on the charging circuit board 121 in the charging unit 120, then one limiting member 122 is configured in the charging unit 120; if there are multiple charging interfaces 121b on the charging circuit board 121 in the charging unit 120, then multiple limiting members 122 are configured in the charging unit 120.
[0053] See Figure 4 The limiting member 122 in this utility model is specifically composed of a corresponding limiting block 122a and an inserting block 122b disposed on the limiting block 122a.
[0054] The limiting block 122a has a limiting hole 122c in its middle that is compatible with the tour guide device 200, allowing the tour guide device 200 to be inserted therein. Figure 5 As shown.
[0055] Furthermore, at both ends of the insertion block 122b, insertion blocks 122b are respectively provided as connecting ends to be inserted and connected to the second set of insertion slots 112 on the compartment body, so as to realize the movable insertion of the limiting member 122 into the compartment body 110.
[0056] To accommodate the second set of mounting slots 112 on the compartment body, the mounting block 122b here adopts a T-shaped plug that is compatible with the second set of mounting slots 112. In this way, the limiting member 122 can be quickly and stably inserted into the second set of mounting slots 112 on the compartment body through the T-shaped plugs at both ends.
[0057] Based on this, the size and structure of the limiting block 122a are further configured so that the overall size of the limiting member matches the charging circuit board 121 and corresponds to the charging interface 121b provided on the charging circuit board 121. When the limiting member is inserted into the second set of mounting slots 112 on the compartment, it corresponds to the charging circuit board 121 inserted into the first set of mounting slots 111, and is distributed above the charging circuit board 121. The limiting hole 122c on the limiting member corresponds to the corresponding charging interface 121b on the charging circuit board. When the guide device 200 is inserted into the limiting hole 122c on the limiting member 122, its charging interface can be connected to the charging interface 121b on the charging circuit board 121 located below the limiting member 122. Figure 5 As shown.
[0058] The structural state of the limiting block 122a is not limited, as long as it can achieve the above-mentioned effect and form a stable and reliable limiting support for the guide device 200.
[0059] The charging compartment 100 formed based on the above solution can be directly placed in the corresponding guide equipment cabinet when in use.
[0060] See Figure 6 The diagram shows an example of the configuration of the guide equipment cabinet housed in the charging compartment 100 of this utility model.
[0061] Based on the diagram, this guide equipment cabinet 300 mainly includes a cabinet body 310, several charging compartments 100, and a power supply.
[0062] The power supply is located in cabinet 310. The specific configuration of this power supply is not limited here and can be determined according to actual needs. For example, the power supply can be a portable power bank or a power module connected to mains power.
[0063] Several charging compartments 100 are distributed in multiple layers within the cabinet. To facilitate the insertion and removal of the guide equipment from the charging compartments 100, the charging compartments 100 are preferably set at a certain outward tilt angle.
[0064] Based on this, each charging unit on each charging compartment is electrically connected to the power supply.
[0065] As a further feature, the cabinet 310 is also equipped with corresponding display components 320, such as a display screen. Shelves and other components may also be provided as needed.
[0066] The solution provided by this utility model, through modular design and the insertion of a bayonet sliding groove structure, effectively enables the rapid replacement and repair of a single charging unit in case of failure, which can greatly improve the maintenance efficiency of the guide equipment cabinet.
[0067] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A charging pod, characterized by, It includes a housing and several independent charging units. The housing has a slot along its extension direction. The several independent charging units are sequentially inserted into the slots on the housing, and each charging unit is independently connected to an external power supply.
2. The charging pod of claim 1, wherein, The compartment has a U-shaped cross-section and is equipped with fixing plates at both ends. Corresponding mounting slots are provided on the side walls of the compartment.
3. The charging pod of claim 1, wherein, The independent charging unit includes a charging circuit board and a limiting member. The charging circuit board is provided with a charging interface that can be inserted into a slot on the compartment. The limiting member has a limiting hole adapted to the guide device. The limiting member can be inserted into the slot on the compartment and is distributed above the charging circuit board, so that the limiting hole on the limiting member corresponds to the charging interface on the charging circuit board.
4. The charging pod of claim 3, wherein, The charging interface on the charging circuit board is a magnetic contact charging interface.
5. The charging pod of claim 3, wherein, The charging circuit board is equipped with an anti-error component corresponding to the charging interface.
6. The charging pod of claim 3, wherein, The limiting member has insertion blocks at both ends, and the insertion blocks are adapted to the corresponding insertion slots on the compartment body.
7. The charging pod of claim 2, wherein, The fixing plate is connected to the end face of the silo body via a detachable structure.
8. A guide equipment cabinet comprising a cabinet body and a power supply, characterized in that, The cabinet is provided with a plurality of charging compartments as described in any one of claims 1-7, and each charging unit on each charging compartment is electrically connected to a power supply.
9. The kiosk of claim 8, wherein, The charging compartments are distributed in multiple layers within the cabinet.
10. The kiosk of claim 8, wherein, A display component is installed on the cabinet.