Intelligent program control charging cabinet
By setting up partitions and support plates in the charging cabinet to separate the charging and cable areas and equip them with intelligent control and safety protection systems, the problem of unreasonable layout of the charging cabinet and low safety is solved, and the convenience and safety of charging of multiple devices is achieved.
Patent Information
- Application Number
- CN202422255022.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-09-14
AI Technical Summary
The existing charging cabinet space layout is unreasonable, the cable and circuit maintenance is inconvenient, and the charging equipment suitable for is a single type and has low safety performance.
The internal part of the cabinet is separated into the front side charging chamber and the rear side wiring chamber, and a support plate is provided to separate the charging area. It is equipped with a charging manager, temperature sensor, leakage protector, etc. The charging time is controlled through the time controller, and the leakage protector is divided into the power supply. The charging manager controls the charging circuit according to the battery temperature and power information, and combines the heat dissipation and safety alarm system to improve safety and convenience.
It realizes the reasonable spatial layout of the charging cabinet, facilitates cable and circuit maintenance, supports a variety of charging equipment, prevents overcharging and leakage, improves the safety and convenience of use, and reduces battery damage and fire risks.
Smart Images

Figure CN223093523U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of charging cabinets, in particular to an intelligent program-controlled charging cabinet. Background Art
[0002] In recent years, due to the continuous increase in the train operation speed and the continuous increase in the operation mileage of the Chinese railway, various intercom series communication products originally adapted to the Chinese public security field, various power tools in the Chinese construction field, and various tools powered by lithium batteries have been widely used in the Chinese railway industry, including: lithium electric wrenches, lithium headlamps (lithium lighting tools), lithium intercoms, recorders, and lithium charging power supplies, etc. These lithium electrical appliances have many advantages such as high energy, long life, fast charging, and light weight. After the batteries of these lithium electrical appliances are used, they need to be charged because the stored power of the batteries is limited. The patent publication number CN204615462U discloses an emergency lighting lamp centralized charging cabinet, which specifically discloses the leakage protection and heat dissipation structures provided inside the cabinet body. However, there are problems such as unreasonable space layout, inconvenient wiring and circuit maintenance, relatively single types of charging devices applicable, and low safety performance. Content of the Utility Model
[0003] The technical problem to be solved by the utility model is to overcome the existing defects, provide an intelligent program-controlled charging cabinet, which has a simple structure, reasonable space layout, convenient wiring and circuit maintenance, can be used for charging a variety of charging devices, is safe and convenient to use, and has diverse functions, and can effectively solve the problems in the background art.
[0004] To achieve the above object, the utility model provides the following technical solution: an intelligent program-controlled charging cabinet, including a cabinet body. A partition is vertically arranged between the top wall and the bottom wall of the cabinet body. The internal cavity of the cabinet body is divided into a front charging cavity and a rear wiring cavity by the partition. A plurality of horizontally arranged support plates are vertically arranged in the front charging cavity of the cabinet body. The front charging cavity is divided into a plurality of charging areas by the support plates. A plurality of charging sockets and chargers are arranged in each charging area. The chargers are electrically connected to a charging manager and a power adapter plug respectively. A temperature display, a time controller, and a temperature induction probe are arranged in each charging area. And the charging socket on each charging area is electrically connected to its corresponding time controller. USB jacks are arranged on the charging sockets. The front opening end of the cabinet body is hinged with a front cabinet door through a hinge, and the rear opening end of the cabinet body is hinged with a rear cabinet door through a hinge. Wiring holes are formed in the partition at positions corresponding to each charging area.
[0005] Further, a charging circuit control module is arranged in each charging manager. The charging manager is electrically connected to its corresponding power adapter plug and charger through the charging circuit control module.
[0006] Further, the charging stand is provided with two charging spring pieces for connecting the battery electrodes and a temperature transfer spring piece for transferring the battery temperature. A battery temperature sensor in contact with the temperature transfer spring piece is provided inside the charging stand, and a charging stand temperature sensor is also provided inside the charging stand. Both the battery temperature sensor and the charging stand temperature sensor are electrically connected to the charging manager; a buzzer and a charging indicator light are also electrically connected to the charging manager.
[0007] Further, a branch leakage protector is provided in each charging area, and a main leakage protector and an AC voltage meter are provided at the top inside the front charging cavity of the cabinet body.
[0008] Further, door magnetic induction switches are provided on both the front charging cavity and the rear wire arrangement cavity of the cabinet body, and a lighting lamp is also provided at the top of the rear wire arrangement cavity.
[0009] Further, heat dissipation holes are provided on the side wall of the cabinet body, a smoke alarm and a heat dissipation fan are provided at the top inside the cabinet body, a lightning arrester is also provided at the top inside the front charging cavity of the cabinet body, and an audible and visual alarm is provided on the top wall of the cabinet body.
[0010] Compared with the prior art, the beneficial effects of the present utility model are as follows: For this intelligent programmable charging cabinet, the charging time of the charging socket is controlled by a time controller to prevent overcharging of the charging device. The branch leakage protector and the main leakage protector can quickly cut off the power supply when a leakage phenomenon is detected, avoiding electric shock injury to the human body caused by the current and also avoiding the occurrence of fire accidents; the charging circuit control module in the charging manager controls the charging circuit according to the battery temperature and battery power information of the walkie-talkie. When the walkie-talkie battery is fully charged, the charging circuit is completely cut off, reducing the overcharging hidden danger of long-term charging and avoiding damage or explosion of the walkie-talkie battery; when the temperature of the walkie-talkie battery or the charging stand is too high, the charging circuit is completely cut off to avoid fire caused by the spontaneous combustion of the charging stand; this charging cabinet has a simple structure, a reasonable space layout, convenient wire arrangement and circuit maintenance, can be used for charging a variety of charging devices, is safe and convenient to use, and has diverse functions. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 is a schematic structural diagram of the present utility model;
[0012] Figure 2 is Figure 1 a partial enlarged view;
[0013] Figure 3 is a schematic structural diagram of the charging stand of the present utility model;
[0014] Figure 4 is a schematic circuit connection diagram of the charging stand of the present utility model;
[0015] Figure 5 is a side sectional view of the cabinet body of the present utility model;
[0016] Figure 6 This is the rear view of the cabinet body of the present utility model.
[0017] In the figure: 1. Cabinet body; 101. Front cabinet door; 102. Charging area; 103. Rear wire arrangement cavity; 104. Rear cabinet door; 105. Heat dissipation holes; 2. Partition board; 201. Wire arrangement holes; 3. Support plate; 4. Temperature display; 5. Door magnetic induction switch; 6. Lightning arrester; 7. Charging socket; 8. Time controller; 9. Branch leakage protector; 10. Temperature induction probe; 11. Charger stand; 111. Charging spring piece; 112. Temperature transfer spring piece; 113. Battery temperature sensor; 114. Charger stand temperature sensor; 12. Charging manager; 121. Charging circuit control module; 122. Buzzer; 123. Charging indicator light; 13. Power adapter plug; 14. Acousto-optic alarm; 15. Main leakage protector; 16. Lighting lamp; 17. Smoke alarm; 18. Heat dissipation fan; 19. AC voltmeter. Specific embodiments
[0018] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model. Embodiment
[0019] Please refer to Figures 1-6, the present utility model provides a technical solution: an intelligent programmable charging cabinet, including a cabinet body 1. A partition board 2 is vertically arranged between the top wall and the bottom wall of the cabinet body 1. The internal cavity of the cabinet body 1 is divided into a front charging cavity and a rear wire arranging cavity 103 by the partition board 2. A plurality of horizontally arranged support plates 3 are arranged in the front charging cavity of the cabinet body 1 along the vertical direction, and the front charging cavity is divided into a plurality of charging areas 102 by the support plates 3; A plurality of charging sockets 7 and chargers 11 are arranged in each charging area 102. The chargers 11 are electrically connected to a charging manager 12 and a power adapter plug 13 respectively. A temperature display 4, a time controller 8, and a temperature induction probe 10 are arranged in each charging area 102. And the charging socket 7 on each charging area 102 is electrically connected to its corresponding time controller 8. USB jacks are arranged on the charging sockets 7; A charging circuit control module 121 is arranged in each charging manager 12. The charging manager 12 is electrically connected to its corresponding power adapter plug 13 and charger 11 through the charging circuit control module 121; Two charging elastic pieces 111 for connecting battery electrodes and a temperature transfer elastic piece 112 for transferring battery temperature are arranged on the charger 11. And a battery temperature sensor 113 in contact with the temperature transfer elastic piece 112 is arranged in the charger 11. A charger temperature sensor 114 is also arranged inside the charger 11. The battery temperature sensor 113 and the charger temperature sensor 114 are both electrically connected to the charging manager 12; A buzzer 122 and a charging indicator light 123 are also electrically connected to the charging manager 12; The front opening end of the cabinet body 1 is hinged with a front cabinet door 101 through a hinge, and the rear opening end of the cabinet body 1 is hinged with a rear cabinet door 104 through a hinge; Wiring holes 201 are opened at positions on the partition board 2 corresponding to each charging area 102.
[0020] Working principle:
[0021] The internal cavity of the cabinet body 1 is divided into a front charging cavity and a rear wire arranging cavity 103 by the partition board 2. The charging cabinet has a reasonable layout, which is conducive to the internal wiring arrangement and maintenance; The charging socket 7 arranged in the charging area 102 is used for charging the charging device, and the support plate 3 arranged in the charging area 102 is used for placing the charging device; The charging time of the charging socket 7 in its corresponding charging area 102 is controlled by the time controller 8 to prevent overcharging of the charging device; The temperature inside is detected by the temperature induction probe 10 arranged in the charging area 102, and the temperature value is displayed on the temperature display 4;
[0022] When charging the walkie-talkie, align the spring clips of the bottom battery with the charging spring pieces 111 and temperature transfer spring pieces 112 on the charger 11, and then insert the corresponding power adapter plug 13 into the charging socket 7. During the charging process of the walkie-talkie, the temperature of the walkie-talkie battery is detected by the battery temperature sensor 113, and the temperature of the charger 11 is detected by the charger temperature sensor 114. If the battery temperature sensor 113 or the charger temperature sensor 114 exceeds the set value, the charging manager 12 controls the charging circuit control module 121 to cut off the charging circuit and stop charging, avoiding the explosion of the walkie-talkie battery; the charging status is monitored and indicated in real time through the buzzer 122 and charging indicator light 123 provided on the charging manager 12. When the temperature of the walkie-talkie battery and the charger 11 rises or the circuit is powered off, the charging indicator light 123 switches the indication status, and at the same time the buzzer 122 gives an alarm to timely remind the staff to make further treatment.
[0023] Further, leakage current protectors 9 are provided in the charging areas 102, and a main leakage current protector 15 and an AC voltmeter 19 are provided at the top inside the front charging cavity of the cabinet body 1; the leakage current protectors 9 provided in each charging area 102 and the main leakage current protector 15 can quickly cut off the power supply when detecting a leakage phenomenon, avoiding electric shock injury to the human body caused by the current and also avoiding the occurrence of fire accidents.
[0024] Further, door magnetic induction switches 5 are provided on the front charging cavity and the rear wire arrangement cavity 103 of the cabinet body 1, and a lighting lamp 16 is also provided at the top of the rear wire arrangement cavity 103; the door magnetic induction switches 5 are used to detect whether the front cabinet door 101 and the rear cabinet door 104 are closed during the charging state. If the front cabinet door 101 or the rear cabinet door 104 is in the open state, the charging cabinet is in the power-off state, improving safety. And when the rear cabinet door 104 is in the open state, the lighting lamp 16 automatically lights up, and when the rear cabinet door 104 is closed, the lighting lamp 16 automatically goes out, facilitating the quick repair of faults of the charging cabinet.
[0025] Further, heat dissipation holes 105 are opened on the side wall of the cabinet body 1, a smoke alarm 17 and a heat dissipation fan 18 are provided at the top inside the cabinet body 1, a lightning arrester 6 is also provided at the top inside the front charging cavity of the cabinet body 1, and an audible and visual alarm 14 is provided on the top wall of the cabinet body 1; the heat dissipation fan 18 timely dissipates the high temperature generated inside the cabinet body 1, and the smoke alarm 17 can timely detect whether a natural fault occurs inside the charging cabinet, further improving the safety performance.
[0026] The intelligent programmable charging cabinet disclosed in this embodiment controls the charging time of the charging socket 7 through the time controller 8 to prevent overcharging of the charging device. The branch leakage protector 9 and the main leakage protector 15 can quickly cut off the power supply when detecting a leakage phenomenon, avoiding electric shock injury to the human body caused by the current and also avoiding the occurrence of fire accidents. The charging circuit control module 121 in the charging manager 12 controls the charging circuit according to the battery temperature and battery power information of the walkie-talkie. When the walkie-talkie battery is fully charged, the charging circuit is completely cut off, reducing the hidden danger of overcharging during long-term charging and avoiding damage or explosion of the walkie-talkie battery. When the temperature of the walkie-talkie battery or the charger 11 is too high, the charging circuit is completely cut off to avoid a fire caused by the natural combustion of the charger 11. This charging cabinet has a simple structure, can be used for charging a variety of charging devices, is safe and convenient to use, and has diverse functions.
[0027] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An intelligent programmable charging cabinet, comprising a cabinet body, a partition is vertically arranged between the top wall and the bottom wall of the cabinet body, and the inner cavity of the cabinet body is divided into a front charging cavity and a rear wiring cavity by the partition, and is characterized in that: A plurality of horizontally arranged support plates are vertically arranged in the front charging cavity of the cabinet body, and the front charging cavity is separated into a plurality of charging areas by the support plates; a plurality of charging sockets and chargers are arranged in each charging area, the chargers are electrically connected to a charging manager and a power adapter plug respectively, a temperature display, a time controller and a temperature induction probe are arranged in each charging area, and the charging socket on each charging area is electrically connected to its corresponding time controller, and a USB jack is arranged on each charging socket; the front opening end of the cabinet body is hinged with a front cabinet door through a hinge, and the rear opening end of the cabinet body is hinged with a rear cabinet door through a hinge; wire arranging holes are formed in the partition board at positions corresponding to each charging area.
2. The intelligent programmable charging cabinet according to claim 1, wherein: A charging circuit control module is arranged in each charging manager, and the charging manager is electrically connected to its corresponding power adapter plug and charger through the charging circuit control module.
3. An intelligent programmable charging cabinet according to claim 1, characterized in that: Two charging elastic sheets for connecting battery electrodes and a temperature transfer elastic sheet for transferring battery temperature are arranged on the charger, a battery temperature sensor in contact with the temperature transfer elastic sheet is arranged in the charger, a charger temperature sensor is also arranged inside the charger, and both the battery temperature sensor and the charger temperature sensor are electrically connected to the charging manager; a buzzer and a charging indicator light are also electrically connected to the charging manager.
4. The intelligent programmable charging cabinet according to claim 1, wherein: A branch leakage protector is arranged in each charging area, and a main leakage protector and an AC voltmeter are arranged at the top end inside the front charging cavity of the cabinet body.
5. An intelligent programmable charging cabinet according to claim 1, characterized in that: Door magnetic induction switches are arranged on both the front charging cavity and the rear wire arranging cavity of the cabinet body, and a lighting lamp is also arranged at the top end of the rear wire arranging cavity.
6. The intelligent programmable charging cabinet according to claim 1, wherein: Heat dissipation holes are formed in the side wall of the cabinet body, a smoke alarm and a heat dissipation fan are arranged at the top end inside the cabinet body, a lightning arrester is also arranged at the top end inside the front charging cavity of the cabinet body, and an audible and visual alarm is arranged on the top wall of the cabinet body.
Citation Information
Patent Citations
Cabinet that charges is concentrated to emergency lighting lamps and lanterns
CN204615462U