Notebook computer charging cabinet

By designing a laptop charging cabinet, using temperature acquisition and control modules and heat dissipation components, the problem of temperature rise during charging is solved, and safe and efficient charging and space utilization is achieved.

CN223206864UActive Publication Date: 2025-08-08ZHEJIANG GEMA ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202422367135.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-08-08
Estimated Expiration
2034-09-27

AI Technical Summary

Technical Problem

In the prior art, the temperature rises when the laptop is charged, which affects the charging effect and poses a safety hazard, and the charging device occupies a messy desktop space.

Method used

Design a laptop charging cabinet, which includes a device temperature acquisition mechanism, charging structure and control module, control the charging status by monitoring the temperature of the laptop, and is equipped with a heat dissipation component and a temperature monitoring structure to avoid overheating and ensure charging safety.

Benefits of technology

Effectively avoid overheating during the charging process of laptop computers, ensure charging safety, save energy, and extend the life of the heat dissipation component, improve charging efficiency, and reduce the equipment's space occupied.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a notebook computer charging cabinet, which comprises a cabinet body, a charging mechanism, an equipment temperature acquisition mechanism and a control module, and is characterized in that the cabinet body is provided with a storage cavity, and the storage cavity is divided into one or more storage spaces; the charging mechanism comprises charging structures, and each storage space is at least matched with one charging structure so as to provide electric energy required by charging the notebook computer in the storage space; the equipment temperature acquisition mechanism is used for acquiring the temperature of the notebook computer in each storage space; and the control module is connected with the charging structure and the equipment temperature acquisition mechanism, and controls the working state of the charging structure matched with the corresponding storage space according to the temperature of the notebook computer acquired by the equipment temperature acquisition mechanism. The temperature of the notebook computer in the charging process can be prevented from being too high, and the charging effect and the charging safety of the notebook computer are guaranteed.
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Description

Technical Field

[0001] The utility model relates to the field of notebook computer charging equipment, in particular to a notebook computer charging cabinet. Background Art

[0002] With the popularity of smart devices, the use of portable charging devices in a wider range of scenarios, such as schools and esports, is becoming more and more widespread. Currently, when charging multiple laptops, each laptop needs an adapter, which takes up a lot of power strips and desk space, and the power cords are numerous and messy.

[0003] Laptop charging cabinets can effectively solve the above problems and realize centralized charging. However, during the charging process, the temperature of the laptop will rise, especially the battery part. Excessive temperature will not only affect the charging effect and damage the battery, but may even pose a safety hazard. Utility Model Content

[0004] In order to overcome the deficiencies in the prior art, the utility model provides a laptop charging cabinet, which, through a device temperature acquisition mechanism, can control the working state of the charging structure according to the temperature of the laptop during charging, thereby avoiding the laptop computer from overheating during the charging process and ensuring the charging effect and safety of the laptop computer.

[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0006] A laptop charging cabinet, comprising:

[0007] A cabinet body, wherein the cabinet body is provided with a storage cavity, and the storage cavity is divided into one or more storage spaces capable of accommodating a laptop computer;

[0008] A charging mechanism, the charging mechanism including a charging structure capable of providing electrical energy when charging a laptop computer, and each storage space is matched with at least one charging structure to provide the electrical energy required for charging the laptop computer in the storage space;

[0009] a device temperature acquisition mechanism, the device temperature acquisition mechanism being used to acquire the temperature of the laptop computer in each of the storage spaces;

[0010] and a control module, which is connected to the charging structure and the device temperature acquisition mechanism, and controls the working state of the charging structure corresponding to the storage space according to the temperature of the laptop computer in each storage space acquired by the device temperature acquisition mechanism.

[0011] With the above structure, users can place the laptop computer that needs to be charged into the storage space and connect the laptop computer to the charging structure corresponding to the storage space via a charging cable to charge the laptop computer.

[0012] During the charging process, the device temperature acquisition mechanism acquires the temperature of the laptop computer being charged and transmits the data to the control module. When the temperature of the laptop computer during the charging process does not reach the preset power-off temperature, the control module controls the charging structure to operate normally to charge the laptop computer. When the temperature of one or more laptop computers during the charging process reaches or exceeds the preset power-off temperature, the control module controls the corresponding charging structure to stop charging the connected electronic mobile device until the temperature of the electronic mobile device is lower than the preset power-off temperature.

[0013] The above structure, due to the device temperature acquisition mechanism, can effectively prevent the laptop from overheating during charging, avoid accidents, and ensure charging safety; specifically, the device temperature acquisition mechanism mainly acquires the temperature of the laptop battery.

[0014] Furthermore, the laptop charging cabinet includes a heat dissipation component provided on the cabinet body;

[0015] When the storage spaces are relatively isolated from each other in the cabinet, the number of heat dissipation components matches the number of storage spaces, and the heat dissipation components are arranged in a one-to-one correspondence with the storage spaces to dissipate heat for the corresponding storage spaces;

[0016] When the storage spaces in the cabinet are interconnected, at least one heat dissipation component is provided, and the heat dissipation component is used to dissipate heat from the storage cavities, that is, heat can be dissipated from a plurality of the storage cavities as a whole.

[0017] With the above structure, the heat dissipation component can dissipate heat from the storage space, thereby preventing heat accumulation from affecting charging during charging, making the charging structure safer for charging the laptop.

[0018] Furthermore, the laptop charging cabinet includes a space temperature monitoring structure capable of monitoring the ambient temperature;

[0019] When the storage spaces in the cabinet are relatively isolated from each other, the number of space temperature monitoring structures matched the number of storage spaces, and the space temperature monitoring structures were arranged in a one-to-one correspondence with the storage spaces to monitor the ambient temperature of the corresponding storage spaces. The control module was connected to the heat dissipation assembly and the space temperature monitoring structures, and controlled the working state of the heat dissipation assembly corresponding to the storage space according to the ambient temperature of the storage space detected by the space temperature monitoring structures.

[0020] When the storage spaces in the cabinet are interconnected, at least one space temperature monitoring structure is provided, and the space temperature monitoring structure is used to monitor the ambient temperature of the storage cavity. The control module is connected to the heat dissipation component and the space temperature monitoring structure, and controls the working state of the heat dissipation component according to the ambient temperature of the storage cavity detected by the space temperature monitoring structure.

[0021] With the above structure, when the space temperature monitoring structure detects that the ambient temperature is higher than the preset high temperature threshold, the control module controls the heat dissipation component to operate and dissipate heat, thereby reducing the ambient temperature. When the space temperature monitoring structure detects that the ambient temperature is lower than the normal preset value, the control module controls the heat dissipation component to stop operating. The above structure enables the heat dissipation component to operate intermittently, making the laptop charging cabinet more energy-efficient and effectively extending the service life of the heat dissipation component.

[0022] Of course, the space temperature monitoring structure can be set up separately, or can be formed by the device temperature acquisition mechanism, that is, the temperature of the laptop computer is used to indirectly represent or infer the temperature of the corresponding space.

[0023] Furthermore, the heat dissipation component is used to discharge the air in the space where it acts to the outside, and the cabinet is provided with a heat dissipation hole connected to the space where the heat dissipation component acts;

[0024] The space in which the heat dissipation component acts is the storage space or the entire storage cavity.

[0025] The above structure makes the arrangement of the heat dissipation component more reasonable. When the heat dissipation component is working, the heat dissipation component discharges the air with higher temperature in the space where it acts to the outside to form negative pressure, and the air with lower temperature outside enters the space where the heat dissipation component acts through the heat dissipation holes, thereby achieving environmental cooling. The air entering from the outside will take away the heat generated by the laptop computer.

[0026] Furthermore, the storage spaces in the cabinet are interconnected, and a plurality of the storage spaces are distributed in sequence along the width direction of the cabinet; the heat dissipation components are respectively provided on the side walls on both sides of the cabinet along its width direction; and a plurality of heat dissipation holes are provided on the front and / or rear and / or left and / or right sides of the cabinet.

[0027] With the above structure, the storage space is distributed in sequence along the width direction of the cabinet, and the heat dissipation components are also arranged on both sides of the width direction of the cabinet, so that the air duct flow design is more reasonable; the air entering through the heat dissipation holes is guided by the heat dissipation components on both sides to flow along the width direction of the cabinet, so that the incoming cold air can act on the entire storage space; specifically, the heat dissipation holes are provided on the front side and left and right sides of the cabinet.

[0028] Furthermore, the laptop charging cabinet includes a communication module, which is connected to the control module to obtain charging information of each charging structure;

[0029] The communication module can communicate with the user's communication device; or the communication module uploads the charging information of each charging structure to a server that can communicate with the user's communication device.

[0030] With the above structure, users can obtain the charging status of their laptop computers placed in the laptop charging cabinet, such as the current size, etc., through their own communication devices such as mobile phones.

[0031] Furthermore, when the laptop computer supports a function of outputting its temperature externally through communication, the device temperature acquisition mechanism is connected to the laptop computer in communication to acquire its temperature;

[0032] When the notebook computer does not support the function of outputting its temperature through communication, the device temperature acquisition mechanism acquires the temperature of the notebook computer by monitoring the temperature of the notebook computer, that is, by using a sensor.

[0033] The above structure makes the setting of the device temperature acquisition mechanism more reasonable.

[0034] Furthermore, when the laptop computer does not support the function of outputting its temperature through communication, the device temperature acquisition mechanism includes a device temperature monitoring sensor capable of monitoring the temperature of the laptop computer, and each storage space is matched with at least one device temperature monitoring sensor to detect the temperature of the laptop computer in the storage space.

[0035] The above structure makes the structure of the equipment temperature monitoring mechanism more reasonable; of course, when the storage spaces in the cabinet are interconnected, the equipment temperature monitoring mechanism includes a temperature monitoring module that can monitor the temperature of each area within its monitoring range, such as an infrared sensor.

[0036] Furthermore, one or more partition frames are provided in the storage cavity to divide it into a plurality of storage spaces.

[0037] By adopting the above structure, the storage cavity can form a plurality of storage spaces; the partition frame adopts a sheet metal design, so that it can better support the laptop computer, and it has better impact resistance and can better provide all-round protection for the laptop computer inside.

[0038] Furthermore, the partition frames are sequentially spaced apart along the width direction of the storage cavity;

[0039] The partition frame includes a first support leg, a second support leg, and a support connecting portion. One end of the first support leg and the second support leg are connected to the bottom of the storage cavity, and the other end is extended along the height direction of the storage cavity, and the first support leg and the second support leg are spaced apart along the depth direction of the storage cavity; the two sides of the support connecting portion are respectively connected to the end of the first support leg and the second support leg away from the bottom of the storage cavity.

[0040] With the above structure, the structure of the partition frame enables the storage spaces in the cabinet to be interconnected, thereby greatly increasing the internal air flow and improving the heat dissipation effect.

[0041] Furthermore, the partition frame is detachably connected to the bottom of the storage cavity.

[0042] With the above structure, the user can disassemble and assemble the partition frame according to the thickness of the laptop computer, so that the storage space can better accommodate and fix the laptop computer, which is more practical.

[0043] Furthermore, a partition frame mounting portion for installing and fixing the partition frame is provided at the bottom of the storage cavity, and the number of the partition frame mounting portions matches the number of the partition frames; each of the partition frame mounting portions includes a first bracket foot mounting hole that matches the first bracket foot for detachable installation of the first bracket foot, and a second bracket foot mounting hole that matches the second bracket foot for detachable installation of the second bracket foot.

[0044] By adopting the above structure, the detachable cooperation between the first bracket foot mounting hole and the first bracket foot, and the detachable cooperation between the second bracket foot mounting hole and the second bracket foot, realize the detachable installation of the partition frame; and the above structure makes the installation of the partition frame very convenient, which is convenient for the actual use of the user.

[0045] Furthermore, the cabinet includes a cabinet body and a door panel structure, the cabinet body is provided with the storage cavity, and the front side of the cabinet body is provided with a storage opening connected to the storage cavity, and the door panel structure is movably connected to the cabinet body to open and close the storage opening.

[0046] The above structure makes the structure of the cabinet more reasonable. The user can open and close the storage opening by operating the door panel structure. When the storage opening is opened, the storage cavity is exposed, and the user can take out and put in the laptop computer.

[0047] Specifically, the cabinet body and door panel structure adopt sheet metal design, which makes it have better impact resistance and can better provide all-round protection for the laptop computer inside;

[0048] The first bracket foot is arranged close to the storage opening, and the second bracket foot is arranged away from the storage opening, and the distance from the end of the first bracket foot away from the bottom of the storage cavity to the bottom of the storage cavity is smaller than the distance from the end of the second bracket foot away from the bottom of the storage cavity to the bottom of the storage cavity; the above structure makes it convenient for users to take and place laptop computers.

[0049] Furthermore, the door panel structure is rotatably connected to the cabinet body.

[0050] The above structure makes the arrangement of the door panel structure more reasonable.

[0051] Furthermore, a hinge is provided between the door panel structure and the cabinet body.

[0052] By adopting the above structure, the door panel structure is rotatably arranged on the cabinet body.

[0053] Furthermore, the hinge includes a first hinge structure and a second hinge structure rotatably connected to the first hinge structure, the first hinge structure is connected to the cabinet body, and the second hinge structure is connected to the door panel structure; when the door panel structure closes the storage opening, the first hinge mating part in the first hinge structure and the second hinge mating part in the second hinge structure are arranged relative to each other, and the first hinge mating part and the second hinge mating part are configured as elastic snap fit.

[0054] With the above structure, when the door panel structure closes the storage opening, the first hinge mating portion and the second hinge mating portion are arranged opposite to each other and engage with each other. At this time, if the door panel structure needs to be operated to open the storage opening, a certain operating force needs to be applied to disengage the first hinge mating portion and the second hinge mating portion, thereby preventing the door panel structure from opening accidentally and affecting people's walking.

[0055] The first hinge fitting portion and the second hinge fitting portion also require a certain operating force when buckling together, and a sound is produced when buckling together, which can indicate to the user that the door panel structure is closed in place;

[0056] The above structure is reasonably arranged, and effectively prevents the door panel from accidentally opening and causing impact on people, and also ensures safety in use.

[0057] Furthermore, the first hinge structure includes a first hinge portion, a second hinge portion, and a third hinge portion, the first hinge portion is used to connect to the cabinet body, one end of the second hinge portion is connected to the first hinge portion, and the second hinge portion and the first hinge portion are arranged perpendicularly, and two third hinge portions are provided, the two third hinge portions are respectively located on both sides of the other end of the second hinge portion and connected thereto, and the third hinge portion and the first hinge portion are arranged parallel to each other;

[0058] The second hinge structure includes a fourth hinge part and a fifth hinge part. The fifth hinge part is used to connect to the door panel structure. One end of the fourth hinge part is connected to the fifth hinge part, and the other end is located between the two third hinge parts and is rotatably connected to them, and the fourth hinge part and the fifth hinge part are arranged vertically.

[0059] The above structure makes the first hinge structure and the second hinge structure more reasonable, and can increase the rotation angle of the door panel structure, so as to facilitate actual use by users.

[0060] Furthermore, the fifth hinge part is provided with a mating accommodating groove, and the mating accommodating groove matches the connecting part of the first hinge part and the second hinge part, and an elastic snap-fit structure is provided on the side of the mating accommodating groove close to the fourth hinge part; the second hinge part is provided with a snap-fit groove mating with the elastic snap-fit structure at the corresponding position; specifically, the elastic snap-fit structure includes a snap that matches the snap-fit groove and a spring acting on the snap-fit.

[0061] The above structure makes the structural setting of the hinge more reasonable; when the door panel structure closes the storage opening, the connecting part of the first hinge part and the second hinge part will enter the matching accommodating groove. At this time, the elastic snap-fit structure is opposite to the snap-fit groove and is engaged with it, that is, the snap-fit groove forms the first hinge matching part, and the elastic snap-fit structure forms the second hinge matching part.

[0062] Furthermore, the laptop charging cabinet includes a door lock structure, which is arranged on the door panel structure and is used to control whether the door panel structure is allowed to move to lock the storage opening.

[0063] With the above structure, the setting of the door lock structure makes the laptop charging cabinet more reasonable; when the door panel structure closes the storage opening, the door lock structure can prevent the door panel structure from being accidentally opened; when the user needs to operate the door panel structure to open the storage opening, the door lock structure needs to be operated.

[0064] Furthermore, the cabinet is provided with a charging accommodating cavity for installing and accommodating the charging mechanism; specifically, the charging accommodating cavity is located below the storage cavity.

[0065] With the above structure, the charging accommodating cavity provides an environment for the installation of the charging mechanism, and the charging accommodating cavity is located below the storage cavity, so that the charging structure corresponding to each storage space can be set close to the storage space, which is convenient for the user's actual use.

[0066] Furthermore, the charging structure is provided with an electric energy output port for outputting electric energy, and the electric energy output port is configured as a USB interface or Typc-C or socket.

[0067] The above structure makes the charging structure more reasonable. Specifically, the power output port adopts Typc-C.

[0068] Furthermore, the laptop charging cabinet includes a leakage protector.

[0069] With the above structure, the provision of the leakage protector can prevent electrical accidents.

[0070] Furthermore, the laptop charging cabinet includes indicator lights whose number matches the number of the charging structures, and the indicator lights are arranged in a one-to-one correspondence with the charging structures.

[0071] With the above structure, the setting of the indicator light can be used to prompt the charging status of the laptop computer in the corresponding storage space.

[0072] Compared with the prior art, the present invention has the following beneficial effects:

[0073] (1) The laptop charging cabinet of the present invention can control the working state of the charging structure according to the temperature of the laptop during charging through the device temperature acquisition mechanism, thereby avoiding the laptop temperature from being too high during charging and ensuring the charging effect and charging safety of the laptop.

[0074] (2) The laptop charging cabinet of the present invention has a reasonable structure. BRIEF DESCRIPTION OF THE DRAWINGS

[0075] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0076] Figure 1 This is a three-dimensional diagram of the laptop charging cabinet of the present invention with the door closed;

[0077] Figure 2 This is a three-dimensional diagram of the laptop charging cabinet of the present invention with the door open;

[0078] Figure 3 This is the block diagram of the laptop charging cabinet of the present invention;

[0079] Figure 4 This is a three-dimensional diagram of the hinge in the laptop charging cabinet of the present invention;

[0080] Figure 5 This is an exploded view of the hinge in the laptop charging cabinet of the present invention;

[0081] The names of the components corresponding to the various reference numerals in the figure are: 1. Cabinet; 101. Storage cavity; 1011. Storage space; 102. Partition rack mounting portion; 1021. First bracket foot mounting hole; 1022. Second bracket foot mounting hole; 103. Cabinet body; 1031. Storage opening; 104. Door panel structure; 105. Charging cavity; 2. Charging mechanism; 201. Charging structure; 2011. Power output port; 3. Equipment temperature acquisition mechanism; 4. Control module; 5. Heat dissipation component; 6. Space temperature monitoring structure; 7. Heat dissipation hole; 8. Communication module; 9. Partition rack; 901. First bracket foot ;902, second bracket foot; 903, bracket connecting part; 10, hinge; 1001, first hinge structure; 10011, first hinge matching part; 10012, first hinge part; 10013, second hinge part; 10014, third hinge part; 10015, snap groove; 1002, second hinge structure; 10021, second hinge matching part; 10022, fourth hinge part; 10023, fifth hinge part; 10024, matching accommodating groove; 10025, elastic snap structure; 10025-1, snap; 10025-2, spring; 11, door lock structure; 12, indicator light. DETAILED DESCRIPTION

[0082] The present application is described in detail below with reference to the accompanying drawings and specific embodiments.

[0083] The following describes the embodiments of the present application through specific examples, and those skilled in the art can easily understand other advantages and effects of the present application from the contents disclosed in this specification. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. The present application can also be implemented or applied through other different specific embodiments, and the details in this specification can also be modified or changed in various ways based on different viewpoints and applications without departing from the spirit of the present application. It should be noted that, in the absence of conflict, the features in the following embodiments and embodiments can be combined with each other. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without making creative work are within the scope of protection of this application.

[0084] It should be noted that various aspects of the embodiments within the scope of the appended claims are described below. It should be apparent that the aspects described herein can be embodied in a wide variety of forms, and any specific structure and / or function described herein is merely illustrative. Based on this application, it should be understood by those skilled in the art that an aspect described herein can be implemented independently of any other aspect, and two or more of these aspects can be combined in various ways. For example, any number and aspect described herein can be used to implement an apparatus and / or practice a method. In addition, other structures and / or functionalities other than one or more of the aspects described herein can be used to implement this apparatus and / or practice this method.

[0085] It should also be noted that the illustrations provided in the following embodiments are only schematic illustrations of the basic concept of the present application. The illustrations only show components related to the present application and are not drawn according to the number, shape and size of components in actual implementation. In actual implementation, the type, quantity and proportion of each component can be changed at will, and the component layout type may also be more complicated.

[0086] Additionally, in the following description, specific details are provided to provide a thorough understanding of the examples, however, one skilled in the art will appreciate that the examples can be practiced without these specific details.

[0087] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.

[0088] The following describes the technical solutions provided by various embodiments of the present application in conjunction with the accompanying drawings.

[0089] See Figures 1 to 5 The utility model provides a laptop charging cabinet, comprising:

[0090] The cabinet 1 is provided with a storage cavity 101, and the storage cavity 101 is divided into one or more storage spaces 1011 capable of accommodating a laptop computer;

[0091] A charging mechanism 2, comprising a charging structure 201 capable of providing electrical energy when charging a laptop computer, and each storage space 1011 is matched with at least one charging structure 201 to provide the electrical energy required for charging the laptop computer in the storage space 1011;

[0092] a device temperature acquisition mechanism 3, the device temperature acquisition mechanism 3 being used to acquire the temperature of the laptop computer in each of the storage spaces 1011;

[0093] And a control module 4, which is connected to the charging structure 201 and the device temperature acquisition mechanism 3, and controls the working state of the charging structure 201 corresponding to the storage space 1011 according to the temperature of the laptop computer in each storage space 1011 obtained by the device temperature acquisition mechanism 3.

[0094] With the above structure, the user can place the laptop computer that needs to be charged into the storage space 1011 and connect the laptop computer to the charging structure 201 corresponding to the storage space 1011 via a charging cable to charge the laptop computer.

[0095] During the charging process, the device temperature acquisition mechanism 3 acquires the temperature of the laptop computer being charged and transmits the data to the control module 4. When the temperature of the laptop computer during the charging process does not reach the preset power-off temperature, the control module 4 controls the charging structure 201 to operate normally to charge the laptop computer; when the temperature of one or more laptop computers during the charging process reaches or exceeds the preset power-off temperature, the control module 4 controls the corresponding charging structure 201 to stop charging the connected electronic mobile device until the temperature of the electronic mobile device is lower than the preset power-off temperature;

[0096] The above structure, due to the device temperature acquisition mechanism 3, can effectively prevent the laptop from overheating during charging, avoid accidents, and ensure charging safety; specifically, the device temperature acquisition mechanism 3 mainly obtains the temperature of the laptop battery.

[0097] Furthermore, the laptop charging cabinet includes a heat dissipation component 5 provided on the cabinet body 1;

[0098] When the storage spaces 1011 are relatively isolated from each other in the cabinet 1, the number of the heat dissipation components 5 matches the number of the storage spaces 1011, and the heat dissipation components 5 are arranged in a one-to-one correspondence with the storage spaces 1011 to dissipate heat for the corresponding storage spaces 1011;

[0099] When the storage spaces 1011 in the cabinet 1 are interconnected, at least one heat dissipation component 5 is provided, and the heat dissipation component 5 is used to dissipate heat from the storage cavities 101 , that is, heat can be dissipated from a plurality of the storage cavities 101 as a whole.

[0100] With the above structure, the heat dissipation component 5 can dissipate heat in the storage space 1011 to avoid heat accumulation during charging and affect charging, making the charging structure 201 safer for charging the laptop computer.

[0101] Furthermore, the laptop charging cabinet includes a space temperature monitoring structure 6 capable of monitoring the ambient temperature;

[0102] When the storage spaces 1011 in the cabinet 1 are relatively isolated from each other, the number of space temperature monitoring structures 6 matches the number of storage spaces 1011, and the space temperature monitoring structures 6 are arranged in a one-to-one correspondence with the storage spaces 1011 to monitor the ambient temperature of the corresponding storage spaces 1011. The control module 4 is connected to the heat dissipation component 5 and the space temperature monitoring structure 6, and controls the working state of the heat dissipation component 5 corresponding to the storage space 1011 according to the ambient temperature of the storage space 1011 detected by the space temperature monitoring structure 6.

[0103] When the storage spaces 1011 in the cabinet 1 are interconnected, at least one space temperature monitoring structure 6 is provided, and the space temperature monitoring structure 6 is used to monitor the ambient temperature of the storage cavity 101. The control module 4 is connected to the heat dissipation component 5 and the space temperature monitoring structure 6, and controls the working state of the heat dissipation component 5 according to the ambient temperature of the storage cavity 101 detected by the space temperature monitoring structure 6.

[0104] With the above structure, when the space temperature monitoring structure 6 detects that the ambient temperature is higher than the preset high temperature threshold, the control module 4 controls the heat dissipation component 5 to operate and dissipate heat, thereby reducing the ambient temperature. When the space temperature monitoring structure 6 detects that the ambient temperature is lower than the normal preset value, the control module 4 controls the heat dissipation component 5 to stop operating. The above structure enables the heat dissipation component 5 to operate intermittently, making the laptop charging cabinet more energy-efficient and effectively extending the service life of the heat dissipation component 5.

[0105] Of course, the space temperature monitoring structure 6 can be provided separately, or can be formed by the device temperature acquisition mechanism 3 , that is, the temperature of the laptop computer is used to indirectly represent or infer the temperature of the corresponding space.

[0106] Furthermore, the heat dissipation component 5 is used to discharge the air in the space where it acts to the outside, and the cabinet 1 is provided with a heat dissipation hole 7 connected to the space where the heat dissipation component 5 acts;

[0107] The space in which the heat dissipation component 5 acts is the storage space 1011 or the entire storage cavity 101 .

[0108] The above structure makes the arrangement of the heat dissipation component 5 more reasonable. When the heat dissipation component 5 is working, the heat dissipation component 5 discharges the air with higher temperature in the space in which it acts to the outside to form negative pressure, and the air with lower temperature outside enters the space in which the heat dissipation component 5 acts through the heat dissipation holes 7, thereby achieving environmental cooling. The air entering from the outside will take away the heat generated by the laptop computer.

[0109] Furthermore, the storage spaces 1011 in the cabinet 1 are interconnected, and multiple storage spaces 1011 are distributed in sequence along the width direction of the cabinet 1; the cabinet 1 is respectively provided with the heat dissipation components 5 on both side walls along its width direction; and the cabinet 1 is provided with a plurality of heat dissipation holes 7 on the front side and / or rear side and / or left side and / or right side.

[0110] With the above structure, the storage space 1011 is distributed in sequence along the width direction of the cabinet 1, and the heat dissipation component 5 is also arranged on both sides of the width direction of the cabinet 1, so that the air duct flow design is more reasonable; the air entering through the heat dissipation holes 7 is guided by the heat dissipation components 5 on both sides to flow along the width direction of the cabinet 1, so that the incoming cold air can act on the entire storage space 1011; specifically, the heat dissipation holes 7 are provided on the front side and left and right sides of the cabinet 1.

[0111] Furthermore, the laptop charging cabinet includes a communication module 8, which is connected to the control module 4 to obtain charging information of each charging structure 201;

[0112] The communication module 8 can communicate with the user's communication device; or the communication module 8 uploads the charging information of each charging structure 201 to a server that can communicate with the user's communication device.

[0113] With the above structure, users can obtain the charging status of their laptop computers placed in the laptop charging cabinet, such as the current size, etc., through their own communication devices such as mobile phones.

[0114] Furthermore, when the laptop computer supports the function of outputting its temperature externally through communication, the device temperature acquisition mechanism 3 is connected to the laptop computer in communication to acquire its temperature;

[0115] When the laptop computer does not support the function of outputting its temperature through communication, the device temperature acquisition mechanism 3 acquires the temperature of the laptop computer by monitoring the temperature of the laptop computer, that is, by using a sensor.

[0116] The above structure makes the arrangement of the device temperature acquisition mechanism 3 more reasonable.

[0117] Furthermore, when the laptop computer does not support the function of outputting its temperature through communication, the device temperature acquisition mechanism 3 includes a device temperature monitoring sensor capable of monitoring the temperature of the laptop computer, and each storage space 1011 is matched with at least one device temperature monitoring sensor to detect the temperature of the laptop computer in the storage space 1011.

[0118] The above structure makes the structure of the equipment temperature monitoring mechanism more reasonable; of course, when the storage spaces 1011 in the cabinet 1 are interconnected, the equipment temperature monitoring mechanism includes a temperature monitoring module that can monitor the temperature of each area within its monitoring range, such as an infrared sensor.

[0119] Furthermore, one or more partition frames 9 are provided in the storage cavity 101 to divide it into a plurality of storage spaces 1011 .

[0120] By adopting the above structure, the storage cavity 101 can form a plurality of storage spaces 1011; the partition frame 9 adopts a sheet metal design, so that it can better support the laptop computer, and it has better impact resistance and can better provide all-round protection for the laptop computer inside.

[0121] Furthermore, the partition frames 9 are sequentially spaced apart along the width direction of the storage cavity 101;

[0122] The partition frame 9 includes a first support leg 901, a second support leg 902, and a support connecting portion 903. One end of the first support leg 901 and the second support leg 902 are connected to the bottom of the storage cavity 101, and the other end is extended along the height direction of the storage cavity 101, and the first support leg 901 and the second support leg 902 are spaced apart along the depth direction of the storage cavity 101; the two sides of the support connecting portion 903 are respectively connected to the end of the first support leg 901 and the second support leg 902 away from the bottom of the storage cavity 101.

[0123] With the above structure, the structure of the partition frame 9 enables the storage spaces 1011 in the cabinet 1 to be interconnected, thereby greatly increasing the internal air flow and improving the heat dissipation effect.

[0124] Furthermore, the partition frame 9 is detachably connected to the bottom of the storage cavity 101 .

[0125] With the above structure, the user can disassemble and assemble the partition frame 9 according to the thickness of the laptop computer, so that the storage space 1011 can better place and fix the laptop computer, which is more practical.

[0126] Furthermore, a partition frame mounting portion 102 for mounting and fixing the partition frame 9 is provided at the bottom of the storage cavity 101, and the number of the partition frame mounting portions 102 matches the number of the partition frames 9; each of the partition frame mounting portions 102 includes a first bracket foot mounting hole 1021 that matches the first bracket foot 901 for detachable mounting of the first bracket foot 901, and a second bracket foot mounting hole 1022 that matches the second bracket foot 902 for detachable mounting of the second bracket foot 902.

[0127] By adopting the above structure, the detachable cooperation between the first bracket foot mounting hole 1021 and the first bracket foot 901, and the detachable cooperation between the second bracket foot mounting hole 1022 and the second bracket foot 902 realize the detachable installation of the partition frame 9; and the above structure makes the installation of the partition frame 9 very convenient, which is convenient for the actual use of the user.

[0128] Furthermore, the cabinet 1 includes a cabinet body 103 and a door panel structure 104. The cabinet body 103 is provided with the storage cavity 101, and the front side of the cabinet body 103 is provided with a storage opening 1031 connected to the storage cavity 101. The door panel structure 104 is movably connected to the cabinet body 103 to open and close the storage opening 1031.

[0129] The above structure makes the structure of the cabinet 1 more reasonable. The user can open and close the storage opening 1031 by operating the door panel structure 104. When the storage opening 1031 is opened, the storage cavity 101 is exposed, and the user can take out and put in the laptop computer.

[0130] Specifically, the cabinet body 103 and the door panel structure 104 are designed with sheet metal, so that they have better impact resistance and can better provide all-round protection for the laptop computer inside;

[0131] The first bracket foot 901 is arranged close to the storage opening 1031, and the second bracket foot 902 is arranged away from the storage opening 1031, and the distance from the end of the first bracket foot 901 away from the bottom of the storage cavity 101 to the bottom of the storage cavity 101 is smaller than the distance from the end of the second bracket foot 902 away from the bottom of the storage cavity 101 to the bottom of the storage cavity 101; the above structure makes it convenient for users to take and place laptop computers.

[0132] Furthermore, the door panel structure 104 is rotatably connected to the cabinet body 103 .

[0133] The above structure makes the arrangement of the door panel structure 104 more reasonable.

[0134] Furthermore, a hinge 10 is provided between the door panel structure 104 and the cabinet body 103 .

[0135] By adopting the above structure, the door panel structure 104 is rotatably arranged on the cabinet body 103 .

[0136] See Figures 4 and 5 Furthermore, the hinge 10 includes a first hinge structure 1001 and a second hinge structure 1002 rotatably connected to the first hinge structure 1001, the first hinge structure 1001 is connected to the cabinet body 103, and the second hinge structure 1002 is connected to the door panel structure 104; when the door panel structure 104 closes the storage opening 1031, the first hinge mating portion 10011 in the first hinge structure 1001 and the second hinge mating portion 10021 in the second hinge structure 1002 are arranged relative to each other, and the first hinge mating portion 10011 and the second hinge mating portion 10021 are configured to be mated with an elastic snap 10025-1.

[0137] With the above structure, when the door panel structure 104 closes the storage opening 1031, the first hinge engaging portion 10011 and the second hinge engaging portion 10021 are arranged opposite to each other and engage with each other. At this time, if the door panel structure 104 needs to be operated to open the storage opening 1031, a certain operating force needs to be applied to disengage the first hinge engaging portion 10011 and the second hinge engaging portion 10021, thereby preventing the door panel structure 104 from accidentally opening and affecting people's walking.

[0138] The first hinge fitting portion 10011 and the second hinge fitting portion 10021 also require a certain amount of operating force when buckling together, and a sound is produced when buckling together, which can indicate to the user that the door panel structure 104 is fully closed.

[0139] The above structure is reasonably arranged, and effectively prevents the door panel from accidentally opening and causing impact on people, and also ensures safety in use.

[0140] Furthermore, the first hinge structure 1001 includes a first hinge portion 10012, a second hinge portion 10013, and a third hinge portion 10014, wherein the first hinge portion 10012 is used to connect to the cabinet body 103, one end of the second hinge portion 10013 is connected to the first hinge portion 10012, and the second hinge portion 10013 and the first hinge portion 10012 are arranged perpendicularly, and two third hinge portions 10014 are provided, and the two third hinge portions 10014 are respectively located on both sides of the other end of the second hinge portion 10013 and connected thereto, and the third hinge portion 10014 and the first hinge portion 10012 are arranged in parallel;

[0141] The second hinge structure 1002 includes a fourth hinge part 10022 and a fifth hinge part 10023. The fifth hinge part 10023 is used to connect to the door panel structure 104. One end of the fourth hinge part 10022 is connected to the fifth hinge part 10023, and the other end is located between the two third hinge parts 10014 and is rotatably connected thereto. The fourth hinge part 10022 and the fifth hinge part 10023 are arranged vertically.

[0142] The above structure makes the first hinge structure 1001 and the second hinge structure 1002 more reasonable, and can increase the rotation angle of the door panel structure 104 to facilitate actual use by users.

[0143] Furthermore, the fifth hinge part 10023 is provided with a matching accommodating groove 10024, and the matching accommodating groove 10024 matches the connecting part of the first hinge part 10012 and the second hinge part 10013, and an elastic snap-fit structure 10025 is provided on the side of the matching accommodating groove 10024 close to the fourth hinge part 10022; the second hinge part 10013 is provided with a snap-fit groove 10015 matching with the elastic snap-fit structure 10025 at the corresponding position; specifically, the elastic snap-fit structure 10025 includes a snap-fit 10025-1 matching with the snap-fit groove 10015 and a spring 10025-2 acting on the snap-fit 10025-1.

[0144] The above structure makes the structural setting of the hinge 10 more reasonable; when the door panel structure 104 closes the storage opening 1031, the connecting part of the first hinge part 10012 and the second hinge part 10013 will enter the matching accommodating groove 10024. At this time, the elastic snap-fit structure 10025 is opposite to the snap-fit groove 10015 and is engaged, that is, the snap-fit groove 10015 is formed into the first hinge matching part 10011, and the elastic snap-fit structure 10025 is formed into the second hinge matching part 10021.

[0145] Furthermore, the laptop charging cabinet includes a door lock structure 11 , which is disposed on the door panel structure 104 and is used to control whether the door panel structure 104 is allowed to move to lock open the storage opening 1031 .

[0146] With the above structure, the setting of the door lock structure 11 makes the laptop charging cabinet more reasonable; when the door panel structure 104 closes the storage opening 1031, the door lock structure 11 can prevent the door panel structure 104 from being accidentally opened; when the user needs to operate the door panel structure 104 to open the storage opening 1031, the door lock structure 11 needs to be operated.

[0147] Furthermore, the cabinet 1 is provided with a charging accommodating cavity 105 for installing and accommodating the charging mechanism 2 ; specifically, the charging accommodating cavity 105 is located below the storage cavity 101 .

[0148] With the above structure, the charging accommodating cavity 105 provides an environment for the installation of the charging mechanism 2, and the charging accommodating cavity 105 is located below the storage cavity 101, so that the charging structure 201 corresponding to each storage space 1011 can be set close to the storage space 1011, which is convenient for the user's actual use.

[0149] Furthermore, the charging structure 201 is provided with an electric energy output port 2011 for outputting electric energy, and the electric energy output port 2011 is configured as a USB interface or Typc-C or socket.

[0150] The above structure makes the charging structure 201 more reasonable. Specifically, the power output port 2011 adopts Typc-C.

[0151] Furthermore, the laptop charging cabinet includes a leakage protector.

[0152] With the above structure, the provision of the leakage protector can prevent electrical accidents.

[0153] Furthermore, the laptop charging cabinet includes indicator lights 12 whose number matches the number of the charging structures 201 , and the indicator lights 12 are arranged in a one-to-one correspondence with the charging structures 201 .

[0154] With the above structure, the indicator light 12 can be used to indicate the charging status of the laptop computer in the corresponding storage space 1011 .

[0155] The same or similar parts between the various embodiments in this specification can be referred to each other, and each embodiment focuses on the differences from other embodiments.

[0156] The above description is merely a specific embodiment of the present application, but the scope of protection of the present application is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in the present application should be included in the scope of protection of the present application. Therefore, the scope of protection of the present application should be based on the scope of protection of the claims.

Claims

1. A laptop charging cabinet, characterized in that: include: A cabinet (1), the cabinet (1) being provided with a storage cavity (101), and the storage cavity (101) being divided into one or more storage spaces (1011) capable of accommodating a laptop computer; A charging mechanism (2), the charging mechanism (2) comprising a charging structure (201) capable of providing electrical energy when charging a laptop computer, and each storage space (1011) is matched with at least one charging structure (201) to provide the electrical energy required for charging the laptop computer in the storage space (1011); A device temperature acquisition mechanism (3), the device temperature acquisition mechanism (3) being used to acquire the temperature of the laptop computer in each storage space (1011); and a control module (4), the control module (4) being connected to the charging structure (201) and the device temperature acquisition mechanism (3), and controlling the working state of the charging structure (201) matching the storage space (1011) according to the temperature of the laptop computer in each storage space (1011) acquired by the device temperature acquisition mechanism (3).

2. The laptop charging cabinet according to claim 1, characterized in that: It comprises a heat dissipation component (5) arranged on the cabinet (1); When the storage spaces (1011) are relatively isolated from each other in the cabinet (1), the number of heat dissipation components (5) matches the number of storage spaces (1011), and the heat dissipation components (5) are arranged in a one-to-one correspondence with the storage spaces (1011) to dissipate heat for the corresponding storage spaces (1011); When the storage spaces (1011) in the cabinet (1) are in communication with each other, at least one heat dissipation component (5) is provided, and the heat dissipation component (5) is used to dissipate heat from the storage cavity (101).

3. The laptop charging cabinet according to claim 2, characterized in that: including a space temperature monitoring structure (6) capable of monitoring ambient temperature; When the storage spaces (1011) in the cabinet (1) are relatively isolated from each other, the number of space temperature monitoring structures (6) matches the number of storage spaces (1011), and the space temperature monitoring structures (6) are arranged in a one-to-one correspondence with the storage spaces (1011) to monitor the ambient temperature of the corresponding storage spaces (1011). The control module (4) is connected to the heat dissipation component (5) and the space temperature monitoring structure (6), and controls the working state of the heat dissipation component (5) that matches the corresponding storage space (1011) according to the ambient temperature of the storage space (1011) detected by the space temperature monitoring structure (6); When the storage spaces (1011) in the cabinet (1) are in communication with each other, at least one space temperature monitoring structure (6) is provided, and the space temperature monitoring structure (6) is used to monitor the ambient temperature of the storage cavity (101). The control module (4) is connected to the heat dissipation component (5) and the space temperature monitoring structure (6), and controls the working state of the heat dissipation component (5) according to the ambient temperature of the storage cavity (101) detected by the space temperature monitoring structure (6).

4. The laptop charging cabinet according to claim 2, characterized in that: The heat dissipation component (5) is used to discharge the air in the space where it acts to the outside, and the cabinet (1) is provided with a heat dissipation hole (7) that is connected to the space where the heat dissipation component (5) acts; The storage spaces (1011) in the cabinet (1) are interconnected, and a plurality of the storage spaces (1011) are sequentially distributed along the width direction of the cabinet (1); the heat dissipation components (5) are respectively provided on the side walls of both sides of the cabinet (1) along the width direction; and a plurality of heat dissipation holes (7) are provided on the front side and / or the rear side and / or the left side and / or the right side of the cabinet (1).

5. The laptop charging cabinet according to claim 1, characterized in that: It comprises a communication module (8), wherein the communication module (8) is connected to the control module (4) to obtain charging information of each charging structure (201); The communication module (8) is capable of communicating with the user's communication device; Alternatively, the communication module (8) uploads the charging information of each charging structure (201) to a server capable of communicating with a user's communication device; When the laptop computer supports the function of outputting its temperature via communication, the device temperature acquisition mechanism (3) is connected to the laptop computer for communication to acquire its temperature; When the laptop computer does not support the function of outputting its temperature externally through communication, the device temperature acquisition mechanism (3) acquires the temperature of the laptop computer by monitoring its temperature.

6. The laptop charging cabinet according to claim 1, characterized in that: One or more partition frames (9) are provided in the storage cavity (101) to divide it into a plurality of storage spaces (1011); The partition frames (9) are sequentially spaced apart along the width direction of the storage cavity (101); The partition frame (9) comprises a first bracket foot (901), a second bracket foot (902), and a bracket connecting portion (903), wherein one end of the first bracket foot (901) and the second bracket foot (902) are connected to the bottom of the storage cavity (101), and the other end is extended along the height direction of the storage cavity (101), and the first bracket foot (901) and the second bracket foot (902) are spaced apart along the depth direction of the storage cavity (101); and both sides of the bracket connecting portion (903) are respectively connected to one end of the first bracket foot (901) and the second bracket foot (902) away from the bottom of the storage cavity (101).

7. The laptop charging cabinet according to claim 6, characterized in that: The partition frame (9) is detachably connected to the bottom of the storage cavity (101); The bottom of the storage cavity (101) is provided with a partition frame mounting portion (102) for mounting and fixing the partition frame (9), and the number of the partition frame mounting portions (102) matches the number of the partition frames (9); each of the partition frame mounting portions (102) includes a first bracket foot mounting hole (1021) that matches the first bracket foot (901) for detachably mounting the first bracket foot (901), and a second bracket foot mounting hole (1022) that matches the second bracket foot (902) for detachably mounting the second bracket foot (902).

8. The laptop charging cabinet according to claim 1, characterized in that: The cabinet (1) comprises a cabinet body (103) and a door panel structure (104); the cabinet body (103) is provided with the storage cavity (101); and a storage opening (1031) communicating with the storage cavity (101) is provided on the front side of the cabinet body (103); and the door panel structure (104) is movably connected to the cabinet body (103) to open and close the storage opening (1031).

9. The laptop charging cabinet according to claim 8, characterized in that: The door panel structure (104) is rotatably connected to the cabinet body (103); A hinge (10) is provided between the door panel structure (104) and the cabinet body (103); The hinge (10) comprises a first hinge structure (1001) and a second hinge structure (1002) rotatably connected to the first hinge structure (1001), wherein the first hinge structure (1001) is connected to the cabinet body (103), and the second hinge structure (1002) is connected to the door panel structure (104); when the door panel structure (104) closes the storage opening (1031), the first hinge matching portion (10011) in the first hinge structure (1001) and the second hinge matching portion (10021) in the second hinge structure (1002) are arranged relative to each other, and the first hinge matching portion (10011) and the second hinge matching portion (10021) are configured to match with an elastic buckle (10025-1).

10. The laptop charging cabinet according to claim 9, characterized in that: The first hinge structure (1001) comprises a first hinge portion (10012), a second hinge portion (10013), and a third hinge portion (10014); the first hinge portion (10012) is used to connect to the cabinet body (103); one end of the second hinge portion (10013) is connected to the first hinge portion (10012), and the second hinge portion (10013) and the first hinge portion (10012) are arranged perpendicularly; two third hinge portions (10014) are provided, and the two third hinge portions (10014) are respectively located on both sides of the other end of the second hinge portion (10013) and connected thereto, and the third hinge portion (10014) and the first hinge portion (10012) are arranged in parallel; The second hinge structure (1002) comprises a fourth hinge portion (10022) and a fifth hinge portion (10023), the fifth hinge portion (10023) being used to connect to the door panel structure (104), one end of the fourth hinge portion (10022) being connected to the fifth hinge portion (10023), and the other end being located between the two third hinge portions (10014) and rotatably connected thereto, and the fourth hinge portion (10022) and the fifth hinge portion (10023) being arranged vertically; The fifth hinge part (10023) is provided with a matching accommodating groove (10024), and the matching accommodating groove (10024) matches the connecting portion of the first hinge part (10012) and the second hinge part (10013); an elastic buckle structure (10025) is provided on a side of the matching accommodating groove (10024) close to the fourth hinge part (10022); the second hinge part (10013) is provided with a buckle groove (10015) matching the elastic buckle structure (10025) at a corresponding position; The laptop charging cabinet comprises a door lock structure (11), wherein the door lock structure (11) is arranged on the door panel structure (104) and is used to control whether the door panel structure (104) is allowed to move to lock open the storage opening (1031); The cabinet (1) is provided with a charging accommodating cavity (105) for installing and accommodating the charging mechanism (2); the charging accommodating cavity (105) is located below the storage cavity (101); The charging structure (201) is provided with an electric energy output port (2011) for outputting electric energy, and the electric energy output port (2011) is configured as a USB interface, a Typc-C, or a socket; The laptop charging cabinet includes a leakage protector; The laptop charging cabinet includes indicator lights (12) whose number matches the number of the charging structures (201), and the indicator lights (12) are arranged in a one-to-one correspondence with the charging structures (201).