100W high-power charger shell

By introducing a thermally conductive graphite layer into the charger casing, the problem of heat accumulation during operation of high-power chargers is solved, effective heat dissipation is achieved, and the performance and service life of electronic components are improved.

CN223436933UActive Publication Date: 2025-10-14DONGGUAN YAQI HARDWARE & PLASTIC TECH CO LTD
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Patent Information

Application Number
CN202422779594.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2025-10-14
Estimated Expiration
2034-11-14

AI Technical Summary

Technical Problem

Existing high-power chargers heat up quickly during operation, causing internal electronic components to malfunction, affecting performance and lifespan.

Method used

A thermally conductive graphite layer is used as the heat conduction layer to transfer internal heat to the shell body laterally to achieve effective heat dissipation.

Benefits of technology

Through the design of the thermal conductive layer, internal heat is reduced and the performance and service life of electronic components are improved.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a 100W high-power charger housing, comprising a housing body, the left and right sides of the lower part of the housing body are fixedly connected with bolts, the upper part of the housing body is provided with an upper cover, the middle part of the upper cover is provided with a wire hole, the upper part of the left side of the upper cover is fixedly connected with a first positioning column, and the upper part of the right side of the upper cover is fixedly connected with a second positioning column. A second positioning column is fixedly connected to the lower portion of the right side of the upper cover, an inner clamping block is fixedly connected to the interior of the periphery of the upper cover, an outer clamping block is fixedly connected to the exterior of the periphery of the upper cover, a first positioning hole is formed in the upper portion of the left side of the shell body, and a second positioning hole is formed in the lower portion of the right side of the shell body; an outer clamping groove is formed in the upper portion of the shell body, and a heat conduction layer is fixedly connected to the interior of the shell body. By means of the structure, heat generated in the working process of the electronic product can be transversely transmitted to the outside of the product, so that internal heat dissipation is achieved, the internal performance of the product is improved, and the service life of the product is prolonged.
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Description

Technical Field

[0001] The utility model relates to the technical field of charger shells, in particular to a 100W high-power charger shell. Background Art

[0002] The charger casing plays multiple important roles in the overall design of the charger. The following are the main functions of the charger casing; Protecting internal components Physical protection: The casing can prevent damage to internal electronic components from external impact, extrusion and falling. Dustproof and waterproof: Through the sealed design, dust and moisture are prevented from entering the charger, avoiding short circuits and other electrical failures. Electrical isolation and insulation: The casing material generally has good insulation properties, preventing users from directly contacting live parts and reducing the risk of electric shock. Grounding: The metal casing can further improve safety by grounding and directing leakage current to the ground. Aesthetics and user experience Appearance design: The design of the casing can enhance the overall beauty of the product and make it more attractive to consumers. Feel: The surface treatment affects the user's tactile experience. Portability: The lightweight and compact design is easy to carry and use.

[0003] In the prior art, with the development of society and the needs of users, chargers need to charge electrical products quickly, so that the power of the charger gradually increases, that is, the speed of charging the electrical products gradually increases. However, as the charging speed increases, the temperature of the high-power charger rises faster during operation and eventually reaches a high temperature. Under high temperature conditions, the electronic components inside the charger will malfunction. Utility Model Content

[0004] The purpose of this utility model is to provide a 100W high-power charger housing that can transfer the heat generated during the internal working process of electronic products horizontally to the outside of the product, thereby achieving internal heat dissipation and improving the performance and service life of the product.

[0005] To achieve the above objectives, a 100W high-power charger housing is provided, comprising a housing body, wherein latches are fixedly connected to the left and right sides of the lower portion of the housing body, an upper cover is provided above the housing body, a wiring hole is opened in the middle of the upper cover, a first positioning post is fixedly connected to the upper left side of the upper cover, a second positioning post is fixedly connected to the lower right side of the upper cover, an inner clamping block is fixedly connected to the inner periphery of the upper cover, and an outer clamping block is fixedly connected to the outer periphery of the upper cover;

[0006] A first positioning hole is opened on the upper left side of the shell body, a second positioning hole is opened on the lower right side of the shell body, an outer card slot is opened on the upper side of the shell body, and a heat conducting layer is fixedly connected to the interior of the shell body.

[0007] According to the 100W high-power charger housing, the upper cover is located above the housing body, and the upper cover is slidably connected to the housing body.

[0008] According to the 100W high-power charger housing, the inner card block corresponds to the outer card slot, and the outer card block corresponds to the outer card slot.

[0009] According to the 100W high-power charger housing, the inner card block is plugged into the outer card slot, and the outer card block is plugged into the outer card slot.

[0010] According to the 100W high-power charger housing, the first positioning column corresponds to the first positioning hole, the first positioning column is plugged into the first positioning hole, the second positioning column corresponds to the second positioning hole, and the second positioning column is plugged into the second positioning hole.

[0011] According to the 100W high-power charger shell, the front and rear sides of the upper cover are fixedly connected with sub-pins, the front and rear sides inside the shell body are fixedly connected with female pins, and the sub-pins are plugged into the female pins.

[0012] According to the 100W high-power charger housing, a connecting plate is fixedly connected to the interior of the housing body, and the connecting plate is fixedly connected to the pin.

[0013] According to the 100W high-power charger housing, the heat-conducting layer is a heat-conducting graphite layer.

[0014] The utility model has the following beneficial effects:

[0015] 1. Compared with the existing technology, this 100W high-power charger shell is provided with a heat-conducting layer, and the heat-conducting layer is a heat-conducting graphite layer. When the electronic components inside the charger body are working, the heat emitted can be conducted to the front and back sides of the shell body through the heat-conducting layer, thereby conducting the heat inside the shell body out, thereby reducing the heat inside the shell body to a certain extent, thereby ensuring the performance and service life of the electronic components inside the shell body.

[0016] Additional aspects and advantages of the present invention will be given in part in the following description and will become apparent from the following description or learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The present invention will be further described below with reference to the accompanying drawings and embodiments;

[0018] Figure 1 This is a three-dimensional diagram of the casing of a 100W high-power charger of the present invention;

[0019] Figure 2 This is a diagram showing the separation of the outer shell body and the upper cover of a 100W high-power charger shell of the present invention;

[0020] Figure 3 This is a cross-sectional view of a 100W high-power charger housing according to the present invention;

[0021] Figure 4 This is a bottom view of the upper cover of a 100W high-power charger housing according to the present invention;

[0022] Figure 5 This is a cross-sectional view of the shell body of a 100W high-power charger shell of the present utility model.

[0023] Legend:

[0024] 1. Shell body; 2. Latch; 3. Upper cover; 4. Wire hole; 5. First positioning column; 6. Second positioning column; 7. Inner clamping block; 8. Outer clamping block; 9. Sub-pin; 10. First positioning hole; 11. Second positioning hole; 12. Outer clamping slot; 13. Female pin; 14. Connecting plate; 15. Thermal conductive layer. DETAILED DESCRIPTION

[0025] This section will describe in detail the specific embodiments of the present invention. The preferred embodiments of the present invention are shown in the accompanying drawings. The purpose of the accompanying drawings is to supplement the description of the text part of the specification with graphics, so that people can intuitively and vividly understand each technical feature and overall technical solution of the present invention, but it cannot be understood as a limitation on the scope of protection of the present invention.

[0026] Reference Figure 1-5 The embodiment of the present invention is a 100W high-power charger shell, which includes a shell body 1, with latches 2 fixedly connected to the left and right sides of the lower side of the shell body 1, an upper cover 3 is provided above the shell body 1, the upper cover 3 is located above the shell body 1, the upper cover 3 is slidably connected to the shell body 1, and a wire hole 4 is opened in the middle of the upper cover 3, a first positioning column 5 is fixedly connected to the upper left side of the upper cover 3, and a second positioning column 6 is fixedly connected to the lower right side of the upper cover 3, the first positioning column 5 corresponds to the first positioning hole 10, the first positioning column 5 is plugged into the first positioning hole 10, the second positioning column 6 corresponds to the second positioning hole 11, and the second positioning column 6 is plugged into the second positioning hole 11, an inner card block 7 is fixedly connected to the outer periphery of the upper cover 3, and an outer card block 8 is fixedly connected to the outer periphery of the upper cover 3, the inner card block 7 corresponds to the outer card slot 12, the outer card block 8 corresponds to the outer card slot 12, the inner card block 7 is plugged into the outer card slot 12, and the outer card block 8 is plugged into the outer card slot 12.

[0027] The structure, by being provided with the latch 2, enables the operator to insert the device into the inside of the socket, thereby ensuring power supply for the electronic components inside the charger housing, and thereby transmitting power to the inside of the electrical equipment.

[0028] By being provided with the wire hole 4, the operator can insert the wire end into the inside of the housing body 1.

[0029] By being provided with the first positioning column 5 and the second positioning column 6, and the first positioning column 5 being inserted into the first positioning hole 10 and the second positioning column 6 being inserted into the second positioning hole 11, the operator can accurately insert the upper cover 3 into the inside of the housing body 1.

[0030] By being provided with the inner clamping block 7 and the outer clamping block 8, and both the inner clamping block 7 and the outer clamping block 8 being inserted into the outer clamping groove 12, when the upper cover 3 is inserted into the inside of the housing body 1, the inner clamping block 7 and the outer clamping block 8 are clamped with the outer clamping groove 12, so that the upper cover 3 can be stably and tightly connected with the housing body 1, avoiding the use of bolts to connect the two, thereby avoiding punching, so that the internal space of the housing body 1 is larger, more electronic components can be placed, and the integrity of the whole device can be guaranteed, so that the shell can achieve better airtightness, and the device can achieve better waterproof effect.

[0031] The front and rear sides of the upper cover 3 are fixedly connected with the female pin 13, the inside of the housing body 1 is fixedly connected with the female pin 13, the female pin 13 is inserted into the male pin 9, the left side of the housing body 1 is provided with the first positioning hole 10, the right side of the housing body 1 is provided with the second positioning hole 11, the upper side of the housing body 1 is provided with the outer clamping groove 12, the inside of the housing body 1 is fixedly connected with the connecting plate 14, the connecting plate 14 is fixedly connected with the latch 2, the inside of the housing body 1 is fixedly connected with the heat conduction layer 15, and the heat conduction layer 15 is a heat conduction graphite layer.

[0032] The structure, by being provided with the female pin 13 on the front and rear sides of the housing body 1, enables the operator to insert the charger circuit board thereinto, and by being provided with the female pin 13 and the male pin 9, when the charger circuit board is inserted into the inside of the female pin 13, the male pin 9 can clamp the left and right ends of the charger circuit board, so that the charger circuit board remains stable.

[0033] By being provided with the heat conduction layer 15, and the heat conduction layer 15 being a heat conduction graphite layer, when the heat generated by the electronic components inside the charger body during work can be conducted to the front and rear sides of the housing body 1 through the heat conduction layer 15, the heat inside the housing body 1 is conducted out, so that the heat inside the housing body 1 is reduced to a certain extent, thereby ensuring the performance and service life of the electronic components inside the housing body 1.

[0034] Working principle: the 100W high-power charger shell, in use, first insert electronic components into the inside of female pin 13, and cover the upper cover 3 into the inside of the shell body 1, so as to complete the assembly of the device.

[0035] The utility model embodiment has been explained in detail above in combination with the drawings, but the utility model is not limited to the above-mentioned embodiments, within the knowledge scope possessed by ordinary skilled in the art, various changes can be made without departing from the utility model purposes.

Claims

1. A 100W high-power charger housing, characterized in that: The invention comprises a shell body (1), wherein the left and right sides of the lower side of the shell body (1) are fixedly connected with latches (2), an upper cover (3) is provided on the upper side of the shell body (1), a wire hole (4) is provided in the middle of the upper cover (3), a first positioning column (5) is fixedly connected to the upper left side of the upper cover (3), a second positioning column (6) is fixedly connected to the lower right side of the upper cover (3), an inner clamping block (7) is fixedly connected to the inner periphery of the upper cover (3), and an outer clamping block (8) is fixedly connected to the outer periphery of the upper cover (3); A first positioning hole (10) is provided on the upper left side of the shell body (1), a second positioning hole (11) is provided on the lower right side of the shell body (1), an external card slot (12) is provided on the upper side of the shell body (1), and a heat-conducting layer (15) is fixedly connected to the interior of the shell body (1).

2. A 100W high-power charger housing according to claim 1, characterized in that: The upper cover (3) is located above the outer shell body (1), and the upper cover (3) is slidably connected to the outer shell body (1).

3. The 100W high-power charger housing according to claim 1, characterized in that: The inner card block (7) corresponds to the outer card slot (12), and the outer card block (8) corresponds to the outer card slot (12).

4. The 100W high-power charger housing according to claim 3, characterized in that: The inner card block (7) is plugged into the outer card slot (12), and the outer card block (8) is plugged into the outer card slot (12).

5. The 100W high-power charger housing according to claim 1, characterized in that: The first positioning column (5) corresponds to the first positioning hole (10), and the first positioning column (5) is plugged into the first positioning hole (10); the second positioning column (6) corresponds to the second positioning hole (11), and the second positioning column (6) is plugged into the second positioning hole (11).

6. The 100W high-power charger housing according to claim 1, characterized in that: The front and rear sides of the upper cover (3) are fixedly connected with sub-pins (9), and the front and rear sides of the interior of the shell body (1) are fixedly connected with female pins (13), and the sub-pins (9) are plugged into the female pins (13).

7. The 100W high-power charger housing according to claim 1, characterized in that: A connecting plate (14) is fixedly connected to the interior of the housing body (1), and the connecting plate (14) is fixedly connected to the latch (2).

8. The 100W high-power charger housing according to claim 1, characterized in that: The heat-conducting layer (15) is a heat-conducting graphite layer.