Waterproof structure and electronic equipment

By setting a combination structure of a waterproof part, a conductive part and a wire at the button of the electronic device, the problem of water leakage caused by the easy damage of the silicone cover is solved, and timely detection and early warning of the waterproof structure are achieved to ensure stable equipment performance.

CN223488555UActive Publication Date: 2025-10-28LENOVO (BEIJING) LTD
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Patent Information

Application Number
CN202422533362.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-18
Publication Date
2025-10-28
Estimated Expiration
2034-10-18

AI Technical Summary

Technical Problem

In existing waterproof structures for electronic device buttons, silicone sleeves are prone to damage or loosening due to frequent use, leading to water leakage and affecting device performance.

Method used

It adopts a combination structure of waterproof part, conductive part and wire. The conductive part is electrically connected to the motherboard and is used to realize signal interaction when the waterproof part is damaged or leaks water, so as to provide early warning or control.

Benefits of technology

It enables timely detection and early warning of waterproof structures, avoiding water leakage caused by damage or loosening of the waterproof structure and ensuring stable equipment performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a waterproof structure and electronic equipment, and relates to the technical field of electronic equipment. The waterproof structure comprises a waterproof part, a conductive part and a wire. The first side of the waterproof part is provided with at least one first accommodating space for accommodating the push switch. The conductive part is arranged on the first side of the waterproof part; the wire is connected with the conductive part at the first side of the waterproof part, and the wire is used for electrically connecting a mainboard of the electronic equipment and the push switch.
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Description

Technical Field

[0001] This application relates to the field of electronic equipment technology, and in particular to a waterproof structure and electronic equipment. Background Technology

[0002] With the rapid development of technology, electronic devices are becoming increasingly powerful; naturally, users are also demanding higher and higher waterproofing capabilities, including waterproofing of side button areas.

[0003] Currently, the industry mostly relies on silicone sleeves to waterproof the buttons of electronic devices. The silicone sleeve covers the internal push-button switch, and the button comes into contact with the silicone sleeve and the push-button switch sequentially from the outside to the inside of the device.

[0004] However, due to the frequent use of the buttons, the silicone sleeve is constantly in contact with the buttons and push switches, which can easily cause it to break or loosen, leading to water leakage, damage to the internal components of the equipment, and affecting the overall performance of the machine. Utility Model Content

[0005] The first aspect of this application provides a waterproof structure, which includes...

[0006] A waterproof section, wherein a first side of the waterproof section is provided with at least a first receiving space to accommodate a push switch;

[0007] A conductive part is disposed on the first side of the waterproof part;

[0008] A wire is connected to the conductive part on the first side of the waterproof part, and the wire is used to electrically connect the motherboard of the electronic device and the push switch.

[0009] In some modified embodiments of the first aspect of this application, the aforementioned waterproof structure, wherein the conductive part includes a first conductive element;

[0010] The first conductive element is disposed within the first accommodating space, the first conductive element is used to cover the push switch, and the first conductive element is connected to the wire;

[0011] If the waterproof part is in the abnormal state that causes the first conductive element to meet the electrical conduction condition, the first conductive element can conduct a path between itself and the motherboard through the wire to form a first signal.

[0012] In some modified embodiments of the first aspect of this application, the aforementioned waterproof structure, wherein the waterproof portion has a protrusion on a second side opposite to the first side;

[0013] The protrusion is arranged around the first receiving space to form a second receiving space;

[0014] The conductive part includes a second conductive element, which is disposed on the second side of the waterproof part on the side of the protrusion away from the second receiving space, and the second conductive element is connected to the wire;

[0015] If the waterproof part is in an abnormal state that causes the second conductive element to meet the electrical conduction conditions, the second conductive element can conduct a path between itself and the motherboard to form a second signal.

[0016] In some modified embodiments of the first aspect of this application, the aforementioned waterproof structure is provided with at least one opening in the waterproof part, and the second conductive element is electrically connected to the wire in the opening.

[0017] In some modified embodiments of the first aspect of this application, the aforementioned waterproof structure, wherein the waterproof portion is provided with a plurality of openings, the plurality of openings being distributed at intervals around the second receiving space on the side of the protrusion away from the second receiving space.

[0018] In some modified embodiments of the first aspect of this application, the aforementioned waterproof structure, wherein the side of the wire facing the second side of the waterproof part is provided with a first connection point and a second connection point that are isolated from each other;

[0019] The conductive part is electrically connected to both the first connection point and the second connection point.

[0020] In some modified embodiments of the first aspect of this application, in the aforementioned waterproof structure, the first conductive element is a conductive metal, and the first conductive element is welded to the electrical connection point of the wire; or

[0021] The first conductive element is a conductive cloth, and the first conductive element abuts against the electrical connection point of the wire.

[0022] In some modified embodiments of the first aspect of this application, the aforementioned waterproof structure further includes a reinforcing plate;

[0023] The waterproof part is provided with at least one groove to form the first receiving space;

[0024] The reinforcing plate is provided at least corresponding to the opening of the groove, and the side of the reinforcing plate facing the first accommodating space is used to support the wire.

[0025] A second aspect of this application provides an electronic device comprising:

[0026] A housing having at least one opening;

[0027] A button, wherein the button is pressable within the opening;

[0028] A push-button switch is provided inside the housing corresponding to the opening, so as to movably abut the button;

[0029] A motherboard, which is electrically connected to the push switch within the housing;

[0030] A waterproof structure is placed inside the housing corresponding to the opening;

[0031] The waterproof structure includes a waterproof part, a conductive part, and a wire;

[0032] The waterproof part has at least one first receiving space on its first side, the push switch is received in the first receiving space, and at least a portion of the conductive part of the waterproof part, the push switch and the wire are stacked so that the button can move to abut at least a portion of the conductive part and the push switch; the wire is electrically connected to the push switch and the motherboard on the first side of the waterproof part.

[0033] In some modified embodiments of the second aspect of this application, the aforementioned electronic device has a first conductive region on the side of the button facing the opening, the first conductive region being used to movably engage at least a portion of the conductive part, and the button also has a second conductive region spaced apart from the first conductive region. Attached Figure Description

[0034] The above and other objects, features, and advantages of exemplary embodiments of this application will become readily understood by reading the following detailed description with reference to the accompanying drawings. In the drawings, several embodiments of this application are illustrated by way of example and not limitation, with the same or corresponding reference numerals denoteing the same or corresponding parts, wherein:

[0035] Figure 1 A schematic diagram of the waterproof structure provided in this embodiment is shown.

[0036] Figure 2 A schematic diagram of the structure of the first side of the waterproof structure provided in this embodiment is shown.

[0037] Figure 3 A schematic cross-sectional view of the waterproof structure provided in this embodiment is shown.

[0038] Figure 4 The schematic diagram illustrates the structural fit between the conductive part and the wire in the waterproof structure provided in this embodiment;

[0039] Figure 5 A schematic cross-sectional view of a portion of the structure in the electronic device provided in this embodiment is shown.

[0040] Explanation of reference numerals in the attached diagram: Waterproof part 1, First receiving space 11, Protrusion 12, Second receiving space 13, Conductive part 2, First conductive component 21, Second conductive component 22, Opening 23, Wire 3, Press switch 4, Button 5, Second conductive area 51, Housing 6, Opening 61, Reinforcing plate 7, Reinforcing component 8. Detailed Implementation

[0041] Exemplary embodiments of the present disclosure will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art.

[0042] It should be noted that, unless otherwise stated, the technical or scientific terms used in this application shall have the ordinary meaning as understood by one of ordinary skill in the art to which this application pertains.

[0043] The technical solution of this application embodiment is to solve the above-mentioned technical problems, and the general idea is as follows:

[0044] Example 1

[0045] Reference Attachment Figure 1 The waterproof structure provided in this application includes a waterproof part 1, a conductive part 2, and a wire 3; the first side of the waterproof part 1 is provided with at least a first receiving space 11 to accommodate a push switch 4; the conductive part 2 is disposed on the first side of the waterproof part 1; the wire 3 is connected to the conductive part 2 on the first side of the waterproof part 1, and the wire 3 is used to electrically connect the motherboard (not shown in the figure) of the electronic device and the push switch 4.

[0046] Specifically, in order to solve the problem of water leakage from the silicone sleeve affecting the performance of the device, this embodiment is provided with a waterproof structure including a waterproof part 1, a conductive part 2, and a wire 3. Through the electrical connection between the conductive part 2 and the wire 3, if the waterproof part 1 corresponding to the first accommodating space 11 is damaged and there is a risk of water leakage, or if the waterproof part has already leaked, the conductive part 2 can interact with the motherboard of the electronic device through the wire 3, which achieves the technical effect of early warning of waterproofing or rapid detection of leakage.

[0047] The waterproof structure provided in this embodiment can be used, but is not limited to, for side buttons on electronic devices. For example, in cases where the side button is damaged at the point of contact with the button or where water leaks into the electronic device from around the side button, the waterproof structure provided in this embodiment can communicate with the mainboard of the electronic device, allowing the user or system to be aware of the situation and achieve a waterproof effect. For instance, if the waterproof structure is damaged at the location corresponding to button 5, the conductive part 2 can communicate with the mainboard to inform the user of the damage and allow for timely replacement of the waterproof structure to prevent leakage. Another example: if the waterproof structure becomes loose, allowing liquid from outside the electronic device to enter through the button opening, the conductive part 2 can communicate with the mainboard after contacting the liquid, informing the user of the leak and allowing for appropriate action. Yet another example: both of the above detection methods can be implemented simultaneously.

[0048] The waterproof part 1 can be made of flexible or partially flexible material. It is installed inside the electronic device at the location corresponding to button 5 to completely seal the opening on the electronic device's casing where button 5 is located. The shape and size of the waterproof part 1 are not limited, as long as it can completely seal the opening where button 5 is located. In this embodiment, the first side of the waterproof part 1 faces the inside of the electronic device. The first side of the waterproof part 1 has a first receiving space 11, such as a receiving groove or cavity. The shape and size of the first receiving space 11 are not limited, as long as it can accommodate the push switch 4, isolating it from the opening where button 5 is located and preventing water leakage to the push switch 4 through the opening. Therefore, it is easy to understand that at least the area of ​​the waterproof part corresponding to the first receiving space 11 is made of flexible or elastic material. (Refer to the attached diagram.) Figure 5 Therefore, the waterproof part 1 of the first accommodating space 11 can be pressed in conjunction with the button 5 to achieve the pressing of the switch 4.

[0049] The wire 3 is located on the first side of the waterproof part 1 and serves as an electrical connection wire between the push switch 4 and the main board, so as to transmit signals from the push switch 4 to the main board. In this embodiment, it can be a flexible printed circuit board (FPC).

[0050] The conductive part 2 is a structure capable of conducting electricity, such as conductive metal, carbon fiber conductive paper, conductive cloth, or other conductive media. The conductive part 2 is electrically connected to the wire 3 on the first side of the waterproof part 1. Therefore, when the conductive part 2 meets the electrical conduction conditions, the path between the conductive part 2 and the motherboard is opened, allowing the conductive part 2 to interact with the motherboard. For example, see attached diagram. Figure 5If the waterproof part 1 of the first accommodating space 11 is repeatedly damaged by the button 5, there is a risk of water leakage. At this time, the button 5 can pass through the waterproof part 1 and directly touch the conductive part 2. Then, after the main board receives the signal from the conductive part 2, it can issue an alarm signal to prompt the user to replace the waterproof cloth, thereby achieving waterproofing. For example, if the waterproof part 1 is damaged and water enters, the conductive part 2 will become conductive. At this time, the main board can perform power-off control, thereby achieving waterproofing. For example, the conductive part 2 can simultaneously have the effects of damage detection and water leakage detection.

[0051] According to the above, the waterproof structure provided in this application, by providing a conductive part 2 on the first side of the waterproof part 1, ensures that if the waterproof part 1 in the first accommodating space 11 is damaged or leaks, the conductive part 2 will cooperate with the wire to form a circuit between the main board, thereby enabling timely detection of damage or leakage of the waterproof part 1 and avoiding leakage problems caused by damage or loosening of the waterproof part 1; thus solving the problem of the silicone sleeve leak affecting the performance of the equipment.

[0052] In this article, the term "and / or" is merely a description of the relationship between related objects, indicating that there can be three relationships, such as A and / or B. Specifically, it can be understood as: A and B can be included at the same time, A can exist alone, or B can exist alone, and any of the above three situations can be met.

[0053] Further, see attached document. Figure 2 and attached Figure 3 In the waterproof structure provided in this embodiment, the conductive part 2 includes a first conductive element 21. The first conductive element 21 is disposed in the first accommodating space 11 and is used to cover the push switch 4. The first conductive element 21 is connected to the wire 3. If the waterproof part 1 is in the abnormal state and the first conductive element 21 meets the electrical conduction condition, the first conductive element 21 can conduct the path between itself and the motherboard through the wire 3 to form a first signal.

[0054] Understandably, in order to provide early warning of damage to the waterproof part 1 at the first accommodating space 11 and to conduct waterproof testing in advance, a first conductive element 21 is provided in this embodiment. The first conductive element 21 can be, but is not limited to, a conductive medium with a certain strength and thickness, such as conductive metal (copper, iron, aluminum, nickel, tin, etc.) or conductive cloth, to avoid damage when it is pressed and pressed in conjunction with the button 5, thereby affecting the transmission of the first signal. The first conductive element 21 is provided in the accommodating space 11, specifically on the inner wall of the accommodating space 11 away from the wire 3. Thus, when the press switch 4 is placed in the first accommodating space 11, the first conductive element 21 is located behind the press switch 4. A push-button switch 4 is covered on the side away from the wire 3. This allows the button 5 to directly contact the first conductive element 21 after repeated pressing and contact that damages the waterproof part 1. This forms a circuit between the electronic device's casing 6, the button 5, the first conductive element 21, the wire 3, and the motherboard. The motherboard then receives a first signal from the first conductive element 21 and can generate an alarm prompt, such as an audible alert or a notification screen, to remind the user to replace the waterproof part 1 to prevent leakage through damage to the waterproof part 1 at the corresponding first receiving space 11. This improves the waterproofing's foresight and effectively ensures the overall performance of the electronic device. It is understood that when the first conductive element 21 is a conductive metal, it can be electrically connected to the wire 3 by welding; when it is a conductive cloth, it can be electrically connected by contact with the wire 3. The first conductive element 21 can, but is not limited to, be bonded to the inner wall of the waterproof part 1 corresponding to the first receiving space 11.

[0055] Further, see attached document. Figure 1 and attached Figure 3 In the waterproof structure provided in this embodiment, in a specific implementation, the waterproof part 1 has a protrusion 12 on a second side opposite to the first side; the protrusion 12 surrounds the first receiving space 11 to form a second receiving space 13; the conductive part 2 includes a second conductive element 22, which is disposed on the second side of the waterproof part 1 on the side of the protrusion 12 opposite to the second receiving space 13, and the second conductive element 22 is connected to the wire 3; if the waterproof part 1 is in an abnormal state and the second conductive element 22 meets the electrical conduction condition, the second conductive element 22 can conduct the path between itself and the motherboard to form a second signal.

[0056] Understandably, in order to prevent water leakage from other locations on the waterproof part 1 except for the corresponding first receiving space 11, a protrusion 12 is provided on the second side of the waterproof part 1 in this embodiment, so that the protrusion 12 surrounds the first receiving space 11 to form a second receiving space 13. The protrusion 12 is an elastic structure, which can be integrally formed with the waterproof part 1 or subsequently bonded to the surface of the waterproof part 1. The shape of the protrusion 12 is not limited here, and can be designed and adjusted according to actual needs. For example, the cross-sectional shape of the protrusion 12 can be triangular, semi-circular, conical, etc. When the waterproof part 1 is installed in the opening where the button 5 is located, the protrusion 12 can be press-fitted with the inner wall of the housing 6 so that the second receiving space 13 is relatively closed. Even if water leaks inward from the opening, it can be received by the second receiving space 13 and blocked by the protrusion 12 to prevent it from entering the electronic device. Meanwhile, in this embodiment, the conductive part 2 can be configured as a second conductive element 22 disposed on the side of the protrusion 12 away from the second receiving space 13. The second conductive element 22 can be, but is not limited to, a conductive medium such as carbon fiber conductive paper. The second conductive element 22 does not need to be resisted or pressed by other rigid structures. Therefore, the second conductive element 22 can be rigid or flexible, and its thickness is not limited. It can be designed and adjusted according to actual needs. When the waterproof part 1 is displaced or loosened due to repeated contact with the button 5, allowing water vapor to spread through the protrusion 12 into the interior of the electronic device, the water vapor contacts the second conductive element 22, making the second conductive element 22 meet the conduction conditions. Then, the second conductive element 22 can be connected to the motherboard through the wire 3 to exchange the second signal. At this time, the motherboard can control the electronic device to power off or issue an alarm prompt, prompt sound, or prompt window, etc., according to the second signal.

[0057] In this embodiment, the conductive part 2 can also be configured to include both a first conductive element 21 and a second conductive element 22. In this configuration, when the first conductive element 21 is connected with the button 5 and the wire 3, it can send a first signal to the motherboard. When the second conductive element 22 is connected with the wire 3, it can send a second signal to the motherboard. The motherboard can issue corresponding prompts or alarms based on the first and second signals, so that the user can promptly determine whether the device is at risk of leakage or has already leaked and make a corresponding response. This configuration can both prevent leakage when the waterproof part 1 is damaged and promptly detect leakage when the waterproof part 1 becomes loose.

[0058] Further, see attached document. Figure 1 and attached Figure 3 In the waterproof structure provided in this embodiment, the waterproof part 1 is provided with at least one opening 23, and the second conductive element 22 is electrically connected to the wire 3 in the opening 23.

[0059] It is understandable that, in order to achieve the electrical connection between the second conductive element 22 and the wire 3, an opening 23 can be provided on the waterproof part 1 in this embodiment. The number, shape and size of the opening 23 are not limited here, and can be designed and adjusted according to actual needs. Only one opening can be provided at a position away from the second receiving space 13, or multiple openings can be provided to increase the accuracy of leakage detection. When multiple openings 23 are provided, the multiple openings 23 can be arranged randomly or in an orderly manner. For example, several openings 23 are distributed at intervals around the second receiving space 13 on the side of the protrusion 12 away from the second receiving space 13. Under this arrangement, the leakage problem caused by excessive water or water vapor passing over the protrusion 12 after the waterproof part 1 becomes loose can be effectively detected.

[0060] Further, see attached document. Figure 1 and attached Figure 4 In the waterproof structure provided in this embodiment, the conductor 3 is provided with a first connection point 31 and a second connection point 32 that are isolated from each other on the second side facing the waterproof part 1; the conductive part 2 is electrically connected to the first connection point 31 and the second connection point 32 at the same time.

[0061] Understandably, in order to achieve electrical connection between the conductive part 2 and the wire 3 and to avoid the connection method being cumbersome and affecting the overall width or thickness of the device, this embodiment sets a first connection point 31 and a second connection point 32 that are spaced apart from each other on the wire 3. Both the first connection point 31 and the second connection point 32 are electrical connection points. The conductive part 2 can form a circuit by connecting to both connection points simultaneously. At this time, the first connection point 31 and the second connection point 32 can have positive and negative polarity functions. The conductive part 2 connecting to both connection points simultaneously can... Figure 4 The conductive part 2 shown is connected to a first connection point 31 and a second connection point 32 on the same surface, respectively; correspondingly, a dotted copper foil line can be set on the FPC. The above setting method is also applicable to the first conductive element 21 and the second conductive element 22, which can each have their own connection point or share the first connection point 31 and the second connection point 32.

[0062] Further, see attached document. Figure 3 and attached Figure 5 The waterproof structure provided in this embodiment further includes a reinforcing plate 7 in a specific implementation; the waterproof part 1 is provided with at least one groove to form the first receiving space 11; the reinforcing plate 7 is provided at least corresponding to the opening of the groove, and the side of the reinforcing plate 7 facing the first receiving space 11 is used to support the wire 3.

[0063] It is understandable that, in order to achieve modularity of the waterproof structure, a reinforcing plate 7 is provided in this embodiment. The reinforcing plate 7 is a rigid plate structure, which can be a plate made of insulating material. Correspondingly, in this embodiment, an opening groove is provided on the first side of the waterproof part 1 to cooperate with the reinforcing plate 7 to form a first receiving space 11. This also facilitates the installation of the push switch 4 and provides a support surface for the wire 3. Accordingly, when the waterproof structure is installed in the electronic device, the reinforcing plate 7 can also serve as a carrier structure for connecting or bonding the waterproof structure with the electronic device structure. In order to ensure the integrity of the wire 3 and avoid deformation and damage to the wire 3 when the reinforcing plate 7 is installed with the electronic device housing 6, a reinforcing member 8 can also be provided on the side of the reinforcing plate 7 away from the first receiving space 11. The reinforcing member 8 is a rigid plate structure, which is attached to the reinforcing plate 7 to connect the electronic device housing 6. This connection can be made by, but is not limited to, bonding, snapping, welding, etc., so that the integrity of the wire 3 will not be affected when it is installed with the electronic device.

[0064] Example 2

[0065] Reference Attachment Figure 5 This embodiment provides an electronic device, which includes a housing 6, a button 5, a push switch 4, and a waterproof structure. The housing 6 has at least one opening 61. The button 5 is pressably disposed within the opening 61. The push switch 4 is disposed within the housing 6 corresponding to the opening 61 to movably abut the button 5. The waterproof structure is disposed within the housing 6 corresponding to the opening 61.

[0066] The waterproof structure includes a waterproof part 1, a conductive part 2, and a wire 3; the first side of the waterproof part 1 is provided with at least a first receiving space 11, the push switch 4 is received in the first receiving space 11, and at least a portion of the conductive part 2 of the waterproof part 1, the push switch 4, and the wire 3 are stacked so that the button 5 can move to abut at least a portion of the conductive part 2 and the push switch 4; the wire 3 is electrically connected to the push switch 4 and the motherboard of the electronic device on the first side of the waterproof part 1.

[0067] It is understood that the electronic device provided in this embodiment may be, but is not limited to, a mobile phone, tablet computer, laptop computer, or other terminal device with press-type or push-button buttons. Button 5 may be a side button, such as a volume control button, a screen lock button, a power control button, etc.; in this embodiment, button 5 may be in the form of a conductive material covered with an insulating material, or it may be in the form of a simple insulating material.

[0068] The waterproof structure is the same as that described in Example 1. Its structure and working principle are detailed in Example 1 and will not be repeated here. It should be noted that the conductive part 2 that comes into contact with the case in this embodiment is the first conductive element 21 described in Example 1.

[0069] Furthermore, in the specific implementation of the electronic device provided in this embodiment, the button 5 is provided with a first conductive area 52 on the side facing the opening 61. The first conductive area 52 is used to movably cooperate with at least part of the conductive part 2. The button 5 is also provided with a second conductive area 51 spaced apart from the first conductive area.

[0070] It is understandable that, in order to achieve electrical conduction between button 5 and the first conductive element 21, this embodiment requires the setting of a first conductive area 52 and a second conductive area 51. The first conductive area 52 is located on the end of button 5 facing the push switch 4, and the second conductive area 51 is spaced apart from the first conductive area 52, for example, it can be located on the inner surface of the keycap. Thus, the first conductive area 52 can conduct with the first conductive element 21, and the second conductive area 51 can conduct with the housing 6 and the first conductive area 52. It is understood that the housing 6 can serve as a grounding terminal. Furthermore, when button 5 is in the form of conductive material covered with insulating material, an opening can be set at the end of button 5 facing the push switch 4 to remove the insulating material. Correspondingly, the second conductive area 51 can also be set in the same way, so that the second conductive area 51 can be directly connected to the housing 6. In this setting, conductive foam can also be set in the second conductive area 51. The conductive foam can fill the space in the opening 61 to ensure the stability of the waterproof part 1 and can also conduct electricity between the housing 6 and the second conductive area 51. When button 5 is made of insulating material, a conductive film layer or a conductive metal layer can be provided on button 5, so that the conductive film layer or conductive metal layer can form a first conductive area 52 and a second conductive area 51 at both ends of button 5.

[0071] 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 this application should be included in the scope of protection of this application. Therefore, the scope of protection of this application should be based on the scope of protection of the claims.

Claims

1. A waterproof structure, characterized in that, include: A waterproof section, wherein a first side of the waterproof section is provided with at least a first receiving space to accommodate a push switch; A conductive part is disposed on the first side of the waterproof part; A wire is connected to the conductive part on the first side of the waterproof part, and the wire is used to electrically connect the motherboard of the electronic device and the push switch.

2. The waterproof structure according to claim 1, characterized in that: The conductive part includes a first conductive element; The first conductive element is disposed within the first accommodating space, the first conductive element is used to cover the push switch, and the first conductive element is connected to the wire; If the waterproof part is in an abnormal state that causes the first conductive element to meet the electrical conduction conditions, the first conductive element can conduct a path between itself and the motherboard through the wire to form a first signal.

3. The waterproof structure according to claim 1 or 2, characterized in that: The waterproof part has a protrusion on the second side opposite to the first side; The protrusion is arranged around the first receiving space to form a second receiving space; The conductive part includes a second conductive element, which is disposed on the second side of the waterproof part on the side of the protrusion away from the second receiving space, and the second conductive element is connected to the wire; If the waterproof part is in an abnormal state that causes the second conductive element to meet the electrical conduction conditions, the second conductive element can conduct a path between itself and the motherboard to form a second signal.

4. The waterproof structure according to claim 3, characterized in that: The waterproof part is provided with at least one opening, and the second conductive element is electrically connected to the wire in the opening.

5. The waterproof structure according to claim 3, characterized in that: The waterproof part is provided with a plurality of openings, which are distributed at intervals around the second accommodating space on the side of the protrusion away from the second accommodating space.

6. The waterproof structure according to claim 1, characterized in that: The conductor has a first connection point and a second connection point that are isolated from each other on the side facing the second side of the waterproof part; The conductive part is electrically connected to both the first connection point and the second connection point.

7. The waterproof structure according to claim 2, characterized in that: The first conductive element is a conductive metal, and the first conductive element is soldered to the electrical connection point of the wire; or The first conductive element is a conductive cloth, and the first conductive element abuts against the electrical connection point of the wire.

8. The waterproof structure according to claim 1, characterized in that: It also includes reinforcing plates; The waterproof part is provided with at least one groove to form the first receiving space; The reinforcing plate is provided at least corresponding to the opening of the groove, and the side of the reinforcing plate facing the first accommodating space is used to support the wire.

9. An electronic device, characterized in that, It includes: A housing having at least one opening; A button, wherein the button is pressable within the opening; A push-button switch is provided inside the housing corresponding to the opening, so as to movably abut the button; A motherboard, which is electrically connected to the push switch within the housing; A waterproof structure is placed inside the housing corresponding to the opening; The waterproof structure includes a waterproof part, a conductive part, and a wire; The waterproof part has at least one first receiving space on its first side, the push switch is received in the first receiving space, and at least a portion of the conductive part of the waterproof part, the push switch and the wire are stacked so that the button can move to abut at least a portion of the conductive part and the push switch; the wire is electrically connected to the push switch and the motherboard on the first side of the waterproof part.

10. The electronic device according to claim 9, characterized in that: The button has a first conductive area on the side facing the opening, the first conductive area is used to movably engage at least part of the conductive part, and the button also has a second conductive area spaced apart from the first conductive area.