Watch body, wearable device, waterproof sealing module, and electronic device

By utilizing the external water pressure and the internal pressure difference of the equipment through an automatic mechanical sealing structure, the problem of insufficient waterproof performance of wearable devices in deep water environments is solved, achieving a waterproof effect of more than 200 meters.

WO2025227761A1PCT designated stage Publication Date: 2025-11-06HUAWEI TECH CO LTD

Patent Information

Application Number
PCT/CN2024/139987
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-04-29
Filing Date
2024-12-17
Publication Date
2025-11-06

AI Technical Summary

Technical Problem

Existing wearable devices are not waterproof enough in deep water environments, making it difficult to meet the usage requirements of depths exceeding 200 meters.

Method used

An automatic mechanical sealing structure is adopted, which uses external water pressure and internal pressure difference to move the sealing structure along the hole to seal the waterproof and breathable components, including the pressure plate, plug and slide rod. Elastic components provide elasticity to ensure sealing effect.

Benefits of technology

It enables automatic sealing of waterproof and breathable components in deep water environments, improving the waterproof performance of wearable devices and allowing them to be used underwater at depths of over 200 meters.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN2024139987_06112025_PF_FP_ABST
    Figure CN2024139987_06112025_PF_FP_ABST
Patent Text Reader

Abstract

The present application relates to the technical field of wearable devices. Provided are a watch body, a wearable device, a waterproof sealing module and an electronic device. The watch body comprises a watch case, a sealing structure disposed on the watch case, and a waterproof and breathable component disposed on the watch case, wherein the watch case is provided with a hole in communication with the interior of the watch body, and the sealing structure is disposed on the watch case and is movable along the hole; the waterproof and breathable component is located on the side of the sealing structure facing the interior of the watch body, and the waterproof and breathable component is in communication with the interior of the watch body; when the sealing structure moves toward the waterproof and breathable component along the hole, the sealing structure can seal off the waterproof and breathable component. The sealing structure is an automatic mechanical sealing structure that does not require user operation. Instead, by means of the pressure difference between external water pressure and the internal pressure of the device, the sealing structure can seal off the waterproof and breathable component.
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Description

Table body, wearable device, plugging waterproof module, electronic device

[0001] The present application claims priority to the Chinese patent application No. 202410532708.5, filed on April 29, 2024, and entitled "Table body, wearable device, plugging waterproof module, electronic device", the whole content of which is incorporated herein by reference. TECHNICAL FIELD

[0002] The present application relates to the technical field of wearing devices, in particular to a wearable device, a table body that can be applied in the wearable device, and a plugging waterproof module, and an electronic device containing the plugging waterproof module. BACKGROUND

[0003] The wearable device generally refers to a micro electronic device that can be worn on the body for activities, which can include a smart watch and a smart bracelet.

[0004] The use environment of the wearable device is becoming more and more complex, for example, it needs to be used in a deep water environment, so the wearable device needs to have a waterproof function. At present, some wearable devices have a low waterproof level, for example, they can only be used in water environments less than 100 meters. Therefore, in order to further improve the use performance, the waterproof structure of the wearable device needs to be optimized to meet the use demand in deeper water. SUMMARY

[0005] The present application provides a wearable device, a table body that can be applied in the wearable device, and an electronic device, and a plugging waterproof module that can be applied in the electronic device. The purpose is to provide an electronic device with a waterproof function and can be used in deeper water, for example, the electronic device can be a wearable device.

[0006] To achieve the above purpose, the embodiments of the present application adopt the following technical solutions:

[0007] In a first aspect, the present application provides a table body, which can be applied in a wearable device, for example, the wearable device can be a watch or a bracelet.

[0008] The table body provided by the present application includes a table shell, a plugging structure arranged on the table shell, and a waterproof and breathable piece arranged on the table shell; a hole communicating with the inside of the table body is formed on the table shell, and the plugging structure is arranged on the table shell and can move along the hole; the waterproof and breathable piece is located on the side of the plugging structure facing the inside of the table body, and the waterproof and breathable piece communicates with the inside of the table body; when the plugging structure moves towards the waterproof and breathable piece along the hole, the plugging structure can seal the waterproof and breathable piece.

[0009] The sealing structure provided by the application can move along the hole, that is, the sealing structure is movably matched with the watch case, and in particular, the hole for sliding the sealing structure is in communication with the internal space of the watch body. After the wearable device enters water, a pressure difference is formed between the external water and the internal space of the watch body. For example, as the diving depth increases, the water pressure gradually overcomes the friction between the sealing structure and the watch case, the internal pressure of the watch body, and other forces, so that the sealing structure moves along the hole until it is attached to the waterproof and breathable member and blocks the waterproof and breathable member.

[0010] Therefore, the sealing structure in the example of the application is an automatic mechanical sealing structure, which does not need to be operated by the user, but uses the external water pressure and the internal pressure difference of the device to make the sealing structure block the waterproof and breathable member.

[0011] In addition, after the wearable device enters water, as the diving depth gradually increases, the water pressure gradually increases, the sealing structure continuously moves along the hole, gradually approaches the waterproof and breathable member, and as the diving depth increases, the water pressure increases, the sealing structure is pressed more tightly against the waterproof and breathable member, and the sealing effect is better. For example, the wearable device can be applied to a depth of more than 200 meters.

[0012] In an implementable manner, the watch body further comprises an elastic member, the elastic member is used to provide an elastic force for the movement of the sealing structure away from the waterproof and breathable member; and the sealing structure is capable of moving away from the waterproof and breathable member along the hole to form a gap between the sealing structure and the waterproof and breathable member.

[0013] For example, when the sealing structure is not subjected to external pressure, the elastic member is in a natural state (which can be understood as an uncompressed state), and when the sealing structure is subjected to extrusion by external water pressure, the sealing structure contacts the waterproof and breathable member to achieve sealing and prevent water from entering the internal space of the watch body.

[0014] For another example, when the external water pressure gradually decreases or even disappears, the sealing structure in contact with the waterproof and breathable member can move away from the waterproof and breathable member under the action of the elastic force of the elastic member, the extrusion of the sealing structure on the waterproof and breathable member gradually disappears, and a gap is formed between the sealing structure and the waterproof and breathable member. In this way, the waterproof and breathable member can achieve air permeability and balance the pressure between the internal and external spaces of the watch body.

[0015] In an implementable manner, the sealing structure comprises a pressure-bearing plate, a plug, and at least one sliding rod; the sliding rod is connected with the pressure-bearing plate, the sliding rod is arranged in the hole, and the sliding rod is capable of moving along the hole; the plug has elasticity, the plug is connected with the pressure-bearing plate, the plug is located on the side of the pressure-bearing plate facing the waterproof and breathable member, and the plug is used to block the waterproof and breathable member.

[0016] In the implementation structure, the pressure plate is used to sense water pressure, the slide rod connected with the pressure plate can slide along the hole under the action of water pressure, thereby driving the plug to move towards the waterproof and breathable part, and in this example, the plug is elastic, and the elastic plug can better fit the waterproof and breathable part, thereby improving waterproof effect.

[0017] In an implementable manner, the plug comprises a plate-shaped portion, and the plate-shaped portion is used to seal the waterproof and breathable part.

[0018] In this example, the plug is a plate-shaped structure, and the plate-shaped plug is used to seal the waterproof and breathable part.

[0019] In an implementable manner, the side of the plug towards the waterproof and breathable part comprises a closed annular structure, and the annular structure protrudes towards the waterproof and breathable part; when the plug seals the waterproof and breathable part, the annular structure is arranged around the waterproof and breathable part.

[0020] In an implementable manner, the side of the plug towards the waterproof and breathable part comprises a closed annular structure, and the annular structure protrudes towards the waterproof and breathable part; the plug further comprises a plate-shaped portion, and the annular structure is arranged around the plate-shaped portion; and the plate-shaped portion and the annular structure are used to seal the waterproof and breathable part.

[0021] In this example, the plug comprises a plate-shaped portion and an annular structure, so that the volume of the entire plug can be increased, and the elastic stability of the plug can be improved.

[0022] In an implementable manner, the plug is in an annular structure, and the pressure plate and the annular structure are used to seal the waterproof and breathable part.

[0023] In this example, the waterproof and breathable part is sealed by the annular plug and the pressure plate.

[0024] In an implementable manner, the slide rod is provided in plurality, and the plurality of slide rods are arranged at intervals on the pressure plate; the plug is arranged around the plurality of slide rods, or the plug is located between the plurality of slide rods.

[0025] In one example, the plug can be arranged between the slide rods. In another example, the plug can be arranged around the slide rods.

[0026] In an implementable manner, the waterproof and breathable part comprises a breathable area and a peripheral area arranged around the breathable area, the breathable area has a plurality of breathable holes, and the breathable holes are in communication with the inside of the table body; the side of the plug towards the waterproof and breathable part comprises a closed annular structure, and the annular structure protrudes towards the waterproof and breathable part to form a protrusion; when the plug seals the waterproof and breathable part, the protrusion is fitted on the peripheral area.

[0027] In this example, when the plug seals the waterproof and breathable part, the protrusion of the plug is fitted on the peripheral area of the waterproof and breathable part, so that the waterproof and breathable part can be pressed more tightly, and the waterproof effect is better.

[0028] In an implementable manner, the slide rod is provided with an inlay space, the elastic member is located in the inlay space, one end of the elastic member abuts against the slide rod, and the other end abuts against the watch case.

[0029] The elastic member is arranged in the inlay space inside the slide rod, for example, when the elastic member is a spring, the spring can have more turns and better elastic stability.

[0030] In an implementable manner, the watch case is provided with a guide post extending into the inlay space, and the elastic member is sleeved on the guide post.

[0031] The elastic member is arranged on the guide post, so that the deformation direction of the elastic member can be guaranteed, and the movement of the entire plugging structure can be along a straight line.

[0032] In an implementable manner, the watch body further comprises a sealing ring, the sealing ring is sleeved on the outside of the slide rod, for example, the outer wall surface of the slide rod is provided with a mounting groove, and the sealing ring is arranged in the mounting groove.

[0033] In an implementable manner, the elastic member is sleeved on the outside of the slide rod.

[0034] In an implementable manner, the watch body further comprises a sealing ring, the sealing ring is sleeved on the outside of the slide rod, and the elastic member and the sealing ring are arranged along the extension direction of the slide rod.

[0035] In this example, the elastic member and the sealing ring are both sleeved on the outside of the slide rod.

[0036] In an implementable manner, a gasket is arranged between the sealing ring and the elastic member, and the sealing ring is closer to the inside of the watch body than the elastic member.

[0037] In an implementable manner, along the extension direction of the hole, the hole comprises a first section and a second section, the hole diameter of the first section is smaller than the hole diameter of the second section, and the elastic member and the sealing ring are arranged in the second section.

[0038] In an implementable manner, the plug comprises a plugging part and a sealing part connected with the plugging part; the plugging part can move along the hole towards the waterproof and breathable member to make the plugging part seal the waterproof and breathable member; and the sealing part is located in the gap between the slide rod and the hole.

[0039] The plug provided in this example not only comprises a plugging part, but also comprises a sealing part for sealing the gap between the slide rod and the hole, so that the structure can be simplified, and the assembly process can also be simplified.

[0040] In an implementable manner, the plugging part and the sealing part are an integrally formed structure, for example, which can be made by an injection molding process.

[0041] In an implementable manner, when the plug includes the blocking part and the sealing part, the sliding rod is provided with an inlay space, and the elastic member is located in the inlay space.

[0042] For example, when the elastic member is a spring, the spring can be provided with an increased number of coils to improve the stability of the spring force.

[0043] In an implementable manner, the watch case has opposite first and second faces, the first face faces the blocking structure; the first face is provided with a groove recessed toward the second face, and the waterproof and breathable member is arranged in the groove; a communication hole is arranged between the bottom surface of the groove and the second face, and the communication hole is used for communicating the waterproof and breathable member and the inside of the watch body.

[0044] The mounting mode of the waterproof and breathable member provided in this example can be understood as an external mounting mode, that is, the bottom surface of the waterproof and breathable member is supported on the watch case, so that the waterproof and breathable member is basically not deformed or detached when being pressed by the plug.

[0045] In an implementable manner, the waterproof and breathable member includes a waterproof and breathable film, a dust screen, a first support plate and a second support plate, and the first support plate and the second support plate are both provided with a breathable hole; the waterproof and breathable film and the dust screen are stacked between the first support plate and the second support plate.

[0046] The waterproof and breathable member not only includes the waterproof and breathable film, but also includes the dust screen, so that the waterproof and breathable member has a dustproof effect.

[0047] In addition, by arranging the support plates, the rigidity of the waterproof and breathable member can be improved.

[0048] In an implementable manner, the watch body includes a decorative plate, the decorative plate is provided with a mounting cavity, and at least part of the blocking structure is arranged in the mounting cavity in a sliding manner; the decorative plate is provided with a through hole for communication between the inside of the watch case.

[0049] When the blocking structure does not block the waterproof and breathable member, the through hole can be used to communicate between the inside and outside of the watch body, and the waterproof and breathable member can provide the waterproof and breathable functions of the waterproof and breathable member.

[0050] In an implementable manner, the through hole is provided with a filter structure.

[0051] In a second aspect, the application provides a watch body, which can include: a watch case, a blocking structure and a waterproof and breathable member, and an elastic member, the watch case is provided with a hole communicating with the inside of the watch body; the blocking structure is arranged on the watch case and can move along the extension direction of the hole; the waterproof and breathable member is located on the side of the blocking structure facing the inside space of the watch body, the waterproof and breathable member communicates with the inside space of the watch body, and the elastic member is used to provide an elastic force for the blocking structure to move away from the waterproof and breathable member.

[0052] In addition, the plugging structure comprises a pressure bearing plate, a plug and at least one sliding rod; the sliding rod is connected with the pressure bearing plate, the sliding rod is arranged in the hole and can move along the hole; the plug is elastic, the plug is connected with the pressure bearing plate, and the plug is located on the side of the pressure bearing plate facing the waterproof and breathable component; the plugging structure moves along the hole towards the waterproof and breathable component, and the plug can seal the waterproof and breathable component; the plugging structure moves along the hole away from the waterproof and breathable component to form a gap between the plugging structure and the waterproof and breathable component.

[0053] For example, when the plugging structure is not subjected to external pressure, the elastic component is in a natural state (which can be understood as an uncompressed state), and when the plugging structure is subjected to extrusion of external water pressure, the plugging structure contacts the waterproof and breathable component to achieve plugging and prevent water from entering the inside of the surface body.

[0054] For another example, when the external water pressure gradually decreases or even disappears, the plugging structure in contact with the waterproof and breathable component can move away from the waterproof and breathable component under the elastic force of the elastic component, the extrusion of the plugging structure on the waterproof and breathable component also gradually disappears, and finally a gap is formed between the plugging structure and the waterproof and breathable component, so that the waterproof and breathable component can realize the functions of air permeability and pressure balance between the inside and outside of the surface body.

[0055] In an implementable manner, the sliding rod has a plurality of sliding rods which are arranged at intervals on the pressure bearing plate; and the plug is located between the plurality of sliding rods.

[0056] In an implementable manner, the side of the plug facing the waterproof and breathable component comprises a closed annular structure which protrudes towards the waterproof and breathable component; and the plug further comprises a plate-shaped part, the annular structure surrounds the plate-shaped part, and the plate-shaped part and the annular structure are used to seal the waterproof and breathable component.

[0057] In this example, the plug comprises a plate-shaped part and an annular structure, so that the volume of the entire plug can be increased and the stability of the elastic force can be improved.

[0058] In an implementable manner, the waterproof and breathable component comprises a breathable area and a peripheral area surrounding the breathable area, the breathable area has a plurality of air permeable holes which are in communication with the inside of the surface body; and the side of the plug facing the waterproof and breathable component comprises a closed annular structure which protrudes towards the waterproof and breathable component to form a protrusion, and the protrusion is attached to the peripheral area when the plug seals the waterproof and breathable component.

[0059] In this example, when the plug seals the waterproof and breathable component, the protrusion of the plug is attached to the peripheral area of the waterproof and breathable component, so that the waterproof and breathable component can be pressed more tightly and the waterproof effect can be better.

[0060] In an implementable manner, an inlaying space is formed in the sliding rod, the elastic component is located in the inlaying space, one end of the elastic component abuts against the sliding rod, and the other end of the elastic component abuts against the surface shell.

[0061] The elastic member is arranged in the inlay space inside the slide rod, for example, the elastic member is a spring, so that the spring has more turns and better elastic stability.

[0062] In an implementable manner, the watch case is provided with a guide post extending into the inlay space, and the elastic member is sleeved on the guide post.

[0063] The elastic member is arranged on the guide post, so that the deformation direction of the elastic member is ensured, and the movement of the entire plugging structure can be along a straight line.

[0064] In an implementable manner, the watch body further comprises a sealing ring, and the sealing ring is sleeved on the outside of the slide rod. For example, a mounting groove is formed on the outer wall surface of the slide rod, and the sealing ring is arranged in the mounting groove.

[0065] In an implementable manner, the watch case has opposite first and second surfaces, and the first surface faces the plugging structure. The first surface is provided with a groove recessed toward the second surface, and the waterproof and breathable member is arranged in the groove. A communication hole is formed between the bottom surface of the groove and the second surface, and the communication hole is used to communicate the waterproof and breathable member and the inside of the watch body.

[0066] The mounting mode of the waterproof and breathable member provided in this example can be understood as an external mounting, that is, the bottom surface of the waterproof and breathable member is supported on the watch case, so that the waterproof and breathable member basically does not deform or fall off when being pressed by the plug.

[0067] In an implementable manner, the waterproof and breathable member comprises a waterproof and breathable film, a dust screen, a first support plate and a second support plate, and the first support plate and the second support plate are both provided with a breathable hole. The waterproof and breathable film and the dust screen are stacked between the first support plate and the second support plate.

[0068] The waterproof and breathable member not only comprises a waterproof and breathable film, but also comprises a dust screen, so that the waterproof and breathable member has a dustproof effect.

[0069] In addition, by arranging the support plates, the rigidity of the waterproof and breathable member can be improved.

[0070] In an implementable manner, the watch body comprises a decorative plate, the decorative plate is provided with a mounting cavity, and at least part of the plugging structure is arranged in the mounting cavity in a sliding manner. The decorative plate is provided with a through hole for communication between the inside and outside of the watch case.

[0071] When the plugging structure does not plug the waterproof and breathable member, the through hole can be used to communicate the inside and outside of the watch body, and the waterproof and breathable member can provide the waterproof and breathable functions of the waterproof and breathable member.

[0072] In an implementable manner, the through hole is provided with a filtering structure.

[0073] In a third aspect, the present application provides a wearable device, which comprises a watchband and a watch body, and the watch body is any of the watch bodies described above, wherein the watchband is connected to the watch body.

[0074] Since the wearable device comprises any of the watch bodies described above, when the wearable device is submerged, the sealing structure can seal the waterproof and breathable member by using the pressure difference between the inside and outside of the watch body.

[0075] The sealing structure in the wearable device described in the present application is an automatic mechanical sealing structure, which does not need to be operated by the user, but uses the water pressure outside and the pressure difference inside the device to make the sealing structure seal the waterproof and breathable member.

[0076] After the wearable device is submerged in water, as the depth of the dive gradually increases, the water pressure gradually increases, the sealing structure continuously moves along the hole, gradually approaches the waterproof and breathable member, and as the depth of the dive increases, the water pressure increases, the sealing structure presses the waterproof and breathable member more tightly, and the sealing effect is better. For example, the wearable device can be applied to a depth of more than 200 meters, thereby improving the use performance of the device.

[0077] In a fourth aspect, the present application provides a sealing waterproof module, which is used in an electronic device, and the sealing waterproof module can comprise a support, a sealing structure and a waterproof and breathable member arranged on the support, the support is used to enclose a hole that is in communication with the inside of the main body of the electronic device, the waterproof and breathable member is located on the side of the sealing structure that faces the inside of the main body of the electronic device, and the waterproof and breathable member is in communication with the inside of the main body of the electronic device; the sealing structure can move along the hole towards the waterproof and breathable member to seal the waterproof and breathable member.

[0078] The sealing waterproof module provided in the example can be installed on the main body of an electronic device, such as a wearable device or glasses. After the electronic device is submerged, the sealing structure can seal the waterproof and breathable member by using the pressure difference between the inside and outside.

[0079] In one implementation, the sealing waterproof module further comprises a resilient member, which is used to provide an elastic force to the sealing structure to move away from the waterproof and breathable member; the sealing structure can move away from the waterproof and breathable member along the hole to form a gap between the sealing structure and the waterproof and breathable member.

[0080] For example, when the sealing structure is not subjected to external pressure, the resilient member is in a natural state (which can be understood as an uncompressed state), and when the sealing structure is subjected to external water pressure, the sealing structure contacts the waterproof and breathable member to achieve sealing and prevent water from entering the inside of the watch body.

[0081] For example, when the external water pressure gradually decreases or disappears, the sealing structure in contact with the waterproof and breathable member can move away from the waterproof and breathable member under the elastic force of the elastic member, the extrusion of the sealing structure on the waterproof and breathable member gradually disappears, and a gap is formed between the sealing structure and the waterproof and breathable member, so that the waterproof and breathable member can realize air permeability and balance the pressure inside and outside the watch body.

[0082] In an implementable manner, the sealing structure comprises a pressure bearing plate, a plug, and at least one sliding rod; the sliding rod is connected with the pressure bearing plate, the sliding rod is arranged in the hole, and the sliding rod can move along the hole; the plug has elasticity, the plug is connected with the pressure bearing plate, the plug is located on the side of the pressure bearing plate facing the waterproof and breathable member, and the plug is used to seal the waterproof and breathable member.

[0083] In an implementable manner, the plug comprises a plate-shaped part, and the plate-shaped part is used to seal the waterproof and breathable member.

[0084] In this example, the plug is a plate-shaped structure, and the waterproof and breathable member is sealed by the plate-shaped plug.

[0085] In an implementable manner, the side of the plug facing the waterproof and breathable member comprises a closed annular structure, the annular structure protrudes towards the waterproof and breathable member, and when the plug seals the waterproof and breathable member, the annular structure is arranged around the waterproof and breathable member.

[0086] In an implementable manner, the side of the plug facing the waterproof and breathable member comprises a closed annular structure, the annular structure protrudes towards the waterproof and breathable member, the plug further comprises a plate-shaped part, the annular structure is arranged around the plate-shaped part, and the plate-shaped part and the annular structure are used to seal the waterproof and breathable member.

[0087] In this example, the plug comprises a plate-shaped part and an annular structure, so that the volume of the entire plug can be increased, and the elastic stability can be improved.

[0088] In an implementable manner, the plug has an annular structure, and the pressure bearing plate and the annular structure are used to seal the waterproof and breathable member.

[0089] In this example, the waterproof and breathable member is sealed by the annular plug and the pressure bearing plate.

[0090] In an implementable manner, the sliding rod has a plurality of sliding rods, the plurality of sliding rods are arranged on the pressure bearing plate in a spaced manner, the plug is arranged around the plurality of sliding rods, or the plug is located between the plurality of sliding rods.

[0091] In one example, the plug can be arranged between the sliding rods. In another example, the plug can be arranged on the periphery of the sliding rods.

[0092] In an implementable manner, the waterproof and breathable member comprises a breathable area and a peripheral area surrounding the periphery of the breathable area, the breathable area has a plurality of breathable holes, and the breathable holes are in communication with the inside of the watch body; the side of the plug facing the waterproof and breathable member comprises a closed annular structure, the annular structure protrudes towards the waterproof and breathable member, forming a protrusion; when the plug seals the waterproof and breathable member, the protrusion is attached to the peripheral area.

[0093] In this example, when the plug seals the waterproof and breathable member, the protrusion of the plug is attached to the peripheral area of the waterproof and breathable member, so that the waterproof and breathable member can be pressed more tightly, and the waterproof effect is better.

[0094] In an implementable manner, the sliding rod is provided with an inlaying space, and the elastic member is located in the inlaying space, one end of the elastic member abuts against the sliding rod, and the other end abuts against the watch case.

[0095] By arranging the elastic member in the inlaying space inside the sliding rod, for example, when the elastic member is a spring, the number of turns of the spring can be increased, and the stability of the elastic force is better.

[0096] In an implementable manner, the support member is provided with a guide column extending into the inlaying space, and the elastic member is sleeved on the guide column.

[0097] By arranging the elastic member on the guide column, the deformation direction of the elastic member can be ensured, so that the movement of the entire plugging structure can be along a straight line.

[0098] In an implementable manner, the plugging waterproof module further comprises a sealing ring, and the sealing ring is sleeved on the outside of the sliding rod. For example, the outer wall surface of the sliding rod is provided with a mounting groove, and the sealing ring is arranged in the mounting groove.

[0099] In an implementable manner, the elastic member is sleeved on the outside of the sliding rod.

[0100] In an implementable manner, the plugging waterproof module further comprises a sealing ring, and the sealing ring is sleeved on the outside of the sliding rod, and the elastic member and the sealing ring are arranged along the extension direction of the sliding rod.

[0101] In this example, the elastic member and the sealing ring are both sleeved on the outside of the sliding rod.

[0102] In an implementable manner, the plug comprises a plugging part and a sealing part connected with the plugging part; the plugging part can move towards the waterproof and breathable member along the hole, so that the plugging part seals the waterproof and breathable member; and the sealing part is located in the gap between the sliding rod and the hole.

[0103] The plug provided in this example not only comprises a plugging part, but also comprises a sealing part for sealing the gap between the sliding rod and the hole, so that the structure can be simplified, and the assembly process can also be simplified.

[0104] In an implementable manner, the blocking part and the sealing part are integrally formed. For example, the blocking part and the sealing part can be formed by an injection molding process.

[0105] In an implementable manner, when the plug includes the blocking part and the sealing part, the sliding rod is provided with an inlay space, and the elastic member is located in the inlay space.

[0106] For example, when the elastic member is a spring, the number of spring coils can be increased to improve the stability of the spring force.

[0107] In an implementable manner, the support member has opposite first and second faces, and the first face faces the blocking structure. The first face is provided with a groove recessed toward the second face, and the waterproof and breathable member is arranged in the groove. The bottom surface of the groove and the second face are provided with a communication hole for communicating the waterproof and breathable member and the inside of the electronic device main body.

[0108] The mounting mode of the waterproof and breathable member provided in this example can be understood as an external mounting mode, that is, the bottom surface of the waterproof and breathable member is supported on the watch case, so that the waterproof and breathable member is basically not deformed or detached when being pressed by the plug.

[0109] In an implementable manner, the waterproof and breathable member includes a waterproof and breathable film, a dust screen, a first support plate, and a second support plate, and the first support plate and the second support plate are both provided with a breathable hole. The waterproof and breathable film and the dust screen are stacked between the first support plate and the second support plate.

[0110] The waterproof and breathable member not only includes a waterproof and breathable film, but also includes a dust screen, so that the waterproof and breathable member has a dustproof effect.

[0111] In addition, by arranging the support plates, the rigidity of the waterproof and breathable member can be improved.

[0112] In an implementable manner, the blocking waterproof module further includes a decorative plate, the decorative plate is provided with a mounting cavity, and at least part of the blocking structure is arranged in the mounting cavity in a sliding manner. The decorative plate is provided with a through hole for internal communication of the watch case.

[0113] When the blocking structure does not block the waterproof and breathable member, the through hole can be used to communicate the inside and outside of the watch body, and the waterproof and breathable member can provide the waterproof and breathable functions thereof.

[0114] In an implementable manner, the through hole is provided with a filter structure.

[0115] In a fifth aspect, the present application provides an electronic device, which includes a main body and a blocking waterproof module according to any one of the above-mentioned implementable manners. The electronic device further includes a connecting member, and the blocking waterproof module is mounted on the main body through the connecting member.

[0116] The electronic device provided in the application can be detachably installed on the main body, so that the electronic device has a mechanical automatic waterproof function.

[0117] In an implementable manner, the main body includes a watch body of the wearable device. BRIEF DESCRIPTION OF DRAWINGS

[0118] FIG. 1 is a structural schematic diagram of a wearable device provided in an embodiment of the application;

[0119] FIG. 2 is a structural schematic diagram of a watch body of a wearable device provided in an embodiment of the application;

[0120] FIG. 3 is a circuit structural schematic diagram of a wearable device provided in an embodiment of the application;

[0121] FIG. 4 is a partial exploded structural schematic diagram of a watch body of a wearable device provided in an embodiment of the application;

[0122] FIG. 5 is a partial exploded structural schematic diagram of a watch body of a wearable device provided in an embodiment of the application;

[0123] FIG. 6 is a sectional view of a watch body of a wearable device provided in an embodiment of the application;

[0124] FIG. 7 is a sectional view of a watch body of a wearable device provided in an embodiment of the application;

[0125] FIG. 8 is a partial exploded structural schematic diagram of a watch body of a wearable device provided in an embodiment of the application;

[0126] FIG. 9 is an exploded structural schematic diagram of a sealing structure of a wearable device provided in an embodiment of the application;

[0127] FIG. 10 is a sectional view of a watch body of a wearable device provided in an embodiment of the application;

[0128] FIG. 11 is a sectional view of a sealing structure of a wearable device provided in an embodiment of the application;

[0129] FIG. 12 is a sectional view of a sliding rod of a sealing structure of a wearable device provided in an embodiment of the application;

[0130] FIG. 13 is a sectional view of a sliding rod of a sealing structure of a wearable device provided in an embodiment of the application;

[0131] FIG. 14 is a sectional view of a watch body of a wearable device provided in an embodiment of the application;

[0132] FIG. 15 is a sectional view of a waterproof and breathable member of a wearable device provided in an embodiment of the application;

[0133] Fig. 16 is a top view of a waterproof and breathable member of a wearable device according to an embodiment of the present application;

[0134] Fig. 17 is a sectional view of a watch body of a wearable device according to an embodiment of the present application;

[0135] Fig. 18 is a top view of a waterproof and breathable member and a plug of a wearable device according to an embodiment of the present application;

[0136] Fig. 19 is an exploded structural schematic view of a sealing structure of a wearable device according to an embodiment of the present application;

[0137] Fig. 20 is a sectional view of a watch body of a wearable device according to an embodiment of the present application;

[0138] Fig. 21 is a sectional view of a watch body of a wearable device according to an embodiment of the present application;

[0139] Fig. 22 is an exploded structural schematic view of a sealing structure of a wearable device according to an embodiment of the present application;

[0140] Fig. 23 is an exploded structural schematic view of a sealing structure of a wearable device according to an embodiment of the present application;

[0141] Fig. 24 is a sectional view of a watch body of a wearable device according to an embodiment of the present application;

[0142] Fig. 25 is a sectional view of a waterproof and breathable member and a watch case of a wearable device according to an embodiment of the present application;

[0143] Fig. 26 is a sectional view of a watch body of a wearable device according to an embodiment of the present application;

[0144] Fig. 27 is a sectional view of a sealing structure of a wearable device according to an embodiment of the present application;

[0145] Fig. 28 is a sectional view of a watch body of a wearable device according to an embodiment of the present application;

[0146] Fig. 29 is a sectional view of a sealing structure of a wearable device according to an embodiment of the present application;

[0147] Fig. 30 is a sectional view of a watch body of a wearable device according to an embodiment of the present application;

[0148] Fig. 31 is an exploded structural schematic view of a sealing structure of a wearable device according to an embodiment of the present application;

[0149] Fig. 32 is a sectional view of a watch body of a wearable device according to an embodiment of the present application;

[0150] Fig. 33 is a sectional view of a watch case of a wearable device according to an embodiment of the present application;

[0151] FIG. 34 is an exploded structural schematic diagram of a wearable device according to an embodiment of the present application;

[0152] FIG. 35 is a cross-sectional view of a watch body of a wearable device according to an embodiment of the present application;

[0153] FIG. 36 is an exploded structural schematic diagram of a wearable device according to an embodiment of the present application;

[0154] FIG. 37 is a cross-sectional view of a watch body of a wearable device according to an embodiment of the present application;

[0155] FIG. 38 is a cross-sectional view of a watch body of a wearable device according to an embodiment of the present application;

[0156] FIG. 39 is an exploded structural schematic diagram of a sealing structure of a wearable device according to an embodiment of the present application;

[0157] FIG. 40 is a cross-sectional view of a watch body of a wearable device according to an embodiment of the present application;

[0158] FIG. 41 is an exploded structural schematic diagram of a watch case and a waterproof and breathable member of a wearable device according to an embodiment of the present application;

[0159] FIG. 42 is an exploded structural schematic diagram of a waterproof and breathable member according to an embodiment of the present application;

[0160] FIG. 43 is an exploded structural schematic diagram of a watch body of a wearable device according to an embodiment of the present application;

[0161] FIG. 44 is a structural diagram of a wearable device according to an embodiment of the present application. DETAILED DESCRIPTION

[0162] An embodiment of the present application provides a wearable device, for example, the wearable device can be a smart bracelet or a smart watch. The wearable device can be worn on a wrist to realize time display, time recording, time reporting, message notification, motion detection, heart rate monitoring, blood oxygen level detection and the like.

[0163] The wearable device can include a watchband and a watch body. The watchband is used to be wound around a wrist of a user to realize wearing of the wearable device, and the watch body is used for display.

[0164] As shown in FIG. 1, FIG. 1 is a structural diagram of an example wearable device. The example wearable device includes a watch body 100, a first watch band 201, a second watch band 202, and a connecting structure 300. The watch body 100 is connected between the first watch band 201 and the second watch band 202. The first watch band 201 and the second watch band 202 can be connected through the connecting structure 300, so that the first watch band 201, the watch body 100, and the second watch band 202 form a closed loop to be worn around a wrist. The example connecting structure 300 can be a butterfly buckle or a clasp, or other connectable structures. The structure of the connecting structure 300 is not specially limited in this application.

[0165] In some other wearable devices, a watch band can be included, which is connected with the watch body.

[0166] In some examples, the watch band can be detachably connected with the watch body. Alternatively, the watch band can be fixedly connected with the watch body and cannot be detached.

[0167] As shown in FIG. 2, FIG. 2 is a structural diagram of an example wearable device, which can include a watch case 101 in which various electronic devices are arranged. For example, as shown in FIG. 3, the watch case 101 can be arranged with a processor 110, a microphone 120, a speaker 130, an antenna 140, a sensor 150, a battery 160, a battery management module 170, and a memory 180.

[0168] The microphone 120, the speaker 130, the antenna 140, the sensor 150, the battery 160, the battery management module 170, and the memory 180 are electrically connected with the processor 110.

[0169] The processor 110 in this example can be a microcontroller unit (MCU), or can be a chip (application processor, AP).

[0170] In some wearable devices, one or more processors can be included. For example, an MCU can be included, and an AP can not be included; for another example, an MCU and an AP can be included.

[0171] In an example, for example, the sound diffused by the speaker 130 needs to be propagated to the outside of the wearable device, so that a microphone hole needs to be arranged on the watch case 101; for another example, a pressure difference between the inside and the outside of the wearable device needs to be maintained, so that a balance hole can be arranged on the watch case 101; for yet another example, water inside the wearable device needs to be drained, so that a drain hole can be arranged on the watch case 101.

[0172] To prevent external water from entering the wearable device through the holes of the above examples, the entering water damages the electronic devices inside the watch case. In some structures that can be implemented, a waterproof air permeable member can be provided in the holes, which plays a waterproof role. Air can also enter the watch case interior through the air permeable holes on the waterproof air permeable member, and the air in the watch case interior can also flow to the outside of the watch case through the air permeable holes on the waterproof air permeable member.

[0173] In some wearable devices, the waterproof air permeable member may burst due to high water pressure when the water depth is high (for example, more than 100 meters), and the wearable device is damaged.

[0174] To meet the user's multi-environment use, such as using the wearable device in a deep water high pressure environment, some wearable devices with waterproof function are provided in the embodiments of the present application.

[0175] As shown in FIGS. 4 and 5, FIG. 4 is an exploded view of a wearable device provided in the embodiments of the present application, and FIG. 5 is another view of FIG. 4. In addition to the watch case 101 and the waterproof air permeable member 2, the wearable device can also include a plugging structure 1, which can plug the waterproof air permeable member 2 to prevent external water from entering the watch case 101 through the waterproof air permeable member 2.

[0176] In the examples of FIGS. 4 and 5, the X-Y plane is a plane perpendicular to the thickness Z direction of the wearable device, that is, the Z direction is parallel to the thickness direction of the wearable device, and the X-Y plane is parallel to the plane on which the watch face is located.

[0177] As shown in FIGS. 6 and 7, FIGS. 6 and 7 are cross-sectional views of the wearable device provided in the present application, FIG. 6 shows the structure when the plugging structure 1 does not plug the waterproof air permeable member 2, and FIG. 7 shows the structure when the plugging structure 1 plugs the waterproof air permeable member 2.

[0178] As shown in FIGS. 6 and 7, the watch case 101 is provided with a hole 1011 that is in communication with the interior space of the watch case 101, and the plugging structure 1 is arranged on the watch case 101 and can move along the extension direction of the hole 1011. That is, the plugging structure 1 is in sliding connection with the watch case 101 and can move along the axial direction (extension direction) of the hole 1011.

[0179] The waterproof air permeable member 2 is arranged on the watch case 101, and the waterproof air permeable member 2 is located on the side of the plugging structure 1 facing the interior space of the watch case 101, and the waterproof air permeable member 2 is in communication with the interior space of the watch case 101. It can be understood that the waterproof air permeable member 2 is closer to the interior of the watch case 101 than the plugging structure 1.

[0180] Since the plugging structure 1 can move along the hole 1011, when the plugging structure 1 moves along the hole 1011 towards the waterproof air permeable member 2, the plugging structure 1 can plug the waterproof air permeable member 2.

[0181] In some examples, as shown in FIGS. 6 and 7, the blocking structure 1 and the waterproof and breathable piece 2 can be arranged along the X direction, and the blocking structure 1 can move along the X direction towards the waterproof and breathable piece 2, thereby blocking the waterproof and breathable piece 2. For example, the extension direction of the hole 1011 is parallel to the X direction, so that the blocking structure 1 can move along the X direction towards the waterproof and breathable piece 2.

[0182] The blocking structure 1 and the waterproof and breathable piece 2 cooperate, and the waterproof principle is shown in FIGS. 6 and 7.

[0183] When the wearable device is diving, for example, in a shallow water area, the water pressure is less than or substantially equal to the internal pressure of the watchcase 101, the blocking structure 1 is substantially stationary, and the waterproof performance of the waterproof and breathable piece 2 can be used to inhibit water from entering the wearable device; as the diving depth increases, the water pressure increases, and because the hole for the blocking structure 1 to move is connected to the inside of the watchcase 101, a pressure difference is formed between the water pressure and the internal pressure of the watchcase 101, and the water pressure gradually overcomes the internal pressure of the watchcase, the friction between the blocking structure and the watchcase, and other forces, so that, as shown in FIG. 7, the blocking structure 1 moves along the hole 1011 towards the waterproof and breathable piece 2 under the action of the water pressure F, and as the water pressure gradually increases, the blocking structure 1 continuously moves along the hole until it blocks the waterproof and breathable piece 2, thereby inhibiting water from entering the wearable device through the waterproof and breathable piece 2.

[0184] The blocking structure 1 provided in the present application is an automatic mechanical blocking device, which uses the pressure difference between the external water pressure and the internal pressure of the wearable device to automatically move the blocking structure 1, thereby blocking the waterproof and breathable piece 2. In the process of moving the blocking structure 1 towards the waterproof and breathable piece 2 and blocking the waterproof and breathable piece 2, no user operation is required, which can improve the safety factor of the user after entering the water and improve the experience.

[0185] In addition, as the diving depth gradually increases, the water pressure gradually increases, the movement of the blocking structure 1 along the hole is continuous, and the blocking structure 1 can gradually approach the waterproof and breathable piece 2. As the diving depth increases, the water pressure increases, and the blocking structure 1 presses the waterproof and breathable piece 2 more tightly, and the blocking effect is better, for example, the wearable device can be applied in deep water (for example, can be applied in water deeper than 200 meters), thereby improving the use performance of the wearable device.

[0186] As shown in FIG. 6, in the use environment without diving of the wearable device, the blocking structure 1 is away from the waterproof and breathable piece 2, and the waterproof and breathable piece 2 is not blocked, so that the inside of the watchcase is connected to the outside, sound diffusion, internal and external pressure balance, etc. can be achieved.

[0187] When the external water pressure decreases, the blocking structure 1 can move away from the waterproof and breathable piece 2 to the initial position.

[0188] In one example, the sealing structure 1 can be made of an elastic material, which utilizes the rebound force of the elastic material to keep the sealing structure 1 away from the waterproof and breathable component 2.

[0189] In another example, as shown in Figures 7 and 8, Figure 8 shows a partial exploded view of the wearable device of the present application example, which may also include an elastic element 3 for applying a spring force f to the sealing structure 1 in a direction away from the waterproof and breathable element 2.

[0190] In the example shown in Figure 8, the wearable device includes an elastic element 3, and the sealing structure 1 can be made of a rigid material, such as metal. The elastic force of the elastic element 3 causes the rigid sealing structure 1 to move away from the waterproof and breathable element 2. The rigid sealing structure 1 improves mechanical strength and stability during movement.

[0191] In another example, the sealing structure 1 can be made of an elastic material. The wearable device can also include an elastic element 3, which, in conjunction with the elastic sealing structure 1, causes the sealing structure 1 to move away from the waterproof and breathable element 2. As shown in Figure 7, when the external water pressure gradually increases, the elastic element 3 deforms under the large external water pressure F, accumulating a rebound force that moves away from the waterproof and breathable element 2. When the external water pressure gradually decreases, the sealing structure 1, under the action of the rebound force of the elastic element 3, moves away from the waterproof and breathable element 2 until it reaches the state shown in Figure 6, creating a gap between the sealing structure 1 and the waterproof and breathable element 2.

[0192] As shown in Figures 6 and 7, the sealing structure 1 can move between a first position and a second position along the extension direction (e.g., the X direction) of the hole 1011, with the first position being closer to the waterproof and breathable component 2 than the second position.

[0193] As shown in Figure 7, when the sealing structure 1 moves to the first position, the sealing structure 1 seals the waterproof and breathable component 2, preventing external water from entering the interior of the watch case 101 through the waterproof and breathable component 2.

[0194] As shown in Figure 6, when the sealing structure 1 moves to the second position, there is a gap between the surface of the sealing structure 1 facing the waterproof and breathable component 2 and the waterproof and breathable component 2, so that the waterproof and breathable component 2 connects the inside and outside of the watch case to achieve breathability. In addition, the waterproof and breathable component 2 can also achieve waterproof performance, for example, in shallow water (such as below 100 meters).

[0195] The elastic element 3 is used to provide elastic force to the sealing structure 1 from the first position to the second position (moving from Figure 7 to Figure 6). When the sealing structure 1 moves from the first position to the second position, the sealing structure 1 moves away from the waterproof and breathable element 2.

[0196] In the examples of the present application, the direction from the first position to the second position can be perpendicular to the surface of the waterproof and breathable member 2, for example, the direction from the first position to the second position can be parallel to the X direction.

[0197] The sealing structure 1 provided by the present application has various structures that can be implemented.

[0198] For example, FIGS. 9 and 10 show an example that can be implemented, and FIG. 10 is a schematic view of the structure of installing the example shown in FIG. 9 in a wearable device. In this example, the sealing structure 1 includes a pressure plate 11, which can be used to contact the external water and perceive the external water pressure. The sealing structure 1 further includes at least one sliding rod 12, each of which is connected with the pressure plate 11, and the sliding rod 12 is located on the side of the pressure plate 11 facing the inside of the watch case.

[0199] In some examples, multiple sliding rods 12 can be included, for example, multiple sliding rods 12 can be located on the side of the waterproof and breathable member 2. As shown in the example of FIG. 9, two sliding rods 12 are included, which are located on both sides of the waterproof and breathable member 2.

[0200] The sliding rod 12 is arranged in the hole 1011, and the sliding rod 12 is in sliding fit with the hole 1011. The hole 1011 not only can communicate the inside and outside of the watch case 101, but also can guide the movement of the sliding rod 12, for example, the sliding rod 12 moves in the X direction in the hole 1011, so that the linear motion accuracy of the sliding rod 12 is higher.

[0201] In the example of FIG. 9, two sliding rods 12 are included, which are connected on the same side of the pressure plate 11, and as shown in FIG. 10, each sliding rod 12 corresponds to a hole 1011. In this way, the pressure plate 11 and the sliding rod 12 connected together can slide along the extension direction of the hole 1011 under the action force.

[0202] In some examples, multiple sliding rods 12 are included, which slide along the corresponding holes 1011, and the external water pressure acts on the pressure plate 11. The multiple sliding rods 12 sliding along the holes can make the movement of the entire sealing structure 1 more stable, and balance the movement of the sealing structure.

[0203] In some examples, the pressure plate 11 and the sliding rod 12 can be an integrally formed structure, for example, an injection molding process can be used; or the pressure plate 11 and the sliding rod 12 are two independent structural members connected through a connecting structure, for example, the pressure plate and the sliding rod can be connected through bolts or adhesive.

[0204] The pressure plate 11 and the sliding rod 12 can be made of a rigid material. The materials of the pressure plate 11 and the sliding rod 12 can be the same or different.

[0205] For example, the pressure plate 11 and the slide bar 12 can be metal parts.

[0206] As shown in the example of FIG. 11, in order to increase the connection strength of the pressure plate 11 and the slide bar 12 and to improve the stability of the synchronous movement of the pressure plate 11 and the slide bar 12, the slide bar 12 can be embedded in the pressure plate 11, and a boss 111 can be provided to limit the position of the slide bar 12 and prevent the slide bar 12 from being separated from the pressure plate 11.

[0207] According to the formula: pressure = pressure intensity * area, the larger the cross-sectional area of the slide bar 12, the smaller the water pressure required. Therefore, in shallow water, the sealing structure 1 can be pushed and sealed to the waterproof and breathable part 2. For example, when the cross-sectional area of the slide bar 12 is large, the water pressure can overcome the internal pressure of the watch case, the friction between the sealing structure and the watch case, the rebound force of the elastic part, and other forces when the water depth is greater than or equal to 50 meters, so that the sealing structure 1 gradually moves towards the waterproof and breathable part 2.

[0208] In the example of the present application, the cross-sectional area of the slide bar 12 can be understood as: the area of the plane perpendicular to the extension direction of the slide bar 12, which is the cross-sectional area of the slide bar. For example, the slide bar 12 extends along the X direction, and the cross-sectional area of the slide bar 12 can be understood as the area of the Y-Z plane perpendicular to the X direction.

[0209] As shown in FIGS. 12 and 13, the slide bar 12 can have two different structures. In FIG. 12, the cross-sectional area of the slide bar 12 can be circular, and the cross-sectional area of the hole 1011 for sliding the slide bar 12 can also be circular. In FIG. 13, the cross-sectional area of the slide bar 12 can be rectangular, and the cross-sectional area of the hole 1011 for sliding the slide bar 12 can also be rectangular. In other examples, the cross-sectional area of the slide bar 12 can also have other shapes, and the present application does not specially limit the shape of the cross-sectional area of the slide bar 12.

[0210] For example, when the cross-sectional area of the slide bar 12 is circular or rectangular, and the cross-sectional area of the hole 1011 is circular or rectangular, the machining process of the slide bar 12 and the hole can be simplified, and other structural parts such as the elastic part mentioned above or the sealing ring, gasket, etc. mentioned below can also be conveniently assembled.

[0211] In some examples, when multiple slide bars 12 are included, the spacing between the slide bars 12 can be compressed as much as possible to increase the cross-sectional area of the slide bar 12. For example, in FIG. 10, each slide bar 12 extends along the X direction, and the two slide bars 12 are arranged along the Y direction, which can reduce the size of the part of the watch case that carries the waterproof and breathable part 2 in the Y direction, provide more space for the slide bar 12, and increase the cross-sectional area of the slide bar 12.

[0212] As shown in FIG. 9 and FIG. 10, in some examples, the plugging structure 1 can further include a plug 13, which is connected with the pressure plate 11 and located on the side of the pressure plate 11 facing the waterproof air permeable member 2; for example, when the plugging structure 1 is used to seal the waterproof air permeable member 2, the plug 13 in the plugging structure 1 can be used to seal the waterproof air permeable member 2.

[0213] For example, as shown in FIG. 14, which shows the assembly structure of the plug 13, the pressure plate 11 and the waterproof air permeable member 2 in a ring structure. When the plugging structure 1 is in the first position to seal the waterproof air permeable member 2, the plug 13 is in the third position, and the plug 13 seals the waterproof air permeable member 2.

[0214] For another example, as shown in FIG. 10, when the plugging structure 1 is in the second position and does not seal the waterproof air permeable member 2, the plug 13 is in the fourth position, and the plug 13 is away from the waterproof air permeable member 2 and has a gap between the plug 13 and the waterproof air permeable member 2.

[0215] The third position is closer to the waterproof air permeable member 2 than the fourth position.

[0216] In the examples of the present application, the direction from the third position to the fourth position can be parallel to the X direction, and can be parallel to the direction from the first position to the second position.

[0217] In some optional materials, the plug 13 can be made of elastic material, for example, rubber material, forming a rubber block. By using the elasticity of the rubber block, the adhesion strength of the plug 13 to the waterproof air permeable member 2 can be improved, and the waterproof effect can be further improved.

[0218] The pressure plate 11, the slide rod 12 and the plug 13 can be an integrally formed structure.

[0219] Alternatively, the pressure plate 11 and the plug 13 can be two independent structure, as shown in FIG. 9, a mounting groove 11A can be formed on the pressure plate 11, and the plug 13 can be arranged in the mounting groove 11A through an adhesive layer.

[0220] The plug has various structures that can be implemented, and the following examples show several structures that can be implemented.

[0221] As shown in FIG. 9 and FIG. 10, an example shows a structure of the plug 13, which is in a ring structure. For example, the plug 13 can be a ring-shaped rubber ring.

[0222] As shown in FIG. 14, when the plug 13 is in the third position and the waterproof air permeable member 2 is sealed, the plug 13 in the ring structure is pressed against the periphery of the waterproof air permeable member 2, and the waterproof air permeable member 2, the pressure plate 11 and the plug 13 in the ring structure form a sealed chamber 14, thereby preventing external water from entering the waterproof air permeable member 2.

[0223] In one structure, the waterproof and breathable member 2 is arranged on the case 101, as shown in Fig. 14. When the plug 13 seals the waterproof and breathable member 2, the annular plug 13 is pressed against the case 101 at the outer periphery of the waterproof and breathable member 2. That is, in this example, under the action of external water pressure, the sealing structure 1 moves towards the waterproof and breathable member 2 until it is pressed against the case 101 at the outer periphery of the waterproof and breathable member 2.

[0224] In another structure, as shown in Fig. 15 and Fig. 16, Fig. 15 is a cross-sectional view of a waterproof and breathable member, and Fig. 16 is a top view of a waterproof and breathable member. The waterproof and breathable member 2 comprises a breathable zone 21 and a peripheral zone 22 at the outer periphery of the breathable zone 21. In the breathable zone 21, there are a plurality of breathable holes that are in communication with the interior space of the case.

[0225] As shown in Fig. 17 and Fig. 18, when the plug 13 is in the third position and seals the waterproof and breathable member 2, the annular plug 13 is pressed against the peripheral zone 22 of the waterproof and breathable member 2. It can be understood that, in this example, under the action of external water pressure, the sealing structure 1 moves towards the waterproof and breathable member 2 until it is pressed against the peripheral zone 22 of the waterproof and breathable member 2, so that the breathable zone 21 of the waterproof and breathable member 2 is enclosed in the sealed chamber 14.

[0226] With the example shown in Fig. 17, the size of the case 101 for bearing the waterproof and breathable member 2 in the Y direction can be reduced, so that the cross-sectional area of the slide rod 12 shown in the examples of Fig. 12 and Fig. 13 can be increased, and the waterproof level of the wearable device can be optimized.

[0227] In the example shown in Fig. 17, a recess can be formed in the case 101, and the waterproof and breathable member 2 is arranged in the recess. The surface of the waterproof and breathable member 2 facing the plug 13 is substantially flush with the opening of the recess.

[0228] As shown in Fig. 19, Fig. 19 shows another structure of the plug, which is in the form of a plate. For example, the plug can be a rubber sheet.

[0229] As shown in Fig. 20, Fig. 20 shows an assembly structure of the plate-shaped plug 13 and the waterproof and breathable member 2. In this example, when the waterproof and breathable member 2 is sealed, the plate-shaped plug 13 is pressed against the waterproof and breathable member 2. That is, it can be understood that the plate-shaped plug 13 directly contacts the waterproof and breathable member 2.

[0230] For example, as shown in Fig. 20, when the sealing structure 1 is in the first position and seals the waterproof and breathable member 2, the plug 13 is in the third position, and the plate-shaped plug 13 seals the waterproof and breathable member 2.

[0231] For example, as shown in FIG. 20, the profile of the front projection of the plug 13 on the waterproof breathable member 2 can be located outside the profile of the breathable zone 21 of the waterproof breathable member 2. In this way, when the plug 13 seals the waterproof breathable member 2, the edge of the plug 13 is attached to the peripheral zone 22 of the waterproof breathable member 2.

[0232] In order to improve the waterproof effect, the profile of the front projection of the plug on the waterproof breathable member 2 can be located outside the profile of the waterproof breathable member. In this way, when the plug seals the waterproof breathable member, the edge of the plug is attached to the surface of the watch case.

[0233] Alternatively, as shown in FIG. 20, the profile of the front projection of the plug 13 on the waterproof breathable member 2 can be located outside the profile of the breathable zone 21 of the waterproof breathable member 2. In this way, when the plug 13 seals the waterproof breathable member 2, the edge of the plug 13 is attached to the peripheral zone 22 of the waterproof breathable member 2.

[0234] In the examples shown in FIG. 20 and FIG. 21, a recess 1012 is formed on the watch case 101, the recess 1012 can be recessed towards the inside of the watch case in the X direction, and the waterproof breathable member 2 is arranged in the recess 1012. The surface of the waterproof breathable member 2 facing the plug 13 is recessed inwardly from the opening of the recess 1012. That is, the surface of the waterproof breathable member 2 facing the plug 13 has a spacing from the opening of the recess 1012. In this way, when the plug 13 needs to seal the waterproof breathable member 2, the plug 13 can be inserted into the recess 1012 and pressed against the waterproof breathable member 2.

[0235] In the example shown in FIG. 20, when the plug 13 is moved to the third position to seal the waterproof breathable member 2, at least part of the plug 13 is moved into the recess 1012 to seal the waterproof breathable member 2.

[0236] For example, as shown in FIG. 21, when the plug 13 is moved to the fourth position to seal the waterproof breathable member 2, at least part of the plug 13 is moved into the recess 1012 to seal the waterproof breathable member 2.

[0237] As shown in FIG. 22 and FIG. 23, the examples shown in FIG. 22 and FIG. 23 illustrate another structure of the plug, the plug 13 comprises a plate-shaped portion 131, and the surface of the plate-shaped portion 131 facing the waterproof breathable member 2 has a protrusion 132, the protrusion 132 is arranged along the circumference of the plate-shaped portion 131 to form an annular pressing ring. For example, the protrusion 132 can be protruded towards the waterproof breathable member 2 in the X direction.

[0238] In this example, the plug 13 not only comprises the plate-shaped portion 131, but also comprises the protrusion 132 in the annular structure, so that the volume of the plug 13 is larger and the elasticity of the plug 13 is better, thereby improving the use reliability of the plug 13.

[0239] In order to increase the connection strength between the plug 13 and the pressure plate 11, as shown in FIG. 23, at least two protrusions 131A can be provided on the plate-shaped portion 131, and as shown in FIG. 22, embedding grooves 11B for embedding the protrusions 131A can be provided on the pressure plate 11. The connection strength between the plug 13 and the pressure plate 11 is increased by connecting the plurality of protrusions 131A and the plurality of embedding grooves 11B, and the movement stability of the sealing structure 1 is improved.

[0240] As shown in FIG. 24, the assembly structure of the plug 13, the pressure plate 11, and the waterproof air permeable member 2 is shown. In this example, when the waterproof air permeable member 2 is sealed, the protrusions 132 forming the annular compression ring are compressed on the periphery of the waterproof air permeable member 2. The waterproof air permeable member 2, the plate-shaped portion 131, and the annular compression ring enclose the sealed cavity 14, so that external water is prevented from entering the waterproof air permeable member 2.

[0241] In the example shown in FIG. 24, the sealing structure 1 is in the first position, and the plug 13 is in the third position to seal the waterproof air permeable member 2, and the protrusions 132 of the annular compression ring are compressed on the periphery of the waterproof air permeable member 2.

[0242] For another example, the sealing structure 1 is in the second position, and the plug 13 is in the fourth position to unseal the waterproof air permeable member 2, and the protrusions 132 of the annular compression ring are away from the waterproof air permeable member 2, and there is a gap between the protrusions 132 and the waterproof air permeable member 2.

[0243] In an example, as shown in FIG. 24, when the plug 13 is in the third position, the protrusions 132 forming the annular compression ring can be compressed on the peripheral area of the waterproof air permeable member 2. Alternatively, in other examples, when the plug 13 is in the third position, the protrusions 132 forming the annular compression ring can be compressed on the watch case 101 surrounding the periphery of the waterproof air permeable member 2.

[0244] As shown in FIG. 25, the waterproof air permeable member 2 is provided on the watch case 101, for example, a recess can be formed on the watch case 101, and the waterproof air permeable member 2 is provided in the recess. In order to avoid the contact position between the waterproof air permeable member 2 and the watch case 101 becoming a water leakage channel, as shown in FIG. 25, an adhesive layer 102 can be formed on the contact surface between the waterproof air permeable member 2 and the watch case 101, and the adhesive layer 102 is used to fill the gap, which can further improve the waterproof performance of the device.

[0245] In the above examples, various structures of the blocking structure are exemplified, such as the blocking structure can be a ring structure as shown in FIG. 9 and FIG. 10, or can be a plate structure as shown in FIG. 19, or can be a plate structure and a ring structure as shown in FIG. 22. In addition, various arrangements of the waterproof and breathable member 2 are also exemplified, such as the waterproof and breathable member 2 is arranged in the groove 1012 as shown in FIG. 21, or the surface of the waterproof and breathable member 2 facing the blocking head 13 is flush with the opening of the groove. Various structures of the slide rod 12 are also exemplified, such as the cross section of the slide rod 12 is circular or rectangular.

[0246] Various structures of the blocking structure can be combined with various arrangements of the waterproof and breathable member 2 and various structures of the slide rod 12 to form various wearable devices. For example, in FIG. 24, the waterproof and breathable member 2 can be arranged in the groove 1012 as shown in FIG. 21. For another example, in FIG. 24, the cross section of the slide rod 12 can be circular or rectangular. For yet another example, the blocking head 13 can be a plate structure or a ring structure.

[0247] The blocking head can be arranged at various positions on the pressure plate, and the following examples exemplify several structures that can be implemented.

[0248] As shown in FIG. 24, in this example, the slide rod 12 connected to the pressure plate 11 has multiple slide rods 12, and the multiple slide rods 12 are arranged at intervals on the pressure plate 11. The blocking head 13 is arranged between the multiple slide rods 12, or can be understood as being arranged in the area surrounded by the multiple slide rods 12.

[0249] For example, the blocking head 13 is a plate structure, and the multiple slide rods 12 are arranged at intervals along the periphery of the plate structure.

[0250] For another example, the blocking head 13 is a ring structure, and the multiple slide rods are arranged at intervals along the periphery of the ring structure.

[0251] For yet another example, as shown in FIG. 24, the blocking head 13 not only includes a plate structure part, but also includes a ring structure part. The multiple slide rods are arranged at intervals around the periphery of the blocking head.

[0252] As shown in FIG. 26, in this example, the slide rod 12 connected to the pressure plate 11 has multiple slide rods 12, and the multiple slide rods 12 are arranged at intervals on the pressure plate 11. The blocking head 13 is a ring structure, and the ring structure of the blocking head 13 surrounds the periphery of the area surrounded by the multiple slide rods 12.

[0253] In the example of FIG. 26, the plug 13 of the annular structure is arranged outside the area surrounded by the plurality of slide bars 12, so that the area of the waterproof and breathable member 2 can be increased, and the plug 13 can be prevented from interfering with the waterproof and breathable member 2, or in some examples, other structural members can be arranged in the area surrounded by the plurality of slide bars 12, so that the plug can also be prevented from interfering with the other structural members.

[0254] In the example of FIG. 26, when the plug 13 is in the fourth position and does not block the waterproof and breathable member 2, the plug 13 of the annular structure is away from the waterproof and breathable member 2, and a gap is formed between the plug 13 and the waterproof and breathable member 2.

[0255] For example, when the plug 13 is in the third position and blocks the waterproof and breathable member 2, the plug 13 of the annular structure is pressed against the surface of the watch case.

[0256] It can be understood that when the plug 13 blocks the waterproof and breathable member 2, the plug 13 can abut against the surface of the watch case 101 outside the plurality of slide bars 12. In this way, the plurality of slide bars 12 and the waterproof and breathable member 2 can be enclosed in the space surrounded by the annular plug 13, so that the waterproof and breathable member 2 can be blocked, and the gap between the plurality of slide bars 12 and the hole 1011 can also be blocked, and the waterproof effect can be further improved.

[0257] In some examples, as shown in FIGS. 27 and 28, the surface of the plug 13 facing the waterproof and breathable member 2 can protrude from the pressure plate 11, that is, in the X direction, the surface of the plug 13 facing the waterproof and breathable member 2 can protrude from the surface M of the pressure plate 11. For example, as shown in FIG. 27, when the plug 13 includes a protrusion 132 forming an annular pressing ring, the protrusion 132 protrudes from the surface M of the pressure plate 11, so that the thickness S of the pressure plate 11 can be ensured, and the pressure plate 11 has sufficient strength and basically does not deform under high water pressure.

[0258] In some other examples, as shown in FIG. 29, a mounting groove 1102 can be formed in the pressure plate 11, and the plug 13 can be arranged in the mounting groove 1102. As shown in FIG. 30, when the plug 13 blocks the waterproof and breathable member 2, the waterproof and breathable member 2 is located in the mounting groove 1102.

[0259] As shown in FIGS. 29 and 30, in the X direction, the mounting groove 1102 is recessed towards the outside of the watch case.

[0260] For example, as shown in FIG. 30, when the plug 13 is in the third position and blocks the waterproof and breathable member 2, the waterproof and breathable member 2 extends into the mounting groove 1102, and the plug 13 is pressed against the waterproof and breathable member 2.

[0261] For example, when the plug 13 is in the fourth position and does not block the waterproof and breathable member 2, the waterproof and breathable member 2 is located outside the mounting groove 1102.

[0262] In some wearable devices, as shown in FIGS. 29 and 30, the plug 13 can be a plate structure, or the plug 13 can be a ring structure, or the plug 13 can include both a plate structure and a ring structure.

[0263] In the wearable device provided in the embodiments of the present application, the slide rod 12 is slidingly arranged in the hole 1011, a gap is formed between the slide rod 12 and the inner wall of the hole 1011, and the hole 1011 is in communication with the internal space of the watch case 101. In order to prevent external water from entering the internal space of the watch case 101 through the gap between the slide rod 12 and the hole 1011, the wearable device can further include a sealing ring. The sealing ring can be sleeved on the outside of the slide rod 12, i.e., the sealing ring is located in the gap between the slide rod and the hole, and the sealing ring is used to prevent external water from entering the internal space of the watch case 101.

[0264] The elastic member and the sealing ring provided in the present application have various arrangement modes, as shown in the following examples.

[0265] As shown in FIGS. 31 and 32, the elastic member and the sealing ring are arranged in one of the arrangement modes in the examples. In the example, the elastic member 3 is sleeved on the outside of the slide rod 12.

[0266] In the example, the sealing ring 15 is sleeved on the outside of the slide rod 12, and the sealing ring 15 and the elastic member 3 can be arranged along the extension direction of the slide rod 12 (e.g., along the X direction). In some examples, as shown in FIG. 32, the sealing ring 15 can be closer to the internal space of the watch case 101 than the elastic member 3, the hole 1011 for the slide rod 12 to slide is in gap fit with the slide rod 12, and the elastic member 3 is located in the gap between the slide rod 12 and the hole 1011.

[0267] In the examples of the present application, the number of the sealing ring 15 can be one or more. For example, as shown in FIG. 32, two sealing rings 15 are arranged along the X direction.

[0268] Continuing to refer to FIGS. 31 and 32, a gasket 16 can be arranged between the sealing ring 15 and the elastic member 3. In this way, one end of the elastic member 3 can abut against the gasket 16, and the other end can abut against the pressure plate 11.

[0269] As shown in FIG. 32, when the plug 13 is located at the third position to seal the waterproof and breathable member 2, the elastic member 3 is compressed under the action of external water pressure and abuts against the gasket 16, and the gasket 16 moving downward along the X direction also abuts against the sealing ring 15.

[0270] In some examples, as shown in FIG. 33, which is a schematic view of the structure after the blocking structure is removed. In combination with FIG. 31 and FIG. 32, in this example, the hole 1011 for the sliding rod 12 to slide in includes a first section 1011A and a second section 1011B, the hole diameter of the first section 1011A is smaller than the hole diameter of the second section 1011B, and the first section 1011A is closer to the inside of the watch case 101 than the second section 1011B. In this way, a step is formed at the joint of the first section 1011A and the second section 1011B.

[0271] The elastic member 3, the gasket 16 and the sealing ring 15 can be located in the second section 1011B, and the sealing ring 15 can abut against the step.

[0272] As shown in FIG. 33, by arranging part of the sliding rod 12 in the second section 1011B with a larger hole diameter, the cross-sectional area of the sliding rod 12 can be increased.

[0273] In order to increase the cross-sectional area of the sliding rod 12, in some structures, a groove can be formed on the outer wall of the sliding rod 12 as shown in FIG. 32, the sealing ring 15 and the gasket 16 can be arranged in the groove, or the elastic member 3 can also be arranged in the groove.

[0274] FIG. 34 exemplarily shows a way of arranging the elastic member and the sealing ring. This example is similar to the example of FIG. 33, the sealing ring 15 and the elastic member 3 are both arranged outside the sliding rod 12, the sealing ring 15 and the elastic member 3 can be arranged along the extension direction of the sliding rod 12, and the sealing ring 15 can be closer to the inside of the watch case 101 than the elastic member 3. The gasket 16 can be arranged between the sealing ring 15 and the elastic member 3.

[0275] In the example of FIG. 34, a plate-shaped plug 13 is used, and in the example of FIG. 33, a ring-shaped plug is used. In some other examples, plugs containing both plate-shaped structures and ring-shaped structures can also be used.

[0276] As shown in FIG. 35, which exemplarily shows another way of arranging the elastic member and the sealing ring. In this example, the plug 13 includes a blocking portion 133 and a sealing portion 134. For example, the blocking portion 133 and the sealing portion 134 can be integrally formed.

[0277] The blocking portion 133 is used to block the waterproof and air permeable member 2, and the sealing portion 134 is in a ring shape and extends into the gap between the sliding rod 12 and the hole 1011. In this way, a separate sealing ring can not be needed, and the sealing effect can be achieved by using the sealing portion 134. Moreover, the assembly process can be simplified.

[0278] In the example shown in FIG. 35, the sealing portion 134 is located in the gap between the slide rod 12 and the hole 1011 when the blocking portion 133 of the plug 13 does not block the waterproof air permeable member 2. When the pressure plate 11, the slide rod 12 and the plug 13 move towards the waterproof air permeable member 2 under the water pressure, the sealing portion 134 moves downwards along the hole 1011 until the blocking portion 133 blocks the waterproof air permeable member 2. In the example shown in FIG. 35, the blocking portion 133 has a ring structure. In other examples, the blocking portion 133 can have a plate structure. Alternatively, the blocking portion 133 can include a plate portion and a ring portion connected together. As shown in FIG. 35, the elastic member 3 can be sleeved on the outside of the slide rod 12, and the elastic member 3 is closer to the inside of the watch case. A gasket 16 can be arranged between the elastic member 3 and the sealing portion 134, and one end of the elastic member 3 abuts against the gasket 16 and the other end abuts against the watch case 101.

[0279] It can be understood that, as shown in FIG. 35, when the plug 13 is in the fourth position and does not block the waterproof air permeable member 2, the sealing portion 134 extends into the gap between the slide rod 12 and the hole 1011 to play a sealing role.

[0280] For example, when the plug 13 is in the third position and blocks the waterproof air permeable member 2, the blocking portion 133 blocks the waterproof air permeable member 2, and the sealing portion 134 moves downwards along the X direction and abuts against the gasket 16.

[0281] In some examples, when the plug 13 is in the third position and blocks the waterproof air permeable member 2, the blocking portion 133 can be attached to the watch case around the waterproof air permeable member 2, as shown in FIG. 35. In other examples, when the plug 13 is in the third position and blocks the waterproof air permeable member 2, the blocking portion 133 can be attached to the peripheral area of the waterproof air permeable member 2. In this way, the size of the part of the watch case that carries the waterproof air permeable member 2 in the Y direction can be compressed, and the cross-sectional area of the slide rod 12 can be increased.

[0282] As shown in FIGS. 36 and 37 and FIG. 38, FIGS. 36 and 37 exemplarily show another arrangement of the elastic member and the sealing ring, and FIG. 38 is a structure diagram without the elastic member. In this example, the slide rod 12 is provided with an inlaid space 121, and the elastic member 3 is located in the inlaid space 123. One end of the elastic member 3 can abut against the slide rod 12, and the other end can abut against the watch case 101.

[0283] In this example, the sealing ring 15 is sleeved on the outside of the slide rod 12.

[0284] It can be understood that in this example, the elastic member 3 and the sealing ring 15 are not stacked along the extension direction of the slide rod 12, but the sealing ring 15 is arranged outside the slide rod 12, and the elastic member 3 is embedded inside the slide rod 12. For example, when the elastic member 3 is a spring as shown in FIG. 37, the number of turns of the spring can be increased, and after the slide rod 12 slides relative to the watch case 101 multiple times, the probability of failure of the elastic member is reduced, and the stability of use of the elastic member is improved.

[0285] As shown in FIG. 39, a mounting groove 122 can be formed on the outer wall surface of the slide rod 12, and the sealing ring 15 is arranged in the mounting groove 122. For example, when the sealing ring 15 has multiple, multiple mounting grooves 122 can be formed, and the multiple mounting grooves 122 can be arranged along the extension direction of the slide rod 12, and one sealing ring 15 is arranged in one mounting groove 122. In this way, when the slide rod 12 slides along the watch case 101, the multiple sealing rings 15 are prevented from interfering and being twisted, and the use reliability of the sealing ring is improved. In addition, the cross-sectional area of the slide rod 12 can also be increased

[0286] In the example of FIG. 37, the plug 13 includes a plate-shaped portion and a ring-shaped portion, which improves the elasticity of the entire plug 13 and improves the use reliability of the plug 13. In other examples, the plug 13 in FIG. 37 can only include a plate-shaped portion or only include a ring-shaped portion.

[0287] In some examples, the plug in FIG. 37 can be the plug structure shown in FIG. 35, and the plug 13 includes a plugging portion 133 and a sealing portion 134, wherein the plugging portion 133 is used to plug the waterproof breathable member 2, and the sealing portion 134 has a ring-shaped structure and extends into the gap between the slide rod 12 and the hole 1011. In this way, the sealing ring 15 in FIG. 37 can be omitted, and the assembly process of the device is simplified.

[0288] In FIG. 37, the plug 13 includes a plugging portion 133 and a sealing portion 134, and the plugging portion 133 can include a plate-shaped portion and a ring-shaped portion, thereby improving the elasticity of the entire plug 13.

[0289] In the example of FIG. 37, the waterproof breathable member 2 is arranged in the groove 1012.

[0290] When the plug 13 is in the third position to plug the waterproof breathable member 2, part of the plug 13 protrudes into the groove 1012 and is pressed on the waterproof breathable member 2. As shown in FIG. 37, when the plug 13 is in the fourth position and does not plug the waterproof breathable member 2, there is a gap between the plug 13 and the waterproof breathable member 2.

[0291] In some examples, when the plug 13 is in the fourth position and does not plug the waterproof breathable member 2, the plug 13 can be located outside the groove 1012, or can be partially located in the groove 1012, but there is a gap between the plug 13 and the waterproof breathable member 2.

[0292] In order to improve the stability of the elastic member 3, as shown in FIG. 38, a guide column 1013 extending into the inlay space 121 can be arranged on the watch case 101, and the elastic member 3 can be sleeved on the guide column 1013. In this way, when the slide rod 12 slides relative to the watch case 101, the elastic member 3 can be deformed along a straight line.

[0293] Since the hole 1011 for arranging the slide rod 12 needs to be communicated with the inside of the watch case, a hole with a smaller aperture can be arranged near the guide column 1013, and the hole with a smaller aperture is communicated with the hole 1011 for arranging the slide rod.

[0294] As shown in FIG. 40, which exemplarily shows another arrangement of the elastic member and the sealing ring. In this example, the plug 13 includes a blocking portion 133 and a sealing portion 134.

[0295] The blocking portion 133 is used to block the waterproof and breathable member 2, and the sealing portion 134 has a ring structure and extends into the gap between the slide rod 12 and the hole 1011. In this example, the blocking portion 133 has a plate structure.

[0296] In addition, the slide rod 12 is provided with an inlay space 121, and the elastic member 3 is located in the inlay space 123. One end of the elastic member 3 can abut against the slide rod 12, and the other end can abut against the watch case 101.

[0297] In this example, not only the sealing structure for sealing the gap of the hole is formed in an integral structure with the plug, but also the elastic member 3 is arranged inside the slide rod. In this way, not only the number of coils of the spring can be increased, and the probability of failure of the elastic member can be reduced after the slide rod 12 slides relative to the watch case 101 multiple times, thereby improving the stability of the elastic member, but also the structure of the entire device can be simplified.

[0298] As shown in FIG. 41, which exemplarily shows one of the arrangements of the waterproof and breathable member 2, wherein FIG. 41 is a structure schematic view of the waterproof and breathable member 2 being disassembled.

[0299] In this example, it can be understood that the watch case 101 has opposite first and second surfaces, and the first surface faces the blocking structure. The first surface is provided with a groove 1014 recessed towards the second surface, and the bottom surface of the groove 1014 has a spacing with the second surface. The waterproof and breathable member 2 is arranged in the groove 1014. In this way, when the blocking structure is pressed against the waterproof and breathable member 2, the bottom surface of the waterproof and breathable member 2 will be pressed on the bottom surface of the groove 1014, and the risk of deformation and falling of the waterproof and breathable member 2 is reduced.

[0300] In some examples, as shown in FIG. 41, the first surface and the second surface of the watch case 101 are arranged along the X direction, and the second surface is closer to the inside of the wearable device than the first surface. When the blocking structure 1 is in the first position to block the waterproof breathable member 2, or the plug 13 is moved to the third position to block the waterproof breathable member 2, the force of the plug 13 acting on the waterproof breathable member 2 can cause the bottom surface of the waterproof breathable member 2 to be pressed against the bottom surface of the groove 1014, thereby improving the adhesion of the waterproof breathable member 2 to the bottom surface of the groove 1014.

[0301] In order to allow the waterproof breathable member 2 to communicate with the internal space of the watch case 101, as shown in FIG. 41, a communication hole 1015 is provided between the bottom surface of the groove 1014 and the second surface, and the communication hole 1015 is used to communicate the waterproof breathable member 2 and the internal space of the watch case.

[0302] The waterproof breathable member 2 of the example has various implementation structures. For example, as shown in FIG. 42, the waterproof breathable member 2 can include a first support plate 201, a second support plate 202, a waterproof breathable film 203, and a dust screen 204, and the first support plate 201 and the second support plate 202 are both provided with a breathable hole. The waterproof breathable film 203 and the dust screen 204 are stacked between the first support plate 201 and the second support plate 202.

[0303] In some structures, as shown in FIG. 42, the two adjacent layer structures can be bonded together by an adhesive layer 205. For example, the first support plate 201 and the dust screen 204 are connected by the adhesive layer 205.

[0304] In this example, by providing the dust screen 204, external dust can be filtered out of the wearable device.

[0305] By providing the first support plate 201 and the second support plate 204, the mechanical strength of the entire waterproof breathable member 2 can be improved, and the use reliability of the module can be improved.

[0306] The wearable device provided by the example can further include a decorative plate 17, as shown in FIGS. 43 and 44, the decorative plate 17 is provided with a mounting cavity 171, and at least part of the blocking structure 1 is slidingly arranged in the mounting cavity 171.

[0307] In some implementation structures, as shown in FIG. 43, the decorative plate 17 can be fixed to the watch case 101 by a connecting member 18 (such as a bolt). For example, when the connecting member 18 is a threaded connecting member, a mounting hole 1015 is provided on the watch case 101 for the threaded connecting member to extend into.

[0308] In order to make the wearable device inside and outside of the communication, such as, speaker diffusion sound needs to be propagated to the wearable device outside; for example, the need to maintain the wearable device inside and outside the pressure difference; for example, the need to discharge the wearable device inside the water. Continue to see Figure 43, the decorative plate 17 is provided with a through hole 172 for the shell inside space communication.

[0309] In order to avoid dust through hole 172 into the shell, a filter structure can be provided at the through hole 172. For example, a filter screen can be provided.

[0310] In some examples, the through hole 172 can be provided on one face of the decorative plate 17, or can be provided on multiple faces. As shown in Figure 44, the face provided with the through hole 172 can be the face facing the user's arm, or the face away from the user's arm.

[0311] In an assembly process, the waterproof and breathable member 2 can be installed on the shell first; then install the sealing structure containing the sealing structure on the shell, wherein the sliding rod of the sealing structure is inserted into the hole of the shell; then install the decorative plate, that is, fix the decorative plate on the shell by the connecting member.

[0312] In the above examples, the waterproof and breathable member 2 can be fixed on the shell, and the sealing structure 1 is slidingly arranged on the shell.

[0313] In some examples, the waterproof and breathable member 2 and the sealing structure 1, and the elastic member 3 can be arranged on the support member, for example, the waterproof and breathable member 2 is fixed on the support member, the sealing structure 1 is slidingly arranged on the support member, and the positional relationship and connection relationship of the waterproof and breathable member 2, the sealing structure 1 and the elastic member 3 can refer to the above examples.

[0314] The support member can be arranged on the main body of the electronic device by the connecting member. For example, the electronic device can be a wearable device, or glasses and the like. The main body can be a watch case of a wearable device, or a frame or leg of glasses and the like.

[0315] The support member is used to enclose a hole in communication with the inside of the main body of the electronic device. In an example, a hole can be formed on the support member; or a plurality of support members enclose a hole, or the support member and the main body of the electronic device enclose a hole.

[0316] Among them, the support member for arranging the sealing structure 1 and the support member for arranging the waterproof and breathable member 2 can be different support members, or the same support member.

[0317] The support member can be detachably connected to the main body of the electronic device by the connecting member. For example, a mounting cavity for mounting the support member can be provided on the main body, and a structure containing the support member, the waterproof and breathable member and the sealing structure is arranged in the mounting cavity of the shell by the connecting member.

[0318] In one scenario, a waterproof and breathable member can also be arranged on the watch case, such as when the wearable device is not diving, the waterproof and breathable member arranged on the watch case is used for ventilation, drainage, etc. When the wearable device is diving, the structure including the support member, the waterproof and breathable member, and the sealing structure can be arranged in the mounting cavity of the watch case.

[0319] In the description of the present specification, specific features, structures, materials or characteristics can be combined in any one or more embodiments or examples in a suitable manner.

[0320] The above merely provides the specific implementation of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of the changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A table body, characterized in that, The watch body comprises: a watch case, a hole being formed in the watch case and communicating with the inside of the watch body; a blocking structure arranged on the watch case; a waterproof and breathable member arranged on the side of the blocking structure facing the inside of the watch body, the waterproof and breathable member communicating with the inside of the watch body; the blocking structure being capable of moving along the hole towards the waterproof and breathable member to block the waterproof and breathable member.

2. The table body of claim 1, wherein, The watch body further comprises: a resilient member for providing the blocking structure with a resilient force for moving away from the waterproof and breathable member; the blocking structure being capable of moving along the hole away from the waterproof and breathable member to form a gap between the blocking structure and the waterproof and breathable member.

3. The table body of claim 2, wherein, The blocking structure comprises: a pressure bearing plate; at least one slide rod connected with the pressure bearing plate, the slide rod being arranged in the hole and being capable of moving along the hole; a plug having elasticity, the plug being connected with the pressure bearing plate and being arranged on the side of the pressure bearing plate facing the waterproof and breathable member, the plug being used for blocking the waterproof and breathable member.

4. The table body of claim 3, wherein, The plug comprises a plate-shaped portion for blocking the waterproof and breathable member.

5. The table body of claim 3, wherein, The side of the plug facing the waterproof and breathable member comprises a closed annular structure, the annular structure protruding towards the waterproof and breathable member; when the plug blocks the waterproof and breathable member, the annular structure is arranged around the waterproof and breathable member.

6. The table body of claim 5, wherein, The plug further comprises a plate-shaped portion, the annular structure being arranged around the plate-shaped portion, the plate-shaped portion and the annular structure being used for blocking the waterproof and breathable member.

7. The table body of claim 5, wherein, The plug has an annular structure, the pressure bearing plate and the annular structure being used for blocking the waterproof and breathable member.

8. The table body of any one of claims 3-7, wherein, The slide rod has a plurality of slide rods, the plurality of slide rods being arranged on the pressure bearing plate in intervals; the plug is arranged around the plurality of slide rods, or the plug is arranged between the plurality of slide rods.

9. The watch body according to claim 8, wherein the waterproof and breathable member comprises a breathable area and a peripheral area arranged around the breathable area, the breathable area having a plurality of breathable holes, the breathable holes communicating with the inside of the watch body; the side of the plug facing the waterproof and breathable member comprises a closed annular structure, the annular structure protruding towards the waterproof and breathable member to form a protrusion; when the plug blocks the waterproof and breathable member, the protrusion is attached to the peripheral area.

10. The table body of any one of claims 3-9, wherein, An inlay space is formed in the slide rod, and the resilient member is arranged in the inlay space.

11. The table body of claim 10, wherein, One end of the resilient member is abutted against the slide rod, and the other end of the resilient member is abutted against the watch case.

12. The table body of claim 10 or 11, wherein, A guide column extending into the inlay space is arranged on the watch case, and the resilient member is sleeved on the guide column.

13. The table body of any one of claims 10-12, wherein, The watch body further comprises: a sealing ring sleeved on the outside of the slide rod.

14. The table body of claim 13, wherein, An installation groove is formed on the outer wall surface of the slide rod, and the sealing ring is arranged in the installation groove.

15. The table body of any one of claims 3-9, wherein, The resilient member is sleeved on the outside of the slide rod.

16. The table body of claim 15, wherein, The watch body further comprises: a sealing ring sleeved on the outside of the slide rod, and the resilient member and the sealing ring are arranged along the extension direction of the slide rod.

17. The table body of claim 3, wherein, The plug comprises a blocking part and a sealing part connected with the blocking part; The blocking part is capable of moving along the hole towards the waterproof and breathable part to block the waterproof and breathable part; The sealing part is located in the gap between the sliding rod and the hole.

18. The table body of claim 17, wherein, The blocking part and the sealing part are integrally formed.

19. The table body of claim 17 or 18, wherein, The sliding rod is provided with an inlaying space, and the elastic member is located in the inlaying space.

20. The table body of any one of claims 1-19, wherein, The watch case has opposite first and second faces, and the first face faces the blocking structure; The first face is provided with a groove recessed towards the second face, and the waterproof and breathable part is arranged in the groove; The bottom surface of the groove and the second face are provided with a communication hole for communicating the waterproof and breathable part and the inside of the watch body.

21. The table body of any one of claims 1-20, wherein, The watch body comprises: A decorative plate provided with a mounting cavity, and at least part of the blocking structure is arranged in the mounting cavity; The decorative plate is provided with a through hole for communicating with the inside of the watch body.

22. The table body of claim 21, wherein, The through hole is provided with a filtering structure.

23. A wearable device, comprising: It comprises: A watchband; The watch body according to any one of claims 1-22, and the watchband is connected with the watch body.

24. A sealing and waterproofing mold module for being disposed on an electronic device, the sealing and waterproofing mold module comprising: The blocking waterproof module comprises: A support for surrounding a hole communicating with the inside of the electronic device body; A blocking structure and a waterproof and breathable part arranged on the support; The waterproof and breathable part is located on the side of the blocking structure facing the inside of the electronic device body, and the waterproof and breathable part communicates with the inside of the electronic device body; The blocking structure is capable of moving along the hole towards the waterproof and breathable part to block the waterproof and breathable part.

25. The waterproofing plug assembly of claim 24, wherein, The blocking waterproof module further comprises: An elastic member for providing the blocking structure with elastic force moving away from the waterproof and breathable part; The blocking structure is capable of moving away from the waterproof and breathable part along the hole to form a gap between the blocking structure and the waterproof and breathable part.

26. The sealing and waterproofing mold set according to claim 24 or 25, characterized in that, The blocking structure comprises: A pressure bearing plate; At least one sliding rod connected with the pressure bearing plate, the sliding rod is arranged in the hole and is capable of moving along the hole; A plug with elasticity, the plug is connected with the pressure bearing plate, the plug is located on the side of the pressure bearing plate facing the waterproof and breathable part, and the plug is used to block the waterproof and breathable part.

27. The water-tight module of claim 26, wherein, The sliding rod has a plurality of sliding rods arranged on the pressure bearing plate in intervals; The plug surrounds a plurality of sliding rods, or The plug is located between a plurality of sliding rods.

28. The sealing and waterproofing mold set according to claim 26 or 27, characterized in that, The side of the plug facing the waterproof and breathable part comprises a closed annular structure, and the annular structure protrudes towards the waterproof and breathable part; When the plug blocks the waterproof and breathable part, the annular structure surrounds the waterproof and breathable part.

29. The water-tight module of claim 28, wherein, The plug further comprises a plate-shaped part, and the annular structure surrounds the plate-shaped part, and the plate-shaped part and the annular structure are used to block the waterproof and breathable part.

30. The enclosure according to any one of claims 26-29, wherein, The sliding rod is provided with an inlaying space, and the elastic member is located in the inlaying space.

31. The sealed waterproof mold block of any one of claims 26-30, wherein, The blocking waterproof module further comprises: A sealing ring sleeved on the outside of the sliding rod.

32. The enclosure according to any one of claims 24-31, wherein, The support has opposite first and second faces, the first face facing the sealing structure; The first face is provided with a groove recessed toward the second face, and the waterproof and breathable member is arranged in the groove; A communication hole is arranged between the bottom surface of the groove and the second face, and the communication hole is used for communicating the waterproof and breathable member and the inside of the electronic device main body.

33. An electronic device, comprising: Comprise: A main body; The sealing and waterproof module as claimed in any one of claims 24-32; A connecting member, the sealing and waterproof module is installed on the main body through the connecting member.

34. The electronic device of claim 33, wherein, The main body comprises a surface body of a wearable device.

Citation Information

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