Sports watch
Patent Information
- Application Number
- CN202522094552.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-27
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-09-27
AI Technical Summary
[0003]本申请实施方式提供了一种运动手表,以解决上述存在的至少一个技术问题。
Smart Images

Figure CN224816659U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of consumer electronics technology, specifically to a sports watch. Background Technology
[0002] Sports watches have gradually increased their market share due to their advantages of high structural strength, good waterproof and shock resistance, and high level of intelligence. In specific sports scenarios where sports watches are used, such as indoors with insufficient daylight, outdoors with insufficient daylight, or indoors or outdoors at night without lighting, users have expressed a need for illumination. Especially during diving, sports watches with illumination functions can serve as auxiliary lighting and navigation aids. Utility Model Content
[0003] This application provides a sports watch to solve at least one of the aforementioned technical problems.
[0004] The sports watch provided in this application includes a housing and an illumination component. The housing has a receiving cavity and includes a main body and a light-transmitting part. The light-transmitting part is disposed on the side of the main body and configured to allow light to pass through. A receiving groove is provided in the light-transmitting part. The illumination component is housed within the receiving cavity and configured to emit light. At least a portion of the illumination component is inserted into the receiving groove to be fixedly connected to the light-transmitting part. The light emitted by the illumination component is emitted outwards from the housing through the light-transmitting part.
[0005] In some embodiments, the sports watch further includes a bracket housed within the receiving cavity, the bracket abutting against the at least portion of the lighting assembly in a first direction.
[0006] In some embodiments, the projection range of the light-emitting unit of the lighting assembly is located within the projection range of the bracket in a plane perpendicular to the first direction.
[0007] In some embodiments, the sports watch further includes a bezel, a cover plate, and a display. The bezel is connected to the housing. The cover plate is mounted on the bezel. The display is mounted on the side of the cover plate opposite to the receiving cavity. The display is configured to emit light through the cover plate to the outside of the sports watch for the user to receive information. The cover plate includes a first side and a second side opposite to each other in a first direction, in which the first side of the cover plate is opposite to the bracket. A light-shielding member is provided at the periphery of the first side of the cover plate, the light-shielding member being configured to block at least a portion of the light emitted by the illumination component and transmitted to the periphery of the cover plate and / or the gap between the cover plate and the bezel.
[0008] In some embodiments, the light-shielding element is black double-sided adhesive tape.
[0009] In some embodiments, the light-transmitting portion includes a first side located inside the accommodating cavity and a second side located outside the accommodating cavity, and the second side of the light-transmitting portion is provided with a light-transmitting protective layer, the protective layer being used to protect the light-transmitting portion.
[0010] In some embodiments, the protective layer is an ultraviolet-cured protective layer or a vacuum-deposited protective layer, and the protective layer includes a silicon-based hard coating or a diamond-like carbon film.
[0011] In some embodiments, the sports watch further includes a first circuit board housed within the accommodating cavity. The illumination assembly includes a second circuit board and a light-emitting unit. The second circuit board is housed within the accommodating cavity and electrically connected to the first circuit board. The light-emitting unit is disposed on the second circuit board and electrically connected to the second circuit board. The light-emitting unit corresponds to the light-transmitting portion, and the light emitted by the light-emitting unit is transmitted to the outside of the housing through the light-transmitting portion.
[0012] In some embodiments, the first circuit board is a rigid circuit board. The second circuit board includes a first part and a second part, with the light-emitting unit disposed in the first part. The first part is connected to the first circuit board via the bent second part. The surface of the first part is perpendicular to the surface of the first circuit board.
[0013] In some embodiments, the lighting assembly further includes a thermally conductive reinforcement member connected to the first part and located on the side of the first part opposite to the light-emitting unit.
[0014] In some embodiments, the light-transmitting portion includes a light-transmitting sub-portion and an extension sub-portion, the extension sub-portion being connected to the light-transmitting sub-portion and extending into the receiving cavity. The extension sub-portion and the light-transmitting sub-portion form a receiving groove, the extension sub-portion having a slot communicating with the receiving groove. The first portion and the reinforcing member extend into the slot, and at least a portion of the light-emitting unit is housed in the receiving groove, the light-emitting unit being opposite to the light-transmitting portion in a second direction.
[0015] In some embodiments, the main body and the light-transmitting part are an integral structure formed by two-color injection molding.
[0016] In the sports watch of this embodiment, a light-transmitting portion is provided on the side of the main body, allowing light to pass through. An illumination component is housed within a receiving cavity. The light emitted by the illumination component passes through the light-transmitting portion and is emitted outwards from the casing to provide illumination. At least a portion of the illumination component is inserted into a mounting slot to achieve a fixed connection with the light-transmitting portion. At this point, the mounting position of the illumination component within the receiving cavity is fixed, resulting in good structural stability of the sports watch. The illumination component will not shift or become misaligned with the light-transmitting portion during use, reducing the likelihood of malfunctions in the watch's illumination function and providing a better user experience.
[0017] Additional aspects and advantages of embodiments of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of embodiments of this application. Attached Figure Description
[0018] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, wherein: Figure 1 This is a structural schematic diagram of a portion of the structure of a sports watch according to certain embodiments of this application; Figure 2 yes Figure 1 A schematic cross-sectional view of a portion of the structure of the sports watch shown, taken by line II-II; Figure 3 yes Figure 2 A partial enlarged view of section III of the cross-sectional schematic diagram of the sports watch shown; Figure 4 This is a three-dimensional exploded view of a portion of the structure of a sports watch according to certain embodiments of this application; Figure 5 This is a schematic diagram of the structure of the light-transmitting part in a sports watch according to certain embodiments of this application; Figure 6 This is a schematic diagram of the structure of a sports watch according to certain embodiments of this application.
[0019] Explanation of key component symbols: Sports watch 100; Housing 10; Receiving cavity 11; Main body 13; Light-transmitting part 15; First side of light-transmitting part 1501; Second side of light-transmitting part 1503; Light-transmitting sub-part 151; Extension sub-part 153; Slot 1531; Receiving groove 155; Button 20; Lighting assembly 30; second circuit board 31; first part 311; second part 313; light-emitting unit 33; reinforcing member 35; Bezel 41; Cover plate 43; First side of cover plate 431; Second side of cover plate 433; Seal 45; First circuit board 50; Bracket 70; Display component 90; First direction: Z; Second direction: X. Detailed Implementation
[0020] The embodiments of this application are described in detail below. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the embodiments of this application, and should not be construed as limiting the embodiments of this application.
[0021] In the description of this application, it should be understood that the terms "thickness," "upper," "top," "bottom," "inner," "outer," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are used only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application. The terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, features defined as "first" or "second" may explicitly or implicitly include one or more features. In the description of this application, "a plurality of" means two or more, unless otherwise explicitly specified.
[0022] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation", "connection" and "linkage" should be interpreted broadly. In one example, they can be a fixed connection, a detachable connection, or an integral connection; they can be a mechanical connection, an electrical connection, or a connection that allows communication between them; they can be a direct connection or an indirect connection through an intermediate medium; they can be the internal connection of two elements or the interaction between two elements.
[0023] Sports watches have gradually increased their market share due to their advantages of high structural strength, good waterproof and shockproof performance, and high level of intelligence. In specific sports scenarios where sports watches are used, such as indoors with insufficient daylight, outdoors with insufficient daylight, or indoors or outdoors at night without lighting, users have developed a need for illumination from the sports watch. Especially during diving, a sports watch with illumination function can serve as an auxiliary light source and a guide for location. To solve the above problems, this application provides a sports watch 100 (please refer to...). Figure 6 ).
[0024] Please refer to Figures 1 to 3,and Figure 6 The sports watch 100 provided in this application includes a housing 10 and an illumination component 30. The housing 10 has a receiving cavity 11 and includes a main body 13 and a light-transmitting part 15. The light-transmitting part 15 is disposed on the side of the main body 13 and is configured to allow light to pass through. A receiving groove 155 is provided in the light-transmitting part 15. The illumination component 30 is housed in the receiving cavity 11 and is configured to emit light. At least a portion of the illumination component 30 is inserted into the receiving groove 155 to be inserted and fixed with the light-transmitting part 15. The light emitted by the illumination component 30 is emitted outward from the housing 10 through the light-transmitting part 15.
[0025] Specifically, the sports watch 100 is a smart wearable device designed specifically for sports and outdoor activities. It features basic time display and integrates multiple sensors such as GPS positioning, optical heart rate monitoring, and blood oxygen detection to accurately record the user's exercise trajectory, heart rate changes, calorie consumption, and other data. It also provides users with health management functions such as training analysis, sleep monitoring, and stress assessment. Typically, the sports watch 100 boasts long battery life, high structural strength, and excellent water resistance. The housing 10 is the structure in the sports watch 100 used to house and connect other components. The housing 10 can be made of, but is not limited to, metal or plastic. When the housing 10 is made of metal, it has high structural strength, is less prone to damage, and has a long service life. When the housing 10 is made of plastic, it is lighter and less expensive. The housing 10 includes a receiving cavity 11. The cavity 11 is a spatial structure that provides installation space for the lighting assembly 30, the first circuit board 50 (described below), etc. The cavity 11 is surrounded by the side walls of the housing 10, and the housing 10 separates the cavity 11 from the outside of the sports watch 100.
[0026] The main body 13 is the main body of the housing 10. The light-transmitting part 15 is a structure of the housing 10 used to allow light from inside the accommodating cavity 11 to pass through and be transmitted to the outside of the housing 10. The material of the light-transmitting part 15 can be, but is not limited to, glass, acrylic, and plastic. When the light-transmitting part 15 is made of glass, it has the advantages of high light transmittance and corrosion resistance; when the light-transmitting part 15 is made of acrylic, it has the advantages of light transmittance close to that of glass and ease of processing; when the light-transmitting part 15 is made of plastic, it has the advantages of light weight and lower cost. It is understood that the housing 10 may also include other structures besides the main body 13, such as... Figure 1 , Figure 3 and Figure 4 The structure for mounting the bezel 41 (described below) is not limited in this application.
[0027] The light-transmitting part 15 is located on the side of the main body 13 and is connected to the main body 13, such as... Figure 1 and Figure 6 As shown. The main body 13 and the light-transmitting part 15 can be an integral structure or a separate structure. When the main body 13 and the light-transmitting part 15 are separate structures, the connection between the main body 13 and the light-transmitting part 15 can be a detachable connection or a non-detachable connection. Detachable connections include, but are not limited to, one or more combinations of screw connections and snap-fit connections. Non-detachable connections include, but are not limited to, one or more combinations of gluing, welding, and sintering methods. This definition will be used for detachable and non-detachable connections in the following text and will not be described again. The receiving groove 155 is at least a portion of the light-transmitting part 15 used to receive the lighting component 30, so that the light-emitting unit 33 corresponds to the light-transmitting part 15.
[0028] The illumination component 30 is a component in the sports watch 100 that emits light for illumination. The illumination component 30 is housed within the receiving cavity 11. Since at least a portion of the illumination component 30 is inserted into the receiving groove 155, the illumination component 30 can be fixedly engaged with the light-transmitting part 15 through its cooperation with the receiving groove 155. At this time, the position of the illumination component 30 within the receiving cavity 11 is fixed, and the installation stability of the illumination component 30 inside the housing 10 is good. During the use of the sports watch 100, especially in some extreme sports scenarios such as rock climbing, the illumination component 30 is unlikely to shift and misalign with the light-transmitting part 15, thus preventing the illumination function from failing. During the process of the illumination component 30 emitting light and projecting it outwards from the housing 10, the light emitted by the illumination component 30 first passes through the receiving cavity 11 to the light-transmitting part 15, then penetrates the light-transmitting part 15 to be emitted to the outside of the sports watch 100, illuminating at least a portion of the exterior of the sports watch 100.
[0029] In some embodiments, the luminous intensity of the illumination component 30 remains constant. In this case, the illumination function of the sports watch 100 is relatively simple and has a foolproof function. In other embodiments, the luminous intensity of the illumination component 30 is adjustable. For example, the user can change the light intensity emitted by the illumination component 30 by pressing the button 20 on the housing 10 in different ways. In this case, the illumination component 30 has a level adjustment function, and the user can adjust the light intensity of the illumination component 30 for different usage scenarios, resulting in a better user experience of the sports watch 100.
[0030] In the sports watch 100 of this embodiment, a light-transmitting portion 15 is provided on the side of the main body 13, allowing light to pass through. An illumination component 30 is housed within a receiving cavity 11. The light emitted by the illumination component 30 passes through the light-transmitting portion 15 and is emitted outwards from the housing 10 to provide illumination. At least a portion of the illumination component 30 is inserted into a mounting slot 155 to achieve a fixed connection with the light-transmitting portion 15. At this time, the mounting position of the illumination component 30 in the receiving cavity 11 is fixed, resulting in good structural stability of the sports watch 100. The illumination component 30 will not shift or become misaligned with the light-transmitting portion during use, making it less prone to malfunctions in the illumination function of the sports watch 100 and providing a better user experience.
[0031] Please refer to Figures 1 to 3 ,and Figure 6 In some embodiments, the light-transmitting portion 15 includes a first side 1501 located inside the accommodating cavity 11 and a second side 1503 located outside the accommodating cavity 11. The second side 1503 of the light-transmitting portion is provided with a light-transmitting protective layer, which is used to protect the light-transmitting portion 15.
[0032] Specifically, the light-transmitting portion 15 includes a first side 1501 and a second side 1503 facing away from each other. The first side 1501 of the light-transmitting portion is located inside the receiving cavity 11, and the second side 1503 of the light-transmitting portion is located outside the receiving cavity 11. When light is emitted outward from the housing 10 through the light-transmitting portion 15, the light passes sequentially through the first side 1501 and the second side 1503 of the light-transmitting portion. It can be understood that during the use of the sports watch 100, the second side 1503 of the light-transmitting portion is exposed to the outside. In order to protect the light-transmitting portion 15, the second side 1503 of the light-transmitting portion is provided with a protective layer (not shown).
[0033] The protective layer is a protective structure formed on the surface of the second side 1503 of the light-transmitting part through a coating or plating process. To prevent the protective layer from affecting the light transmission performance of the light-transmitting part 15, the protective layer is a light-transmitting structure. It can be understood that the protective layer also improves the structural strength of the light-transmitting part 15. Therefore, in daily use or certain special sports scenarios such as rock climbing, on the one hand, the protective layer effectively prevents the light-transmitting part 15 from being damaged by external impacts, thus preventing the sports watch 100 from malfunctioning; on the other hand, the protective layer effectively prevents the light-transmitting part 15 from being scratched by external impacts, which could lead to reduced light transmittance, shifted light propagation direction, and consequently limited illumination function of the sports watch 100.
[0034] Therefore, in the sports watch 100 of this application, the protective layer can be used to strengthen the light-transmitting part 15 and prevent the light-transmitting part 15 from being scratched. The protective layer is light-transmitting and therefore does not block the process of light emitted by the lighting component 30 being emitted out of the housing 10. At this time, the structural strength of the light-emitting part of the sports watch 100 is relatively large, and the sports watch 100 is not easily scratched during use, thus affecting the lighting effect, and the user has a better experience with the sports watch 100.
[0035] Please refer to Figures 1 to 3 In some embodiments, the protective layer is an ultraviolet-curable protective layer, which includes a silicon-based hard coating.
[0036] Specifically, when the protective layer is an ultraviolet-cured protective layer, it may include a silicon-based hard coating. During the formation of the protective layer, the silicon-based hard coating is first applied to the second side 1503 of the light-transmitting portion, and then ultraviolet light is used to irradiate the silicon-based hard coating (e.g., only irradiating the light-transmitting portion 15, or irradiating the assembled sports watch 100) to completely cure the silicon-based hard coating within a few seconds to tens of seconds. This ultraviolet curing process has a short production cycle and high processing efficiency, enabling the sports watch 100 to achieve large-scale production on an automated assembly line. Furthermore, ultraviolet curing is a cold curing process, requiring no high-temperature heating, so components of the sports watch 100, such as the lighting component 30 and the housing 10, will not be damaged or age. The protective layer formed by ultraviolet curing of the silicon-based hard coating has advantages such as high hardness, good wear resistance, high transparency, and strong adhesion. While improving the structural strength and scratch resistance of the light-transmitting portion 15, the protective layer does not affect the light transmission performance of the light-transmitting portion 15. Therefore, in the sports watch 100 of this application, the protective layer is an ultraviolet-cured protective layer, which has many advantages such as simple and quick processing steps, high hardness, good wear resistance, high transparency, and strong adhesion. On the one hand, the protective layer can effectively prevent the sports watch 100 from being damaged by external impacts, ensuring that the sports watch 100 can work normally; on the other hand, the protective layer can effectively prevent the sports watch 100 from being scratched by external impacts, thereby avoiding problems such as reduced light transmittance and deviation of light propagation direction in the light-transmitting part 15. The lighting function of the sports watch 100 is stable, and the user has a better experience using the watch.
[0037] Please refer to Figures 1 to 3 In some embodiments, the protective layer is a vacuum-deposited protective layer, which includes a diamond-like carbon film.
[0038] Specifically, when the protective layer is a vacuum-deposited protective layer, it may include a diamond-like carbon film. Typically, plasma-enhanced chemical vapor deposition is used to deposit the diamond-like carbon onto the outer surface of the second side 1503 of the light-transmitting portion. In this case, the protective layer possesses extremely high hardness and wear resistance, allowing the light-transmitting layer to better cope with applications in extreme sports such as rock climbing. Furthermore, the protective layer exhibits excellent optical properties and stability, as well as superior chemical inertness and corrosion resistance. The protective layer significantly improves the structural strength and scratch resistance of the light-transmitting portion 15 without affecting its light transmission performance.
[0039] Therefore, in the sports watch 100 of this application, the protective layer is a diamond-like carbon film. This protective layer possesses extremely high hardness and wear resistance, excellent optical performance and stability, as well as superior chemical inertness and corrosion resistance. On one hand, the protective layer effectively prevents damage to the light-transmitting part 15 caused by external impacts, ensuring the normal operation of the sports watch 100. On the other hand, the protective layer effectively prevents scratches on the light-transmitting part 15 caused by external impacts, thereby preventing problems such as reduced light transmittance and shifted light propagation direction in the light-transmitting part 15. This ensures stable illumination of the sports watch 100 and a better user experience.
[0040] Please refer to Figure 1 , Figure 3 and Figure 4 In some embodiments, the sports watch 100 further includes a first circuit board 50 housed within a receiving cavity 11. The illumination assembly 30 includes a second circuit board 31 and a light-emitting unit 33. The second circuit board 31 is housed within the receiving cavity 11 and electrically connected to the first circuit board 50. The light-emitting unit 33 is disposed on and electrically connected to the second circuit board 31. The light-emitting unit 33 corresponds to the light-transmitting portion 15, and the light emitted by the light-emitting unit 33 is transmitted to the outside of the housing 10 through the light-transmitting portion 15.
[0041] Specifically, the first circuit board 50 is a device in the sports watch 100 used to receive signals, process signals, and issue control commands. For example, the first circuit board 50 is a printed circuit board (PCB) or a reinforced flexible printed circuit (FPC). The first circuit board 50 is housed in the receiving cavity 11 and connected to the housing 10. The connection between the first circuit board 50 and the housing 10 can be detachable or non-detachable. The second circuit board 31 is a device that controls the lighting assembly 30 through an electrical connection with the first circuit board 50. The second circuit board 31 can be a reinforced flexible printed circuit (FPC). The second circuit board 31 is housed in the receiving cavity 11 and connected to the housing 10. The connection between the second circuit board 31 and the housing 10 can be detachable or non-detachable. The second circuit board 31 is electrically connected to the first circuit board 50 through an electrical connector, which can be, but is not limited to, wires, flexible circuit boards, and metal sheets.
[0042] The light-emitting unit 33 is a device for emitting light. For example, the light-emitting unit 33 includes one or more light-emitting diodes. In this case, the light-emitting unit 33 has the advantages of miniaturization, high brightness, and low power consumption, making it very suitable for the sports watch 100 in this application. The light-emitting unit 33 is disposed on the second circuit board 31 and is electrically connected to the second circuit board 31 via an electrical connector, which may be, but is not limited to, wires, flexible circuit boards, and metal sheets. The position of the light-emitting unit 33 corresponds to the position of the light-transmitting part 15, thereby maximizing the transmission of light emitted by the light-emitting unit 33 to the outside of the housing 10 through the light-transmitting part 15.
[0043] Therefore, when the user turns on the illumination function of the sports watch 100, the second circuit board 31 can transmit the trigger signal generated by the trigger (not shown) to the first circuit board 50. The first circuit board 50 then controls the sports watch 100 to respond to the illumination function according to the trigger signal. For example, in this application, the first circuit board 50 controls the illumination component 30 to emit light. The light emitted by the illumination component 30 is transmitted to the outside of the housing 10 through the light-transmitting part 15 and illuminates at least a part of the environment in which the user is located, so as to realize the illumination function of the sports watch 100.
[0044] Please refer to Figure 1 , Figure 3 and Figure 4In some embodiments, the first circuit board 50 is a rigid circuit board. The second circuit board 31 includes a first part 311 and a second part 313. The light-emitting unit 33 is disposed in the first part 311, and the first part 311 is connected to the first circuit board 50 through the bent second part 313. The surface of the first part 311 is perpendicular to the surface of the first circuit board 50.
[0045] Specifically, in the above embodiments, when the first circuit board 50 is a rigid circuit board, the first circuit board 50 has greater structural strength. The first circuit board 50 can assist in the installation process of other components inside the sports watch 100, such as the second circuit board 31. The installation stability of the components inside the sports watch 100 is better. The sports watch 100 has greater structural strength and better impact resistance and drop resistance.
[0046] The first part 311 is a structure in the second circuit board 31 used to connect with the light-emitting unit 33. The light-emitting unit 33 is connected to the first part 311 to fix the position of the light-emitting unit 33 in the accommodating cavity 11, that is, the light-emitting unit 33 can be aligned with the light-transmitting part 15. The second part 313 is a structure in the second circuit board 31 used to connect with the first circuit board 50. The first part 311 is connected to the second part 313, and the second part 313 is a bendable structure. When the second part 313 is bent, the first part 311 is indirectly connected to the first circuit board 50 through the second part 313. The position of the first part 311 relative to the first circuit board 50 is more flexible. At this time, the internal layout of the sports watch 100 can be more flexible, and the sports watch 100 is easier to miniaturize or design in a specific form. Please refer to Figure 3 and Figure 4 This application illustrates the case where the surface of the first part 311 is perpendicular to the surface of the first circuit board 50. At this time, the surface of the first part 311 faces the light-transmitting part 15, and the first circuit board 50 faces the display component 90 (described below). At this time, the layout of the components inside the sports watch 100 is more reasonable, the sports watch 100 has the advantage of miniaturization, and the user has a better experience of using the sports watch 100.
[0047] Please refer to Figure 1 , Figure 3 and Figure 4 In some embodiments, the lighting assembly 30 further includes a heat-conducting reinforcement 35, which is connected to the first part 311 and located on the side of the first part 311 opposite to the light-emitting unit 33.
[0048] Specifically, the reinforcing member 35 is a structure used to enhance the structural strength of the first part 311. The reinforcing member 35 is connected to the first part 311, specifically to the side of the first part 311 opposite to the light-emitting unit 33. The reinforcing member 35 increases the thickness of the first part 311 and gives it greater load-bearing capacity. At this time, the connection (including physical connection and electrical connection) between the light-emitting unit 33 and the first part 311 is more stable, and the light-emitting unit 33 can be better aligned with the light-transmitting part 15 and emit light stably.
[0049] The connection between the reinforcing member 35 and the first part 311 can be either detachable or non-detachable. The reinforcing member 35 is made of a material with good thermal conductivity, such as aluminum, aluminum alloy, copper, or a combination of one or more copper alloys. In this case, the heating element can absorb the heat emitted by the second circuit board 31 and / or the light-emitting unit 33 to achieve heat dissipation, thus improving the safety performance of the lighting assembly 30.
[0050] Therefore, the reinforcing member 35 of the lighting assembly 30 in this application can strengthen the second circuit board 31 and also serve a heat dissipation function. The light-emitting unit 33, supported by the reinforcing member 35 and the first part 311, can be better aligned with the light-transmitting part 15. The light emitted by the light-emitting unit 33 can be transmitted to the outside of the housing 10 at a greater ratio, resulting in better lighting performance for the sports watch 100. Furthermore, the reinforcing member 35 can dissipate heat from the second circuit board 31 and / or the light-emitting unit 33, improving the safety performance of the lighting assembly 30. Other components of the sports watch 100 are not affected by the heat generated by the second circuit board 31 and / or the light-emitting unit 33, leading to a longer overall lifespan for the sports watch 100 and a better user experience.
[0051] Please refer to Figures 3 to 5 In some embodiments, the light-transmitting portion 15 includes a light-transmitting sub-portion 151 and an extension sub-portion 153, the extension sub-portion 153 being connected to the light-transmitting sub-portion 151 and extending into the receiving cavity 11. The extension sub-portion 153 and the light-transmitting sub-portion 151 form a receiving groove 155, the extension sub-portion 153 having a slot 1531 communicating with the receiving groove 155. The first portion 311 and the reinforcing member 35 extend into the slot 1531, and at least a portion of the light-emitting unit 33 is received in the receiving groove 155, the light-emitting unit 33 being opposite to the light-transmitting portion 15 in the second direction X. The sports watch 100 also includes a bracket 70, which is received within the receiving cavity 11. The bracket 70 abuts against the reinforcing member 35 in the first direction Z, the first direction Z being perpendicular to the second direction X.
[0052] Specifically, the light-transmitting sub-section 151 is the structure in the light-transmitting section 15 that primarily allows light emitted from the lighting component 30 to pass through. The extension sub-section 153 is a structure in the light-transmitting section 15 used to fix at least a portion of the lighting component 30 to the light-transmitting sub-section 151. The light-transmitting sub-section 151 and the extension sub-section 153 can be an integral structure or separate structures. When the light-transmitting sub-section 151 and the extension sub-section 153 are separate structures, the connection between the light-transmitting sub-section 151 and the extension sub-section 153 can be a detachable connection or a non-detachable connection. The extension sub-section 153 extends relative to the light-transmitting sub-section 151 into the receiving cavity 11 and forms a receiving groove 155 with the light-transmitting sub-section 151. The receiving groove 155 is a spatial structure used to receive at least a portion of the lighting component 30 so that the light-emitting unit 33 corresponds to the light-transmitting section 15.
[0053] The slot 1531 is a spatial structure formed on the extension 153 for fixing at least a portion of the lighting component 30. The inner contour dimensions and shape of the slot 1531 match the dimensions and shape of the portion of the lighting component 30 that extends into the slot 1531, allowing at least a portion of the lighting component 30 to extend into the slot 1531 so that the lighting component 30 can be stably accommodated in the receiving cavity 11, resulting in good structural stability of the sports watch 100. In some embodiments, the portion of the lighting component 30 extending into the slot 1531 can be further connected to the slot 1531 by adhesive application to further enhance the structural stability of the sports watch 100.
[0054] The slot 1531 communicates with the receiving groove 155. When at least a portion of the lighting assembly 30, namely the first part 311 and the reinforcing member 35, extends into the slot 1531, at least a portion of the light-emitting unit 33 connected to the first part 311 is accommodated in the receiving groove 155. This application will be described using the example of a sports watch 100 whose overall shape is approximately cylindrical. In the radial direction of the circular end face of the cylinder, the direction in which the light-emitting unit 33 and the light-transmitting part 15 are opposite each other is defined as the second direction X. At this time, the light-emitting unit 33 and the light-transmitting part 15 are opposite each other in the second direction X, and the light emitted by the light-emitting unit 33 can be effectively transmitted to the outside of the housing 10 through the light-transmitting part 15.
[0055] The bracket 70 is a structure in the sports watch 100 used to support, mount, or limit other components besides the bracket 70 and the housing 10. The bracket 70 is housed in the receiving cavity 11 and connected to the housing 10. The connection between the bracket 70 and the housing 10 can be detachable or non-detachable. In this application, the thickness direction of the sports watch 100 is defined as the first direction Z, and the first direction Z is perpendicular to the second direction X. At this time, the bracket 70 abuts against the reinforcing member 35 in the first direction Z to limit the movement of the reinforcing member 35, the first part 311 connected to the reinforcing member 35, and the light-emitting unit 33 in the first direction Z. Therefore, the light-emitting unit 33 and the light-transmitting part 15 can be more stably opposite each other in the second direction X, and the light emitted by the light-emitting unit 33 can be more effectively transmitted to the outside of the housing 10 through the light-transmitting part 15.
[0056] Therefore, in the sports watch 100 of this application, the slot 1531 of the extension sub-part 153 and the bracket 70 together restrict the installation position of the lighting component 30 in the receiving cavity 11, so that the light-emitting unit 33 and the light-transmitting part 15 can be more stably opposite each other in the second direction X. As a result, the light emitted by the light-emitting unit 33 can be transmitted to the outside of the housing 10 through the light-transmitting part 15 to the maximum extent. The sports watch 100 has better lighting function and the user has a better experience of using the sports watch 100.
[0057] Please refer to Figure 1 , Figure 3 and Figure 4 In some embodiments, the projection range of the light-emitting unit 33 is located within the projection range of the bracket 70 in the plane perpendicular to the first direction Z.
[0058] Specifically, the light-emitting unit 33 and the bracket 70 are projected relative to the projection plane using a plane perpendicular to the first direction Z. When the projection range of the light-emitting unit 33 is within the projection range of the bracket 70, the light-emitting unit 33 does not extend beyond the bracket 70 in the second direction X or any other direction perpendicular to the first direction Z. Therefore, when the light emitted by the light-emitting unit 33 propagates in the first direction Z, the bracket 70 can block the light emitted by the light-emitting unit 33. The light emitted by the light-emitting unit 33 will not directly illuminate the display element 90 and the cover plate 43 (described below), and the light emitted by the light-emitting unit 33 is unlikely to leak from the gap between the cover plate 43 and the bezel 41 to the outside of the housing 10. Furthermore, the display function of the display element 90 is not affected, and the sports watch 100 does not experience light leakage and can function normally, resulting in a better user experience.
[0059] Please refer to Figure 1 , Figure 3 and Figure 4In some embodiments, the sports watch 100 further includes a bezel 41, a cover plate 43, and a display 90. The bezel 41 is connected to the housing 10, and the cover plate 43 is mounted on the bezel 41. The display 90 is mounted on the side of the cover plate 43 opposite to the receiving cavity 11. The display 90 is configured to emit light through the cover plate 43 to the outside of the sports watch 100 for the user to receive information. The cover plate 43 includes a first side 901 and a second side 903 opposite to each other in a first direction Z. In the first direction Z, the first side 431 of the cover plate is opposite to the bracket 70, and a light shield is provided at the periphery of the first side 431 of the cover plate. The light shield is configured to block at least a portion of the light emitted by the illumination assembly 30 and transmitted to the periphery of the cover plate 43 and / or the gap between the cover plate 43 and the bezel 41.
[0060] Specifically, the bezel 41 is a structure used to cooperate with the housing 10 and jointly house at least some of the functional components of the sports watch 100. The bezel 41 is connected to the housing 10 in the first direction Z. The material of the bezel 41 may be the same as or different from the material of the housing 10. For example, the material of the bezel 41 is metal. In this case, the bezel 41 can improve the structural strength of the sports watch 100 and give the sports watch 100 a more aesthetically pleasing appearance.
[0061] The cover plate 43 is a structure used to protect the display element 90. The cover plate 43 is mounted on the bezel 41, and the cover plate 43 can be directly or indirectly connected to the bezel 41. It is understood that in order to allow the light emitted by the display element 90 to pass through the cover plate 43, the cover plate 43 is made of a light-transmitting material; for example, the cover plate 43 is glass.
[0062] To ensure high water resistance, the gap between the cover plate 43 and the bezel 41 is sealed by a seal 45. The seal 45 is sandwiched between the cover plate 43 and the bezel 41. For example, the seal 45 can be made of at least one of the following materials: rubber, silicone, plastic, or synthetic fibers. Rubber materials include, but are not limited to, natural rubber, nitrile rubber, fluororubber, polyurethane rubber, EPDM rubber, or silicone rubber. The seal 45 prevents external foreign objects, such as liquids and dust, from entering the receiving cavity 11 through the gap between the cover plate 43 and the bezel 41, ensuring the normal operation of the internal components of the sports watch 100 and extending its service life.
[0063] The cover plate 43 includes a first side 431 and a second side 433 facing away from each other. The first side 431 of the cover plate is located within the receiving cavity 11 and is opposite to the bracket 70; the second side 433 of the cover plate is in communication with the outside. The display 90 is a structure in the sports watch 100 used to convey information to the user by providing clear and intuitive visual feedback. For example, the display 90 can display to the user information such as sports monitoring data, health indicators, smart notifications, and device status information provided by the sports watch 100. The display 90 is connected to the first side 431 of the cover plate. The display 90 can emit light to the outside of the sports watch 100 during normal use. The light is transmitted to the outside of the sports watch 100 through the cover plate 43, and the user receives the light to obtain information such as sports monitoring data, health indicators, smart notifications, and device status information mentioned above.
[0064] A light shield (not shown) is a structure used to block at least a portion of the light emitted by the illumination component 30 to ensure the normal functioning of the sports watch 100. The light shield is disposed on the first side 431 of the cover plate, specifically at the periphery of the first side 431 of the cover plate. As the light emitted by the illumination component 30 is transmitted along the first direction Z or in a direction at a certain angle to the first direction Z toward the display 90 and the cover plate 43, at least a portion of the light not blocked by the bracket 70 may be transmitted to the periphery of the cover plate 43 and / or to the outside of the sports watch 100 through the gap between the cover plate 43 and the bezel 41.
[0065] With the light-blocking component in place, it can block at least a portion of the light transmitted to the periphery of the cover plate 43 and / or the gap between the cover plate 43 and the bezel 41, preventing the light emitted by the light-emitting unit 33 from easily leaking out of the sports watch 100 through the gap between the cover plate 43 and the bezel 41. Therefore, the sports watch 100 will not experience light leakage, and the light emitted by the illumination component 30 will not interfere with the light emitted by the display element 90 or affect the display function of the display element 90, resulting in a better user experience for the sports watch 100.
[0066] Please refer to Figure 1 , Figure 3 and Figure 4 In some embodiments, the light-shielding element is black double-sided adhesive. In this case, the light-shielding effect is good, and at least a portion of the light can be absorbed by the light-shielding element, making it difficult for the light emitted by the light-emitting unit 33 to leak from the gap between the cover plate 43 and the housing 10 to the outside of the sports watch 100. Therefore, the display function of the display element 90 is not affected, and the sports watch 100 does not experience light leakage, resulting in a better user experience.
[0067] Please refer to Figure 1 , Figure 3 and Figure 4 In some embodiments, the main body 13 and the light-transmitting part 15 are a two-color injection molded integral structure.
[0068] Specifically, during the two-color injection molding process of the main body 13 and the light-transmitting part 15, the molten material used to form the light-transmitting part 15 first flows into the injection mold (not shown) used to form the light-transmitting part 15, and the molten material solidifies to form the light-transmitting part 15. Then, the molten material used to form the main body 13 flows into the injection mold (not shown) used to form the main body 13 and contains the already formed light-transmitting part 15, and the molten material solidifies to form the main body 13. At this time, the main body 13 and the light-transmitting part 15 form a tight embedded connection, and the main body 13 and the light-transmitting part 15 can deform under external force but will not detach from each other.
[0069] With the main body 13 and the light-transmitting part 15 being a two-color injection molded integral structure, the connection between the main body 13 and the light-transmitting part 15 is relatively tight, effectively preventing external liquids from entering the interior of the housing 10 through the through-hole. This results in good waterproofing of the button structure of the sports watch 100, allowing it to function normally in underwater environments. Furthermore, the connection strength between the main body 13 and the light-transmitting part 15 is high, preventing them from easily becoming loose. This enhances the structural strength and stability of the housing 10, leading to a longer service life for the sports watch 100.
[0070] In the description of this specification, the references to terms such as "some embodiments," "in one example," "exemplarily," etc., indicate that a specific feature, structure, material, or characteristic described in connection with an embodiment or example is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.
[0071] Although embodiments of this application have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting this application. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of this application.
Claims
1. A sports watch, characterized in that, include: The housing has a receiving cavity. The housing includes a main body and a light-transmitting part. The light-transmitting part is disposed on the side of the main body and is configured to allow light to pass through. The light-transmitting part has a receiving groove. and An illumination component is housed within the receiving cavity. The illumination component is configured to emit light. At least a portion of the illumination component is inserted into the receiving slot to be fixedly connected to the light-transmitting portion. The light emitted by the illumination component is emitted outward from the housing through the light-transmitting portion.
2. The sports watch according to claim 1, characterized in that, Also includes: A bracket is housed within the receiving cavity, and the bracket abuts against at least a portion of the lighting assembly in a first direction.
3. The sports watch according to claim 2, characterized in that, In a plane perpendicular to the first direction, the projection range of the light-emitting unit of the lighting assembly is located within the projection range of the bracket.
4. The sports watch according to claim 2, characterized in that, Also includes: The bezel is connected to the housing. Cover plate, mounted on the bezel; and A display element is mounted on the side of the cover plate opposite to the receiving cavity. The display element is configured to emit light through the cover plate to the outside of the sports watch for the user to receive information. The cover plate includes a first side and a second side opposite to each other in a first direction. In the first direction, the first side of the cover plate is opposite to the bracket. A light shield is provided on the periphery of the first side of the cover plate. The light shield is configured to block at least a portion of the light emitted by the lighting component and transmitted to the periphery of the cover plate and / or the gap between the cover plate and the bezel.
5. The sports watch according to claim 4, characterized in that, The light-shielding component is black double-sided adhesive.
6. The sports watch according to claim 1, characterized in that, The light-transmitting portion includes a first side located inside the accommodating cavity and a second side located outside the accommodating cavity. The second side of the light-transmitting portion is provided with a light-transmitting protective layer, which is used to protect the light-transmitting portion.
7. The sports watch according to claim 6, characterized in that, The protective layer is an ultraviolet-cured protective layer or a vacuum-deposited protective layer; The protective layer includes a silicon-based hard coating or a diamond-like carbon film.
8. The sports watch according to claim 1, characterized in that, The sports watch also includes a first circuit board housed within the accommodating cavity; the lighting assembly includes: A second circuit board is housed within the receiving cavity and is electrically connected to the first circuit board; and A light-emitting unit is disposed on the second circuit board and electrically connected to the second circuit board. The light-emitting unit corresponds to the light-transmitting part, and the light emitted by the light-emitting unit is transmitted to the outside of the housing through the light-transmitting part.
9. The sports watch according to claim 8, characterized in that, The first circuit board is a rigid circuit board, and the second circuit board includes a first part and a second part. The light-emitting unit is disposed in the first part. The first part is connected to the first circuit board through the bent second part. The surface of the first part is perpendicular to the surface of the first circuit board.
10. The sports watch according to claim 9, characterized in that, The lighting assembly also includes a thermally conductive reinforcing member connected to the first part and located on the side of the first part opposite to the light-emitting unit.
11. The sports watch according to claim 10, characterized in that, The light-transmitting portion includes a light-transmitting sub-portion and an extension sub-portion. The extension sub-portion is connected to the light-transmitting sub-portion and extends into the receiving cavity. The extension sub-portion and the light-transmitting sub-portion form the receiving groove. The extension sub-portion is provided with a slot. The slot communicates with the receiving groove. The first portion and the reinforcing member extend into the slot. At least a portion of the light-emitting unit is housed in the receiving groove. The light-emitting unit is opposite to the light-transmitting portion in a second direction.
12. The sports watch according to any one of claims 1-11, characterized in that, The main body and the light-transmitting part are an integral structure formed by two-color injection molding.