A sports watch

By incorporating a movable shifting component and trigger switch on the sports watch, multi-level lighting control is achieved, solving the problem of not being able to quickly turn on the lighting in low-light environments. This enables the function of quickly adjusting the light intensity and improves ease of use.

CN224519163UActive Publication Date: 2026-07-17SUUNTO SPORTS TECHNOLOGY (DONGGUAN) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUUNTO SPORTS TECHNOLOGY (DONGGUAN) CO LTD
Filing Date
2025-06-19
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In low-light environments, existing sports watches cannot quickly activate the lighting function and require multiple operations on the display screen to achieve this function, making it difficult for users to operate.

Method used

A sports watch was designed that achieves multi-level lighting control by setting a movable shift component and a trigger switch on the casing. The shift component drives the trigger switch to different positions, and the trigger is in different positions to adjust the light intensity of the lighting component.

Benefits of technology

It enables quick activation and adjustment of lighting in low-light environments, meeting the lighting needs of different scenarios and improving ease of use and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a sports watch, which comprises a shell, a gear shifting structure and an illumination assembly. The shell is provided with a receiving cavity. The gear shifting structure comprises a trigger assembly and a gear shifting assembly. The trigger assembly is accommodated in the receiving cavity and comprises a trigger, which comprises a trigger body and a trigger switch movably arranged on the trigger body. Different positions of the trigger switch relative to the trigger body correspond to different gears of the trigger. The gear shifting assembly is connected with the shell and can move relative to the shell. The gear shifting assembly is in contact with the trigger switch and is configured to drive the trigger switch to move to different positions relative to the trigger body when the gear shifting assembly moves, so that the trigger is in different gears. The illumination assembly is connected with the shell and is configured to emit light rays towards the outside of the shell. When the trigger is in different gears, the illumination assembly is turned on or off in response to the different gears of the trigger.
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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, and indoors or outdoors at night without lighting equipment, users have expressed a need for lighting in sports watches.

[0003] In sports watches with lighting functions, users typically turn on the lighting by interacting with the display screen. When using the sports watch in relatively dim environments, users need to tap or swipe the display screen multiple times to activate the lighting function.

[0004] At this time, due to insufficient ambient light, users cannot accurately operate the display screen multiple times. Therefore, sports watches cannot meet users' needs for quickly turning on the lighting function. Utility Model Content

[0005] This application provides a sports watch.

[0006] The sports watch provided in this application includes a housing, a shifting mechanism, and an illumination component. The housing has a receiving cavity. The shifting mechanism includes a trigger component and a shifting component. The trigger component is housed in the receiving cavity and includes a trigger. The trigger includes a trigger body and a trigger switch movably disposed on the trigger body, with different positions of the trigger switch relative to the trigger body corresponding to different positions of the trigger. The shifting component is connected to the housing and is movable relative to the housing. The shifting component contacts the trigger switch and is configured to, when the shifting component moves, drive the trigger switch to move to different positions relative to the trigger body, so that the trigger is in different positions. The illumination component is connected to the housing and is configured to emit light outwards from the housing. Wherein, when the trigger is in different positions, the illumination component is turned on or off in response to the different positions of the trigger.

[0007] In some embodiments, the trigger includes at least three positions; when the shifting component moves, the shifting component drives the trigger switch to move to different positions relative to the trigger body, so that the trigger is in different positions, and when the trigger is in different positions, the lighting component emits light of corresponding light intensity in response to the different positions of the trigger.

[0008] In some embodiments, the sports watch further includes a mating component, which is installed in the receiving cavity and includes a mating portion that is deformable. The shifting assembly includes an operating component and a moving component. The operating component is at least partially received in the receiving cavity. The moving component is received in the receiving cavity and is connected to both the operating component and the mating component. The moving component includes a feedback portion and a linkage portion. The feedback portion engages with the mating portion, and the linkage portion is connected to the trigger switch. When the operating component is subjected to force and moves relative to the housing, the operating component drives the moving component to move relative to the mating component, so that different areas of the feedback portion engage with the mating portion, thereby indicating that the trigger is in the corresponding shift position.

[0009] In some embodiments, the housing has a through hole on its periphery, and the movable member has a receiving groove on the side corresponding to the operating member. The operating member includes an operating part and a transmission part. The operating part is at least partially received within the through hole and is exposed outside the housing. The transmission part passes through the through hole and extends at least partially into the receiving groove, and is connected to the movable member via a limiting component.

[0010] In some embodiments, the movable member is movable along a first direction. The limiting assembly includes a connector and a limiting member. The connector connects the transmission part and the movable member from a second direction perpendicular to the first direction. The limiting member is received within the receiving cavity and abuts against the connector to restrict the movement of the connector in the second direction.

[0011] In some embodiments, the mating member further includes an extension with a perforation and two snap-fit ​​portions. In a first direction, opposite ends of the mating portion are connected to opposite sides of the perforation and protrude relative to the extension in a third direction, the first direction being perpendicular to the third direction. The two snap-fit ​​portions are respectively connected to opposite ends of the extension in the first direction, and each snap-fit ​​portion is provided with an engaging tab configured to deform and engage with the housing.

[0012] In some embodiments, the shifting assembly includes a linkage portion that abuts against the trigger switch. The triggering assembly further includes an elastic element, one end of which is connected to the trigger switch and the other end to the trigger body. When the shifting assembly moves forward in a first direction, the shifting assembly, through the linkage portion, pushes the trigger switch to different positions on the trigger body, thereby gradually increasing or decreasing the gear position of the trigger. When the shifting assembly moves backward in the first direction, the elastic element provides a restoring force for the trigger switch to reset, thereby gradually decreasing or increasing the gear position of the trigger.

[0013] In some embodiments, the shifting assembly includes a linkage part. The linkage part is fixedly connected to the trigger switch. When the shifting assembly moves forward in a first direction, the shifting assembly, through the linkage part, moves the trigger switch to different positions on the trigger body, thereby gradually increasing or decreasing the gear position of the trigger. When the shifting assembly moves backward in the first direction, the shifting assembly, through the linkage part, moves the trigger switch to different positions on the trigger body, thereby gradually decreasing or increasing the gear position of the trigger.

[0014] In some embodiments, the sports watch further includes a mating component, which includes a locking tab for engaging with the housing. The housing includes a main housing body and a secondary housing body. The secondary housing body is connected to the inner periphery of the main housing body, and the secondary housing body and the main housing body form a shifting space. The shifting space is located within the receiving cavity, and the secondary housing body engages with the locking tab to secure the mating component within the shifting space.

[0015] In some embodiments, the triggering component further includes a first circuit board. The first circuit board is located within the accommodating cavity, and the trigger body is disposed on and electrically connected to the first circuit board. The sports watch also includes a main board housed within the accommodating cavity, and the first circuit board is electrically connected to the main board. The peripheral sidewall of the housing is provided with a light-transmitting portion. The lighting component includes a second circuit board and a light-emitting unit. The second circuit board is located within the accommodating cavity and is electrically connected to the main board. The light-emitting unit is disposed on 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.

[0016] In some embodiments, the lighting component and the shifting component are disposed at different locations on the peripheral sidewall of the housing. The sports watch includes a dial and a strap, the dial being mounted on the housing, and the housing being connected to the strap. The peripheral sidewall of the housing includes a strap area for mounting the strap and a non-strap area other than the strap area, the shifting component being disposed in the non-strap area, and the lighting component being disposed in the strap area.

[0017] In some embodiments, the lighting component and the shifting component are disposed at different locations on the peripheral sidewall of the housing. The sports watch includes a dial and a strap, the dial being mounted on the housing, and the housing being connected to the strap. The peripheral sidewall of the housing includes a strap area for mounting the strap and a non-strap area excluding the strap area, the shifting component being disposed in the strap area, and the lighting component being disposed in the strap area.

[0018] In some embodiments, the lighting component and the shifting component are disposed at different locations on the peripheral sidewall of the housing. The sports watch includes a dial and a strap, the dial being mounted on the housing, and the housing being connected to the strap. The peripheral sidewall of the housing includes a strap area for mounting the strap and a non-strap area other than the strap area, the shifting component being disposed in the strap area, and the lighting component being disposed in the non-strap area.

[0019] In some embodiments, the lighting component and the shifting component are disposed at different locations on the peripheral sidewall of the housing. The sports watch includes a dial and a strap, the dial being mounted on the housing, and the housing being connected to the strap. The peripheral sidewall of the housing includes a strap area for mounting the strap and a non-strap area other than the strap area, the shifting component being disposed in the non-strap area, and the lighting component being disposed in the non-strap area.

[0020] In some embodiments, the illumination component and the shifting component are located at different positions on the peripheral sidewall of the housing. The sports watch includes a dial and a strap, the dial being mounted on the housing, and the housing being connected to the strap. The illumination component is located at the 12 o'clock position on the dial, and the shifting component is located at the 3 o'clock or 9 o'clock position on the dial.

[0021] The sports watch provided in this application features a shifting component movably connected to the casing, which contacts a trigger switch. The trigger switch, positioned relative to the trigger body, corresponds to different trigger levels, and these trigger levels correspond to different light intensities from the illumination component. When the user operates the shifting component, it moves the trigger switch relative to the trigger body to different positions, thus activating the trigger at different levels. When the trigger is in different levels, the illumination component emits light of corresponding intensities to provide targeted illumination for different scenarios. Therefore, the sports watch in this application, in addition to turning the illumination function on and off, also has a level adjustment function, allowing for adjustment of the illumination component's light intensity for different usage scenarios.

[0022] Additional aspects and advantages 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 this application. Attached Figure Description

[0023] 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:

[0024] Figure 1 This is a three-dimensional assembly diagram of a sports watch according to some embodiments of this application;

[0025] Figure 2 yes Figure 1 The diagram shown is a 3D exploded view of the sports watch.

[0026] Figure 3 yes Figure 1 The diagram shows a cross-sectional view of the structure of the sports watch as captured by line III-III.

[0027] Figure 4 yes Figure 3 An enlarged view of point IV on the sports watch shown;

[0028] Figure 5 This is a schematic diagram of the trigger component and shifting component in a sports watch according to some embodiments of this application, wherein the sports watch is in the first gear position;

[0029] Figure 6 This is a schematic diagram of the trigger component and shifting component in a sports watch according to some embodiments of this application, wherein the sports watch is in the second gear position;

[0030] Figure 7 This is a schematic diagram of the trigger component and shifting component in a sports watch according to some embodiments of this application, wherein the sports watch is in the third gear position;

[0031] Figure 8 This is a schematic diagram of the structure of a trigger in a sports watch according to some embodiments of this application.

[0032] The reference numerals in the detailed embodiments are as follows:

[0033] Sports watch 100;

[0034] 10 housing; 11 accommodating cavity; 12 through hole; 13 accommodating groove; 14 housing body; 141 light-transmitting part; 15 housing sub-body; 151 shift space; 16 watch strap area; 17 non-watch strap area;

[0035] Trigger component 30; trigger 31; trigger body 311; trigger switch 313; elastic element 315; first circuit board 35;

[0036] Shift assembly 50; Moving part 51; Linkage part 511; Feedback part 513; Operating part 53; Operating part 531; Anti-slip structure 5311; Transmission part 533; Fitting part 55; Fitting part 551; Extension part 553; Through hole 5531; Snap-fit ​​part 555; Snap-fit ​​piece 5551; Limiting assembly 57; Connecting part 571;

[0037] Lighting assembly 70; second circuit board 71; light-emitting unit 73;

[0038] Motherboard 90;

[0039] First direction L; positive direction of the first direction L1; negative direction of the first direction L1; second direction H; third direction W. Detailed Implementation

[0040] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.

[0041] In the description of this application, it should be understood that the terms "center", "length", "upper", "lower", "front", "rear", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are 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. Therefore, they should not be construed as limitations on this application.

[0042] Furthermore, 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. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0043] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0044] In this application, unless otherwise expressly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.

[0045] 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, and indoors or outdoors at night without lighting, users have expressed a need for illumination. In sports watches with illumination functions, users typically activate the light by interacting with the display screen. When using the sports watch in the aforementioned dimly lit scenarios, users need to tap or swipe the display multiple times to activate the illumination function. However, due to insufficient ambient light, users cannot accurately perform multiple operations on the display screen. Therefore, sports watches cannot meet the user's need for quickly activating the illumination function. To solve this problem, this application provides a sports watch (… Figure 1 (As shown).

[0046] Please refer to Figure 1 and Figure 2 The sports watch 100 provided in this application includes a housing 10, a shifting mechanism, and an illumination assembly 70. The housing 10 has a receiving cavity 11. The shifting mechanism includes a trigger assembly 30 and a shifting assembly 50. The trigger assembly 30 is housed in the receiving cavity 11 and includes a trigger 31. The trigger 31 includes a trigger body 311 and a trigger switch 313 movably disposed on the trigger body 311. Different positions of the trigger switch 313 relative to the trigger body 311 correspond to different positions of the trigger 31. The shifting assembly 50 is connected to the housing 10 and is movable relative to the housing 10. The shifting assembly 50 contacts the trigger switch 313 and is configured to, when the shifting assembly 50 moves, drive the trigger switch 313 to move relative to the trigger body 311 to different positions, so that the trigger 31 is in different positions. The illumination assembly 70 is connected to the housing 10 and is configured to emit light outwards from the housing 10. When the trigger 31 is in different positions, the lighting component 70 emits light of corresponding intensity in response to the different positions of the trigger 31.

[0047] Specifically, in the above embodiment, the sports watch 100 has an illumination function. Please refer to further details. Figure 3The sports watch 100 includes a housing 10, a trigger assembly 30, a shift assembly 50, and a lighting assembly 70. The housing 10 is a component in the sports watch 100 used to mount and connect other devices. The housing 10 can be made of, but is not limited to, metal, plastic, or ceramic. When the housing 10 is made of metal, it has high structural strength, is not easily damaged, and has a long service life. When the housing 10 is made of plastic, it is lightweight and has a lower cost. When the housing 10 is made of ceramic, it has high hardness, is not easily deformed, has good corrosion resistance, and a long service life. The housing 10 is provided with a receiving cavity 11. The receiving cavity 11 is a spatial structure that provides mounting space for at least part of the trigger assembly 30 and the shift assembly 50. The receiving cavity 11 is surrounded by the side walls of the housing 10, and the side walls of the housing 10 separate the receiving cavity 11 from the outside of the sports watch 100.

[0048] The trigger component 30 is a component in the sports watch 100 used to trigger the illumination function. The "trigger illumination function" includes, but is not limited to, triggering the illumination component 70 to start the illumination, triggering the illumination component 70 to stop the illumination, and triggering the adjustment of the illumination intensity of the illumination component 70. The trigger component 30 is housed in the receiving cavity 11. Specifically, the trigger component 30 is fixedly connected to the housing 10 (not shown) to fix the position of the trigger component 30 in the receiving cavity 11. The connection between the trigger component 30 and the housing 10 can be detachable or non-detachable. 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. The trigger component 30 includes a trigger 31. The trigger 31 is a device for generating a trigger signal, which is used to trigger the illumination function. Please refer to further details. Figure 8 The trigger 31 includes a trigger body 311 and a trigger switch 313. The trigger switch 313 is a component for receiving external control, and the trigger body 311 is the core component of the trigger 31 that generates a trigger signal in response to the actuation of the trigger switch 313. Specifically, the trigger body 311 and the trigger switch 313 are movably connected, that is, the trigger switch 313 is movably mounted on the trigger body 311. When the trigger switch 313 is in different positions relative to the trigger body 311, the trigger 31 is set to different positions and generates different trigger signals. Therefore, when the trigger switch 313 is moved by force, the trigger 31 will be in different positions.

[0049] The trigger 31 may have, but is not limited to, two, three, or four positions. When the trigger 31 has two positions, the lighting component 70 is turned on or off in response to different positions of the trigger 31; that is, one position of the trigger 31 corresponds to the lighting component 70 being on, and the other position corresponds to the lighting component 70 being off. When the trigger 31 has multiple positions, the lighting component 70 emits light of corresponding light intensities in response to different positions of the trigger 31; that is, one position of the trigger 31 corresponds to the lighting component 70 being on and emits light at a certain light intensity, one position corresponds to the lighting component 70 being off, and the remaining positions correspond to the lighting component 70 emitting light of multiple different light intensities.

[0050] The shifting component 50 is the component in the sports watch 100 that is directly operated by the user to achieve the shifting function. The connection between the shifting component 50 and the housing 10 is a movable connection, meaning that the shifting component 50 can move relative to the housing 10 to achieve the shifting function when subjected to force from the user. Within the receiving cavity 11, the shifting component 50 contacts the trigger switch 313. The shifting component 50 and the trigger switch 313 may have one corresponding contact point, or multiple corresponding contact points (in this application, "multiple" refers to more than one, and may include, but is not limited to, two, three, or four points). The contact method between the shifting component 50 and the trigger switch 313 can be line contact or surface contact. When the shifting component 50 and the trigger switch 313 are in line contact, the contact points between the shifting component 50 and the trigger switch 313 can be set smaller, simplifying the structure of the sports watch 100. When the shifting component 50 and the trigger switch 313 are in surface contact, the movement of the trigger switch 313 by the shifting component 50 is more stable. When the shift assembly 50 is moved by force, it causes the trigger switch 313 to move relative to the trigger body 311 to different positions on the trigger body 311. When the trigger switch 313 is in different positions relative to the trigger body 311, the trigger 31 is in different gears. Each gear corresponds one-to-one with each position of the trigger switch 313.

[0051] The illumination component 70 is a component used for illumination in the sports watch 100. The illumination component 70 is housed within the receiving cavity 11 and connected to the housing 10. The connection between the illumination component 70 and the housing 10 can be detachable or non-detachable. 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. The illumination component 70 is configured to emit light towards the outside of the housing 10. The light emitted by the illumination component 70 passes through the housing 10 and illuminates at least a portion of the exterior of the sports watch 100. Specifically, when the shift component 50 moves the trigger switch 313 relative to the trigger body 311 to different positions on the trigger body 311, i.e., when the trigger 31 is in different positions, the illumination component 70 will emit light of corresponding intensity in response to the different positions of the trigger. Please refer to the following for details. Figures 5 to 7 For example, when the trigger 31 is in the first position, the lighting component 70 does not work, that is, the lighting component 70 does not emit light, which can be understood as the light intensity of the lighting component 70 being 0; when the trigger 31 is in the second position, the lighting component 70 works, that is, the lighting component 70 emits light, and the light intensity of the lighting component 70 is the first light intensity value, for example, the light intensity emitted by the lighting component 70 is 1000 cd; when the trigger 31 is in the third position, the lighting component 70 works, that is, the lighting component 70 emits light, and the light intensity of the lighting component 70 is the second light intensity value, which is greater than the first light intensity value, for example, the light intensity emitted by the lighting component 70 is 2000 cd.

[0052] The sports watch 100 provided in this application is equipped with a shift component 50 movably connected to the housing 10, which is in contact with a trigger switch 313. The trigger switch 313, when in different positions relative to the trigger body 311, corresponds to different light levels of the trigger 31, and these different light levels of the trigger 31 correspond to different light intensities of the illumination component 70. When the user operates the shift component 50, it moves the trigger switch 313 to different positions relative to the trigger body 311, thus placing the trigger 31 in different light levels. When the trigger 31 is in different light levels, the illumination component 70 responds to these different light levels by emitting light of corresponding intensities to provide targeted illumination for different scenarios. Therefore, the sports watch 100 in this application, in addition to being able to turn the illumination function on and off, also has a light level adjustment function, allowing for adjustment of the light intensity of the illumination component 70 for different usage scenarios.

[0053] Please refer to Figure 2 and Figure 8In some embodiments, the shift assembly 50 includes a linkage part 511 that abuts against the trigger switch 313. The trigger assembly 30 also includes an elastic member 315, one end of which is connected to the trigger switch 313, and the other end is connected to the trigger body 311. When the shift assembly 50 moves in the forward direction L1 of the first direction, the shift assembly 50 pushes the trigger switch 313 to switch to different positions on the trigger body 311 via the linkage part 511, so that the gear of the trigger 31 gradually increases or decreases. When the shift assembly 50 moves in the reverse direction L2 of the first direction, the elastic member 315 provides an elastic restoring force for the reset of the trigger switch 313, so that the gear of the trigger 31 gradually decreases or increases.

[0054] Specifically, in the above embodiment, the linkage 511 is a component in the shift assembly 50 that contacts the trigger switch 313. The linkage 511 is housed within the receiving cavity 11 and configured to abut against the trigger switch 313. Therefore, when the shift assembly 50 is moved by force, the linkage 511, through its abutment against the trigger switch 313, causes the shift assembly 50 to push the trigger switch 313 to different positions relative to the trigger body 311. The linkage 511 and the trigger switch 313 can be in contact.

[0055] The elastic element 315 is a device in the trigger assembly 30 used to provide elastic restoring force for the reset of the trigger switch 313. The elastic element 315 can be, but is not limited to, a combination of one or more springs, leaf springs, and rubber elastic elements. When the elastic element 315 is a spring, it has the advantages of simple structure and low cost. When the elastic element 315 is a leaf spring, it has the advantage of high load-bearing capacity. When the elastic element 315 is a rubber elastic element, it has the advantages of wear resistance and corrosion resistance. One end of the elastic element 315 is connected to the trigger switch 313, and the other end is connected to the trigger body 311. The connection between the elastic element 315 and the trigger switch 313 can be an abutment connection or a fixed connection. When the elastic element 315 is fixedly connected to the trigger switch 313, the connection method 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-removable connections include, but are not limited to, one or more combinations of methods such as gluing, welding, and sintering. The connection between the elastic element 315 and the trigger body 311 can be an abutment connection or a fixed connection. When the elastic element 315 and the trigger body 311 are fixedly connected, the connection method can be either a detachable connection or a non-removable connection. Detachable connections include, but are not limited to, one or more combinations of methods such as screw connections and snap-fit ​​connections. Non-removable connections include, but are not limited to, one or more combinations of methods such as gluing, welding, and sintering.

[0056] When the shift assembly 50 is subjected to force and moves in the positive direction L1 of the first direction (in this application, the direction of movement of the shift assembly 50 is taken as the first direction L, where the direction in which the elastic member 315 is compressed is taken as the positive direction L1 of the first direction, and the opposite direction of the positive direction L1 of the first direction is taken as the negative direction L2 of the first direction), the shift assembly 50 transmits force to the trigger switch 313 through the contact between the linkage part 511 and the trigger switch 313. At this time, the trigger switch 313 moves to different positions on the trigger body 311 under the drive of the linkage part 511, and the elastic member 315 is compressed, and the elastic member 315 has a spring force in the negative direction L2 of the first direction. In the above process, the different positions of the trigger switch 313 distributed sequentially in the positive direction L1 of the first direction correspond to the gradual increase or decrease of the gear of the trigger 31.

[0057] In some embodiments, the trigger switch 313 is sequentially located at the first, second, and third positions distributed along the positive direction L1 in the first direction, corresponding to the trigger 31 being in the first, second, and third positions, respectively. Figures 5 to 7 As shown. At this time, the intensity of the trigger 31 gradually increases, that is, the light intensity emitted by the lighting component 70 is successively: no light, weak light, and strong light. In some other embodiments, the trigger switch 313 is sequentially located at the first, second, and third positions distributed sequentially on the positive L1 of the first direction, corresponding to the trigger 31 being in the first, second, and third intensity positions, as shown. Figures 5 to 7 As shown. At this time, the intensity of the trigger 31 gradually decreases, that is, the light intensity emitted by the illumination component 70 is successively: strong light, weak light and no light. This application only uses the sports watch 100 with three intensity levels as an example to illustrate the intensity switching function. The intensity levels can be, but are not limited to, two, three, four, five, six or more, etc.

[0058] When the force on the shift assembly 50 is removed, the elastic restoring force of the elastic member 315 causes the trigger switch 313 to move in the opposite direction L2 of the first direction and reset. During the reset process of the trigger switch 313, the trigger switch 313 transmits the elastic restoring force of the elastic member 315 to the shift assembly 50 through the linkage part 511, thereby causing the shift assembly 50 to be subjected to force and reset.

[0059] During the reset process of trigger switch 313, trigger switch 313 is sequentially located at the first, second, and third positions distributed on the reverse L2 in the first direction, corresponding to the trigger 31 being in the third, second, and first positions, respectively. Figures 5 to 7 As shown, and please reverse from... Figure 7 Reference Figure 5At this time, the intensity of the trigger 31 gradually decreases, meaning the light intensity emitted by the lighting component 70 is successively: strong light, weak light, and no light. In other embodiments, the trigger switch 313 is sequentially located at the first, second, and third positions distributed on the reverse L2 of the first direction, corresponding to the trigger 31 being in the third, second, and first positions, respectively. Figures 5 to 7 As shown, and please reverse from... Figure 7 Reference Figure 5 At this time, the intensity of the trigger 31 gradually increases, meaning the light intensity emitted by the illumination component 70 successively changes from no light to weak light to strong light. Therefore, the linkage 511 contacts the trigger switch 313, and the elastic element 315 provides elastic restoring force for the trigger switch 313 to reset. The trigger 31 can switch between gradually increasing and decreasing intensity levels with the cooperation of the linkage 511, the trigger switch 313, and the elastic element 315, making the illumination intensity of the sports watch 100 adjustable.

[0060] Please refer to Figure 2 In other embodiments, the shift assembly 50 includes a linkage part 511, which is fixedly connected to the trigger switch 313. When the shift assembly 50 moves in the forward direction L1 of the first direction, the shift assembly 50 drives the trigger switch 313 to move to different positions on the trigger body 311 via the linkage part 511, so that the gear position of the trigger 31 gradually increases or decreases. When the shift assembly 50 moves in the reverse direction L2 of the first direction, the shift assembly 50 drives the trigger switch 313 to move to different positions on the trigger body 311 via the linkage part 511, so that the gear position of the trigger 31 gradually decreases or increases.

[0061] Specifically, in the above embodiment, the linkage part 511 is a component in the shift assembly 50 that contacts the trigger switch 313. The linkage part 511 is housed within the receiving cavity 11 and configured to connect with the trigger switch 313. Therefore, when the shift assembly 50 is subjected to force and moves, the linkage part 511 drives the trigger switch 313 to move, thereby enabling the shift assembly 50 to move the trigger switch 313 relative to the trigger body 311 to different positions. The fixed connection between the linkage part 511 and the trigger switch 313 includes: the linkage part 511 clamping the trigger switch 313; the linkage part 511 and the trigger switch 313 being connected in a detachable manner via screws, snap-fitting, or other similar methods; and the linkage part 511 and the trigger switch 313 being connected in a non-detachable manner via welding, gluing, or other similar methods.

[0062] When the shift assembly 50 is subjected to force and moves along the positive direction L1 in the first direction, the linkage 511 and the trigger switch 313 move together along the positive direction L1 in the first direction. During the above process, the different positions of the trigger switch 313 distributed sequentially along the positive direction L1 in the first direction correspond to the gradual increase or decrease of the gear position of the trigger 31.

[0063] In some embodiments, the trigger switch 313 is sequentially located at the first, second, and third positions distributed along the positive direction L1 in the first direction, corresponding to the trigger 31 being in the first, second, and third positions, respectively. Figures 5 to 7 As shown. At this time, the intensity of the trigger 31 gradually increases, that is, the light intensity emitted by the lighting component 70 is successively: no light, weak light, and strong light. In some other embodiments, the trigger switch 313 is sequentially located at the first, second, and third positions distributed sequentially on the positive L1 of the first direction, corresponding to the trigger 31 being in the first, second, and third intensity positions, as shown. Figures 5 to 7 As shown. At this time, the level of trigger 31 gradually decreases, that is, the light intensity emitted by the lighting component 70 is successively: strong light, weak light and no light.

[0064] When the shift assembly 50 is subjected to force and moves in the opposite direction L2 of the first direction, the linkage 511 and the trigger switch 313 move together in the opposite direction L2 of the first direction. During the above process, the different positions of the trigger switch 313 distributed sequentially in the opposite direction L2 of the first direction correspond to the gradual increase or decrease of the gear position of the trigger 31.

[0065] In some embodiments, the trigger switch 313 is sequentially located at the first, second, and third positions distributed along the reverse L2 of the first direction, corresponding to the trigger 31 being in the third, second, and first positions, respectively. Figures 5 to 7 As shown, and please reverse from... Figure 7 Reference Figure 5 At this time, the intensity of the trigger 31 gradually decreases, meaning the light intensity emitted by the lighting component 70 is successively: strong light, weak light, and no light. In other embodiments, the trigger switch 313 is sequentially located at the first, second, and third positions distributed on the reverse L2 of the first direction, corresponding to the trigger 31 being in the third, second, and first positions, respectively. Figures 5 to 7 As shown, and please reverse from... Figure 7 Reference Figure 5 At this time, the intensity of the trigger 31 gradually increases, meaning the light intensity emitted by the illumination component 70 successively changes from no light to weak light to strong light. Therefore, the linkage 511 and the trigger switch 313 are fixedly connected and can move synchronously together. The trigger 31 can switch between gradually increasing and gradually decreasing intensity levels with the cooperation of the linkage 511 and the trigger switch 313, making the illumination intensity of the sports watch 100 adjustable.

[0066] Please refer to Figure 3 and Figure 4In some embodiments, the sports watch 100 further includes a mating member 55, which is installed in the receiving cavity 11 and includes a mating portion 551, which is deformable. The shifting assembly 50 includes an operating member 53 and a moving member 51. The operating member 53 is at least partially received in the receiving cavity 11. The moving member 51 is received in the receiving cavity 11 and is connected to the operating member 53 and the mating member 55, respectively. The moving member 51 includes a feedback portion 513 and a linkage portion 511. The feedback portion 513 engages with the mating portion 551, and the linkage portion 511 is connected to the trigger switch 313. When the operating member 53 is subjected to force and moves relative to the housing 10, the operating member 53 drives the moving member 51 to move relative to the mating member 55, so that different areas of the feedback portion 513 engage with the mating portion 551, and the feedback trigger 31 is in the corresponding gear position.

[0067] Specifically, in the above embodiment, the operating element 53 is a device directly operated by the user when shifting gears on the sports watch 100. The material of the operating element 53 may be, but is not limited to, rubber, metal, and plastic. When the operating element 53 is made of rubber, it provides a good tactile feel and is non-slip and wear-resistant. When the operating element 53 is made of metal, it has high strength and durability. When the operating element 53 is made of plastic, it is lightweight and low-cost. At least a portion of the operating element 53 is housed in the receiving cavity 11. Specifically, please refer to further... Figure 1 One part of the operating element 53 is located inside the accommodating cavity 11 and cooperates with other devices, while another part of the operating element 53 protrudes from the housing 10 to indicate the operating position to the user.

[0068] The mating component 55 is a device that mates with the movable component 51 and restricts the position of the movable component 51 in the first direction L. The mating component 55 is installed in the receiving cavity 11, and its installation position within the cavity 11 is fixed to ensure stable relative movement between the movable component 51 and the mating component 55. The mating component 55 includes a mating portion 551, which is a specific part for mates with the movable component 51. The mating portion 551 can deform; specifically, the deformation of the mating portion 551 is elastic deformation. The material of the movable component 51 can be, but is not limited to, metal or non-metal. When the movable component 51 is made of metal, it has high strength and durability. When the movable component 51 is made of non-metal, it offers the advantages of adjustable performance and high flexibility.

[0069] The movable element 51 is a device that causes the trigger 31 to generate a trigger signal by moving. The movable element 51 is housed within the receiving cavity 11 and is connected to both the operating element 53 and the mating element 55. The connection between the movable element 51 and the operating element 53 can be detachable or non-detachable. 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. The connection between the movable element 51 and the mating element 55 is a movable connection. The movable element 51 includes a feedback part 513 and a linkage part 511. The feedback part 513 is a component in the movable element 51 that mates with the mating part 551. The feedback part 513 mates with the mating part 551 so that the movable element 51 has multiple fixed positions relative to the housing 10 and can switch between different positions. In some embodiments, the feedback part 513 includes multiple sequentially connected grooves and protrusions, and the mating part 551 is a protrusion whose size is adapted to the grooves in the feedback part 513. At this time, the mating part 551 can sequentially engage with the groove and protrusion in the feedback part 513. When the mating part 551 engages with the groove, the position of the moving member 51 is fixed, and the trigger 31 remains in the corresponding gear position. When the moving member 51 moves relative to the mating part 55, causing the mating part 551 to move from one groove over the protrusion and engage with another adjacent groove, the feedback part 513 will provide feedback on this process to the operator, allowing the operator to perceive the progress of gear shifting. In some embodiments, the mating part 551 includes multiple grooves and protrusions connected in sequence, and the feedback part 513 is a protrusion whose size is adapted to the groove in the mating part 551. At this time, the feedback unit 513 can sequentially engage with the groove and protrusion in the mating part 551. When the feedback unit 513 engages with the protrusion, the position of the moving part 51 is fixed and the trigger 31 remains in the corresponding gear position. When the moving part 51 moves relative to the mating part 55, causing the feedback unit 513 to move from one groove over the protrusion and engage with another adjacent groove, the feedback unit 513 will feed this process back to the operator, allowing the operator to perceive the progress of gear switching.

[0070] The linkage 511 is a component on the movable member 51 that is connected to the trigger switch 313 and drives the trigger switch 313 and the movable member 51 to move together. When the operating member 53 is subjected to force and moves relative to the housing 10 along the first direction L, the operating member 53 drives the movable member 51 and the operating member 51 to move together through its connection with the movable member 51. At this time, the movable member 51 moves relative to the mating member 55, and the mating part 551 undergoes elastic deformation so that different areas of the feedback part 513 engage with the mating part 551. When the mating part 551 switches between engaging with different areas of the feedback part 513, the user will feel the force generated by the pressing of the mating part 551 and the feedback part 513 and obtain tactile feedback. At the same time, the movable member 51 drives the trigger switch 313 to move and makes the trigger switch 313 occupy different positions relative to the trigger body 311, that is, the trigger 31 is in the corresponding position. The movement of the operating element 53 is converted into the movement of the moving element 51, and further into the movement of the trigger switch 313 relative to the trigger body 311. The cooperating element 55 enables the moving element 51 to have a specific position in the first direction L and provides tactile feedback to the user. At this time, the sports watch 100 can realize the adjustable lighting function, and the switching process is accompanied by tactile feedback.

[0071] Please refer to Figure 2 and Figure 4 In some embodiments, the housing 10 has a through hole 12 on its periphery, and the moving member 51 has a receiving groove 13 on the side corresponding to the operating member 53. The operating member 53 includes an operating part 531 and a transmission part 533. The operating part 531 is at least partially received in the through hole 12 and is exposed outside the housing 10. The transmission part 533 passes through the through hole 12 and at least partially extends into the receiving groove 13, and is connected to the moving member 51 through a limiting component 57.

[0072] Specifically, in the above embodiment, the through hole 12 is a spatial structure for mounting the operating member 53. The cross-section of the through hole 12 may be, but is not limited to, circular, elliptical, square, near-circular, near-elliptical, or other polygonal shapes, and the size and shape of the through hole 12 need to be adapted to the size and shape of the operating member 53. The receiving groove 13 is a spatial structure for providing space for the connection between the transmission part 533 and the moving part 51. The receiving groove 13 may be, but is not limited to, a rectangular groove, a U-shaped groove, a V-shaped groove, and an irregular groove (the shape of the longitudinal section obtained by the plane passing through the first direction L).

[0073] The operating component 53 includes an operating part 531 and a transmission part 533. The operating part 531 is the part directly operated by the user when switching gears on the sports watch 100. In some embodiments, an anti-slip structure 5311 is provided on the side of the operating part 531 away from the housing 10. The anti-slip structure 5311 is the structure that the user directly contacts when operating the operating part 531. The anti-slip structure 5311 can provide friction for the user when sliding the operating part 531, preventing slippage. At the same time, the anti-slip structure 5311 can provide tactile feedback when the user slides the operating part 531, helping the user to perceive the progress of the gear switching operation.

[0074] The transmission part 533 extends from the operation part 531 in a third direction W. In two directions perpendicular to and mutually perpendicular to the first direction L, the thickness direction of the sports watch 100 is defined as the second direction H, and the other direction is defined as the third direction W. The transmission part 533 is a component used to connect the operation part 53 and the moving part 51 and transmit the movement of the operation part 53 to the moving part 51. The transmission part 533 and the moving part 51 can be integrally formed or separately formed. When the transmission part 533 and the moving part 51 are separately formed, the connection method between the transmission part 533 and the moving part 51 can be a detachable connection or a non-detachable connection. Detachable connections include, but are not limited to, one or more combinations of methods such as screw connections and snap-fit ​​connections. Non-detachable connections include, but are not limited to, one or more combinations of methods such as gluing, welding, and sintering. When the transmission part 533 and the moving part 51 are separately formed, that is, the transmission part 533 and the moving part 51 are two separate components, it is convenient to subsequently install them into the housing 10.

[0075] Please combine Figure 1 At least a portion of the operating part 531 is housed within the through hole 12, and the size and shape of the portion of the operating part 531 housed within the through hole 12 match the size and shape of the through hole 12. Simultaneously, at least a portion of the operating part 531 is exposed outside the housing 10, making gear shifting easier for the user and serving as a marker of the position of the operating member 53. The transmission part 533 passes through the through hole 12, where the size of the through hole 12 is larger than the size of the projection plane of the transmission part 533 in the plane perpendicular to the third third direction W, allowing the transmission part 533 to move relative to the housing 10 in the first direction L while passing through the through hole 12. At least a portion of the transmission part 533 extends into the receiving groove 13, specifically, the end of the transmission part 533 away from the operating part 531 extends into the receiving groove 13 to connect with the moving member 51. The limiting component 57 is a structure that limits the connection relationship and position of the transmission part 533 and the moving member 51. Please refer to... Figure 5The limiting component 57 can be used to limit the relative movement of the transmission part 533 and the moving part 51 in the first direction L, the second direction H, and the third direction W. At this time, the limiting component 57 makes the connection between the operating part 53 and the moving part 51 tighter. The operating part 53 transmits the user's movement of the operating part 53 in the first direction L to the moving part 51 through the interconnected operating part 531 and transmission part 533, and then realizes the gear switching function through the cooperation of the moving part 51 and the trigger switch 313.

[0076] Please refer to Figure 2 In some embodiments, the movable member 51 moves along a first direction L. The limiting assembly 57 includes a connector 571 and a limiting member. The connector 571 connects the transmission part 533 and the movable member 51 in a second direction H, which is perpendicular to the first direction L. The limiting member is received within the receiving cavity 11 and abuts against the connector 571 to restrict the movement of the connector 571 in the second direction H.

[0077] Specifically, in the above embodiment, the connector 571 is a device that connects the transmission part 533 and the moving part 51. In the second direction H, the transmission part 533 and the moving part 51 are provided with a structure that mates with the connector 571; this application uses an insertion hole as an example. Therefore, the connector 571 is inserted from the second direction H and connects the transmission part 533 and the moving part 51, allowing the moving part 51 to move together with the operating part 53. The connector 571 is typically made of metal to ensure high strength and durability. At this time, the use of the connector 571 eliminates the need for a dedicated connection step between the moving part 51 and the operating part 53; only the connector 571 needs to be inserted in the second direction H, simplifying the installation process of the sports watch 100. A limiting member (not shown) is a device that limits the position of the connector 571 within the receiving cavity 11. For example, the limiting member can be a baffle. The limiting member is housed in the receiving cavity 11 and is configured to abut against the connector 571 in the second direction H. In the event that the connecting member 571 becomes detached from the transmission part 533 and the moving part 51, the limiting member can restrict the movement of the connecting member 571 in the second direction H, thus preventing unreliable connection between the transmission part 533 and the moving part 51. It should be noted that the limiting member's restriction on the movement of the connecting member 571 in the second direction H does not affect the movement of the shift assembly 50 in the first direction L.

[0078] Please refer to Figure 2 and Figure 3In some embodiments, the mating member 55 further includes an extension 553 with a through hole 5531 and two snap-fit ​​portions 555. In a first direction L, the opposite ends of the mating portion 551 are connected to opposite sides of the through hole 5531, and protrude relative to the extension 553 in a third direction W, where the first direction L is perpendicular to the third direction W. The two snap-fit ​​portions 555 are respectively connected to the opposite ends of the extension 553 in the first direction L. Each snap-fit ​​portion 555 has a snap-fit ​​tab 5551, which is configured to deform to engage with the housing 10.

[0079] Specifically, in the above embodiment, the extension 553 is a component connecting the mating part 551 and the snap-fit ​​part 555. The extension 553 is provided with a through hole 5531, which is a spatial structure for connecting the mating part 551 and providing deformation space for it. The size and shape of the through hole 5531 are adapted to the size and shape of the mating part 551. The opposite ends of the mating part 551 are connected to the opposite sides of the through hole 5531 in a first direction L, so that the setting direction of the mating part 55 is the first direction L. The mating part 551 and the extension 553 can be integrally formed or separately formed. When the mating part 551 and the extension 553 are separately formed, the connection method between the mating part 551 and the extension 553 can be a detachable connection or a non-detachable connection. Detachable connections include, but are not limited to, one or more combinations of methods such as screw connection and snap-fit ​​connection. Non-detachable connections include, but are not limited to, one or more combinations of methods such as gluing, welding, and sintering. At this time, the force exerted on the mating part 55 by the feedback part 513 is consistent with the setting direction of the mating part 55, resulting in good stability and durability of the mating part 55. The mating part 551 protrudes relative to the extension part 553 in the third direction W, that is, the mating part 551 is a protruding structure of the mating part 55 in the third direction W. Therefore, the mating part 551 can mate with the groove structure of the feedback part 513.

[0080] The snap-fit ​​portion 555 is a component used to connect the mating part 55 to the housing 10. Two or more snap-fit ​​portions 555 are used to achieve a stable connection with the housing 10. This application uses two snap-fit ​​portions 555 as an example. The two snap-fit ​​portions 555 are respectively connected to the opposite ends of the extension portion 553 in the first direction L. The snap-fit ​​portion 555 and the extension portion 553 can be integrally formed or separately formed. When the snap-fit ​​portion 555 and the extension portion 553 are separately formed, the connection method between the snap-fit ​​portion 555 and the extension portion 553 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. The snap-fit ​​portion 555 is provided with a snap-fit ​​piece 5551. The snap-fit ​​piece 5551 is a structure used to snap with the housing 10 to fix the mating part 55 within the receiving cavity 11. The locking tab 5551 is configured to be deformable; specifically, the locking tab 5551 can deform in the mounting direction to change the spatial dimension occupied by the latching portion 555 in the mounting direction. Therefore, after the latching portion 555 is installed, the degree of deformation of the locking tab 5551 is limited, and it engages with the housing 10. The mating part 55 can be directly installed in the housing 10 by a snap-fit ​​method using the above structure, simplifying the installation process of the mating part 55. At the same time, because the locking tab 5551 can deform, the mating part 55 can be easily replaced or reused, reducing the production cost of the sports watch 100.

[0081] Please refer to Figure 2 and Figure 3 In some embodiments, the housing 10 includes a housing body 14 and a housing sub-body 15. The housing sub-body 15 is connected to the inner peripheral side of the housing body 14, and the housing sub-body 15 and the housing body 14 form a shifting space 151. The shifting space 151 is located within the receiving cavity 11, and the housing sub-body 15 engages with the engaging tab 5551 to fix the mating member 55 within the shifting space 151.

[0082] Specifically, in the above embodiments, the housing body 14 is a structure that loads and connects other devices and forms the accommodating cavity 11. The material of the housing body 14 can be, but is not limited to, metal, plastic, or ceramic. When the housing body 14 is made of metal, it has high structural strength, is not easily damaged, and has a long service life. When the housing body 14 is made of plastic, it is lightweight and has a low cost. When the housing body 14 is made of ceramic, it has high hardness, is not easily deformed, has good corrosion resistance, and has a long service life.

[0083] The housing 15 is a structure that mounts and connects at least a portion of the shift assembly 50. The housing 15 can be made of, but is not limited to, metal, plastic, or ceramic. When the housing 15 is made of metal, it has high structural strength, is not easily damaged, and has a long service life. When the housing 15 is made of plastic, it is lightweight and has a lower cost. When the housing 15 is made of ceramic, it has high hardness, is not easily deformed, has good corrosion resistance, and a long service life. The housing 15 can be made of the same material as the housing body 14, making the connection between the housing body 14 and the housing 15 easier to achieve. The housing 15 can also be made of a different material than the housing body 14, allowing for more flexible material selection to suit different application scenarios. For example, the housing body 14 can be made of a harder material to give the sports watch 100 better strength, while the housing 15 can be made of a lower-cost material to reduce costs.

[0084] The main body 14 is connected to the secondary body 15 via its inner circumference, together forming a shifting space 151. The main body 14 and the secondary body 15 can be integrally formed or separately formed. When the main body 14 and the secondary body 15 are separately formed, the connection between them can be detachable or non-detachable. 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. The shifting space 151 is a spatial structure that accommodates at least a portion of the shifting assembly 50. The shifting space 151 is located within the accommodating cavity 11 and is separated from other parts of the accommodating cavity 11 by the secondary body 15 to ensure that shifting operations do not interfere with other functional devices or the connections between other functional devices. Meanwhile, the housing 15 is provided with a structure that engages with the engaging tab 5551. The engaging tab 5551 fixes the mating part 55 within the shift space 151 by engaging with the housing 15. The housing 15 divides at least a portion of the receiving cavity 11 (i.e., the shift space 151) to accommodate at least a portion of the structure of the shift assembly 50. In this case, the movement of the shift assembly 50 will not interfere with other devices. In addition, the housing 15 also connects the mating part 55 to the housing 10, allowing the shift assembly 50 to be positioned at the corresponding location within the receiving cavity 11.

[0085] Please refer to Figure 2In some embodiments, the trigger assembly 30 further includes a first circuit board 35. The first circuit board 35 is located within the receiving cavity 11, and the trigger body 311 is disposed on and electrically connected to the first circuit board 35. The sports watch 100 also includes a main board 90 housed within the receiving cavity 11, and the first circuit board 35 is electrically connected to the main board 90. The peripheral sidewall of the housing 10 is provided with a light-transmitting portion 141. The illumination assembly 70 includes a second circuit board 71 and a light-emitting unit 73. The second circuit board 71 is located within the receiving cavity 11 and is electrically connected to the main board 90. The light-emitting unit 73 is disposed on and electrically connected to the second circuit board 71. The light-emitting unit 73 corresponds to the light-transmitting portion 141, and the light emitted by the light-emitting unit 73 is transmitted to the outside of the housing 10 through the light-transmitting portion 141.

[0086] Specifically, in the above embodiment, the first circuit board 35 is a device that transmits the signal generated by the trigger 31 to the main board 90. For example, the first circuit board 35 is a reinforced flexible printed circuit (FPC). The first circuit board 35 is disposed in the accommodating cavity 11 through connection with other devices in the accommodating cavity 11 and is fixed in position relative to the accommodating cavity 11. The trigger body 311 is disposed on the first circuit board 35 and electrically connected to the first circuit board 35. The trigger body 311 and the first circuit board 35 can be fixedly mounted to each other. The sports watch 100 also includes a main board 90. The main board 90 is a device that receives signals, processes signals, and issues control commands. For example, the main board 90 is a printed circuit board (PCB). The main board 90 is housed in the accommodating cavity 11 and electrically connected to the first circuit board 35. Therefore, the first circuit board 35 can transmit the trigger signal generated by the trigger 31 to the main board 90, and the main board 90 then controls the sports watch 100 to respond to the lighting function according to the trigger signal, such as the main board 90 controlling the light intensity of the lighting component 70 to adjust in this application.

[0087] The light-transmitting part 141 is a component on the housing 10 that allows light to pass through, enabling the light emitted by the illumination component 70 to reach the outside of the sports watch 100. The material of the light-transmitting part 141 can be a light-transmitting material; specifically, it can be, but is not limited to, glass, acrylic, and plastic. When the light-transmitting part 141 is made of glass, it has the advantages of high light transmittance and corrosion resistance; when it is made of acrylic, it has the advantages of light transmittance close to that of glass and ease of processing; when it is made of plastic, it has the advantages of light weight and lower cost. The light-transmitting part 141 and the housing 10 can be integrally formed or separately formed. When the light-transmitting part 141 and the housing 10 are integrally formed, the housing 10 has better water resistance. When the light-transmitting part 141 and the housing 10 are separately formed, the connection between the light-transmitting part 141 and the housing 10 can be detachable or non-detachable. 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.

[0088] The lighting assembly 70 includes a second circuit board 71 and a light-emitting unit 73. The second circuit board 71 is electrically connected to the main board 90 to control devices of the lighting assembly 70; for example, the second circuit board 71 is a reinforced flexible printed circuit (FPC). The second circuit board 71 is disposed within the accommodating cavity 11 through connection with other devices within the accommodating cavity 11 and is fixed in position relative to the accommodating cavity 11. The second circuit board 71 is electrically connected to the main board 90. The light-emitting unit 73 is a device for emitting light. For example, the light-emitting unit 73 includes one or more light-emitting diodes. In this case, the light-emitting unit 73 has the advantages of miniaturization, high brightness, and low power consumption, making it very suitable for the watch in the example of this application. The light-emitting unit 73 is disposed on and electrically connected to the second circuit board 71. The light-emitting unit 73 and the second circuit board 71 can be fixedly mounted to each other. In the third direction W, the position of the light-emitting unit 73 corresponds to the position of the light-transmitting part 141, thereby maximizing the transmission of light emitted by the light-emitting unit 73 to the outside of the housing 10 through the light-transmitting part 141. Therefore, when the user turns on the lighting function of the sports watch 100, the light emitted by the lighting component 70 is transmitted to the outside of the housing 10 through the light-transmitting part 141 to illuminate at least a part of the environment in which the user is located.

[0089] Please refer to Figure 2 and Figure 3In some embodiments, the lighting component 70 and the shift component 50 are disposed at different positions on the peripheral sidewall of the housing 10. Specifically, since the user's hand may touch or block the housing 10 within a certain area around the shift component 50 when operating the shift component 50 to turn the lighting component 70 on, off, or adjust the light intensity, disposing the lighting component 70 and the shift component 50 at different positions on the peripheral sidewall of the housing 10 can prevent the user from blocking the light emitted by the lighting component 70 when operating the shift component 50, thus avoiding poor lighting.

[0090] Please refer to Figure 2 and Figure 3 In some embodiments, the sports watch 100 includes a dial and a strap. The dial is mounted on a housing 10, and the housing 10 is connected to the strap. The peripheral sidewalls of the housing 10 include a strap area 16 for mounting the strap and a non-strap area 17 excluding the strap area 16. A shift assembly 50 is disposed in the non-strap area 17, and an illumination assembly 70 is disposed in the strap area 16.

[0091] Specifically, in the above embodiment, the watch strap (not shown; this application only shows the position for strap installation on the housing 10) is a device used by the user to connect with the user when wearing the sports watch 100. The watch strap is connected to the housing 10 through two strap mounting positions to enable the user to wear the sports watch 100. The dial (not shown) is a device used to directly obtain information from the sports watch 100; for example, the dial can be a traditional graduated dial. The dial is mounted on the housing 10, specifically on the end face of the housing 10 in the second direction H. If the dial is a traditional graduated dial, the clock markings on the dial correspond to the strap mounting positions; for example, the 12 o'clock and 6 o'clock positions on the dial correspond to the two strap mounting positions respectively. If the dial is a non-gradient dial, the user typically observes the dial to read the time in the direction of the extension of the watch strap, which is also the direction of the line connecting the two strap mounting positions. Depending on the location of the watch strap, the peripheral wall of the housing 10 can be divided into two areas: the watch strap area 16 where the watch strap is installed and the non-watch strap area 17 excluding the watch strap area 16. In some embodiments, the shift mechanism 50 is located in the non-watch strap area 17, and the illumination component 70 is located in the watch strap area 16. In this case, the user operates the shift mechanism 50 in the non-watch strap area 17 to allow light to be emitted from the watch strap area 16. In this configuration, the user's arm is perpendicular to the direction of light emission, which is more in line with the usage habits of most users.

[0092] In some embodiments, the shifting component 50 is located in the strap area 16, and the illumination component 70 is located in the non-strap area 17. In this case, the user operates the shifting component 50 in the strap area 16 to allow light to be emitted from the non-strap area 17. In this setting mode, the direction of the user's arm is the direction of light emission. In this case, the sports watch 100 is suitable for areas that require illumination where the user cannot directly enter by walking in. In this case, the user can extend their arm to allow the light to enter the area to be illuminated more effectively.

[0093] In some other embodiments, the shift assembly 50 is located in the strap area 16, and the illumination assembly 70 is located in the strap area 16. In this case, the user operates the shift assembly 50 in the strap area 16 to emit light from the strap area 16. In this configuration, the user's arm is perpendicular to the direction of light emission. The only difference from the first embodiment is the part of the device operated by the user, which is also more in line with the usage habits of most users.

[0094] In some embodiments, the shifting component 50 and the illumination component 70 are both located in the non-strap area 17. In this case, the user operates the shifting component 50 in the strap area 16 to allow light to exit from the non-strap area 17. In this configuration, the user's arm direction corresponds to the light emission direction. The difference from the second embodiment is only the location of the user's operation. This configuration is also suitable for areas where the user cannot directly access the illumination area. Positioning the shifting component 50 and the illumination component 70 in different locations on the housing 10 provides the sports watch 100 with more options. Each configuration has its own suitable application scenario, allowing the sports watch 100 to adopt different settings for different application scenarios.

[0095] Please refer to Figure 2 and Figure 3 In some embodiments, the lighting component 70 is positioned at the 12 o'clock position on the dial, and the shift component 50 is positioned at the 3 o'clock or 9 o'clock position on the dial.

[0096] Specifically, in the above embodiment, the 12 o'clock position of the dial is the area directly opposite the peripheral sidewall of the housing 10 of a watch strap. Under this reference standard, the preferred positions of the lighting component 70 and the shifting component 50 in this application are: the lighting component 70 is located at the 12 o'clock position of the dial, and the shifting component 50 is located at the 3 o'clock or 9 o'clock position of the dial. In this configuration, the user operates the shifting component 50 at the 3 o'clock or 9 o'clock position of the dial to allow light to be emitted from the 12 o'clock position. In this configuration, the user's arm is perpendicular to the direction of light emission, allowing the user to maintain a defensive posture with their arm in front of their chest when the lighting function is activated, and for the light to be emitted along the direction of travel when the user moves forward. Simultaneously, the user will not obstruct the lighting component 70 when operating the shifting component 50, resulting in a better user experience and conforming to the usage habits of most users.

[0097] The technical features of the above embodiments can be combined arbitrarily. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as the combination of these technical features does not contradict each other, it should be considered within the scope of this specification. At the same time, other implementation methods can be derived from the above embodiments, so that structural and logical substitutions and changes can be made without departing from the scope of this disclosure.

[0098] The above embodiments merely illustrate several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this patent application should be determined by the appended claims.

Claims

1. A sports watch, characterized by, include: The housing has a receiving cavity; A shifting structure includes a trigger assembly and a shifting assembly. The trigger assembly is housed in the receiving cavity and includes a trigger. The trigger includes a trigger body and a trigger switch movably disposed on the trigger body. Different positions of the trigger switch relative to the trigger body correspond to different gear positions of the trigger. The shifting assembly is connected to the housing and is movable relative to the housing. The shifting assembly contacts the trigger switch and is configured to, when the shifting assembly moves, drive the trigger switch to move to different positions relative to the trigger body, so that the trigger is in different gear positions. and An illumination component, connected to the housing and configured to emit light toward the outside of the housing, wherein the illumination component is turned on or off in response to different positions of the trigger.

2. The sports watch according to claim 1, characterized in that, The trigger includes at least three positions; when the shifting component moves, the shifting component drives the trigger switch to move to different positions relative to the trigger body, so that the trigger is in different positions. When the trigger is in different positions, the lighting component responds to the different positions of the trigger by emitting light of corresponding light intensity.

3. The sports watch according to claim 1 or 2, characterized in that, The sports watch also includes a mating component, which is installed in the receiving cavity and includes a mating part that is deformable; the shifting assembly includes: The operating element is at least partially housed within the receiving cavity; and A movable component is housed in the accommodating cavity and is connected to the operating component and the mating component respectively. The movable component includes a feedback part and a linkage part. The feedback part cooperates with the mating part, and the linkage part is connected to the trigger switch. When the operating component is subjected to force and moves relative to the housing, the operating component drives the movable component to move relative to the mating component, so that different areas of the feedback part cooperate with the mating part, and the trigger is in the corresponding position.

4. The sports watch according to claim 3, characterized in that, The housing has a through hole on its periphery, and the movable member has a receiving groove on the side corresponding to the operating member. The operating member includes: An operating part, at least partially housed within the through-hole, is exposed outside the housing; and The transmission part passes through the through hole and extends at least partially into the receiving groove, and the transmission part is connected to the moving part by a limiting component.

5. The sports watch according to claim 4, characterized in that, The movable component is capable of moving along a first direction; the limiting component includes: A connector, which connects the transmission part and the moving part in a second direction, perpendicular to the first direction; and A limiting member is housed within the receiving cavity and abuts against the connector to restrict the movement of the connector in the second direction.

6. The sports watch according to claim 4, characterized in that, The mating component also includes: An extension with a perforation is provided. In a first direction, the opposite ends of the mating portion are connected to the opposite sides of the perforation and protrude relative to the extension in a third direction. The first direction is perpendicular to the third direction. Two snap-fit ​​portions are respectively connected to the two opposite ends of the extension in the first direction. The snap-fit ​​portions are provided with engagement tabs, which are configured to deform to engage with the housing.

7. The sports watch according to claim 1 or 2, characterized in that, The shifting assembly includes a linkage unit; The linkage part abuts against the trigger switch; the trigger assembly further includes an elastic element, one end of which is connected to the trigger switch and the other end to the trigger body; when the shifting assembly moves forward along the first direction, the shifting assembly pushes the trigger switch to different positions on the trigger body through the linkage part, so that the gear of the trigger gradually increases or decreases; when the shifting assembly moves in the reverse direction along the first direction, the elastic element provides elastic restoring force for the reset of the trigger switch, so that the gear of the trigger gradually decreases or increases; or The linkage part is fixedly connected to the trigger switch; when the shifting component moves in the forward direction of the first direction, the shifting component drives the trigger switch to move to different positions on the trigger body through the linkage part, so that the gear of the trigger gradually increases or decreases; when the shifting component moves in the reverse direction of the first direction, the shifting component drives the trigger switch to move to different positions on the trigger body through the linkage part, so that the gear of the trigger gradually decreases or increases.

8. The sports watch according to claim 1 or 2, characterized in that, The sports watch also includes a mating component, which includes a locking tab for engaging with the housing. The housing includes a main housing body and a secondary housing body. The secondary housing body is connected to the inner periphery of the main housing body. The secondary housing body and the main housing body form a shifting space. The shifting space is located within the accommodating cavity. The secondary housing body engages with the locking tab to fix the mating component within the shifting space.

9. The sports watch according to claim 1 or 2, characterized in that, The triggering component further includes a first circuit board located within the accommodating cavity, the trigger body being disposed on the first circuit board and electrically connected to the first circuit board; the sports watch further includes a main board housed within the accommodating cavity, the first circuit board being electrically connected to the main board; the peripheral sidewall of the housing is provided with a light-transmitting portion, and the lighting component includes: The second circuit board is located within the accommodating cavity and is electrically connected to the main 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.

10. The sports watch according to claim 9, characterized in that, The lighting component and the shifting component are disposed at different positions on the peripheral sidewall of the housing; the sports watch includes a dial and a strap, the dial is mounted on the housing, and the housing is connected to the strap; The peripheral sidewall of the housing includes a strap area for mounting the watch strap and a non-strap area excluding the strap area. The shifting assembly is disposed in the non-strap area, and the illumination assembly is disposed in the strap area; or, The peripheral sidewall of the housing includes a strap area for mounting the watch strap and a non-strap area excluding the strap area; the shifting assembly is disposed in the strap area, and the lighting assembly is disposed in the strap area; or, The peripheral sidewall of the housing includes a strap area for mounting the watch strap and a non-strap area excluding the strap area. The shifting assembly is disposed in the strap area, and the illumination assembly is disposed in the non-strap area; or, The peripheral sidewall of the housing includes a strap area for mounting the watch strap and a non-strap area excluding the strap area. The shifting assembly is disposed in the non-strap area, and the illumination assembly is disposed in the non-strap area; or The lighting component is located at the 12 o'clock position on the dial, and the shift component is located at the 3 o'clock or 9 o'clock position on the dial.