Smart wearable devices

By introducing a combination of toggle keys, transmission parts and detection parts into smart wearable devices, the homogeneity problem caused by traditional buttons has been solved, the convenience and accuracy of function switching have been achieved, and sales have been increased.

CN115903442BActive Publication Date: 2025-09-23GEER TECH CO LTD
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Patent Information

Application Number
CN202211554991.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-05
Publication Date
2025-09-23
Estimated Expiration
2042-12-05

AI Technical Summary

Technical Problem

Existing smart wearable devices achieve function selection through rotating or pressing actions, resulting in serious device homogeneity and reduced sales.

Method used

A combination of a toggle key, a transmission part and a detection part is used. The toggle key slides in the slot to drive the transmission part to move. The detection part detects the movement of the transmission part and transmits an electrical signal to the movement, thereby realizing function switching.

Benefits of technology

It improves the operational accuracy and convenience of smart wearable devices, distinguishes them from traditional products, enhances user experience and increases sales.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a smart wearable device, wherein the smart wearable device includes a shell, a toggle key, a transmission member and a detection member, wherein the shell is provided with an inner cavity and a slot connected to the inner cavity, the inner cavity is provided with an inner cavity wall, and the slot is extended along the periphery of the shell; the toggle key is slidably connected to the slot, and one end of the toggle key extends into the inner cavity; the transmission member is movably connected to the inner cavity wall and is transmission-connected to the end of the toggle key extending into the inner cavity; the detection member is provided on the inner cavity wall and is provided adjacent to the transmission member; the detection member is used to detect the movement of the transmission member and is electrically connected to the movement; wherein the toggle key slides in the slot to drive the transmission member to move, so that the detection member detects the movement of the transmission member and transmits an electrical signal to the movement. The technical solution of the present invention allows the toggle key to realize function selection through the toggle action, which is different from traditional products and increases the sales of smart wearable devices.
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Description

Technical Field

[0001] The present invention relates to the technical field of intelligent electronic products, and in particular to an intelligent wearable device. Background Art

[0002] With the continuous development of wearable smart technology, smart wearable devices are becoming increasingly popular. In addition to displaying the time, smart wearable devices also offer additional functions, but their display interfaces are limited. However, current smart wearable devices generally use buttons that require a rotation or press to select functions, leading to increasing homogeneity among smart wearable devices and significantly reducing their sales. Summary of the Invention

[0003] The main purpose of the present invention is to provide a smart wearable device, which aims to enable a toggle key to realize function selection through a toggle action, thereby distinguishing it from traditional products and increasing the sales of smart wearable devices.

[0004] To achieve the above objectives, the present invention provides a smart wearable device, comprising:

[0005] A housing, wherein the housing is provided with an inner cavity and a slot communicating with the inner cavity, the inner cavity is provided with an inner cavity wall, and the slot is extended along the periphery of the housing;

[0006] A toggle key, wherein the toggle key is slidably connected to the card slot, and one end of the toggle key extends into the inner cavity;

[0007] a transmission member, the transmission member being movably connected to the wall of the inner cavity and being in transmission connection with the end of the toggle key extending into the inner cavity; and

[0008] A detection member, which is disposed on the wall of the inner cavity and adjacent to the transmission member; the detection member is used to detect the movement of the transmission member and is electrically connected to the movement;

[0009] The toggle key slides in the slot to drive the transmission member to move, so that the detection member detects the movement of the transmission member and transmits an electrical signal to the movement.

[0010] In one embodiment, the toggle key includes a limiting portion, a connecting shaft and a transmission portion, wherein the limiting portion is connected to one end of the connecting shaft and is clamped on the slot; the other end of the connecting shaft passes through the slot and is connected to the transmission portion.

[0011] In one embodiment, the slot wall of the card slot is further provided with a first limiting groove and a second limiting groove, the first limiting groove and the second limiting groove are arranged at intervals, and the first limiting groove and the second limiting groove are both extended along the periphery of the housing;

[0012] The toggle key further includes a limiting ring provided on the outer peripheral wall of the connecting shaft, and the connecting shaft drives the limiting ring to engage with the first limiting groove or the second limiting groove;

[0013] Wherein, when the limiting ring is engaged with the first limiting groove, the transmission portion and the transmission member are spaced apart.

[0014] In one embodiment, the limiting ring is made of elastic material; and / or the limiting portion, the transmission portion and the connecting shaft are all made of hard rubber material.

[0015] In one embodiment, the transmission portion is provided with teeth on a side facing away from the connecting shaft;

[0016] The transmission member includes a transmission gear and a fixed shaft. The fixed shaft passes through the transmission gear and is fixed to the wall of the inner cavity. The transmission gear can rotate relative to the fixed shaft. The transmission gear is meshed with the teeth.

[0017] In one embodiment, the transmission gear is provided with a plurality of avoidance holes, and the plurality of avoidance holes are arranged at intervals.

[0018] In one embodiment, a first magnetic portion is provided on a side of the transmission portion facing away from the connecting shaft;

[0019] The transmission member includes a rotating wheel and a fixed shaft, the fixed shaft passes through the rotating wheel and is fixed to the wall of the inner cavity, and the rotating wheel can rotate relative to the fixed shaft; the outer peripheral wall of the rotating wheel is provided with a second magnetic part, and the second magnetic part is attracted to the first magnetic part.

[0020] In one embodiment, the transmission part is provided with a sink, and the bottom wall of the sink is provided with the first magnetic part; the rotating wheel is engaged in the sink.

[0021] In one embodiment, the longitudinal cross-section of the sink is in the shape of an inverted trapezoid.

[0022] In one embodiment, the detection element is a photosensitive element.

[0023] The smart wearable device of the technical solution of the present invention includes a shell, a toggle key, a transmission part and a detection part. The shell is provided with an inner cavity and a card slot connected to the inner cavity, and the card slot extends along the periphery of the shell; the toggle key is slidably connected to the card slot, and one end of the toggle key extends into the inner cavity; the transmission part is movably connected to the wall of the inner cavity and is transmission-connected to the end of the toggle key extending into the inner cavity; the detection part is provided on the wall of the inner cavity and is adjacent to the transmission part; the detection part is used to detect the movement of the transmission part and is electrically connected to the movement; wherein, the toggle key slides in the card slot to drive the transmission part to move, so that the detection part detects the movement of the transmission part and transmits an electrical signal to the movement; in this way, the function is switched by toggling the toggle key to slide in the card slot, which overcomes the traditional method of switching functions by touching the screen, rotating the key or pressing the key, and easily causing the use defect of misoperation due to the small screen area or excessive force on the mechanical key; the smart wearable device that adopts the toggle key, transmission part and detection part to cooperate with the switching function is different from the traditional products, thereby greatly improving the sales of smart wearable devices. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0025] Figure 1 A three-dimensional diagram of the smart wearable device of the present invention;

[0026] Figure 2 A top view of the smart wearable device of the present invention;

[0027] Figure 3 for Figure 2 Schematic diagram of the middle AA section;

[0028] Figure 4 An exploded view of the smart wearable device of the present invention from one perspective;

[0029] Figure 5 This is a schematic diagram of the structure of the smart wearable device of the present invention after part of the housing is removed;

[0030] Figure 6 Schematic diagram of the structure of the toggle key of the smart wearable device of the present invention.

[0031] Description of Figure Numbers:

[0032]

[0033]

[0034] The purpose, features and advantages of the present invention will be further described with reference to the accompanying drawings and in conjunction with the embodiments. DETAILED DESCRIPTION

[0035] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0036] It should be noted that all directional indications in the embodiments of the present invention (such as up, down, left, right, front, back, etc.) are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0037] In addition, the descriptions of "first", "second", etc. in the present invention are for descriptive purposes only and should not be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" or "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between the various embodiments can be combined with each other, but this must be based on the fact that they can be implemented by ordinary technicians in this field. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0038] The present invention provides a smart wearable device.

[0039] In the embodiment of the present invention, referring to Figure 1 、 Figure 2 、 Figure 3 and Figure 4 The smart wearable device includes a shell 10, a toggle key 20, a transmission member 30 and a detection member 40. The shell 10 is provided with an inner cavity 10a and a card slot 10b connected to the inner cavity 10a. The inner cavity 10a is provided with an inner cavity wall, and the card slot 10b is extended along the periphery of the shell 10; the toggle key 20 is slidably connected to the card slot 10b, and one end of the toggle key 20 extends into the inner cavity 10a; the transmission member 30 is movably connected to the cavity wall of the inner cavity 10a and is transmission-connected to the end of the toggle key 20 extending into the inner cavity 10a; the detection member 40 is provided on the cavity wall of the inner cavity 10a and is arranged adjacent to the transmission member 30; the detection member 40 is used to detect the movement of the transmission member 30 and is electrically connected to the movement; wherein the toggle key 20 slides in the card slot 10b to drive the transmission member 30 to move, so that the detection member 40 detects the movement of the transmission member 30 and transmits an electrical signal to the movement.

[0040] The housing 10 includes an upper shell and a lower shell. The upper shell is a cylindrical body, and one end of the upper shell is detachably connected to the lower shell. A screen is installed on the end of the upper shell away from the lower shell. The upper shell, the lower shell and the screen enclose an inner cavity 10a. The inner cavity 10a is used to install a function data processing movement, and the movement is electrically connected to the screen. The movement is used for analyzing and processing various data during the use of the smart wearable device (such as video calls, picture display or video shooting, etc.). In addition, the corresponding usage status will be directly displayed on the screen so that the user can read the usage information in time.

[0041] The inner wall of the lower shell is provided with a mounting column, and the mounting column is provided with a mounting groove. The transmission member 30 is fixed to the groove wall of the mounting groove by setting a screw, so that the transmission member 30 is rotatably connected in the lower shell.

[0042] The slot 10b is an arc-shaped slot extending along the outer periphery of the upper shell. The two ends of the slot 10b limit the sliding range of the toggle key 20. The inner cavity 10a is also provided with a detection member 40 for sensing the rotation of the transmission member 30 to realize function switching. The detection member 40 is electrically connected to the movement.

[0043] In actual use, it is necessary to select the corresponding use function according to the current use needs (such as switching from picture display to video shooting, or switching from video shooting to making a call, or switching between different use functions such as adjusting the focal length of the camera). By providing a toggle key 20 and a detection member 40, the toggle key 20 can drive the transmission member 30 to move by sliding in the card slot 10b until the movement of the transmission member 30 is sensed by the detection member 40, that is, the detection member 40 is triggered according to the movement of the transmission member 30 to output an electrical signal to the movement, and the electrical signal is transmitted to the movement at the same time. After analysis and processing by the movement, the function switching of the smart wearable device can be realized, and the switched state can be displayed on the screen in time, so that the user can obtain the current state in time, and the use is convenient.

[0044] The movement includes a circuit board and a processor assembly for data information. The processor assembly is electrically connected to the circuit board, and a detection element 40 is mounted on the circuit board. Thus, after the movement of the transmission member 30 is sensed by the detection element 40, the electrical signal is then transmitted through the circuit board to the processor assembly for analysis, ultimately enabling the selection of various functions.

[0045] This method of switching functions by sliding the toggle key 20 within the slot 10b provides convenient operation and precise control. This overcomes the drawbacks of traditional methods of switching functions by touching a screen, rotating a key, or pressing a key, which can easily lead to misoperation due to the small screen area or excessive force on mechanical keys. Furthermore, smart wearable devices that utilize the toggle key 20, transmission member 30, and detection member 40 to coordinate switching functions are distinguishable from traditional products, thereby significantly increasing sales of smart wearable devices.

[0046] In one embodiment, referring to Figure 1 、 Figure 2 、 Figure 3 and Figure 4 The toggle key 20 includes a limiting portion 21, a connecting shaft 22 and a transmission portion 23. The limiting portion 21 is connected to one end of the connecting shaft 22 and is clamped in the slot 10b; the other end of the connecting shaft 22 passes through the slot 10b and is connected to the transmission portion 23.

[0047] Specifically, the limiting portion 21 is used to abut against the outer wall of the housing 10 to limit the position of the entire toggle key 20 on the slot 10b; and the limiting portion 21 also serves as a component that is moved by the user's finger, facilitating user operation. The connecting shaft 22 is used to connect the limiting portion 21 and the transmission portion 23. The connecting shaft 22 directly passes through the slot 10b, allowing the limiting portion 21 and the transmission portion 23 to move synchronously, ensuring that the transmission portion 23 moves with the displacement of the limiting portion 21, allowing effective transmission between the toggle key 20 and the transmission member 30. The transmission portion 23 is in transmission connection with the transmission member 30 located in the inner cavity 10a, so that the detection member 40 located in the inner cavity 10a can detect the movement of the transmission member 30.

[0048] The cross-sectional shape of the stopper 21 can be circular, square, polygonal, or irregular. The side of the stopper 21 facing away from the connecting shaft 22 is provided with anti-slip grooves or ridges to increase friction on the surface of the stopper 21, preventing slippage during operation and facilitating the turning and twisting operation. A fluorescent layer or fluorescent material on the surface of the stopper 21 facilitates gripping of the stopper 21 at night or in dark environments.

[0049] Optionally, the smart wearable device further includes a seal member disposed at the card slot 10b. The seal member is made of an elastic material and has a gap therein. One end of the toggle key 20 extends through the gap into the inner cavity 10a and is in transmission connection with the transmission member 30. The seal member seals the gap between the slot wall of the card slot 10b and the toggle key 20, thereby improving the overall waterproof and dustproof performance.

[0050] In one embodiment, referring to Figure 1 、 Figure 2 、 Figure 3 and Figure 4 The groove wall of the card slot 10b is also recessed with a first limiting groove 10c and a second limiting groove 10d, and the first limiting groove 10c and the second limiting groove 10d are arranged at intervals, and the first limiting groove 10c and the second limiting groove 10d are both extended along the periphery of the shell 10; the toggle key 20 also includes a limiting ring 24 provided on the peripheral outer wall of the connecting shaft 22, and the connecting shaft 22 drives the limiting ring 24 to be engaged in the first limiting groove 10c or the second limiting groove 10d; wherein, when the limiting ring 24 is engaged in the first limiting groove 10c, the transmission part 23 is spaced apart from the transmission member 30.

[0051] Specifically, the bottom and top walls of the slot 10b each have a first limiting groove 10c and a second limiting groove 10d. The first limiting groove 10c and the second limiting groove 10d on the bottom wall are arranged one-to-one opposite to the first limiting groove 10c and the second limiting groove 10d on the top wall. The first limiting groove 10c and the second limiting groove 10d have the same length, and the first limiting groove 10c and the second limiting groove 10d extend in the same direction as the slot 10b.

[0052] When the user grasps the limiting portion 21 of the toggle key 20 and moves it toward the inner cavity 10a until the limiting ring 24 on the connecting shaft 22 engages the two second limiting grooves 10d, the transmission portion 23 contacts and connects with the transmission member 30 located in the inner cavity 10a, thereby enabling the transmission portion 23 to drive the transmission member 30 to move, thereby achieving function switching of the smart wearable device. When the user grasps the limiting portion 21 of the toggle key 20 and moves it away from the inner cavity 10a until the limiting ring 24 on the connecting shaft 22 engages the two first limiting grooves 10c, the transmission portion 23 is separated from the transmission member 30 located in the inner cavity 10a by a certain distance, that is, the transmission portion 23 is disconnected from the transmission member 30, causing the smart wearable device to stop function switching, thereby better preventing misoperation and improving the operational accuracy of the smart wearable device.

[0053] Furthermore, the limiting ring 24 is made of an elastic material, while the limiting portion 21 and the connecting shaft 22 are both made of a hard rubber material. This provides the limiting ring 24 with a certain degree of elasticity, thereby increasing the structural strength of the limiting portion 21, the transmission portion 23, and the connecting shaft 22. When the limiting portion 21 drives the connecting shaft 22 and the transmission portion 23 to move, the elastic limiting ring 24 can appropriately deform within the first limiting groove 10c, the second limiting groove 10d, and the clamping groove 10b, making it easier for the limiting ring 24 to shift between the first limiting groove 10c and the second limiting groove 10d.

[0054] It is worth noting that the limiting ring 24 is connected to the second limiting groove 10d. The user can grab the limiting part 21 to drive the connecting shaft 22 and the transmission part 23 to slide from one end of the slot 10b to the other end of the slot 10b in a clockwise or counterclockwise direction, and the transmission part 23 can drive the transmission part 30 to move, thereby realizing the function selection of the smart wearable device.

[0055] The limiting portion 21 can be set to move clockwise to cause the smart wearable device to move left when selecting a function; the limiting portion 21 can also be set to move counterclockwise to cause the smart wearable device to move right when selecting a function; or the limiting portion 21 can be set to move clockwise to cause the smart wearable device to move right when selecting a function; the limiting portion 21 can also be set to move counterclockwise to cause the smart wearable device to move left when selecting a function. The movement direction of the limiting portion 21 in this embodiment corresponds to the operation of selecting a function of the smart wearable device and can also confirm or deny the selection, which is not specifically limited here.

[0056] In one embodiment, referring to Figures 3 to 6 The transmission part 23 is provided with teeth 23a on the side facing away from the connecting shaft 22; the transmission member 30 includes a transmission gear 31 and a fixed shaft 32, the fixed shaft 32 passes through the transmission gear 31 and is fixed to the wall of the inner cavity 10a, the transmission gear 31 can rotate relative to the fixed shaft 32, and the transmission gear 31 is meshed with the teeth 23a.

[0057] Specifically, the teeth 23a of the transmission part 23 mesh with the transmission gear 31, so that the transmission between the transmission part 23 and the transmission gear 31 can be more stably transmitted. When the user grasps the limiting part 21 to drive the connecting shaft 22 and the transmission part 23 to move, the transmission gear 31 can move more stably with the connecting shaft 22.

[0058] In one embodiment, referring to Figures 3 to 6 The transmission gear 31 is provided with a plurality of avoidance holes 31a, which are arranged at intervals. This allows light from the screen to more easily enter the detection element 40 through the avoidance holes 31a, making it easier for the detection element 40 to detect the movement of the transmission element 30 and output an electrical signal to the movement. It also reduces the weight of the transmission gear 31, contributing to the lightweight design of the smart wearable device.

[0059] Optionally, the shape of the avoidance hole 31a may be fan-shaped, circular, square or other shapes.

[0060] In one embodiment, referring to Figures 3 to 6 A first magnetic portion (not shown) is provided on the side of the transmission part 23 facing away from the connecting shaft 22; the transmission member 30 includes a rotating wheel and a fixed shaft 32, the fixed shaft 32 passes through the rotating wheel and is fixed to the wall of the inner cavity 10a, and the rotating wheel can rotate relative to the fixed shaft 32; a second magnetic portion (not shown) is provided on the outer peripheral wall of the rotating wheel, and the second magnetic portion is attracted to the first magnetic portion.

[0061] Specifically, when the limiting portion 21 drives the transmission portion 23 to approach the transmission member 30 until the first magnetic portion and the second magnetic portion are attracted, the transmission portion 23 is connected to the transmission member 30 to achieve function switching of the smart wearable device.

[0062] In another embodiment, the second magnetic portion is not provided on the outer peripheral wall of the rotating wheel, and the rotating wheel is made of metal material, so that the first magnetic portion is directly attracted to the outer peripheral wall of the rotating wheel.

[0063] Optionally, the area of ​​the first magnetic part facing away from the transmission part 23 is larger than the area of ​​the second magnetic part facing away from the rotating wheel, so that the second magnetic part can be completely attracted to the first magnetic part, thereby improving the transmission stability of the transmission part 23 and the rotating wheel, and ensuring that the smart wearable device can normally execute the function switching steps.

[0064] In one embodiment, referring to Figures 3 to 6 The transmission part 23 is provided with a sink (not shown), and the bottom wall of the sink is provided with a first magnetic part; the runner is clamped in the sink.

[0065] Specifically, the wheel is inserted into the trough, and the position of the wheel is limited by the two side walls of the trough. Then, the first magnetic part of the bottom wall of the trough is attracted by the second magnetic part of the outer wall of the wheel, thereby further improving the connection tightness between the wheel and the transmission part 23.

[0066] Optionally, the bottom groove wall and the side groove wall of the trough are both provided with an anti-skid layer to further increase the friction of the groove wall of the trough, so that the trough and the rotating wheel are more tightly and stably engaged.

[0067] In one embodiment, the longitudinal cross-section of the trough (not shown) is an inverted trapezoid. This allows the side walls of the trough to be inclined, facilitating easier entry of the runner along the inclined side walls and accelerating assembly of the runner and the transmission unit 23. The width of the bottom wall of the trough is equal to the height of the outer peripheral wall of the runner.

[0068] In one embodiment, referring to Figures 3 to 5 The detection member 40 is a photosensitive element. Thus, when the transmission member 30 is driven to rotate by the transmission portion 23 of the toggle key 20, the light in the inner cavity 10a changes during the rotation of the transmission member 30. The photosensitive element detects the rotation of the transmission member 30 through the light change, and then sends an electrical signal to the movement, thereby realizing the function switching.

[0069] The above description is only a preferred embodiment of the present invention and does not limit the patent scope of the present invention. All equivalent structural transformations made by using the contents of the present invention description and drawings under the inventive concept of the present invention, or direct / indirect application in other related technical fields are included in the patent protection scope of the present invention.

Claims

1. A smart wearable device, characterized in that: The smart wearable device includes: A housing, the housing being provided with an inner cavity and a slot communicating with the inner cavity, the inner cavity being provided with an inner cavity wall, the slot extending along the periphery of the housing; the slot wall of the slot being recessed with a first limiting groove and a second limiting groove, the first limiting groove and the second limiting groove being arranged at intervals, and both the first limiting groove and the second limiting groove extending along the periphery of the housing; A toggle key, the toggle key being slidably connected to the slot, with one end of the toggle key extending into the inner cavity; the toggle key comprising a limiting portion, a connecting shaft, a transmission portion, and a limiting ring; the limiting portion being connected to one end of the connecting shaft, the other end of the connecting shaft passing through the slot and connected to the transmission portion; the limiting ring being provided on the peripheral outer wall of the connecting shaft; a transmission member, the transmission member being movably connected to the wall of the inner cavity and being in transmission connection with the end of the toggle key extending into the inner cavity; and A detection member, which is disposed on the wall of the inner cavity and adjacent to the transmission member; the detection member is used to detect the movement of the transmission member and is electrically connected to the movement; Among them, the toggle key slides in the slot to drive the transmission part to move, so that the detection part detects the movement of the transmission part and transmits an electrical signal to the movement; the limiting ring is used to be clamped into the first limiting slot to disconnect the transmission part from the transmission part, thereby stopping the function switching of the smart wearable device; the limiting ring is also used to be clamped into the second limiting slot to connect the transmission part to the transmission part.

2. The smart wearable device according to claim 1, wherein: The limiting portion is clamped on the clamping slot.

3. The smart wearable device according to claim 2, wherein: When the limiting ring is engaged with the first limiting groove, the transmission portion and the transmission member are spaced apart.

4. The smart wearable device according to claim 3, wherein: The limiting ring is made of elastic material; and / or the limiting portion, the transmission portion and the connecting shaft are all made of hard rubber material.

5. The smart wearable device according to claim 2, wherein: The transmission part is provided with teeth on a side facing away from the connecting shaft; The transmission member includes a transmission gear and a fixed shaft. The fixed shaft passes through the transmission gear and is fixed to the wall of the inner cavity. The transmission gear can rotate relative to the fixed shaft. The transmission gear is meshed with the teeth.

6. The smart wearable device according to claim 5, wherein: The transmission gear is provided with a plurality of avoidance holes, and the plurality of avoidance holes are arranged at intervals.

7. The smart wearable device according to claim 2, wherein: A first magnetic portion is provided on a side of the transmission portion facing away from the connecting shaft; The transmission member includes a rotating wheel and a fixed shaft, the fixed shaft passes through the rotating wheel and is fixed to the wall of the inner cavity, and the rotating wheel can rotate relative to the fixed shaft; the outer peripheral wall of the rotating wheel is provided with a second magnetic part, and the second magnetic part is attracted to the first magnetic part.

8. The smart wearable device according to claim 7, wherein: The transmission part is provided with a sinking groove, and the bottom groove wall of the sinking groove is provided with the first magnetic part; the rotating wheel is clamped in the sinking groove.

9. The smart wearable device according to claim 8, wherein: The longitudinal cross-section of the trough is in the shape of an inverted trapezoid.

10. The smart wearable device according to any one of claims 1 to 9, wherein: The detection element is a photosensitive element.

Citation Information

Patent Citations

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