A smart host and a smart wearable device

By using quick-release components and rotating parts in the smart host and smart wearable devices, the smartwatch camera can be flexibly flipped and its direction adjusted, solving the problem of limited camera angle, improving the convenience of taking photos and selfies and reducing costs.

CN224287368UActive Publication Date: 2026-05-26ZHENSHI INFORMATION TECH SHANGHAI CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHENSHI INFORMATION TECH SHANGHAI CO LTD
Filing Date
2025-06-19
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing smartwatches have limited camera angles, requiring dual cameras to achieve video functionality, which increases device costs and makes them inconvenient to use.

Method used

Design an intelligent host and intelligent wearable device. The host body can be flexibly flipped through quick-release components and rotating parts. The camera component can be independently adjusted in direction, and a single camera can meet the needs of multi-directional shooting.

Benefits of technology

It improves the convenience of taking photos and selfies, simplifies the structure, reduces equipment costs, and is suitable for use scenarios that require frequent switching of shooting angles.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses a smart host and a smart wearable device. The smart host includes: a base; a host body disposed on the base; a rotating component disposed at one end of the base; a camera component rotatably disposed at the end of the host body away from the rotating component; and a quick-release component, which includes a first latching part, a second latching part, and an unlocking component. When the host body is stacked on the base, the first latching part and the second latching part are adapted to latch, so that the host body and the base remain relatively fixed. When the unlocking component drives the second latching part to disengage from the first latching part, the host body can rotate relative to the base by a preset angle. In this utility model, the host body can be quickly disassembled to achieve rotation, and the shooting direction can be easily adjusted. A single camera can meet the needs of multi-directional shooting, significantly improving the convenience of taking photos and selfies.
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Description

Technical Field

[0001] This utility model relates to the field of wearable device technology, and further to a smart host and a smart wearable device. Background Technology

[0002] With the development of mobile technology, many traditional electronic products have begun to add mobile functions. For example, watches that used to be used only to tell time can now be connected to the Internet through smartphones or home networks to display incoming call information, communications, news, weather information, and other content. Such new watches can be called smartwatches.

[0003] Many smartwatches have cameras for taking pictures. However, current cameras are usually fixed on the watch face, which makes it impossible to capture many angles. This makes taking pictures and selfies with a smartwatch very inconvenient, sometimes requiring the watch to be removed, which seriously affects the watch's practicality. Furthermore, to achieve video functionality, dual cameras are required, which further increases the cost of the device.

[0004] Therefore, it is necessary to design an intelligent host and intelligent wearable device to solve the above problems. Utility Model Content

[0005] To address the aforementioned technical problems, the purpose of this utility model is to provide a smart host and a smart wearable device that can be quickly disassembled to achieve the flipping of the host body and can also easily adjust the shooting direction. A single camera can meet the needs of multi-directional shooting, significantly improving the convenience of taking photos and selfies.

[0006] To achieve the above objectives, this utility model provides an intelligent host, comprising:

[0007] Base;

[0008] The main unit is mounted on the base.

[0009] A rotating component is disposed at one end of the base, and the main body is rotatably connected to the base via the rotating component;

[0010] The camera assembly is rotatably mounted at the end of the main body away from the rotating component, so that the camera direction of the camera assembly is adjustable;

[0011] A quick-release assembly includes a first latching part, a second latching part, and an unlocking part. The first latching part is located at the end of the base away from the rotating part, and the second latching part and the unlocking part are located at the end of the main body away from the rotating part. The unlocking part is connected to the second latching part.

[0012] When the main body is stacked on the base, the first snap-fit ​​part and the second snap-fit ​​part are adapted to snap-fit, so that the main body and the base remain relatively fixed.

[0013] When the unlocking component drives the second latching part to disengage from the first latching part, the main body can rotate relative to the base by a preset angle.

[0014] In some embodiments, the end of the host body is provided with a mounting groove, the camera assembly includes a connector and a camera, the camera is adapted to be disposed in the mounting groove, and is rotatably connected to the host body through the connector.

[0015] In some embodiments, the mounting groove has pivot holes on its two opposite sidewalls, and the connector includes two pivots, which are respectively disposed on both sides of the camera and respectively adapted to be disposed in the corresponding pivot holes, so that the camera is rotatably connected to the sidewall of the mounting groove.

[0016] In some embodiments, the connector further includes a damping element disposed between the pivot and the pivot hole, enabling the camera to hover relative to the host body at different positions.

[0017] In some embodiments, the connector includes a micro motor and a transmission component. The micro motor is connected to the camera via the transmission component, and the micro motor can drive the transmission component to rotate the camera relative to the host body.

[0018] In some implementations, it also includes:

[0019] The system includes a control unit and a data acquisition unit. The control unit is connected to the data acquisition unit and the micro motor, respectively. The data acquisition unit is used to acquire the user's control commands and send them to the control unit. The control unit is used to control the micro motor to perform the operation corresponding to the control commands according to the control commands.

[0020] In some embodiments, the unlocking component includes a frame, a button, a connecting frame, and an elastic element. The second latching portion is fixed to the frame, the button is located at the end of the frame away from the rotating component, the connecting frame is fixed to the main body, the frame is rotatably connected to the connecting frame via a pin, and the elastic element is located on the side of the frame away from the button.

[0021] When the button is pressed, the frame causes the second latching part to rotate a preset angle toward the rotating part, so that the second latching part is disengaged from the first latching part. At this time, the main body can flip relative to the base by a preset angle.

[0022] When the main body is stacked on the base, the frame, under the elastic force of the elastic member, drives the second locking part to rotate a preset angle away from the rotating member, so that the second locking part is adapted to and locked with the first locking part. At this time, the main body and the base remain relatively fixed.

[0023] In some embodiments, a button slot is provided at the end of the main body, the unlocking member is adapted to be disposed in the button slot, one end of the elastic member is connected to the frame, and the other end is connected to the bottom of the button slot.

[0024] The first latching part includes a first hook, and the end of the first hook is provided with a first arc-shaped part. The second latching part includes a second hook, and the end of the second hook is provided with a second arc-shaped part. When the main body is pressed towards the base, the second arc-shaped part moves relative to the first arc-shaped part, so that the frame overcomes the elastic force of the elastic member, thereby making the second latching part adapt and latch with the first latching part.

[0025] In some embodiments, the host body includes:

[0026] The middle frame has a button slot at one end, a mounting slot at the bottom of the button slot, an unlocking component adapted to be disposed in the button slot, and a camera component adapted to be disposed in the mounting slot.

[0027] A display screen is located on one side of the middle frame;

[0028] The outer frame covers the outside of the middle frame, and a button hole is provided at one end of the outer frame near the button slot. The button of the unlocking component extends through the button hole and out a preset length.

[0029] A base is located on the side of the middle frame away from the display screen. A heart rate sensor and a card holder are provided on the side of the base away from the middle frame. The heart rate sensor is used to detect the wearer's heart rate, and the card holder is used to install a SIM card. A hollow part is provided in the middle of the base, and the heart rate sensor passes through the hollow part and extends out by a preset length.

[0030] Function buttons are located on one side of the middle frame;

[0031] The horn-shaped opening is located on one side of the middle frame and is spaced apart from the function buttons.

[0032] According to another aspect of the present invention, the present invention further provides a smart wearable device, including a smart host as described in any one of the above, and a wearable component, the wearable component being connected to the base for wearing the smart host on the user.

[0033] Compared with the prior art, the intelligent host and intelligent wearable device provided by this utility model have at least one of the following beneficial effects:

[0034] In this invention, the main body can be flexibly flipped relative to the base, and the camera component is independently set at the end of the main body and can rotate freely. A single camera can meet the needs of multi-directional shooting. Users can easily adjust the shooting direction without taking off their watches, which solves the problem of limited camera angles in traditional smartwatches and significantly improves the convenience of taking photos and selfies. It not only simplifies the structure but also avoids the cost investment of dual cameras, reducing the manufacturing cost of the device while ensuring the shooting function.

[0035] The snap-fit ​​structure of the quick-release component ensures the stability of the main unit when it is closed, while the one-button unlocking mechanism provides convenient operation for quickly switching shooting modes. This flip-up design not only takes into account wearing comfort but also expands the practicality of the smartwatch, making it especially suitable for usage scenarios that require frequent switching of shooting angles. Attached Figure Description

[0036] The following will describe the optional embodiments in a clear and easy-to-understand manner, in conjunction with the accompanying drawings, to further explain the above-mentioned characteristics, technical features, advantages, and implementation methods of this utility model.

[0037] Figure 1 This is a schematic diagram of the structure of the intelligent host in an optional embodiment of this utility model;

[0038] Figure 2 This is a schematic diagram of the structure of the intelligent host from another perspective of an optional embodiment of this utility model;

[0039] Figure 3 This is an exploded structural diagram of an optional embodiment of the intelligent host of this utility model;

[0040] Figure 4 This is an exploded structural diagram of the host body of an optional embodiment of this utility model;

[0041] Figure 5 This is an exploded structural diagram of the unlocking component of an optional embodiment of this utility model;

[0042] Figure 6 This is a schematic diagram of the structure of an optional embodiment of the smart wearable device of this utility model.

[0043] Explanation of icon numbers:

[0044] Base 1, hollow part 11, main body 2, middle frame 21, button slot 211, mounting slot 212, display screen 22, outer frame 23, button hole 231, base 24, heart rate component 25, card tray 26, function button 27, horn 28, rotating part 3, camera component 4, camera 41, connector 42, quick release component 5, first snap-fit ​​part 51, first arc-shaped part 511, second snap-fit ​​part 52, second arc-shaped part 521, unlocking part 53, frame 531, button 532, connecting bracket 533, elastic part 534, pin 535, screw 536, wearable component 6. Detailed Implementation

[0045] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the specific implementation methods of this utility model will be described below with reference to the accompanying drawings. Obviously, the drawings described below are merely some embodiments of this utility model. For those skilled in the art, other drawings and other implementation methods can be obtained based on these drawings without any creative effort.

[0046] To keep the drawings concise, each figure only schematically shows the parts relevant to the utility model, and these do not represent the actual structure of the product. Furthermore, for ease of understanding, in some figures, only one of the components with the same structure or function is schematically depicted, or only one is labeled. In this document, "one" not only means "only one," but can also mean "more than one."

[0047] It should also be further understood that the term “and / or” as used in this application specification and the appended claims means any combination of one or more of the associated listed items and all possible combinations, and includes such combinations.

[0048] In this document, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0049] Furthermore, in the description of this application, the terms "first," "second," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0050] In one embodiment, refer to the appendix to the specification. Figures 1 to 5The present invention provides an intelligent host, comprising: a base 1, a host body 2, a rotating component 3, a camera assembly 4, and a quick-release assembly 5; the host body 2 is disposed on the base 1; the rotating component 3 is disposed at one end of the base 1, and the host body 2 is rotatably connected to the base 1 through the rotating component 3; the camera assembly 4 is rotatably disposed at the end of the host body 2 away from the rotating component 3, so that the camera direction of the camera assembly 4 is adjustable; the quick-release assembly 5 includes a first latching part 51, a second latching part 52, and an unlocking component 53, the first latching part... Part 51 is located at the end of the base 1 away from the rotating member 3. The second locking part 52 and the unlocking part 53 are located at the end of the main body 2 away from the rotating member 3. The unlocking part 53 is connected to the second locking part 52. When the main body 2 is stacked on the base 1, the first locking part 51 and the second locking part 52 are adapted to lock together, so that the main body 2 and the base 1 remain relatively fixed. When the unlocking part 53 drives the second locking part 52 to release the lock from the first locking part 51, the main body 2 can rotate relative to the base 1 by a preset angle.

[0051] In this embodiment, the main body 2 can be flexibly flipped relative to the base 1, and the camera component 4 is independently set at the end of the main body 2 and can rotate freely. A single camera can meet the needs of multi-directional shooting. Users can easily adjust the shooting direction without taking off their watches, which solves the problem of limited camera angles in traditional smartwatches and significantly improves the convenience of taking photos and selfies. It not only simplifies the structure but also avoids the cost investment of dual cameras, reducing the manufacturing cost of the device while ensuring the shooting function.

[0052] The snap-fit ​​structure of the quick-release component 5 ensures the stability of the main body 2 in the closed state, while the one-button unlocking mechanism provides convenient operation for quickly switching shooting modes. This flip-out design takes into account both wearing comfort and expands the practicality of the smartwatch, making it especially suitable for usage scenarios that require frequent switching of shooting angles.

[0053] In one embodiment, refer to the appendix to the specification. Figure 3 The end of the main body 2 is provided with a mounting groove 212. The camera component 4 includes a connector 42 and a camera 41. The camera 41 is adapted to be installed in the mounting groove 212 and is rotatably connected to the main body 2 through the connector 42.

[0054] For example, the mounting groove 212 has two opposite sidewalls with pivot holes, and the connector 42 includes two pivots, which are respectively located on both sides of the camera 41. The two pivots are respectively adapted to be located in the corresponding pivot holes, so that the camera 41 is rotatably connected to the sidewall of the mounting groove 212.

[0055] Furthermore, the connector 42 also includes a damping element, which can be a rubber ring, a coiled spring, etc. The damping element is disposed between the pivot and the pivot hole, so that the camera 41 can hover at different positions relative to the host body 2.

[0056] For example, the connector 42 includes a micro motor and a transmission component. The micro motor is connected to the camera 41 via the transmission component, and the micro motor can drive the transmission component to rotate the camera 41 relative to the host body 2. When the micro motor is installed on one side of the camera 41, the transmission component can be a drive shaft, with one end connected to the micro motor and the other end connected to the camera 41, so that the micro motor can drive the camera 41 to perform a tilting motion via the drive shaft. When the micro motor is installed at the bottom of the camera 41, the transmission component includes a drive shaft and a reversing gear mechanism. The bottom of the drive shaft is connected to the micro motor, and the top of the drive shaft is connected to the camera 41 via the reversing gear mechanism, so that the micro motor can drive the camera 41 to perform a tilting motion via the drive shaft and the reversing gear mechanism.

[0057] Furthermore, it also includes a control unit and a data acquisition unit. The control unit is connected to both the data acquisition unit and the micromotor. The data acquisition unit collects user control commands and sends them to the control unit. The control unit controls the micromotor to perform operations corresponding to the control commands. The control unit can be a motherboard or circuit board, etc. The data acquisition unit includes a voice recognition module and / or a touch sensing module. Control commands include voice signals or touch pressure. The movement of the micromotor can be controlled by the motherboard of the main unit 2, and the power of the micromotor can be provided by the battery of the main unit 2. By setting the data acquisition unit, quick control of the micromotor can be achieved. Users only need to start the micromotor to adjust the shooting direction, making the control more intelligent and providing users with a better product experience.

[0058] Specifically, when the control command is a voice signal, the acquisition component inside the main unit corresponds to a voice recognition module. When the user needs to control the movement of the micro motor, they only need to emit the corresponding voice signal. The voice recognition module then receives the voice signal, processes it, and transmits it to the motherboard. The motherboard controls the movement state of the micro motor based on the received voice signal. For example, when the user needs to disassemble the main unit, they can utter voice words such as "open," "start," or "start." The voice recognition module collects and recognizes the voice words emitted by the user, processes them, generates a voice signal, and sends it to the motherboard. At this time, the motherboard can control the micro motor to start based on the voice information, thereby adjusting the shooting angle of the camera component 4 through the rotation of the micro motor. Similarly, when the control command is a touch pressure, the acquisition component inside the main unit corresponds to a touch sensing module. When the user needs to control the micro motor to rotate clockwise or counterclockwise, they only need to click the corresponding icon on the display screen / or touch / or press the button of the micro motor. Its specific operation is similar to that of the voice signal, and will not be elaborated here.

[0059] It should be noted that the specific structure of the connector 42 is described with reference to the accompanying drawings in the specification. In actual use, other structures or devices may be used according to actual needs, as long as they can drive the camera 41 to rotate. This is only for better illustration of the present invention and should not be construed as a limitation of the present invention.

[0060] In one embodiment, refer to the appendix to the specification. Figures 1 to 5 The unlocking component 53 includes a frame 531, a button 532, a connecting bracket 533, and an elastic element 534. Two second latching portions 52 are fixedly and spaced apart on the frame 531. The button 532 is located at the end of the frame 531 away from the rotating component 3, and extends a predetermined length away from the frame 531 so that it can protrude from the button hole 231. The two connecting brackets 533 are fixed to the ends of the middle frame 21 by screws 536, and the two frames 531 are rotatably connected to the two ends of the connecting brackets 533 by pins 535. The elastic element 534 is located on the side of the frame 531 away from the button 532. The elastic element 534 can be a spring, an elastic post, etc., and its quantity can be one, two, or more.

[0061] When button 532 is pressed, the frame 531 drives the second locking part 52 to rotate a preset angle toward the rotating part 3, so that the second locking part 52 is disengaged from the first locking part 51. At this time, the main body 2 can be flipped relative to the base 1 by a preset angle. When the main body 2 is stacked on the base 1, the frame 531, under the elastic force of the elastic member 534, drives the second locking part 52 to rotate a preset angle away from the rotating part 3, so that the second locking part 52 is adapted to engage with the first locking part 51. At this time, the main body 2 and the base 1 remain relatively fixed.

[0062] Furthermore, a button groove 221 is provided at the end of the main body 2, and the unlocking member 53 is adapted to be disposed in the button groove 221. One end of the elastic member 534 is connected to the frame 531, and the other end is connected to the bottom of the button groove 221. The first latching part 51 includes a first hook, and the end of the first hook is provided with a first arc-shaped part 511. The second latching part 52 includes a second hook, and the end of the second hook is provided with a second arc-shaped part 521. When the main body 2 is pressed towards the base 1, the second arc-shaped part 521 moves relative to the first arc-shaped part 511, so that the frame 531 overcomes the elastic force of the elastic member 534, thereby making the second latching part 52 and the first latching part 51 fit and latch together.

[0063] In this embodiment, the main body 2 is rotatably connected to the base 1 through the rotating part 3, so that the main body 2 can be flipped relative to the base 1 at a preset angle; when the user presses the unlocking part 53, the second locking part 52 is released from the first locking part 51, and the main body 2 can be freely flipped, which is simple and convenient to operate.

[0064] In one embodiment, refer to the appendix to the specification. Figures 1 to 5 The main unit 2 includes a middle frame 21, an outer frame 23, and a base 24. One end of the middle frame 21 has a button slot 211, and the bottom of the button slot 211 has a mounting slot 212. An unlocking component 53 is fitted into the button slot 211, and a camera assembly 4 is fitted into the mounting slot 212. A display screen 22 is located on the top of the middle frame 21. The outer frame 23 covers the outside of the middle frame 21, and the end of the outer frame 23 near the button slot 211 has a button hole 231. The button 532 of the unlocking component 53 passes through the button hole 231 and extends a predetermined length. One side of the middle frame 21 has a function button 27 and a speaker grille 28, spaced apart. The base 24 is located on the side of the middle frame 21 away from the display screen 22. The side of the base 24 away from the middle frame 21 is provided with a heart rate component 25 and a card tray 26. The heart rate component 25 is used to detect the wearer's heart rate, and the card tray 26 is used to install a SIM card. The middle part of the base 1 is provided with a hollow part 11, through which the heart rate component 25 passes and extends out by a preset length.

[0065] According to another aspect of this utility model, reference is made to the appended specification. Figure 6 The present invention further provides a smart wearable device, including any of the smart hosts described above, and also includes a wearable assembly 6, which is connected to the base 1 for wearing the smart host on the user.

[0066] In the above embodiments, the descriptions of each embodiment have different focuses. For parts that are not described in detail or recorded in a certain embodiment, please refer to the relevant descriptions of other embodiments.

[0067] It should be noted that the above embodiments can be freely combined as needed. The above are only optional embodiments of this utility model. It should be pointed out that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.

Claims

1. A smart host, characterized in that, include: Base; The main unit is mounted on the base. A rotating component is disposed at one end of the base, and the main body is rotatably connected to the base via the rotating component; The camera assembly is rotatably mounted at the end of the main body away from the rotating component, so that the camera direction of the camera assembly is adjustable; A quick-release assembly includes a first latching part, a second latching part, and an unlocking part. The first latching part is located at the end of the base away from the rotating part, and the second latching part and the unlocking part are located at the end of the main body away from the rotating part. The unlocking part is connected to the second latching part. When the main body is stacked on the base, the first snap-fit ​​part and the second snap-fit ​​part are adapted to snap-fit, so that the main body and the base remain relatively fixed. When the unlocking component drives the second latching part to disengage from the first latching part, the main body can rotate relative to the base by a preset angle.

2. The intelligent host according to claim 1, characterized in that, The end of the main body is provided with a mounting groove. The camera assembly includes a connector and a camera. The camera is adapted to be installed in the mounting groove and is rotatably connected to the main body through the connector.

3. The intelligent host according to claim 2, characterized in that, The mounting groove has two opposite sidewalls with pivot holes. The connector includes two pivots, which are respectively located on both sides of the camera. The two pivots are respectively fitted into the corresponding pivot holes, so that the camera is rotatably connected to the sidewall of the mounting groove.

4. The intelligent host according to claim 3, characterized in that, The connector also includes a damping element disposed between the pivot and the pivot hole, so that the camera can hover at different positions relative to the host body.

5. The intelligent host according to claim 2, characterized in that, The connector includes a micro motor and a transmission component. The micro motor is connected to the camera through the transmission component, and the micro motor can drive the transmission component to rotate the camera relative to the host body.

6. The intelligent host according to claim 5, characterized in that, Also includes: The system includes a control unit and a data acquisition unit. The control unit is connected to the data acquisition unit and the micro motor, respectively. The data acquisition unit is used to acquire the user's control commands and send them to the control unit. The control unit is used to control the micro motor to perform the operation corresponding to the control commands according to the control commands.

7. The intelligent host according to claim 1, characterized in that, The unlocking component includes a frame, a button, a connecting frame, and an elastic element. The second latching part is fixed to the frame. The button is located at the end of the frame away from the rotating component. The connecting frame is fixed to the main body. The frame is rotatably connected to the connecting frame via a pin. The elastic element is located on the side of the frame away from the button. When the button is pressed, the frame causes the second latching part to rotate a preset angle toward the rotating part, so that the second latching part is disengaged from the first latching part. At this time, the main body can flip relative to the base by a preset angle. When the main body is stacked on the base, the frame, under the elastic force of the elastic member, drives the second locking part to rotate a preset angle away from the rotating member, so that the second locking part is adapted to and locked with the first locking part. At this time, the main body and the base remain relatively fixed.

8. The intelligent host according to claim 7, characterized in that, The end of the main body is provided with a button slot, the unlocking component is adapted to be disposed in the button slot, one end of the elastic component is connected to the frame, and the other end is connected to the bottom of the button slot. The first latching part includes a first hook, and the end of the first hook is provided with a first arc-shaped part. The second latching part includes a second hook, and the end of the second hook is provided with a second arc-shaped part. When the main body is pressed towards the base, the second arc-shaped part moves relative to the first arc-shaped part, so that the frame overcomes the elastic force of the elastic member, thereby making the second latching part adapt and latch with the first latching part.

9. The intelligent host according to claim 1, characterized in that, The host unit includes: The middle frame has a button slot at one end, a mounting slot at the bottom of the button slot, an unlocking component adapted to be disposed in the button slot, and a camera component adapted to be disposed in the mounting slot. A display screen is located on one side of the middle frame; The outer frame covers the outside of the middle frame, and a button hole is provided at one end of the outer frame near the button slot. The button of the unlocking component extends through the button hole and out a preset length. A base is located on the side of the middle frame away from the display screen. A heart rate sensor and a card holder are provided on the side of the base away from the middle frame. The heart rate sensor is used to detect the wearer's heart rate, and the card holder is used to install a SIM card. A hollow part is provided in the middle of the base, and the heart rate sensor passes through the hollow part and extends out by a preset length. Function buttons are located on one side of the middle frame; The horn-shaped opening is located on one side of the middle frame and is spaced apart from the function buttons.

10. A smart wearable device, characterized in that, The device includes the smart host as described in any one of claims 1-9, and further includes a wearable component connected to the base for wearing the smart host on a user.