Quick release structure of wearable device and wearable device
The quick-release structure design solves the problem of inconvenient operation of children's watches when taking pictures, and enables quick separation of the main unit and the base, thus improving the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-30
- Publication Date
- 2026-06-02
AI Technical Summary
Existing children's smartwatches require the strap to be unfastened to adjust the angle during shooting, which is inconvenient and affects the success rate of shooting.
Design a quick-release structure including quick-release components, buttons, elastic elements, sliders, and clips. By pressing the button, the slider slides and disengages from the clips, enabling the main unit to be quickly released from the base for easy separation.
It enables rapid separation of wearable devices, improving the convenience and success rate of shooting for users and enhancing the user experience.
Smart Images

Figure CN224317925U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of smart device technology, and in particular to a quick-release structure for wearable devices and a wearable device. Background Technology
[0002] Currently, with the increasing diversification of functions in children's smartwatches, some have added camera capabilities. However, when it's necessary to photograph objects or homework, the watch strap needs to be unfastened, and sometimes the shot fails due to angle issues. Therefore, there is an urgent need for a new design that allows for a detachable watch body, enabling children's smartwatches to perform more functions. Utility Model Content
[0003] This utility model provides a quick-release structure for a wearable device and the wearable device itself, which enables quick and convenient separation, facilitates user photography, and improves user experience.
[0004] In a first aspect, this utility model provides a quick-release structure for a wearable device, the wearable device including a main unit and a base, including: a quick-release component;
[0005] The quick-release assembly includes a button, a first elastic element, a second elastic element, a first slider, a second slider, a first latch, and a second latch;
[0006] The first end of the main unit is provided with a receiving cavity for accommodating the quick-release assembly; the button is located in the middle of the receiving cavity, and the first slider and the second slider are respectively located on both sides of the button inside the receiving cavity; the lower end of the button has a first inclined surface, a second inclined surface and a first flat surface, the first end of the first slider has a third inclined surface that abuts against the first inclined surface, and the first end of the second slider has a fourth inclined surface that abuts against the second inclined surface;
[0007] The first elastic element is disposed at the second end of the first slider, and the second elastic element is disposed at the second end of the second slider; a first hook is provided at the lower part of the second end of the first slider, and a second hook is provided at the lower part of the second end of the second slider; the first buckle and the second buckle are respectively disposed at the first end of the base corresponding to the first hook and the second hook.
[0008] When the main unit is fastened to the base, the first hook and the first buckle are in a fastened state, and the second hook and the second buckle are in a fastened state. After the button is pressed, the lower end of the button presses the first slider and the second slider to slide, causing the first hook to disengage from the first buckle and the second hook to disengage from the second buckle, thereby detaching the main unit from the base.
[0009] Optionally, a first support column is connected to the upper part of the second end of the first slider, and a second support column is connected to the upper part of the second end of the second slider.
[0010] The first elastic element is sleeved on the first support column, and the second elastic element is sleeved on the second support column.
[0011] Optionally, a first mounting hole is provided on the side of the receiving cavity that contacts the second end of the first slider, and a second mounting hole is provided on the side of the receiving cavity that contacts the second end of the second slider;
[0012] The first end of the first elastic element is sleeved on the first support column, and the second end is inserted into the first mounting hole. The length of the first elastic element is greater than the length of the first support column. The first end of the second elastic element is sleeved on the second support column, and the second end is inserted into the second mounting hole.
[0013] Optionally, the lower side of the receiving cavity is provided with a first limiting surface, a second plane, and a second limiting surface; the first end of the first slider has a third limiting surface opposite to the third inclined surface, and the first end of the second slider has a fourth limiting surface opposite to the fourth inclined surface;
[0014] When the button is pressed, the first inclined surface at the lower end of the button presses against the third inclined surface of the first slider and the second inclined surface presses against the fourth inclined surface of the second slider, causing the first slider and the second slider to slide towards both sides of the button on the second plane. When the first plane of the button abuts against the second plane, the first limiting surface abuts against the third limiting surface, and the second limiting surface abuts against the fourth limiting surface. The first hook disengages from the first latch, and the second hook disengages from the second latch, thereby detaching the main unit from the base.
[0015] When the button is released, the first elastic element causes the first slider to reset, the second elastic element causes the second slider to reset, the third inclined surface of the first slider presses against the first inclined surface of the button, and the fourth inclined surface of the second slider presses against the second inclined surface of the button, thereby resetting the button.
[0016] Optionally, the first hook and the second hook are both oriented toward the center of the quick-release assembly;
[0017] The first buckle faces the first hook, and the second buckle faces the second hook.
[0018] Optionally, the surface of the first hook that contacts the first buckle is a plane, the surface of the second hook that contacts the second buckle is a plane, and the surfaces of the first hook that contacts the first buckle and the second hook that contacts the second buckle are on the same plane.
[0019] Optionally, the lower end of the first buckle is provided with a first I-shaped structure, the lower end of the second buckle is provided with a second I-shaped structure, the base is provided with a first I-shaped groove adapted to the first I-shaped structure and a second I-shaped groove adapted to the second I-shaped structure, the first buckle is fixed in the first I-shaped groove by the first I-shaped structure, and the second buckle is fixed in the second I-shaped groove by the second I-shaped structure.
[0020] Optionally, the lower part of the second end of the host is provided with a first slot and a second slot, and the base is provided with a first fixing buckle and a second fixing buckle at one end corresponding to the second end of the host. When the host and the base are fastened together, the first fixing buckle is inserted into the first slot and the second fixing buckle is inserted into the second slot.
[0021] Optionally, the base is provided with wristband fixing structures at both ends for fixing the wristband.
[0022] Secondly, embodiments of the present invention provide a wearable device, including a quick-release structure for the wearable device as described in any of the first aspects above.
[0023] The quick-release structure for a wearable device provided in this embodiment of the utility model includes a main unit and a base. The quick-release structure includes a quick-release assembly; the quick-release assembly includes a button, a first elastic element, a second elastic element, a first slider, a second slider, a first latch, and a second latch. A receiving cavity is provided at the first end of the main unit to accommodate the quick-release assembly. The button is located in the middle of the receiving cavity. The first slider and the second slider are located on either side of the button within the receiving cavity. The lower end of the button has a first inclined surface, a second inclined surface, and a first flat surface. The first end of the first slider has a third inclined surface that abuts against the first inclined surface, and the first end of the second slider has a third inclined surface that abuts against the second inclined surface. The device has four inclined surfaces. A first elastic element is located at the second end of the first slider, and a second elastic element is located at the second end of the second slider. A first hook and a second hook are located at the lower part of the second end of the first slider and the lower part of the second end of the second slider, respectively. A first latch and a second latch are respectively located on the first end of the base, corresponding to the first and second hooks. When the main unit is fastened to the base, the first hook and the first latch are engaged, and the second hook and the second latch are engaged. Pressing the button causes the lower end of the button to press and slide the first and second sliders, causing the first hook to disengage from the first latch and the second hook to disengage from the second latch, thus releasing the main unit from the base. By pressing the button on the quick-release assembly, the hooks on the sliders separate from the latches on the base, enabling rapid separation of the main unit from the base. This facilitates flipping or disassembling the main unit, meeting the needs of various wearable device applications and improving the user experience. Attached Figure Description
[0024] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0025] Figure 1 A schematic diagram of a quick-release structure for a wearable device provided in an embodiment of this utility model;
[0026] Figure 2 An exploded view of a quick-release structure for a wearable device provided in an embodiment of this utility model;
[0027] Figure 3 A schematic diagram of a quick-release component for a quick-release structure of a wearable device provided in an embodiment of this utility model;
[0028] Figure 4 A schematic diagram of a quick-release component for a quick-release structure of a wearable device provided in an embodiment of this utility model;
[0029] Figure 5A partial enlarged view of a quick-release assembly of a quick-release structure for a wearable device provided in an embodiment of this utility model;
[0030] Figure 6 A schematic diagram of a slot for a quick-release structure of a wearable device provided in an embodiment of this utility model;
[0031] Figure 7 This is a partially enlarged view of a quick-release structure for a wearable device provided in an embodiment of the present utility model.
[0032] Explanation of reference numerals in the attached figures:
[0033] 100. Main unit; 200. Base; 300. Quick-release assembly; 110. First slot; 120. Second slot; 101. First mounting hole; 102. Second mounting hole; 103. First limiting surface; 104. Second plane; 105. Second limiting surface; 210. First buckle; 220. Second buckle; 230. First fixing buckle; 240. Second fixing buckle; 310. Button; 311. First plane; 320. First elastic element; 330. Second elastic element; 340. First slider; 341. First hook; 342. First support column; 343. Third limiting surface; 350. Second slider; 351. Second hook; 352. Second support column; 353. Fourth limiting surface. Detailed Implementation
[0034] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0035] In the description of this utility model, unless otherwise explicitly specified and limited, the positional relationships described by the terms up, down, left, right, etc., refer to the direction when the image is facing the user, that is, the direction of up, down, left, right, etc., with the page as the plane when the image is displayed normally.
[0036] Figure 1 An exemplary embodiment of the quick-release structure of a wearable device provided by the present invention is shown. The wearable device includes a main unit 100 and a base 200. The quick-release structure includes a quick-release component 300.
[0037] Combination Figures 1 to 7As shown, the quick-release assembly 300 includes a button 310, a first elastic element 320, a second elastic element 330, a first slider 340, a second slider 350, a first latch 210, and a second latch 220. The first end of the main unit 100 has a receiving cavity for accommodating the quick-release assembly 300; the button 310 is located in the middle of the receiving cavity, and the first slider 340 and the second slider 350 are respectively located on both sides of the button 310 within the receiving cavity; the lower end of the button 310 has a first inclined surface, a second inclined surface, and a first flat surface 311; the first end of the first slider 340 has a third inclined surface that abuts against the first inclined surface; and the first end of the second slider 350 has a fourth inclined surface that abuts against the second inclined surface. A first elastic element 320 is disposed at the second end of the first slider 340, and a second elastic element 330 is disposed at the second end of the second slider 350. A first hook 341 is provided at the lower part of the second end of the first slider 340, and a second hook 351 is provided at the lower part of the second end of the second slider 350. A first latch 210 and a second latch 220 are respectively disposed on the base 200 at the positions corresponding to the first hook 341 and the second hook 351. When the main unit 100 is fastened to the base 200, the first hook 341 and the first latch 210 are in a fastened state, and the second hook 351 and the second latch 220 are in a fastened state. After pressing the button 310, the lower end of the button 310 presses the first slider 340 and the second slider 350 to slide, causing the first hook 341 to disengage from the first latch 210 and the second hook 351 to disengage from the second latch 220, thereby releasing the main unit 100 from the base 200.
[0038] In practical implementation, the aforementioned host 100 can also incorporate core components such as a battery, motherboard, and display screen. Of course, to further enhance the functionality of the wearable device, modules such as a front camera, rear camera, heart rate sensor, and charging port can also be included. The base 200 can be made of rigid plastic, plastic-steel, or lightweight metal, among other materials.
[0039] like Figure 3 As shown, in order to fix the elastic element, the upper part of the second end of the first slider 340 is connected to the first support column 342, and the upper part of the second end of the second slider 350 is connected to the second support column 352; the first elastic element 320 is sleeved on the first support column 342, and the second elastic element 330 is sleeved on the second support column 352.
[0040] By attaching the elastic element to the support column, one end of the elastic element can be fixed to the slider, preventing the elastic element from detaching from the slider.
[0041] Furthermore, a first mounting hole 101 is provided on the side of the aforementioned receiving cavity that contacts the second end of the first slider 340, and a second mounting hole 102 is provided on the side of the receiving cavity that contacts the second end of the second slider 350; the first end of the first elastic member 320 is sleeved on the first support post 342, and the second end is inserted into the first mounting hole 101, and the length of the first elastic member 320 is greater than the length of the first support post 342; the first end of the second elastic member 330 is sleeved on the second support post 352, and the second end is inserted into the second mounting hole 102.
[0042] By providing a mounting hole on the side of the receiving cavity that contacts the second end of the slider, the second end of the elastic element can be inserted, thereby enabling the elastic element to abut against the main unit 100, and the mounting hole also provides a compression stroke for the elastic element.
[0043] To limit the distance the slider moves, such as Figure 4 As shown, the lower side of the receiving cavity is provided with a first limiting surface 103, a second plane 104, and a second limiting surface 105; the first end of the first slider 340 has a third limiting surface 343 opposite to the third inclined surface, and the first end of the second slider 350 has a fourth limiting surface 353 opposite to the fourth inclined surface; when the button 310 is pressed, the first inclined surface at the lower end of the button 310 presses against the third inclined surface of the first slider 340 and the second inclined surface presses against the fourth inclined surface of the second slider 350, causing the first slider 340 and the second slider 350 to slide on the second plane 104 towards both sides of the button 310, and at the first plane 311 and the second plane 105 of the button 310. When the plane 104 is in contact, the first limiting surface 103 is in contact with the third limiting surface 343105, and the second limiting surface 105 is in contact with the fourth limiting surface 353. The first hook 341 disengages from the first latch 210, and the second hook 351 disengages from the second latch 220, thereby releasing the main unit 100 and the base 200. When the button 310 is released, the first elastic element 320 drives the first slider 340 to reset, and the second elastic element 330 drives the second slider 350 to reset. The third inclined surface of the first slider 340 presses against the first inclined surface of the button 310, and the fourth inclined surface of the second slider 350 presses against the second inclined surface of the button 310, thereby resetting the button 310.
[0044] Figure 4 The solid black line at point A indicates the slope formed by the first slope of button 310 and the third slope of first slider 340. Figure 4The solid black line in the middle (B) indicates the slope formed by the second slope of button 310 and the fourth slope of second slider 350. When button 310 is pressed, the first slope of button 310 presses against the third slope of first slider 340, and the second slope presses against the fourth slope of second slider 350. This causes the lower side of the first end of first slider 340 to abut against the second plane 104 of the receiving cavity, sliding to the left on the second plane 104 and compressing the first elastic member 320 until the third limiting surface 343105 of first slider 340 contacts the first limiting surface 103 of the receiving cavity, thus restricting the further sliding of first slider 340. Similarly, the lower side of the first end of second slider 350 abuts against the second plane 104 of the receiving cavity, sliding to the right on the second plane 104 and compressing the second elastic member 330 until the fourth limiting surface 353 of second slider 350 contacts the second limiting surface 105 of the receiving cavity, thus restricting the further sliding of second slider 350. At this time, the first plane 311 of the button 310 will also abut against the second plane 104 of the receiving cavity, restricting the button 310 from being pressed down further.
[0045] When the user releases button 310, the first slider 340, under the action of the first elastic member 320, slides to the right, pressing the first inclined surface of button 310 through its third inclined surface. The second slider 350, under the action of the second elastic member 330, slides to the left, pressing the second inclined surface of button 310 through its fourth inclined surface. Pressed by the first and second sliders 340 and 350, button 310 moves upward until button 310, the first slider 340, and the second slider 350 return to their positions before being pressed.
[0046] Furthermore, such as Figure 3 As shown, the directions of the first hook 341 and the second hook 351 are both towards the center of the quick-release assembly 300. Correspondingly, the first latch 210 faces the first hook 341, and the second latch 220 faces the second hook 351. That is to say, the directions of the hooks of the first hook 341 and the second hook 351 are both towards the vertical line of the quick-release assembly 300, and the first hook 341 and the second hook 351 are arranged opposite to each other.
[0047] To ensure the hook and buckle engage properly, such as Figure 5 As shown, the surface of the first hook 341 that contacts the first buckle 210 is a plane, and the surface of the second hook 351 that contacts the second buckle 220 is a plane. Furthermore, the surfaces of the first hook 341 and the first buckle 210, and the surfaces of the second hook 351 and the second buckle 220, are on the same plane. That is, as... Figure 5As shown in the enlarged view at point C, the solid black line at point D indicates the plane in contact between the second hook 351 and the second buckle 220.
[0048] To secure the first snap fastener 210 and the second snap fastener 220 to the base 200, the lower end of the first snap fastener 210 has a first I-shaped structure, and the lower end of the second snap fastener 220 has a second I-shaped structure. The base 200 has a first I-shaped groove that matches the first I-shaped structure and a second I-shaped groove that matches the second I-shaped structure. The first snap fastener 210 is secured to the first I-shaped groove by the first I-shaped structure, and the second snap fastener 220 is secured to the second I-shaped groove by the second I-shaped structure. In other words, the first I-shaped structure is embedded in the first I-shaped groove, and the second I-shaped structure is embedded in the second I-shaped groove.
[0049] like Figure 6 As shown, the lower part of the second end of the main unit 100 is provided with a first card slot 110 and a second card slot 120. Correspondingly, as... Figure 2 As shown, the base 200 has a first fixing buckle 230 and a second fixing buckle 240 at one end corresponding to the second end of the main unit 100. When the main unit 100 and the base 200 are fastened together, the first fixing buckle 230 is inserted into the first slot 110, and the second fixing buckle 240 is inserted into the second slot 120. Taking the first slot 110 and the first fixing buckle 230 as an example, Figure 7 shows a cross-sectional view of the first slot 110 and the first fixing buckle 230. Figure 7 As shown in the enlarged view at point E, the first fixing buckle 230 is embedded in the first slot 110.
[0050] When the main unit 100 is detached from the base 200, the second end of the main unit 100 is removed from the first fixing clip 230 and the second fixing clip 240 on the base 200, which allows the main unit 100 to be separated from the base 200. The main unit 100 can be completely removed, and the user can hold the main unit 100 to perform corresponding video, photo and other functions.
[0051] In addition, as an achievable embodiment, a flip axis can also be provided at the position corresponding to the second end of the main unit 100 and the base 200. When the quick-release assembly 300 is open, the main unit 100 can achieve a flipping movement relative to the base 200 through the flip axis.
[0052] In practical use, as one implementation, the flipping shaft may include a shaft fixing seat and a through shaft. The shaft fixing seat is located on the base 200 and has a hollow structure. The through shaft passes through the hollow structure, and both ends of the through shaft are fixed to the main unit 100. This utility model embodiment only shows one implementation of the flipping shaft, and various flipping shafts in the prior art can also be used in the embodiments of this utility model.
[0053] The flip axis can be made of alloy material, which can support multi-angle positioning.
[0054] The base 200 has wristband fixing structures at both ends for securing the wristband. These wristband fixing structures can be wristband fixing shafts. Alternatively, a dual-axis quick-release structure can be used, which is compatible with standard wristbands currently on the market. A silicone dust cover needs to be installed at the interface.
[0055] Based on the same technical concept, embodiments of the present invention provide a wearable device, including a quick-release structure of the wearable device as described in any of the above embodiments.
[0056] The quick-release structure for a wearable device provided in this embodiment of the utility model includes a main unit 100 and a base 200. The quick-release structure includes a quick-release assembly 300, comprising a button 310, a first elastic element 320, a second elastic element 330, a first slider 340, a second slider 350, a first latch 210, and a second latch 220. A receiving cavity is provided at the first end of the main unit 100 to accommodate the quick-release assembly 300. The button 310 is located in the middle of the receiving cavity. The first slider 340 and the second slider 350 are located on either side of the button 310 within the receiving cavity. The lower end of the button 310 has a first inclined surface, a second inclined surface, and a first flat surface 311. The first end of the first slider 340 has a third inclined surface that abuts against the first inclined surface, and the first end of the second slider 350 has a fourth inclined surface that abuts against the second inclined surface. The first elastic element 320... The second elastic element 330 is disposed at the second end of the first slider 340, and the second elastic element 330 is disposed at the second end of the second slider 350. The lower part of the second end of the first slider 340 is provided with a first hook 341, and the lower part of the second end of the second slider 350 is provided with a second hook 351. The first buckle 210 and the second buckle 220 are respectively disposed on the first end of the base 200 corresponding to the positions of the first hook 341 and the second hook 351. When the main unit 100 is fastened to the base 200, the first hook 341 and the first buckle 210 are in a fastened state, and the second hook 351 and the second buckle 220 are in a fastened state. After pressing the button 310, the lower end of the button 310 presses the first slider 340 and the second slider 350 to slide, causing the first hook 341 to disengage from the first buckle 210 and the second hook 351 to disengage from the second buckle 220, thereby realizing the detachment of the main unit 100 from the base 200. By pressing the first slider 340 and the second slider 350 with the button 310 on the quick-release component 300, the hooks on the sliders are separated from the buckles on the base 200, which enables the quick separation of the main unit 100 and the base 200. This facilitates the flipping or disassembly of the main unit 100, meets the application requirements of wearable devices in multiple scenarios, and improves the user experience.
[0057] Although alternative embodiments of the present invention have been described, those skilled in the art, upon learning the basic inventive concept, can make further changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the alternative embodiments as well as all changes and modifications falling within the scope of the present invention.
[0058] Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.
Claims
1. A quick-release structure for a wearable device, the wearable device comprising a main unit and a base, characterized in that, include: Quick-release components; The quick-release assembly includes a button, a first elastic element, a second elastic element, a first slider, a second slider, a first latch, and a second latch; The first end of the main unit is provided with a receiving cavity for accommodating the quick-release assembly; the button is located in the middle of the receiving cavity, and the first slider and the second slider are respectively located on both sides of the button inside the receiving cavity; the lower end of the button has a first inclined surface, a second inclined surface and a first flat surface, the first end of the first slider has a third inclined surface that abuts against the first inclined surface, and the first end of the second slider has a fourth inclined surface that abuts against the second inclined surface; The first elastic element is disposed at the second end of the first slider, and the second elastic element is disposed at the second end of the second slider; a first hook is provided at the lower part of the second end of the first slider, and a second hook is provided at the lower part of the second end of the second slider; the first buckle and the second buckle are respectively disposed at the first end of the base corresponding to the first hook and the second hook. When the main unit is fastened to the base, the first hook and the first buckle are in a fastened state, and the second hook and the second buckle are in a fastened state. After the button is pressed, the lower end of the button presses the first slider and the second slider to slide, causing the first hook to disengage from the first buckle and the second hook to disengage from the second buckle, thereby detaching the main unit from the base.
2. The quick-release structure of the wearable device as described in claim 1, characterized in that, The upper part of the second end of the first slider is connected to a first support column, and the upper part of the second end of the second slider is connected to a second support column. The first elastic element is sleeved on the first support column, and the second elastic element is sleeved on the second support column.
3. The quick-release structure of the wearable device as described in claim 2, characterized in that, The side of the receiving cavity that contacts the second end of the first slider is provided with a first mounting hole, and the side of the receiving cavity that contacts the second end of the second slider is provided with a second mounting hole. The first end of the first elastic element is sleeved on the first support column, and the second end is inserted into the first mounting hole. The length of the first elastic element is greater than the length of the first support column. The first end of the second elastic element is sleeved on the second support column, and the second end is inserted into the second mounting hole.
4. The quick-release structure of the wearable device as described in claim 3, characterized in that, The lower side of the cavity is provided with a first limiting surface, a second plane and a second limiting surface; the first end of the first slider has a third limiting surface opposite to the third inclined surface, and the first end of the second slider has a fourth limiting surface opposite to the fourth inclined surface; When the button is pressed, the first inclined surface at the lower end of the button presses against the third inclined surface of the first slider and the second inclined surface presses against the fourth inclined surface of the second slider, causing the first slider and the second slider to slide towards both sides of the button on the second plane. When the first plane of the button abuts against the second plane, the first limiting surface abuts against the third limiting surface, and the second limiting surface abuts against the fourth limiting surface. The first hook disengages from the first latch, and the second hook disengages from the second latch, thereby detaching the main unit from the base. When the button is released, the first elastic element causes the first slider to reset, the second elastic element causes the second slider to reset, the third inclined surface of the first slider presses against the first inclined surface of the button, and the fourth inclined surface of the second slider presses against the second inclined surface of the button, thereby resetting the button.
5. The quick-release structure of the wearable device as described in claim 4, characterized in that, The first hook and the second hook are both oriented toward the center of the quick-release assembly; The first buckle faces the first hook, and the second buckle faces the second hook.
6. The quick-release structure of the wearable device as described in claim 5, characterized in that, The surface of the first hook that contacts the first buckle is a plane, the surface of the second hook that contacts the second buckle is a plane, and the surfaces of the first hook that contacts the first buckle and the second hook that contacts the second buckle are on the same plane.
7. The quick-release structure of the wearable device as described in claim 6, characterized in that, The lower end of the first buckle is provided with a first I-shaped structure, and the lower end of the second buckle is provided with a second I-shaped structure. The base is provided with a first I-shaped groove adapted to the first I-shaped structure and a second I-shaped groove adapted to the second I-shaped structure. The first buckle is fixed in the first I-shaped groove by the first I-shaped structure, and the second buckle is fixed in the second I-shaped groove by the second I-shaped structure.
8. The quick-release structure of the wearable device as described in claim 1, characterized in that, The lower part of the second end of the host is provided with a first slot and a second slot. The base is provided with a first fixing buckle and a second fixing buckle at one end corresponding to the second end of the host. When the host and the base are fastened together, the first fixing buckle is inserted into the first slot and the second fixing buckle is inserted into the second slot.
9. The quick-release structure of the wearable device as described in any one of claims 1 to 8, characterized in that, The base has wristband fixing structures at both ends for fixing the wristband.
10. A wearable device, characterized in that, Includes the quick-release structure of the wearable device as described in any one of claims 1 to 9.