A filming device

By designing a shooting device with a fixed housing, storage slot, and vertical flip component on a smart wearable terminal, the wear and tear problem caused by long-term exposure of the camera is solved, achieving lens protection and rapid flipping, extending service life, and improving shooting effect and user experience.

CN224289908UActive Publication Date: 2026-05-26SHENZHEN HECHENG VIDEO TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN HECHENG VIDEO TECH CO LTD
Filing Date
2025-07-16
Publication Date
2026-05-26

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  • Figure CN224289908U_ABST
    Figure CN224289908U_ABST
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Abstract

This invention provides a shooting device mounted on a smart wearable terminal. The shooting device includes a fixed housing, a shooting mechanism, and a fixing mechanism for limiting the rotation of the shooting mechanism. The outer surface of the fixed housing is recessed inward to form a storage groove for housing the shooting mechanism. The shooting mechanism includes a flip housing, a shooting lens, and a vertical flipping component fixedly connected to the bottom of the storage groove and used to drive the flip housing to rotate. The flip housing has a clearance hole through it at the corresponding position of the shooting lens. When the shooting mechanism is stored in the storage groove, the side wall of the storage groove covers the clearance hole. The shooting device provided by this invention protects the shooting lens, which helps to ensure the shooting effect of the device. At the same time, the vertical flipping component enables vertical flipping, ensuring the rapid flipping of the shooting mechanism and its rotation to a preset angle, ensuring the normal use of the shooting device and extending its service life.
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Description

Technical Field

[0001] This utility model belongs to the field of intelligent wearable terminal accessories technology, and more specifically, it relates to a shooting device. Background Technology

[0002] With the increasing demand for security monitoring, sports recording, and mobile shooting, wearable camera components have been widely used in many fields due to their portability and ability to capture first-person perspective data. For example, in the field of law enforcement recording, they can accurately record the law enforcement process and ensure fair and transparent law enforcement; in industrial inspections, they can help staff efficiently record equipment status; and outdoor sports enthusiasts also use them to record exciting moments.

[0003] However, existing vertically tilting camera components on the market have several problems that urgently need to be addressed. While these components can achieve vertical tilting and folding, the camera remains exposed after tilting and folding without any protective structure. In actual use, the camera, constantly exposed, is highly susceptible to wear and tear, potentially leading to lens breakage. This significantly impacts the camera's lifespan and image quality. Furthermore, traditional tilting components rely on springs to provide torque for camera tilting. With frequent and prolonged use, these springs are prone to aging and damage, causing the torque to gradually decrease. Ultimately, this results in the inability to support rapid camera tilting or achieving the required tilt angle, severely affecting the normal performance of the camera component. Utility Model Content

[0004] The purpose of this invention is to provide a shooting device to solve the technical problems existing in the prior art where, in actual use, the camera is exposed to the outside of the flip component for a long time, affecting the lifespan and shooting effect of the camera. Furthermore, the method of using a spring to provide torque to drive the flipping is prone to low torque due to spring aging, which cannot support the rapid flipping of the camera or the flipping angle not meeting the standard, seriously affecting the normal use of the camera component.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: A shooting device is provided, mounted on a smart wearable terminal. The shooting device includes a fixed housing fixedly connected to the smart wearable terminal, a shooting mechanism rotatably mounted on the fixed housing, and a fixing mechanism mounted on the fixed housing for restricting the rotation of the shooting mechanism. The outer surface of the fixed housing is recessed inward to form a storage groove for accommodating the shooting mechanism. The shooting mechanism includes a flip housing, a shooting lens mounted inside the flip housing, and a vertical flipping component fixedly connected to the bottom of the storage groove for driving the flip housing to rotate. A clearance hole is provided through the flip housing at the corresponding position of the shooting lens. When the shooting mechanism is stored in the storage groove, the side wall of the storage groove covers the clearance hole.

[0006] In one embodiment, the flipping housing is provided with a mounting part, the end face of the mounting part is recessed inward to form a first receiving groove, the side wall of the receiving groove is recessed inward to form a rotating groove, the opening of the first receiving groove and the opening of the rotating groove are arranged facing each other, and the first receiving groove and the rotating groove enclose a mounting area for mounting the vertical flipping component.

[0007] In one embodiment, the vertical flipping assembly includes a rotating shaft rotatably mounted on the mounting portion, a first elastic member sleeved on the rotating shaft, and a rotating member sleeved on the rotating shaft for limiting the rotation angle of the flipping housing. One end of the first elastic member abuts against the rotating member, and the other end abuts against the bottom of the first receiving groove. The mounting portion is provided with a through hole for the rotating shaft to pass through, and the fixed housing is provided with a rotating hole rotatably connected to the rotating shaft.

[0008] In one embodiment, the rotating component includes a first rotating part fixedly connected in the rotating groove, and a second rotating part meshing with the first rotating part and fixedly connected to the flipping housing. The end face of the first rotating part facing the second rotating part is symmetrically provided with two first limiting protrusions about the rotating axis. The end face of the second rotating part facing the first rotating part is symmetrically provided with two second limiting protrusions about the rotating axis. The first limiting protrusions and the second limiting protrusions are staggered. The sidewalls on opposite sides of the first limiting protrusions and the sidewalls on opposite sides of the second limiting protrusions are both inclined downwards.

[0009] In one embodiment, the shooting mechanism further includes a flexible circuit board electrically connected to the shooting lens.

[0010] In one embodiment, the fixing mechanism includes a snap-fit ​​member connected to the flip-up housing, a pressing member protruding from the surface of the fixing housing and used to drive the snap-fit ​​member to slide relative to the fixing housing, and a second elastic member used to drive the snap-fit ​​member to slide relative to the fixing housing. The flip-up housing is provided with a snap-fit ​​groove adapted to the snap-fit ​​member, the fixing housing is provided with a snap-fit ​​hole through which the snap-fit ​​member passes, and the fixing housing is provided with a pressing hole through which the pressing member passes.

[0011] In one embodiment, the pressing member includes a pressing portion protruding from the surface of the fixed housing and a driving portion abutting against the snap-fit ​​member. The snap-fit ​​member includes a sliding portion abutting against the driving portion and a snap-fit ​​portion snapped into the flip housing. The sliding portion is provided with a second receiving groove for the second elastic member portion to be inserted.

[0012] In one embodiment, the driving part has a first inclined surface that fits against the sliding part, and the sliding part has a second inclined surface that fits against the driving part.

[0013] In one embodiment, a limiting baffle is provided on the inner wall of the fixed housing, one end of the second elastic member abuts against the limiting baffle, and the other end abuts against the bottom of the second receiving groove.

[0014] In one embodiment, the inner wall of the fixed housing is provided with a first guide structure for limiting the movement direction of the snap-fit ​​component, and the snap-fit ​​component is provided with a second guide structure adapted to the first guide structure.

[0015] The beneficial effects of the shooting device provided by this utility model are as follows: Compared with the prior art, the shooting device of this utility model is set on a smart wearable terminal. The shooting device includes a fixed housing fixedly connected to the smart wearable terminal, a shooting mechanism rotatably set on the fixed housing, and a fixed mechanism set on the fixed housing for limiting the rotation of the shooting mechanism; the outer surface of the fixed housing is recessed inward to form a storage groove for storing the shooting mechanism; the shooting mechanism includes a flip housing, a shooting lens set in the flip housing, and a vertical flipping component fixedly connected to the bottom of the storage groove for driving the flip housing to rotate. The flip housing has a clearance hole through the corresponding position of the shooting lens. When the shooting mechanism is stored in the storage groove, the side wall of the storage groove covers the clearance hole; the shooting device is fixedly connected to the smart wearable terminal through the fixed housing, the shooting mechanism is rotatably set on the fixed housing, and the storage groove for storing the shooting mechanism is provided on the fixed housing. When the user does not need to shoot, the shooting mechanism can be stored in the storage slot, and the fixing mechanism restricts its rotation relative to the fixed housing. The shooting lens, located in the flip housing, uses a vertical flip component to allow the flip housing to rotate vertically relative to the fixed housing and move out of the storage slot when the user needs to shoot. At this time, the shooting lens shoots through the clearance hole on the flip housing. When the shooting is finished, the user manually presses to put the shooting mechanism into the storage slot of the fixed housing. At this time, the side wall of the storage slot covers the clearance hole, which protects the shooting lens and prevents it from being exposed to the outer surface of the shooting device for a long time, thus avoiding wear and tear. This helps to ensure the shooting effect of the shooting device. At the same time, the vertical flip component enables the shooting mechanism to rotate quickly and to a preset angle, ensuring the normal use of the shooting device, extending its service life and improving the user experience. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments or the prior art 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.

[0017] Figure 1 A three-dimensional structural diagram of the shooting device provided by this utility model in its retracted state. Figure 1 ;

[0018] Figure 2 A three-dimensional structural diagram of the shooting device provided by this utility model in its unfolded state. Figure 1 ;

[0019] Figure 3A three-dimensional structural diagram of the shooting device provided by this utility model in its unfolded state. Figure 2 ;

[0020] Figure 4 An exploded structural diagram of the imaging device provided by this utility model;

[0021] Figure 5 A cross-sectional structural schematic diagram of the imaging device provided by this utility model;

[0022] Figure 6 An exploded view of the vertical flipping component of the shooting device provided by this utility model;

[0023] Figure 7 A three-dimensional structural diagram of the shooting device provided by this utility model in its retracted state. Figure 2 ;

[0024] Figure 8 A three-dimensional structural diagram of the fixing mechanism of the shooting device provided by this utility model.

[0025] The following are the labeling elements in the figure:

[0026] 1. Fixed housing; 11. Storage slot; 111. Rotating slot; 12. Rotating hole; 13. Limiting baffle; 14. First guide structure;

[0027] 2. Shooting mechanism; 21. Flip-over housing; 211. Clearance hole; 212. Mounting part; 2121. First receiving groove; 2122. Through hole; 213. Snap-fit ​​groove; 22. Shooting lens; 23. Flexible circuit board; 24. Vertical flip assembly; 241. Rotating shaft; 242. First elastic element; 243. Rotating element; 2431. First rotating part; 2432. Second rotating part; 2433. First limiting protrusion; 2434. Second limiting protrusion;

[0028] 3. Fixing mechanism; 31. Snap-fit ​​part; 311. Sliding part; 3111. Second receiving groove; 3112. Second inclined surface; 312. Snap-fit ​​part; 313. Second guide structure; 32. Pressing part; 321. Pressing part; 322. Driving part; 3221. First inclined surface; 33. Second elastic element. Detailed Implementation

[0029] To make the technical problems, technical solutions, and beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0030] It should be noted that when a component is referred to as being "fixed to" or "set on" another component, it can be directly on or indirectly on that other component. When a component is referred to as being "connected to" another component, it can be directly connected to or indirectly connected to that other component.

[0031] It should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0032] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0033] Please refer to the following: Figures 1 to 4An embodiment of this utility model provides a shooting device, which is installed on a smart wearable terminal. The shooting device includes a fixed housing 1 fixedly connected to the smart wearable terminal, a shooting mechanism 2 rotatably mounted on the fixed housing 1, and a fixing mechanism 3 mounted on the fixed housing 1 for limiting the rotation of the shooting mechanism 2. The outer surface of the fixed housing 1 is recessed inward to form a storage groove 11 for storing the shooting mechanism 2. The shooting mechanism 2 includes a flip housing 21, a shooting lens 22 disposed in the flip housing 21, and a fixed connection. A vertical flip assembly 24 is attached to the bottom of the storage slot 11 and is used to drive the flip housing 21 to rotate. The flip housing 21 has a clearance hole 211 through it at the corresponding position of the shooting lens 22. When the shooting mechanism 2 is stored in the storage slot 11, the side wall of the storage slot 11 covers the clearance hole 211. The shooting device is fixedly connected to the smart wearable terminal through the fixed housing 1. The shooting mechanism 2 is rotatably mounted on the fixed housing 1. The fixed housing 1 has a storage slot 11 for storing the shooting mechanism 2. When the user does not need to... When shooting, the shooting mechanism 2 can be stored in the storage slot 11, and its rotation relative to the fixed housing 1 is restricted by the fixing mechanism 3. The shooting lens 22, which is set in the flip housing 21, uses the vertical flip component 24 to enable the flip housing 21 to drive the shooting lens 22 to rotate vertically relative to the fixed housing 1 and move out of the storage slot 11 when the user needs to shoot. At this time, the shooting lens 22 shoots through the clearance hole 211 on the flip housing 21. When the shooting is completed, the user manually presses to put the shooting mechanism 2 into the storage slot 11 of the fixed housing 1. At this time, the side wall of the storage slot 11 covers the clearance hole 211, which protects the shooting lens 22 and prevents the shooting lens 22 from being exposed to the outer surface of the shooting device for a long time, thus avoiding wear and tear. This helps to ensure the shooting effect of the shooting device. At the same time, the vertical flip component 24 enables vertical flipping, which can ensure the rapid flipping of the shooting mechanism 2 and the flipping to the preset angle, ensuring the normal use of the shooting device, extending the service life of the shooting device, and improving the user experience.

[0034] Please refer to further information. Figure 4 In this embodiment, the shooting mechanism 2 also includes a flexible circuit board 23 electrically connected to the shooting lens 22. The flexible circuit board 23 electrically connected to the shooting lens 22 provides the shooting lens 22 with the power required for operation, and at the same time transmits the content captured by the shooting lens 22 to the smart wearable terminal for storage.

[0035] Please refer to the following: Figures 2 to 7In this embodiment, the flip housing 21 of the shooting mechanism 2 is provided with a mounting part 212 for fixing and connecting the vertical flip assembly 24. The end face of the mounting part 212 is recessed inward to form a first receiving groove 2121, and the side wall of the storage groove 11 is recessed inward to form a rotating groove 111. The openings of the first receiving groove 2121 and the rotating groove 111 are arranged facing each other. The first receiving groove 2121 and the rotating groove 111 enclose and form an installation area for installing the vertical flip assembly 24. Through the installation area formed by the first receiving groove 2121 of the mounting part 212 and the rotating groove 111 on the fixed housing 1, the vertical flip assembly 24 is stably set in a preset position, so that the flip housing 21 can be rotatably set on the fixed housing 1 and can be stored in the storage groove 11.

[0036] Please refer to further information. Figure 5 and Figure 6 In this embodiment, the vertical flipping assembly 24 includes a rotating shaft 241 rotatably mounted on the mounting portion 212, a first elastic member 242 sleeved on the rotating shaft 241, and a rotating member 243 sleeved on the rotating shaft 241 and used to limit the rotation angle of the flipping housing 21. One end of the first elastic member 242 abuts against the rotating member 243, and the other end abuts against the bottom of the first receiving groove 2121. The mounting portion 212 is provided with a through hole 2122 for the rotating shaft 241 to pass through, for fixing... The housing 1 is provided with a rotating hole 12 for rotatably connecting the rotating shaft 241. The rotating shaft 241 is rotatably positioned in the mounting area through the through hole 2122 provided on the mounting part 212 and the rotating hole 12 provided on the fixed housing 1. The first elastic member 242 and the rotating member 243 are both sleeved on the rotating shaft 241. Since the two ends of the first elastic member 242 abut against the rotating member 243 and the bottom of the first receiving groove 2121 respectively, when the shooting device is in the storage state, the shooting mechanism 2 retracts. When the camera is placed into the storage slot 11, the rotating component 243 slides relative to the rotating shaft 241 towards the first receiving slot 2121, compressing the first elastic component 242. The fixing mechanism 3 restricts the rotation of the shooting mechanism 2 relative to the fixed housing 1, keeping the first elastic component 242 in a contracted state. When the shooting device is in operation, the fixing mechanism 3 releases the rotation restriction on the shooting mechanism 2, and the first elastic component 242 releases its elastic force, causing the rotating component 243 to slide relative to the rotating shaft 241 towards the rotating slot 111, driving the flip housing 21 to flip relative to the fixed housing 1 with the rotating shaft 241 as the rotation center. At the same time, the rotating component 243 restricts the rotation angle of the flip housing 21, allowing the flip housing 21 to rotate at a preset angle for shooting. When the shooting device completes the shooting operation, the user manually presses to place the shooting mechanism 2 into the storage slot 11 of the fixed housing 1, causing the rotating component 243 to slide relative to the rotating shaft 241 and compress the first elastic component 242, keeping the first elastic component 242 in a contracted state.

[0037] Optionally, the rotating component 243 includes a first rotating part 2431 fixedly connected in the rotating groove 111, and a second rotating part 2432 meshing with the first rotating part 2431 and fixedly connected to the tilting housing 21. The end face of the first rotating part 2431 facing the second rotating part 2432 is symmetrically provided with two first limiting protrusions 2433 about the rotating shaft 241. The end face of the second rotating part 2432 facing the first rotating part 2431 is symmetrically provided with two second limiting protrusions 2434 about the rotating shaft 241. The first limiting protrusions 2433 and the second limiting protrusions 2434 are staggered, allowing the first rotating part 2431 to mesh with the fixed... The housing 1 is fixedly connected, restricting the rotation of the first rotating part 2431 relative to the fixed housing 1. The second rotating part 2432 is fixedly connected to the flipping housing 21, restricting the rotation of the second rotating part 2432 relative to the flipping housing 21. The first rotating part 2431 and the second rotating part 2432 are engaged. The two first limiting protrusions 2433 on the first rotating part 2431 and the two second limiting protrusions 2434 on the second rotating part 2432 are symmetrically arranged with the rotation axis 241 as the center of symmetry. The first limiting protrusions 2433 and the second limiting protrusions 2434 are staggered, which can effectively limit the rotation angle of the flipping housing 21 relative to the fixed housing 1, realizing vertical flipping. When the flip-up housing 21 rotates relative to the fixed housing 1 and is placed into the storage slot 11, the second rotating part 2432 rotates relative to the first rotating part 2431. When the flip-up housing 21 is fully placed into the storage slot 11, the first limiting protrusion 2433 and the second limiting protrusion 2434 are positioned opposite each other, causing the rotating part 243 to slide relative to the rotating shaft 241 in the direction of the first receiving slot 2121, and compressing the first elastic member 242. The fixing mechanism 3 restricts the rotation of the shooting mechanism 2 relative to the fixed housing 1, so that the first elastic member 242 is in a contracted state. When the shooting device is in operation, the fixing mechanism 3 releases the rotation restriction on the shooting mechanism 2, and the first elastic member 242... 42. Release the elastic force to make the rotating part 243 slide relative to the rotating shaft 241 in the direction of the rotating groove 111, and drive the flip housing 21 to flip relative to the fixed housing 1 with the rotating shaft 241 as the rotation center. When the flip housing 21 completes a 90-degree rotation, the first limiting protrusion 2433 and the second limiting protrusion 2434 are misaligned to limit the rotation angle of the flip housing 21, so that the flip housing 21 rotates to a preset angle for shooting. The vertical flip component 24 realizes vertical flipping, which can ensure the rapid flipping of the shooting mechanism 2 and the flipping to a preset angle, ensure the normal use of the shooting device, extend the service life of the shooting device, and improve the user experience.

[0038] Optionally, the sidewalls on both sides of the first limiting protrusion 2433 and the sidewalls on both sides of the second limiting protrusion 2434 are inclined downwards, which can reduce the friction force on the second rotating part 2432 when it rotates relative to the first rotating part 2431, making the flip housing 21 rotate more smoothly and improving the user experience.

[0039] Please refer to the following: Figures 7 to 8 In this embodiment, the fixing mechanism 3 includes a snap-fit ​​member 31 that snaps into the flip housing 21, a pressing member 32 that protrudes from the surface of the fixing housing 1 and is used to drive the snap-fit ​​member 31 to slide relative to the fixing housing 1, and a second elastic member 33 that is used to drive the snap-fit ​​member 31 to slide relative to the fixing housing 1. The flip housing 21 is provided with a snap-fit ​​groove 213 that is adapted to the snap-fit ​​member 31. The fixing housing 1 is provided with a snap-fit ​​hole through which the snap-fit ​​member 31 passes, and a pressing hole through which the pressing member 32 passes. A pressing hole is provided through the upper part for the pressing member 32 to pass through, so that the pressing member 32 can pass through the pressing hole from the inside of the fixed housing 1 and protrude from the outer surface of the fixed housing 1, making it convenient for the user to press. A snap-fit ​​hole is provided through the fixed housing 1 for the snap-fit ​​member 31 to pass through, so that the snap-fit ​​member 31 can pass through the snap-fit ​​hole from the inside of the fixed housing 1 and be placed into the snap-fit ​​groove 213 on the flip housing 21, so as to achieve a snap-fit ​​connection with the flip housing 21, thereby realizing the flip housing 21 to be stored in the storage groove 11 and restricting the rotation of the flip housing 21 relative to the fixed housing 1.

[0040] When the shooting mechanism 2 is in the storage state, the locking member 31 of the fixing mechanism 3 passes through the locking hole from the fixed housing 1 and is placed into the locking groove 213 on the flip housing 21, and is locked together with the flip housing 21, restricting the flip housing 21 from rotating relative to the fixed housing 1.

[0041] When the shooting mechanism 2 needs to operate, the user presses the pressing member 32 protruding from the outer surface of the fixed housing 1. The pressing member 32, under external force, is inserted into the fixed housing 1 and drives the locking member 31 to slide relative to the fixed housing 1. At this time, driven by the pressing member 32, the locking member 31 compresses the second elastic member 33 and slides relative to the fixed housing 1, moving out of the locking groove 213 on the flip housing 21, releasing the latching connection with the flip housing 21. At this time, the second elastic member 33 is in a contracted state, and... At the same time, the first elastic element 242 of the vertical flip assembly 24 releases elastic force, causing the rotating element 243 to slide relative to the rotating shaft 241 in the direction of the rotating groove 111, and driving the flip housing 21 to flip relative to the fixed housing 1 with the rotating shaft 241 as the rotation center. When the flip housing 21 completes a 90-degree rotation, the first limiting protrusion 2433 and the second limiting protrusion 2434 are misaligned to limit the rotation angle of the flip housing 21, so that the flip housing 21 rotates at a preset angle to perform shooting operations.

[0042] When the user releases the pressure on the pressing member 32, that is, when the pressing member 32 is no longer subjected to external force, the second elastic member 33 releases its elastic force, driving the locking member 31 to slide relative to the fixed housing 1 and pass through the locking hole, and protruding on the outer surface of the fixed housing 1. When the shooting mechanism 2 finishes shooting and is stored in the storage slot 11, it is snapped into the locking slot 213 on the flip housing 21. At the same time, the pressing member 32 moves relative to the fixed housing 1 and passes through the pressing hole under the driving action of the locking member 31, and protrudes on the surface of the fixed housing 1, making it convenient for the user to perform subsequent pressing operations.

[0043] Optionally, the pressing member 32 includes a pressing portion 321 protruding from the surface of the fixed housing 1 and a driving portion 322 abutting against the locking member 31. The locking member 31 includes a sliding portion 311 abutting against the driving portion 322 and a locking portion 312 snapping into the flip housing 21. The sliding portion 311 is provided with a second receiving groove 3111 into which the second elastic member 33 is partially inserted. By pressing the pressing portion 321 protruding from the outer surface of the fixed housing 1, the user drives the driving portion 322 abutting against the locking member 31 to slide relative to the fixed housing 1, thereby driving the sliding portion 311 abutting against the driving portion 322 relative to the fixed housing 1. The shell 1 slides, thereby driving the locking part 312 to slide relative to the fixed shell 1 and move out of the locking groove 213 of the flip shell 21, releasing the snap connection between the shell 1 and the flip shell 21. At this time, the second elastic member 33 provided in the second receiving groove 3111 is compressed by the squeezing action of the sliding part 311. By providing a second receiving groove 3111 on the sliding part 311 for the second elastic member 33 to be partially inserted, the second elastic member 33 can be stably set in the preset position, preventing it from falling out of the preset installation position under the action of external compression, which is beneficial to improving the structural stability and reliability of the shooting device.

[0044] Optionally, the drive unit 322 has a first inclined surface 3221 that fits against the sliding part 311, and the sliding part 311 has a second inclined surface 3112 that fits against the drive unit 322. Through the fit and transmission of the first inclined surface 3221 and the second inclined surface 3112, the direction of force transmission can be changed, and at the same time, when the drive unit 322 drives the sliding part 311, the overall force on the sliding part 311 is more balanced.

[0045] Optionally, a limiting baffle 13 is provided on the inner wall of the fixed housing 1. One end of the second elastic member 33 abuts against the limiting baffle 13, and the other end abuts against the bottom of the second receiving groove 3111. The second receiving groove 3111 and the limiting baffle 13 enclose and form a receiving area for the second elastic member 33. The second elastic member 33 extends and retracts within the preset receiving area to prevent it from dislodging from the preset installation position under the action of external compression, which is beneficial to improving the structural stability and reliability of the shooting device.

[0046] Optionally, the inner wall of the fixed housing 1 is provided with a first guide structure 14 for limiting the movement direction of the snap-fit ​​member 31, and the snap-fit ​​member 31 is provided with a second guide structure 313 adapted to the first guide structure 14. Through the first guide structure 14 on the inner wall of the fixed housing 1 and the second guide structure 313 on the snap-fit ​​member 31 adapted to the first guide structure 14, the snap-fit ​​member 31 slides relative to the fixed housing 1 along a preset movement trajectory, so that the snap-fit ​​member 31 can accurately pass through the snap-fit ​​hole on the fixed housing 1 and protrude. The outer surface of the fixed housing 1 is conducive to improving the structural stability and reliability of the shooting device; optionally, the first guide structure 14 is a guide rail protruding on the inner wall of the fixed housing 1, and the second guide structure 313 is a guide groove formed by the inward recess of the surface of the snap-fit ​​31 that matches the first guide structure 14; or, the first guide structure 14 is a guide groove formed by the inward recess of the inner wall surface of the fixed housing 1 that matches the second guide structure 313, and the second guide structure 313 is a guide rail protruding on the outer surface of the snap-fit ​​31.

[0047] The above description is only a preferred embodiment of this embodiment and is not intended to limit this embodiment. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this embodiment should be included within the protection scope of this embodiment.

Claims

1. A shooting device, installed on a smart wearable terminal, characterized in that: The shooting device includes a fixed housing fixedly connected to the smart wearable terminal, a shooting mechanism rotatably mounted on the fixed housing, and a fixing mechanism mounted on the fixed housing for limiting the rotation of the shooting mechanism; the outer surface of the fixed housing is recessed inward to form a storage groove for receiving the shooting mechanism; the shooting mechanism includes a flip housing, a shooting lens mounted in the flip housing, and a vertical flipping component fixedly connected to the bottom of the storage groove for driving the flip housing to rotate; the flip housing has a clearance hole through the corresponding position of the shooting lens; when the shooting mechanism is stored in the storage groove, the side wall of the storage groove covers the clearance hole.

2. The shooting device as described in claim 1, characterized in that: The flipping housing is provided with a mounting part, the end face of the mounting part is recessed inward to form a first receiving groove, the side wall of the receiving groove is recessed inward to form a rotating groove, the opening of the first receiving groove and the opening of the rotating groove are arranged facing each other, and the first receiving groove and the rotating groove enclose a mounting area for mounting the vertical flipping component.

3. The shooting device as described in claim 2, characterized in that: The vertical flipping assembly includes a rotating shaft rotatably mounted on the mounting portion, a first elastic member sleeved on the rotating shaft, and a rotating member sleeved on the rotating shaft for limiting the rotation angle of the flipping housing. One end of the first elastic member abuts against the rotating member, and the other end abuts against the bottom of the first receiving groove. The mounting portion is provided with a through hole for the rotating shaft to pass through, and the fixed housing is provided with a rotating hole rotatably connected to the rotating shaft.

4. The shooting device as described in claim 3, characterized in that: The rotating component includes a first rotating part fixedly connected in the rotating groove, and a second rotating part meshing with the first rotating part and fixedly connected to the flipping housing. The end face of the first rotating part facing the second rotating part is symmetrically provided with two first limiting protrusions about the rotating axis. The end face of the second rotating part facing the first rotating part is symmetrically provided with two second limiting protrusions about the rotating axis. The first limiting protrusions and the second limiting protrusions are staggered. The sidewalls on opposite sides of the first limiting protrusions and the sidewalls on opposite sides of the second limiting protrusions are both inclined downwards.

5. The shooting device as described in claim 1, characterized in that: The shooting mechanism also includes a flexible circuit board electrically connected to the shooting lens.

6. The imaging device according to any one of claims 1 to 5, characterized in that: The fixing mechanism includes a snap-fit ​​member that is snapped together with the flip-up housing, a pressing member that protrudes from the surface of the fixing housing and is used to drive the snap-fit ​​member to slide relative to the fixing housing, and a second elastic member that is used to drive the snap-fit ​​member to slide relative to the fixing housing. The flip-up housing is provided with a snap-fit ​​groove that is adapted to the snap-fit ​​member. The fixing housing is provided with a snap-fit ​​hole through which the snap-fit ​​member passes, and a pressing hole through which the pressing member passes.

7. The shooting device as described in claim 6, characterized in that: The pressing member includes a pressing part protruding from the surface of the fixed housing and a driving part abutting against the snap-fit ​​member. The snap-fit ​​member includes a sliding part abutting against the driving part and a snap-fit ​​part that is snapped into the flip housing. The sliding part is provided with a second receiving groove for the second elastic member to be inserted.

8. The shooting device as described in claim 7, characterized in that: The driving part has a first inclined surface that fits into the sliding part, and the sliding part has a second inclined surface that fits into the driving part.

9. The shooting device as described in claim 7, characterized in that: A limiting baffle is provided on the inner wall of the fixed housing. One end of the second elastic member abuts against the limiting baffle, and the other end abuts against the bottom of the second receiving groove.

10. The shooting device as described in claim 6, characterized in that: The inner wall of the fixed housing is provided with a first guide structure for restricting the movement direction of the snap-fit ​​component, and the snap-fit ​​component is provided with a second guide structure adapted to the first guide structure.