Selfie stick and selfie device
By introducing induction modules and wireless communication modules between the selfie stick and the shooting device, the linkage control of the physical changes of the selfie stick and the working mode of the shooting device is achieved, which solves the problem that the existing selfie stick needs to be manually controlled, and improves operation convenience and battery utilization efficiency.
Patent Information
- Application Number
- CN202422005703.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-08-15
AI Technical Summary
The existing selfie stick requires manual control buttons to change the working mode of the shooting device, which is inconvenient to operate.
By introducing a sensing module and a wireless communication module between the self-portrait stick and the shooting device, the working mode of the shooting device is automatically controlled by using the physical changes of the self-portrait stick to realize the linkage control between the self-portrait stick and the shooting device.
It improves operation convenience. The camera automatically turns on when the selfie stick is expanded and turns off when it is folded, reducing manual operation steps and improving user experience and battery utilization efficiency.
Smart Images

Figure CN223274174U_ABST
Abstract
Description
Technical Field
[0001] The present application belongs to the field of shooting auxiliary equipment, and in particular relates to a selfie stick and a selfie device. Background Art
[0002] Currently, it is necessary to manually control the buttons on the selfie stick to change the working mode of the camera, for example, the selfie stick supports turning the camera on or off by pressing a button. The present application at least improves the structure of the selfie stick, thereby changing the way the selfie stick controls the camera. Utility Model Content
[0003] The present application provides a selfie stick and a selfie device, which realize the change of the relative position between the selfie stick and the shooting device, and the linkage control of the working mode of the shooting device.
[0004] The technical solution of the embodiment of the present application is implemented as follows:
[0005] A selfie stick, comprising:
[0006] main body;
[0007] a camera connecting member mounted on the main body, having a first end connected to the main body and a second end connected to the camera connecting member, wherein the main body and the camera can form different relative positions based on the camera connecting member;
[0008] Wherein, when the main body and the shooting device are in a first relative position, the shooting device is in a first working mode;
[0009] When the main body and the shooting device are in a second relative position, the shooting device is in a second working mode, and the power consumption of the shooting device in the first working mode is less than the power consumption in the second working mode.
[0010] In the above solution, the selfie stick further includes:
[0011] A first sensing module is disposed in the main body;
[0012] a first wireless communication module, disposed in the main body, and establishing communication connections with the first sensing module and the second sensing module of the photographing device respectively;
[0013] Among them, the first wireless communication module is used to obtain the first posture parameter detected by the first sensing module and the second posture parameter detected by the second sensing module; based on the first posture parameter and the second posture parameter, determine the relative position formed by the subject and the shooting device.
[0014] In the above scheme, the first wireless communication module is used to send a mode switching signal to the second wireless communication module of the shooting device when the main body and the shooting device are in the second relative position, and the mode switching signal is used to control the shooting module of the shooting device to switch from the off state or the sleep state to the on state.
[0015] In the above solution, the selfie stick further includes:
[0016] a micro switch disposed in the main body, the camera being connected to the main body via the camera connector, such that the micro switch is switched from an off state to an on state by a force applied from the camera;
[0017] When the micro switch is in the on state, a trigger signal is sent to the first wireless communication module and the first sensing module, and the trigger signal is used to wake up the first wireless communication module and the first sensing module.
[0018] In the above solution, the first wireless communication module is used to send a connection request to the second wireless communication module of the shooting device, and complete pairing connection with the second wireless communication module when receiving a connection response from the second wireless communication module.
[0019] In the above scheme, the first wireless communication module is used to send a sleep signal to the first wireless communication module and the first sensing module when it does not receive a connection response from the second wireless communication module. The sleep signal is used to control the first wireless communication module and the first sensing module to enter a sleep state.
[0020] In the above solution, the first end of the camera connecting member and the second end of the camera connecting member are opposite ends, and the camera connecting member further has an opposite third end and a fourth end;
[0021] The selfie stick also includes:
[0022] A sliding connector is installed on the third end of the shooting device connector. Based on the sliding connector, the main body can move around the outer surfaces of at least two adjacent ends of the third end of the shooting device connector, the first end of the shooting device connector, and the fourth end of the shooting device connector, so that the main body and the shooting device form different relative positions.
[0023] In the above solution, the main body includes a telescopic rod.
[0024] In the above solution, the camera device connector includes a 1 / 4 thread, and the 1 / 4 thread can cooperate with the 1 / 4 threaded hole of the camera device to fix the camera device on the main body.
[0025] A selfie device comprises a selfie stick and a shooting device, wherein all or part of the selfie stick is composed of the above-mentioned selfie stick.
[0026] The present application discloses a selfie stick and a selfie device, wherein the selfie stick includes: a main body; a camera connector mounted on the main body, having a first end connected to the main body and a second end connected to the camera connector, wherein the main body and the camera can form different relative positions based on the camera connector; wherein when the main body and the camera are in a first relative position, the camera is in a first operating mode; and when the main body and the camera are in a second relative position, the camera is in a second operating mode, and the power consumption of the camera in the first operating mode is less than that in the second operating mode. The present application at least improves the structure of the selfie stick, thereby changing the way the selfie stick controls the camera, realizing the change in the relative position between the selfie stick and the camera, and the linkage control with the operating mode of the camera. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 Schematic diagram of the relative positions of a selfie stick and a shooting device provided in an embodiment of the present application Figure 1 ;
[0028] Figure 2 Schematic diagram of the relative positions of a selfie stick and a shooting device provided in an embodiment of the present application Figure 2 ;
[0029] Figure 3 A schematic diagram of the components included in a selfie stick and a shooting device provided in an embodiment of the present application Figure 1 ;
[0030] Figure 4 A schematic diagram of the components included in a selfie stick and a shooting device provided in an embodiment of the present application Figure 2 ;
[0031] Figure 5 A schematic diagram of a selfie stick and a shooting device moving based on a sliding connection provided in an embodiment of the present application Figure 1 ;
[0032] Figure 6 A schematic diagram of a selfie stick and a shooting device moving based on a sliding connection provided in an embodiment of the present application Figure 2 ;
[0033] Figure 7 A schematic structural diagram of a sliding connector provided in an embodiment of the present application;
[0034] Figure 8 A schematic diagram of a linkage control process provided in an embodiment of the present application. DETAILED DESCRIPTION
[0035] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0036] The various specific technical features described in the specific embodiments may be combined in any suitable manner, unless they are inconsistent. For example, different embodiments and technical solutions may be formed by combining different specific technical features. To avoid unnecessary repetition, the various possible combinations of the specific technical features in this utility model will not be described separately.
[0037] In the following description, the terms "first, second, ..." are used solely to distinguish different objects and do not imply any similarities or connections between the objects. It should be understood that the directions "above," "below," "outside," and "inside" refer to directions during normal use. The directions "left" and "right" refer to the left-right directions shown in the corresponding schematic diagrams, which may or may not be the left-right directions during normal use.
[0038] It should be noted that the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or apparatus comprising a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not preclude the presence of additional identical elements in the process, method, article, or apparatus comprising that element. "A plurality" means greater than or equal to two.
[0039] In the related art, it is necessary to manually control the buttons on the selfie stick to change the working mode of the camera, for example, the selfie stick supports turning the camera on or off by pressing a button. The present application at least makes an improvement to the selfie stick to change the way the selfie stick controls the camera.
[0040] The embodiment of the present application provides a selfie stick, such as Figure 1 、 Figure 2 As shown, the selfie stick 1 includes:
[0041] Main body 10;
[0042] The camera connector 20 is mounted on the main body 10 and has a first end 201 connected to the main body 10 and a second end 202 connected to the camera 30. Based on the camera connector 20, the main body 10 and the camera 30 can form different relative positions.
[0043] When the main body 10 and the photographing device 30 are in a first relative position, the photographing device 30 is in a first working mode;
[0044] When the main body 10 and the photographing device 30 are in the second relative position, the photographing device 30 is in the second working mode, and the power consumption of the photographing device 30 in the first working mode is less than that in the second working mode.
[0045] In actual application, based on the shooting device connector 20, the main body 10 can form different relative positions with the shooting device 30. That is to say, the shooting device connector 20 can not only realize the connection between the main body 10 and the shooting device 30 and fix the shooting device 30 on the main body 10, but also support the change of the relative position between the main body 10 and the shooting device 30.
[0046] In actual application, the relative positions of the main body 10 and the shooting device 30 are different, the angles formed between the main body 10 and the shooting device 30 are different, and the space occupied by the main body 10 and the shooting device 30 changes accordingly.
[0047] In actual application, when the main body 10 and the shooting device 30 are in a first relative position, the shooting device 30 is in a first working mode; when the main body 10 and the shooting device 30 are in a second relative position, the shooting device 30 is in a second working mode, and the power consumption of the shooting device 30 in the first working mode is less than the power consumption in the second working mode; that is, when the main body 10 and the shooting device 30 change from a first relative position to a second relative position, the shooting device 30 switches from the first working mode to the second working mode, realizing the relative position between the selfie stick 1 and the shooting device 30 (the relative position can refer to the state of the selfie stick) and the linkage control of the working mode of the shooting device 30.
[0048] In a realistic scenario, see Figure 1 As shown, when the main body 10 and the camera 30 are in the second relative position (for example, the angle formed between the main body 10 and the camera 30 is 180 degrees), the camera 30 is in the second operating mode, illustratively, the second operating mode is the power-on mode / wake-up mode. At this time, the state of the selfie stick can be regarded as the unfolded state.
[0049] See also Figure 2As shown, when the main body 10 and the camera 30 are in a first relative position (for example, the angle formed between the main body 10 and the camera 30 is 0 degrees), the camera 30 is in a first operating mode. For example, the first operating mode is the power-off mode / sleep mode. At this point, the selfie stick can be considered to be in a folded and stored state. It should be noted that this application uses the angle formed between the main body 10 and the camera 30 as 180 degrees corresponding to the second relative position, and the angle formed between the main body 10 and the camera 30 as 0 degrees corresponding to the first relative position as an example. Of course, the second relative position and the first relative position can each correspond to an angle range. For example, the angle range corresponding to the second relative position is 90 < θ ≤ 180, and the angle range corresponding to the first relative position is 0 ≤ θ < 30. This application does not specifically limit the angle ranges corresponding to the second and first relative positions, and can be flexibly set according to actual needs.
[0050] In the related art, non-automated folding sticks only support the control of the shooting device (such as a camera) through button operation. This application improves on this by combining the physical changes of the selfie stick to achieve a more efficient control method: when the selfie stick is unfolded, the camera automatically turns on; when the selfie stick is folded, the camera automatically turns off. This intelligent linkage design greatly improves the convenience of operation.
[0051] The selfie stick provided by the present application includes: a main body; a camera connector mounted on the main body, having a first end connected to the main body and a second end connected to the camera connector. Based on the camera connector, the main body can form different relative positions with the camera. When the main body and the camera are in the first relative position, the camera is in a first operating mode; when the main body and the camera are in the second relative position, the camera is in a second operating mode. The power consumption of the camera in the first operating mode is less than that in the second operating mode. The present application at least improves the structure of the selfie stick, thereby changing the way the selfie stick controls the camera, realizing the change in the relative position between the selfie stick and the camera, and the linkage control of the camera operating mode.
[0052] In some embodiments, see Figure 3 As shown, the selfie stick 1 also includes:
[0053] The first sensing module 101 is disposed in the main body 10;
[0054] The first wireless communication module 102 is provided in the main body 10 and establishes communication connections with the first sensing module 101 and the second sensing module 301 of the camera 30;
[0055] Among them, the first wireless communication module 102 is used to obtain the first posture parameter detected by the first sensing module 101 and the second posture parameter detected by the second sensing module 301; based on the first posture parameter and the second posture parameter, determine the relative position formed by the main body 10 and the shooting device 30.
[0056] In actual application, the wireless communication module in this application includes but is not limited to a low-power / ultra-low-power wireless communication module, which can be a low-power Bluetooth Low Energy (BLE) module. Compared with traditional Bluetooth modules, BLE modules have advantages such as lower power consumption, smaller size and fast connection. The wireless communication module has functions such as data transmission, data processing, and remote control. The first wireless communication module 102 in the main body 10 can establish a communication connection with the second wireless communication module 302 of the shooting device 30 to realize data transmission and remote control.
[0057] In practical applications, the sensing module in this application can sense the rotation and tilt of the object to be measured (including the main body and the camera); the sensing module includes but is not limited to a gyroscope sensor, an accelerometer, etc. Posture parameters include but are not limited to rotation angle, tilt angle, etc.
[0058] In actual application, the first wireless communication module 102 of the selfie stick 1 can obtain its own first posture parameter and the second posture parameter of the shooting device 30, and then based on the first posture parameter and the second posture parameter, accurately determine the relative position between the main body 10 and the shooting device 30.
[0059] In some embodiments, see Figure 3 As shown, the first wireless communication module 102 is used to send a mode switching signal to the second wireless communication module 302 of the camera 30 when the main body 10 and the camera 30 are in the second relative position. The mode switching signal is used to control the camera module (not shown in the figure) of the camera 30 to switch from the off state or the dormant state to the on state. The camera module includes a camera processor, which refers to the part of the camera related to controlling the camera operation.
[0060] Combine Figure 1 and Figure 2 and Figure 3 When the main body 10 and the shooting device 30 are in the second relative position, the first wireless communication module 102 can send a mode switching signal to the second wireless communication module 302 of the shooting device 30 to control the shooting module (not shown in the figure) of the shooting device 30 to switch from the shutdown state or the sleep state to the power-on state.
[0061] In a feasible scenario, the selfie stick can read the angles captured by its own gyroscope and the camera's, compare the two angles, and calculate the difference. Based on this difference, the selfie stick determines whether it is folded. If the selfie stick is folded, the camera remains dormant or powered off. If the selfie stick is unfolded, the system wakes up or powers on the camera so that the user can start shooting with the selfie stick, achieving precise intelligent linkage control.
[0062] In some embodiments, see Figure 4 As shown, the selfie stick 1 further includes: a micro switch 40, which is disposed in the main body 10, and the shooting device 30 is connected to the main body 10 based on the shooting device connector 20, so that the micro switch 40 is subjected to a force from the shooting device 30 and switches from an off state to an on state;
[0063] When the micro switch 40 is in the on state, a trigger signal is sent to the first wireless communication module 102 and the first sensing module 101, and the trigger signal is used to wake up the first wireless communication module 102 and the first sensing module 101. In actual application, the micro switch 40 can be set on the PCB board ( Figure 4 The oval area in the middle is where the PCB is located).
[0064] In actual application, when a shooting device 30 (such as a camera) is connected to the main body 10 based on the shooting device connector 20, a micro switch (also known as a micro contact switch) judgment mechanism will be used during this process. When the camera and the selfie stick are reliably physically connected based on the shooting device connector 20, the first wireless communication module 102 (such as a BLE module) and the first sensing module 101 (such as a gyroscope sensor) of the selfie stick will be briefly triggered / awakened, that is, the selfie stick will be awakened. The purpose of this application using the micro switch 40 to detect a brief wake-up after connection is: first, to prevent false triggering due to the environment, and second, to prevent the selfie stick detection circuit (including the BLE module and the gyroscope sensor) from being constantly turned on and consuming power.
[0065] In some embodiments, see Figure 4 As shown, the camera connector 20 includes a 1 / 4 thread 205, which can cooperate with the 1 / 4 threaded hole 303 of the camera 30 to fix the camera 30 on the main body 10. It can be seen that the camera 30 and the main body 10 of the present application can achieve physical connection through the 1 / 4 thread 205 on the camera connector 20 and the 1 / 4 threaded hole 303 of the camera 30.
[0066] In some embodiments, see Figure 4As shown, the first wireless communication module 102 is used to send a connection request to the second wireless communication module 302 of the shooting device 30, and complete the pairing connection with the second wireless communication module 302 when receiving the connection response from the second wireless communication module 302.
[0067] In actual use, when the ¼ thread 205 connects to the ¼ threaded hole 303, the micro switch 40 is activated, sending a connection request to the second wireless communication module 302 (also known as the camera host) of the camera 30. When the first wireless communication module 102 receives the connection response from the second wireless communication module 302, the first and second wireless communication modules 102 and 302 are paired, allowing the camera host to recognize that the selfie stick has been successfully connected and activate the selfie stick folding status monitoring function.
[0068] In some embodiments, the first wireless communication module 102 is configured to send a sleep signal to the first sensing module 101 when it has not received a connection response from the second wireless communication module 302. The sleep signal is used to control the first sensing module 101 to enter a sleep state. The first wireless communication module 102 is configured to enter a sleep state in response to the sleep signal after sending the sleep signal to the first sensing module 101. The sleep signal may be generated by the first wireless communication module 102 when it has not received a connection response from the second wireless communication module 302.
[0069] In actual use, if the micro switch is triggered, the selfie stick's Bluetooth module and gyroscope sensor will be awakened. Next, a Bluetooth handshake will be performed to determine whether the camera is compatible with the selfie stick. If the handshake fails, it means that the camera may not be compatible with the selfie stick. In this case, the selfie stick will turn off its Bluetooth and gyroscope sensor and return to sleep mode.
[0070] In some embodiments, see Figure 5 and Figure 6 The first end 201 of the camera connecting member 20 and the second end 202 of the camera connecting member are opposite ends, and the camera connecting member 20 further has an opposite third end 203 and a fourth end 204; the selfie stick further includes:
[0071] The sliding connector 50 is mounted on the third end 203 of the camera connector 20. Based on the sliding connector 50, the main body 10 can move around the outer surface of at least two adjacent ends of the third end 203 of the camera connector 20, the first end 201 of the camera connector 20, and the fourth end 204 of the camera connector 20, so that the main body 10 and the camera 30 form different relative positions. For example, see Figure 5As shown, based on the sliding connection member 50, the angle formed between the main body 10 and the shooting device 30 is 180 degrees. At this time, the main body 10 and the shooting device 30 are in the second relative position; see Figure 6 As shown, based on the sliding connection member 50, the angle formed between the main body 10 and the shooting device 30 is 0 degree. At this time, the main body 10 and the shooting device 30 are in a first relative position.
[0072] For example, Figure 7 Schematic diagram of a feasible structure of the sliding connection 50.
[0073] In some embodiments, the main body 10 includes a telescopic rod.
[0074] In practice, the telescopic rod is used to change the length of the main body 10, and the length of the telescopic rod in the retracted state is less than the length of the telescopic rod in the extended state. It should be noted that the telescopic state of the telescopic rod is independent of the unfolded state or the folded state of the selfie stick.
[0075] The selfie stick in the related art increases its overall length due to the camera being attached, making it difficult to easily fit into a pocket during outdoor activities. It also requires a tedious disassembly and assembly process for each use and storage. The selfie stick in this application uses an innovative design that allows it to be extremely shortened even with the camera attached. It can be smoothly folded and stored without having to be separated, significantly improving the convenience of carrying and storage.
[0076] In a realistic scenario, see Figure 8 The linkage control process shown is as follows: when the 1 / 4 thread of the selfie stick is connected to the 1 / 4 thread hole of the camera, it is determined whether the micro switch is activated. When the micro switch is activated, the Bluetooth module and gyroscope sensor of the selfie stick are awakened. Furthermore, a Bluetooth handshake is used to determine whether the camera is compatible with the selfie stick. When the handshake is successful (pairing connection completed), the selfie stick reads the angle detected by itself and the camera's gyroscope sensor. When the handshake fails (pairing connection not completed), the Bluetooth module and gyroscope sensor of the selfie stick are turned off. Furthermore, the selfie stick takes the difference between the two angles to determine whether the selfie stick is in a folded state. When the selfie stick is in a folded state, the camera is controlled to remain in a dormant / powered-off state. When the selfie stick is in an unfolded state, the camera is awakened / powered-on. When the micro switch is not activated, the Bluetooth module and gyroscope sensor of the selfie stick are not awakened (i.e., the selfie stick is in dormant state).
[0077] When the selfie stick and camera are physically connected, the selfie stick's Bluetooth module sends a connection request to the camera host. This allows the camera host to recognize that the selfie stick has been successfully connected and activate the selfie stick's folding status monitoring function. When the selfie stick is folded, the host's gyroscope and the selfie stick's gyroscope are calibrated and the current status is recorded. When the folded selfie stick is unfolded, if the difference between the host's gyroscope and the selfie stick's gyroscope exceeds a threshold, the selfie stick sends a power-on signal to the host via the Bluetooth module, triggering the power-on.
[0078] As can be seen from the above, this application provides a new folding detection mechanism for a folding selfie stick. The selfie stick is slightly adjusted without changing its shape, and its operation method does not change its original properties. It is easy to operate and has high safety and reliability. Operation is even simpler. Users can use a folding selfie stick with a camera for outdoor sports and shoot. They can fold the selfie stick for storage and unfold it for shooting at any time, eliminating the need to press buttons to turn the camera on and off, further freeing their hands and effectively preventing users from forgetting to turn off the camera. This improves battery efficiency and greatly enhances the user's shooting experience.
[0079] In the description of this application, the description with reference to the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the embodiments of the present application. In this application, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine different embodiments or examples described in this application and features of different embodiments or examples without contradiction.
[0080] The foregoing description is merely a preferred embodiment of the present application and is not intended to limit the present application. Persons skilled in the art will readily appreciate that various modifications and variations are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present application shall be included within the scope of protection of the present application.
Claims
1. A selfie stick, characterized in that: include: main body; a camera connecting member mounted on the main body, having a first end connected to the main body and a second end connected to the camera connecting member, wherein the main body and the camera can form different relative positions based on the camera connecting member; Wherein, when the main body and the shooting device are in a first relative position, the shooting device is in a first working mode; When the main body and the shooting device are in a second relative position, the shooting device is in a second working mode, and the power consumption of the shooting device in the first working mode is less than the power consumption in the second working mode.
2. The selfie stick according to claim 1, wherein: The selfie stick also includes: A first sensing module is disposed in the main body; a first wireless communication module, disposed in the main body, and establishing communication connections with the first sensing module and the second sensing module of the photographing device respectively; Among them, the first wireless communication module is used to obtain the first posture parameter detected by the first sensing module and the second posture parameter detected by the second sensing module; based on the first posture parameter and the second posture parameter, determine the relative position formed by the subject and the shooting device.
3. The selfie stick according to claim 2, wherein: The first wireless communication module is used to send a mode switching signal to the second wireless communication module of the shooting device when the main body and the shooting device are in the second relative position. The mode switching signal is used to control the shooting module of the shooting device to switch from a power-off state or a sleep state to a power-on state.
4. The selfie stick according to claim 2, wherein: The selfie stick also includes: a micro switch disposed in the main body, the camera being connected to the main body via the camera connector, such that the micro switch is switched from an off state to an on state by a force applied from the camera; When the micro switch is in the on state, a trigger signal is sent to the first wireless communication module and the first sensing module, and the trigger signal is used to wake up the first wireless communication module and the first sensing module.
5. The selfie stick according to claim 4, characterized in that: The first wireless communication module is configured to send a connection request to the second wireless communication module of the photographing device, and complete pairing and connection with the second wireless communication module upon receiving a connection response from the second wireless communication module.
6. The selfie stick according to claim 5, wherein: The first wireless communication module is configured to send a sleep signal to the first sensing module when no connection response from the second wireless communication module is received, wherein the sleep signal is configured to control the first sensing module to enter a sleep state; The first wireless communication module is configured to send the sleep signal to the first sensing module and then enter a sleep state in response to the sleep signal.
7. The selfie stick according to claim 1, wherein: The first end of the camera connecting member and the second end of the camera connecting member are opposite ends, and the camera connecting member further has an opposite third end and a fourth end; The selfie stick also includes: A sliding connector is installed on the third end of the shooting device connector. Based on the sliding connector, the main body can move around the outer surfaces of at least two adjacent ends of the third end of the shooting device connector, the first end of the shooting device connector, and the fourth end of the shooting device connector, so that the main body and the shooting device form different relative positions.
8. The selfie stick according to claim 7, wherein: The main body includes a telescopic rod.
9. The selfie stick according to any one of claims 1 to 8, characterized in that: The camera connection piece includes a 1 / 4 thread, and the 1 / 4 thread can cooperate with the 1 / 4 threaded hole of the camera to fix the camera on the main body.
10. A selfie device, characterized in that: include: A selfie stick and a photographing device, wherein all or part of the selfie stick is composed of the selfie stick according to any one of claims 1 to 9.