Electronic device support
By designing a sliding and rotating support arm and rotating components, the problem of the inability to adjust the length of existing brackets was solved, enabling flexible angle and position adjustment of electronic devices to meet various usage needs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN ANNAIJIA ELECTRONICS CO LTD
- Filing Date
- 2025-07-10
- Publication Date
- 2026-05-29
AI Technical Summary
Existing electronic device brackets cannot effectively adjust the length of the support arm, making it impossible to adjust the distance between the electronic device and the user.
An electronic device bracket is designed, which is slidably and rotatably connected by a first support arm and a second support arm. The relative distance and angle between the two are adjusted by a locking component, and a rotating component is set on the support to adjust the angle of the electronic device and the position of the external component.
It enables flexible adjustment of the distance and angle between electronic devices and users to meet different usage needs, and can simultaneously fix various external components such as cameras and mobile phone holders.
Smart Images

Figure CN224301722U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic device brackets, and in particular to an electronic device bracket. Background Technology
[0002] Existing electronic device suction holders include a suction cup and a support arm connected to the suction cup. The suction cup is used to adhere to a support surface, and the support arm is used to support the electronic device. In practical applications, this type of electronic device suction holder is typically used to adhere to the center console of a car to support electronic devices such as mobile phones or cameras. Its support arm can be rotated and folded for storage and rotated to unfold for use. However, the length of the support arm cannot be adjusted well, resulting in an inability to properly adjust the distance between the electronic device and the user.
[0003] Therefore, a new technology needs to be developed to solve the above problems. Utility Model Content
[0004] In view of this, the present invention addresses the deficiencies of the existing technology, and its main purpose is to provide an electronic device bracket that can adjust the length of the support member, thereby facilitating the adjustment of the distance between the electronic device and the user.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] An electronic device holder includes a suction cup for adsorbing onto a support surface and a support member connected to the suction cup for supporting the electronic device.
[0007] The support includes a first support arm and a second support arm. One end of the first support arm is rotatably connected to the suction cup. The second support arm is slidably connected to the first support arm relative to the first support arm through a first locking member, and the second support arm is rotatably connected to the other end of the first support arm through the first locking member.
[0008] As a preferred embodiment, the second support arm has a first travel hole extending along the length of the second support arm; the first locking member passes through the first travel hole and can slide relative to the first travel hole.
[0009] As a preferred embodiment, the first support arm is provided with a first connecting hole, and one end of the first locking member passes through the first travel hole and is connected to the first connecting hole.
[0010] As a preferred embodiment, the first support arm is provided with a first through groove extending along the length direction of the first support arm, the first through groove communicating with the first connecting hole, the first locking member passing through the first through groove, and the second support arm being movably inserted into the first through groove.
[0011] As a preferred embodiment, the support member is provided with a rotating member, which is rotatably connected to the end of the second support arm away from the first support arm along its own axis.
[0012] As a preferred embodiment, the support member is provided with an external component for fixing electronic equipment, and the external component is rotatably connected to the rotating member by a second locking member.
[0013] As a preferred embodiment, the rotating component has a second stroke hole extending along the length direction of the rotating component; the second locking component passes through the second stroke hole and can move relative to the second stroke hole.
[0014] As a preferred embodiment, the rotating component is provided with at least two second connecting holes spaced apart along the length of the rotating component, and one end of the second locking component can be selectively connected to either of the second connecting holes after passing through the second travel hole.
[0015] As a preferred embodiment, the end of the rotating member away from the second support arm is provided with a second through groove extending along the length direction of the rotating member. The second through groove communicates with the second stroke hole. The second locking member passes through the second through groove, and the external member is movably inserted into the second through groove.
[0016] As a preferred embodiment, the suction cup includes a base, a knob, an adsorption component, and a linkage component. The first support arm is rotatably connected to the base. The base is provided with the knob, which can rotate relative to the base. The adsorption component is provided at the end of the base away from the first support arm. The linkage component is provided on the base, which can move relative to the base. One end of the linkage component is connected to the middle part of the side of the adsorption component near the base. The knob and the linkage component are connected in a transmission manner.
[0017] Rotating the knob drives the linkage to move, which in turn moves the middle part of the adsorption member relative to its peripheral edge, so that a negative pressure cavity is formed or canceled between the side of the adsorption member away from the seat and the support surface.
[0018] Compared with the prior art, this utility model has obvious advantages and beneficial effects. Specifically, as can be seen from the above technical solution, it mainly involves rotatably connecting one end of the first support arm to the suction cup, and the second support arm being slidably connected to the first support arm relative to the first support arm through the first locking member. The second support arm is also rotatably connected to the other end of the first support arm through the first locking member. Thus, by loosening the first locking member, the second support arm can slide relative to the first support arm and rotate relative to the first support arm to the desired position. Then, the first locking member is tightened to lock the first support arm and the second support arm relative to each other, thereby adjusting the relative distance and angle between them. This allows for adjustment of the length and rotation angle of the support member used to support the electronic device, and further facilitates the adjustment of the distance between the electronic device and the user.
[0019] Secondly, by setting a rotating component on the support, the rotating component is rotatably connected to the end of the second support arm away from the first support arm along its own axis. In this way, after the suction cup is attached to the support surface, the angle of the electronic device (such as a mobile phone) can be adjusted by rotating the rotating component to meet the user's usage needs.
[0020] Furthermore, by providing at least two second connecting holes spaced apart along the length of the rotating component, one end of the second locking member can be selectively connected to either second connecting hole after passing through the second stroke hole, thereby adjusting the position of the external component mounted on the rotating component. When it is necessary to use the camera for shooting, the external component, such as a magnetic base or a mobile phone holder, can be moved to one side of the second stroke hole. The second locking member passes through the magnetic base or mobile phone holder and the second stroke hole, and then connects and locks with the second connecting hole to store and fix the magnetic base or mobile phone holder. Another second locking member can pass through the second connecting hole on the opposite side of the second stroke hole to lock and fix the camera for use. In this way, it can simultaneously store and fix the magnetic base or mobile phone holder for use and the camera, or it can attach the mobile phone to the magnetic base so that the electronic device holder can be attached to the desktop or car center console by suction cup for simultaneous use of the mobile phone and the camera.
[0021] To more clearly illustrate the structural features, technical means, and specific objectives and functions of this utility model, the following detailed description is provided in conjunction with the accompanying drawings and specific embodiments. Attached Figure Description
[0022] Figure 1 This is a three-dimensional schematic diagram of the overall structure of the electronic device bracket provided in an embodiment of this utility model (without external components installed);
[0023] Figure 2 This is a three-dimensional schematic diagram of the overall structure of the electronic device bracket provided in an embodiment of this utility model (without external components installed);
[0024] Figure 3 This is an exploded view of an electronic device bracket provided in an embodiment of the present invention (without external components installed);
[0025] Figure 4 This is another exploded view of the electronic device bracket provided in an embodiment of the present invention (without external components installed);
[0026] Figure 5 This is an exploded view of the base of the electronic device bracket provided in an embodiment of the present utility model;
[0027] Figure 6 This is another exploded view of the base of the electronic device bracket provided in an embodiment of the present utility model;
[0028] Figure 7 This is a cross-sectional schematic diagram of the base of the electronic device bracket provided in an embodiment of this utility model;
[0029] Figure 8 This is a three-dimensional schematic diagram of the overall structure of the electronic device bracket with a magnetic mounting base provided in an embodiment of this utility model;
[0030] Figure 9 This is a three-dimensional schematic diagram of the magnetic base of the electronic device bracket provided in an embodiment of this utility model;
[0031] Figure 10 This is a three-dimensional schematic diagram of the overall structure of an electronic device bracket with a camera mounted, provided in an embodiment of this utility model.
[0032] Figure 11 This is a three-dimensional schematic diagram of a camera mounted on an electronic device bracket according to an embodiment of the present invention.
[0033] Explanation of reference numerals in the attached diagram:
[0034] 10. First support arm; 11. First connecting hole
[0035] 12. First through groove 13. First perforation
[0036] 14. First connecting cylinder 15. First cover plate
[0037] 16. Rotating shaft 20. Second support arm
[0038] 21. First stroke hole; 22. Annular positioning protrusion
[0039] 23. Mounting slot; 24. Second fixing hole
[0040] 30. First locking element; 31. First external thread
[0041] 40. Rotating component; 41. Annular positioning groove
[0042] 42. Annular cylinder 43. Third fixing hole
[0043] 44. Second stroke hole; 45. Second connecting hole
[0044] 46. Second through groove 47. Second perforation
[0045] 48. Second connecting cylinder 49. Second cover plate
[0046] 401, Middle Plate Section 50, Connecting Shaft
[0047] 51. First fixing hole; 60. Second locking element
[0048] 61. Second external thread; 70. Knob component
[0049] 71. First threaded connection part; 72. Rotating hole
[0050] 73. Knob base 74. Knob body
[0051] 741, Mounting hole 80, Adsorption component
[0052] 81. Extended protrusion; 90. Linkage component
[0053] 91. Second threaded connection part; 101. Rotating component
[0054] 1011, Connecting seat; 1012, Rotary connecting hole
[0055] 1013, First positioning groove; 1014, Second positioning groove
[0056] 1015, Through hole 102, Base
[0057] 1021, clearance groove; 103, base
[0058] 1031. Rotating part; 1032. Annular positioning groove
[0059] 1033, Slot 104, Stop plate
[0060] 105. Silicone pad; 106. Circular washer
[0061] 107. Connector; 108. Spring
[0062] 109. Camera; 201. Magnetic mount
[0063] 202, Third perforation; 203, Leaving groove. Detailed Implementation
[0064] In the description of this utility model, it should be noted that if terms such as "center", "upper", "lower", "left", "right", "front", "back", "vertical", "horizontal", "inner", and "outer" appear to indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the utility model product is in use, 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, and therefore should not be construed as a limitation of this utility model.
[0065] Please refer to Figures 1 to 11 As shown, it illustrates the specific structure of the electronic device bracket provided in an embodiment of the present invention.
[0066] The electronic device holder includes a suction cup for adsorbing onto a support surface and a support member connected to the suction cup for supporting the electronic device. The support member includes a first support arm 10 and a second support arm 20. One end of the first support arm 10 is rotatably connected to the suction cup. The second support arm 20 is slidably connected to the first support arm 10 relative to it via a first locking member, and the second support arm 20 is rotatably connected to the other end of the first support arm 10 via a first locking member 30, which locks the second support arm 20 to the first support arm 10. This allows the second support arm 20 to be fixed to the first support arm 10. By loosening the first locking member 30, the second support arm 20 can slide relative to the first support arm 10 and rotate relative to the first support arm 10 to the desired position. Then, the first locking member 30 is tightened to lock the first support arm 10 and the second support arm 20 relative to each other. This allows adjustment of the relative distance and angle between the two, thereby enabling adjustment of the length and rotation angle of the support member used to support the electronic device. In turn, it allows for convenient adjustment of the distance between the electronic device and the user.
[0067] In some embodiments, the second support arm 20 is provided with a first travel hole 21 extending along the length direction of the second support arm 20; the first locking member 30 passes through the first travel hole 21 and can slide relative to the first travel hole 21; the first support arm 10 is provided with a first connecting hole 11, one end of the first locking member 30 passes through the first travel hole 21 and is connected to the first connecting hole 11, the first support arm 10 is provided with a first through groove 12 extending along the length direction of the first support arm 10, the first through groove 12 communicates with the first connecting hole 11, the first locking member 30 passes through the first through groove 12, and the second support arm can be movably passed through the first through groove. In this way, the second support arm 20 can be extended and rotated relative to the first support arm 10 through the first through slot 12, thereby enabling the second support arm 20 to be extended and rotated along the length of the first support arm 10. This allows the first support arm 10 and the second support arm 20 to be aligned on a straight line, adjusting the relative distance between them. Alternatively, by rotating the second support arm 20 to form a certain angle between the first support arm 10 and the second support arm 20, the second support arm 20 can be extended and rotated. Finally, the second support arm 20 is locked onto the first support arm 10 by rotating the first locking member 30.
[0068] Specifically, the first connecting hole 11 is a threaded hole, and one end of the first locking member 30 is provided with a first external thread 31, which is threadedly connected to the first connecting hole 11. The first support arm 10 has a first through groove 12 on the side facing the second support arm 20. The two vertical parts of the first through groove 12 are provided with a first through hole 13 at the end near the second support arm 20. A first connecting cylinder 14 is embedded in one of the first through holes 13. A first cover plate 15 is covered on the outside of the first connecting cylinder 14. The first cover plate 15 is embedded on the outer wall of the vertical part of the corresponding first through groove 12. The first connecting hole 11 is formed on the first connecting cylinder 14. One end of the second support arm 20 extends into the first through groove 12. One end of the first locking member 30 passes through another first through hole 13 and a first stroke hole 21 in sequence. One of the first through holes 13 is threadedly connected to the first connecting hole 11. The first external thread 31 of the first locking member 30 contacts the inner wall of the first stroke hole 21.
[0069] In some embodiments, a rotating member 40 is provided on the support member. The rotating member 40 is rotatably connected to the end of the second support arm 20 away from the first support arm 10 along its own axis. In this way, after the suction cup is adsorbed and fixed on the support surface, the electronic device is fixed on the rotating member 40. By rotating the rotating member 40, the angle of the electronic device (such as a mobile phone) can be adjusted to meet the user's usage needs.
[0070] Specifically, a connecting shaft 50 is connected to the end of the second support arm 20 away from the first support arm 10. The two ends of the connecting shaft 50 are assembled to each other by rotational damping, so that the two ends of the connecting shaft 50 can rotate relative to each other under force. Both ends of the connecting shaft 50 are provided with first fixing holes 51. An annular positioning protrusion 22 is provided at the end of the second support arm 20 away from the first support arm 10. An installation groove 23 is formed in the annular positioning protrusion 22. One end of the connecting shaft 50 is installed in the installation groove 23. An annular positioning groove 41 is provided at the end of the rotating component 40 near the second support arm 20. An annular cylinder 42 is formed inside the groove 41. The second support arm 20 is provided with a second fixing hole 24 that communicates with the mounting groove 23. The rotating part 40 is provided with a third fixing hole 43 that communicates with the inside of the annular cylinder 42. The annular positioning protrusion 22 is adapted to the annular positioning groove 41. The annular cylinder 42 covers the outside of the connecting shaft 50. The second fixing hole 24 and the third fixing hole 43 are respectively detachably locked to the corresponding first fixing hole 51 by screws to ensure the relative rotation between the rotating part 40 and the second support arm 20, and to realize the detachable connection between the rotating part 40 and the second support arm 20.
[0071] In some embodiments, the support member is provided with an external component for fixing an electronic device. The external component is rotatably connected to the rotating member 40 via a second locking member 60. The external component may be a camera 109 (e.g., Figure 11 (as shown) or magnetic base 201 (as shown) Figure 9 (As shown) or a mobile phone holder, the external component can be replaced as needed by disassembling the second locking part 60.
[0072] Specifically, the rotating member 40 has a second travel hole 44 extending along its length; the second locking member 60 passes through the second travel hole 44 and can move relative to the second travel hole 44; the rotating member 40 has at least two second connecting holes 45 spaced apart along its length, and one end of the second locking member 60 can selectively connect to either second connecting hole 45 after passing through the second travel hole 44, so as to adjust the position of the external component mounted on the rotating member 40, so that when the camera 109 needs to be used for shooting, the external component such as the magnetic base 201 or the mobile phone holder can be moved to the second travel hole 44. On one side, after the second locking member 60 passes through the magnetic base 201 or the mobile phone holder and connects to the second travel hole 44 and then to the second connection hole 45, the magnetic base 201 or the mobile phone holder is stored and fixed. The camera 109 can be locked and fixed for use by passing through the second connection hole 45 on the opposite side of the second travel hole 44 with another second locking member 60. In this way, the camera 109 can be stored and fixed for use at the same time as the magnetic base 201 or the mobile phone holder, or the mobile phone can be attached to the magnetic base 201 so that the holder can be fixed on the table or the center console of the car to use the mobile phone and the camera 109 at the same time.
[0073] The second connecting hole 45 is a threaded hole, and one end of the second locking member 60 is provided with a second external thread 61, which is threadedly connected to the second connecting hole 45. A second through groove 46 extending along the length of the rotating member 40 is provided on the side of the rotating member 40 away from the second support arm 20. The second through groove 46 communicates with the second stroke hole 44. The second locking member 60 passes through the second through groove 46, and the external member can be movably inserted into the second through groove 46, so that the external member can be rotated and adjusted. Specifically, at least two second through holes 47 are provided in one vertical part of the second through groove 46, which are spaced apart along the length of the rotating member 40. A second stroke hole 44 is formed on another vertical part of the second through groove 46. A second connecting cylinder 48 is embedded in each second through hole 47. A second cover plate 49 is covered on the outside of the second connecting cylinder 48. The second cover plate 49 is embedded on the outer wall of one vertical part of the corresponding second through groove 46. A second connecting hole 45 is formed on the second connecting cylinder 48. One end of the external member extends into the second through groove 46. A third through hole 202 is provided on one end of the external member. One end of the second locking member 60 passes through the second stroke hole 44, the third through hole 202, and one of the second through holes 47 in sequence and is threaded to the corresponding second connecting hole 45. Furthermore, a middle plate portion 401 is formed extending along the length direction of the second through groove 46, and the middle plate portion 401 is also provided with the aforementioned second stroke hole 44. One end of the external connector is provided with a relief groove 203, and the third through hole 202 passes through the relief groove 203. One end of the middle plate portion 401 extends into the relief groove 203, and one end of the second locking member 60 passes through the second stroke hole 44 on the middle plate portion 401.
[0074] In some embodiments, the aforementioned suction cup includes a base, a knob, an adsorption element, and a linkage element. A first support arm 10 is rotatably connected to the base. A knob 70 that can rotate relative to the base is provided on the base. An adsorption element 80 is provided at the end of the base away from the first support arm 10. The adsorption element 80 is preferably an adsorption body with adhesive. A linkage element 90 that can move relative to the base is provided on the base. One end of the linkage element 90 is connected to the middle part of the side of the adsorption element 80 near the base. The knob 70 and the linkage element 90 are connected in a transmission manner. When the knob 70 is rotated, the knob 70 can drive the linkage element 90 to move. The linkage element 90 drives the middle part of the adsorption element 80 to move relative to the peripheral edge of the adsorption element 80, so that a negative pressure cavity is formed or the negative pressure cavity is canceled between the side of the adsorption element 80 away from the base and the support surface. This allows the adsorption capacity of the adsorption element 80 to be adjusted, so that the adsorption element 80 can be firmly and tightly adsorbed onto the support surface through the negative pressure cavity, and the adsorption element 80 can be easily removed from the support surface by canceling the negative pressure cavity. Specifically, when it is necessary to fix the electronic device bracket on the support surface, first attach the adsorption component 80 to the support, and then drive the linkage component 90 to move upward by rotating the knob component 70. The linkage component 90 drives the middle part of the adsorption component 80 to move upward, so as to increase the volume of the space between the adsorption component 80 and the support surface, thereby reducing the gas pressure in the space between the adsorption component 80 and the support surface, thus forming a negative pressure state relative to the external atmosphere, that is, forming a negative pressure cavity, so that the adsorption component 80 can be stably adsorbed on the support surface.
[0075] In some embodiments, the upper end of the seat is provided with a rotating member 101 that can rotate relative to the seat. One end of the first support arm 10 is rotatably connected to the rotating member 101. The rotating member 101 is provided with a connecting seat 1011, which has a rotating connecting hole 1012. One end of the first support arm 10 is provided with a rotating shaft 16, which passes through the rotating connecting hole 1012. The cross-section of the middle part of the rotating shaft 16 is a regular hexagon. Correspondingly, the cross-section of the rotating connecting hole 1012 is a regular hexagon. In this way, the rotation between the first support arm 10 and the rotating member 101 can be damped, so that the first support arm 10 can maintain the angle after rotating relative to the rotating member 101 at a certain angle.
[0076] The base includes a base 102 and a base 103 connected to the upper end of the base 102. The base 102 and the base 103 are connected by screws. A rotation space is formed between the base 102 and the base 103. A knob 70 is rotatably mounted in the rotation space. The upper and lower ends of the knob 70 are respectively restricted by the lower end of the base 103 and the upper end of the base 102. A linkage 90 is located between the base 102 and the base 103 and can move up and down. An adsorption member 80 is disposed at the lower end of the base 102, and the upper end of the base 103 forms a... There is a rotating part 1031, the lower end of the rotating member 101 is restricted by the upper end of the base 103; and an extension protrusion 81 is integrally provided on the periphery of the adsorption member 80, the extension protrusion 81 extends horizontally outward from the base 102, and a gap is left between the lower end face of the extension protrusion 81 and the plane where the lower end face of the adsorption member 80 is located, so that when the adsorption member 80 is adsorbed on the support surface, the extension protrusion 81 maintains a gap with the support surface, thereby facilitating the subsequent insertion into the gap and acting on the extension protrusion 81 to better remove the adsorption member 80 from the support surface.
[0077] The upper end of the rotating part 1031 is connected to the stop plate part 104. The rotating member 101 is rotatably sleeved on the rotating part 1031. The upper end of the rotating member 101 is restricted by the lower end of the stop plate part 104, and the lower end of the rotating member 101 is restricted by the upper end of the base 103, so as to restrict the movement of the rotating member 101 in the axial direction. The rotating part 1031 and the stop plate part 104 are fastened together by screws.
[0078] The upper and lower surfaces of the rotating component 101 are respectively recessed with a first positioning groove 1013 and a second positioning groove 1014. The rotating component 101 has a through hole 1015, the upper and lower ends of which are respectively connected to the first positioning groove 1013 and the second positioning groove 1014. The upper end of the rotating part 1031 passes through the through hole 1015 and protrudes into the first positioning groove 1013. The stop plate part 104 is positioned in the first positioning groove 1013, and the bottom of the first positioning groove 1013 is restricted by the stop plate part. At the lower end of 104, the upper surface of the stop plate portion 104 is covered with a silicone pad 105. The lower end of the rotating portion 1031 is fitted with an annular washer 106. The lower end of the annular washer 106 abuts against the upper end of the base 103. The annular washer 106 is positioned in the second positioning groove 1014, and the lower end of the annular washer 106 protrudes from the lower surface of the rotating member 101. In this way, when the rotating member 101 is rotated, the contact between the rotating member 101 and the base 103 can be reduced, thereby reducing wear.
[0079] The lower end of the base 102 is provided with a clearance groove 1021. One end of the linkage 90 is connected to the upper middle part of the adsorption member 80 through the connector 107. The connector 107 and the middle part of the adsorption member 80 can move within the clearance groove 1021. The peripheral edge of the adsorption member 80 is restricted by the lower end of the base 102. The upper end of the connector 107 passes through the base 102 and is connected to the linkage 90.
[0080] The knob 70 is provided with a first threaded connection part 71, and the linkage 90 is provided with a second threaded connection part 91. The first threaded connection part 71 and the second threaded connection part 91 are threadedly rotatably connected. The knob 70 is provided with a rotating hole 72 in the middle. The first threaded connection part 71 is formed on the inner peripheral sidewall of the rotating hole 72, and the second threaded connection part 91 is formed on the outer peripheral sidewall of the linkage 90.
[0081] The knob component 70 includes a knob base 73 and a knob body 74. The knob body 74 is detachably locked to the upper end of the knob base 73 by screws. The lower end of the knob base 73 is constrained by the upper end of the base 102, and the upper end of the knob body 74 is constrained by the lower end of the base 103. Relative rotation between the knob body 74 and the base 103 is restricted by an elastic positioning component, which includes a spring 108 and a ball bearing (not shown). The lower end of the base 103 is provided with an annular positioning groove 1032, and two slots 1033 are arranged circumferentially within the annular positioning groove 1032. The knob body 74 is provided with a mounting hole 741 with an upper opening. The spring 108 is installed in the mounting hole 741. One end of the ball bearing extends into the mounting hole 741 and abuts against the spring 108, while the other end of the ball bearing extends out of the mounting hole 741 and is positioned within the annular positioning groove 1032. The ball bearing rests on the spring 108. Under the action of elastic force, the knob 70 is locked in the slot 1033 to limit the rotation of the knob 70 relative to the seat. When the knob 70 rotates relative to the seat in the first direction, the ball can overcome the elastic force of the spring 108 and disengage from one of its slots 1033. After the ball exits its slot 1033, it can rotate relative to the seat in the annular positioning groove 1032 until the ball is locked in the other slot 1033 under the action of the spring 108. Then the knob 70 is rotated relative to the seat in the second direction opposite to the first direction until the ball disengages from the other slot 1033 and re-locks in its first slot 1033. In this way, it can realize two limit settings of the rotation position of the knob 70, thereby forming two position limit settings of the negative pressure chamber or canceling the negative pressure chamber. This allows the user to clearly understand the rotation state of the knob 70 and avoid the phenomenon of ineffective rotation in one direction.
[0082] In summary, the key design feature of this utility model is that one end of the first support arm is rotatably connected to the suction cup, and the second support arm is slidably connected to the first support arm relative to the first support arm via the first locking member. Furthermore, the second support arm is rotatably connected to the other end of the first support arm via the first locking member. Thus, by loosening the first locking member, the second support arm can slide and rotate relative to the first support arm to the desired position. Then, by locking the first locking member, the first and second support arms are locked relative to each other, allowing adjustment of their relative distance and angle. This enables adjustment of the length and rotation angle of the support member, thereby facilitating the adjustment of the distance between the electronic device and the user.
[0083] Secondly, by providing a rotating component on the support member, the rotating component is rotatably connected to the end of the second support arm away from the first support arm along its own axis. Thus, after the suction cup is adsorbed and fixed to the support surface, the electronic device is fixed to the rotating component. Rotating the rotating component allows adjustment of the angle of the electronic device (such as a mobile phone) to meet the user's needs. Furthermore, by providing at least two second connecting holes spaced apart along the length of the rotating component, one end of the second locking component can pass through the second travel hole and selectively connect to either second connecting hole to adjust the position of the external component mounted on the rotating component, allowing for adjustments when needed. When shooting with a camera, an external accessory such as a magnetic holder or phone holder can be moved to one side of the second travel hole. After the second locking piece passes through the magnetic holder or phone holder and the second travel hole, it connects to the second connection hole to store and fix the magnetic holder or phone holder. Another second locking piece can pass through the second connection hole on the opposite side of the second travel hole to lock and fix the camera in use. In this way, the camera can be used to store and fix the magnetic holder or phone holder at the same time, or the phone can be attached to the magnetic holder so that the holder can be fixed on a table or car center console to use both the phone and the camera at the same time.
[0084] The above description is merely a preferred embodiment of the present utility model and does not constitute any limitation on the technical scope of the present utility model. Therefore, any minor modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model shall still fall within the scope of the technical solution of the present utility model.
Claims
1. An electronic device holder, comprising a suction cup for adsorbing onto a support surface and a support member connected to the suction cup for supporting the electronic device; characterized in that: The support includes a first support arm and a second support arm. One end of the first support arm is rotatably connected to the suction cup. The second support arm is slidably connected to the first support arm relative to the first support arm through a first locking member, and the second support arm is rotatably connected to the other end of the first support arm through the first locking member.
2. The electronic device bracket according to claim 1, characterized in that: The second support arm has a first travel hole extending along the length of the second support arm; the first locking member passes through the first travel hole and can slide relative to the first travel hole.
3. The electronic device bracket according to claim 2, characterized in that: The first support arm is provided with a first connecting hole, and one end of the first locking member passes through the first travel hole and is connected to the first connecting hole.
4. The electronic device bracket according to claim 3, characterized in that: The first support arm is provided with a first through groove extending along the length direction of the first support arm. The first through groove communicates with the first connecting hole. The first locking member passes through the first through groove, and the second support arm is movably inserted into the first through groove.
5. The electronic device bracket according to claim 1, characterized in that: The support member is provided with a rotating member, which is rotatably connected to the end of the second support arm away from the first support arm along its own axis.
6. The electronic device bracket according to claim 5, characterized in that: The support member is provided with an external component for fixing electronic equipment, and the external component is rotatably connected to the rotating member by a second locking member.
7. The electronic device bracket according to claim 6, characterized in that: The rotating component has a second stroke hole extending along the length of the rotating component; the second locking component passes through the second stroke hole and can move relative to the second stroke hole.
8. The electronic device bracket according to claim 7, characterized in that: The rotating component is provided with at least two second connecting holes spaced apart along the length of the rotating component, and one end of the second locking component can be selectively connected to either of the second connecting holes after passing through the second travel hole.
9. The electronic device bracket according to claim 8, characterized in that: The rotating component has a second through groove extending along the length of the rotating component at one end away from the second support arm. The second through groove communicates with the second stroke hole. The second locking component passes through the second through groove, and the external component is movably inserted into the second through groove.
10. The electronic device bracket according to claim 1, characterized in that: The suction cup includes a base, a knob, an adsorption component, and a linkage component. The first support arm is rotatably connected to the base. The knob is provided on the base and can rotate relative to the base. The adsorption component is provided at the end of the base away from the first support arm. The linkage component is provided on the base and can move relative to the base. One end of the linkage component is connected to the middle part of the side of the adsorption component near the base. The knob is kinetically connected to the linkage component. Rotating the knob drives the linkage to move, which in turn moves the middle part of the adsorption member relative to its peripheral edge, so that a negative pressure cavity is formed or canceled between the side of the adsorption member away from the seat and the support surface.