Terminal support
By designing foldable connecting arms and storage slots in the terminal bracket, the problem of auxiliary accessories easily detaching is solved, achieving safe storage of auxiliary accessories and stable support for the electronic terminal.
Patent Information
- Application Number
- CN202422513423.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2023-10-17
- Filing Date
- 2024-10-17
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-10-17
AI Technical Summary
When not in use, the auxiliary accessories of the existing terminal brackets are prone to detaching from the bracket body, leading to their loss.
A terminal bracket is designed, including a support component, a connecting arm, and a support member. The connecting arm can be folded into the side wall of the support component. A storage slot has a storage opening, in which auxiliary accessories can be stored. The side wall holds the auxiliary accessories to prevent them from falling out.
It effectively prevents auxiliary accessories from accidentally detaching when stored, thus preventing loss, and the design of the support component keeps the electronic terminal stable and adaptable to terminals of different thicknesses.
Smart Images

Figure CN223499115U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of auxiliary equipment technology for electronic terminals, specifically to a terminal bracket. Background Technology
[0002] A device stand is an auxiliary device used to support electronic devices such as mobile phones and tablets. It positions the device at a certain height or angle for easy use, such as taking a selfie. Device stands can be categorized into ground-mounted stands, vehicle-mounted stands, and handheld stands.
[0003] Existing terminal stands typically consist of a main body and auxiliary accessories that can be stored in the main body. The main body supports the electronic terminal, while the auxiliary accessories can be remote controls, fill lights, cameras, etc. When not in use, the auxiliary accessories can be stored in the main body. However, with existing terminal stands, the auxiliary accessories are prone to detaching from the main body when not in use (for example, during the transportation of the terminal stand, the auxiliary accessories may detach from the main body), leading to their loss. Utility Model Content
[0004] In view of the defects and shortcomings of the existing technology, the first objective of this utility model is to provide a terminal bracket.
[0005] This utility model embodiment proposes a terminal bracket, which includes a support component, a connecting arm, a support member, and auxiliary accessories. The support component supports the connecting arm and the support member, and has a first sidewall. The connecting arm is rotatably mounted on the support component and can be folded against the first sidewall. The connecting arm has a storage groove with a first storage opening communicating with the surface of the connecting arm. The auxiliary accessories can be stored in the storage groove through the first storage opening. When the connecting arm is folded against the first sidewall, the first storage opening faces the first sidewall, and the first sidewall can hold the auxiliary accessories to prevent them from falling out of the storage groove. The support member supports the electronic terminal and is mounted on the connecting arm.
[0006] In some implementations, the connecting arm has a press-opening that communicates with the storage slot. The press-opening and the first storage opening are located on opposite sides of the connecting arm. When the connecting arm is open relative to the first side wall, the user of the terminal bracket presses the auxiliary accessory through the press-opening so that the auxiliary accessory can be dislodged from the storage slot through the first storage opening.
[0007] In some implementations, when the auxiliary accessory is stored in the storage slot, the auxiliary accessory cannot be dislodged from the storage slot through the pressing opening.
[0008] In some implementations, the auxiliary accessory is provided with at least one first snap-fit portion, and the connecting arm is provided with at least one second snap-fit portion. The at least one first snap-fit portion corresponds to the at least one second snap-fit portion, and the first snap-fit portion snaps into the second snap-fit portion so that the auxiliary accessory snaps into the connecting arm. The at least one second snap-fit portion includes at least one suspended snap-fit portion. The connecting arm has a mounting groove, and a cantilever protrudes from the groove wall. The suspended snap-fit portion is disposed on the cantilever. The connecting arm has a deformation space. During the process of the suspended snap-fit portion snapping into or disengaging from the corresponding first snap-fit portion, the cantilever deforms in the deformation space.
[0009] In some implementations, the first snap-fit part is a snap-fit groove and the second snap-fit part is a snap-fit protrusion, or the first snap-fit part is a snap-fit protrusion and the second snap-fit part is a snap-fit groove; there are two of each of the first and second snap-fit parts, with the two first snap-fit parts located on opposite sides of the auxiliary accessory and the two second snap-fit parts located on opposite sides of the storage slot.
[0010] In some implementations, the auxiliary accessory is provided with a button, the connecting arm is provided with a first opening, the first opening is connected to the storage slot, the first opening is connected to the outer wall of the connecting arm, the first opening corresponds to the button, and the user of the terminal bracket can touch the button through the first opening.
[0011] In some implementations, when the connecting arm is folded to the first sidewall, the first sidewall does not obstruct the first opening, and the user of the terminal bracket can touch the button through the first opening.
[0012] In some implementations, the auxiliary accessory is provided with a third snap-fit portion, and the support member is provided with a fourth snap-fit portion. The third snap-fit portion can snap onto the fourth snap-fit portion. The third snap-fit portion is a protrusion protruding from the auxiliary accessory. The connecting arm is provided with a second opening. When the auxiliary accessory is stored in the storage slot, the third snap-fit portion is accommodated in the second opening. During the process of the auxiliary accessory being released from the storage slot, the third snap-fit portion is released from the connecting arm through the second opening.
[0013] In some implementations, with the connecting arm folded against the first sidewall, the connecting arm is located between the first sidewall and the support member.
[0014] In some implementations, the support assembly includes a support base and a support rod, the support base being used to support the support rod, the support rod being mounted on the support base, the connecting arm being rotatably mounted on the support rod, and the support member being mounted on the connecting arm; the first sidewall is located on the support base and / or the support rod.
[0015] In some implementations, the support base includes at least three legs, which can be opened or retracted. When the legs are open, the support base rests on a support surface; when the legs are retracted, the support base forms a grip, with the first sidewall located within the grip. The terminal bracket further includes a sliding sleeve and at least three connecting rods. The sliding sleeve is slidably mounted on the support rod along its length. The at least three connecting rods correspond to the at least three legs. One end of each leg is rotatably connected to the sliding sleeve, and one end of each connecting rod is rotatably connected to the leg and the other end is rotatably connected to the support rod. During the sliding of the sliding sleeve relative to the support rod, the at least three legs open or retract relative to the support rod. The support rod is a telescopic rod; when the telescopic rod is in a retracted state, the connecting arm can be folded into the grip.
[0016] In some implementations, the support rod has a first central axis along its length; the support member is rotatably mounted on the connecting arm about a first rotation axis; the connecting arm rotates relative to the support rod such that the support member is in a first position relative to the support rod, wherein, in the first position, the angle between the first rotation axis and the first central axis is greater than or equal to 0° and less than or equal to 5°, and the distance between the first rotation axis and the first central axis is greater than or equal to 0° and less than or equal to 0.5 cm; the first rotation axis is coaxial, parallel, intersecting, or skewed from the first central axis, and the coaxiality of the first rotation axis and the first central axis is defined as: the first rotation axis and the first central axis are coaxial. The angle between the axes is 0°, and the distance between the first rotation axis and the first central axis is 0°; the first rotation axis being parallel to the first central axis is defined as: the angle between the first rotation axis and the first central axis is 0°, and the distance between the first rotation axis and the first central axis is greater than 0°; the first rotation axis intersecting the first central axis is defined as: the angle between the first rotation axis and the first central axis is greater than 0°, and the distance between the first rotation axis and the first central axis is 0°; the first rotation axis being skew to the first central axis is defined as: the angle between the first rotation axis and the first central axis is greater than 0°, and the distance between the first rotation axis and the first central axis is greater than 0°.
[0017] In some implementations, the connecting arm includes a first arm body and a second arm body, the second arm body being rotatably mounted on the first arm body, the first arm body being rotatably mounted on the support rod, and the support member being rotatably mounted on the second arm body about the first rotation axis. When the second arm body is in a third position relative to the first arm body, rotation of the first arm body relative to the support rod allows the support member to be in the first position. When the second arm body is in a second position relative to the first arm body, rotation of the first arm body relative to the support rod allows the connecting arm to be folded against the first sidewall. The first arm body includes a first main arm and a first extension arm connected to the first main arm. The extension arm extends to one side of the first main arm, and the first extension arm is rotatably mounted on the support rod. With the connecting arm folded against the first side wall, the first main arm is close to or attached to the first side wall, and the first main arm holds the auxiliary accessory. The second arm body is close to or attached to the first side wall. The first main arm has a first side surface, and the second arm body has a second side surface. When the second arm body is in a second position relative to the first arm body, the first side surface and the second side surface are aligned. With the connecting arm folded against the first side wall, the first side surface is close to or attached to the first side wall, and the first side surface holds the auxiliary accessory. The second side surface is close to or attached to the support rod. The first sidewall is described; the first main arm has a first limiting surface, and the second arm body has a second limiting surface; when the second arm body is in a third position relative to the first arm body, the second sidewall abuts against the first main arm, and the first arm body rotates relative to the support rod to allow the support member to be in the first position, the second arm body and the first extension arm extend to the same side of the first main arm, and the second sidewall abuts against the first limiting surface; when the second arm body is in a second position relative to the first arm body, the second limiting surface abuts against the first limiting surface, the first main arm and the second arm body form a first strip structure, and the first strip structure and the first main arm are parallel to the first limiting surface. The first straight line extends in the direction of the first arm body; the second arm body is rotatably mounted on the first arm body about a third rotation axis, the angle between the third rotation axis and the first rotation axis is greater than or equal to 85° and less than or equal to 90°, the angle between the third rotation axis and the first straight line is greater than or equal to 85° and less than or equal to 90°, the connecting arm is rotatably mounted on the support rod about a second rotation axis, the angle between the second rotation axis and the first straight line is greater than or equal to 85° and less than or equal to 90°; the first main arm and the second arm body form a first strip structure and during the rotation of the connecting arm relative to the support rod, the angle between the first straight line and the first central axis can be any angle between 0° and 90°;The angle between the second rotation axis and the first central axis is greater than or equal to 85° and less than or equal to 90°; the connecting arm can be held on the support rod, the support member can be held on the connecting arm, and the second arm body can be held on the first arm body; the support base includes at least three legs, which can be opened or closed. In the open state, the support base can be supported on a support surface. In the closed state, the support base forms a grip, and the first sidewall is located in the grip; in the open state, the at least three legs are centrally symmetrical about the first central axis; the support member has the function of clamping the electronic... The terminal has a first clamping gap for clamping the electronic terminal along its length or width. The electronic terminal has a camera lens, and when the electronic terminal is clamped in the first clamping gap, the angle between the axis of the camera lens and the first rotation axis is greater than or equal to 0° and less than or equal to 5°. The support member has a second clamping gap for clamping the electronic terminal. The electronic terminal is plate-shaped, and the second clamping gap is for clamping the electronic terminal along its thickness. When the electronic terminal is clamped in the second clamping gap, the angle between the axis of the camera lens and the first rotation axis is greater than or equal to 85° and less than or equal to 90°.
[0018] In some implementations, the terminal bracket further includes a retaining assembly, and the support member is rotatably mounted on the connecting arm; the support member has a first rotating portion, the first rotating portion having at least one retaining groove, the retaining groove communicating with the outer side wall of the first rotating portion; the retaining assembly includes a retaining member, a first elastic element, and a actuating member, the retaining member being movably mounted on the connecting arm, one end of the first elastic element acting on the connecting arm and the other end acting on the retaining member, the actuating member being slidably mounted on the connecting arm such that the actuating member can be in a fourth position and a fifth position relative to the connecting arm, wherein the actuating member is in the fourth position and the fifth position. In the fourth position, the elastic element causes the retaining member to abut against the outer wall of the first rotating part or to be engaged in the retaining groove. When the retaining member abuts against the outer wall of the first rotating part, the first rotating part rotates around an angle, and the elastic element causes the retaining member to be engaged in the retaining groove. During the movement of the actuating member from the fourth position to the fifth position, the actuating member causes the retaining member to disengage from the first rotating part. When the actuating member is in the fifth position, the actuating member blocks the retaining member to keep the retaining member disengaged from the first rotating part.
[0019] In some implementations, the connecting arm has a first sliding space, and the actuating member is slidably mounted in the first sliding space. The actuating member has a first pressing protrusion and a second pressing protrusion at both ends. Pressing the first pressing protrusion moves the actuating member from the fourth position to the fifth position, and pressing the second pressing protrusion moves the actuating member from the fifth position to the fourth position. When the actuating member is in the fourth position, the first pressing protrusion protrudes from the first side of the connecting arm, and the second pressing protrusion is accommodated in the first sliding space. When the actuating member is in the fifth position, the first pressing protrusion is accommodated in the first sliding space, and the second pressing protrusion protrudes from the first side of the connecting arm. On the second side of the connecting arm, the first side and the second side are respectively located on opposite sides of the connecting arm; the first sliding space includes a first exposed opening and a second exposed opening, the first exposed opening communicating with the first side of the connecting arm, and the second exposed opening communicating with the second side of the connecting arm; when the actuating member is in the fourth position, the first pressing protrusion protrudes from the first side of the connecting arm through the first exposed opening; when the actuating member is in the fifth position, the second pressing protrusion protrudes from the second side of the connecting arm through the second exposed opening; the terminal bracket has a first limiting wall and a second limiting wall, the first limiting wall and the second limiting wall restricting the sliding of the actuating member. Installed in the first sliding space, the actuating member has a protruding limiting protrusion, which has a third limiting wall and a fourth limiting wall. When the actuating member is in the fourth position, the third limiting wall abuts against the first limiting wall; when the actuating member is in the fifth position, the fourth limiting wall abuts against the second limiting wall. The first limiting wall is located on the connecting arm and / or the retaining member, and the second limiting wall is located on the connecting arm and / or the retaining member. The connecting arm also includes an arm body and a cover detachably installed on the arm body. The arm body has an assembly space and an assembly opening communicating with the assembly space. The retaining component can be inserted into the assembly space through the assembly opening. A second sliding space is provided, and the retaining member is slidably installed in the second sliding space; the arm body and the cover surround to form the second sliding space; the connecting arm has a first mounting protrusion, the retaining member has a second mounting protrusion, the first elastic element is a cylindrical spring, the first mounting protrusion is sleeved on one end of the first elastic element, and the first mounting protrusion is sleeved on the other end of the first elastic element; the actuating member has a supporting protrusion, the retaining member is slidably installed in the connecting arm, the retaining member has a first supporting wall and a retraction space, in the state where the actuating member is in the fifth position, the supporting protrusion abuts against the first supporting wall, and in the state where the actuating member is in the fourth position, the supporting protrusion is located in the retraction space;The retaining member has a first sliding surface. During the process of the actuating member sliding from the fourth position to the fifth position, the abutting protrusion slides past the first sliding surface, and the retaining member moves away from the first rotating part. The retaining member has a protruding blocking protrusion located between the retraction space and the first abutting wall. During the process of the actuating member sliding from the fifth position to the fourth position, the abutting protrusion slides past the blocking protrusion. The abutting protrusion has a second sliding surface and an abutting end. The second sliding surface extends to the abutting end of the abutting protrusion. When the actuating member is in the fourth position, the second sliding surface abuts against the first sliding surface. During the process of the actuating member sliding from the fourth position to the fifth position, the second sliding surface abuts against the first sliding surface. The sliding surface slides over the first sliding surface; the first sliding surface is a plane inclined relative to the sliding direction of the holding member, and the second sliding surface is a plane parallel to the first sliding surface; the support member is rotatably mounted on the connecting arm about a first rotation axis, the first rotating part is a rotating body coaxial with the first rotation axis, the holding groove communicates with the side wall of the first rotating part, the holding member includes a sliding body and a holding protrusion protruding from the sliding body, the holding protrusion is held in the holding groove so that the holding member holds the support member, the sliding body has an abutment surface at one end near the first rotating part, the abutment surface is a rotating surface adapted to the side wall of the first rotating part, and the abutment surface abuts against the first rotating part when the holding protrusion is held in the holding groove.
[0020] In some implementations, the support member is rotatably mounted on the connecting arm about a first rotation axis. The support member has a first clamping gap for clamping the electronic terminal. The first clamping gap is used to clamp the electronic terminal along the length or width direction of the electronic terminal. The electronic terminal has a camera lens. When the electronic terminal is clamped by the first clamping gap, the angle between the axis of the camera lens and the first rotation axis is greater than or equal to 0° and less than or equal to 5°. The support member includes a first body and two clamping members. The first body is elastically extendable. The two clamping members are respectively mounted on the first body, and the first clamping gap is between the two clamping members. At least one of the two clamping members is a first clamping member. The first clamping member includes a first connecting portion and two clamping protrusions. The two clamping protrusions are spaced apart from the first connecting portion. At least one of the clamping protrusions is a first clamping protrusion. The first clamping member also includes at least one first elastic pad, which corresponds to the at least one first clamping protrusion. The first elastic pad is installed on the corresponding first clamping protrusion. The first clamping member has a second clamping gap located between two clamping protrusions. The electronic terminal is plate-shaped. The second clamping gap can clamp the electronic terminal along the thickness direction of the electronic terminal. When the electronic terminal is clamped by the second clamping gap, the first elastic pad is located between the electronic terminal and the first clamping protrusion, and the electronic terminal squeezes the first elastic pad. When the electronic terminal is clamped by the second clamping gap, the electronic terminal squeezes the first elastic pad. The angle between the axis of the shooting lens and the first rotation axis is greater than or equal to 85° and less than or equal to 90°.
[0021] In some implementations, both clamping members are first clamping members, and the second clamping gap of the two first clamping members clamps the same side of the electronic terminal; the side of the first elastic pad that abuts against the electronic terminal is provided with a first protrusion and a first groove, and the first protrusion is annular around the first groove; the first clamping member further includes at least one first flexible part, the at least one first flexible part corresponds to the at least one first elastic pad, the first elastic pad is connected to the first flexible part, the first flexible part is provided with a first mounting groove and an anti-detachment cavity, the anti-detachment cavity communicates with the first mounting groove, the anti-detachment cavity extends away from the first mounting groove, the first clamping protrusion includes a first clamping post, a mounting post protruding from the first clamping post and an anti-detachment protrusion protruding from the mounting post, the first clamping post is connected to the first connecting part, the mounting post protrudes from the first clamping post and extends toward the second clamping gap, the anti-detachment protrusion extends away from the mounting post, the mounting post is fitted into the first mounting groove, and the anti-detachment protrusion... Located within the anti-detachment cavity, the first elastic pad is positioned at the end of the corresponding mounting post. When the electronic terminal is clamped in the second clamping gap, the first elastic pad is located between the end of the mounting post and the electronic terminal. The first clamping member further includes at least one second elastic pad, each corresponding to one of the at least one first flexible portions. The first flexible portion is integrally connected to the corresponding first elastic pad. The at least one second elastic pad corresponds to one of the at least one first clamping protrusions. The at least one second elastic pad is mounted on the corresponding first clamping protrusion. When the electronic terminal is clamped in the first clamping gap, the second elastic pad is located between the electronic terminal and the first clamping protrusion, and the electronic terminal presses against the second elastic pad. The first clamping protrusion has a second mounting groove, and the at least one second elastic pad corresponds to the second mounting groove of the at least one first clamping protrusion, with the second elastic pad embedded in the corresponding second mounting groove.
[0022] In some implementations, the first clamping member has two first elastic pads, two first flexible portions, and both clamping protrusions are first clamping protrusions. The first clamping member also includes a flexible second connecting portion for connecting the two first flexible portions. The second connecting portion includes a first connecting sub-part and two second connecting sub-parts. The two ends of the first connecting sub-part are respectively connected to the two second connecting sub-parts. The first connecting sub-part extends along the first connecting portion, and the two second connecting sub-parts correspond to the two first clamping protrusions respectively. The second connecting sub-parts extend along the first clamping post of the corresponding first clamping protrusion and are connected to the corresponding first flexible portion. The first connecting sub-part is connected to the two second elastic pads. The first connecting portion supports the electronic terminal, and in the state where the first connecting portion supports the electronic terminal, the electronic terminal presses against the first connecting sub-part.
[0023] In some implementations, the terminal bracket further includes a drive assembly, the connecting arm is mounted on the support rod, the support member is rotatably mounted on the connecting arm about the first rotation axis, the drive assembly is mounted on the connecting arm, and the drive assembly is used to drive the support member to rotate about the first rotation axis;
[0024] The terminal bracket also includes a controller electrically connected to the drive assembly, which controls the drive assembly to enable the shooting lens to track the subject being photographed.
[0025] The terminal bracket implementing this utility model embodiment has the following beneficial effects: when the terminal bracket needs to be stored, the auxiliary accessories can be placed in the storage slot and the connecting arm can be folded to the first side wall. The first side wall holds the auxiliary accessories, which can prevent the auxiliary accessories from accidentally falling out of the storage slot when the terminal bracket is stored, thereby avoiding the loss of the auxiliary accessories.
[0026] Furthermore, in the terminal bracket of this embodiment, the first rotation axis of the support member is close to or coaxial with the first central axis of the support rod, making the support member centered relative to the support rod, thus making the rotation of the support member more stable when rotating around the first rotation axis. Moreover, in situations where the electronic terminal needs to be in a relatively stable state, or in other situations where the support member needs to be held in a stable position, the holding assembly can hold the support member in a certain position on the connecting arm, thereby facilitating the use of the terminal bracket.
[0027] Furthermore, in the terminal bracket of this embodiment, the first clamping member can clamp the electronic terminal in the thickness direction, and the first clamping member includes a first elastic pad, enabling it to clamp electronic terminals of different thicknesses. The thicker the electronic terminal, the stronger the compression of the first elastic pad. The first elastic pad also provides friction between the first clamping member and the electronic terminal, preventing the electronic terminal from easily detaching from the support member; furthermore, the first elastic pad provides cushioning between the first clamping member and the electronic terminal, preventing the first clamping member from easily damaging the electronic terminal. Attached Figure Description
[0028] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, 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.
[0029] Figure 1 This is a schematic diagram of the terminal bracket in a stowed state according to an embodiment of the present invention;
[0030] Figure 2 yes Figure 1 The terminal bracket shown is a front view in a certain direction;
[0031] Figure 3 yes Figure 1 The diagram shows the structure of the terminal bracket from another perspective;
[0032] Figure 4 This is a structural schematic diagram of one assembly state of the auxiliary accessories, connecting arm and support in the terminal bracket of this utility model embodiment;
[0033] Figure 5 This is a schematic diagram of the auxiliary accessories in the terminal bracket of this utility model embodiment;
[0034] Figure 6 yes Figure 5 The diagram shows the structure of the auxiliary components from another perspective;
[0035] Figure 7 yes Figure 4 The diagram shows a structure that hides auxiliary components.
[0036] Figure 8 yes Figure 7 Enlarged view of the area highlighted by the dashed line in the structure shown;
[0037] Figure 9 yes Figure 7 A schematic diagram of the structure shown from another perspective;
[0038] Figure 10 yes Figure 9 Enlarged view of the area highlighted by the dashed line in the structure shown;
[0039] Figure 11 yes Figure 7 The structure shown is a front view in a certain direction;
[0040] Figure 12 yes Figure 11 The structure shown is a cross-sectional view along line II;
[0041] Figure 13 yes Figure 12 Enlarged view of the area highlighted by the dashed line in the structure shown;
[0042] Figure 14 yes Figure 11 The structure shown is a cross-sectional view along line II-II;
[0043] Figure 15 yes Figure 14 Enlarged view of the area highlighted by the dashed line in the structure shown;
[0044] Figure 16 yes Figure 7 The diagram shows a hidden structure after the cap is applied.
[0045] Figure 17 yes Figure 16 Enlarged view of the area highlighted by the dashed line in the structure shown;
[0046] Figure 18 yes Figure 16 The diagram shows the structure of the actuating element in the structure shown.
[0047] Figure 19 yes Figure 18 A schematic diagram of the toggle mechanism from another perspective;
[0048] Figure 20 yes Figure 16 A schematic diagram of the structure with the toggle mechanism hidden in the diagram shown;
[0049] Figure 21 yes Figure 20 Enlarged view of the area highlighted by the dashed line in the structure shown;
[0050] Figure 22 yes Figure 21 The diagram shows the structure of the retaining component in the structure shown.
[0051] Figure 23 yes Figure 22 The diagram shows a structural schematic of the retaining element from another perspective;
[0052] Figure 24 yes Figure 20 The diagram shown is a schematic of the structure after the card holder is hidden.
[0053] Figure 25 yes Figure 24 Enlarged view of the area highlighted by the dashed line in the structure shown;
[0054] Figure 26 This is an assembly diagram of the support component and auxiliary accessories in the terminal bracket of this utility model embodiment;
[0055] Figure 27 yes Figure 26 A schematic diagram of the structure from another perspective;
[0056] Figure 28 yes Figure 26 A front view of the support component in a certain direction;
[0057] Figure 29 yes Figure 28 The support shown is a sectional view along line III-III;
[0058] Figure 30 This is an exploded view of the support component according to an embodiment of the present utility model;
[0059] Figure 31 This is an exploded view of the support member according to another embodiment of the present utility model;
[0060] Figure 32 This is a schematic diagram of a terminal bracket in use according to an embodiment of the present utility model;
[0061] Figure 33 yes Figure 32 The diagram shows a structural schematic of the terminal bracket from another perspective;
[0062] Figure 34 yes Figure 32 A schematic diagram showing another usage state of the terminal bracket;
[0063] Figure 35 This is a schematic diagram of the structure of the first arm of the connecting arm in the terminal bracket of this utility model embodiment;
[0064] Figure 36 yes Figure 35 A structural schematic diagram of the first arm from another perspective;
[0065] Figure 37 This is a schematic diagram of the structure of the second arm of the connecting arm in the terminal bracket of this utility model embodiment;
[0066] Figure 38 yes Figure 37A structural schematic diagram of the second arm from another perspective.
[0067] Figure 39 This is a schematic diagram of the structure of the cover in the terminal bracket according to an embodiment of the present utility model;
[0068] Figure 40 yes Figure 39 The diagram shows a structural schematic of the cap from another perspective. Detailed Implementation
[0069] The present invention will be further described in detail below with reference to the accompanying drawings.
[0070] This specific embodiment is merely an explanation of the present utility model and is not intended to limit the present utility model. After reading this specification, those skilled in the art can make modifications to this embodiment without contributing any inventive element, but as long as they are within the scope of the claims of the present utility model, they are protected by patent law.
[0071] Figure Labels
[0072] Support assembly 100, foot 110, support rod 120, grip 130, sliding sleeve 140, connecting rod 150, first side wall 101, first central axis 102, connecting arm 200, first arm body 210, first main arm 211, first side surface 211a, first limiting surface 211b, first extension arm 212, second locking part 213, suspended locking part 213a, cantilever 214, first friction texture 215, second arm body 220, second friction texture 221, second side surface 222, second limiting surface 223, first fastener 230, arm body 200a, cover 200b, first mounting protrusion 224, storage slot 201, First storage opening 201a, Pressing opening 202, Placement groove 203, Deformation space 204, First opening 205, Second opening 206, First sliding space 207, First exposed opening 207a, Second exposed opening 207b, Second sliding space 208, Assembly space 209, Assembly opening 209a, Support 300, First body 310, First main body 311, First rod 312, Second rod 313, Clamping member 320, First clamping member 320a, First connecting part 321, Clamping protrusion 322, First clamping protrusion 322a, First clamping post 3221, Mounting post 3222, Anti-detachment protrusion 3 223, First elastic pad 323, First protrusion 323a, First flexible part 324, Second elastic pad 325, Assembly column 326, First rotating part 330, Fourth locking part 301, Second groove 301a, Fourth protrusion 301b, First rotating axis 302, First clamping gap 303, Second clamping gap 304, Locking groove 305, First groove 306, First mounting groove 307a, Anti-detachment cavity 307b, Second mounting groove 308, Assembly hole 309, Auxiliary accessory 400, First locking part 401, Button 410, Third locking part 420, Second protrusion 421, Third protrusion 422, Electronic terminal 50 0. Shooting lens 510, second fastener 600, clamping assembly 700, clamping piece 710, second mounting protrusion 711, blocking protrusion 712, sliding body 710a, clamping protrusion 713, first elastic element 720, actuating piece 730, first pressing protrusion 731, second pressing protrusion 732, limiting protrusion 733, abutting protrusion 734, first abutting wall 701, clearance space 702, first sliding surface 703, second sliding surface 704, abutting end 705, abutting surface 706, third limiting wall 707, fourth limiting wall 708, driving assembly 800, first limiting wall 1001, second limiting wall 1002
[0073] refer to Figures 1-40 For details, please refer to Figure 2 , Figure 7 , Figure 32This utility model provides a terminal bracket, which includes a support assembly 100, a connecting arm 200, a support member 300, and auxiliary accessories 400. The support assembly 100 supports the connecting arm 200 and the support member 300, and has a first sidewall 101. The connecting arm 200 is rotatably mounted on the support assembly 100 and is foldable to the first sidewall 101. The connecting arm 200 has a storage slot 201 with a communication channel. The auxiliary accessory 400 can be stored in the storage slot 201 through the first storage opening 201a on the surface of the connecting arm 200. When the connecting arm 200 is folded to the first side wall 101, the first storage opening 201a faces the first side wall 101. The first side wall 101 can hold the auxiliary accessory 400 to prevent it from falling out of the storage slot 201. The support member 300 is used to support the electronic terminal 500 and is installed on the connecting arm 200.
[0074] Understandably, when the terminal stand needs to be stored, the auxiliary accessory 400 can be placed in the storage slot 201, and the connecting arm 200 can be folded into the first side wall 101. The first side wall 101 holds the auxiliary accessory 400 to prevent the auxiliary accessory 400 from accidentally falling out of the storage slot 201 when the terminal stand is in the stored state, thereby avoiding the loss of the auxiliary accessory 400.
[0075] For example, accessory 400 can be a remote control, fill light, camera, etc.
[0076] For example, when the terminal stand is in use, the auxiliary accessory 400 can be detached from the storage slot 201, for example, when the user holds the auxiliary accessory 400, for example, when the auxiliary accessory 400 is attached to the electronic terminal 500, or for example, when the auxiliary accessory 400 is attached to other parts of the terminal stand.
[0077] For example, the first sidewall 101 can be a curved wall, a planar wall, etc. For example, the first sidewall 101 is an arc-shaped surface, or the first sidewall 101 is stepped.
[0078] Understandably, when the connecting arm 200 is folded into the first sidewall 101, the connecting arm 200 is close to or attached to the first sidewall 101, and the first sidewall 101 is close to or attached to the auxiliary accessory 400; for example, when the connecting arm 200 is folded into the first sidewall 101, the first sidewall 101 is attached to the auxiliary accessory 400, or, when the connecting arm 200 is folded into the first sidewall 101, there is a gap between the first sidewall 101 and the auxiliary accessory 400, and when the auxiliary accessory 400 is partially removed from the storage slot 201, the first sidewall 101 is attached to the auxiliary accessory 400. "A is attached to B" means that A is attached to B, and there is no gap between A and B at the point of contact; "A is close to B" means that A and B are near each other, and there is a gap between A and B at the point of contact.
[0079] Understandably, the connecting arm 200 folded to the first sidewall 101 can mean that all or part of the connecting arm 200 is folded to the first sidewall 101.
[0080] For example, the shape of the first storage opening 201a is adapted to the auxiliary accessory 400, and the auxiliary accessory 400 is stored in the storage slot 201 through the first storage opening 201a.
[0081] For example, the support component 100 can be held by a user, such as the support component 100 including a grip body 130 that can be held by a user, with a first sidewall 101 located on the grip body 130.
[0082] For example, the support component 100 can be supported on the ground or a tabletop, and the support component 100 includes at least three legs 110 that can be supported on the ground or a tabletop.
[0083] For example, the support component 100 can be magnetically attached to a support surface.
[0084] For example, the support component 100 can be clamped onto an object, such as the support component 100 including a clip that can clamp onto the object.
[0085] Understandably, rotating the connecting arm 200 causes the connecting arm 200 to extend at a certain angle relative to the support component 100, so that the support member 300 is in a certain position of the support component 100, thereby placing the electronic terminal 500 in a certain position of the support component 100, or changing the use angle of the support member 300, thereby changing the use angle of the electronic terminal 500.
[0086] Understandably, when the connecting arm 200 is opened relative to the first sidewall 101, the auxiliary accessory 400 is detachable relative to the storage slot 201.
[0087] For example, the auxiliary accessory 400 is detachably installed in the storage slot 201, such as by interference fit between the auxiliary accessory 400 and the storage slot 201, by magnetic attachment of the auxiliary accessory 400 to the storage slot 201, or by snap-fit connection between the auxiliary accessory 400 and the storage slot 201.
[0088] For example, the electronic terminal 500 can be a mobile phone, tablet, etc.
[0089] For example, the support 300 is fixedly mounted to the connecting arm 200, or the support 300 is movably mounted to the connecting arm 200.
[0090] For example, the support 300 can be a clamp for holding the electronic terminal 500. The clamp includes a first body 310 and two clamping parts 320. The two clamping parts are respectively clamped on two opposite sides of the electronic terminal 500. The first body 310 can be elastically extended and retracted to adjust the clamping width of the clamp.
[0091] For example, the support 300 is a suction cup for attaching the electronic terminal 500, such as the suction cup being attached to the back of the electronic terminal 500.
[0092] For example, the support 300 is a magnetic component of the magnetic electronic terminal 500, and the magnetic component can be an electromagnet or a permanent magnet.
[0093] For example, the support 300 is a tray that supports the electronic terminal 500, on which the electronic terminal 500 is placed.
[0094] For example, the support 300 is the card holder 710 of the card-holding electronic terminal 500, and the card holder 710 is used to hold the card-holding electronic terminal 500.
[0095] In some implementations of the embodiments of this utility model, reference is made to Figure 2 , Figure 7 The connecting arm 200 has a pressing opening 202 communicating with the storage slot 201. The pressing opening 202 and the first storage opening 201a are located on opposite sides of the connecting arm 200. When the connecting arm 200 is open relative to the first side wall 101, the auxiliary accessory 400 is pressed through the pressing opening 202 so that the auxiliary accessory 400 can be removed from the storage slot 201 through the first storage opening 201a. Understandably, the advantage of providing the pressing opening 202 is that it allows the user of the terminal bracket to quickly remove the auxiliary accessory 400 from the storage slot 201, thus facilitating the use of the auxiliary accessory 400. For example, the user's finger (e.g., thumb) presses the auxiliary accessory 400 through the pressing opening 202 to remove it from the storage slot 201.
[0096] In some implementations, when the auxiliary accessory 400 is stored in the storage slot 201, the auxiliary accessory 400 cannot be dislodged from the storage slot 201 through the pressing opening 202. Understandably, the advantage of this design is that it prevents the auxiliary accessory 400 from being dislodged from the storage slot 201 through the pressing opening 202, thus avoiding the loss of the auxiliary accessory 400.
[0097] For example, a first projection plane is provided in the depth direction perpendicular to the storage slot 201, the auxiliary accessory 400 has a first projection on the first projection plane, and the pressing opening 202 has a second projection on the first projection plane, with the first projection encompassing the second projection.
[0098] In some implementation methods, refer to Figures 5-10The auxiliary accessory 400 is provided with at least one first snap-fit portion 401, and the connecting arm 200 is provided with at least one second snap-fit portion 213. The at least one first snap-fit portion 401 corresponds to the at least one second snap-fit portion 213. The first snap-fit portion 401 snaps into the second snap-fit portion 213 so that the auxiliary accessory 400 snaps into the connecting arm 200. The at least one second snap-fit portion 213 includes at least one suspended snap-fit portion 213a. The connecting arm 200 has a mounting groove 203. The groove wall of the mounting groove 203 is provided with a cantilever 214. The suspended snap-fit portion 213a is provided on the cantilever 214. The connecting arm 200 has a deformation space 204. During the process of the suspended snap-fit portion 213a snapping into or disengaging from the corresponding first snap-fit portion 401, the cantilever 214 deforms in the deformation space 204. Understandably, during the process of the auxiliary accessory 400 engaging or disengaging from the storage slot 201, the cantilever 214 deforms, making it easier for the suspended engaging part 213a to engage or disengage from the first engaging part 401, thereby facilitating the auxiliary accessory 400 to quickly engage with (or quickly disengage from) the storage slot 201.
[0099] Understandably, the suspended snap-fit part 213a refers to a snap-fit part that is suspended relative to the connecting arm 200, such as the cantilever 214 or the mounting groove, which makes the suspended snap-fit part 213a suspended relative to the connecting arm 200.
[0100] For example, the number of first latching parts 401 is 1 or 2, and the number of second latching parts 213 is 1 or 2. For example, the number of first latching parts 401 and second latching parts 213 is 2 each. The two first latching parts 401 are located on opposite sides of the auxiliary accessory 400, and the two second latching parts 213 are located on opposite sides of the storage slot 201.
[0101] Understandably, the number of suspension snap-fit parts 213a is less than or equal to the number of second snap-fit parts 213. For example, if there are two second snap-fit parts 213, the number of suspension snap-fit parts 213a is one.
[0102] For example, cantilever 214 is located within mounting slot 203.
[0103] In some implementation methods, refer to Figures 5-10 The first snap-fit part 401 is a snap-fit groove, and the second snap-fit part 213 is a snap-fit protrusion; or, the first snap-fit part 401 is a snap-fit protrusion, and the second snap-fit part 213 is a snap-fit groove. There are two first snap-fit parts 401 and two second snap-fit parts 213. The two first snap-fit parts 401 are located on opposite sides of the auxiliary accessory 400, and the two second snap-fit parts 213 are located on opposite sides of the storage slot 201.
[0104] Understandably, the two first snap-fit parts 401 are located on opposite sides of the auxiliary accessory 400, and the two second snap-fit parts 213 are located on opposite sides of the storage slot 201, which allows the auxiliary accessory 400 to be snapped into the storage slot 201 more securely.
[0105] Understandably, the shape of the snap-fit protrusion matches the shape of the snap-fit groove.
[0106] In some implementation methods, refer to Figures 5-10 The auxiliary accessory 400 is equipped with a button 410, and the connecting arm 200 is equipped with a first opening 205. The first opening 205 connects to the storage slot 201 and to the outer wall of the connecting arm 200. The first opening 205 corresponds to the button 410, and the user of the terminal stand can touch the button 410 through the first opening 205. It is understandable that by providing the first opening 205 on the connecting arm 200, the button 410 of the auxiliary accessory 400 can still be operated even when the auxiliary accessory 400 is stored in the storage slot 201, thus facilitating the use of the auxiliary accessory 400 even in this state of the terminal stand.
[0107] For example, a user touches button 410 with their finger through the first opening 205, where the finger can be the thumb, index finger, etc.
[0108] For example, button 410 protrudes from auxiliary accessory 400 and is located within storage groove 201; or button 410 is flush with or recessed relative to the outer wall of auxiliary accessory 400 and is located within storage groove 201.
[0109] For example, button 410 can control auxiliary accessory 400, such as by controlling the opening or closing of auxiliary accessory 400.
[0110] For example, the auxiliary accessory 400 is a fill light, which can be installed on the support 300 to provide supplemental light to the electronic terminal 500 when taking pictures.
[0111] In other examples, button 410 protrudes from auxiliary accessory 400 and is located within first opening 205.
[0112] In some implementation methods, refer to Figures 5-10 With the connecting arm 200 folded into the first side wall 101, the first side wall 101 does not obstruct the first opening 205, allowing the user of the terminal stand to touch the button 410 through the first opening 205. Understandably, even after the connecting arm 200 is folded into the first side wall 101, the auxiliary accessory 400 can still be used, thus ensuring that the auxiliary accessory 400 can still be used in the folded state of the terminal stand.
[0113] In some implementation methods, refer to Figures 5-10The auxiliary accessory 400 is provided with a third latching portion 420, and the support member 300 is provided with a fourth latching portion 301. The third latching portion 420 can latch onto the fourth latching portion 301. The third latching portion 420 is a protrusion protruding from the auxiliary accessory 400. The connecting arm 200 is provided with a second opening 206. When the auxiliary accessory 400 is stored in the storage slot 201, the third latching portion 420 is accommodated in the second opening 206. When the auxiliary accessory 400 is removed from the storage slot 201, the third latching portion 420 is removed from the connecting arm 200 through the second opening 206. The advantage of this design is that it facilitates the assembly of the auxiliary accessory 400 onto the support member 300 of the terminal bracket, and the provision of the third latching portion 420 does not affect the storage or removal of the auxiliary accessory 400.
[0114] For example, there are multiple fourth latching parts 301 and one third latching part 420. The multiple fourth latching parts 301 are respectively disposed at different parts of the support member 300. For example, there are two fourth latching parts 301, and the two fourth latching parts 301 are respectively located at the two clamping members 320 of the support member 300.
[0115] For example, the third latching portion 420 is accommodated in the second opening 206, which may refer to the third latching portion 420 being partially or completely accommodated in the second opening 206.
[0116] For example, the third latching portion 420 includes a second protrusion 421 and a third protrusion 422 protruding from the second protrusion 421. The third protrusion 422 extends toward one side of the second protrusion 421, for example, the third protrusion 422 is circumferentially disposed around one end of the second protrusion 421.
[0117] For example, the fourth latching portion 301 includes a second groove 301a and a fourth protrusion 301b located in the second groove 301a. The second protrusion 421 can be inserted into the second groove 301a. When the second protrusion 421 is inserted into the second groove 301a, the fourth protrusion 301b holds the third protrusion 422.
[0118] In some implementations, with the connecting arm 200 folded against the first sidewall 101, the connecting arm 200 is positioned between the first sidewall 101 and the support member 300. The advantage of this arrangement is that, in the retracted state of the terminal bracket, the connecting arm 200 is closer to the first sidewall 101, resulting in a smaller gap between the connecting arm 200 and the first sidewall 101, further preventing the auxiliary accessory 400 from detaching from the storage slot 201. Furthermore, the fact that the connecting arm 200 is positioned between the first sidewall 101 and the support member 300 allows the electronic terminal 500 to still be supported by the support member 300 in the retracted state.
[0119] In some implementation methods, refer to Figure 33The support assembly 100 includes a support base and a support rod 120. The support base supports the support rod 120, and the support rod 120 is mounted on the support base. A connecting arm 200 is rotatably mounted on the support rod 120, and a support member 300 is mounted on the connecting arm 200. A first sidewall 101 is located on the support base and / or the support rod 120. The advantage of this arrangement is that when the connecting arm 200 is folded against the first sidewall 101, the support base and / or the support rod 120 hold the auxiliary accessory 400 to prevent the auxiliary accessory 400 from falling out of the storage slot 201.
[0120] For example, the first sidewall 101 is located on the support rod 120 or the support seat.
[0121] For example, the first sidewall 101 is located between the support rod 120 and the support seat, that is, the first sidewall 101 extends from the support rod 120 to the support seat.
[0122] For example, support rod 120 is a rod of fixed length.
[0123] For example, the support rod 120 is a telescopic rod. When the support rod 120 is in the extended state, the first side wall 101 is located on the support rod 120, and the connecting arm 200 can be folded into the support rod 120. When the support rod 120 is in the retracted state, the first side wall 101 is located on the support seat, and the connecting arm 200 can be folded into the support seat. When the support rod 120 is in an intermediate state, the first side wall 101 is located between the support rod 120 and the support seat.
[0124] For example, the support base can be held by a user, such as a grip body 130 that can be held by a user, with a first sidewall 101 located on the grip body 130.
[0125] For example, the support base can be supported on the ground or a tabletop, and the first sidewall 101 is located on the support base.
[0126] For example, the support base can be magnetically attached to a support surface, with the first sidewall 101 located on the support base.
[0127] For example, the support base can be clamped to an object, such as support assembly 100 including a clamp that can clamp the object, and a first sidewall 101 located on the support base.
[0128] In some implementation methods, refer to Figure 33The support base includes at least three legs 110, which can be opened or retracted. When the legs are open, the support base can be supported on a support surface. When the legs are retracted, the support base forms a gripping body 130, with a first sidewall 101 located within the gripping body 130. The terminal bracket also includes a sliding sleeve 140 and at least three connecting rods 150. The sliding sleeve 140 is slidably mounted on the support rod 120 along its length. Each connecting rod 150 corresponds to at least three legs 110. One end of each leg 110 is rotatably connected to a sliding sleeve 140. One end of each connecting rod 150 is rotatably connected to a leg 110, and the other end is rotatably connected to a support rod 120. During the sliding of the sliding sleeve 140 relative to the support rod 120, at least three legs 110 open or retract relative to the support rod 120. The support rod 120 is a telescopic rod. When the telescopic rod is in the retracted state, the connecting arm 200 can be folded into the grip body 130. The advantage of this design is that the support base of the terminal bracket can have multiple states. When the support base is open, it can support the ground or a tabletop. When the support base is retracted, it can form a grip body 130 for the user to hold. Furthermore, the connecting arm 200 can be folded into the grip body 130, and the grip body 130 holds the auxiliary accessory 400, preventing the auxiliary accessory 400 from falling out of the storage slot 201.
[0129] It should be understood that the support rod 120, sliding sleeve 140, support leg 110, and corresponding connecting rod 150 form a slider-connecting rod 150 mechanism.
[0130] For example, with the support leg 110 retracted into the support rod 120, the connecting rod 150 is located between the support rod 120 and the corresponding support leg 110.
[0131] For example, the cross-section of the support leg 110 is arc-shaped, and the support leg 110 as a whole has an arc-shaped sheet structure. When at least three support legs 110 are retracted, the grip body 130 has a columnar structure, such as a cylindrical structure.
[0132] It should be understood that the shape and size of the grip 130 can be any shape and size that a user can hold with one hand.
[0133] In some implementation methods, refer to Figure 34The support rod 120 has a first central axis 102 along its length; the support member 300 is rotatably mounted on the connecting arm 200 about the first rotation axis 302; the connecting arm 200 rotates relative to the support rod 120 such that the support member 300 is in a first position relative to the support rod 120. In the first position, the angle between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 5°, and the distance between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 0.5 cm; the first rotation axis 302 and the first central axis 102 are coaxial, parallel, intersecting, or skew. Coaxiality between the first rotation axis 302 and the first central axis 102 is defined as: the first rotation axis 302 and the first central axis 102... The angle between the first rotation axis 302 and the first central axis 102 is 0°, and the distance between them is 0°. Parallelism between the first rotation axis 302 and the first central axis 102 is defined as follows: the angle between the first rotation axis 302 and the first central axis 102 is 0°, and the distance between them is greater than 0°. Intersection between the first rotation axis 302 and the first central axis 102 is defined as follows: the angle between the first rotation axis 302 and the first central axis 102 is greater than 0°, and the distance between them is 0°. Skewness between the first rotation axis 302 and the first central axis 102 is defined as follows: the angle between the first rotation axis 302 and the first central axis 102 is greater than 0°, and the distance between them is greater than 0°.
[0134] The advantage of this arrangement is that the first rotation axis 302 of the support member 300 is close to or coaxial with the first central axis 102 of the support rod 120, so that the support member 300 is centered relative to the support rod 120, and the support member 300 rotates more smoothly when rotating around the first rotation axis 302.
[0135] For example, all or most of the support rod 120 is a geometric body having a first central axis 102 along its length, and the geometric center of any cross-section of the geometric body is on the first central axis 102.
[0136] For example, the support rod 120 is columnar, rotary, or a combination of both, such as cylindrical, square, etc.
[0137] For example, the support rod 120 can be a hollow rod with a cavity, the first central axis 102 of which is located in the cavity of the support rod 120.
[0138] Understandably, the rotation of the connecting arm 200 relative to the support rod 120 can cause the support member 300 to be in a certain position on the support rod 120, such as the first position.
[0139] Understandably, the first position should be understood as a range of positions, namely, a range of positions that satisfy the condition that "the angle between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 5°, and the distance between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 0.5cm".
[0140] For example, the connecting arm 200 has a structure of various forms. In a certain form, the connecting arm 200 can rotate relative to the support rod 120 so that the support member 300 is in the first position of the support member. The angle between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 5°, and the distance between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 0.5cm.
[0141] In other examples, the connecting arm 200 itself is a fixed structure (e.g., the connecting arm 200 is a one-piece molded structure). When the connecting arm 200 rotates relative to the support rod 120 to a certain position, the support member 300 can be in the first position of the support member. The angle between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 5°, and the distance between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 0.5cm.
[0142] The distance between two straight lines is defined as follows: point a is any point on one line and point b is any point on the other line. The shortest distance between points a and b is the distance between the two lines. It can be understood that when two lines intersect, the distance between the two lines is 0.
[0143] The angle between two straight lines is greater than or equal to 0 and less than or equal to 90°. When two straight lines are coaxial or parallel, the angle between them is 0°.
[0144] It should be understood that the terminal bracket of this utility model embodiment is in a relatively stable usage state when the angle between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 5°, and the distance between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 0.5cm. However, this utility model embodiment does not limit the use of the terminal bracket in this state.
[0145] In some implementation methods, refer to Figure 2 , Figure 33 , Figure 34etc. The connecting arm 200 includes a first arm body 210 and a second arm body 220. The second arm body 220 is rotatably mounted on the first arm body 210, and the first arm body 210 is rotatably mounted on the support rod 120. The supporting member 300 is rotatably mounted on the second arm body 220 around the first rotation axis 302. In the state where the second arm body 220 is in the third position relative to the first arm body 210, the rotation of the first arm body 210 relative to the support rod 120 can make the supporting member 300 in the first position; in the state where the second arm body 220 is in the second position relative to the first arm body 210, the rotation of the first arm body 210 relative to the support rod 120 can make the connecting arm 200 foldable on the first side wall 101. The advantage of such a setting is that the connecting arm 200 can be in different states to facilitate the use of the terminal bracket. For example, when the terminal bracket needs to be stored, the second arm body 220 can be in the second position of the first arm body 210 to facilitate the folding of the connecting arm 200 on the first side wall 101; when the supporting member 300 needs to be used centered relative to the support rod 120, the second arm body 220 can be in the third position of the first arm body 210, and the rotation of the first arm body 210 relative to the support rod 120 makes the supporting member 300 in the first position of the support rod 120.
[0146] Exemplarily, in the state where the second arm body 220 is in the third position relative to the first arm bodyFor example, the terminal bracket has a first fastener 230. During the rotation of the second arm 220 relative to the first arm 210, the second arm 220 is fastened to the first arm 210 by the first fastener 230, so that the first arm 210 is held in place by the first arm 220. The first fastener 230 is a threaded part, which provides frictional damping between the second arm 220 and the first arm 210. The first fastener 230 passes through the second arm 220 and the first arm 210, and also serves to rotatably connect the second arm 220 to the first arm 210. Specifically, the second arm 220 is rotatably mounted on the first arm 210 about a third rotation axis. The first arm 210 is provided with a plurality of first friction grooves 215, and the second arm 220 is provided with a plurality of second friction grooves 221. During the rotation of the second arm 220 about the first arm 210, the second friction grooves 221 and the first friction grooves 215 come into frictional contact. Specifically, the first friction pattern 215 is a raised pattern and the second friction pattern 221 is an incised pattern, or the first friction pattern 215 is an incised pattern and the second friction pattern 221 is a raised pattern. More specifically, the plurality of first friction patterns 215 are centrally symmetrical about the third rotation axis, and the plurality of second friction patterns 221 are centrally symmetrical about the third rotation axis; the first friction pattern 215 is a radially extending stripe pattern, and the second friction pattern 221 is a radially extending stripe pattern.
[0150] In other examples, the terminal bracket has a locking structure that allows the first arm 210 to be held in a certain position relative to the second arm 220 during rotation of the first arm 210 relative to the second arm 220, so that the first arm 210 is held in the second arm 220.
[0151] In other examples, the second arm 220 is directly or indirectly interference-fitted with the first arm 210 so that the second arm 220 can be held in place of the first arm 210.
[0152] In other examples, there is frictional damping between the first arm 210 and the second arm 220, such that the first arm 210 can be held in place by the second arm 220. For example, there is a damping ring between the second arm 220 and the first arm 210, such that there is frictional damping between the second arm 220 and the first arm 210.
[0153] In some implementations of the embodiments of this utility model, reference is made to Figure 2 , Figure 4 , Figure 33 , Figure 34The first arm body 210 includes a first main arm 211 and a first extension arm 212 connected to the first main arm 211. The first extension arm 212 extends to one side of the first main arm 211 and is rotatably mounted on the support rod 120. When the connecting arm 200 is folded into the first side wall 101, the first main arm 211 is close to or attached to the first side wall 101, and the first main arm 211 holds the auxiliary accessory 400. The second arm body 220 is close to or attached to the first side wall 101. Setting the first arm body 210 into the structure of the first main arm 211 and the first extension arm 212 facilitates the folding of the connecting arm 200 into the first side wall 101. Furthermore, the fact that both the first main arm 211 and the second arm body 220 are close to or attached to the first side wall 101 makes the terminal bracket occupy a small volume when stored. In addition, the first main arm 211 holds the auxiliary accessory 400 to prevent the auxiliary accessory 400 from falling out of the storage slot 201.
[0154] Understandably, the shapes of the first main arm 211 and the second arm body 220 are adapted to the first sidewall 101.
[0155] For example, the first sidewall 101 extends along a straight line, and the first main arm 211 and the second arm body 220 are generally strip-shaped.
[0156] In other examples, the first sidewall 101 extends along a fold line, and the first main arm 211 and the second arm body 220 are bent.
[0157] In some implementations of the embodiments of this utility model, reference is made to Figure 2 , Figure 4 , Figure 33 , Figure 34 , Figure 35 , Figure 37 The first main arm 211 has a first side surface 211a, and the second arm body 220 has a second side surface 222. When the second arm body 220 is in a second position relative to the first arm body 210, the first side surface 211a and the second side surface 222 are aligned. When the connecting arm 200 is folded against the first side wall 101, the first side surface 211a is close to or attached to the first side wall 101, and the first side surface 211a holds the auxiliary accessory 400. The second side surface 222 is close to or attached to the first side wall 101. It can be understood that the first side surface 211a and the second side surface 222 facilitate the folding of the connecting arm 200 against the first side wall 101. On the other hand, the fact that both the first side surface 211a and the second side surface 222 are close to or attached to the first side wall 101 makes the terminal bracket occupy a small volume when stored. Furthermore, the first side surface 211a holds the auxiliary accessory 400 to prevent the auxiliary accessory 400 from falling out of the storage slot 201.
[0158] For example, the alignment of the first side 211a and the second side 222 means that the first side 211a and the second side 222 are located on the same describable surface, such as the first side 211a and the second side 222 being located on a plane, or the first side 211a and the second side 222 being located on an analytical surface (such as a sphere, a cylinder, a cone, etc.).
[0159] In some implementations of the embodiments of this utility model, reference is made to Figure 2 , Figure 4 , Figure 33 , Figure 34 , Figure 35 , Figure 37 The first main arm 211 has a first limiting surface 211b, and the second arm 220 has a second limiting surface 223. When the second arm 220 is in a third position relative to the first arm 210, the second side surface 222 abuts against the first main arm 211. The first arm 210 can rotate relative to the support rod 120 to make the support member 300 in a first position. The second arm 220 and the first extension arm 212 extend to the same side of the first main arm 211, and the second side surface 222 abuts against the first limiting surface 211b. When the second arm 220 is in a second position relative to the first arm 210, the second limiting surface 223 abuts against the first limiting surface 211b. The first main arm 211 and the second arm 220 form a first strip structure. The first strip structure and the first main arm 211 extend in a direction parallel to the first straight line. Understandably, the first limiting surface 211b and the second side surface 222 allow the second arm 220 to rotate quickly relative to the first arm 210 to a third position, so that the connecting arm 200 can rotate relative to the support rod 120 so that the support member 300 is in the first position of the support rod 120; the first limiting surface 211b and the second side surface 222 allow the second arm 220 to rotate quickly relative to the first arm 210 to a second position, so that the connecting arm 200 can be quickly stored in the first side wall 101.
[0160] Understandably, the second side 222 facilitates the rapid rotation of the second arm 220 to the third position and also facilitates the folding of the second arm 220 onto the first side wall 101, making the structure of the terminal bracket more compact.
[0161] Understandably, the first main arm 211 and the second arm body 220 form a first strip structure. When the connecting arm 200 is folded into the first side wall 101, the terminal bracket has a compact structure and occupies a small volume.
[0162] For example, the first sidewall 101 extends in a direction parallel to the second straight line, and when the connecting arm 200 is folded over the first sidewall 101, the first straight line is parallel to the second straight line.
[0163] In some implementations of the embodiments of this utility model, reference is made to Figure 2 , Figure 4 , Figure 33 , Figure 34 The second arm 220 is rotatably mounted on the first arm 210 around a third rotation axis. The angle between the third rotation axis and the first rotation axis 302 is greater than or equal to 85° and less than or equal to 90°. The angle between the third rotation axis and the first straight line is greater than or equal to 85° and less than or equal to 90°. The connecting arm 200 is rotatably mounted on the support rod 120 around a second rotation axis. The angle between the second rotation axis and the first straight line is greater than or equal to 85° and less than or equal to 90°. The first main arm 211 and the second arm 220 form a first strip structure. During the rotation of the connecting arm 200 relative to the support rod 120, the angle between the first straight line and the first central axis 102 can be any angle between 0° and 90°. The connecting arm 200 is rotatably mounted on the support rod 120 around a second rotation axis. The angle between the second rotation axis and the first central axis 102 is greater than or equal to 85° and less than or equal to 90°. Understandably, the support member 300 can rotate about a first rotation axis 302 and about a third rotation axis. The first rotation axis 302 and the third rotation axis are nearly perpendicular or perpendicular to each other, which facilitates the adjustment of the use angle of the support member 300.
[0164] Understandably, the angle between the second rotation axis and the first straight line is close to perpendicular or perpendicular. During the rotation of the connecting arm 200 relative to the support rod 120, the connecting arm 200 extends a greater distance relative to the support rod 120, thereby facilitating the use of the terminal bracket.
[0165] For example, the angle between the third rotation axis and the first rotation axis 302 can be 85°, 86°, 87°, 88°, 89°, 90°, etc.
[0166] For example, the angle between the third axis of rotation and the first straight line can be 85°, 86°, 87°, 88°, 89°, 90°, etc.
[0167] For example, the angle between the second axis of rotation and the first straight line can be 85°, 86°, 87°, 88°, 89°, 90°, etc.
[0168] For example, the angle between the second rotation axis and the first central axis 102 can be 85°, 86°, 87°, 88°, 89°, or 90°.
[0169] Understandably, the angle between the first straight line and the first central axis 102 can be any angle between 0° and 90°, which allows the connecting arm 200 to have a large range of rotation relative to the support rod 120, thus facilitating the use of the terminal bracket.
[0170] In some implementations of the embodiments of this utility model, reference is made to Figure 2 , Figure 4 , Figure 33 , Figure 34 The connecting arm 200 can be held on the support rod 120, the support member 300 can be held on the connecting arm 200, and the second arm 220 can be held on the first arm 210. The advantage of this arrangement is that it facilitates adjustment of the shape of the connecting arm 200, the position of the connecting arm 200 relative to the support rod 120, and the position of the support member 300 relative to the connecting arm 200, thereby facilitating the use of the terminal bracket. Understandably, the connecting arm 200 can be held on the support rod 120; for example, the connecting arm 200 can be held at a certain position relative to the support rod 120, or the connecting arm 200 can be held at any position on the support rod 120.
[0171] For example, the terminal bracket has a second fastener 600. During the rotation of the connecting arm 200 relative to the support rod 120, the connecting arm 200 is fastened to the support rod 120 by the second fastener 600, so that the support rod 120 is held to the connecting arm 200. The second fastener 600 is a threaded part, which provides frictional damping between the connecting arm 200 and the support rod 120. The second fastener 600 passes through the connecting arm 200 and the support rod 120, and also serves to rotatably connect the connecting arm 200 to the support rod 120. Specifically, the connecting arm 200 is rotatably mounted on the support rod 120 about a second rotation axis. The support rod 120 has multiple third friction grooves, and the connecting arm 200 has multiple fourth friction grooves. During the rotation of the connecting arm 200 about the support rod 120, the fourth friction grooves come into frictional contact with the third friction grooves. Specifically, the third friction grooves are raised and the fourth friction grooves are recessed, or the third friction grooves are recessed and the fourth friction grooves are raised. More specifically, multiple third friction patterns are centrally symmetrical about the third rotation axis, and multiple fourth friction patterns are centrally symmetrical about the third rotation axis; the third friction patterns are radially extending stripes, and the fourth friction patterns are radially extending stripes.
[0172] In another example, the terminal bracket has a locking structure that allows the support rod 120 to be held at a certain position relative to the connecting arm 200 during rotation of the support rod 120 relative to the connecting arm 200, so that the support rod 120 is held on the connecting arm 200.
[0173] In other examples, the connecting arm 200 is directly or indirectly interference-fitted with the support rod 120 so that the connecting arm 200 can be held in place by the support rod 120.
[0174] In other examples, there is frictional damping between the support rod 120 and the connecting arm 200, so that the support rod 120 can be held in place by the connecting arm 200. For example, there is a damping ring between the connecting arm 200 and the support rod 120, so that there is frictional damping between the connecting arm 200 and the support rod 120.
[0175] Understandably, the support 300 being held on the connecting arm 200 can mean that the support 300 is held at a certain position on the connecting arm 200, or that the support 300 is held at any position on the connecting arm 200.
[0176] In another example, the terminal bracket has a holding assembly 700, which holds the connecting arm 200 in a certain position relative to the support 300 during rotation of the connecting arm 200 relative to the support 300, so that the connecting arm 200 is held on the support 300.
[0177] In another example, the terminal bracket has a third fastener that secures the support 300 to the connecting arm 200 during rotation of the support 300 relative to the connecting arm 200, so that the connecting arm 200 is held to the support 300. The third fastener is threaded and provides frictional damping between the support 300 and the connecting arm 200. The third fastener passes through the support 300 and the connecting arm 200 and also serves to rotatably connect the support 300 to the connecting arm 200.
[0178] In other examples, the support 300 is directly or indirectly interference-fitted with the connecting arm 200 so that the support 300 can be held in place by the connecting arm 200.
[0179] In other examples, there is frictional damping between the connecting arm 200 and the support 300, so that the connecting arm 200 can be held in place by the support 300. For example, there is a damping ring between the support 300 and the connecting arm 200, so that there is frictional damping between the support 300 and the connecting arm 200.
[0180] In some implementations of the embodiments of this utility model, reference is made to Figure 2 , Figure 4 , Figure 33 , Figure 34 With at least three support legs 110 in the open state, the at least three support legs 110 are centrally symmetrical about the first central axis 102. This makes the terminal support more stable when supported on a support surface. Furthermore, the terminal support is even more stable when the angle between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 5°, and the distance between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 0.5cm.
[0181] In some implementations of the embodiments of this utility model, reference is made to Figure 26 The support member 300 has a first clamping gap 303 for clamping the electronic terminal 500. The first clamping gap 303 is used to clamp the electronic terminal 500 along the length or width direction of the electronic terminal 500. The electronic terminal 500 has a shooting lens 510. When the electronic terminal 500 is clamped in the first clamping gap 303, the angle between the axis of the shooting lens 510 and the first rotation axis 302 is greater than or equal to 0° and less than or equal to 5°. The support member 300 has a second clamping gap 304 for clamping the electronic terminal 500. The electronic terminal 500 is a plate-shaped object. The second clamping gap 304 is used to clamp the electronic terminal 500 along the thickness direction of the electronic terminal 500. When the electronic terminal 500 is clamped in the second clamping gap 304, the angle between the axis of the shooting lens 510 and the first rotation axis 302 is greater than or equal to 85° and less than or equal to 90°. Understandably, the terminal bracket of this utility model embodiment provides multiple clamping methods for the support member 300, so that the support member 300 can clamp the electronic terminal 500 in the width, length and thickness directions, thereby facilitating the use of the electronic terminal 500.
[0182] Understandably, the support 300 clamps the electronic terminal 500 in the thickness direction, which improves the convenience of shooting with the terminal bracket. For example, if the support 300 cannot obtain a good shooting angle when clamping the electronic terminal 500 in the length or width direction, you can try clamping the electronic terminal 500 in the thickness direction.
[0183] For example, the axis of the camera lens 510 of the electronic terminal 500 is along the thickness direction of the electronic terminal 500.
[0184] It should be understood that when the angle between the axis of the shooting lens 510 and the first rotation axis 302 is greater than or equal to 0° and less than or equal to 5°, the support 300 rotates around the first rotation axis 302, and the shooting lens 510 surrounds the first rotation axis 302 to shoot, and the orientation of the shooting lens 510 changes little.
[0185] For example, when the angle between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 5°, and the distance between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 0.5cm, the second clamping gap 304 of the support member 300 is used to clamp the electronic terminal 500 along the thickness direction of the electronic terminal 500. The support member 300 rotates around the first rotation axis 302, which allows the electronic terminal 500 to take pictures around the terminal bracket. With the cooperation of the drive component 800 and the controller, the terminal bracket can realize the tracking and shooting of the surrounding objects.
[0186] It should be understood that when the electronic terminal 500 is clamped in the second clamping gap 304, the angle between the axis of the shooting lens 510 and the first rotation axis 302 is greater than or equal to 85° and less than or equal to 90°. As the support member 300 rotates around the first rotation axis 302, the shooting angle of the shooting lens 510 changes significantly during the process of shooting around the first rotation axis 302. In this clamping state, the shooting angle of the electronic terminal 500 can also be adjusted by utilizing the rotation of the first arm 210 relative to the support rod 120, or the rotation of the second arm 220 relative to the first arm 210.
[0187] For example, when the second arm 220 is in a second position relative to the first arm 210 (e.g., when the second arm 220 and the first main arm 211 are in a first strip structure), the first clamping gap 303 clamps the electronic terminal 500 in the length or width direction of the electronic terminal 500, and the first arm 210 rotates relative to the support rod 120, so that the usage angle of the electronic terminal 500 can be adjusted.
[0188] For example, the first arm 210 is positioned under the support rod 120, and the first clamping gap 303 clamps the electronic terminal 500 in the length or width direction. The second arm 220 rotates relative to the first arm 210, adjusting the usage angle of the electronic terminal 500. The usage angle of the electronic terminal 500 can be the usage angle of the camera lens 510 of the electronic terminal 500, or the usage angle of the plane of the electronic terminal 500.
[0189] For example, when the electronic terminal 500 is clamped in the first clamping gap 303, the angle between the axis of the shooting lens 510 and the first rotation axis 302 can be 0°, 1°, 2°, 3°, 4°, 5°, etc.
[0190] For example, when the electronic terminal 500 is held in the second clamping gap 304, the angle between the axis of the shooting lens 510 and the first rotation axis 302 can be 85°, 86°, 87°, 88°, 89°, or 90°.
[0191] In other examples, when the electronic terminal 500 is held in the first clamping gap 303, the angle between the axis of the shooting lens 510 and the first rotation axis 302 is greater than 5°.
[0192] In other examples, when the electronic terminal 500 is held in the second clamping gap 304, the angle between the axis of the shooting lens 510 and the first rotation axis 302 is less than 85°.
[0193] In some implementations of the embodiments of this utility model, reference is made to Figures 12-27The terminal bracket also includes a holding assembly 700, and a support member 300 rotatably mounted on the connecting arm 200. The support member 300 has a first rotating part 330, which is provided with at least one holding groove 305, which communicates with the outer side wall of the first rotating part 330. The holding assembly 700 includes a holding member 710, a first elastic element 720, and a actuating member 730. The holding member 710 is movably mounted on the connecting arm 200. One end of the first elastic element 720 acts on the connecting arm 200, and the other end acts on the holding member 710. The actuating member 730 is slidably mounted on the connecting arm 200 such that the actuating member 730 can be in a fourth position and a fifth position relative to the connecting arm 200. In the fourth position, the elastic element causes the retaining member 710 to abut against the outer wall of the first rotating part 330 or to be engaged in the retaining groove 305. When the retaining member 710 abuts against the outer wall of the first rotating part 330, and the first rotating part 330 rotates by an angle, the elastic element causes the retaining member 710 to be engaged in the retaining groove 305. During the movement of the actuating member 730 from the fourth position to the fifth position, the actuating member 730 causes the retaining member 710 to disengage from the first rotating part 330. When the actuating member 730 is in the fifth position, the actuating member 730 holds the retaining member 710 in the state of disengagement from the first rotating part 330. Understandably, when the electronic terminal 500 is heavy or when the support member 300 needs to be kept in a more stable state, the retaining assembly 700 can hold the support member 300 in a certain position on the connecting arm 200, thereby facilitating the use of the terminal bracket.
[0194] Understandably, when the toggle member 730 is toggled to the fourth position, the elastic element causes the retaining member 710 to move toward the first rotating part 330. The elastic element causes the retaining member 710 to finally be engaged in the retaining groove 305. The retaining assembly 700 does not need to be manually aligned with the retaining groove 305, thus facilitating the use of the terminal bracket.
[0195] Understandably, when the retaining member 710 is abutting against the outer wall of the first rotating part 330, the support member 300 causes the first rotating part 330 to rotate by an angle under the action of external force or its own gravity torque, and the elastic element causes the retaining member 710 to be retained in the retaining groove 305.
[0196] Understandably, the toggle 730 can remain in the fourth or fifth position.
[0197] Understandably, at least a portion of the toggle 730 protrudes from or is exposed on the connecting arm 200 so that the user can toggle the toggle 730.
[0198] For example, the first elastic element 720 is a spring, sheet, elastic rope, etc., and the first elastic element 720 is integrally connected to or abuts against the connecting arm 200, and the first elastic element 720 is integrally connected to or abuts against the retaining member 710.
[0199] For example, the number of card holder slots 305 is 1, 2, 3, 4, etc.
[0200] For example, the support 300 is rotatably mounted on the connecting arm 200 about the first rotation axis 302, and the first rotating part 330 is a rotating body about the first rotation axis 302, such as a cylinder or a cone.
[0201] In other examples, the first rotating part 330 is a non-rotating body.
[0202] In other examples, the first rotating part 330 is a rotating body whose axis of rotation is not coaxial with the first rotating axis 302.
[0203] In other examples, the support 300 is connected to the connecting arm 200 via a ball joint.
[0204] For example, the retainer 710 is rotatably mounted on the connecting arm 200.
[0205] For example, the retainer 710 is slidably mounted on the connecting arm 200.
[0206] Understandably, when the retaining member 710 disengages from the first rotating part 330 and the supporting member 300 rotates relative to the connecting arm 200, the retaining member 710 does not obstruct the rotation of the supporting member 300.
[0207] For example, the holding assembly 700 is mounted on the second arm body 220 of the connecting arm 200.
[0208] In some implementation methods, refer to Figures 12-27The connecting arm 200 has a first sliding space 207, and the actuating member 730 is slidably mounted in the first sliding space 207. The actuating member 730 has a first pressing protrusion 731 and a second pressing protrusion 732 at its two ends. Pressing the first pressing protrusion 731 moves the actuating member 730 from a fourth position to a fifth position, and pressing the second pressing protrusion 732 moves the actuating member 730 from a fifth position to a fourth position. When the actuating member 730 is in the fourth position, the first pressing protrusion 731 protrudes from the first side of the connecting arm 200, and the second pressing protrusion 732 is accommodated in the first sliding space 207. When the actuating member 730 is in the fifth position, the first pressing protrusion 731 is accommodated in the first sliding space 207. The sliding space 207 has a second pressing protrusion 732 protruding from the second side of the connecting arm 200. The first side and the second side are located on opposite sides of the connecting arm 200, respectively. The first sliding space 207 includes a first exposed opening 207a and a second exposed opening 207b. The first exposed opening 207a communicates with the first side of the connecting arm 200, and the second exposed opening 207b communicates with the second side of the connecting arm 200. When the toggle member 730 is in the fourth position, the first pressing protrusion 731 protrudes from the first side of the connecting arm 200 through the first exposed opening 207a. When the toggle member 730 is in the fifth position, the second pressing protrusion 732 protrudes from the second side of the connecting arm 200 through the second exposed opening 207b. Understandably, the toggle member 730 is in different positions, and different parts of the toggle member 730 protrude relative to the connecting arm 200, which facilitates the use of the toggle member 730. Furthermore, the toggle member 730 protrudes from the first side of the connecting arm 200 when it is in the fourth position, and from the second side of the connecting arm 200 when it is in the fifth position, which reduces user misoperation.
[0209] It should be understood that the shape of the first sliding space 207 is adapted to the toggle member 730, such that the toggle member 730 is slidably mounted in the first sliding space 207.
[0210] It should be understood that the toggle member 730 is slidably mounted in the first sliding space 207, and the toggle member 730 cannot detach from the first sliding space 207 during the sliding process.
[0211] For example, when the toggle 730 is in the fourth position, the second pressing protrusion 732 does not protrude from the second side of the connecting arm 200, for example, the second pressing protrusion 732 is located in the second exposed opening 207b.
[0212] For example, when the toggle 730 is in the fifth position, the first pressing protrusion 731 does not protrude from the first side of the connecting arm 200, for example, the first pressing protrusion 731 is located in the first exposed opening 207a.
[0213] In other examples, when the toggle 730 is in the fourth position, the protrusion length of the first pressing protrusion 731 relative to the first side is greater than the protrusion length of the second pressing protrusion 732 relative to the second side.
[0214] In other examples, when the toggle 730 is in the fifth position, the protrusion length of the second pressing protrusion 732 relative to the second side is greater than the protrusion length of the first pressing protrusion 731 relative to the first side.
[0215] In some implementations of the embodiments of this utility model, reference is made to Figures 12-27 The terminal bracket has a first limiting wall 1001 and a second limiting wall 1002. The first limiting wall 1001 and the second limiting wall 1002 allow the actuating member 730 to be slidably installed in the first sliding space 207. The actuating member 730 is provided with a limiting protrusion 733. The limiting protrusion 733 has a third limiting wall 707 and a fourth limiting wall 708. When the actuating member 730 is in the fourth position, the third limiting wall 707 abuts against the first limiting wall 1001. When the actuating member 730 is in the fifth position, the fourth limiting wall 708 abuts against the second limiting wall 1002. The first limiting wall 1001 is located on the connecting arm 200 and / or the retaining member 710, and the second limiting wall 1002 is located on the connecting arm 200 and / or the retaining member 710. Understandably, the first limiting wall 1001 and the second limiting wall 1002 enable the actuating member 730 to slide quickly to the fourth or fifth position and prevent the actuating member 730 from dislodging from the first sliding space 207.
[0216] For example, there are two limiting protrusions 733, and the retaining member 710 is located between the two limiting protrusions 733. Both the connecting arm 200 and the retaining member 710 are provided with a first limiting wall 1001. When the actuating member 730 is in the fourth position, the third limiting wall 707 of one of the limiting protrusions 733 abuts against the first limiting wall 1001 of the retaining member 710, and the third limiting wall 707 of the other limiting protrusion 733 abuts against the first limiting wall 1001 of the connecting arm 200. When the actuating member 730 is in the fifth position, the fourth limiting wall 708 of one of the limiting protrusions 733 abuts against the second limiting wall 1002 of the connecting arm 200, and the fourth limiting wall 708 of the other limiting protrusion 733 abuts against the second limiting wall 1002 of the retaining member 710.
[0217] In other examples, there is one limiting protrusion 733, with a first limiting wall 1001 located on the connecting arm 200 and a second limiting wall 1002 located on the retaining member 710.
[0218] In other examples, there is one limiting protrusion 733, the first limiting wall 1001 is located on the retaining member 710, and the second limiting wall 1002 is located on the connecting arm 200.
[0219] In other examples, there is one limiting protrusion 733, with a first limiting wall 1001 located on the connecting arm 200 and a second limiting wall 1002 located on the connecting arm 200.
[0220] In other examples, there is one limiting protrusion 733, with a first limiting wall 1001 located on the retaining member 710 and a second limiting wall 1002 located on the retaining member 710.
[0221] In some implementations of the embodiments of this utility model, reference is made to Figure 25 , Figure 37-40 The connecting arm 200 also includes an arm body 200a and a cover 200b detachably mounted on the arm body 200a. The arm body 200a has an assembly space 209 and an assembly opening 209a communicating with the assembly space 209. The holding component 700 can be inserted into the assembly space 209 through the assembly opening 209a. The arm body 200a has a second sliding space 208, in which the holding component 710 is slidably mounted. The arm body 200a and the cover 200b surround and form the second sliding space 208. Understandably, the assembly opening 209a facilitates the assembly of the holding component 700 onto the connecting arm 200. Understandably, the cover 200b closes the assembly opening 209a, on the one hand preventing dust and other debris from entering the assembly space 209, and on the other hand, closing the opening and surrounding the second sliding space 208 with the arm body 200a makes the terminal bracket structure compact.
[0222] Understandably, the first sliding space 207 and the second sliding space 208 are part of the assembly space 209.
[0223] For example, the first fastener 230 passes through the cover 200b to prevent the cover 200b from detaching from the arm body 200a.
[0224] In some implementations of this utility model, the connecting arm 200 is provided with a first mounting protrusion 224, the retaining member 710 is provided with a second mounting protrusion 711, the first elastic element 720 is a cylindrical spring, the first mounting protrusion 224 is sleeved on one end of the first elastic element 720, and the first mounting protrusion 224 is sleeved on the other end of the first elastic element 720.
[0225] Understandably, the first mounting protrusion 224 is fitted onto one end of the first elastic element 720 and the other end of the first elastic element 720, so as to prevent the first elastic element 720 from detaching from the first mounting protrusion 224 or the second mounting protrusion 711 during the extension and contraction process, and to prevent the first elastic element 720 from failing.
[0226] For example, the first elastic element 720 is a compression spring. During the process of the actuating member 730 moving from the fourth position to the fifth position, the actuating member 730 causes the retaining member 710 to disengage from the first rotating part 330. The retaining member 710 compresses the first elastic element 720. During the process of the actuating member 730 moving from the fifth position to the fourth position, the first elastic element 720 pushes the retaining member 710 toward the first rotating part 330.
[0227] In some implementations of the embodiments of this utility model, reference is made to Figures 12-25 The actuating member 730 has a protruding abutment 734, and the retaining member 710 is slidably mounted on the connecting arm 200. The retaining member 710 has a first abutment wall 701 and a recess space 702. When the actuating member 730 is in the fifth position, the abutment 734 abuts against the first abutment wall 701. When the actuating member 730 is in the fourth position, the abutment 734 is located in the recess space 702. The retaining member 710 has a first sliding surface 703. During the process of the actuating member 730 sliding from the fourth position to the fifth position, the abutment 734 slides across the first sliding surface 703, and the retaining member 710 moves away from the first rotating part 330. The retaining member 710 has a protruding abutment 734. A retaining protrusion 712 is located between the recess space 702 and the first abutment wall 701. During the sliding of the actuating member 730 from the fifth position to the fourth position, the abutment protrusion 734 slides past the retaining protrusion 712. The abutment protrusion 734 has a second sliding surface 704 and an abutment end 705. The second sliding surface 704 extends to the abutment end 705 of the abutment protrusion 734. When the actuating member 730 is in the fourth position, the second sliding surface 704 abuts against the first sliding surface 703. During the sliding of the actuating member 730 from the fourth position to the fifth position, the second sliding surface 704 slides past the first sliding surface 703. The first sliding surface 703 is a plane inclined relative to the sliding direction of the retaining member 710, and the second sliding surface 704 is a plane parallel to the first sliding surface 703. Understandably, the arrangement of the first abutting wall 701 and the retraction space 702 allows the retaining member 710 to be in different positions. For example, when the abutting protrusion 734 is abutting against the first abutting wall 701, the retaining member 710 is in a state of being disengaged from the first rotating part 330. Or, for example, when the abutting protrusion 734 is located in the retraction space 702, the first elastic element 720 pushes the retaining member 710 to abut against the outer wall of the first rotating part 330 or to be retained in the retaining groove 305 of the first rotating part 330.
[0228] Understandably, when the toggle 730 is in the fourth position, the user's hand presses the toggle 730, and the first sliding surface 703 facilitates the toggle 730 to slide from the fourth position to the fifth position.
[0229] Understandably, when the actuating member 730 is in the fifth position, the blocking protrusion 712 can prevent the actuating member 730 from sliding to the fourth position under its own gravity torque (or other small external force).
[0230] Understandably, the second sliding surface 704 and the first sliding surface 703 facilitate the sliding of the actuating member 730 from the fourth position to the fifth position. On the other hand, when the actuating member 730 is in the fourth position, the second sliding surface 704 and the first sliding surface 703 abut against each other, so that the retaining member 710 is kept in the state of being disengaged from the first rotating part 330.
[0231] In other examples, the first sliding surface 703 is a curved surface.
[0232] For example, the direction in which the retaining member 710 slides from the fourth position to the fifth position is the first sliding direction, and the angle between the outer normal direction of the first sliding surface 703 and the first sliding direction is an obtuse angle. More preferably, the angle between the outer normal direction of the first sliding surface 703 and the first sliding direction is 105° to 150°, such as 105°, 120°, 135°, 150°, etc.
[0233] In some implementations of the embodiments of this utility model, reference is made to Figures 12-25 The support member 300 is rotatably mounted on the connecting arm 200 about the first rotation axis 302. The first rotating part 330 is a rotating body coaxial with the first rotation axis 302. The retaining groove 305 is connected to the side wall of the first rotating part 330. The retaining member 710 includes a sliding body 710a and a retaining protrusion 713 protruding from the sliding body 710a. The retaining protrusion 713 is retained in the retaining groove 305 so that the retaining member 710 retains the support member 300. The end of the sliding body 710a near the first rotating part 330 has an abutment surface 706. The abutment surface 706 is a rotating surface adapted to the side wall of the first rotating part 330. When the retaining protrusion 713 is retained in the retaining groove 305, the abutment surface 706 abuts against the first rotating part 330.
[0234] Understandably, the first rotating part 330 is configured as a rotating body so that when the retaining member 710 is pressed against the first rotating part 330, the supporting member 300 can rotate more smoothly, so that the retaining member 710 can enter the retaining groove 305 more quickly.
[0235] For example, the first rotating part 330 can be a cylinder, cone, frustum, sphere, etc., and the bearing surface 706 can be a corresponding cylindrical surface, conical surface, frustum, sphere, etc.
[0236] Understandably, the abutment surface 706 limits the holding member 710, preventing the holding member 710 from sliding out of the second sliding space 208.
[0237] In some implementations of the embodiments of this utility model, reference is made to Figure 24 , Figure 26 , Figure 27 , Figure 29 The support member 300 is rotatably mounted on the connecting arm 200 about a first rotation axis 302. The support member 300 has a first clamping gap 303 for clamping the electronic terminal 500. The first clamping gap 303 is used to clamp the electronic terminal 500 along the length or width direction of the electronic terminal 500. The electronic terminal 500 has a camera lens 510. When the electronic terminal 500 is clamped by the first clamping gap 303, the angle between the axis of the camera lens 510 and the first rotation axis 302 is greater than or equal to 0. The angle is less than or equal to 5°; the support member 300 includes a first body 310 and two clamping members 320. The first body 310 is elastically telescopic, and the two clamping members 320 are respectively installed on the first body 310. The two clamping members 320 are separated by a first clamping gap 303; at least one of the two clamping members 320 is a first clamping member 320a. The first clamping member 320a includes a first connecting portion 321 and two clamping protrusions 322. The two clamping protrusions 322 are spaced apart from the first connecting portion 321. At least one of the clamping members 322 is a first clamping protrusion 322a. The first clamping member 320a also includes at least one first elastic pad 323, with each first elastic pad 323 corresponding to at least one first clamping protrusion 322a. The first elastic pad 323 is installed on the corresponding first clamping protrusion 322a. The first clamping member 320a has a second clamping gap 304 located between the two clamping protrusions 322. The electronic terminal 500 is plate-shaped. The second clamping gap 304 can clamp the electronic terminal 500 along the thickness direction of the electronic terminal 500. When the electronic terminal 500 is clamped by the second clamping gap 304, the first elastic pad 323 is located between the electronic terminal 500 and the first clamping protrusion 322a, and the electronic terminal 500 squeezes the first elastic pad 323. When the electronic terminal 500 is clamped by the second clamping gap 304, the electronic terminal 500 squeezes the first elastic pad 323. The angle between the axis of the shooting lens 510 and the first rotation axis 302 is greater than or equal to 85° and less than or equal to 90°. Understandably, the first clamping member 320a can clamp the electronic terminal 500 in the thickness direction, and the first clamping member 320a includes a first elastic pad 323, enabling the first clamping member 320a to clamp electronic terminals 500 of different thicknesses. The thicker the electronic terminal 500, the stronger the compression of the first elastic pad 323. Furthermore, the first elastic pad 323 provides a certain frictional force between the first clamping member 320a and the electronic terminal 500, making it less likely for the electronic terminal 500 to detach from the support member 300; and the first elastic pad 323 provides a certain buffer between the first clamping member 320a and the electronic terminal 500, making it less likely for the first clamping member 320a to damage the electronic terminal 500.
[0238] It should be understood that the second clamping gap 304 is part of the gap between the two clamping protrusions 322.
[0239] For example, there is one first elastic pad 323, which is located in one of the clamping protrusions 322. When the electronic terminal 500 is clamped in the second clamping gap 304, one side of the electronic terminal 500 presses against the first elastic pad 323 and the other side abuts against the clamping protrusion 322.
[0240] For example, there are two first elastic pads 323, which are located on two clamping protrusions 322 respectively. When the electronic terminal 500 is clamped in the second clamping gap 304, the two first elastic pads 323 are squeezed on both sides of the electronic terminal 500 respectively.
[0241] For example, the first body 310 includes a first main body 311, a second elastic element, a first rod 312, a third elastic element, and a second rod 313. The first rod 312 and the second rod 313 are slidably mounted on the first main body 311, extending from both ends of the first main body 311. The second elastic element allows the first rod 312 to be elastically extendable relative to the first main body 311, and the third elastic element allows the second rod 313 to be elastically extendable relative to the first main body 311. Two clamping members 320 are respectively mounted on the first rod 312 and the second rod 313.
[0242] For example, the first elastic pad 323 is bonded to the first clamping protrusion 322a.
[0243] For example, the first elastic pad 323 can be made of elastic polymers such as rubber and plastics. These polymers can be thermosetting elastomers, thermoplastic elastomers, rubber, etc. Thermoplastic elastomers (TPEs) are a class of polymeric materials with good elasticity, softness, and processing properties. TPE materials can be classified into various types according to their chemical structure and performance characteristics, mainly including SEBS, TPO, TPU, COPE, SBS, SIS, EPDM, POE, TPE, TPV, TPEE, PPE, etc.
[0244] For example, the number of the first clamping member 320a is 1, 2, etc.
[0245] For example, the first connecting portion 321 of the first clamping member 320a is mounted on the first rod 312 or the second rod 313.
[0246] In some implementations, both clamping members 320 are first clamping members 320a, and the second clamping gap 304 of the two first clamping members 320a clamps the same side of the electronic terminal 500. It is understood that having both clamping members 320 as first clamping members 320a makes the electronic terminal 500 more stable when the support member 300 clamps the electronic terminal 500 in the thickness direction. For example, when the support member 300 clamps the electronic terminal 500 in the thickness direction, the electronic terminal 500 is in an upright or horizontal position.
[0247] In some implementations of the embodiments of this utility model, reference is made to Figure 24 , Figure 26 , Figure 27 , Figure 29 The first elastic pad 323 has a first protrusion 323a and a first groove 306 on the side that abuts against the electronic terminal 500. The first protrusion 323a is annular around the first groove 306. Understandably, when the first clamping member 320a clamps the electronic terminal 500 in the thickness direction, the first groove 306 provides a deformation space 204 for the first protrusion 323a, allowing the first elastic pad 323 to deform more significantly in the thickness direction, thus enabling the first clamping member 320a to adapt to a wider range of thicknesses of the electronic terminal 500.
[0248] Understandably, the first protrusion 323a is annular around the first groove 306, which makes the friction between the first elastic pad 323 and the electronic terminal 500 greater, and the electronic terminal 500 is less likely to detach from the first clamping member 320a.
[0249] In some implementations of the embodiments of this utility model, reference is made to Figure 24 , Figure 26 , Figure 27 , Figure 29 , Figure 30 , Figure 31The first clamping member 320a further includes at least one first flexible portion 324, which corresponds to at least one first elastic pad 323. The first elastic pad 323 is connected to the first flexible portion 324. The first flexible portion 324 is provided with a first mounting groove 307a and an anti-detachment cavity 307b. The anti-detachment cavity 307b communicates with the first mounting groove 307a and extends away from the first mounting groove 307a. The first clamping protrusion 322a includes a first clamping post 3221, a mounting post 3222 protruding from the first clamping post 3221, and an anti-detachment protrusion 322 protruding from the mounting post 3222. 23. The first clamping post 3221 is connected to the first connecting part 321. The mounting post 3222 protrudes from the first clamping post 3221 and extends toward the second clamping gap 304. The anti-detachment protrusion 3223 extends away from the mounting post 3222. The mounting post 3222 is fitted into the first mounting groove 307a. The anti-detachment protrusion 3223 is located in the anti-detachment cavity 307b. The first elastic pad 323 is located at the end of the corresponding mounting post 3222. When the electronic terminal 500 is clamped in the second clamping gap 304, the first elastic pad 323 is located between the end of the mounting post 3222 and the electronic terminal 500.
[0250] Understandably, the mounting post 3222 of the first clamping protrusion 322a is fitted into the first mounting groove 307a of the first flexible part 324, and the first flexible part 324 allows the first elastic pad 323 to be detachably mounted on the first clamping protrusion 322a.
[0251] Understandably, the anti-detachment protrusion 3223 and the anti-detachment cavity 307b cooperate to make the first flexible part 324 less likely to fall off or move from the mounting post 3222, thereby making the first elastic pad 323 less likely to fall off or move relative to the mounting post 3222, so that the first elastic pad 323 is always located at the end of the mounting post 3222, thereby facilitating the first clamping member 320a to clamp the electronic terminal 500.
[0252] Understandably, the first flexible part 324 deforms during the assembly of the mounting post 3222, so that the mounting post 3222 and the anti-detachment protrusion 3223 fit into the first mounting groove 307a and the anti-detachment cavity 307b of the first flexible part 324.
[0253] For example, the first flexible part 324 is integrally connected with the first elastic pad 323, and the first flexible part 324 and the first elastic pad 323 are made of the same material for ease of manufacture.
[0254] Understandably, the number of first flexible portions 324 in each first clamping member 320a is the same as the number of first elastic pads 323.
[0255] In some implementations of the embodiments of this utility model, reference is made to Figure 24 , Figure 26, Figure 27 , Figure 29 , Figure 30 , Figure 31 The first clamping member 320a also includes at least one second elastic pad 325. The second elastic pad 325 corresponds to at least one first flexible part 324. The first flexible part 324 is integrally connected to the corresponding first elastic pad 323. The first flexible part 324 is integrally connected to the corresponding first elastic pad 323. The at least one second elastic pad 325 corresponds to at least one first clamping protrusion 322a. The at least one second elastic pad 325 is installed on the corresponding first clamping protrusion 322a. When the electronic terminal 500 is clamped in the first clamping gap 303, the second elastic pad 325 is located between the electronic terminal 500 and the first clamping protrusion 322a. The electronic terminal 500 squeezes the second elastic pad 325.
[0256] The first clamping protrusion 322a has a second mounting groove 308, and at least one second elastic pad 325 corresponds to the second mounting groove 308 of at least one first clamping protrusion 322a. The second elastic pad 325 is embedded in the corresponding second mounting groove 308.
[0257] Understandably, the first clamping member 320a is provided with a second elastic pad 325, which makes the first clamping gap 303 better adapt to the electronic terminal 500 in the length or width direction of the electronic terminal 500. On the other hand, the second elastic pad 325 makes the first clamping member 320a and the electronic terminal 500 have a certain friction, making the electronic terminal 500 less likely to detach from the support member 300. Furthermore, the second elastic pad 325 makes the first clamping member 320a and the electronic terminal 500 have a certain buffer, making the first clamping member 320a less likely to damage the electronic terminal 500.
[0258] Understandably, the second mounting groove 308 makes it difficult for the second elastic pad 325 to detach from the first clamping protrusion 322a, so that the second elastic pad 325 is more stably attached to the first clamping protrusion 322a.
[0259] For example, the second elastic pad 325 is integrally connected to the first flexible part 324, and the second elastic pad 325 is made of the same material as the first elastic pad 323.
[0260] For example, the first clamping protrusion 322a is also provided with an assembly post 326, which is located in the second mounting groove 308, and the second elastic pad 325 is provided with an assembly hole 309 corresponding to the assembly post 326.
[0261] Understandably, the number of second elastic pads 325 in each first clamping member 320a is the same as that in the first flexible part 324.
[0262] This utility model embodiment also proposes a terminal bracket, see reference. Figure 33 , Figure 34 The terminal bracket includes a support base, a support rod 120, a connecting arm 200, and a support member 300. The support base supports the support rod 120. The support rod 120 is mounted on the support base and supports the connecting arm 200. The support rod 120 has a first central axis 102 along its length. The connecting arm 200 is mounted on the support rod 120. The support member 300 supports the electronic terminal 500. The support member 300 is rotatably mounted on the connecting arm 200 about a first rotation axis 302. When the support member 300 is in a first position relative to the support rod 120, the angle between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 5°, and the distance between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 0.5cm. The advantage of this arrangement is that the first rotation axis 302 of the support member 300 is close to or coaxial with the first central axis 102 of the support rod 120, so that the support member 300 is centered relative to the support rod 120, and the support member 300 rotates more smoothly when rotating around the first rotation axis 302.
[0263] In some implementation methods, refer to Figure 33 , Figure 34 The connecting arm 200 is rotatably mounted on the support rod 120. The rotation of the connecting arm 200 relative to the support rod 120 can cause the support member 300 to be in a first position relative to the support rod 120. The connecting arm 200 includes a first arm body 210 and a second arm body 220. The second arm body 220 is rotatably mounted on the first arm body 210. The first arm body 210 is rotatably mounted on the support rod 120. The support member 300 is rotatably mounted on the second arm body 220 around a first rotation axis 302. When the second arm body 220 is in a third position relative to the first arm body 210, the rotation of the first arm body 210 relative to the support rod 120 can cause the support member 300 to be in the first position. The advantage of this configuration is that the connecting arm 200 can be in different states to facilitate the use of the terminal bracket. When the support member 300 needs to be used relative to the support rod 120, the second arm 220 can be in the third position of the first arm 210, and the first arm 210 can rotate relative to the support rod 120 to make the support member 300 be in the first position of the support rod 120.
[0264] In other examples, the second arm 220 is fixed relative to the first arm 210, and the first arm 210 rotates relative to the support rod 120 such that the angle between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 5°, and the distance between the first rotation axis 302 and the first central axis 102 is greater than or equal to 0° and less than or equal to 0.5cm.
[0265] In some implementation methods, refer to 33, Figure 34The connecting arm 200 is rotatably mounted on the support rod 120 about a second rotation axis, the angle between the second rotation axis and the first central axis 102 being greater than or equal to 85° and less than or equal to 90°; the second arm body 220 is rotatably mounted on the first arm body 210 about a third rotation axis, the angle between the third rotation axis and the first rotation axis 302 being greater than or equal to 85° and less than or equal to 90°; the connecting arm 200 can be held on the support rod 120, the support member 300 can be held on the connecting arm 200, and the second arm body 220 can be held on the first arm body 210. Understandably, the connecting arm 200 can be held on the support rod 120, for example, the connecting arm 200 can be held at a certain position relative to the support rod 120, or the connecting arm 200 can be held at any position on the support rod 120.
[0266] In some implementation methods, refer to Figure 2 The terminal bracket has a first sidewall 101 located on the support base and / or support rod 120. When the second arm 220 is in a second position relative to the first arm 210, rotation of the first arm 210 relative to the support rod 120 allows the connecting arm 200 to be folded against the first sidewall 101. Understandably, folding the connecting arm 200 against the first sidewall 101 minimizes the volume occupied by the terminal bracket in its stowed state.
[0267] In some implementation methods, refer to Figure 2 With the connecting arm 200 folded into the first side wall 101, the second arm 220 is located between the support member 300 and the first side wall 101. The advantage of this arrangement is that the terminal bracket occupies a small volume when stored.
[0268] In some implementation methods, refer to Figure 2 , Figure 33 The support base includes at least three legs 110, which can be opened or retracted. When the legs 110 are open, the support base rests on a support surface. When the legs 110 are retracted, the support base forms a gripping body 130, with a first sidewall 101 located within the gripping body 130. The fact that the at least three legs 110 can be retracted into the gripping body 130, and the first sidewall 101 within the gripping body 130, results in a smaller volume occupied by the terminal bracket in its retracted state.
[0269] In some implementations, parameters Figure 2 , Figure 33With at least three legs 110 extended, the at least three legs 110 are centrally symmetrical about the first central axis 102; the support rod 120 is a telescopic rod, and when the telescopic rod is retracted and the second arm 220 is in a second position relative to the first arm 210, the connecting arm 200 can be folded into the grip body 130. Understandably, the folding of the connecting arm 200 into the grip body 130 reduces the volume occupied by the terminal bracket in its folded state.
[0270] In some implementation methods, refer to Figure 2 , Figure 33 The terminal bracket also includes a sliding sleeve 140 and at least three connecting rods 150. The sliding sleeve 140 is slidably mounted on the support rod 120 along its length. Each of the at least three connecting rods 150 corresponds to at least three legs 110. One end of each leg 110 is rotatably connected to the sliding sleeve 140, and one end of each connecting rod 150 is rotatably connected to the leg 110 and the other end is rotatably connected to the support rod 120. During the sliding of the sliding sleeve 140 relative to the support rod 120, the at least three legs 110 open or retract relative to the support rod 120. The sliding of the sliding sleeve 140 and the simultaneous retraction or opening of the at least three legs 110 facilitate the use of the terminal bracket.
[0271] In some implementation methods, refer to Figure 1 , Figure 2 , Figure 33 The first arm 210 includes a first main arm 211 and a first extension arm 212 connected to the first main arm 211. The first extension arm 212 extends to one side of the first main arm 211 and is rotatably mounted on the support rod 120. When the connecting arm 200 is folded into the first side wall 101, the first main arm 211 is close to or attached to the first side wall 101, and the second arm 220 is close to or attached to the first side wall 101. By configuring the first arm 210 into the structure of the first main arm 211 and the first extension arm 212, it is easy for the connecting arm 200 to be folded into the first side wall 101; and both the first main arm 211 and the second arm 220 are close to or attached to the first side wall 101, so that the terminal bracket occupies a small volume when stored.
[0272] In some implementation methods, refer to Figure 2The first main arm 211 has a first side surface 211a, and the second arm body 220 has a second side surface 222. When the second arm body 220 is in a second position relative to the first arm body 210, the first side surface 211a and the second side surface 222 are aligned. When the connecting arm 200 is folded against the first side wall 101, the first side surface 211a is close to or attached to the first side wall 101, and the second side surface 222 is close to or attached to the first side wall 101. The second arm body 220 is located between the support member 300 and the first side wall 101. It can be understood that the first side surface 211a and the second side surface 222 facilitate the folding of the connecting arm 200 against the first side wall 101. Furthermore, the fact that both the first side surface 211a and the second side surface 222 are close to or attached to the first side wall 101 results in a small volume occupied by the terminal bracket in its folded state.
[0273] In some implementation methods, refer to Figure 2 , Figures 35-38 The second arm 220 has a second side surface 222. When the connecting arm 200 is folded against the first side wall 101, the second side surface 222 is close to or attached to the first side wall 101. When the second arm 220 is in a third position relative to the first arm 210, the second side surface 222 abuts against the first main arm 211. The first arm 210 can rotate relative to the support rod 120 to make the support member 300 in a first position. The first main arm 211 has a first limiting surface 211b, and the second arm 220 has a second limiting surface 223. When the second arm 220 is in a second position relative to the first arm 210, the second limiting surface 223 abuts against the first limiting surface 211b. When the second arm 220 is in a third position relative to the first arm 210, the second side surface 222 abuts against the first limiting surface 211b. Understandably, the first limiting surface 211b and the second side surface 222 allow the second arm 220 to rotate quickly relative to the first arm 210 to a third position, so that the connecting arm 200 can rotate relative to the support rod 120 so that the support member 300 is in the first position of the support rod 120; the first limiting surface 211b and the second side surface 222 allow the second arm 220 to rotate quickly relative to the first arm 210 to a second position, so that the connecting arm 200 can be quickly stored in the first side wall 101.
[0274] In some implementation methods, refer to Figure 1 , Figure 2 , Figure 33 , Figure 34The first arm 210 includes a first main arm 211 and a first extension arm 212 connected to the first main arm 211. The first extension arm 212 extends toward one side of the first main arm 211, and the end of the first extension arm 212 away from the first main arm 211 is rotatably mounted on the support rod 120. When the second arm 220 is in a third position relative to the first arm 210, the second arm 220 and the first extension arm 212 extend toward the same side of the first main arm 211. When the second arm 220 is in a second position relative to the first arm 210, the first main arm 211 and the second arm 220 form a first strip structure. A main arm 211 extends in a direction parallel to a first straight line. A second arm 220 is rotatably mounted on the first arm 210 about a third rotation axis. The angle between the third rotation axis and the first straight line is greater than or equal to 85° and less than or equal to 90°. A connecting arm 200 is rotatably mounted on a support rod 120 about a second rotation axis. The angle between the second rotation axis and the first straight line is greater than or equal to 85° and less than or equal to 90°. The first main arm 211 and the second arm 220 form a first strip structure. During the rotation of the connecting arm 200 relative to the support rod 120, the angle between the first straight line and the first central axis 102 can be any angle between 0° and 90°.
[0275] Understandably, when the second arm 220 is in the third position relative to the first arm 210, the second arm 220 and the first extension arm 212 extend to the same side of the first main arm 211, so that the support member 300 is centered relative to the support rod 120.
[0276] Understandably, the first main arm 211 and the second arm 220 form a first strip structure. With the connecting arm 200 folded against the first side wall 101, the terminal bracket has a compact structure and occupies a small volume. The angle between the third rotation axis and the first straight line is greater than or equal to 85° and less than or equal to 90°, which facilitates the extension of the second arm 220 and the first extension arm 212 to the same side of the first main arm 211, and also facilitates the formation of the first strip structure between the first main arm 211 and the second arm 220.
[0277] Understandably, the angle between the second rotation axis and the first straight line is close to perpendicular or perpendicular. During the rotation of the connecting arm 200 relative to the support rod 120, the connecting arm 200 extends a greater distance relative to the support rod 120, thereby facilitating the use of the terminal bracket.
[0278] For example, the first extension and the second extension are integrally connected.
[0279] For example, the second arm 220 extends in the same direction as the first extension arm 212, or at an angle.
[0280] In some implementation methods, refer to Figure 33 , Figure 34 The first rotation axis 302 and the first central axis 102 can be coaxial, parallel, intersecting, or skewed; coaxiality between the first rotation axis 302 and the first central axis 102 is defined as follows: the angle between the first rotation axis 302 and the first central axis 102 is 0°, and the distance between the first rotation axis 302 and the first central axis 102 is 0; parallelism between the first rotation axis 302 and the first central axis 102 is defined as follows: the angle between the first rotation axis 302 and the first central axis 102 is 0°, and the distance between the first rotation axis 302 and the first central axis 102 is 0. The distance from the central axis 102 is greater than 0°; the intersection of the first rotation axis 302 and the first central axis 102 is defined as follows: the angle between the first rotation axis 302 and the first central axis 102 is greater than 0°, and the distance between the first rotation axis 302 and the first central axis 102 is 0; the skewness of the first rotation axis 302 and the first central axis 102 is defined as follows: the angle between the first rotation axis 302 and the first central axis 102 is greater than 0°, and the distance between the first rotation axis 302 and the first central axis 102 is greater than 0. The advantage of this arrangement is that the first rotation axis 302 of the support member 300 is close to or coaxial with the first central axis 102 of the support rod 120, making the support member 300 centered relative to the support rod 120, and resulting in smoother rotation of the support member 300 around the first rotation axis 302.
[0281] In some implementation methods, refer to Figures 32-34 The support member 300 has a first clamping gap 303 for clamping the electronic terminal 500. The first clamping gap 303 is used to clamp the electronic terminal 500 along its length or width. The electronic terminal 500 has a shooting lens 510. When the electronic terminal 500 is clamped by the first clamping gap 303, the angle between the axis of the shooting lens 510 and the first rotation axis 302 is greater than or equal to 0° and less than or equal to 5°. It should be understood that when the angle between the axis of the shooting lens 510 and the first rotation axis 302 is greater than or equal to 0° and less than or equal to 5°, the support member 300 rotates around the first rotation axis 302, and the shooting lens 510 surrounds the first rotation axis 302 to take pictures.
[0282] In some implementation methods, refer to Figures 32-34The support member 300 has a second clamping gap 304 for clamping the electronic terminal 500. The electronic terminal 500 is plate-shaped, and the second clamping gap 304 can clamp the electronic terminal 500 along its thickness direction. The electronic terminal 500 has a camera lens 510. When the electronic terminal 500 is clamped by the second clamping gap 304, the angle between the axis of the camera lens 510 and the first rotation axis 302 is greater than or equal to 85° and less than or equal to 90°. It should be understood that when the electronic terminal 500 is clamped by the second clamping gap 304, the angle between the axis of the camera lens 510 and the first rotation axis 302 is greater than or equal to 85° and less than or equal to 90°, the shooting angle of the electronic terminal 500 can be adjusted by rotating the first arm 210 relative to the support rod 120 or by rotating the second arm 220 relative to the first arm 210.
[0283] In some implementation methods, refer to Figure 12 The terminal support includes a connecting arm 200 and a drive assembly 800. The connecting arm 200 is mounted on the support rod 120. The support member 300 is rotatably mounted on the connecting arm 200 about a first rotation axis 302. The drive assembly 800 is mounted on the connecting arm 200 and is used to drive the support member 300 to rotate about the first rotation axis 302. The drive assembly 800 makes it easier for the support member 300 to rotate about the first rotation axis 302.
[0284] For example, the drive assembly 800 is mounted on the second arm body 220 of the connecting arm 200, and the second arm body 220 has an assembly slot in which the drive assembly 800 is mounted.
[0285] For example, the drive component 800 is a stepper motor or a servo motor.
[0286] In some implementation methods, refer to Figure 12 The terminal bracket also includes a controller electrically connected to the drive assembly 800. The controller controls the drive assembly 800 to enable the shooting lens 510 to track the subject. For example, the controller is communicatively connected to the electronic terminal 500 and receives the shooting images from the electronic terminal 500. The controller controls the rotation of the drive assembly 800 to position the subject in a corresponding position within the shooting image, such as centering the subject within the shooting image.
[0287] For example, the subject rotates around the first rotation axis 302, the controller controls the drive component 800 to rotate, and the rotation speed of the electronic terminal 500 is the same as that of the subject.
[0288] Reference Figures 26-31This utility model embodiment also proposes a first clamping member 320a for use in a terminal bracket to clamp an electronic terminal 500. The first clamping member 320a includes a first connecting portion 321 and two clamping protrusions 322, which are spaced apart from each other on the first connecting portion 321. At least one of the two clamping protrusions 322 is a first clamping protrusion 322a. The first clamping member 320a also includes at least one first elastic pad 323, which corresponds to at least one first clamping protrusion 322a. An elastic pad 323 is mounted on a corresponding first clamping protrusion 322a. A first clamping member 320a has a second clamping gap 304 located between the two clamping protrusions 322a. The electronic terminal 500 is plate-shaped. The second clamping gap 304 can clamp the electronic terminal 500 along its thickness direction. When the electronic terminal 500 is clamped by the second clamping gap 304, the first elastic pad 323 is located between the electronic terminal 500 and the first clamping protrusion 322a, and the electronic terminal 500 compresses the first elastic pad 323. It can be understood that the first clamping member 320a can clamp the electronic terminal 500 in the thickness direction, and the inclusion of the first elastic pad 323 allows the first clamping member 320a to clamp electronic terminals 500 of different thicknesses. The thicker the electronic terminal 500, the stronger the compression of the first elastic pad 323. Furthermore, the first elastic pad 323 provides a certain friction between the first clamping member 320a and the electronic terminal 500, making it difficult for the electronic terminal 500 to detach from the support member 300; and the first elastic pad 323 provides a certain buffer between the first clamping member 320a and the electronic terminal 500, making it difficult for the first clamping member 320a to damage the electronic terminal 500.
[0289] In some implementation methods, refer to Figures 26-31 The first elastic pad 323 has a first protrusion 323a and a first groove 306 on the side that abuts against the electronic terminal 500. The first protrusion 323a is annular around the first groove 306. Understandably, when the first clamping member 320a clamps the electronic terminal 500 in the thickness direction, the first groove 306 provides a deformation space 204 for the first protrusion 323a, allowing the first elastic pad 323 to deform more significantly in the thickness direction, thus enabling the first clamping member 320a to accommodate a wider range of thicknesses of the electronic terminal 500. Understandably, the annular shape of the first protrusion 323a around the first groove 306 increases the friction between the first elastic pad 323 and the electronic terminal 500, making it less likely for the electronic terminal 500 to detach from the first clamping member 320a.
[0290] In some implementation methods, refer to Figures 26-31 There are two first elastic pads 323, and both clamping protrusions 322 are first clamping protrusions 322a. The advantage of this arrangement is that the first clamping member 320a clamps the electronic terminal 500 more stably.
[0291] In some implementation methods, refer to Figures 26-31 The first clamping member 320a further includes at least one first flexible portion 324, which corresponds to at least one first elastic pad 323, and the first elastic pad 323 is connected to the first flexible portion 324. The first flexible portion 324 is provided with a first mounting groove 307a and an anti-detachment cavity 307b, the anti-detachment cavity 307b is connected to the first mounting groove 307a, and the anti-detachment cavity 307b extends away from the first mounting groove 307a. The first clamping protrusion 322a includes a first clamping post 3221, a mounting post 3222 protruding from the first clamping post 3221, and an anti-detachment protrusion 322 protruding from the mounting post 3222. 23. The first clamping post 3221 is connected to the first connecting part 321. The mounting post 3222 protrudes from the first clamping post 3221 and extends toward the second clamping gap 304. The anti-detachment protrusion 3223 extends away from the mounting post 3222. The mounting post 3222 is fitted into the first mounting groove 307a. The anti-detachment protrusion 3223 is located in the anti-detachment cavity 307b. The first elastic pad 323 is located at the end of the corresponding mounting post 3222. When the electronic terminal 500 is clamped in the second clamping gap 304, the first elastic pad 323 is located between the end of the mounting post 3222 and the electronic terminal 500.
[0292] Understandably, the mounting post 3222 of the first clamping protrusion 322a is fitted into the first mounting groove 307a of the first flexible part 324, and the first flexible part 324 allows the first elastic pad 323 to be detachably mounted on the first clamping protrusion 322a.
[0293] Understandably, the anti-detachment protrusion 3223 and the anti-detachment cavity 307b cooperate to make the first flexible part 324 less likely to fall off or move from the mounting post 3222, thereby making the first elastic pad 323 less likely to fall off or move relative to the mounting post 3222, so that the first elastic pad 323 is always located at the end of the mounting post 3222, thereby facilitating the first clamping member 320a to clamp the electronic terminal 500.
[0294] Understandably, the first flexible part 324 deforms during the assembly of the mounting post 3222, so that the mounting post 3222 and the anti-detachment protrusion 3223 fit into the first mounting groove 307a and the anti-detachment cavity 307b of the first flexible part 324.
[0295] In some implementation methods, refer to Figures 26-31The first elastic pad 323 has two components, the first flexible part 324 has two components, the first clamping protrusion 322a has two components, and the first clamping member 320a also includes a flexible second connecting part. The second connecting part is used to connect the two first flexible parts 324. The second connecting part includes a first connecting sub-part and two second connecting sub-parts. The two ends of the first connecting sub-part are respectively connected to the two second connecting sub-parts. The first connecting sub-part extends along the first connecting part 321. The two second connecting sub-parts correspond to the two first clamping protrusions 322a respectively. The second connecting sub-parts extend along the first clamping post 3221 of the corresponding first clamping protrusion 322a. The second connecting sub-parts are connected to the corresponding first flexible parts 324. The first connecting part 321 is used to support the electronic terminal 500. When the first connecting part 321 supports the electronic terminal 500, the electronic terminal 500 presses against the first connecting sub-part. Understandably, the second connecting portion is used to connect the two first flexible portions 324, so that the two first elastic pads 323 and the two first flexible portions 324 are connected into a whole, making it difficult for the first flexible portions 324 to detach from the mounting post 3222, and the first elastic pads 323 to detach from the first protrusion 323a. The first connecting sub-portion extends along the first connecting portion 321 and the electronic terminal 500 can press against the first connecting sub-portion, making the structure of the first clamping member 320a compact. The second connecting portion is flexible, and it also plays a buffering role when the electronic terminal 500 presses against the first connecting sub-portion of the second connecting portion.
[0296] In some implementation methods, refer to Figures 26-31 The first connecting portion 321 is used to support the electronic terminal 500. Understandably, the first connecting portion 321 supports the electronic terminal 500, so that the first connecting portion 321 carries the electronic terminal 500 in the direction of gravity, further reducing the possibility of the electronic terminal 500 detaching from the first clamping member 320a, and making the first clamping member 320a clamp the electronic terminal 500 more firmly.
[0297] For example, the first connection part 321 is in direct or indirect contact with the electronic terminal 500.
[0298] Reference Figures 26-31 This utility model embodiment also proposes a clamp, which includes a first body 310 and two first clamping members 320a. The two first clamping members 320a are spaced apart on the first body 310, and a second clamping gap 304 between the two first clamping members 320a clamps the same side of the electronic terminal 500. It can be understood that having both clamping members 320a as first clamping members 320a makes the electronic terminal 500 more stable when the support member 300 clamps the electronic terminal 500 in the thickness direction. For example, when the support member 300 clamps the electronic terminal 500 in the thickness direction, the electronic terminal 500 is in an upright or horizontal position.
[0299] In some implementation methods, refer to Figures 26-31 A first clamping gap 303 is formed between the two first clamping members 320a to clamp the electronic terminal 500. The first clamping gap 303 is used to clamp the electronic terminal 500 along its length or width. When the electronic terminal 500 is clamped in the first clamping gap 303, the angle between the axis of the imaging lens 510 and the first rotation axis 302 is greater than or equal to 0° and less than or equal to 5°. When the electronic terminal 500 is clamped in the second clamping gap 304, the electronic terminal 500 presses against the first elastic pad 323, and the angle between the axis of the imaging lens 510 and the first rotation axis 302 is greater than or equal to 85° and less than or equal to 90°. The angle between the axis of the imaging lens 510 and the first rotation axis 302 is different in different clamping states, thus facilitating the clamping of the electronic terminal 500 according to actual usage conditions.
[0300] When the angle between the axis of the shooting lens 510 and the first rotation axis 302 is greater than or equal to 0° and less than or equal to 5°, the support member 300 rotates around the first rotation axis 302, and the shooting angle of the shooting lens 510 changes little during the process of shooting around the first rotation axis 302. When the axis of the shooting lens 510 is perpendicular to the screen of the electronic terminal 500, the support member 300 rotates around the first rotation axis 302, and the screen of the electronic terminal 500 changes in width.
[0301] When the angle between the axis of the shooting lens 510 and the first rotation axis 302 is greater than or equal to 85° and less than or equal to 90°, the support 300 rotates around the first rotation axis 302, and the shooting lens 510 rotates around the first rotation axis 302 to shoot, the shooting angle of the shooting lens 510 changes significantly, and the shooting lens 510 can shoot the subject around the first rotation axis 302.
[0302] Reference Figures 26-31 This utility model embodiment also proposes a clamp, which includes a first body 310 and two clamping members 320. The first body 310 is elastically extendable and retractable. The two clamping members 320 are respectively installed on the first body 310, and a first clamping gap 303 for clamping an electronic terminal 500 is provided between the two clamping members 320. At least one of the two clamping members 320 is a first clamping member 320a. It can be understood that the elastic extension and retraction of the first body 310 can adjust the size of the first clamping gap.
[0303] Reference Figures 26-31In some implementations, the first clamping gap 303 is used to clamp the electronic terminal 500 along the length or width direction of the electronic terminal 500. The electronic terminal 500 has a shooting lens 510. When the electronic terminal 500 is clamped by the first clamping gap 303, the angle between the axis of the shooting lens 510 and the first rotation axis 302 is greater than or equal to 0° and less than or equal to 5°. When the electronic terminal 500 is clamped by the second clamping gap 304, the electronic terminal 500 squeezes the first elastic pad 323, and the angle between the axis of the shooting lens 510 and the first rotation axis 302 is greater than or equal to 85° and less than or equal to 90°.
[0304] Reference Figures 26-31Furthermore, this utility model embodiment also proposes a clamp, which includes a first body 310 and two clamping members 320. The first body 310 is elastically extendable and retractable. The two clamping members 320 are respectively installed on the first body 310, and a first clamping gap 303 for clamping an electronic terminal 500 is provided between the two clamping members 320. The first clamping gap 303 is used to clamp the electronic terminal 500 along the length or width direction of the electronic terminal 500. At least one of the two clamping members 320 is a first clamping member 320a, and the first clamping member 320a includes a first... The first connecting portion 321 and two clamping protrusions 322 are spaced apart from each other on the first connecting portion 321. At least one of the clamping protrusions 322 is a first clamping protrusion 322a. The first clamping member 320a also includes at least one first elastic pad 323, which corresponds to at least one first clamping protrusion 322a and is mounted on the corresponding first clamping protrusion 322a. The first clamping member 320a has a second clamping gap 304 located between the two clamping protrusions 322. The first end 500 is plate-shaped. The second clamping gap 304 can clamp the electronic terminal 500 along its thickness direction. When the electronic terminal 500 is clamped by the second clamping gap 304, the first elastic pad 323 is located between the electronic terminal 500 and the first clamping protrusion 322a, and the electronic terminal 500 compresses the first elastic pad 323. The first clamping member 320a also includes at least one first flexible part 324 and at least one second elastic pad 325. The second elastic pad 325 corresponds to at least one first flexible part 324. A flexible part 324 is integrally connected to the corresponding first elastic pad 323. The first flexible part 324 is integrally connected to the corresponding first elastic pad 323. At least one second elastic pad 325 corresponds to at least one first clamping protrusion 322a. At least one second elastic pad 325 is installed on the corresponding first clamping protrusion 322a. When the electronic terminal 500 is clamped in the first clamping gap 303, the second elastic pad 325 is located between the electronic terminal 500 and the first clamping protrusion 322a. The electronic terminal 500 squeezes the second elastic pad 325. Understandably, the electronic terminal 500 presses against the second elastic pad 325, making the first clamping gap 303 clamp the electronic terminal 500 more firmly. The second elastic pad 325 provides a certain friction between the first clamping member 320a and the electronic terminal 500, making it less likely for the electronic terminal 500 to detach from the support member 300. Furthermore, the second elastic pad 325 provides a certain buffer between the first clamping member 320a and the electronic terminal 500, making it less likely for the first clamping member 320a to damage the electronic terminal 500.
[0305] In some implementation methods, refer to Figures 26-31The first flexible part 324 is provided with a first mounting groove 307a and an anti-detachment cavity 307b. The anti-detachment cavity 307b is connected to the first mounting groove 307a and extends away from the first mounting groove 307a. The first clamping protrusion 322a includes a first clamping post 3221, a mounting post 3222 protruding from the first clamping post 3221, and an anti-detachment protrusion 3223 protruding from the mounting post 3222. The first clamping post 3221 is connected to the first connecting part 321. The mounting post 3222 protrudes from the first clamping post 3221 and extends toward the second clamping gap 304. The anti-detachment protrusion 3223 extends away from the mounting post 3222. The mounting post 3222 is fitted into the first mounting groove 307a. The anti-detachment protrusion 3223 is located in the anti-detachment cavity 307b. The first elastic pad 323 is located at the end of the corresponding mounting post 3222.
[0306] In some implementation methods, refer to Figures 26-31 The first clamping member 320a has two first elastic pads 323, two first flexible parts 324, and two clamping protrusions 322, each being a first clamping protrusion 322a. The first clamping member 320a also includes two second elastic pads 325. The first clamping member 320a further includes a flexible second connecting part for connecting the two first flexible parts 324. The second connecting part includes a first connecting sub-part and two second connecting sub-parts, with both ends of the first connecting sub-part connected to the two first flexible parts 324 respectively. Two second connecting parts are connected together. The first connecting part extends along the first connecting part 321. The two second connecting parts correspond to the two first clamping protrusions 322a respectively. The second connecting parts extend along the first clamping post 3221 of the corresponding first clamping protrusion 322a. The second connecting parts are connected to the corresponding first flexible part 324. The first connecting part is connected to the two second elastic pads 325. The first connecting part 321 is used to support the electronic terminal 500. When the electronic terminal 500 is supported by the first connecting part 321, the electronic terminal 500 presses against the first connecting part. It can be understood that the second connecting part connects the first flexible part 324 and the second elastic pad 325, so that the two first elastic pads 323, the two first flexible parts 324, and the two second elastic pads 325 are connected into a whole, so that the first flexible part 324 is not easy to detach from the mounting post 3222, the first elastic pad 323 is not easy to detach from the first clamping protrusion 322a, and the second elastic pad 325 is also not easy to detach from the first clamping protrusion 322a.
[0307] In some implementation methods, refer to Figures 26-31The first clamping protrusion 322a has a second mounting groove 308, and at least one second elastic pad 325 corresponds to the second mounting groove 308 of the first clamping protrusion 322a respectively. The second elastic pad 325 is fitted into the corresponding second mounting groove 308. It can be understood that the second elastic pad 325 is fitted into the corresponding second mounting groove 308 so that the second elastic pad 325 is not easily dislodged from the first clamping protrusion 322a.
[0308] Refer to 12- Figure 25 This utility model embodiment also proposes a terminal bracket, including a connecting arm 200, a support member 300, and a holding assembly 700. The support member 300 is rotatably mounted on the connecting arm 200 and is used to support an electronic terminal 500. The support member 300 has a first rotating part 330, which is provided with at least one holding groove 305, which communicates with the outer side wall of the first rotating part 330. The holding assembly 700 includes a holding member 710, a first elastic element 720, and a toggle member 730. The holding member 710 is movably mounted on the connecting arm 200. One end of the first elastic element 720 acts on the connecting arm 200, and the other end acts on the holding member 710. The toggle member 730 is slidably mounted on the connecting arm 200 such that the toggle member 710... The actuating member 730 can be in a fourth position and a fifth position relative to the connecting arm 200. When the actuating member 730 is in the fourth position, the elastic element causes the retaining member 710 to abut against the outer wall of the first rotating part 330 or to be retained in the retaining groove 305. When the retaining member 710 abuts against the outer wall of the first rotating part 330, the first rotating part 330 rotates by an angle, and the elastic element causes the retaining member 710 to be retained in the retaining groove 305. During the movement of the actuating member 730 from the fourth position to the fifth position, the actuating member 730 causes the retaining member 710 to disengage from the first rotating part 330. When the actuating member 730 is in the fifth position, the actuating member 730 blocks the retaining member 710 so that the retaining member 710 remains disengaged from the first rotating part 330. Understandably, when the electronic terminal 500 is heavy or when the support 300 needs to be kept in a relatively stable state, the holding assembly 700 can keep the support 300 in a certain position on the connecting arm 200, thereby facilitating the use of the terminal bracket.
[0309] In some implementation methods, refer to Figures 12-25The connecting arm 200 has a first sliding space 207, and the actuating member 730 is slidably installed in the first sliding space 207. The two ends of the actuating member 730 are respectively provided with a first pressing protrusion 731 and a second pressing protrusion 732. Pressing the first pressing protrusion 731 can move the actuating member 730 from the fourth position to the fifth position, and pressing the second pressing protrusion 732 can move the actuating member 730 from the fifth position to the fourth position. When the actuating member 730 is in the fourth position, the first pressing protrusion 731 protrudes from the first side of the connecting arm 200, and the second pressing protrusion 732 is accommodated in the first sliding space 207. When the actuating member 730 is in the fifth position, the first pressing protrusion 731 is accommodated in the first sliding space 207, and the second pressing protrusion 732 protrudes from the second side of the connecting arm 200. The first side and the second side are respectively located on opposite sides of the connecting arm 200. Understandably, the toggle member 730 is in different positions, and different parts of the toggle member 730 protrude relative to the connecting arm 200 to facilitate the use of the toggle member 730.
[0310] In some implementation methods, refer to Figures 12-25 The first sliding space 207 includes a first exposed opening 207a and a second exposed opening 207b. The first exposed opening 207a communicates with a first side of the connecting arm 200, and the second exposed opening 207b communicates with a second side of the connecting arm 200. When the actuating member 730 is in the fourth position, the first pressing protrusion 731 protrudes from the first side of the connecting arm 200 through the first exposed opening 207a. When the actuating member 730 is in the fifth position, the second pressing protrusion 732 protrudes from the second side of the connecting arm 200 through the second exposed opening 207b. It can be understood that the first exposed opening 207a facilitates the protrusion of the first pressing protrusion 731 from the connecting arm 200, and the second exposed opening 207b facilitates the protrusion of the second pressing opening 202 from the connecting arm 200.
[0311] Reference Figures 12-25 In some implementations, the terminal bracket has a first limiting wall 1001 and a second limiting wall 1002. The first limiting wall 1001 and the second limiting wall 1002 restrict the sliding installation of the actuating member 730 within the first sliding space 207. The actuating member 730 has a limiting protrusion 733, which has a third limiting wall 707 and a fourth limiting wall 708. When the actuating member 730 is in the fourth position, the third limiting wall 707 abuts against the first limiting wall 1001; when the actuating member 730 is in the fifth position, the fourth limiting wall 708 abuts against the second limiting wall 1002. Understandably, the first limiting wall 1001 and the second limiting wall 1002 allow the actuating member 730 to slide quickly to the fourth or fifth position and prevent the actuating member 730 from dislodging from the first sliding space 207.
[0312] Reference Figures 12-25 In some implementations, the first limiting wall 1001 is located on the connecting arm 200 and / or the retaining member 710, and the second limiting wall 1002 is located on the connecting arm 200 and / or the retaining member 710.
[0313] Reference Figures 12-25 In some implementations, the connecting arm 200 further includes an arm body 200a and a cover 200b detachably mounted on the arm body 200a. The arm body 200a has an assembly space 209 and an assembly opening 209a communicating with the assembly space 209. The holding component 700 can be inserted into the assembly space 209 through the assembly opening 209a. Understandably, the cover 200b closes the assembly opening 209a, preventing dust and other debris from entering the assembly space 209.
[0314] Reference Figures 12-25 , Figures 37-40 In some implementations, the arm body 200a has a second sliding space 208, and the retaining member 710 is slidably installed in the second sliding space 208; the arm body 200a and the cover 200b surround to form the second sliding space 208. The connecting arm 200 has a first mounting protrusion 224, and the retaining member 710 has a second mounting protrusion 711. The first elastic element 720 is a cylindrical spring, and the first mounting protrusion 224 is fitted onto one end of the first elastic element 720 and the other end of the first elastic element 720. The closed opening and the arm body 200a surround to form the second sliding space 208, making the terminal bracket structure compact.
[0315] In some implementation methods, refer to Figures 12-25 The actuating member 730 has a protruding abutment 734, and the retaining member 710 is slidably mounted on the connecting arm 200. The retaining member 710 has a first abutment wall 701, and when the actuating member 730 is in the fifth position, the abutment 734 abuts against the first abutment wall 701. The retaining member 710 has a retraction space 702, and when the actuating member 730 is in the fourth position, the abutment 734 is located in the retraction space 702. The retaining member 710 has a first sliding surface 703, and during the process of the actuating member 730 sliding from the fourth position to the fifth position, the abutment 734 slides across the first sliding surface 703, and the retaining member 710 moves away from the first rotating part 330. Understandably, the arrangement of the first abutting wall 701 and the retraction space 702 allows the retaining member 710 to be in different positions. For example, when the abutting protrusion 734 is abutting against the first abutting wall 701, the retaining member 710 is in a state of being disengaged from the first rotating part 330. Or, for example, when the abutting protrusion 734 is located in the retraction space 702, the first elastic element 720 pushes the retaining member 710 to abut against the outer wall of the first rotating part 330 or to be retained in the retaining groove 305 of the first rotating part 330.
[0316] For example, the relief space 702 can be a recess, or a space on one side of the retainer 710.
[0317] For example, the first sliding surface 703 can be a plane or a curved surface.
[0318] In some implementation methods, refer to Figures 12-25 The retaining member 710 has a retaining protrusion 712, which is located between the relief space 702 and the first abutment wall 701. During the sliding of the actuating member 730 from the fifth position to the fourth position, the abutment protrusion 734 slides past the retaining protrusion 712. It can be understood that when the actuating member 730 is in the fifth position, the retaining protrusion 712 can prevent the actuating member 730 from sliding to the fourth position under its own gravity torque (or other small external force).
[0319] In some implementation methods, refer to Figures 12-25 The abutment protrusion 734 has a second sliding surface 704 and an abutment end 705. The second sliding surface 704 extends to the abutment end 705 of the abutment protrusion 734. When the actuating member 730 is in the fourth position, the second sliding surface 704 abuts against the first sliding surface 703. During the sliding process of the actuating member 730 from the fourth position to the fifth position, the second sliding surface 704 slides past the first sliding surface 703. The second sliding surface 704 and the first sliding surface 703 facilitate the sliding of the actuating member 730 from the fourth position to the fifth position. On the other hand, when the actuating member 730 is in the fourth position, the abutment between the second sliding surface 704 and the first sliding surface 703 keeps the retaining member 710 in a state of being disengaged from the first rotating part 330.
[0320] In some implementation methods, refer to Figures 12-25 The first sliding surface 703 is a plane inclined relative to the sliding direction of the holding member 710, and the second sliding surface 704 is a plane parallel to the first sliding surface 703.
[0321] In some implementation methods, refer to Figures 12-25 The support 300 is rotatably mounted on the connecting arm 200 around the first rotation axis 302 so as to adjust the usage angle of the electronic terminal 500.
[0322] In some implementation methods, refer to Figures 12-25The first rotating part 330 is a rotating body coaxial with the first rotating axis 302, and the retaining groove 305 is connected to the side wall of the first rotating part 330. The retaining member 710 includes a sliding body 710a and a retaining protrusion 713 protruding from the sliding body 710a. The retaining protrusion 713 is retained in the retaining groove 305 so that the retaining member 710 retains the supporting member 300. The sliding body 710a has an abutting surface 706 at one end near the first rotating part 330. The abutting surface 706 is a rotating surface adapted to the side wall of the first rotating part 330. When the retaining protrusion 713 is retained in the retaining groove 305, the abutting surface 706 abuts against the first rotating part 330. Understandably, the first rotating part 330 is configured as a rotating body so that when the retaining member 710 is abutting against the first rotating part 330, the supporting member 300 can rotate relatively smoothly, allowing the retaining member 710 to enter the retaining groove 305 more quickly. Understandably, the abutting surface 706 limits the retaining member 710, preventing it from sliding out of the second sliding space 208.
[0323] In some implementation methods, refer to Figures 12-25 At least one of the at least one card-holding slots 305 is a first card-holding slot 305. When the card-holding member 710 is engaged in the first card-holding slot 305, the electronic terminal 500 can be placed horizontally relative to the user of the terminal stand. At least one of the at least one card-holding slots 305 is a second card-holding slot 305. When the card-holding member 710 is engaged in the second card-holding slot 305, the electronic terminal 500 can be placed vertically relative to the user of the terminal stand. The first card-holding slot 305 and the second card-holding slot 305 facilitate the electronic terminal 500 to be held at different usage angles.
[0324] In some implementation methods, refer to Figure 1 , Figure 33The terminal bracket includes a support assembly 100 for supporting the connecting arm 200 and the support member 300. The support assembly 100 includes a support base and a support rod 120. The support base supports the support rod 120, and the support rod 120 is mounted on the support base. The connecting arm 200 is rotatably mounted on the support rod 120. The support base includes at least three legs 110, which can be opened or retracted. When the at least three legs 110 are open, the support base can be supported on a support surface. When the at least three legs 110 are retracted, the support base forms a gripping body 130. The first sidewall 10... 1. Located in the grip body 130; the terminal bracket also includes a sliding sleeve 140 and at least three connecting rods 150. The sliding sleeve 140 is slidably installed on the support rod 120 along the length direction of the support rod 120. The at least three connecting rods 150 correspond to at least three legs 110 respectively. One end of the leg 110 is rotatably connected to the sliding sleeve 140. One end of the connecting rod 150 is rotatably connected to the leg 110 and the other end is rotatably connected to the support rod 120. During the sliding of the sliding sleeve 140 relative to the support rod 120, the at least three legs 110 open or retract relative to the support rod 120. The support rod 120 is a telescopic rod.
[0325] The above is only used to illustrate the technical solution of this utility model and not to limit it. Any other modifications or equivalent substitutions made by those skilled in the art to the technical solution of this utility model, as long as they do not depart from the spirit and scope of the technical solution of this utility model, should be covered within the scope of the claims of this utility model.
Claims
1. A terminal bracket, characterized in that, The terminal bracket includes a support assembly, a connecting arm, a support component, and auxiliary accessories. The support assembly is used to support the connecting arm and the support member, and the support assembly has a first sidewall; The connecting arm is rotatably mounted on the support assembly. The connecting arm is foldable to the first side wall. The connecting arm has a storage slot with a first storage opening that communicates with the surface of the connecting arm. The auxiliary accessory can be stored in the storage slot through the first storage opening. When the connecting arm is folded to the first side wall, the first storage opening faces the first side wall. The first side wall can hold the auxiliary accessory to prevent it from falling out of the storage slot. The support member is used to support the electronic terminal and is mounted on the connecting arm.
2. The terminal bracket according to claim 1, characterized in that, The connecting arm has a pressing opening that communicates with the storage slot. The pressing opening and the first storage opening are located on opposite sides of the connecting arm. When the connecting arm is open relative to the first side wall, the user of the terminal bracket can press the auxiliary accessory through the pressing opening so that the auxiliary accessory can be released from the storage slot through the first storage opening.
3. The terminal bracket according to claim 2, characterized in that, With the auxiliary accessory stored in the storage slot, the auxiliary accessory cannot be dislodged from the storage slot through the pressing opening.
4. The terminal bracket according to claim 2, characterized in that, The auxiliary accessory is provided with at least one first snap-fit portion, and the connecting arm is provided with at least one second snap-fit portion. The at least one first snap-fit portion corresponds to the at least one second snap-fit portion respectively, and the first snap-fit portion snaps into the second snap-fit portion so that the auxiliary accessory snaps into the connecting arm. The at least one second snap-fit portion includes at least one suspended snap-fit portion. The connecting arm has a mounting groove, and a cantilever protrudes from the groove wall. The suspended snap-fit part is located on the cantilever. The connecting arm has a deformation space. During the process of the suspended snap-fit part snapping or disengaging from the corresponding first snap-fit part, the cantilever deforms in the deformation space.
5. The terminal bracket according to claim 4, characterized in that, The first snap-fit part is a snap-fit groove, and the second snap-fit part is a snap-fit protrusion; or, the first snap-fit part is a snap-fit protrusion, and the second snap-fit part is a snap-fit groove. There are two first latching parts and two second latching parts. The two first latching parts are located on opposite sides of the auxiliary accessory, and the two second latching parts are located on opposite sides of the storage slot.
6. The terminal bracket according to claim 1, characterized in that, The auxiliary accessory is provided with a button, the connecting arm is provided with a first opening, the first opening is connected to the storage slot, the first opening is connected to the outer wall of the connecting arm, the first opening corresponds to the button, and the user of the terminal bracket can touch the button through the first opening.
7. The terminal bracket according to claim 6, characterized in that, With the connecting arm folded under the first sidewall, the first sidewall does not obstruct the first opening, allowing the user of the terminal bracket to touch the button through the first opening.
8. The terminal bracket according to claim 1, characterized in that, The auxiliary accessory is provided with a third snap-fit part, and the support member is provided with a fourth snap-fit part, wherein the third snap-fit part can snap into the fourth snap-fit part; The third snap-fit portion is a protrusion that protrudes from the auxiliary accessory. The connecting arm has a second opening. When the auxiliary accessory is stored in the storage slot, the third snap-fit portion is accommodated in the second opening. During the process of the auxiliary accessory detaching from the storage slot, the third snap-fit portion detaches from the connecting arm through the second opening.
9. The terminal bracket according to claim 1, characterized in that, With the connecting arm folded against the first sidewall, the connecting arm is located between the first sidewall and the support member.
10. The terminal bracket according to claim 1, characterized in that, The support assembly includes a support base and a support rod. The support base is used to support the support rod, the support rod is installed on the support base, the connecting arm is rotatably installed on the support rod, and the support member is installed on the connecting arm; The first sidewall is located on the support base and / or the support rod.
11. The terminal bracket according to claim 10, characterized in that, The support base includes at least three legs, which can be opened or closed. When the at least three legs are opened, the support base can be supported on a support surface. When the at least three legs are closed, the support base forms a grip, and the first sidewall is located in the grip. The terminal bracket further includes a sliding sleeve and at least three connecting rods. The sliding sleeve is slidably installed on the support rod along the length direction of the support rod. The at least three connecting rods correspond to the at least three legs respectively. One end of each leg is rotatably connected to the sliding sleeve. One end of each connecting rod is rotatably connected to the leg and the other end is rotatably connected to the support rod. During the sliding of the sliding sleeve relative to the support rod, the at least three legs open or close relative to the support rod. The support rod is a telescopic rod, and when the telescopic rod is in the retracted state, the connecting arm can be folded into the grip.
12. The terminal bracket according to claim 10, characterized in that, The support rod has a first central axis along its length. The support member is rotatably mounted on the connecting arm about a first rotation axis; The connecting arm rotates relative to the support rod so that the support member is in a first position relative to the support rod. When the support member is in the first position, the angle between the first rotation axis and the first central axis is greater than or equal to 0° and less than or equal to 5°, and the distance between the first rotation axis and the first central axis is greater than or equal to 0° and less than or equal to 0.5cm. The first rotation axis is coaxial, parallel, intersecting, or non-plane with the first central axis. Coaxiality between the first rotation axis and the first central axis is defined as follows: the angle between the first rotation axis and the first central axis is 0°, and the distance between them is 0. Parallelism between the first rotation axis and the first central axis is defined as follows: the angle between the first rotation axis and the first central axis is 0°, and the distance between them is greater than 0°. Intersection between the first rotation axis and the first central axis is defined as follows: the angle between the first rotation axis and the first central axis is greater than 0°, and the distance between them is 0. Non-planeity between the first rotation axis and the first central axis is defined as follows: the angle between the first rotation axis and the first central axis is greater than 0°, and the distance between them is greater than 0.
13. The terminal bracket according to claim 12, characterized in that, The connecting arm includes a first arm body and a second arm body, the second arm body being rotatably mounted on the first arm body, the first arm body being rotatably mounted on the support rod, and the support member being rotatably mounted on the second arm body about the first rotation axis. When the second arm is in a third position relative to the first arm, the first arm can rotate relative to the support rod to place the support member in the first position. When the second arm is in a second position relative to the first arm, the first arm can rotate relative to the support rod to allow the connecting arm to be folded against the first side wall. The first arm includes a first main arm and a first extension arm connected to the first main arm. The first extension arm extends to one side of the first main arm and is rotatably mounted on the support rod. When the connecting arm is folded to the first side wall, the first main arm is close to or attached to the first side wall. The first main arm holds the auxiliary accessory, and the second arm is close to or attached to the first side wall. The first main arm has a first side side, and the second arm body has a second side side. When the second arm body is in a second position relative to the first arm body, the first side side is aligned with the second side side. When the connecting arm is folded against the first side wall, the first side side is close to or attached to the first side wall. The first side side holds the auxiliary accessory, and the second side side is close to or attached to the first side wall. The first main arm has a first limiting surface, and the second arm body has a second limiting surface; When the second arm is in a third position relative to the first arm, the second side abuts against the first main arm, and the first arm rotates relative to the support rod to make the support member in the first position. The second arm and the first extension arm extend to the same side of the first main arm, and the second side abuts against the first limiting surface. When the second arm is in a second position relative to the first arm, the second limiting surface abuts against the first limiting surface, and the first main arm and the second arm form a first strip structure. The first strip structure and the first main arm extend in a direction parallel to the first straight line. The second arm is rotatably mounted on the first arm about a third rotation axis, the angle between the third rotation axis and the first rotation axis being greater than or equal to 85° and less than or equal to 90°, and the angle between the third rotation axis and the first straight line being greater than or equal to 85° and less than or equal to 90°. The connecting arm is rotatably mounted on the support rod about a second rotation axis, the angle between the second rotation axis and the first straight line being greater than or equal to 85° and less than or equal to 90°. The first main arm and the second arm body form a first strip structure, and during the rotation of the connecting arm relative to the support rod, the angle between the first straight line and the first central axis can be any angle between 0° and 90°. The angle between the second rotation axis and the first central axis is greater than or equal to 85° and less than or equal to 90°; The connecting arm can be held on the support rod, the support member can be held on the connecting arm, and the second arm body can be held on the first arm body; The support base includes at least three legs, which can be opened or closed. When the at least three legs are opened, the support base can be supported on a support surface. When the at least three legs are closed, the support base forms a grip, and the first sidewall is located in the grip. With at least three legs open, the at least three legs are centrally symmetrical about the first central axis; The support has a first clamping gap for clamping the electronic terminal. The first clamping gap is used to clamp the electronic terminal along the length or width direction of the electronic terminal. The electronic terminal has a camera lens. When the electronic terminal is clamped in the first clamping gap, the angle between the axis of the camera lens and the first rotation axis is greater than or equal to 0° and less than or equal to 5°. The support has a second clamping gap for clamping the electronic terminal. The electronic terminal is a plate-shaped object. The second clamping gap is used to clamp the electronic terminal along the thickness direction of the electronic terminal. When the electronic terminal is clamped by the second clamping gap, the angle between the axis of the shooting lens and the first rotation axis is greater than or equal to 85° and less than or equal to 90°.
14. The terminal bracket according to claim 1, characterized in that, The terminal bracket also includes a holding component, and the support member is rotatably mounted on the connecting arm; The support member has a first rotating part, and the first rotating part is provided with at least one retaining groove, which is connected to the outer side wall of the first rotating part. The locking assembly includes a locking member, a first elastic element, and a toggle member. The locking member is movably mounted on the connecting arm. One end of the first elastic element acts on the connecting arm, and the other end acts on the locking member. The toggle member is slidably mounted on the connecting arm, allowing it to be in a fourth position and a fifth position relative to the connecting arm. When the actuating member is in the fourth position, the elastic element causes the retaining member to abut against the outer wall of the first rotating part or to be retained in the retaining groove. When the retaining member abuts against the outer wall of the first rotating part, the first rotating part rotates around an angle, and the elastic element causes the retaining member to be retained in the retaining groove. During the process of the actuating member moving from the fourth position to the fifth position, the actuating member causes the retaining member to disengage from the first rotating part; When the actuating member is in the fifth position, the actuating member blocks the retaining member so that the retaining member remains disengaged from the first rotating part.
15. The terminal bracket according to claim 14, characterized in that, The connecting arm has a first sliding space, and the actuating element is slidably installed in the first sliding space; The actuating component has a first pressing protrusion and a second pressing protrusion at both ends. Pressing the first pressing protrusion moves the actuating component from the fourth position to the fifth position, and pressing the second pressing protrusion moves the actuating component from the fifth position to the fourth position. When the toggle is in the fourth position, the first pressing protrusion protrudes from the first side of the connecting arm, and the second pressing protrusion is accommodated in the first sliding space; when the toggle is in the fifth position, the first pressing protrusion is accommodated in the first sliding space, and the second pressing protrusion protrudes from the second side of the connecting arm, with the first side and the second side located on opposite sides of the connecting arm respectively. The first sliding space includes a first exposed opening and a second exposed opening, the first exposed opening being connected to a first side of the connecting arm, and the second exposed opening being connected to a second side of the connecting arm; When the toggle is in the fourth position, the first pressing protrusion protrudes from the first side of the connecting arm through the first exposed opening; When the toggle is in the fifth position, the second pressing protrusion protrudes from the second exposed opening onto the second side of the connecting arm; The terminal bracket has a first limiting wall and a second limiting wall. The first limiting wall and the second limiting wall allow the actuating member to be slidably installed in the first sliding space. The actuating member has a limiting protrusion. The limiting protrusion has a third limiting wall and a fourth limiting wall. When the actuating member is in the fourth position, the third limiting wall abuts against the first limiting wall. When the actuating member is in the fifth position, the fourth limiting wall abuts against the second limiting wall. The first limiting wall is located on the connecting arm and / or the retaining member, and the second limiting wall is located on the connecting arm and / or the retaining member. The connecting arm also includes an arm body and a cover detachably mounted on the arm body. The arm body has an assembly space and an assembly opening communicating with the assembly space. The clamping component can be inserted into the assembly space through the assembly opening. The arm body has a second sliding space, and the retaining member is slidably installed in the second sliding space; the arm body and the cover surround to form the second sliding space; The connecting arm has a first mounting protrusion, the retaining member has a second mounting protrusion, the first elastic element is a cylindrical spring, the first mounting protrusion is sleeved on one end of the first elastic element, and the first mounting protrusion is sleeved on the other end of the first elastic element. The actuating member has a protruding abutment, and the retaining member is slidably mounted on the connecting arm. The retaining member has a first abutment wall and a clearance space. When the actuating member is in the fifth position, the abutment protrusion abuts against the first abutment wall. When the actuating member is in the fourth position, the abutment protrusion is located in the clearance space. The retaining member has a first sliding surface. During the process of the actuating member sliding from the fourth position to the fifth position, the abutting protrusion slides over the first sliding surface, and the retaining member moves away from the first rotating part. The retaining member has a retaining protrusion, which is located between the retraction space and the first abutting wall. During the process of the toggle member sliding from the fifth position to the fourth position, the abutting protrusion slides past the retaining protrusion. The abutting protrusion has a second sliding surface and an abutting end. The second sliding surface extends to the abutting end of the abutting protrusion. When the actuating member is in the fourth position, the second sliding surface abuts against the first sliding surface. During the process of the actuating member sliding from the fourth position to the fifth position, the second sliding surface slides past the first sliding surface. The first sliding surface is a plane inclined relative to the sliding direction of the holding member, and the second sliding surface is a plane parallel to the first sliding surface; The support member is rotatably mounted on the connecting arm about a first rotation axis. The first rotation part is a rotating body coaxial with the first rotation axis. The retaining groove is connected to the side wall of the first rotation part. The retaining member includes a sliding body and a retaining protrusion protruding from the sliding body. The retaining protrusion is retained in the retaining groove so that the retaining member retains the support member. The sliding body has an abutting surface at one end near the first rotation part. The abutting surface is a rotating surface adapted to the side wall of the first rotation part. When the retaining protrusion is retained in the retaining groove, the abutting surface abuts against the first rotation part.
16. The terminal bracket according to claim 1, characterized in that, The support member is rotatably mounted on the connecting arm about a first rotation axis. The support member has a first clamping gap for clamping the electronic terminal. The first clamping gap is used to clamp the electronic terminal along the length or width direction of the electronic terminal. The electronic terminal has a camera lens. When the electronic terminal is clamped by the first clamping gap, the angle between the axis of the camera lens and the first rotation axis is greater than or equal to 0° and less than or equal to 5°. The support includes a first body and two clamping members. The first body is elastically extendable and retractable. The two clamping members are respectively installed on the first body, and the first clamping gap is between the two clamping members. At least one of the two clamping members is a first clamping member. The first clamping member includes a first connecting part and two clamping protrusions. The two clamping protrusions are spaced apart from the first connecting part. At least one of the two clamping protrusions is a first clamping protrusion. The first clamping member also includes at least one first elastic pad. The at least one first elastic pad corresponds to the at least one first clamping protrusion. The first elastic pad is installed on the corresponding first clamping protrusion. The first clamping member has a second clamping gap located between two clamping protrusions. The electronic terminal is plate-shaped. The second clamping gap can clamp the electronic terminal along the thickness direction of the electronic terminal. When the electronic terminal is clamped by the second clamping gap, the first elastic pad is located between the electronic terminal and the first clamping protrusion, and the electronic terminal squeezes the first elastic pad. With the electronic terminal clamped in the second clamping gap, the electronic terminal presses against the first elastic pad, and the angle between the axis of the shooting lens and the first rotation axis is greater than or equal to 85° and less than or equal to 90°.
17. The terminal bracket according to claim 16, characterized in that, Both clamping members are first clamping members, and the second clamping gap of the two first clamping members clamps the same side of the electronic terminal; The first elastic pad has a first protrusion and a first groove on the side that abuts against the electronic terminal, and the first protrusion is in the shape of a ring surrounding the first groove; The first clamping member further includes at least one first flexible portion, which corresponds to the at least one first elastic pad. The first elastic pad is connected to the first flexible portion. The first flexible portion is provided with a first mounting groove and an anti-detachment cavity. The anti-detachment cavity communicates with the first mounting groove and extends away from the first mounting groove. The first clamping protrusion includes a first clamping post, a mounting post protruding from the first clamping post, and an anti-detachment protrusion protruding from the mounting post. The first clamping post is connected to the first connecting portion. The mounting post protrudes from the first clamping post and extends toward the second clamping gap. The anti-detachment protrusion extends away from the mounting post. The mounting post is fitted into the first mounting groove. The anti-detachment protrusion is located in the anti-detachment cavity. The first elastic pad is located at the end of the corresponding mounting post. When the electronic terminal is clamped in the second clamping gap, the first elastic pad is located between the end of the mounting post and the electronic terminal. The first clamping member further includes at least one second elastic pad, which corresponds to the at least one first flexible part. The first flexible part is integrally connected to the corresponding first elastic pad. The at least one second elastic pad corresponds to the at least one first clamping protrusion. The at least one second elastic pad is installed on the corresponding first clamping protrusion. When the electronic terminal is clamped in the first clamping gap, the second elastic pad is located between the electronic terminal and the first clamping protrusion, and the electronic terminal squeezes the second elastic pad. The first clamping protrusion has a second mounting groove, and the at least one second elastic pad corresponds to the second mounting groove of the at least one first clamping protrusion, and the second elastic pad is embedded in the corresponding second mounting groove.
18. The terminal bracket according to claim 17, characterized in that, The first clamping member has two first elastic pads, two first flexible parts, and two clamping protrusions, both of which are first clamping protrusions. The first clamping member also has two second elastic pads. The first clamping member further includes a flexible second connecting portion for connecting the two first flexible portions. The second connecting portion includes a first connecting sub-part and two second connecting sub-parts. The two ends of the first connecting sub-part are respectively connected to the two second connecting sub-parts. The first connecting sub-part extends along the first connecting portion. The two second connecting sub-parts correspond to the two first clamping protrusions respectively. The second connecting sub-parts extend along the first clamping post of the corresponding first clamping protrusion. The second connecting sub-parts are connected to the corresponding first flexible portion. The first connecting part is connected to the two second elastic pads; The first connecting part is used to support the electronic terminal. When the first connecting part supports the electronic terminal, the electronic terminal presses against the first connecting part.
19. The terminal bracket according to claim 1, characterized in that, The support assembly includes a support base and a support rod. The support base supports the support rod, and the support rod is mounted on the support base. The terminal bracket also includes a drive assembly. The connecting arm is mounted on the support rod, and the support member is rotatably mounted on the connecting arm about a first rotation axis. The drive assembly is mounted on the connecting arm and is used to drive the support member to rotate about the first rotation axis. The electronic terminal has a camera lens, and the terminal bracket also includes a controller. The controller is electrically connected to the drive assembly and is used to control the drive assembly to make the camera lens track the subject being photographed.