Terminal support
By designing rotatably connected and elastically retractable clamps, the problem of inconvenient storage of existing terminal bracket fixtures is solved, and the convenient storage of terminal brackets and the reduction of volume occupied is achieved.
Patent Information
- Application Number
- CN202420890484.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2023-04-23
- Filing Date
- 2024-04-23
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-04-23
AI Technical Summary
The fixture design of the existing terminal bracket is inconvenient for storage, which makes it difficult to store the bracket.
A terminal bracket including a support device and a fixture is designed, and the fixture consists of a carrier body and two clamps, which are rotatably connected to the carrier body and can be elastically telescopically retracted along the parallel axis direction to change the clamp width and, if necessary, stack the clamp on the carrier body to reduce the volume occupied.
It realizes convenient storage of fixtures, reduces the occupied volume of the terminal bracket, and improves the convenience of storage of the bracket.
Smart Images

Figure CN222992539U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of auxiliary devices for electronic terminals, and particularly relates to a terminal bracket. Background Art
[0002] Currently, mobile phones, tablets, e-readers, etc. have become indispensable electronic terminals in everyone's life. In order to make it more convenient for people to use electronic terminals, terminal brackets for supporting electronic terminals have come into being.
[0003] A terminal bracket generally includes a supporting device and a carrying device. The carrying device is installed on the supporting device and is used to carry an electronic terminal. The supporting device can be supported on the ground, a tabletop, a specific object, etc.
[0004] In some existing terminal brackets, the carrying device is a clamp for clamping an electronic terminal. The clamp includes a carrying body and two clamping parts. The carrying body can be elastically telescopic. The clamping parts are fixedly installed on the carrying body, and the clamping parts protrude from the carrying body, making the clamp not easy to store, and thus the terminal bracket is not easy to store either. Summary of the Utility Model
[0005] Aiming at the defects and deficiencies of the prior art, a first object of the utility model is to provide a terminal bracket for supporting an electronic terminal. The terminal bracket includes a supporting device and a clamp. The clamp is used to clamp the electronic terminal. The clamp is installed on the supporting device. The clamp includes a carrying body and two clamping members. The two clamping members are installed on the carrying body and cooperate to clamp the electronic terminal. At least one of the two clamping members is a first clamping member. Each first clamping member is rotatably connected to the carrying body. The first clamping member includes a rotating connection part and a first clamping part. The rotating connection part is rotatably installed on the carrying body so that the first clamping member is rotatably installed on the carrying body. The first clamping part is installed on the rotating connection part. Rotating the first clamping member can make the first clamping part overlap the carrying body. The first clamping member is rotatably installed on the carrying body around a first axis. The first clamping member can elastically expand and contract relative to the carrying body in a direction parallel to the first axis. The expansion and contraction of the first clamping member relative to the carrying body can change the clamping width of the clamp.
[0006] Preferably, the carrying body has a first outer peripheral wall corresponding to each first clamping member, and the first clamping part can overlap the first outer peripheral wall.
[0007] Preferably, the first clamping member has a first abutting wall, which abuts against the electronic terminal when the first clamping portion clamps the electronic terminal, and the first abutting wall adheres to or is close to the carrying body when the first clamping portion is stacked on the carrying body.
[0008] Preferably, the carrying body has a first outer peripheral wall corresponding to each first clamping member, and the first clamping portion can be stacked on the first outer peripheral wall; when the first clamping portion is stacked on the carrying body, the first abutting wall adheres to or is close to the first outer peripheral wall.
[0009] Preferably, the rotation connection portion is rotatably mounted on the carrying body around the first axis. The first outer peripheral wall includes a first sub-wall and a second sub-wall, and the first sub-wall and the second sub-wall are respectively located on opposite sides of the first axis; when the first clamping portion is stacked on the carrying body, the first abutting wall is close to or adheres to the first sub-wall of the carrying body, or the first abutting wall is close to or adheres to the second sub-wall of the carrying body.
[0010] Preferably, the rotation connection portion is rotatably mounted on the carrying body around the first axis, and the rotation connection portion is telescopic relative to the carrying body along a direction parallel to the first axis. The first abutting wall is adapted to the first outer peripheral wall, and when the first clamping member is in the second position of the carrying body, the first abutting wall adheres to the first outer peripheral wall.
[0011] Preferably, both of the clamping members are the first clamping members. A first plane is perpendicular to the clamping directions of the two clamping members, and the first plane is located between the two clamping members. When the two first clamping members clamp the electronic terminal, the bottom end of the first abutting wall is close to the carrying body, the top end of the first abutting wall is far from the carrying body, and the first abutting wall gradually approaches the first plane from the bottom end to the top end thereof.
[0012] Preferably, the first abutting wall is not rotationally symmetric about the first axis. During the process of rotating the first clamping member to stack the first clamping portion on the carrying body, the first clamping member expands and contracts relative to the carrying body; the first abutting wall is a cylindrical surface that is not rotationally symmetric about the first axis, and the first outer peripheral wall is a cylindrical surface that is not rotationally symmetric about the first axis.
[0013] Preferably, the carrying body includes a first main body. The carrying body further includes a first sliding member and a first elastic element corresponding to the first clamping member. The first sliding member is slidably mounted on the first main body along a direction parallel to the first axis. One end of the first elastic element acts on the first main body, and the other end acts on the first sliding member. The first elastic element causes the first sliding member to abut against the first clamping member. In a state where the fixture does not clamp the electronic terminal, the first elastic element causes the first sliding member to abut against the first clamping member so that the first clamping member retracts relative to the carrying body. During the process of the first clamping member extending relative to the carrying body, the first elastic element causes the first sliding member to abut against the first clamping member so that the first clamping member has a clamping force for clamping the electronic terminal. The first elastic element and the first sliding member enable the first clamping member to elastically expand and contract along a direction parallel to the first axis. The expansion and contraction of the first clamping member relative to the carrying body can change the clamping width of the fixture. The first clamping member is rotatably mounted on the first sliding member around the first axis so that the first clamping member is rotatably mounted on the carrying body around the first axis. During the process of the expansion and contraction of the first clamping member and the carrying body, the first sliding member always follows the first clamping member so that the first clamping member slides relative to the carrying body along a direction parallel to the first axis. The first clamping portion is used for clamping the electronic terminal. The first sliding member is provided with a first connection hole, and the rotation connection portion is sleeved on the first connection hole. The rotation connection portion rotates around the first axis relative to the first connection hole so that the first clamping member is rotatably connected to the carrying body around the first axis. During the process of the first clamping member sliding relative to the carrying body along a direction parallel to the first axis, the first sliding member always follows the rotation connection portion. The rotation connection portion is convexly provided with a first protrusion. During the process of the first clamping member extending relative to the carrying body, the first protrusion pushes the first sliding member so that the first sliding member slides relative to the first main body. During the process of the first clamping member contracting relative to the carrying body, the first elastic element pushes the first sliding member so that the first sliding member slides relative to the first main body.
[0014] Preferably, the first sliding member is provided with a first groove, and the first groove is adapted to the first protrusion. Rotating the first clamping member can make the first protrusion and the first groove in a mating state or a disengaged state. When the first clamping member rotates to a second position relative to the carrying body, the first clamping portion overlaps the carrying body, and the first protrusion and the first groove are in a mating state so that the first clamping member can be held at the second position relative to the carrying body; the first sliding member is circumferentially fixed relative to the first body around the first axis; during the process that the first protrusion and the first groove change from a disengaged state to a mating state or from a mating state to a disengaged state, the first sliding member slides relative to the rotating connection portion; the first sliding member is provided with a second groove, and the second groove is adapted to the first protrusion. The first clamping member can rotate from the second position to a first position to be clamped relative to the carrying body, and the first clamping member can extend from the first position to be clamped to the first position. In the state where the first clamping member is at the first position to be clamped relative to the carrying body, the first clamping member contracts within the carrying body, and in the state where the first clamping member is at the first position relative to the carrying body, the first clamping member clamps the electronic terminal; during the process that the first clamping member rotates from the second position to the first position to be clamped, the first protrusion and the second groove change from a disengaged state to a mating state, and the first protrusion and the second groove being in a mating state enables the first clamping member to be held at the first position to be clamped relative to the carrying body; during the process that the first clamping member rotates from the first position to be clamped to the second position, the first protrusion and the second groove change from a mating state to a disengaged state; the first groove is open, the second groove is open, and the first groove intersects with the second groove.
[0015] Preferably, the support device includes a support rod and a plurality of support feet. The support rod is mounted on the plurality of support feet, and the carrying device is mounted on the support rod. The number of the support feet is at least 3.
[0016] Implementing the above terminal bracket has the following beneficial effects. When the fixture needs to be stored, the first clamping member can be rotated so that the first clamping member overlaps the carrying body, thereby reducing the occupied volume of the fixture, facilitating the storage of the fixture, and thus facilitating the storage of the terminal bracket. Description of the Drawings
[0017] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0018] Figure 1 Structural schematic diagram of an implementation manner of the carrying device in the embodiment of the present invention;
[0019] Figure 2 is Figure 1 Cross-sectional view of the carrying device shown along line A-A;
[0020] Figure 3 is Figure 2 Enlarged view of the structure at B in the carrying device shown;
[0021] Figure 4 is Figure 2 Enlarged view of the structure at C in the carrying device shown;
[0022] Figure 5 is Figure 1 State diagram of the carrying device shown when both first clamping members are in the first clamping position;
[0023] Figure 6 is Figure 5 Structural schematic diagram of the carrying device shown with the first clamping portion hidden;
[0024] Figure 7 is Figure 6 Enlarged view of the structure at D in the structure shown;
[0025] Figure 8 is Figure 5 Structural schematic diagram of one of the first clamping portions in the carrying device shown;
[0026] Figure 9 is Figure 6 Structural schematic diagram of the structure shown with the first housing hidden;
[0027] Figure 10 is Figure 9 Cooperating schematic diagram of the rotational connection portion and the first sliding member in the structure shown;
[0028] Figure 11 Structural schematic diagram of the first sliding member in the structure shown in 10;
[0029] Figure 12 is Figure 6 Structural schematic diagram of the second housing in the structure shown;
[0030] Figure 13 is Figure 6 A schematic structural diagram of the first housing in the structure shown;
[0031] Figure 14 is Figure 6 A schematic structural diagram of the first magnetic component in the structure shown;
[0032] Figure 15 is Figure 1 A state diagram when both first clamping members in the shown carrying device are in the first position;
[0033] Figure 16 is Figure 15 An enlarged view of the structure at position E in the shown carrying device;
[0034] Figure 17 is Figure 1 A state diagram when one of the first clamping members in the shown carrying device is in the second position;
[0035] Figure 18 A schematic structural diagram of an implementation manner of the terminal bracket according to an embodiment of the present invention. Detailed implementation manners
[0036] The present invention will be further described in detail below with reference to the accompanying drawings.
[0037] This specific embodiment is only an interpretation of the present invention and does not limit the present invention. After reading this specification, those skilled in the art can make modifications that do not contribute to the creation according to needs, but as long as they are within the scope of the claims of the present invention, they are protected by the patent law.
[0038] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as limiting the present invention.
[0039] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include at least one such feature. In the description of the present utility model, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise specifically defined.
[0040] In the present utility model, unless otherwise clearly defined and limited, terms such as "installed", "connected", "joined", "fixed", etc. shall be construed in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two elements or the interaction relationship between two elements, unless otherwise clearly limited. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0041] In the present utility model, unless otherwise clearly defined and limited, the first feature being "on" or "under" the second feature may be that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature being "above", "over" and "on top of" the second feature may mean that the first feature is directly above or obliquely above the second feature, or merely indicates that the first feature has a higher horizontal height than the second feature. The first feature being "under", "beneath" and "underneath" the second feature may be that the first feature is directly below or obliquely below the second feature, or merely indicates that the first feature has a lower horizontal height than the second feature.
[0042] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it may be directly on the other element or there may also be a middle element. When an element is considered to be "connected" to another element, it may be directly connected to the other element or there may be a middle element at the same time. The terms "vertical", "horizontal", "up", "down", "left", "right" and similar expressions used herein are for illustrative purposes only and do not represent the only implementation.
[0043] Refer to Figures 1 - 17, an embodiment of the present utility model provides a carrying device 1 for carrying an electronic terminal, including a carrying body 100 and two clamping members 200; the carrying body 100 is provided with a magnetic member 120 for magnetically attracting the electronic terminal; the two clamping members 200 are installed on the carrying body 100, and the two clamping members 200 cooperate to clamp the electronic terminal; at least one of the two clamping members 200 is a first clamping member 200a, and the first clamping member 200a is rotatably connected to the carrying body 100. When the carrying device 1 clamps the electronic terminal, the first clamping member 200a is located at a first position of the carrying body 100. The first clamping member 200a can move to a second position relative to the carrying body 100, and the first clamping member 200a can be held at the second position relative to the carrying body 100; wherein, when the two clamping members 200 clamp the electronic terminal, the magnetic member 120 can magnetically attract the electronic terminal; when the first clamping member 200a is at the second position relative to the carrying body 100, the electronic terminal can be smoothly placed on the carrying body 100 so that the magnetic member 120 magnetically attracts the electronic terminal.
[0044] In the carrying body 100 of the carrying device 1 in the above embodiment, a magnetic member 120 is provided, and two clamping members 200 are also provided. When the electronic terminal is too heavy (or when the carrying device 1 needs to be used in a moving state), the magnetic pole member magnetically attracts the electronic terminal, and the two clamping members 200 cooperate to clamp the electronic terminal. The two clamping members 200 can play a role in assisting in stabilizing the electronic terminal, so that the electronic terminal is stably located on the carrying device 1, avoiding the electronic terminal falling off the carrying device 1 when it is too heavy, or avoiding the electronic terminal falling off the carrying device 1 when the carrying device 1 is moving. When the electronic terminal is relatively light (or when the carrying device 1 is only used in a stationary state), the first clamping member 200a can be moved to the second position of the carrying body 100, then the user can directly place the electronic terminal on the carrying body 100 so that the magnetic member 120 magnetically attracts the electronic terminal. And after the first clamping member 200a is adjusted to the second position of the carrying body 100, the electronic terminal can be freely placed or taken out from the carrying body 100, without the user manually adjusting the position of the first clamping member 200a each time, thus making the operation more convenient and fast, and avoiding the trouble of adjusting the position of the first clamping portion 210.
[0045] It can be understood that when the electronic terminal does not have a corresponding magnetic attraction portion, or when the magnetic attraction portion of the electronic terminal is not placed on the carrying device 1 corresponding to the magnetic member 120, the two clamping portions of the carrying device 1 can also clamp the electronic terminal.
[0046] It can be understood that the first clamping member 200a rotates relative to the carrying body 100, and the first clamping member 200a can be located at the second position of the carrying body 100, so that the carrying device 1 has three usage modes, namely, a magnetic attraction usage mode, a clamping and magnetic attraction usage mode, and a clamping usage mode.
[0047] Understandably, when the carrying device 1 holds the electronic terminal, the carrying device 1 is a kind of fixture 1.
[0048] Understandably, the first clamping member 200a rotates relative to the carrying body 100, which also facilitates the storage of the carrying device 1. For example, when it is necessary to store the carrying device 1 or the terminal bracket including the carrying device 1, the position of the first clamping member 200a can be adjusted so that the carrying device 1 enters a suitable posture to be stored, facilitating the storage of the carrying device 1 or the terminal bracket.
[0049] Understandably, the magnetic attraction member 120 can be a magnet ring built into the carrying body 100. The magnetic attraction member 120 includes various permanent magnets and electromagnets with magnetic attraction functions. The permanent magnet is made of permanent magnetic material, and the permanent magnetic material can be, for example, ferrite, neodymium iron boron, magnetite, etc. The magnetic attraction member 120 can achieve the function of magnetically attracting the electronic terminal, and the type of the magnetic attraction member 120 is not limited here.
[0050] Understandably, when the clamping member 200 is in the first position relative to the carrying body 100, the clamping member 200 protrudes from the carrying body 100, so that the two clamping members 200 cooperate to clamp the electronic terminal. The carrying body 100 has a supporting surface 109. When the electronic terminal is placed on the carrying body 100, the supporting surface 109 supports the electronic terminal. When the clamping member 200 is in the first position relative to the carrying body 100, the first clamping member 200a protrudes from the supporting surface 109.
[0051] Understandably, when the first clamping member 200a is in the first position relative to the carrying body 100, the first clamping member 200a protrudes from the carrying body 100, so that the two clamping members 200 cooperate to clamp the electronic terminal. The carrying body 100 has a supporting surface 109. When the electronic terminal is placed on the carrying body 100, the supporting surface 109 supports the electronic terminal. When the first clamping member 200a is in the first position relative to the carrying body 100, the first clamping member 200a protrudes from the supporting surface 109.
[0052] Understandably, when the first clamping member 200a is in the second position relative to the carrying body 100, the first clamping member 200a does not obstruct the placement of the electronic terminal on the carrying body 100, so that the electronic terminal can be smoothly placed on the carrying body 100. For example, when the first clamping member 200a is in the second position relative to the carrying body 100, the first clamping member 200a does not protrude from the supporting surface 109 of the carrying body 100. For example, the first clamping member 200a is on the back surface of the carrying body 100, or the first clamping member 200a is on the side wall of the carrying body 100, or the carrying body 100 has a receiving groove, and the first clamping member 200a is received in the receiving groove. The supporting surface 109 of the carrying body 100 is the surface that contacts the electronic terminal, and the surface of the carrying body 100 away from the supporting surface 109 is its back surface. When the first clamping member 200a is in the first position, it can assist the carrying body 100 to clamp the electronic terminal more stably.
[0053] Exemplarily, when the first clamping member 200a is in the second position relative to the carrying body 100, the first clamping member 200a is located in the side space of the carrying body 100.
[0054] Exemplarily, when the first clamping member 200a is in the second position relative to the carrying body 100, the first clamping member 200a overlaps the carrying body 100. For example, the first clamping member 200a overlaps the first outer peripheral wall 107 of the carrying body 100.
[0055] Understandably, the position mentioned in the embodiments of the present invention can be a position point or a position range. The position of A relative to B can refer to one or more position points of A relative to B. When A is at the position point relative to B, the overall shape of the whole formed by A and B remains unchanged. The position of A relative to B can refer to the position range of A relative to B. When A is within the position range relative to B, the overall shape of the whole formed by A and B can be changed.
[0056] Exemplarily, the first position can refer to one or more first position points. When the first clamping member 200a is at the first position point of the carrying body 100, it cooperates with the first clamping member 200a to clamp the electronic terminal. The first position can refer to the first position range. The first clamping member 200a can clamp the electronic terminal within the first position range of the carrying body 100. For example, after the first clamping member 200a moves relative to the carrying body 100 within the first position range, it can still clamp the electronic terminal.
[0057] Exemplarily, for example, the second position may refer to one or more second position points of the first clamping member 200a relative to the carrying body 100. When the first clamping member 200a is at the second position point relative to the carrying body 100, the first clamping member 200a is fixed relative to the carrying body 100. The second position may also refer to a second position range of the first clamping member 200a relative to the carrying body 100. When the first clamping member 200a is within the second position range relative to the carrying body 100, the electronic terminal can be smoothly placed on the carrying body 100. For example, after the first clamping member 200a moves relative to the carrying body 100 within the first position range, it still does not prevent the electronic terminal from being placed on the carrying body 100.
[0058] It can be understood that the first clamping member 200a can be maintained at the second position relative to the carrying body 100, which may refer to the first clamping member 200a being maintained at one or more second position points relative to the carrying body 100, or may also refer to the first clamping member 200a being maintained within the second position range relative to the carrying body 100.
[0059] Exemplarily, there are many ways for the first clamping member 200a to be maintained at the second position relative to the carrying body 100.
[0060] For example, there is rotational damping between the first clamping member 200a and the carrying body 100 such that the first clamping member 200a can be maintained at the second position relative to the carrying body 100. The first clamping member 200a and the carrying body 100 are in interference fit (or a damping ring is provided between the first clamping member 200a and the carrying body 100) such that there is rotational damping between the first clamping member 200a and the carrying body 100.
[0061] For another example, the carrying device 1 further includes a fastener, which enables the first clamping member 200a to be held at a second position relative to the carrying body 100. The fastener may be a first screw, which is in threaded engagement with the first clamping member 200a. When the first clamping member 200a moves to the second position, rotating the first screw can make it abut against the carrying body 100, so that the first clamping member 200a is held at the second position relative to the carrying body 100. Alternatively, the first screw is in threaded engagement with the carrying body 100, and rotating the first screw can make it abut against the first clamping member 200a, so that the first clamping member 200a is held at the second position relative to the carrying body 100. Alternatively, the first screw is in threaded engagement with the first clamping member 200a, and the carrying body 100 is provided with a limiting groove. When the first clamping member 200a moves to the second position, rotating the first screw can make it enter the limiting groove. The width of the limiting groove is adapted to the first screw so that the first clamping member 200a is held at the second position point, or the width of the limiting groove is greater than the diameter of the first screw so that the first clamping member 200a is held within the second position range. Alternatively, the first screw is in threaded engagement with the carrying body 100, and the first clamping member 200a is provided with a limiting groove. Rotating the first screw can make it enter the limiting groove, so that the first clamping member 200a is held at the second position.
[0062] For another example, the carrying device 1 includes a first clamping structure, which can enable the first clamping member 200a to be clamped to the carrying body 100 so that the first clamping member 200a can be held at a second position relative to the carrying body 100. For example, the first clamping structure includes a first clamping groove and a first clamping protrusion. The first clamping groove and the first clamping protrusion are respectively arranged on the first clamping member 200a and the carrying body 100 (alternatively, the first clamping groove and the first clamping protrusion are respectively arranged on the carrying body 100 and the first clamping member 200a). The cooperation between the first clamping protrusion and the first clamping groove enables the first clamping member 200a to be held at the second position of the carrying body 100. If the first clamping protrusion is adapted to the first clamping groove, the first clamping member 200a can be held at the second position point of the carrying body 100. If the width of the first clamping groove is greater than the width of the first clamping protrusion, the first clamping member 200a can be held within the second position range of the carrying body 100.
[0063] It can be understood that after the first clamping member 200a is held at the second position relative to the carrying body 100, when the carrying device 1 clamps terminals such as mobile phones and tablets, there is no need to adjust the position of the first clamping member 200a, so the operation is more convenient and time-saving.
[0064] It can be understood that after the first clamping member 200a is held at the second position relative to the carrying body 100, when the carrying device 1 is swung or the terminal bracket is carried, the first clamping member 200a still remains at the second position relative to the carrying body 100.
[0065] Exemplarily, when the first clamping member 200a moves from the first position to the second position, the first clamping member 200a needs to rotate by a first angle, and the first angle can be 90°, 75°, 60°, 45°, 135°, 150°, 165°, 270°, etc.
[0066] It can be understood that when the first clamping member 200a is in the second position, the carrying device 1 is in a non-clamping state. It can be understood that when the carrying device 1 clamps the electronic terminal, the carrying device 1 is in a clamping state, and when the carrying device 1 does not clamp the electronic terminal, the carrying device 1 is in a non-clamping state.
[0067] Exemplarily, the first clamping member 200a has one degree of rotational freedom relative to the carrying body 100, and the first clamping member 200a has two degrees of rotational freedom relative to the carrying body 100. For example, the rotational connection portion 220 of the first clamping member 200a is rod-shaped, or the rotational connection portion 220 of the first clamping member 200a is spherical.
[0068] Exemplarily, the first clamping member 200a is only rotatably connected to the carrying body 100, and the first clamping member 200a is non-retractable relative to the carrying body 100 in the clamping direction, and the first clamping member 200a can rotate from the first position to the second position.
[0069] Exemplarily, the first clamping member 200a is rotatably connected to the carrying body 100, and the first clamping member 200a is retractable relative to the carrying body 100 in the clamping direction. When the first clamping member 200a is in the second position relative to the carrying body 100, after the first clamping member 200a rotates by a first angle and extends by a first distance relative to the carrying body 100, the first clamping member 200a is in the first position relative to the carrying body 100.
[0070] Exemplarily, the electronic terminal can be an electronic device such as a mobile phone or a tablet. The electronic terminal has a magnetic attraction portion that can be magnetically attracted by the magnetic attraction member 120. The magnetic attraction portion can be made of a permanent magnetic material or a soft magnetic material, and the soft magnetic material can be cast iron, low-carbon steel, iron-silicon alloy, nickel-iron alloy, iron-cobalt alloy, etc.
[0071] It can be understood that there is a clamping width between the two clamping members 200 to facilitate placing the electronic terminal between the two clamping members 200.
[0072] Exemplarily, both of the two clamping members 200 are the first clamping members 200a, and both of the two first clamping members 200a are rotatably mounted on the carrying body 100. For example, the two first clamping members 200a are respectively located on both sides of the clamping main body.
[0073] Exemplarily, one of the two clamping members 200 is the first clamping member 200a. For example, the other clamping member 200 is movably mounted on the carrying body 100. For example, the other clamping member 200 is rotatably mounted on the carrying body 100. For example, the other clamping member 200 is slidably mounted on the carrying body 100. For example, the other clamping member 200 is fixedly mounted on the carrying body 100. For example, the other clamping member 200 is integrally connected to the carrying body 100.
[0074] It can be understood that when the two clamping members 200 clamp the electronic terminal, the carrying device 1 undergoes elastic deformation to provide the clamping force for clamping the electronic terminal.
[0075] Exemplarily, the first clamping member 200a elastically expands and contracts relative to the carrying body 100 to provide the clamping force for the carrying device 1. For example, the first clamping member 200a is slidably mounted on the carrying body 100. One end of the first elastic element 140 acts on the first clamping member 200a, and the other end acts on the carrying body 100. The first elastic element 140 enables the first clamping member 200a to be elastically expandable and contractible relative to the carrying body 100.
[0076] Another example, one of the clamping members 200 elastically expands and contracts relative to the carrying body 100 to provide the clamping force for the carrying device 1. For example, the clamping member 200 is slidably mounted on the carrying body 100. One end of the elastic element acts on the clamping member 200, and the other end acts on the carrying body 100. The elastic element enables the clamping member 200 to be elastically expandable and contractible relative to the carrying body 100.
[0077] Another example, both of the two clamping members 200 elastically expand and contract relative to the carrying body 100 to provide the clamping force for the carrying device 1;
[0078] Another example, the carrying body 100 itself elastically expands and contracts to provide the clamping force for the carrying device 1. For example, the carrying body 100 includes a first body, a second body, and a third elastic element. The second body is slidably mounted on the first body. One end of the third elastic element acts on the first body, and the other end acts on the second body. The third elastic element enables the second body to be elastically expandable and contractible relative to the first body.
[0079] Another example, the first clamping member 200a itself elastically expands and contracts to provide the clamping force for the carrying device 1.
[0080] Another example, one of the clamping members 200 itself elastically expands and contracts to provide the clamping force for the carrying device 1, or both of the two clamping members 200 itself elastically expand and contract to provide the clamping force for the carrying device 1.
[0081] Another example, the carrying device 1 elastically deforms to provide the clamping force for the carrying device 1. For example, the first clamping member 200a elastically deforms. For example, the clamping member 200 elastically deforms. For example, the carrying body 100 elastically deforms.
[0082] Understandably, when the first clamping member 200a is in the second position, the electronic terminal can be smoothly placed on the carrying body 100, which means that during the process of placing the electronic terminal on the carrying body 100 without obstruction, that is, during this process, the electronic terminal can be directly placed on the carrying body 100 without making any adjustments to the carrying device 1 (such as adjusting the first clamping member 200a).
[0083] It should be understood that the first clamping member 200a can be maintained at a certain position of the carrying body 100, which means that the first clamping member 200a maintains a balanced state at this position; when the first clamping member 200a needs to leave a certain position, the user can apply a force to the first clamping member 200a to make the first clamping member 200a disengage from a certain position; when the first clamping member 200a needs to return to a certain position, the user can apply a force to the first clamping member 200a to make the first clamping member 200a return to a certain position.
[0084] In some implementation manners of the embodiments of the present invention, referring to FIG. Figure 3 、 Figure 4 、 Figures 9 - 11 , the carrying body 100 has a first limiting portion 131 corresponding to each first clamping member 200a, and the first clamping member 200a has a second limiting portion 221 adapted to the first limiting portion 131; during the process of the first clamping member 200a moving from the first position to the second position, the second limiting portion 221 cooperates with the first limiting portion 131; the cooperation between the second limiting portion 221 and the first limiting portion 131 enables the first clamping member 200a to be maintained at the second position relative to the carrying body 100, and during the process of the first clamping member 200a moving from the second position to the first position, the second limiting portion 221 disengages from the first limiting portion 131.
[0085] In the above embodiment, through the cooperation between the second limiting portion 221 and the first limiting portion 131, the first clamping member 200a can be maintained at the second position.
[0086] Exemplarily, during the process of the second limiting portion 221 cooperating with / disengaging from the first limiting portion 131, the second limiting portion 221 or the first limiting portion 131 undergoes elastic deformation so that the second limiting portion 221 cooperates with / disengages from the first limiting portion 131.
[0087] Exemplarily, during the process of the second limiting portion 221 cooperating with / disengaging from the first limiting portion 131, the second limiting portion 221 slides relative to the first limiting portion 131 so that the second limiting portion 221 cooperates with / disengages from the first limiting portion 131.
[0088] Exemplarily, the first limiting portion 131 is a groove, and the second limiting portion 221 is a protrusion; alternatively, the first limiting portion 131 is a protrusion, and the second limiting portion 221 is a groove.
[0089] In other examples, both the first limiting portion 131 and the second limiting portion 221 are protrusions. The first limiting portion 131 is in a tight fit with the second limiting portion 221, or the first limiting portion 131 abuts against the second limiting portion 221, so that the first clamping member 200a is held in the second position.
[0090] It should be understood that the number of the first limiting portions 131 is the same as the number of the first clamping members 200a. For example, when there is 1 first clamping member 200a, there is 1 first limiting portion 131; or when there are 2 first clamping members 200a, there are 2 first limiting portions 131.
[0091] It can be understood that there are different ways for the first limiting portion 131 to be disengaged from the second limiting portion 221. For example, the first clamping member 200a moves away from the carrying body 100 so that the first limiting portion 131 first moves away from the second limiting portion 221, and then the first clamping member 200a is rotated so that the first limiting portion 131 is disengaged from the second limiting portion 221. Another example is that the first clamping member 200a is telescopic relative to the carrying body 100. By directly rotating the first clamping member 200a, the first limiting portion 131 and the second limiting portion 221 are disengaged from each other.
[0092] Exemplarily, the carrying body 100 includes a first main body 110. The first limiting portion 131 is fixedly provided on the first main body 110, and the second limiting portion 221 is fixedly provided on the first clamping member 200a. The first clamping member 200a is rotatably mounted on the first main body 110 around a first axis, and the first clamping member 200a is axially fixed relative to the first main body 110. During the process of the first limiting portion 131 being engaged with or disengaged from the second limiting portion 221, the first limiting portion 131 undergoes elastic deformation (alternatively, the second limiting portion 221 undergoes elastic deformation) so that the first limiting portion 131 is engaged with or disengaged from the second limiting portion 221.
[0093] Exemplarily, the carrying body 100 includes a first main body 110. The first limiting portion 131 is fixedly provided on the first main body 110, and the second limiting portion 221 is fixedly provided on the first clamping member 200a. The first clamping member 200a is rotatably mounted on the first main body 110 around a first axis, and the first clamping member 200a is axially elastically telescopic relative to the first main body 110. During the process of the first limiting portion 131 being engaged with or disengaged from the second limiting portion 221, the first clamping member 200a elastically telescopes relative to the first main body 110 so that the first limiting portion 131 is engaged with or disengaged from the second limiting portion 221.
[0094] Exemplarily, the carrying body 100 includes a first main body 110. The first limiting portion 131 is movably disposed on the first main body 110, and the second limiting portion 221 is fixedly disposed on the first clamping member 200a. During the process of the first limiting portion 131 cooperating with or disengaging from the second limiting portion 221, the first limiting portion 131 moves relative to the first main body 110, so that the first limiting portion 131 cooperates with or disengages from the second limiting portion. For example, the first limiting portion 131 is slidably disposed on the first main body 110, or the first limiting portion 131 is rotatably disposed on the first main body 110.
[0095] It can be understood that when the first limiting portion 131 cooperates with the second limiting portion 221, the first clamping member 200a remains in the second position. When the user swings the carrying device 1 or the handling terminal bracket, the first clamping member 200a still remains in the second position. When the user adjusts the first clamping member 200a, when the external force applied to the first clamping member 200a is greater than the holding force for it to remain in the second position, the first limiting portion 131 can be disengaged from the second limiting portion 221.
[0096] In some implementation manners of the embodiments of the present invention, referring to Figure 3 , Figure 4 , Figure 9 , Figure 10 , Figure 11 , the carrying body 100 includes a first main body 110. The carrying body 100 further includes a first sliding member 130 and a first elastic element 140 corresponding to each first clamping member 200a. The first sliding member 130 is slidably mounted on the first main body 110. The first limiting portion 131 is disposed on the corresponding first sliding member 130. One end of the first elastic element 140 acts on the first main body 110, and the other end acts on the first sliding member 130. The first elastic element 140 causes the first sliding member 130 to abut against the first clamping member 200a; when the first clamping member 200a is in the second position relative to the carrying body 100, the first elastic element 140 causes the first limiting portion 131 to cooperate with the second limiting portion 221; during the process of the first limiting portion 131 disengaging from or cooperating with the second limiting portion 221, the first elastic element 140 deforms, and the first sliding member 130 slides relative to the first main body 110 to facilitate the first limiting portion 131 disengaging from or cooperating with the second limiting portion 221.
[0097] In the above embodiments, both ends of the first elastic element 140 act on the first main body 110 and the first sliding member 130 respectively, so that the first limiting portion 131 cooperates with the second limiting portion 221, enabling the first clamping member 200a to be stably held in the second position, so that the electronic terminal can be smoothly placed on the carrying body 100.
[0098] Understandably, the first elastic element 140 enables the first slider 130 to elastically expand and contract relative to the first main body 110, facilitating the detachment of the first limiting portion 131 from the second limiting portion 221 when the user adjusts the first clamping member 200a.
[0099] It should be understood that the number of the first sliders 130 and the first elastic elements 140 is the same as the number of the first clamping members 200a. For example, when the number of the first clamping members 200a is 1, the number of the first sliders 130 and the first elastic elements 140 is 1; for example, when the number of the first clamping members 200a is 2, the number of the first sliders 130 and the first elastic elements 140 is 2.
[0100] Understandably, when the first slider 130 abuts against the first clamping member 200a, the first limiting portion 131 is engaged with the second limiting portion 221 of the first clamping member 200a, or the first limiting portion 131 is located corresponding to other parts of the first clamping member 200a, or the second limiting portion 221 corresponds to other parts of the first slider 130.
[0101] Understandably, during the process of the detachment or engagement of the first limiting portion 131 and the second limiting portion 221, the first slider 130 slides relative to the first clamping member 200a to facilitate the detachment or engagement of the first limiting portion 131 when the user adjusts the first clamping member 200a.
[0102] Exemplarily, the first magnetic attraction member 120 is disposed on the first main body 110.
[0103] Exemplarily, the first elastic element 140 can be a spring, a spring piece, an elastic rope, etc.
[0104] Exemplarily, the first clamping member 200a is rotatably mounted on the first main body 110 so that the first clamping member 200a is rotatably mounted on the carrying body 100.
[0105] Exemplarily, the first clamping member 200a is rotatably mounted on the first slider 130 so that the first clamping member 200a is rotatably mounted on the carrying body 100.
[0106] Exemplarily, the first clamping member 200a is rotatably mounted on the carrying body 100, and the first clamping member 200a is axially fixed relative to the carrying body 100. During the rotation of the first clamping member 200a relative to the carrying body 100, the first limiting portion 131 cooperates or disengages from the second limiting portion 221. And during the disengagement or engagement of the first limiting portion 131 and the second limiting portion 221, the first sliding member 130 slides relative to the rotational connection portion 220 to facilitate the disengagement or engagement of the first limiting portion 131 with the second limiting portion 221. In this implementation manner, the sliding direction of the first sliding member 130 is parallel to the first axis, or the sliding direction of the first sliding member 130 forms an angle with the first axis.
[0107] Exemplarily, during the disengagement or engagement of the first limiting portion 131 and the second limiting portion 221, the rotational connection portion 220 is axially stationary relative to the first main body 110, the first elastic element 140 deforms, and the first sliding member 130 slides relative to the first main body 110 to facilitate the disengagement or engagement of the first limiting portion 131 with the second limiting portion 221.
[0108] Exemplarily, during the disengagement or engagement of the first limiting portion 131 and the second limiting portion 221, the first sliding member 130 is axially stationary relative to the first main body 110, and the rotational connection portion 220 slides relative to the first main body 110 to facilitate the disengagement or engagement of the first limiting portion 131 with the second limiting portion 221.
[0109] Exemplarily, the first clamping member 200a is rotatably mounted on the carrying body 100, and the first clamping member 200a is axially elastically telescopic relative to the carrying body 100. During the rotation of the first clamping member 200a, the first limiting portion 131 cooperates or disengages from the second limiting portion 221. And during the disengagement or engagement of the first limiting portion 131 and the second limiting portion 221, the first clamping member 200a telescopically moves relative to the carrying body 100, and the first sliding member 130 slides relative to the first main body 110 to facilitate the disengagement or engagement of the first limiting portion 131 with the second limiting portion 221. For example, the carrying device 1 further includes a fourth elastic element. The first clamping member 200a is slidably mounted on the carrying body 100, and the fourth elastic element acts on the first clamping member 200a and the carrying body 100 such that the first clamping member 200a is axially elastically telescopic relative to the carrying body 100. In this implementation manner, the sliding direction of the first sliding member 130 is parallel to the sliding direction of the first clamping member 200a, or the sliding direction of the first sliding member 130 forms an angle with the sliding direction of the first clamping member 200a.
[0110] In some implementation manners of the embodiments of the present utility model, with reference to Figure 3 、 Figure 4 、 Figure 9 、 Figure 10 、Figure 11 The first limiting part 131 is the first groove 101, and the second limiting part 221 is the first protrusion 221, or the first limiting part 131 is the first protrusion 221 and the second limiting part 221 is the first groove 101; the first protrusion 221 is clamped in the first groove 101 to realize the cooperation between the first limiting part 131 and the second limiting part 221. The advantage of such a setting is that by setting the first limiting part 131 and the second limiting part 221 in the structural form of the first protrusion 221 and the first groove 101, on the one hand, the first clamping member 200a can quickly find the second position during the adjustment process, and on the other hand, the first protrusion 221 clamped in the first groove 101 enables the first clamping member 200a to stably maintain the second position.
[0111] It can be understood that the first protrusion 221 is adapted to the first groove 101.
[0112] In some implementation manners of the embodiments of the present invention, with reference to Figure 3 、 Figure 4 、 Figure 9 、 Figure 10 、 Figure 11 the first groove 101 is in an open shape. The advantage of such a setting is that when the first clamping member 200a rotates relative to the bearing body 100, it is beneficial for the first protrusion 221 to disengage from the first groove 101, and since the first groove 101 is in an open shape, the first protrusion 221 is not likely to damage the first groove 101 during the process of the cooperation or disengagement between the first limiting part 131 and the second limiting part 221.
[0113] It can be understood that the shape of the first protrusion 221 is adapted to the first groove 101.
[0114] Exemplarily, the first groove 101 extends along a straight line, and the first protrusion 221 extends along a straight line. When the first limiting part 131 and the second limiting part 221 are in cooperation, the extending directions of the first protrusion 221 and the first groove 101 are the same.
[0115] Exemplarily, the first groove 101 extends along a curve, and the first protrusion 221 extends along a curve. When the first limiting part 131 and the second limiting part 221 are in cooperation, the extending trajectories of the first protrusion 221 and the first groove 101 are the same. For example, the extending trajectory of the first groove 101 is in an S shape.
[0116] It can be understood that the meaning of the first groove 101 being in an open shape is that the first groove 101 has a first opening 101a, and the cross-section of the first groove 101 increases from the bottom wall of the first groove 101 to the first opening 101a.
[0117] More preferably, the cross-section of the first groove 101 gradually increases from the bottom wall of the first groove 101 to the first opening 101a. For example, the first groove 101 can be in a semi-circular shape or a V shape.
[0118] In some other examples, from the bottom wall of the first groove 101 to the first opening 101a, the cross-section of the first groove 101 remains unchanged. For example, the first groove 101 is U-shaped.
[0119] In some implementation manners of the embodiments of the present utility model, with reference to Figure 10 , the first groove 101 extends in a direction parallel to the first straight line. The cross-section of the first groove 101 is V-shaped, and the first protrusion 221 is cylindrical. When the first limiting portion 131 cooperates with the second limiting portion 221, the axis of the first protrusion 221 is parallel to the first straight line. On the one hand, the first groove 101 is V-shaped and the first protrusion 221 is cylindrical, so that when the first protrusion 221 disengages from the first groove 101, the first protrusion 221 is not easily damaged to the first groove 101. On the other hand, the diameter dimensional tolerance of the first protrusion 221 does not affect the cooperation between the first protrusion 221 and the first groove 101.
[0120] It can be understood that the cross-section of the first groove 101 is perpendicular to the first straight line.
[0121] In some other examples, the first groove 101 extends in a direction parallel to the first straight line, and the cross-section of the first groove 101 perpendicular to the first straight line is semi-circular, U-shaped, etc.
[0122] In some other examples, the first protrusion 221 is columnar, such as a square column or a polygonal column.
[0123] In some implementation manners of the embodiments of the present utility model, with reference to Figure 3 , Figure 4 , Figure 9 , Figure 10 , Figure 11, the first clamping member 200a is rotatably mounted on the carrier body 100 about the first axis, the first sliding member 130 is slidably mounted on the first main body 110 along a direction parallel to the first axis, and the first sliding member 130 is circumferentially fixed relative to the first main body 110 about the first axis; the first clamping member 200a is slidably mounted on the carrier body 100 along a direction parallel to the first axis, and the first sliding member 130 always abuts against the first clamping member 200a during the sliding of the first clamping member 200a relative to the carrier body 100; the first elastic element 140 acts on the first sliding member 130, the first sliding member 130 abuts against the first clamping member 200a, and the first clamping member 200a is slidably mounted on the carrier body 100 along a direction parallel to the first axis, so that the first clamping member 200a is elastically telescopic relative to the carrier body 100. When the first clamping member 200a expands and contracts relative to the carrier body 100, the clamping width of the clamp 1 can be changed; the first elastic element 140 enables the carrying device 1 to have a clamping force for clamping the electronic terminal; when the first clamping member 200a is in the second position, the first clamping member 200a contracts into the carrier body 100.
[0124] In some implementation manners, the first elastic element 140 enables the first sliding member 130 to abut against the first clamping member 200a; when the carrying device 1 does not clamp the electronic terminal, the first elastic element 140 enables the first sliding member 130 to abut against the first clamping member 200a so that the first clamping member 200a contracts relative to the carrier body 100. When the first clamping member 200a extends relative to the carrier body 100, the first elastic element 140 enables the first sliding member 130 to abut against the first clamping member 200a so that the first clamping member 200a has a clamping force for clamping the electronic terminal; the first elastic element 140 and the first sliding member 130 enable the first clamping member 200a to be elastically telescopic along a direction parallel to the first axis. When the first clamping member 200a expands and contracts relative to the carrier body 100, the clamping width of the clamp 1 can be changed.
[0125] It can be understood that the first elastic element 140 does not directly act on the first clamping member 200a, avoiding the rotation of the first clamping member 200a from affecting the first elastic element 140. For example, the rotation of the first clamping member 200a may cause problems such as unfavorable winding of the first elastic element 140.
[0126] It can be understood that on the one hand, the first elastic element 140 acts on the first sliding member 130 to facilitate the separation or cooperation of the first limiting portion 131 from the second limiting portion 221. On the other hand, the first elastic element 140 acts on the first clamping member 200a through the first sliding member 130, providing a clamping force for the first clamping member 200a to clamp the electronic terminal, making the overall structure of the carrying device 1 compact and occupying a small volume.
[0127] Understandably, the first sliding member 130 is circumferentially fixed relative to the first main body 110 around the first axis, which means that the first sliding member 130 cannot rotate relative to the first main body 110 around the first axis. The advantage of this setting is that when the first limiting portion 131 is disengaged from the second limiting portion 221, the first sliding member 130 does not rotate relative to the first main body 110 around the first axis, so that the first limiting portion 131 and the second limiting portion 221 cannot be disengaged.
[0128] Understandably, the sliding direction of the first sliding member 130 and the sliding direction of the first clamping member 200a are both parallel to the first axis, which facilitates the first limiting portion 131 to always abut against the first clamping member 200a during the sliding process of the first clamping member 200a relative to the carrier body 100.
[0129] Understandably, the first clamping member 200a can rotate around the first axis and can also elastically expand and contract along the first axis, making the structure of the fixture 1 very compact.
[0130] Understandably, during the sliding process of the first clamping member 200a relative to the carrier body 100, the first limiting portion 131 always abuts against the first clamping member 200a, so that during the expansion and contraction process of the first clamping member 200a relative to the carrier body 100, the first clamping member 200a can always receive the elastic force from the first elastic element 140, so that the carrying device 1 can clamp electronic terminals with different widths.
[0131] Understandably, the first elastic element 140 provides the clamping force for the two clamping members 200 to clamp the electronic terminal.
[0132] Exemplarily, the first sliding member 130 is slidably mounted in the first sliding groove 103 of the first main body 110. The cross-section of the first sliding member 130 is adapted to the cross-section of the first sliding groove 103, and the cross-section of the first sliding member 130 is non-circular, so that the first sliding member 130 is circumferentially fixed relative to the first sliding groove 103 around the first axis. For example, the cross-section of the first sliding member 130 is semi-circular, elliptical, polygonal, racetrack-shaped, etc. The circumferential fixation of the first sliding member 130 relative to the first sliding groove 103 makes the sliding of the first sliding member 130 relative to the first sliding groove 103 smoother on the one hand, and on the other hand, makes the rotation of the first clamping member 200a relative to the first sliding member 130 smoother.
[0133] Understandably, the first clamping member 200a is elastically expandable and contractible relative to the carrier body 100. On the one hand, it is convenient for the carrying device 1 to adjust the first clamping member 200a during the process of clamping the electronic terminal so that the electronic terminal can be clamped by the two clamping members 200. On the other hand, it is convenient to adjust the clamping width of the carrying device 1 to clamp electronic terminals with different widths.
[0134] Understandably, when the first clamping member 200a is in the second position, the carrying device 1 does not clamp the electronic terminal, and the first clamping member 200a contracts onto the carrying body 100 under the action of the first elastic element 140.
[0135] In some other implementation manners, the sliding direction of the first sliding member 130 is not parallel to the first axis. The carrying device 1 includes a fourth elastic element, and the fourth elastic element acts on the first clamping member 200a and the carrying body 100, and the fourth elastic element enables the first clamping member 200a to be elastically telescopic relative to the carrying body 100.
[0136] Exemplarily, the first limiting portion 131 is a first protrusion 221, and the first limiting portion 131 of the first sliding member 130 always abuts against the first clamping member 200a during the process of the first clamping member 200a sliding relative to the carrying body 100.
[0137] Exemplarily, the second limiting portion 221 is a first protrusion 221, and the first sliding member 130 always abuts against the second limiting portion 221 during the process of the first clamping member 200a sliding relative to the carrying body 100.
[0138] Exemplarily, the first clamping member 200a is directly rotatably mounted about the first axis on the first main body 110, and the first clamping member 200a can be rotatably mounted about the first axis on the carrying body 100.
[0139] Exemplarily, the first clamping member 200a is directly slidably mounted along a direction parallel to the first axis on the first main body 110, and the first clamping member 200a can be slidably mounted along a direction parallel to the first axis on the carrying body 100.
[0140] In some other implementation manners, the first clamping member 200a is axially fixed relative to the carrying body 100.
[0141] In some implementation manners of the embodiment of the present utility model, with reference to Figure 3 、 Figure 4 、 Figure 9 、 Figure 10 、 Figure 11, the first clamping member 200a is rotatably mounted on the first sliding member 130 about the first axis so that the first clamping member 200a is rotatably mounted on the carrying body 100 about the first axis. During the process that the first limiting portion 131 disengages from or mates with the second limiting portion 221, the first sliding member 130 slides relative to the first clamping member 200a along the direction parallel to the first axis; during the telescoping process of the first clamping member 200a and the carrying body 100, the first sliding member 130 always follows the first clamping member 200a so that the first clamping member 200a slides relative to the carrying body 100 along the direction parallel to the first axis. During the process that the first clamping member 200a slides relative to the carrying body 100 along the direction parallel to the first axis, the first sliding member 130 always abuts against the first clamping member 200a so that the first clamping member 200a does not disengage from the first sliding member 130.
[0142] Understandably, the first sliding member 130 not only enables the first clamping member 200a to rotate relative to the carrying body 100 about the first axis, but also enables the first clamping member 200a to slide relative to the carrying body 100 along the direction of the first axis, making the carrying device 1 compact in structure.
[0143] Understandably, the first clamping member 200a rotates relative to the first sliding member 130 about the first axis. Since the first sliding member 130 is circumferentially fixed relative to the carrying body 100 about the first axis, the first clamping member 200a can be rotatably mounted on the carrying body 100 about the first axis.
[0144] Exemplarily, the first clamping member 200a is sleeved on the first sliding member 130, or the first sliding member 130 is sleeved on the first clamping member 200a.
[0145] Understandably, during the process that the first clamping member 200a slides relative to the carrying body 100 along the direction parallel to the first axis, the first clamping member 200a does not disengage from the first sliding member 130, so that the first clamping member 200a always slides relative to the carrying body 100 along the direction parallel to the first axis.
[0146] In other examples, the first clamping member 200a is directly rotatably mounted on the first main body 110 about the first axis, and the first clamping member 200a is directly slidably mounted on the first main body 110 along the direction parallel to the first axis, so that the first clamping member 200a slides relative to the carrying body 100 along the direction parallel to the first axis.
[0147] Understandably, during the process that the first limiting portion 131 disengages from or mates with the second limiting portion 221, the first sliding member 130 slides relative to the first clamping member 200a, facilitating the disengagement or mating of the first limiting portion 131 and the second limiting portion 221 when the user adjusts the first clamping member 200a.
[0148] Understandably, the first clamping member 200a is rotatably mounted on the first sliding member 130 about a first axis, and the first sliding member 130 can slide relative to the first sliding member 130 in a direction parallel to the first axis. In one implementation, the first clamping member 200a and the first sliding member 130 can be connected by a cylindrical pair. For example, the first clamping member 200a is sleeved on the first sliding member 130, or the first sliding member 130 is sleeved on the first clamping member 200a.
[0149] Exemplarily, the second limiting portion 221 is a first protrusion 221. When the first clamping member 200a extends relative to the carrying body 100, the first protrusion 221 abuts against the first sliding member 130, and the first protrusion 221 drives the first sliding member 130 to slide. When the first clamping member 200a contracts relative to the carrying body 100, the first elastic element 140 pushes the first sliding member 130 to slide, and the first sliding member 130 abuts against the first protrusion 221.
[0150] Exemplarily, the second limiting portion 221 is a first groove 101, and the second limiting portion 221 is a first protrusion 221, wherein the first groove 101 is provided on the first protruding portion, and the first protruding portion protrudes from the first clamping member 200a. When the first clamping member 200a extends relative to the carrying body 100, the first protruding portion abuts against the first sliding member 130, and the first protruding portion drives the first sliding member 130 to slide. When the first clamping member 200a contracts relative to the carrying body 100, the first elastic element 140 pushes the first sliding member 130 to slide, and the first sliding member 130 abuts against the first protruding portion.
[0151] In some implementations of the embodiments of the present invention, referring to Figure 3 、 Figure 4 、 Figure 9 、 Figure 10 、 Figure 11 , the first clamping member 200a includes a first clamping portion 210 and a rotating connection portion 220. The first clamping portion 210 is used for clamping an electronic terminal. The first clamping portion 210 is mounted on the rotating connection portion 220. The first sliding member 130 is provided with a first connection hole 102. The rotating connection portion 220 is sleeved on the first connection hole 102, and the rotating connection portion 220 rotates relative to the first connection hole 102 about the first axis so that the first clamping member 200a is rotatably connected to the carrying body 100 about the first axis; during the process that the first limiting portion 131 disengages from or cooperates with the second limiting portion 221, the first connection hole 102 slides relative to the rotating connection portion 220 in a direction parallel to the first axis. During the process that the first clamping member 200a slides relative to the carrying body 100 in a direction parallel to the first axis, the first sliding member 130 always follows the rotating connection portion 220.
[0152] Understandably, the rotating connection part 220 is rotatably mounted on the first sliding part 130 around the first axis, so that the first clamping part 200a is rotatably mounted on the carrying body 100 around the first axis.
[0153] Understandably, the rotating connection part 220 slides relative to the carrying body 100 in a direction parallel to the first axis, so that the first clamping part 200a slides relative to the carrying body 100 in a direction parallel to the first axis.
[0154] Understandably, the rotating connection part 220 is rotatably connected to the first connection hole 102 of the first sliding part 130 around the first axis. The first connection hole 102 slides relative to the rotating connection part 220 in the direction of the first axis. The cooperation mode between the rotating connection part 220 and the first connection hole 102 is a cylindrical pair. The first connection hole 102 is a cylindrical hole, and the part of the rotating connection part 220 cooperating with the first connection hole 102 is a cylinder.
[0155] Understandably, the structures of the rotating connection part 220 and the first sliding part 130 can not only realize the telescoping of the first clamping part 200a relative to the carrying body 100, but also realize the rotation of the first clamping part 200a relative to the carrying body 100, and can also keep the first clamping part 200a in the second position, so that the structure of the carrying device 1 is compact.
[0156] Exemplarily, the first clamping part 210 is in the shape of a sheet, a strip, etc.
[0157] Exemplarily, the first clamping part 210 is provided with an anti-slip soft pad.
[0158] Exemplarily, the second limiting part 221 and the first clamping part 210 are respectively located at both ends of the rotating connection part 220.
[0159] Exemplarily, the first clamping part 210 is fixedly mounted on the rotating connection part 220. For example, the rotating connection part 220 is threadedly connected to the first clamping part 210.
[0160] In some other implementation manners, the rotating connection part 220 has a first sliding hole, and the first sliding part 130 has a first guide rod. The first guide rod is slidably mounted in the first sliding hole in a direction parallel to the first axis, and the first guide rod is rotatably mounted in the first sliding hole around the first axis, so as to realize the rotatable mounting of the rotating connection part 220 on the first sliding part 130, and the first sliding part 130 is slidable relative to the first guide rod.
[0161] In some implementation manners of the embodiments of the present utility model, referring to Figure 3 、 Figure 4 、 Figure 9 、 Figure 10 、 Figure 11, the first limiting portion 131 is the first groove 101, the second limiting portion 221 is the first protrusion 221, and the first protrusion 221 is clamped in the first groove 101 to realize the cooperation between the first limiting portion 131 and the second limiting portion 221. The first protrusion 221 protrudes from the rotating connection portion 220. When the first clamping member 200a extends relative to the carrying body 100, the first protrusion 221 pushes the first sliding member 130 to make the first sliding member 130 slide relative to the first main body 110. When the first clamping member 200a contracts relative to the carrying body 100, the first elastic element 140 pushes the first sliding member 130 to make the first sliding member 130 slide relative to the first main body 110.
[0162] It can be understood that the first protrusion 221 and the first elastic element 140 enable the first sliding member 130 to always follow the rotating connection portion 220 during the telescopic process of the first clamping member 200a relative to the carrying body 100, and the first sliding member 130 never disengages from the rotating connection portion 220, so that the first sliding member 130 can realize the sliding connection between the rotating connection portion 220 and the carrying body 100.
[0163] It can be understood that the first protrusion 221 can not only limit the first clamping member 200a, but also cooperate with the first elastic element 140 and the first sliding member 130 to realize the elastic telescopic movement of the first clamping member 200a relative to the carrying body 100, making the structure of the fixture 1 more compact.
[0164] It can be understood that rotating the first clamping member 200a can make the first protrusion 221 cooperate with or disengage from the first groove 101. When the first clamping member 200a rotates to the second position relative to the carrying body 100, the first clamping portion 210 overlaps the carrying body 100, and the first protrusion 221 cooperates with the first groove 101 to keep the first clamping member 200a in the second position relative to the carrying body 100. The first sliding member 130 is circumferentially fixed relative to the first main body 110 around the first axis. During the process of the first protrusion 221 cooperating with or disengaging from the first groove 101, the first sliding member 130 slides relative to the rotating connection portion 220.
[0165] In some implementation manners of the embodiment of the present invention, referring to Figure 3 , Figure 4 , Figure 9 , the first elastic element 140 is the first spring 140, and the first spring 140 surrounds the rotating connection portion 220. The first spring 140 is spiral. The first main body 110 is provided with a first sliding groove 103 corresponding to each first clamping member 200a. The first sliding member 130 is slidably installed in the first sliding groove 103, and the first spring 140 is accommodated in the first sliding groove 103.
[0166] Understandably, the first spring 140 surrounds the rotational connection portion 220 and the first spring 140 is received within the first sliding groove 103, such that the structure of the carrying device 1 is compact and occupies a small volume.
[0167] Understandably, the rotational connection portion 220 is at least partially located within the first sliding groove 103.
[0168] Exemplarily, the first spring 140 may be a cylindrical helical spring, and the first spring 140 may be a conical helical spring.
[0169] It should be understood that the number of the first sliding grooves 103 is the same as the number of the first clamping members 200a.
[0170] In some other implementation manners, the first spring 140 is not received within the first sliding groove 103.
[0171] In some other implementation manners, the first sliding member 130 has a second sliding hole, and the first main body 110 has a second guide rod. The second guide rod is slidably mounted along the direction of the first axis within the second guide rod, so as to implement the sliding mounting of the first sliding member 130 on the first main body 110.
[0172] Exemplarily, the first spring 140 may be a tension spring. The first sliding member 130 is located between the first spring 140 and the first clamping portion 210. When the first clamping member 200a extends relative to the carrying body 100, the clamping width of the carrying device 1 increases and the first spring 140 is stretched.
[0173] Exemplarily, the first spring 140 may be a compression spring. The first spring 140 is located between the first clamping portion 210 and the first sliding member 130. When the first clamping member 200a extends relative to the carrying body 100, the clamping width of the carrying device 1 increases and the first spring 140 is compressed.
[0174] Understandably, the first spring 140 provides the clamping force for the carrying device 1 to clamp the electronic terminal. The first spring 140 provides all of the clamping force for the carrying device 1, or the first spring 140 provides a part of the clamping force for the carrying device 1.
[0175] Exemplarily, the first spring 140 is a cylindrical helical spring. The width of the first sliding groove 103 is adapted to the first spring 140, and the first spring 140 is coaxial with the first axis.
[0176] Exemplarily, the width of the first sliding groove 103 is greater than the outer diameter of the first spring 140.
[0177] In other implementation manners, the first elastic element 140 is an elastic sheet, an elastic cord, etc.
[0178] In some implementation manners of the embodiment of the present utility model, with reference to Figure 7, the first main body 110 is provided with second connection holes 104 corresponding to each first clamping member 200a. The second connection holes 104 are coaxial with the first connection holes 102. The rotating connection portion 220 is slidable relative to the second connection holes 104 along a direction parallel to the first axis, and the rotating connection portion 220 is rotatable relative to the second connection holes 104 about the first axis.
[0179] Understandably, the rotating connection portion 220 is rotatably mounted in both the first connection hole 102 and the second connection hole 104, making the rotation of the rotating connection portion 220 relative to the carrier body 100 smoother.
[0180] Understandably, the rotating connection portion 220 is slidably mounted in both the first connection hole 102 and the second connection hole 104, making the sliding of the rotating connection portion 220 relative to the carrier body 100 smoother.
[0181] It should be understood that the number of the second connection holes 104 is the same as the number of the first clamping members 200a.
[0182] In some implementation manners of the embodiment of the present utility model, referring to Figure 3 , Figure 4 , Figure 7 , the first main body 110 has first wall bodies 111 corresponding to each first clamping member 200a. The first wall bodies 111 are spaced apart from the first sliding members 130. The first elastic elements 140 are located between the first wall bodies 111 and the first sliding members 130. One end of each first elastic element 140 acts on the corresponding first wall body 111, and the other end acts on the corresponding first sliding member 130. The second connection holes 104 are provided in the first wall bodies 111.
[0183] Understandably, the first wall bodies 111 are spaced apart from the first sliding members 130, so that there is a gap between the first connection holes 102 and the second connection holes 104, further making the rotation or sliding of the rotating connection portion 220 relative to the carrier body 100 smoother.
[0184] Understandably, the first elastic elements 140 are located between the first wall bodies 111 and the first sliding members 130, making the structure of the carrying device 1 more compact and occupying a small volume.
[0185] It should be understood that the number of the first wall bodies 111 is the same as the number of the first clamping members 200a.
[0186] In some implementation manners of the embodiment of the present utility model, referring to Figure 3 , Figure 4 , Figure 7, the first elastic element 140 is the first spring 140. The first spring 140 is helical and wraps around the rotational connection portion 220. The first main body 110 is provided with first sliding grooves 103 corresponding to each first clamping member 200a. The first sliding member 130 is slidably installed in the first sliding grooves 103, and the first spring 140 is received in the first sliding grooves 103. The first spring 140 is a compression spring. When the first clamping member 200a extends relative to the carrier body 100, the first sliding member 130 approaches the first wall body 111.
[0187] Understandably, the first wall body 111 and the first sliding member 130 are spaced apart. On the one hand, it is convenient to install the first elastic element 140, and on the other hand, it allows the first sliding member 130 to have a moving space to slide towards the first wall body 111.
[0188] Understandably, the first spring 140 is set as a compression spring. The compression spring has a more compact structure than a tension spring of the same length, making the structure of the loading device 1 more compact.
[0189] Exemplarily, the first wall body 111 is located on the outer shell of the first main body 110.
[0190] Understandably, when the first clamping member 200a extends relative to the carrier body 100, the clamping width of the fixture 1 increases.
[0191] In other implementation manners, the first spring 140 can be a tension spring. The first sliding member 130 is located between the first spring 140 and the first clamping portion 210. When the first clamping member 200a extends relative to the carrier body 100, the first sliding member 130 moves away from the first wall body 111, and the first wall body 111 can be located on the inner wall of the first main body 110.
[0192] In some implementation manners of the embodiment of the present utility model, referring to Figure 3 , Figure 4 , Figure 7 , the first sliding member 130 is provided with a first connection hole 102. The first main body 110 has a first wall body 111 corresponding to each first limiting portion 131. The first arm body is provided with a second connection hole 104. The first connection hole 102 and the second connection hole 104 are coaxial. The first wall body 111 and the first sliding member 130 are spaced apart. The first clamping member 200a is rotatably installed in the first connection hole 102 around the first axis. During the process of the first limiting portion 131 disengaging from or mating with the second limiting portion 221, the first connection hole 102 can slide relative to the first clamping member 200a in a direction parallel to the first axis. The first clamping member 200a is rotatably installed in the second connection hole 104 around the first axis, and the first clamping member 200a can slide relative to the second connection hole 104 in a direction parallel to the first axis.
[0193] Understandably, the first clamping member 200a is rotatably mounted in both the first connection hole 102 and the second connection hole 104, making the rotation of the first clamping member 200a relative to the carrier body 100 smoother.
[0194] Understandably, the first clamping member 200a is slidably mounted in both the first connection hole 102 and the second connection hole 104, making the sliding of the first clamping member 200a relative to the carrier body 100 smoother.
[0195] In some other implementation manners, the first clamping member 200a can be rotatably mounted about the first axis on the carrier body 100 and slidably mounted about the first axis on the carrier body 100 only by cooperating with the second connection hole 104.
[0196] In some implementation manners of the embodiments of the present utility model, referring to Figure 9 、 Figure 10 、 Figure 11 , the carrier body 100 has a third limiting portion 132 corresponding to each first clamping member 200a, and the second limiting portion 221 is adapted to the third limiting portion 132; the first clamping member 200a is rotatably mounted about the first axis on the carrier body 100, the first clamping member 200a elastically expands and contracts relative to the carrier body 100 in a direction parallel to the first axis, and the elastic expansion and contraction of the first clamping member 200a relative to the carrier body 100 can change the clamping width of the fixture 1; the first clamping member 200a can rotate from the second position to the first clamping position relative to the carrier body 100, the first clamping member 200a can extend from the first clamping position to the first position, when the first clamping member 200a is in the first clamping position relative to the carrier body 100, the first clamping member 200a contracts into the carrier body 100; during the process of the first clamping member 200a rotating from the second position to the first clamping position, the second limiting portion 221 cooperates with the third limiting portion 132, and the cooperation between the second limiting portion 221 and the third limiting portion 132 enables the first clamping member 200a to be maintained in the first clamping position relative to the carrier body 100; during the process of the first clamping member 200a rotating from the first clamping position to the second position, the third limiting portion 132 is disengaged from the cooperation with the second limiting portion 221.
[0197] Understandably, the cooperation between the third limiting portion 132 and the second limiting portion 221 can keep the first clamping member 200a at the first position to be clamped, avoiding the shaking of the first clamping member 200a at the first position to be clamped and preventing the first clamping member 200a from returning from the first position to be clamped to the second position. When it is necessary for the first clamping member 200a to clamp the electronic terminal, it is convenient to adjust the first clamping member 200a from the first position to be clamped to the first position. For example, when the first clamping member 200a is held at the first position to be clamped, the electronic terminal can be used to push the first clamping member 200a to move it to the first position.
[0198] Understandably, the cooperation between the third limiting portion 132 and the second limiting portion 221 can keep the first clamping member 200a at the first position to be clamped, facilitating the user to adjust the first clamping member 200a from the first position to be clamped to the first position.
[0199] Understandably, when the first clamping member 200a is at the first position to be clamped, the first clamping member 200a protrudes relative to the supporting surface 109.
[0200] Exemplarily, during the process of the second limiting portion 221 cooperating with / disengaging from the third limiting portion 132, the second limiting portion 221 or the third limiting portion 132 undergoes elastic deformation so that the second limiting portion 221 cooperates with / disengages from the third limiting portion 132.
[0201] Exemplarily, during the process of the second limiting portion 221 cooperating with / disengaging from the third limiting portion 132, the second limiting portion 221 slides relative to the third limiting portion 132 so that the second limiting portion 221 cooperates with / disengages from the third limiting portion 132.
[0202] Exemplarily, the third limiting portion 132 is a protrusion and the second limiting portion 221 is a groove, or the third limiting portion 132 is a groove and the second limiting portion 221 is a protrusion.
[0203] Exemplarily, the first position to be clamped can refer to one or more position points, or can refer to a position range.
[0204] In other examples, both the third limiting portion 132 and the second limiting portion 221 are protrusions, and the second limiting portion 221 and the third limiting portion 132 are in a tight fit, or the second limiting portion 221 abuts against the third limiting portion 132 so that the first clamping member 200a is held at the first position to be clamped.
[0205] It should be understood that the number of the third limiting portions 132 is the same as the number of the first clamping members 200a.
[0206] In some implementation manners of the embodiments of the present invention, referring to Figure 3 、 Figure 4 、Figure 9 , Figure 10 , Figure 11 , the carrier body 100 includes a first main body 110. The carrier body 100 further includes a first sliding member 130 and a first elastic element 140 corresponding to each first clamping member 200a. The first sliding member 130 is slidably mounted on the first main body 110. A first limiting portion 131 is provided on the first sliding member 130. A third limiting portion 132 is provided on the first sliding member 130. One end of the first elastic element 140 acts on the first main body 110, and the other end acts on the first sliding member 130. The first elastic element 140 causes the first sliding member 130 to abut against the first clamping member 200a. When the first clamping member 200a is in the second position relative to the carrier body 100, the first elastic element 140 causes the first limiting portion 131 to cooperate with the second limiting portion 221. When the first clamping member 200a is in the first clamping position to be clamped relative to the carrier body 100, the first elastic element 140 causes the third limiting portion 132 to cooperate with the second limiting portion 221. During the process of the first limiting portion 131 disengaging from or cooperating with the second limiting portion 221, the first sliding member 130 slides relative to the first clamping member 200a to facilitate the first limiting portion 131 disengaging from or cooperating with the second limiting portion 221. During the process of the third limiting portion 132 disengaging from or cooperating with the second limiting portion 221, the first sliding member 130 slides relative to the first clamping member 200a to facilitate the third limiting portion 132 disengaging from or cooperating with the second limiting portion 221.
[0207] It can be understood that when the first sliding member 130 abuts against the first clamping member 200a, the first limiting portion 131 cooperates with the second limiting portion 221, or the second limiting portion 221 cooperates with the third limiting portion 132, or the second limiting portion 221 corresponds to other parts of the first sliding member 130.
[0208] Exemplarily, during the process of the first limiting portion 131 disengaging from or cooperating with the second limiting portion 221, the rotation connection portion 220 is axially stationary relative to the first main body 110, the first elastic element 140 deforms, and the first sliding member 130 slides relative to the first main body 110 to facilitate the first limiting portion 131 disengaging from or cooperating with the second limiting portion 221.
[0209] Exemplarily, during the process of the first limiting portion 131 disengaging from or cooperating with the second limiting portion 221, the first sliding member 130 is axially stationary relative to the first main body 110, and the rotation connection portion 220 slides relative to the first main body 110 to facilitate the first limiting portion 131 disengaging from or cooperating with the second limiting portion 221.
[0210] Exemplarily, during the process of the third limiting portion 132 disengaging from or mating with the second limiting portion 221, the rotational connection portion 220 is axially stationary relative to the first main body 110, the first elastic element 140 deforms, and the first sliding member 130 slides relative to the first main body 110 to facilitate the third limiting portion 132 disengaging from or mating with the second limiting portion 221.
[0211] Exemplarily, during the process of the third limiting portion 132 disengaging from or mating with the second limiting portion 221, the first sliding member 130 is axially stationary relative to the first main body 110, and the rotational connection portion 220 slides relative to the first main body 110 to facilitate the third limiting portion 132 disengaging from or mating with the second limiting portion 221.
[0212] In some implementation manners of the embodiments of the present utility model, with reference to Figure 3 、 Figure 4 、 Figure 9 、 Figure 10 、 Figure 11 the first limiting portion 131 is the first groove 101, the third limiting portion 132 is the second groove 105, and the second limiting portion 221 is the first protrusion 221; the first protrusion 221 is clamped in the first groove 101 to realize the cooperation between the second limiting portion 221 and the first limiting portion 131, and the first protrusion 221 is clamped in the second groove 105 to realize the cooperation between the second limiting portion 221 and the third limiting portion 132.
[0213] It can be understood that the first limiting portion 131 is the first groove 101, the third limiting portion 132 is the second groove 105, and the second limiting portion 221 is the first protrusion 221, so that the first clamping member 200a can quickly find the second position, the first position to be clamped during rotation.
[0214] It can be understood that the first protrusion 221 is adapted to the first groove 101, and the first protrusion 221 is adapted to the second groove 105.
[0215] It can be understood that the first protrusion 221 is clamped in the first groove 101, which can enable the first clamping member 200a to stably maintain at the second position.
[0216] It can be understood that the first protrusion 221 is clamped in the second groove 105, which can enable the first clamping member 200a to stably maintain at the first position to be clamped.
[0217] Exemplarily, the first clamping member 200a can be rotated from the second position to the first clamping position to be clamped relative to the carrying body 100. The first clamping member 200a can be extended from the first clamping position to be clamped to the first position. When the first clamping member 200a is in the first clamping position to be clamped relative to the carrying body 100, the first clamping member 200a contracts into the carrying body 100. When the first clamping member 200a is in the first position relative to the carrying body 100, the first clamping member 200a clamps the electronic terminal. During the process of the first clamping member 200a rotating from the second position to the first clamping position to be clamped, the first protrusion 221 cooperates with the second groove 105. The cooperation between the first protrusion 221 and the second groove 105 enables the first clamping member 200a to be held in the first clamping position to be clamped relative to the carrying body 100. During the process of the first clamping member 200a rotating from the first clamping position to be clamped to the second position, the first protrusion 221 is disengaged from the second groove 105. The first groove 101 is open, the second groove 105 is open, and the first groove 101 intersects with the second groove 105.
[0218] In other implementation manners, the first limiting portion 131 is a protrusion, the third limiting portion 132 is a protrusion, and the second limiting portion 221 is a groove.
[0219] In some implementation manners of the embodiments of the present invention, referring to Figure 9 、 Figure 10 、 Figure 11 , the first groove 101 is open, the second groove 105 is open; the first groove 101 extends along a direction parallel to the first straight line, the cross-section of the first groove 101 is V-shaped, the first protrusion 221 is cylindrical, and when the first limiting portion 131 cooperates with the second limiting portion 221, the extending direction of the first protrusion 221 is parallel to the first straight line; the second groove 105 extends along a direction parallel to the second straight line, the first groove 101 intersects with the second groove 105, the cross-section of the second groove 105 is V-shaped, and when the second limiting portion 221 cooperates with the third limiting portion 132, the extending direction of the first protrusion 221 is parallel to the second straight line.
[0220] It can be understood that setting the first groove 101 and the second groove 105 to be open is beneficial for the first protrusion 221 to disengage from the first groove 101 or the second groove 105 on the one hand. On the other hand, during the rotation of the first clamping member 200a relative to the carrying body 100, the first protrusion 221 is not likely to damage the first groove 101, and the first protrusion 221 is not likely to damage the second groove 105.
[0221] It can be understood that the meaning of the first groove 101 being open is that the first groove 101 has a first opening 101a, and the cross-section of the first groove 101 increases from the bottom wall of the first groove 101 to the first opening 101a.
[0222] Understandably, the second groove 105 being open means that the second groove 105 has a second opening, and the cross-section of the second groove 105 increases from the bottom wall of the second groove 105 to the second opening.
[0223] Understandably, the cross-section of the first groove 101 is perpendicular to the first straight line, and the cross-section of the second groove 105 is perpendicular to the second straight line.
[0224] Understandably, both the first groove 101 and the second groove 105 are V-shaped, the first protrusion 221 is cylindrical, and the diameter dimensional tolerance of the first protrusion 221 does not affect the fit between the first protrusion 221 and the first groove 101.
[0225] Exemplarily, the first groove 101 intersects with the second groove 105.
[0226] Exemplarily, the second straight line and the second straight line have a first included angle, and the first included angle can be 90°, 75°, 60°, 45°, etc.
[0227] In other examples, the first groove 101, the second groove 105, and the first protrusion 221 all extend along the same curve. For example, the extension trajectories of the first groove 101, the second groove 105, and the first protrusion 221 are all S-shaped.
[0228] Exemplarily, the cross-section of the first groove 101 gradually increases from the bottom wall of the first groove 101 to the first opening 101a, the cross-section of the second groove 105 gradually increases from the bottom wall of the second groove 105 to the second opening, the first groove 101 is semi-circular, the second groove 105 is semi-circular, or the first groove 101 is V-shaped and the second groove 105 is V-shaped.
[0229] In other examples, the cross-section of the first groove 101 remains unchanged from the bottom wall of the first groove 101 to the first opening 101a, the cross-section of the second groove 105 remains unchanged from the bottom wall of the second groove 105 to the second opening, the first groove 101 is U-shaped, and the second groove 105 is U-shaped.
[0230] In other examples, the first groove 101 intersects with the second groove 105.
[0231] In other examples, the first protrusion is columnar, such as a square column or a polygonal column.
[0232] In some other implementation manners, both the first limiting portion 131 and the third limiting portion 132 are protrusions, and the second limiting portion 221 is a groove that is adapted to them.
[0233] In some implementation manners of the embodiments of the present utility model, refer to Figure 9 、 Figure 10 、 Figure 11When the first clamping member 200a slides from the first position to be clamped to the first position, the second limiting portion 221 and the third limiting portion 132 always cooperate. The advantage of this setting is that when the user adjusts the first clamping member 200a from the first position to be clamped to the first position, the first clamping member 200a is not prone to shaking relative to the bearing body 100.
[0234] In some implementation manners of the embodiments of the present invention, referring to Figure 7 , Figure 8 , Figure 16 etc., the bearing body 100 has a first positioning portion 161 corresponding to each first clamping member 200a, and the first clamping member 200a has a second positioning portion 211 adapted to the first positioning portion 161. During the process of the first clamping member 200a moving from the first position to the second position, the second positioning portion 211 cooperates with the first positioning portion 161. The cooperation between the first positioning portion 161 and the second positioning portion 211 enables the first clamping member 200a to be maintained at the second position relative to the bearing body 100; during the process of the first clamping member 200a moving from the second position to the first position, the second positioning portion 211 is disengaged from the first positioning portion 161.
[0235] It can be understood that the cooperation between the first positioning portion 161 and the second positioning portion 211 enables the first clamping member 200a to be stably maintained at the second position.
[0236] Exemplarily, during the cooperation or disengagement process of the first positioning portion 161 and the second positioning portion 211, the first clamping member is axially stationary relative to the first body, and the first positioning portion 161 or the second positioning portion 211 undergoes elastic deformation so that the first positioning portion 161 and the second positioning portion 211 cooperate or disengage.
[0237] Exemplarily, during the cooperation or disengagement process of the first positioning portion 161 and the second positioning portion 211, the first clamping member axially elastically expands and contracts relative to the first body so that the first positioning portion 161 and the second positioning portion 211 cooperate or disengage.
[0238] It should be understood that the number of the first positioning portions 161 is the same as the number of the first clamping members 200a.
[0239] In some implementation manners of the embodiments of the present invention, referring to Figure 7 , Figure 8 , Figure 16 etc., the first positioning portion 161 is a second protrusion 161, the second positioning portion 211 is a third groove 202, or the first positioning portion 161 is a third groove 202, and the second positioning portion 211 is a second protrusion 161; the second protrusion 161 is clamped in the third groove 202 to realize the cooperation between the second positioning portion 211 and the first positioning portion 161.
[0240] Understandably, the second protrusion 161 being held in the third groove 202 can enable the first clamping member 200a to be held in the second position more stably.
[0241] In other examples, both the first positioning portion 161 and the second positioning portion 211 are protrusions, the first positioning portion 161 abuts against the second positioning portion 211, or the first positioning portion 161 and the second positioning portion 211 are in a tight fit.
[0242] In some implementation manners of the embodiment of the present utility model, referring to Figure 7 、 Figure 8 、 Figure 16 etc., the first clamping member 200a is rotatably mounted on the carrier body 100 around the first axis, the first clamping member 200a elastically expands and contracts relative to the carrier body 100 along a direction parallel to the first axis, the elastic expansion and contraction of the first clamping member 200a relative to the carrier body 100 can change the clamping width of the fixture 1, when the first clamping member 200a is in the second position relative to the carrier body 100, the first clamping member 200a contracts into the carrier body 100; the number of the second protrusions 161 is 2, the two second protrusions 161 are respectively located on opposite sides of the first axis, the number of the third grooves 202 is 2, the two third grooves 202 are respectively located on opposite sides of the first axis; the second protrusion 161 has two first side walls 161a, and the distance between the two first side walls 161a narrows from the bottom end to the top end of the second protrusion 161, and during the process of the first clamping member 200a rotating relative to the carrier body 100 into or out of the second position, the first clamping member 200a slides over the first side walls 161a.
[0243] Understandably, the first clamping member 200a can elastically expand and contract relative to the carrier body 100. During the process of the user rotating the first clamping member 200a, the second protrusion 161 is convenient for cooperating with the third groove 202, or the second protrusion 161 is convenient for disengaging from the third groove 202. During the process of the second protrusion 161 cooperating with or disengaging from the third groove 202, the first clamping member 200a elastically expands and contracts relative to the carrier body 100.
[0244] Understandably, the distance between the two first side walls 161a narrows from the bottom end to the top end of the second protrusion 161, which is convenient for the second protrusion 161 to cooperate with the third groove 202 or disengage from the third groove 202 during the process of the user rotating the first clamping member 200a.
[0245] Understandably, setting the number of the second protrusions 161 and the second grooves 105 to 2 enables the first clamping member 200a to be held in the second position more stably.
[0246] Understandably, during the process in which the first clamping member 200a rotates away from the second position relative to the carrying body 100, the inner side wall of the third groove 202 slides past the first side wall 161a.
[0247] Understandably, during the process in which the first clamping member 200a rotates into the second position relative to the carrying body 100, the outer wall of the first clamping member 200a slides past the first side wall 161a.
[0248] In some implementation manners of the embodiment of the present utility model, with reference to Figure 7 , Figure 8 , Figure 16 etc., the first clamping member 200a has a third positioning portion 212, and the third positioning portion 212 is adapted to the first positioning portion 161; the first clamping member 200a is rotatably mounted on the carrying body 100 around a first axis, the first clamping member 200a elastically expands and contracts relative to the carrying body 100 along a direction parallel to the first axis, the elastic expansion and contraction of the first clamping member 200a relative to the carrying body 100 can change the clamping width of the clamp 1, when the first clamping member 200a is in the second position relative to the carrying body 100, the first clamping member 200a contracts into the carrying body 100; the first clamping member 200a can rotate from the second position to a first clamping position to be clamped relative to the carrying body 100, and the first clamping member 200a can extend from the first clamping position to be clamped to the first position; during the process in which the first clamping member 200a rotates from the second position to the first clamping position to be clamped, the first positioning portion 161 cooperates with the third positioning portion 212, and the cooperation between the first positioning portion 161 and the third positioning portion 212 enables the first clamping member 200a to be held in the first clamping position to be clamped relative to the carrying body 100; during the process in which the first clamping member 200a rotates from the first clamping position to be clamped to the second position, the first positioning portion 161 is disengaged from the third positioning portion 212.
[0249] Understandably, the first clamping member 200a being held in the first clamping position to be clamped avoids the shaking of the first clamping member 200a in the first clamping position to be clamped and avoids the first clamping member 200a returning from the first clamping position to be clamped to the second position. When it is necessary for the first clamping member 200a to clamp an electronic terminal, it is convenient to adjust the first clamping member 200a from the first clamping position to be clamped to the first position. For example, when the first clamping member 200a is held in the first clamping position to be clamped, the electronic terminal can be used to push the first clamping member 200a and move it to the first position.
[0250] Exemplarily, the first positioning portion 161 is a protrusion, and the third positioning portion 212 is a groove, or the first positioning portion 161 is a groove, and the third positioning portion 212 is a protrusion.
[0251] In other examples, the first positioning portion 161 and the third positioning portion 212 are both protrusions. The first positioning portion 161 abuts against the third positioning portion 212, or the first positioning portion 161 and the third positioning portion 212 are in a tight fit, so that the first clamping member 200a is held at the first position to be clamped.
[0252] In some implementation manners of the embodiments of the present invention, referring to Figure 7 , Figure 8 , Figure 16 etc., the first positioning portion 161 is the second protrusion 161, the second positioning portion 211 is the third groove 202, and the third positioning portion 212 is the fourth groove 203; the second protrusion 161 is clamped in the third groove 202 to realize the cooperation between the first positioning portion 161 and the second positioning portion 211; the third protrusion is clamped in the fourth groove 203 to realize the cooperation between the first positioning portion 161 and the third positioning portion 212; the numbers of the second protrusion 161, the third groove 202, and the fourth groove 203 are 2 respectively. The two second protrusions 161 are respectively located on the opposite sides of the first axis, the two third grooves 202 are respectively located on the opposite sides of the first axis, and the two fourth grooves 203 are respectively located on the opposite sides of the first axis; the second protrusion 161 has two first side walls 161a, and the distance between the two first side walls 161a narrows from the bottom end to the top end of the second protrusion 161. During the process that the first clamping member 200a rotates relative to the carrying body 100 and enters or leaves the second position, the first clamping member 200a slides over the first side wall 161a. During the process that the first clamping member 200a rotates relative to the carrying body 100 and enters or leaves the first position to be clamped, the first clamping member 200a slides over the first side wall 161a.
[0253] It can be understood that the first clamping member 200a is elastically telescopic relative to the carrying body 100. When the user rotates the first clamping member 200a, the second protrusion 161 is convenient for cooperating with or disengaging from the third groove 202, and the second protrusion 161 is convenient for cooperating with or disengaging from the fourth groove 203. During the process of the cooperation or disengagement between the second protrusion 161 and the third groove 202, the first clamping member 200a elastically telescopes relative to the carrying body 100. During the process of the cooperation or disengagement between the second protrusion 161 and the third groove 202, the first clamping member 200a elastically telescopes relative to the carrying body 100.
[0254] It can be understood that the distance between the two first side walls 161a narrows from the bottom end to the top end of the second protrusion 161, which is convenient for the second protrusion 161 to cooperate with or disengage from the third groove 202 and the second protrusion 161 to cooperate with or disengage from the fourth groove 203 when the user rotates the first clamping member 200a.
[0255] Understandably, the number of the second protrusions 161, the second grooves 105, and the third grooves 202 are all set to be two, so that the first clamping member 200a can be more stably held at the second position, and so that the first clamping member 200a can be more stably held at the first position to be clamped.
[0256] Understandably, during the process that the first clamping member 200a rotates away from the second position relative to the carrying body 100, the inner side wall of the third groove 202 slides over the first side wall 161a.
[0257] Understandably, during the process that the first clamping member 200a rotates into the second position relative to the carrying body 100, the outer wall of the first clamping member 200a slides over the first side wall 161a.
[0258] Understandably, during the process that the first clamping member 200a rotates away from the first position to be clamped relative to the carrying body 100, the inner side wall of the fourth groove 203 slides over the first side wall 161a.
[0259] Understandably, during the process that the first clamping member 200a rotates into the first position to be clamped relative to the carrying body 100, the outer wall of the first clamping member 200a slides over the first side wall 161a.
[0260] In other implementation manners, the first positioning portion 161 is a groove, and the second positioning portion 211 and the third positioning portion 212 are protrusions.
[0261] In some implementation manners of the embodiment of the present utility model, referring to Figure 1 , when the first clamping member 200a is at the second position relative to the carrying body 100 and the magnetic member 120 magnetically attracts the electronic terminal, the first clamping member 200a and the carrying body 100 are located on the same side of the electronic terminal.
[0262] Understandably, the first clamping member 200a and the carrying body 100 are located on the same side of the electronic terminal, so that the electronic terminal can be placed on the carrying body 100 without obstruction.
[0263] Exemplarily, when the first clamping member 200a is at the second position relative to the carrying body 100 and the magnetic member 120 magnetically attracts the electronic terminal, the first clamping member 200a and the carrying body 100 are located on the back side of the electronic terminal.
[0264] Exemplarily, when the first clamping member 200a is at the second position relative to the carrying body 100 and the magnetic member 120 magnetically attracts the electronic terminal, the first clamping member 200a and the carrying body 100 are located on the front side of the electronic terminal.
[0265] In some implementation manners of the embodiment of the present utility model, Figure 1 , Figure 7 ,Figure 8 and so on. The first clamping member 200a includes a first clamping portion 210 which is used for clamping an electronic terminal. The first clamping portion 210 has a first abutting wall 201. When the first clamping portion 210 clamps the electronic terminal, the first abutting wall 201 abuts against the electronic terminal. When the first clamping member 200a is at the second position of the carrying body 100, the first abutting wall 201 of the first clamping portion 210 is close to or attached to the carrying body 100.
[0266] When the first clamping member 200a clamps the electronic terminal, the first clamping portion 210 protrudes relative to the supporting surface 109 of the carrying body 100. When the first abutting wall 201 is close to or attached to the carrying body 100, it makes the carrying device 1 easy to store, and also makes the terminal bracket including the carrying device 1 easy to store.
[0267] It should be understood that the first abutting wall 201 abuts against the electronic terminal, and can also make the first clamping member 200 stay at the first position.
[0268] Exemplarily, when the first abutting wall 201 is close to the carrying body 100, there is a gap between the first abutting wall 201 and the carrying body 100.
[0269] Exemplarily, when the first abutting wall 201 is attached to the carrying body 100, the first abutting wall 201 is completely attached to the carrying body 100, or the first abutting wall 201 is partially attached to the carrying body 100.
[0270] Exemplarily, the carrying body 100 has a first outer peripheral wall 107 corresponding to the first clamping member 200a. When the first clamping portion 210 is at the second position relative to the carrying body 100, the first clamping portion 210 overlaps the first outer peripheral wall 107, and the first abutting wall 201 is attached to or close to the first outer peripheral wall 107.
[0271] In some implementation manners of the embodiments of the present invention, referring to Figure 1 、 Figure 7 、 Figure 8 and so on. The carrying body 100 has a first outer peripheral wall 107 corresponding to each first clamping member 200a. The carrying body 100 has a first outer peripheral space 108 adjacent to the first outer peripheral wall 107. The first clamping member 200a includes a rotation connection portion 220 and a first clamping portion 210. The rotation connection portion 220 is rotatably installed on the carrying body 100, and the first clamping portion 210 is rotatably installed on the carrying body 100. The first clamping portion 210 is used for clamping an electronic terminal. When the first clamping member 200a is at the second position of the carrying body 100, the first clamping portion 210 is located in the first outer peripheral space 108 of the carrying body 100.
[0272] It should be understood that the first clamping portion 210 is located within the first outer peripheral space 108 of the carrying body 100, such that the first clamping portion 210 does not obstruct the placement of the electronic terminal on the carrying body 100.
[0273] It should be understood that the number of the first outer peripheral walls 107 is the same as the number of the first clamping members 200a.
[0274] Exemplarily, the rotational connection portion 220 may be the rotational connection portion 220.
[0275] Exemplarily, the rotational connection portion 220 has one or two rotational degrees of freedom with respect to the carrying body 100.
[0276] Exemplarily, the first clamping member 200a is rotationally connected to the first outer peripheral wall 107.
[0277] Exemplarily, the second connection hole 104 communicates with the first outer peripheral space 108.
[0278] In some implementation manners of the embodiment of the present utility model, referring to Figure 1 、 Figure 7 、 Figure 8 etc., when the first clamping member 200a is in the second position of the carrying body 100, the first clamping portion 210 overlaps the first outer peripheral wall 107, the first clamping portion 210 has a first abutting wall 201, the first abutting wall 201 abuts against the electronic terminal when the first clamping portion 210 clamps the electronic terminal, and when the first clamping member 200a is in the second position of the carrying body 100, the first abutting wall 201 is close to or attached to the first outer peripheral wall 107 of the carrying body 100.
[0279] It can be understood that the first abutting wall 201 is close to or attached to the first outer peripheral wall 107. When the first clamping member 200a is in the second position, the structure of the carrying device 1 is more compact, occupies a small volume, and is convenient for the use or storage of the carrying device 1.
[0280] In some implementation manners of the embodiment of the present utility model, referring to Figure 1 、 Figure 7 、 Figure 8 、 Figure 15 etc., the rotational connection portion 220 is the rotational connection portion 220, the rotational connection portion 220 is rotatably mounted on the carrying body 100 around the first axis, the first outer peripheral wall 107 includes a first sub-wall 107a and a second sub-wall 107b, the first sub-wall 107a and the second sub-wall 107b are respectively located on opposite sides of the first axis; when the first clamping member 200a is in the second position of the carrying body 100, the first abutting wall 201 is close to or attached to the first sub-wall 107a of the carrying body 100, or the first abutting wall 201 is close to or attached to the second sub-wall 107b of the carrying body 100.
[0281] Understandably, the arrangement of the first sub-wall 107a and the second sub-wall 107b provides two options for the first clamping member 200a to return to the second position, further facilitating the use of the carrying device 1.
[0282] Exemplarily, the first abutting wall 201 is a flat surface, and both the first sub-wall 107a and the second sub-wall 107b are flat surfaces.
[0283] Exemplarily, the first abutting wall 201 is a curved surface, and both the first sub-wall 107a and the second sub-wall 107b are curved surfaces. For example, the first abutting wall 201 is an arc surface, and both the first sub-wall 107a and the second sub-wall 107b are arc surfaces.
[0284] In some implementation manners of the embodiments of the present utility model, referring to Figure 1 , Figure 7 , Figure 8 , Figure 16 etc., the rotational connection portion 220 is the rotational connection portion 220. The rotational connection portion 220 is rotatably mounted on the carrying body 100 around the first axis. The rotational connection portion 220 is telescopic relative to the carrying body 100 along a direction parallel to the first axis. The first abutting wall 201 is adapted to the first outer peripheral wall 107. When the first clamping member 200a is in the second position of the carrying body 100, the first abutting wall 201 is attached to the first outer peripheral wall 107.
[0285] The advantage of such an arrangement is that when the first abutting wall 201 is not rotationally symmetric about the first axis, the first clamping member 200a can be telescopic along the direction of the first axis, facilitating the attachment of the first abutting wall 201 to the first outer peripheral wall 107.
[0286] Exemplarily, the first abutting wall 201 and the first outer peripheral wall 107 are flat surfaces. The first axis is not perpendicular to the first abutting wall 201, and the first axis is not perpendicular to the first outer peripheral wall 107. During the process of the first clamping member 200a rotating to the first position, the first clamping member 200a is telescopic relative to the carrying body 100.
[0287] Exemplarily, the first abutting wall 201 is a cylindrical surface that is not rotationally symmetric about the first axis, and the first outer peripheral wall 107 is a cylindrical surface that is not rotationally symmetric about the first axis. During the process of the first clamping member 200a rotating to the first position, the first clamping member 200a is telescopic relative to the carrying body 100.
[0288] In other examples, the first abutting wall 201 is rotationally symmetric about the first axis, and the first outer peripheral wall 107 is rotationally symmetric about the first axis. In this way, when the first clamping member 200a rotates to the second position, the first abutting wall 201 can better adhere to the first outer peripheral wall 107. For example, the first abutting wall 201 is a spherical surface that is rotationally symmetric about the first axis, and the first outer peripheral wall 107 is a spherical surface that is rotationally symmetric about the first axis. The advantage of such a setting is that it is convenient for the first clamping member 200a to rotate to the second position.
[0289] In some implementation manners of the embodiments of the present invention, both of the two clamping members 200 are the first clamping members 200a. A first plane is perpendicular to the clamping directions of the two clamping members 200, and the first plane is located between the two clamping members 200. When the first clamping member 200a is in the first position of the carrier body 100, the bottom end of the first abutting wall 201 is close to the carrier body 100, and the top end of the first abutting wall 201 is far from the carrier body 100. From the bottom end to the top end of the first abutting wall 201, the first abutting wall 201 gradually approaches the first plane.
[0290] The advantage of such a setting is that when the two first clamping members 200a clamp the electronic terminal, the electronic terminal is not easily separated from the first clamping members 200a, and the electronic terminal has a tendency to approach the carrier body 100.
[0291] For example, the first abutting wall 201 is a plane that is inclined with respect to the supporting surface 109.
[0292] For example, the first abutting wall 201 is a partial cylindrical surface.
[0293] In some implementation manners of the embodiments of the present invention, both of the two clamping members 200 are the first clamping members 200a.
[0294] It can be understood that both of the two clamping members 200 are the first clamping members 200a. When the two first clamping members 200a are both in the second position relative to the carrier body 100, the electronic terminal can be placed on the carrier body 100 more smoothly. And it is convenient to adjust the orientation of the electronic terminal, for example, to make the electronic terminal in the landscape state, the diagonal state, or the portrait state.
[0295] For example, the first axes of the two first clamping members 200a are coaxial.
[0296] For example, the first axes of the two first clamping members 200a are parallel.
[0297] Specifically, the first magnetic member 120 has an annular structure. For example, the first magnetic member 120 is circular, or the first magnetic member 120 includes a plurality of magnetic pole sub-members, and the plurality of magnetic sub-members are evenly distributed in a ring. The advantage of this setting is that the first magnetic member 120 can better adsorb the electronic terminal at different radial directions.
[0298] Specifically, the first magnetic member 120 is an annular structure near the outer periphery of the bearing body 100.
[0299] In some other implementation manners, the bearing body 100 is provided with a receiving groove. When the first clamping member 200a is in the second position relative to the bearing body 100, the first clamping portion 210 of the first clamping member 200a is received in the receiving groove.
[0300] It should be understood that in the embodiments of the present invention, when describing the positional relationship or connection relationship between various components such as the first limiting portion 131, the second limiting portion 221, the first sliding member 130, the first elastic element 140, the first sliding groove 103, the first connection hole 102, the second connection hole 104, the first wall body 111, the third limiting portion 132, the first positioning portion 161, the second positioning portion 211, and the third positioning portion 212, each component should be a component corresponding to the same first clamping member 200a.
[0301] Specifically, the first main body 110 of the embodiment of the present invention includes a first housing 150, a second housing 160, and a magnetic member 120. The second housing 160 is installed on the first housing 150. Specifically, the first housing 150 is detachably installed on the second housing 160. The first main body 150 has a first accommodation space 1010 for accommodating the magnetic member 120. The first accommodation space 1010 is provided in the first housing or the second housing 160, or the first accommodation space is located between the first housing and the second housing.
[0302] Specifically, the supporting surface 109 is located on the first housing 150, and the first positioning portion 161 is provided on the second housing 160.
[0303] Specifically, the first sliding groove 103 includes a first sub-sliding groove 103a and a second sub-sliding groove 103b. The first sub-sliding groove 103a is provided on the first housing 150, and the second sub-sliding groove 103b is provided on the second housing 160. The first sub-sliding groove 103a and the second sub-sliding groove 103b together enclose to form the first sliding groove 103. The advantage of this setting is to facilitate the manufacture of the first main body 110.
[0304] Specifically, the first housing 150 is snap-fitted to the second housing 160. The first housing 150 is provided with a plurality of first snap-fitting portions 151, a plurality of second snap-fitting portions 152, and a plurality of third snap-fitting portions 153 from inside to outside. The second housing 160 is provided with a plurality of fourth snap-fitting portions 163, a plurality of fifth snap-fitting portions 164, and a plurality of sixth snap-fitting portions 165 from inside to outside. The plurality of fourth snap-fitting portions 163 respectively correspond to the plurality of first snap-fitting portions 151, the plurality of fifth snap-fitting portions 164 respectively correspond to the plurality of second snap-fitting portions 152, and the plurality of sixth snap-fitting portions 165 respectively correspond to the plurality of third snap-fitting portions 153. The advantage of the above arrangement is that the first housing 150 can be stably mounted on the second housing 160.
[0305] More specifically, the first main body 110 is in a disc shape. Along its thickness direction, the first main body 110 has a second axis, and the first main body 110 is rotationally symmetric about the second axis. The plurality of first snap-fitting portions 151 are rotationally symmetric about the second axis, the plurality of second snap-fitting portions 152 are rotationally symmetric about the second axis, the plurality of third snap-fitting portions 153 are rotationally symmetric about the second axis, the plurality of fourth snap-fitting portions 163 are rotationally symmetric about the second axis, the plurality of fifth snap-fitting portions 164 are rotationally symmetric about the second axis, and the plurality of sixth snap-fitting portions 165 are rotationally symmetric about the second axis.
[0306] More specifically, the number of the first clamping members 200a is two. When the two first clamping members 200a clamp the electronic terminal, the two first clamping members 200a are centrosymmetric about the second axis.
[0307] In some implementation manners, the magnetic member 120 has an annular structure. The advantage of such an arrangement is that when adjusting the radial direction of the electronic terminal, the electronic terminal can still be well adsorbed, and the radial direction of the electronic terminal can be a landscape orientation, a portrait orientation, an oblique orientation, etc.
[0308] Specifically, the second connection hole 104 includes a first connection sub-slot 104a and a second connection sub-slot 104b. The first connection sub-slot 104a is provided on the first housing 150, and the second connection sub-slot 104b is provided on the second housing 160. The first connection sub-slot 104a and the second connection sub-slot 104b jointly enclose to form the second connection hole 104. The advantage of such an arrangement is that it is convenient for the manufacturing and installation of the fixture.
[0309] Specifically, the first wall body 111 includes a first sub-wall body 111a and a second sub-wall body 111b. The first sub-wall body 111a and the second sub-wall body 111b are respectively located on the first housing 150 and the second housing 160. The first connection sub-slot 104a is provided on the first sub-wall body 111a, and the second connection sub-slot 104b is provided on the second sub-wall body 111b.
[0310] Refer to Figure 18, the present utility model also provides a terminal bracket, which includes a support device 2 and a bearing device 1, and the bearing device 1 is installed on the support device 2.
[0311] Exemplarily, the support device 2 can be a plate-type support device 2. For example, the support device 2 includes a support rod 21 and a support plate. The support rod 21 is installed on the support plate, and the support plate can be placed on the ground, a tabletop, etc. The support rod 21 can be a telescopic rod or a fixed-length rod, etc., and the bearing device 1 is installed on the support rod 21.
[0312] Exemplarily, the support device 2 can be a multi-foot support device 2. For example, the support device 2 includes a support rod 21 and a plurality of support feet 22. The support rod 21 is installed on the plurality of support feet 22. The plurality of support feet are at least 3. The support feet 22 can be placed on the ground, a tabletop, etc. The support rod 21 can be a telescopic rod or a fixed-length rod, etc., and the bearing device 1 is installed on the support rod 21.
[0313] Exemplarily, the support device 2 can be a suction cup type support device 2. For example, the support device 2 includes a support rod 21 and a suction cup. The suction cup can be adsorbed on a support surface, and the bearing device 1 is installed on the support rod 21.
[0314] Exemplarily, the support device 2 can be a clamping type support device 2.
[0315] Referring to Figures 1 - 17 , the embodiment of the present utility model also provides a connection structure. The connection structure is applied to a fixture 1. The fixture 1 is used to clamp an electronic terminal. The fixture 1 includes a bearing body 100 and two clamping members 200. The two clamping members 200 are installed on the bearing body 100. The two clamping members 200 cooperate to clamp the electronic terminal. At least one of the two clamping members 200 is a first clamping member 200a; the connection structure includes the bearing body 100 and a first clamping member 200a. The first clamping member 200a is rotatably connected to the bearing body 100. Rotating the first clamping member 200a can make the first clamping member 200a located at different positions of the bearing body 100.
[0316] It can be understood that this connection structure is applied to the fixture 1. When the fixture 1 needs to be stored, the first clamping member 200a can be rotated so that the first clamping member 200a is located at different positions of the bearing body 100, so as to facilitate the storage of the fixture 1 or the terminal bracket. For example, rotating the first clamping member 200a makes the first clamping member 200a be stored in a storage space in a suitable posture.
[0317] It can be understood that in the embodiment of the present utility model, the bearing device 1 can be the fixture 1.
[0318] Exemplarily, the first clamping member 200a can rotate a full circle around the bearing body 100.
[0319] Referring to Figures 1 - 17, an embodiment of the present utility model also provides a fixture 1, which includes a bearing body 100 and two clamping members 200. The two clamping members 200 are installed on the bearing body 100, and the two clamping members 200 cooperate to clamp an electronic terminal. The two clamping members 200 are both the first clamping members 200a. The first clamping member 200a is rotatably connected to the bearing body 100. Rotating the first clamping member 200a can make the first clamping member 200a located at different positions on the bearing body 100. Each first clamping member 200a and the bearing body 100 form a connection structure.
[0320] It can be understood that when the fixture 1 needs to be stored, the two first clamping members 200a can be rotated so that the first clamping members 200a are located at different positions on the bearing body 100, facilitating the storage of the fixture 1 or the terminal bracket. For example, rotating the first clamping member 200a enables the first clamping member 200a to be stored in a storage space in a suitable posture.
[0321] Refer to Figures 1 - 17 , an embodiment of the present utility model provides a fixture 1 for clamping an electronic terminal, characterized in that the fixture 1 includes a bearing body 100 and two clamping members 200; the two clamping members 200 are installed on the bearing body 100, and the two clamping members 200 cooperate to clamp an electronic terminal; at least one of the two clamping members 200 is a first clamping member 200a. Each first clamping member 200a is rotatably connected to the bearing body 100. The first clamping portion 210 includes a rotating connection portion 220 and a first clamping portion 210. The rotating connection portion 220 is rotatably installed on the bearing body 100, and the first clamping portion 210 is installed on the rotating connection portion 220. Rotating the first clamping member 200a can make the first clamping portion 210 overlap the bearing body 100.
[0322] It can be understood that when the fixture 1 needs to be stored, the first clamping member 200a can be rotated so that the first clamping member 200a overlaps the bearing body 100, thereby reducing the occupied volume of the fixture 1 and facilitating the storage of the fixture 1 or the terminal bracket.
[0323] In some implementation manners of the examples of the present utility model, the fixture 1 is not provided with a magnetic member 120.
[0324] The above is only used to illustrate the technical solutions of the present utility model and not to limit them. Other modifications or equivalent replacements made by those of ordinary skill in the art to the technical solutions of the present utility model shall be covered within the scope of the claims of the present utility model as long as they do not depart from the spirit and scope of the technical solutions of the present utility model.
Claims
1. A terminal bracket for supporting an electronic terminal, characterized in that: The terminal bracket includes a supporting device and a clamp, the clamp is used to clamp the electronic terminal, the clamp is installed on the supporting device, and the clamp includes a bearing body and two clamping parts; The two clamping members are mounted on the carrying body, and the two clamping members cooperate to clamp the electronic terminal; At least one of the two clamping members is a first clamping member, each of the first clamping members is rotatably connected to the bearing body, the first clamping member comprises a rotatable connection portion and a first clamping portion, the rotatable connection portion is rotatably mounted on the bearing body so that the first clamping member is rotatably mounted on the bearing body, the first clamping portion is mounted on the rotatable connection portion, and the first clamping member can be rotated so that the first clamping portion overlaps the bearing body; The first clamping member is rotatably mounted on the bearing body around a first axis. The first clamping member can elastically expand and contract relative to the bearing body in a direction parallel to the first axis. The expansion and contraction of the first clamping member relative to the bearing body can change the clamping width of the clamp.
2. The terminal bracket according to claim 1, characterized in that: The carrying body has a first outer peripheral wall corresponding to each of the first clamping members, and the first clamping portion can be overlapped on the first outer peripheral wall.
3. The terminal bracket according to claim 1, characterized in that: The first clamping member has a first abutting wall, and the first abutting wall abuts against the electronic terminal when the first clamping portion clamps the electronic terminal. When the first clamping portion is overlapped on the carrying body, the first abutting wall is attached to or close to the carrying body.
4. The terminal bracket according to claim 3, characterized in that: The carrier body has a first peripheral wall corresponding to each of the first clamping members, and the first clamping portion can be overlapped on the first peripheral wall; when the first clamping portion is overlapped on the carrier body, the first abutting wall is attached to or close to the first peripheral wall.
5. The terminal bracket according to claim 4, characterized in that: The rotating connection portion is rotatably mounted on the bearing body around the first axis. The first peripheral wall includes a first sub-wall and a second sub-wall, wherein the first sub-wall and the second sub-wall are respectively located on two opposite sides of the first axis; When the first clamping portion is overlapped on the supporting body, the first abutting wall is close to or attached to the first sub-wall of the supporting body, or the first abutting wall is close to or attached to the second sub-wall of the supporting body.
6. The terminal bracket according to claim 4, characterized in that: The rotating connection part is rotatably mounted on the bearing body around the first axis, and the rotating connection part can be extended and retracted relative to the bearing body in a direction parallel to the first axis. The first abutting wall is matched with the first outer peripheral wall, and when the first clamp is in the second position of the carrying body, the first abutting wall is attached to the first outer peripheral wall.
7. The terminal bracket according to claim 4, characterized in that: The two clamping members are both the first clamping members, and have a first plane perpendicular to the clamping direction of the two clamping members, and the first plane is located between the two clamping members. When the two first clamping members clamp the electronic terminal, the bottom end of the first abutting wall is close to the carrier body, and the top end of the first abutting wall is away from the carrier body. From the bottom end to the top end of the first abutting wall, the first abutting wall gradually approaches the first plane.
8. The terminal bracket according to claim 5, characterized in that: The first abutting wall is not rotationally symmetrical about the first axis. During the process of rotating the first clamping member so that the first clamping portion overlaps the supporting body, the first clamping member expands and contracts relative to the supporting body. The first abutting wall is a cylindrical surface that is not rotationally symmetrical about the first axis, and the first outer peripheral wall is a cylindrical surface that is not rotationally symmetrical about the first axis.
9. The terminal bracket according to claim 1, characterized in that: The bearing body comprises a first main body, and the bearing body further comprises a first sliding member and a first elastic element corresponding to the first clamping member, the first sliding member is slidably mounted on the first main body in a direction parallel to the first axis, one end of the first elastic element acts on the first main body, and the other end acts on the first sliding member, and the first elastic element causes the first sliding member to abut against the first clamping member; When the clamp does not clamp the electronic terminal, the first elastic element causes the first sliding member to abut against the first clamping member so that the first clamping member is retracted relative to the carrier body; when the first clamping member is extended relative to the carrier body, the first elastic element causes the first sliding member to abut against the first clamping member so that the first clamping member has a clamping force to clamp the electronic terminal; The first elastic element and the first sliding member enable the first clamping member to elastically expand and contract in a direction parallel to the first axis, and the expansion and contraction of the first clamping member relative to the carrying body can change the clamping width of the clamp; The first clamping member is rotatably mounted on the first sliding member around the first axis so that the first clamping member is rotatably mounted on the carrying body around the first axis, and the first sliding member always follows the first clamping member during the extension and retraction process of the first clamping member and the carrying body so that the first clamping member slides relative to the carrying body along a direction parallel to the first axis; The first clamping portion is used to clamp the electronic terminal; The first sliding member defines a first connection hole, the rotation connection portion is sleeved in the first connection hole, and the rotation connection portion rotates relative to the first connection hole around the first axis so that the first clamping member is rotationally connected relative to the bearing body around the first axis; During the process of the first clamping member sliding relative to the carrying body in a direction parallel to the first axis, the first sliding member always follows the rotating connection portion, and the rotating connection portion is protruding with a first protrusion. During the process of the first clamping member extending relative to the carrying body, the first protrusion pushes the first sliding member to make the first sliding member slide relative to the first body. During the process of the first clamping member contracting relative to the carrying body, the first elastic element pushes the first sliding member to make the first sliding member slide relative to the first body.
10. The terminal bracket according to claim 9, characterized in that: The first sliding member is provided with a first groove, the first groove is adapted to the first protrusion, and the first protrusion and the first groove can be in a matching state or a disengaged state by rotating the first clamping member. When the first clamping member rotates to a second position relative to the carrying body, the first clamping portion overlaps the carrying body, and the first protrusion and the first groove are in a matching state to keep the first clamping member at the second position relative to the carrying body; The first slide is circumferentially fixed relative to the first body about the first axis; In the process that the first protrusion and the first groove enter the engaged state from the disengaged state or enter the disengaged state from the engaged state, the first sliding member slides relative to the rotating connection portion; The first sliding member is provided with a second groove, the second groove is adapted to the first protrusion, the first clamping member can be rotated from the second position to a first to-be-clamped position relative to the carrying body, the first clamping member can be extended from the first to-be-clamped position to the first position, the first clamping member is in the state of the first to-be-clamped position relative to the carrying body, the first clamping member is retracted to the carrying body, and the first clamping member clamps the electronic terminal when the first clamping member is in the state of the first to-be-clamped position relative to the carrying body; During the process of the first clamping member rotating from the second position to the first to-be-clamped position, the first protrusion and the second groove enter a mating state from a disengaged state, and the first protrusion and the second groove are in the mating state so that the first clamping member can be maintained at the first to-be-clamped position relative to the carrying body; During the process of the first clamping member rotating from the first to-be-clamped position to the second position, the first protrusion and the second groove change from a mating state to a disengaged state; The first groove is open, the second groove is open, and the first groove intersects with the second groove.
11. A terminal bracket according to claim 1, characterized in that: The supporting device comprises a supporting rod and a plurality of supporting legs, the supporting rod is mounted on the plurality of supporting legs, the clamp is mounted on the supporting rod, and the number of the supporting legs is at least 3.