Positioning base station

The design of the detachable bracket body and mounting components solves the problem of repeated disassembly and assembly of RTK base stations damaging the mounting surface, thus simplifying the installation process, improving stability, and adapting to various installation environments.

CN223816129UActive Publication Date: 2026-01-20SHENZHEN MAMMOTION INNOVATION CO LTD
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Patent Information

Application Number
CN202520175403.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2026-01-20
Estimated Expiration
2035-01-24

AI Technical Summary

Technical Problem

Repeated installation and removal of existing RTK base stations can damage the mounting surface, leading to inconvenience in installation and structural stability issues.

Method used

The design features a detachable bracket body and mounting components, employing threaded connections and a sliding locking structure to simplify the installation process and improve connection strength and flexibility.

Benefits of technology

It reduces maintenance time and costs, improves installation flexibility and stability, avoids damage to the mounting surface, and adapts to different environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of positioning equipment, aims to solve the problem that a mounting surface is damaged due to repeated assembly and disassembly of a positioning base station, and provides a positioning base station. The positioning base station comprises a support body, a receiver and an installation part. The receiver is arranged on the support body. The receiver is used for receiving signals. And the mounting piece is detachably connected with the bracket main body. And one side of the mounting piece is configured to be fixedly connected with the mounting surface. The positioning base station has the beneficial effects that when the positioning base station needs to be removed, the bracket main body is directly separated from the mounting piece; and when a user needs to reinstall subsequently, the bracket main body and the installation piece are installed and fixed. Therefore, due to the detachable connection design of the mounting part and the bracket main body, the mounting process is simplified, and the maintenance time and cost are reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of positioning equipment, in particular to a positioning base station. BACKGROUND

[0002] RTK (Real-Time Kinematic, carrier phase difference technology) is a measurement and positioning method that can obtain centimeter-level positioning accuracy in the field in real time. An RTK fixed base station can implement carrier phase difference technology, thereby providing high-precision real-time positioning services.

[0003] In some existing RTK base stations, a screw or other fastener is used to install the RTK base station on a wall or grass. When a user needs to remove the RTK base station, the fastener needs to be removed from the wall or grass, and when the user wants to deploy and install the RTK base station again, the fastener needs to be screwed into the wall or grass. After such repeated execution for several times, the wall or grass is damaged, which not only affects the structural stability of the wall or grass, but also requires the user to avoid the damaged area and find a new installation point, thereby bringing inconvenience to subsequent installation work. CONTENT OF THE UTILITY MODEL

[0004] Therefore, the present application provides a positioning base station to solve the problem that repeated installation and removal of the positioning base station can damage the installation surface.

[0005] An embodiment of the present application provides a positioning base station, which comprises a support body, a receiver and a mounting piece. The receiver is arranged on the support body. The receiver is configured to receive signals. The mounting piece is detachably connected to the support body. One side of the mounting piece is configured to be fixedly connected to an installation surface.

[0006] When the positioning base station is installed, the mounting piece is first fixedly connected to the installation surface, and then the support body is connected to the mounting piece. When the positioning base station needs to be removed, the support body and the mounting piece are directly separated. When the user needs to reinstall the positioning base station, the support body and the mounting piece are fixedly connected again. In this way, the detachable connection between the mounting piece and the support body simplifies the installation process and reduces the maintenance time and cost. Meanwhile, the support body and the mounting piece can be designed according to different installation environments, and different installation modes can be customized, so that the support body and the mounting piece can be applied to different installation environments. Furthermore, the support body and the mounting piece can be designed as standard pieces that are convenient to replace and maintain. The support body can be installed with different receivers, and the mounting piece can be applied to most installation environments. Even the support body can be designed as a structure that can be detachably connected to different mounting pieces, thereby further improving the installation flexibility of the positioning base station.

[0007] In some embodiments of the present application, the support body comprises a first matching part. The first matching part is located at the bottom of the support body. The mounting member comprises a bottom mounting seat. The bottom mounting seat comprises a first mounting part. The first mounting part and the first matching part are detachably connected.

[0008] When the mounting surface is the ground, the first matching part at the bottom of the support body and the first mounting part of the bottom mounting seat are detachably connected. When the user needs to remove the positioning base station, such as when the positioning base station needs to be cleaned or repaired, the support body and the bottom mounting seat can be separated, and the ground will not be damaged due to the installation and removal of the positioning base station. It is also convenient for the user to install the positioning base station multiple times without the need to reposition and find a suitable installation position due to the original mounting surface.

[0009] In some embodiments of the present application, the first matching part and the first mounting part are connected through a threaded structure.

[0010] The detachable connection between the first matching part and the first mounting part is a threaded connection. In this way, the support body and the bottom mounting seat can be installed or separated by rotating, making the installation and removal process simple and fast. Moreover, threaded processing is easy to standardize production, which is conducive to reducing manufacturing costs. In implementation, in order to further reduce the difficulty of installation and removal, the axial direction of the thread can be set to be the same as the vertical direction, and the height direction of the entire support body can also be the same as the vertical direction.

[0011] In some embodiments of the present application, the first matching part is provided with a connecting stud. The first mounting part is provided with a threaded seat. The threaded seat is provided with an internal thread hole. The connecting stud and the internal thread hole are threadedly connected.

[0012] During installation, the connecting stud and the internal thread hole on the threaded seat are threadedly connected. The connecting stud is finally located in the threaded seat, so that the support body and the bottom mounting seat are relatively fixed.

[0013] In some embodiments of the present application, the first matching part is provided with a mounting groove in the axial direction of the connecting stud. The connecting stud is connected to the bottom wall of the mounting groove. In the axial direction of the connecting stud, the projection of the mounting groove covers the projection of the threaded seat.

[0014] In this way, the connecting stud is arranged in the mounting groove, and at least a part of the length of the connecting stud is covered by the size of the support body in the axial direction of the connecting stud. This can to some extent reduce the increase in the size of the support body in the axial direction of the connecting stud due to the arrangement of the connecting stud. At the same time, at least a part of the threaded seat is located in the mounting groove, and the connection between the connecting stud and the threaded seat can withstand greater axial load, further improving the connection strength between the bottom mounting seat and the support body.

[0015] In some embodiments of the present application, in the axial direction of the connecting stud, the length of the threaded seat is less than or equal to the depth of the mounting groove.

[0016] The whole threaded seat is completely accommodated in the mounting groove, which helps to reduce the shaking or deviation of the positioning base station under external force. When the threaded connection is performed, the mounting groove can provide a positioning reference for the threaded seat, which facilitates the alignment between the connecting stud and the threaded seat.

[0017] In some embodiments of the present application, the bracket body comprises a second matching part. The second matching part is located on the side of the bracket body. The mounting member comprises a side mounting seat. The side mounting seat comprises a second mounting part. The second mounting part and the second matching part are detachably connected.

[0018] When the mounting surface is a wall, the position where the mounting member is detachably connected is located on the side of the bracket body. In this way, the mounting position of other components on the bracket body can be changed as little as possible, the positioning base station can be mounted on the wall, and more installation options are provided for users. When the positioning base station needs to be removed from the wall, the user can separate the bracket body and the side mounting seat, and the side mounting seat remains on the wall to facilitate the next time the positioning base station is installed and deployed.

[0019] In some embodiments of the present application, the second matching part is slidably matched with the second mounting part, and the sliding of the second matching part relative to the second mounting part in the disengagement direction can make the second matching part disengage from the second mounting part. The relative displacement between the second matching part and the second mounting part is limited when the second matching part is slid to a locking position relative to the second mounting part.

[0020] When the bracket body and the side mounting seat need to be separated, the second matching part is slid in the disengagement direction, so that the bracket body and the side mounting seat can be separated. When the second matching part is slid to the locking position during installation, the second matching part no longer slides relative to the second mounting part. The bracket body and the side mounting seat are installed and removed by sliding, without the need for additional tools, which helps to improve the installation and removal efficiency. The installation and removal structure between the bracket body and the side mounting seat is designed based on the principle of sliding and locking, which is beneficial to reduce the manufacturing cost and is more convenient for users to operate.

[0021] In some embodiments of the present application, the second matching part is provided with a sliding block. The second mounting part is provided with a sliding groove. The sliding groove extends in the reverse direction of the disengagement direction. The sliding block is slidably arranged in the sliding groove. The sliding groove comprises an open end. The open end is configured to allow the sliding block to slide out of the sliding groove. The second mounting part and / or the bracket body is provided with a limiting structure. The limiting structure is configured to limit the continuous sliding of the sliding block in the reverse direction of the disengagement direction after the sliding block is slid to the locking position.

[0022] The sliding block slides into the sliding groove through the open end, and the limiting structure limits the continuous sliding of the sliding block relative to the sliding groove after the sliding block is slid to the locking position. The sliding block slides in the disengagement direction, and the limiting structure no longer limits the sliding block, so that the sliding block can slide out of the sliding groove through the open end. The operation is simple, and the connection is stable and reliable.

[0023] In some embodiments of the present application, the second mounting portion is further provided with a guide groove. The guide groove is in communication with the open end. The sliding block slides into the sliding groove along the guide groove and is slidably connected with the sliding groove.

[0024] The guide groove in communication with the open end of the sliding groove can assist the user to quickly position the sliding block close to the open end. The bracket body moves along the guide groove to smoothly cooperate with the sliding groove, further fixing the bracket body and the side mounting seat relative to each other.

[0025] In some embodiments of the present application, the side wall of the sliding groove is provided with a stop portion. The stop portion is configured to stop the sliding block from being pulled out of the sliding groove in a direction perpendicular to the bottom wall of the sliding groove.

[0026] The design of the stop portion can limit the sliding block to slide only in the disengagement direction and the reverse direction of the disengagement direction, which can reduce unnecessary lateral force to cause wear on the sliding block and the sliding groove, thereby prolonging the service life of the side mounting seat and the second cooperating portion. The stop portion can also effectively prevent the sliding block from falling out of the sliding groove, improving the stability of the connection between the bracket body and the side mounting seat.

[0027] In some embodiments of the present application, the positioning base station further comprises a solar panel and a battery. The solar panel is arranged on the bracket body. The bracket body has a hollow cavity. The battery is built-in the cavity. The battery and the solar panel are connected to receive the electric energy output by the solar panel.

[0028] The battery is arranged in the cavity of the bracket body, which reasonably utilizes the space inside the bracket body, saves the additional space requirement caused by the installation of the battery on the back side of the solar panel, and helps to reduce the influence of the external environment on the battery, thereby prolonging the service life of the battery. Moreover, as the component connected with the mounting surface, the battery is arranged in the cavity of the bracket body, and the self-weight of the battery helps to make the center of gravity of the entire positioning base station closer to the connection position of the bracket body and the mounting surface, thereby improving the stability of the installation of the positioning base station. BRIEF DESCRIPTION OF DRAWINGS

[0029] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as a limitation on the scope.

[0030] Figure 1 The structural schematic diagram of the positioning base station provided by an embodiment of the present application is shown in the figure;

[0031] Figure 2 The structural schematic diagram of the separation of the bottom mounting seat and the side mounting seat from the bracket body in the embodiment is shown in the figure;

[0032] Figure 3 The structural schematic diagram of the bracket body provided by an embodiment of the present application is shown in the figure;

[0033] Figure 4 Structure diagram of bottom mounting seat provided by an embodiment of the application is shown in the figure.

[0034] Figure 5 Structure diagram of side mounting seat provided by an embodiment of the application is shown in the figure.

[0035] Figure 6 The installation diagram of the battery in the embodiment is shown in the figure.

[0036] Main element symbol description:

[0037] 200, positioning base station; 1, support body; 100, cavity; 14, first matching part; 141, connecting stud; 142, mounting groove; 15, second matching part; 151, sliding block; 1511, limiting protrusion; 2, solar panel; 3, battery; 4, receiver; 5, mounting piece; 501, bottom mounting seat; 51, first mounting part; 511, threaded seat; 5111, internal thread hole; 512, ground nail; 502, side mounting seat; 52, second mounting part; 521, sliding groove; 5211, open end; 5212, closed end; 5213, stop part; 522, guide groove. DETAILED DESCRIPTION

[0038] The technical solutions in the embodiments of the application will be described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only some of the embodiments of the application, not all the embodiments of the application.

[0039] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description of the application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application.

[0040] In the description of the application, it should be noted that the orientations or positional relationships indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the orientations or positional relationships shown in the drawings, and are only for the purpose of facilitating the description of the application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the application.

[0041] In addition, the terms "first", "second", etc. are only for the purpose of description, and cannot be understood as indicating or implying relative importance.

[0042] It is to be noted that when an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements can be present. When an element is referred to as being "positioned on" another element, it can be directly positioned on the other element or intervening elements can be present.

[0043] As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.

[0044] In the present application, the two relatively fixedly arranged elements are not necessarily detachable, but are intended to mean that the two relatively fixedly arranged elements can move together in the use state of the positioning base station.

[0045] An embodiment of the present application provides a positioning base station, which comprises a support body, a receiver and a mounting piece. The receiver is arranged on the support body. The receiver is configured to receive signals. The mounting piece is detachably connected to the support body. One side of the mounting piece is configured to be fixedly connected to a mounting surface.

[0046] When the positioning base station is installed, the mounting piece is first fixedly connected to the mounting surface, and then the support body is connected to the mounting piece. When the positioning base station needs to be removed, the support body can be directly separated from the mounting piece. When the user needs to reinstall the positioning base station, the support body can be fixedly connected to the mounting piece again. In this way, the detachable connection design of the mounting piece and the support body simplifies the installation process and reduces the maintenance time and cost. Meanwhile, the support body and the mounting piece can be designed according to different installation environments, and different installation modes can be customized, so that the support body and the mounting piece can be applied to different installation environments. Furthermore, the support body and the mounting piece can be designed as standard pieces that are convenient to replace and maintain. The support body can be installed with different receivers, and the mounting piece can be applied to most installation environments. Even the support body can be designed as a structure that can be detachably connected to different mounting pieces, so as to further improve the installation flexibility of the positioning base station.

[0047] Some embodiments of the present application will be described in detail below with reference to the accompanying drawings. The following embodiments and features in the embodiments can be combined with each other without conflict.

[0048] Please refer to Figure 1 and Figure 2 An embodiment of the present application provides a positioning base station 200, which comprises a support body 1, a receiver 4 and a mounting piece 5. The receiver 4 is arranged on the support body 1. The receiver 4 is configured to receive signals. The mounting piece 5 is detachably connected to the support body 1. One side of the mounting piece 5 is configured to be fixedly connected to a mounting surface.

[0049] When the positioning base station 200 is installed, the mounting member 5 and the mounting surface are fixedly connected first, and then the support body 1 is connected with the mounting member 5. When the positioning base station 200 needs to be removed, the support body 1 and the mounting member 5 can be directly separated; when the user needs to reinstall later, the support body 1 and the mounting member 5 can be reinstalled and fixed. In this way, the detachable connection design of the mounting member 5 and the support body 1 simplifies the installation process and reduces the maintenance time and cost. At the same time, the support body 1 and the mounting member 5 can also be designed according to different installation environments to customize different installation methods, so that the support body 1 and the mounting member 5 can be applied to different installation environments. The support body 1 and the mounting member 5 can be further designed as standard parts that are convenient to replace and maintain, the support body 1 can be installed with different receivers 4, and the mounting member 5 can be suitable for most installation environments. Even the support body 1 can be designed as a structure that can be detachably connected with different mounting members 5, thereby further improving the installation flexibility of the positioning base station 200.

[0050] In some embodiments, the support body 1 comprises a first matching part 14. The first matching part 14 is located at the bottom of the support body 1. The mounting member 5 comprises a bottom mounting seat 501. The bottom mounting seat 501 comprises a first mounting part 51. The first mounting part 51 and the first matching part 14 are detachably connected.

[0051] When the mounting surface is the ground, the first matching part 14 at the bottom of the support body 1 and the first mounting part 51 of the bottom mounting seat 501 are detachably connected. When the user needs to remove the positioning base station 200, such as when the positioning base station 200 needs to be cleaned or repaired, the support body 1 and the bottom mounting seat 501 can be separated, and the ground will not be damaged due to the installation and removal of the positioning base station 200. It is also convenient for the user to install the positioning base station 200 multiple times without the need to reposition and find a suitable installation position due to the original mounting surface. It can be understood that when the mounting surface is the ground, the part close to the ground is the bottom of the entire positioning base station 200, or in other words, in the vertical direction, the lowest end of the positioning base station 200 is generally the bottom.

[0052] Please refer to Figures 2 to 4 In some embodiments, the first matching part 14 and the first mounting part 51 are connected through a threaded structure.

[0053] The detachable connection between the first matching part 14 and the first mounting part 51 is a threaded connection, so that the support body 1 and the bottom mounting seat 501 can be installed or separated by rotating, making the installation and removal process simple and fast; and the threaded processing is easy to standardize production, which is conducive to reducing the manufacturing cost. In implementation, in order to further reduce the difficulty of installation and removal, the axial direction of the thread can be set to be the same as the vertical direction, and the height direction of the entire support body 1 is also the same as the vertical direction.

[0054] In some embodiments, the first fitting part 14 is provided with a connecting stud 141. The first mounting part 51 is provided with a threaded seat 511. The threaded seat 511 is provided with an inner threaded hole 5111. The connecting stud 141 is threadedly connected with the inner threaded hole 5111 on the threaded seat 511.

[0055] During installation, the connecting stud 141 is threadedly connected with the inner threaded hole 5111 on the threaded seat 511, and finally located in the threaded seat 511, so that the bracket body 1 and the bottom mounting seat 501 are relatively fixed.

[0056] In some embodiments, the first fitting part 14 is provided with an installation groove 142 along the axial direction of the connecting stud 141. The connecting stud 141 is connected to the bottom wall of the installation groove 142. Along the axial direction of the connecting stud 141, the projection of the installation groove 142 covers the projection of the threaded seat 511.

[0057] In this way, the connecting stud 141 is arranged in the installation groove 142, and at least a part of the length of the connecting stud 141 is covered by the size of the bracket body 1 in the axial direction of the connecting stud 141, which can to some extent reduce the increase in the size of the bracket body 1 in the axial direction of the connecting stud 141 due to the arrangement of the connecting stud 141. At the same time, at least a part of the threaded seat 511 is located in the installation groove 142, and the connecting part of the connecting stud 141 and the threaded seat 511 can bear greater axial load, further improving the connection strength between the bottom mounting seat 501 and the bracket body 1.

[0058] In some embodiments, along the axial direction of the connecting stud 141, the length of the threaded seat 511 is less than or equal to the depth of the installation groove 142.

[0059] The entire threaded seat 511 is completely accommodated in the installation groove 142, which helps to reduce the shaking or deviation of the positioning base station 200 under external force. During threaded connection, the installation groove 142 can provide a positioning reference for the threaded seat 511, facilitating the alignment between the connecting stud 141 and the threaded seat 511.

[0060] In some embodiments, referring to Figure 2 , the bottom mounting seat 501 is provided with a plurality of ground nails 512 on the side connected with the ground. The ground nails 512 extend vertically, and the ground nails 512 are used to fix the bottom mounting seat 501 to the ground. The ground nails 512 and the bottom mounting seat 501 can also be designed as detachable connection, so that the user can select the ground nails 512 with appropriate material and shape according to the soil quality of the installation site.

[0061] In some embodiments, the bracket body 1 comprises a second fitting part 15. The second fitting part 15 is located on the side of the bracket body 1. The mounting part 5 comprises a side mounting seat 502. The side mounting seat 502 comprises a second mounting part 52. The second mounting part 52 and the second fitting part 15 are detachably connected. In some embodiments, the bracket body 1 comprises a second fitting part 15. The second fitting part 15 is located on the side of the bracket body 1. The mounting part 5 comprises a side mounting seat 502. The side mounting seat 502 comprises a second mounting part 52. The second mounting part 52 and the second fitting part 15 are detachably connected.

[0062] When the mounting surface is a wall, the position where the mounting member 5 is detachably connected is arranged on the side of the bracket body 1. In this way, the mounting position of other components on the bracket body 1 can be changed as little as possible, and the positioning base station 200 can be mounted on the wall, thereby providing more installation options for users. When the positioning base station 200 needs to be removed from the wall, the user can separate the bracket body 1 and the side mounting seat 502, and the side mounting seat 502 remains on the wall to facilitate the next time the positioning base station 200 is installed and deployed. It can be understood that the side of the bracket body 1 is the part of the bracket body 1 opposite the wall.

[0063] In some embodiments, the second fitting part 15 is slidably fitted in the second mounting part 52, and the second fitting part 15 slides relative to the second mounting part 52 in the disengagement direction to disengage the second fitting part 15 from the second mounting part 52. The relative displacement between the second fitting part 15 and the second mounting part 52 is limited when the second fitting part 15 slides relative to the second mounting part 52 to the locking position.

[0064] When the bracket body 1 and the side mounting seat 502 need to be separated, the second fitting part 15 slides in the disengagement direction to separate the bracket body 1 and the side mounting seat 502. When the second fitting part 15 slides to the locking position during installation, the second fitting part 15 no longer slides relative to the second mounting part 52. The bracket body 1 and the side mounting seat 502 are installed and removed by sliding, without the need for additional tools, which helps to improve the installation and removal efficiency. The installation and removal structure between the bracket body 1 and the side mounting seat 502 is designed based on the principle of sliding and locking, which helps to reduce the manufacturing cost and makes the operation of the user more convenient. It can be understood that the sliding direction of the second fitting part 15 relative to the second mounting part 52 is the disengagement direction and the reverse direction of the disengagement direction. The disengagement direction can be the same as the vertical direction or have a certain inclination relative to the vertical direction, and the disengagement direction should ensure that the positioning base station 200 and the wall do not interfere with each other when the second fitting part 15 slides relative to the second mounting part 52.

[0065] Please refer to Figure 2 , Figure 3 and Figure 5 In some embodiments, the second fitting part 15 is provided with a sliding block 151. The second mounting part 52 is provided with a sliding groove 521. The sliding groove 521 extends in the reverse direction of the disengagement direction. The sliding block 151 is slidably arranged in the sliding groove 521. The sliding groove 521 includes an open end 5211. The open end 5211 is configured to allow the sliding block 151 to slide out of the sliding groove 521. The second mounting part 52 and / or the bracket body 1 is provided with a limiting structure. The limiting structure is configured to limit the sliding block 151 from continuing to slide in the reverse direction of the disengagement direction after the sliding block 151 slides to the locking position.

[0066] The slider 151 slides into the sliding groove 521 along the open end 5211, and after sliding to the locking position, the limiting structure limits the continuous sliding of the slider 151 relative to the sliding groove 521. The slider 151 slides in the disengagement direction, the limiting structure no longer limits the slider 151, and the slider 151 can slide out of the sliding groove 521 from the open end 5211. The operation is simple, and the connection is stable and reliable.

[0067] In some embodiments, the limiting structure can be a protruding part or a baffle provided on the second mounting portion 52 or the support body 1 to directly block the continuous sliding of the slider 151. As shown in Figure 3 The slider 151 is provided with a limiting protrusion 1511 configured to abut against the open end 5211 of the sliding groove 521 to stop the reverse sliding of the slider 151 along the sliding groove 521 in the disengagement direction. In this embodiment, the locking position is the position where the limiting protrusion 1511 is located.

[0068] In some embodiments, a material with a large friction coefficient, such as a rubber gasket, can also be provided on the inner wall of the sliding groove 521. The rubber gasket is arranged in a spaced manner with the open end 5211, and the position where the rubber gasket is located is the locking position. After the slider 151 abuts against the rubber gasket, under the action of the gravity of the positioning base station 200, the slider 151 is difficult to continue to slide relative to the sliding groove 521, unless a greater external force is applied.

[0069] As shown in Figure 5 The limiting structure on the second mounting portion 52 and the support body 1 is along the extension direction of the sliding groove 521. The sliding groove 521 also includes a closed end 5212. When one end of the slider 151 abuts against the closed end 5212, the slider 151 cannot continue to slide along the sliding groove 521. At this time, the locking position is the position where the closed end 5212 of the sliding groove 521 is located. In this way, the slider 151 slides into the sliding groove 521 along the guide groove 522 and the open end 5211, and under the action of the gravity of the positioning base station 200, the slider 151 can quickly reach the locking position to complete the installation.

[0070] It can be understood that, in the embodiment shown in Figure 5 The closed end 5212 is located below the open end 5211. However, as long as the limiting structure can achieve the purpose of limiting the reverse sliding of the slider 151 in the disengagement direction after the slider 151 slides to the locking position, the closed end 5212 can also be located above the open end 5211. For example, a stop lever is arranged on the support body 1. When the slider 151 slides into the sliding groove 521 and continues to slide upward relative to the side mounting seat 502 until reaching the locking position, the stop lever is used to always apply a force to the slider 151 in the opposite direction of the disengagement direction, so as to stop the positioning base station 200 from being disengaged from the sliding groove 521 in the disengagement direction under the action of its own gravity.

[0071] In some embodiments, the second mounting portion 52 is further provided with a guide groove 522. The guide groove 522 is in communication with the open end 5211 of the sliding groove 521. The sliding block 151 is slidably connected with the sliding groove 521 along the guide groove 522.

[0072] The guide groove 522 in communication with the open end 5211 of the sliding groove 521 can assist the user to quickly position the sliding block 151 close to the open end 5211 of the sliding groove 521. The bracket body 1 is moved along the guide groove 522 to smoothly cooperate with the sliding groove 521, further fixing the bracket body 1 and the side mounting seat 502 relative to each other.

[0073] In some embodiments, the side wall of the sliding groove 521 is provided with a stop portion 5213. The stop portion 5213 is configured to stop the sliding block 151 from being pulled out of the sliding groove 521 in a direction perpendicular to the bottom wall of the sliding groove 521.

[0074] The design of the stop portion 5213 can limit the sliding block 151 to slide only in the disengagement direction and the reverse direction of the disengagement direction, which can reduce unnecessary lateral force to cause wear of the sliding block 151 and the sliding groove 521, thereby prolonging the service life of the side mounting seat 502 and the second cooperating portion 15. The stop portion 5213 can also effectively prevent the sliding block 151 from falling out of the sliding groove 521, improving the stability of the connection between the bracket body 1 and the side mounting seat 502.

[0075] As can be understood, Figure 1 and Figure 2 The bracket body 1 can include a first cooperating portion 14 and a second cooperating portion 15, and the mounting member 5 can include a bottom mounting seat 501 and a side mounting seat 502. In this way, the positioning base station 200 can be installed on the ground or on a wall, and the user can choose as needed.

[0076] Referring to Figure 6 In some embodiments, the positioning base station 200 further includes a solar panel 2 and a battery 3. The solar panel 2 is provided on the bracket body 1. The bracket body 1 has a hollow cavity 100. The battery 3 is built into the cavity 100. The battery 3 is connected with the solar panel 2 to receive the electrical energy output by the solar panel 2.

[0077] By arranging the battery 3 in the cavity 100 of the bracket body 1, the space inside the bracket body 1 is reasonably utilized, the additional space requirement caused by the installation of the battery 3 on the back side of the solar panel 2 is saved, the influence of the external environment on the battery 3 is reduced, and the service life of the battery 3 is prolonged. Moreover, as the bracket body is a component connected with the mounting surface, the self-weight of the battery 3 arranged in the cavity 100 of the bracket body 1 helps to make the center of gravity of the entire positioning base station 200 closer to the connection position of the bracket body 1 and the mounting surface, thereby improving the stability of the installation of the positioning base station 200.

[0078] In addition, those skilled in the art will appreciate that the above-described embodiments are merely illustrative of the application and should not be construed as limiting the same. Numerous modifications and variations are possible in light of the above teachings without departing from the essence of the application.

Claims

1. A positioning base station, characterized in that, include: Support body; A receiver is mounted on the main body of the bracket, and the receiver is used to receive signals; and The mounting component is detachably connected to the bracket body, and one side of the mounting component is configured to be fixedly connected to the mounting surface.

2. The positioning base station according to claim 1, characterized in that, The bracket body includes a first mating part located at the bottom of the bracket body; the mounting component includes a bottom mounting base, the bottom mounting base including a first mounting part, and the first mounting part and the first mating part are detachably connected.

3. The positioning base station according to claim 2, characterized in that, The first mating part and the first mounting part are connected by a threaded structure.

4. The positioning base station according to claim 3, characterized in that, The first mating part is provided with a connecting stud, the first mounting part is provided with a threaded seat, the threaded seat is provided with an internal threaded hole, and the connecting stud and the internal threaded hole are threadedly connected.

5. The positioning base station according to claim 4, characterized in that, The first mating part is provided with a mounting groove along the axial direction of the connecting stud, and the connecting stud is connected to the bottom wall of the mounting groove; Along the axial direction of the connecting stud, the projection of the mounting groove overlaps the projection of the threaded seat.

6. The positioning base station according to claim 5, characterized in that, Along the axial direction of the connecting stud, the length of the threaded seat is less than or equal to the depth of the mounting groove.

7. The positioning base station according to claim 1 or 2, characterized in that, The bracket body includes a second mating part located on the side of the bracket body. The mounting component includes a side mounting seat, which includes a second mounting part. The second mounting part and the second mating part are detachably connected.

8. The positioning base station according to claim 7, characterized in that, The second mating part is slidably mated to the second mounting part, and the second mating part can be disengaged from the second mounting part by sliding relative to the second mounting part in a disengagement direction; When the second mating part slides relative to the second mounting part to the locking position, it restricts the relative displacement between the second mating part and the second mounting part.

9. The positioning base station according to claim 8, characterized in that, The second mating part is provided with a slider, and the second mounting part is provided with a sliding groove. The sliding groove extends in the opposite direction to the disengagement direction, and the slider can slide within the sliding groove. The sliding groove includes an open end, which is configured to allow the slider to slide out of the sliding groove. The second mounting part and / or the bracket body are provided with a limiting structure, which is configured to restrict the slider from sliding to the locking position and then continuing to slide in the opposite direction of the disengagement direction.

10. The positioning base station according to claim 9, characterized in that, The second mounting part is also provided with a guide groove, which is connected to the opening end; The slider slides into the groove along the guide groove and is slidably connected to the groove.

11. The positioning base station according to claim 9, characterized in that, The side wall of the slide is provided with a stop, which is configured to prevent the slider from disengaging from the slide in a direction perpendicular to the bottom wall of the slide.

12. The positioning base station according to claim 1, characterized in that, The positioning base station also includes a solar panel and a battery. The solar panel is disposed on the support body. The support body has a hollow cavity, and the battery is built into the cavity. The battery and the solar panel are connected to receive the electrical energy output by the solar panel.