A positioner mounting structure
Patent Information
- Application Number
- CN202522195458.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-17
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-10-17
AI Technical Summary
[0013]本实用新型通过转盘、从动齿轮、微型电机b及主动伞齿轮的配合,微型电机b驱动主动伞齿轮转动时,可带动与从动齿轮固定连接的转盘旋转,进而实现承载板及定位器本体的水平360°旋转。该设计无需手动拆卸,即可快速调整定位器朝向,轻松避开安装环境中的遮挡物,确保信号接收稳定,尤其适用于物流车厢、户外设备等存在动态遮挡的场景。
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Figure CN224786799U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of locator installation technology, specifically a locator installation structure. Background Technology
[0002] With the rapid development of IoT technology, locators are becoming increasingly important in logistics, asset tracking, and vehicle management. As core devices for real-time location monitoring, the rationality of their installation structure directly impacts positioning accuracy and ease of use. Currently, most locator installation structures on the market employ fixed bracket designs, rigidly connecting the locator to the mounting carrier (such as a vehicle chassis or equipment housing) directly with bolts. This approach has the following significant drawbacks.
[0003] Traditional installation structures cannot achieve multi-angle adjustment of the locator. Due to the differences in the angle of positioning signal reception in different scenarios (such as changes in obstructions during vehicle movement or offset of equipment installation position), fixed-installation locators are prone to positioning delays or decreased accuracy due to signal obstruction, and cannot adjust the monitoring direction according to actual usage needs, thus limiting their applicability. Therefore, a new technical solution needs to be designed to address this issue. Utility Model Content
[0004] The purpose of this invention is to provide a positioning device mounting structure to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a locator mounting structure, comprising a mounting plate and a locator body, wherein a turntable is fixedly mounted at the center of the side wall of the mounting plate, and the turntable is equipped with an installation adjustment mechanism; a bearing plate is mounted at the top of the installation adjustment mechanism, the locator body is mounted on the bearing plate, a slot is formed at the center of the side wall of the bearing plate, and a locking block is mounted at the center of the side wall of the locator body, the locking block being engaged in the slot; the installation adjustment mechanism includes two support plates mounted on the top of the turntable, a rotating shaft is mounted at the top between the two support plates, a rotating wheel is mounted at the outer center of the rotating shaft, and the bearing plate is mounted on the rotating wheel.
[0006] Preferably, a micro motor a is installed on the side wall of one of the support plates, and the drive end of the micro motor a extends between the two support plates and is then fitted with a drive wheel. A drive gear is installed on the side wall of the drive wheel.
[0007] Preferably, the outer wall of the wheel is provided with driven teeth, which mesh with the driving gear.
[0008] Preferably, a driven gear is installed at the top edge of the turntable, and a fixed seat is installed on the side wall of the mounting plate outside the turntable. A micro motor b is installed on the fixed seat, and an active bevel gear is installed at the drive end of the micro motor b. The active bevel gear and the driven gear mesh with each other.
[0009] Preferably, the outer walls on both sides of the card block are provided with inclined convex surfaces, and the inner walls on both sides of the card slot are provided with inclined concave surfaces, and the inclined convex surfaces and inclined concave surfaces cooperate with each other.
[0010] Preferably, a support platform is installed on the top left side of the air separator frame, and a filling cavity is opened inside the card block, with an arched elastic plate installed inside the filling cavity.
[0011] Preferably, the end of the card block is provided with an arc surface.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0013] This invention utilizes a turntable, a driven gear, a micro motor (b), and a driving bevel gear. When the micro motor (b) drives the driving bevel gear to rotate, it causes the turntable, which is fixedly connected to the driven gear, to rotate, thereby achieving a 360° horizontal rotation of the support plate and the locator body. This design allows for quick adjustment of the locator's orientation without manual disassembly, easily avoiding obstructions in the installation environment and ensuring stable signal reception. It is particularly suitable for scenarios with dynamic obstructions, such as logistics vehicles and outdoor equipment.
[0014] Precise pitch angle adjustment: Utilizing a micro motor a, a drive wheel, a drive gear, and the meshing structure of the driven teeth on the outer wall of the rotating wheel, the micro motor a drives the drive gear to rotate, thereby causing the rotating wheel and the support plate to rotate around the axis to achieve pitch angle adjustment. Compared to traditional manual adjustment, this automated adjustment method is not only convenient to operate, but also allows for precise angle adjustment through precise motor control, meeting the positioner's requirements for specific monitoring angles. Attached Figure Description
[0015] Figure 1 This is a front-view three-dimensional structural schematic diagram of the present invention;
[0016] Figure 2 This is a top-view three-dimensional structural schematic diagram of the present invention;
[0017] Figure 3 Side view of the installation and adjustment mechanism provided by this utility model;
[0018] Figure 4 This is a schematic diagram illustrating the cooperation between the card block and the card slot provided by this utility model.
[0019] In the diagram: 1. Mounting plate; 2. Support plate; 3. Turntable; 4. Driven gear; 5. Positioner body; 6. Bearing plate; 7. Micro motor b; 8. Fixing base; 9. Micro motor a; 10. Driving wheel; 11. Rotating shaft; 12. Rotating wheel; 13. Driven gear; 14. Driving gear; 15. Driving bevel gear; 16. Locking block; 17. Locking slot; 18. Filling cavity; 19. Arched elastic plate; 20. Arc surface; 21. Sloping convex surface; 22. Sloping concave surface. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0021] Please see Figures 1-4 As shown, a locator mounting structure includes a mounting plate 1 and a locator body 5. A turntable 3 is fixedly mounted at the center of the side wall of the mounting plate 1, and the turntable 3 is equipped with an installation adjustment mechanism. A bearing plate 6 is mounted at the top of the installation adjustment mechanism, and the locator body 5 is mounted on the bearing plate 6. A slot 17 is opened at the center of the side wall of the bearing plate 6, and a locking block 16 is installed at the center of the side wall of the locator body 5. The locking block 16 is engaged in the slot 17. The installation adjustment mechanism includes two support plates 2 mounted at the top of the turntable 3. A rotating shaft 11 is mounted at the top between the two support plates 2. A rotating wheel 12 is mounted at the outer center of the rotating shaft 11, and the bearing plate 6 is mounted on the rotating wheel 12.
[0022] In the specific implementation process, the mounting plate 1 serves as the fixed base of the entire structure; the turntable 3 is fixedly installed at the upper center of the mounting plate 1, and the rotation of the turntable 3 provides the positioner with horizontal angle adjustment capability; the support plate 2 can vertically install the adjustment mechanism onto the turntable 3, and the rotating shaft 11 serves as the rotation shaft of the rotating wheel 12, transmitting the rotational motion of the rotating wheel 12, driving the bearing plate 6 and the positioner body 5 to achieve pitch angle adjustment; the positioner body 5 is installed on the bearing plate 6 through the slot 17 and the locking block 16, while transmitting the rotational motion of the rotating wheel 12 to achieve pitch angle adjustment of the positioner; the slot 17 and the locking block 16 form a quick-connect structure, realizing tool-free disassembly and assembly of the positioner body 5; the rotating shaft 11 can rotate between the two support plates 2.
[0023] In some technical solutions, a micro motor a9 is installed on the side wall of one side support plate 2. The drive end of the micro motor a9 extends between the two support plates 2 and then a drive wheel 10 is installed. A drive gear 14 is installed on the side wall of the drive wheel 10.
[0024] In the specific implementation process, the micro motor a9 serves as the power source for pitch angle adjustment. It is a forward and reverse motor, thereby driving the drive wheel 10 and drive gear 14 to rotate. The drive wheel 10 connects the motor shaft and the drive gear 14. The drive gear 14 transmits the rotational power of the motor to the driven teeth 13 of the rotating wheel 12 through gear meshing.
[0025] In some technical solutions, the outer wall of the rotating wheel 12 is provided with driven teeth 13, which mesh with the driving gear 14. The driven teeth 13 on the outer wall of the rotating wheel 12 mesh with the driving gear 14, thereby driving the rotating wheel 12 to rotate through the driving gear 14. A driven gear 4 is installed at the top edge of the turntable 3. A fixed seat 8 is installed on the side wall of the mounting plate 1 outside the turntable 3. A micro motor b7 is installed on the fixed seat 8. A driving bevel gear 15 is installed at the driving end of the micro motor b7. The driving bevel gear 15 meshes with the driven gear 4.
[0026] In the specific implementation process, the driven gear 4 is fixed on the turntable 3 and receives power by meshing with the active bevel gear 15, driving the turntable 3 to rotate around its own central axis to achieve horizontal angle adjustment; the micro motor b7 is mounted on the mounting plate 1 through the fixed seat 8. The micro motor b7 serves as the power source for horizontal rotation and is a forward and reverse motor, driving the active bevel gear 15 to rotate; providing sufficient torque for the rotation of the turntable 3.
[0027] In some technical solutions, the outer walls of the left and right sides of the card block 16 are provided with inclined convex surfaces 21, and the inner walls of the left and right sides of the card slot 17 are provided with inclined concave surfaces 22, with the inclined convex surfaces 21 and the inclined concave surfaces 22 cooperating with each other.
[0028] In the specific implementation process, the inclined convex surface 21 is formed by milling on the outer walls of the left and right sides of the card block 16, and the inclined concave surface 22 is formed by milling on the inner walls of the left and right sides of the card groove 17. The fitting structure of the inclined convex surface 21 and the inclined concave surface 22 forms a mechanical self-locking, which restricts the tendency of the card block 16 to come out along the axial direction of the card groove 17.
[0029] In some technical solutions, the inside of the locking block 16 is provided with a filling cavity 18, and an arched elastic plate 19 is installed inside the filling cavity 18. When the locking block 16 is inserted into the locking groove 17, the inclined convex surface 21 is squeezed by the inner wall of the locking groove 17 and deforms towards the filling cavity 18, which compresses the arched elastic plate 19 to contract. The elastic restoring force of the elastic plate acts in the opposite direction on the side wall of the locking block 16, so that the inclined convex surface 21 fits tightly against the inclined concave surface 22, eliminating the fit gap.
[0030] In some technical solutions, the end of the card block 16 is provided with an arc surface 20.
[0031] In the specific implementation process, the chamfer of the arc surface 20 and the slot 17 forms a smooth transition. During installation, the arc surface 20 can first contact the entrance of the slot 17, and the arc guide will automatically align the card block 16 with the center of the slot 17, avoiding the jamming caused by the rigid collision between the end of the card block 16 and the edge of the slot 17, thus improving the assembly efficiency.
[0032] Working principle:
[0033] Align the locator's locking block 16 with the slot 17 of the support plate 6. The arc surface 20 guides the locking block 16 to slide easily into the slot without precise alignment. The micro motor b7 starts, driving the active bevel gear 15 on its shaft to rotate. The active bevel gear 15 meshes with the driven gear 4 on the edge of the turntable 3, driving the turntable 3 to rotate around the center of the mounting plate 1. The support plate 2, the support plate 6, and the locator body 5 on the turntable 3 rotate synchronously, achieving 360° adjustment of the left and right orientation without dead angles, such as avoiding obstructions such as walls and equipment, and ensuring stable tracking signals.
[0034] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0035] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A locator mounting structure, comprising a mounting plate (1) and a locator body (5), characterized in that, A turntable (3) is fixedly installed at the center of the side wall of the mounting plate (1), and the turntable (3) is equipped with an installation adjustment mechanism; The top of the installation adjustment mechanism is equipped with a bearing plate (6), the locator body (5) is installed on the bearing plate (6), a slot (17) is provided at the center of the side wall of the bearing plate (6), a locking block (16) is installed at the center of the side wall of the locator body (5), the locking block (16) is engaged in the slot (17), the installation adjustment mechanism includes two side support plates (2) installed at the top of the turntable (3), a rotating shaft (11) is installed at the top between the two support plates (2), a rotating wheel (12) is installed at the outer center of the rotating shaft (11), and the bearing plate (6) is installed on the rotating wheel (12).
2. The locator mounting structure according to claim 1, characterized in that, A micro motor a (9) is installed on the side wall of one side of the support plate (2). The drive end of the micro motor a (9) extends between the two support plates (2) and is then equipped with a drive wheel (10). A drive gear (14) is installed on the side wall of the drive wheel (10).
3. The locator mounting structure according to claim 2, characterized in that, The outer wall of the wheel (12) is provided with driven teeth (13), which mesh with the driving gear (14).
4. The locator mounting structure according to claim 1, characterized in that, A driven gear (4) is installed at the top edge of the turntable (3). A fixed seat (8) is installed on the side wall of the mounting plate (1) on the outside of the turntable (3). A micro motor b (7) is installed on the fixed seat (8). An active bevel gear (15) is installed at the drive end of the micro motor b (7). The active bevel gear (15) and the driven gear (4) mesh with each other.
5. The locator mounting structure according to claim 1, characterized in that, The left and right outer walls of the card block (16) are provided with inclined convex surfaces (21), and the left and right inner walls of the card slot (17) are provided with inclined concave surfaces (22). The inclined convex surfaces (21) and inclined concave surfaces (22) cooperate with each other.
6. The locator mounting structure according to claim 5, characterized in that, The card block (16) has a filling cavity (18) inside, and an arched elastic plate (19) is installed inside the filling cavity (18).
7. A locator mounting structure according to claim 6, characterized in that, The end of the card block (16) is provided with an arc surface (20).