Side-mounted radar sensing equipment
By designing a side-mounted radar sensing device, the angle and position can be adjusted using a hanging bracket and connecting module, solving the problem of large installation space for radar sensors and achieving convenient layout and efficient detection.
Patent Information
- Application Number
- CN202520082108.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2026-03-06
- Estimated Expiration
- 2035-01-14
AI Technical Summary
The existing radar sensing equipment has a large mounting space, which makes it difficult to install radar sensors and affects their use.
The side-mounted radar sensing device is fixed with a bracket that includes a mounting frame, a connecting module, and a mounting plate. The angle and position of the radar sensing host can be adjusted through the connecting module. The bracket is fixed to the wall and assembled with adhesive layer, reducing space requirements.
It facilitates the layout and assembly of the radar sensor host, saves space, reduces layout difficulty, and improves detection effect and usability.
Smart Images

Figure CN223977351U_ABST
Abstract
Description
Technical Field
[0001] This utility model patent relates to the technical field of radar sensors, and more specifically, to a side-mounted radar sensing device. Background Technology
[0002] Radar sensing equipment includes radar sensors and brackets. It uses radar sensors to detect external objects, such as people presence, falls, and respiratory and heart rate. Common radar sensors include millimeter-wave radar sensors.
[0003] The bracket enables the assembly of radar sensors. For example, the prior patent with authorization announcement number CN220465382U discloses a millimeter-wave radar sensor mounting bracket, which includes: a mounting plate with mounting holes thereon, a pair of first rotating arms disposed on the left and right sides of the mounting plate, a pair of second rotating arms pivotally connected to the pair of first rotating arms, and a millimeter-wave radar sensor fixedly connected to the pair of second rotating arms.
[0004] In existing technologies, the mounting space required for the bracket is large, which can easily lead to the inability to install the radar sensor or make installation extremely difficult, thus affecting the application of the radar sensor. Utility Model Content
[0005] The purpose of this invention is to provide a side-mounted radar sensing device, which aims to solve the problem that the installation space required for radar sensing devices in the prior art is too large.
[0006] This utility model is implemented as follows: a side-mounted radar sensing device includes a bracket and a radar sensing host. The radar sensing host is used for detection. The bracket is fixedly hung, and the bracket and the radar sensing host are assembled. The bracket includes a mounting frame, a connecting module, and a mounting plate. The mounting frame is fixedly hung. The two ends of the connecting module are movably connected to the mounting frame and the mounting plate, respectively. The mounting plate is used to assemble the radar sensing host. The connecting module is oscillating under external force and is used to adjust the assembly angle and position of the radar sensing host.
[0007] Furthermore, the connection module includes a connecting plate and a frame connecting seat, one end of the connecting plate is hinged to the frame connecting seat, and the frame connecting seat is assembled with the frame.
[0008] Furthermore, the frame connecting seat includes a frame seat head and a frame seat piece, the frame seat head and the frame seat piece are arranged in a butt joint and integrally formed, the frame seat head is hinged to the end of the connecting plate; the frame fixing frame has a fixing groove, the fixing groove is recessed, the frame seat piece is embedded in the fixing groove, and the fixing member extends through the frame seat piece and is threadedly connected to the frame fixing frame.
[0009] Furthermore, the frame is provided with a fastening block, the frame base plate has a base plate groove, the base plate groove is arranged in a through manner, the fastening block is embedded in the base plate groove, and the fastening block and the frame base plate are fastened together.
[0010] Furthermore, the connecting module includes a plate connector, the other end of the connecting plate is hinged to the plate connector, and the plate connector is mated and fixedly arranged with the machine plate.
[0011] Furthermore, the mounting plate is provided with a positioning block, which is arranged in a protruding manner in a direction away from the mounting plate. The radar sensor host includes a host housing, which has a housing groove. The positioning block is embedded in the housing groove and is used to position the host housing.
[0012] Furthermore, the radar sensor host includes a back panel, which is assembled with the host housing and is located inside the host housing. The back panel and the host housing form an outer cavity, which is filled with an organic adhesive layer. The adhesive layer is used to adhesively assemble the radar sensor host with the mounting plate. The adhesive layer and the outer edge of the host housing simultaneously abut against the mounting plate.
[0013] Furthermore, the main housing has multiple shell edge grooves, which are arranged in a through manner and are connected to the adhesive layer, and are also connected to the outside.
[0014] Furthermore, the mounting frame has an inner frame groove, which is arranged correspondingly to the connecting module, and the inner frame groove is used to accommodate the connecting module.
[0015] Furthermore, the connecting plate has a front plate surface and a rear plate surface, which are arranged correspondingly. The front plate surface is used to lay flat and abut against the machine mounting plate, and the rear plate surface has a plurality of plate grooves, which are arranged in a recessed manner along the direction toward the front plate surface.
[0016] Compared with existing technologies, the side-mounted radar sensing device provided by this utility model has the radar sensor host and the bracket assembled together, and the bracket is then fixed to the wall. The radar sensor host can realize personnel presence detection, fall detection, and respiratory and heart rate detection. With the help of the bracket, the layout and assembly of the radar sensor host are greatly facilitated. At the same time, with the help of the connecting module, the folding or unfolding between the mounting frame and the mounting plate can be realized, which not only saves space, but also allows the layout position and angle of the radar sensor host to be adjusted, reducing the limitation of the radar sensor host in terms of installation space, reducing the layout difficulty of the radar sensor host, and improving the detection usability and detection effect of the radar sensor host. Attached Figure Description
[0017] Figure 1 This is a three-dimensional schematic diagram of the side-mounted radar sensing device provided by this utility model in an unfolded state.
[0018] Figure 2 This is an exploded view of the side-mounted radar sensing device provided by this utility model;
[0019] Figure 3 This is an enlarged schematic diagram of part A of the side-mounted radar sensing device provided by this utility model;
[0020] Figure 4 This is a three-dimensional schematic diagram of the side-mounted radar sensing device provided by this utility model, which is shaped like a bracket.
[0021] Figure 5 This is a three-dimensional schematic diagram of the side-mounted radar sensing device provided by this utility model in a folded state. Detailed Implementation
[0022] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0023] The implementation of this utility model will be described in detail below with reference to specific embodiments.
[0024] In the accompanying drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components. In the description of this utility model, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, they are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.
[0025] Reference Figure 1-5 The image shown is a preferred embodiment of the present invention.
[0026] A side-mounted radar sensing device includes a bracket 1 and a radar sensor host 2. The radar sensor host 2 is used for detection. The bracket 1 is fixedly hung. The bracket 1 and the radar sensor host 2 are assembled. The bracket 1 includes a mounting frame 11, a connecting module 12 and a mounting plate 13. The mounting frame 11 is fixedly hung. The two ends of the connecting module 12 are movably connected to the mounting frame 11 and the mounting plate 13, respectively. The mounting plate 13 is used to assemble the radar sensor host 2. The connecting module 12 is swaying under external force. The connecting module 12 is used to adjust the assembly angle and assembly position of the radar sensor host 2.
[0027] The aforementioned side-mounted radar sensing device has the radar sensor host 2 and the bracket 1 assembled together, and the bracket 1 is then fixed to the wall. The radar sensor host 2 can detect personnel presence, fall detection, and respiratory and heart rate detection. The bracket 1 greatly facilitates the layout and assembly of the radar sensor host 2. At the same time, the connecting module 12 enables the folding or unfolding between the mounting frame 11 and the mounting plate 13, which not only saves space, but also allows the connecting module 12 to adjust the layout position and angle of the radar sensor host 2, reducing the space constraints of the radar sensor host 2, reducing the layout difficulty of the radar sensor host 2, and improving the detection usability and detection effect of the radar sensor host 2.
[0028] The connecting module 12 includes a connecting plate 121 and a frame connecting seat 122. One end of the connecting plate 121 is hinged to the frame connecting seat 122, and the frame connecting seat 122 is assembled with the mounting frame 11. In this way, the mounting plate 13 can be unfolded or folded through the cooperation between the connecting plate 121 and the frame connecting seat 122, thereby realizing the adjustment of the layout position of the radar sensor host 2.
[0029] The frame connecting seat 122 includes a frame seat head and a frame seat piece. The frame seat head is hinged to the end of the connecting plate 121. The frame fixing frame 11 has a frame fixing groove 111, which is recessed. The frame seat piece is embedded in the frame fixing groove 111. The fastener extends through the frame seat piece and is threadedly connected to the frame fixing frame 11.
[0030] In this way, the frame mounting groove 111 embedded in the frame base plate improves the assembly effect and assembly stability between the frame connecting seat 122 and the frame mounting 11, while saving assembly space, and the frame mounting groove 111 plays a positioning and reinforcement role.
[0031] The frame head and frame piece are arranged in a mating and integral manner, which facilitates production and manufacturing, reduces the assembly difficulty of radar sensing equipment, and facilitates the assembly between bracket 1 and radar sensing host 2.
[0032] The mounting frame 11 is provided with a fastening block 14, and the frame base plate has a base plate groove 123. The base plate groove 123 is arranged in a through manner, and the fastening block 14 is embedded in the base plate groove 123. The fastening block 14 and the frame base plate are fastened together. Under the cooperation of the fastening block 14 and the frame base plate, the assembly between the frame connecting seat 122 and the mounting frame 11 is reinforced, and the assembly stability between the frame connecting seat 122 and the mounting frame 11 is enhanced, thereby improving the assembly stability of the connecting plate 121, and thus ensuring the assembly stability of the subsequent radar sensor host 2, as well as ensuring the accurate detection of the radar sensor host 2.
[0033] The connection module 12 includes a plate connector, and the other end of the connecting plate 121 is hinged to the plate connector. The plate connector is mated and fixedly arranged with the mounting plate 13. In this way, the presentation angle of the mounting plate 13 can be adjusted by the cooperation of the plate connector and the connecting plate 121, thereby adjusting the presentation angle of the radar sensor host 2.
[0034] The mounting plate 13 is provided with a positioning block 15, which is arranged in a protruding manner in the direction away from the mounting plate 13. The radar sensor host 2 includes a host housing, which has a housing groove. The positioning block 15 is embedded in the housing groove and is used to position the host housing.
[0035] Under the action of the positioning block 15, the assembly position between the radar sensor host 2 and the bracket 1 is positioned and the offset is limited, thereby improving the assembly accuracy between the radar sensor host 2 and the bracket 1.
[0036] The radar sensor host 2 includes a back panel, which is assembled with the host housing and is located inside the host housing. The back panel and the host housing form an outer cavity, which is filled with an organic adhesive layer. The adhesive layer is used to adhere the radar sensor host 2 to the mounting plate 13. The adhesive layer and the outer edge of the host housing simultaneously abut against the mounting plate 13.
[0037] In this way, the adhesive layer is used to bond the radar sensor host 2 to the mounting plate 13. At the same time, the adhesive layer is not exposed under the outer extension of the host housing, which improves the adhesion effect of the adhesive layer. Furthermore, the outer extension of the host housing simultaneously abuts against the mounting plate 13, which improves the adhesion effect between the host housing and the mounting plate 13 and enhances the assembly stability of the radar sensor host 2.
[0038] The main housing has multiple shell edge slots, which are arranged in a through manner and are connected to the adhesive layer. The shell edge slots are also connected to the outside. When it is necessary to disassemble the radar sensor main unit 2, a tool is inserted into the shell edge slot, and then prying force is applied to facilitate the disassembly of the radar sensor main unit 2 and the bracket 1, so as to replace the radar sensor main unit 2 or the bracket 1.
[0039] The mounting frame 11 has an inner frame groove, which is arranged correspondingly to the connecting module, and the inner frame groove is used to accommodate the connecting module. In this way, in the stacked state, the connecting module is located in the inner frame groove, and the mounting frame 11 and the machine mounting plate 13 are stacked together, which reduces the overall space occupied. At the same time, it helps to reduce the weight of the mounting frame 11, reduce the overall weight, and improve the hanging stability.
[0040] The connecting plate 121 has a front plate surface and a rear plate surface, which are arranged correspondingly. The front plate surface is used to lay flat and abut against the machine mounting plate 13, and the rear plate surface has multiple plate grooves, which are arranged in a recessed manner along the direction towards the front plate surface. In this way, the plate grooves help to reduce the weight of the connecting plate 121 and improve the hanging stability.
[0041] The various slots are arranged in an array, with uniform weight distribution, to avoid uneven weight distribution affecting the hanging effect of bracket 1.
[0042] The bracket 1 can be hung on the wall or on a cabinet.
[0043] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A side-mounted radar sensor device, characterized in that The bracket and radar sensor host are used for detection, the bracket is fixed in a hanging manner, and the bracket and the radar sensor host are arranged in an assembled manner; the bracket comprises a frame fixing frame, a connecting module and a machine fixing plate, the frame fixing frame is fixed in a hanging manner, the two ends of the connecting module are respectively arranged in an active docking manner with the frame fixing frame and the machine fixing plate, the machine fixing plate is used for assembling the radar sensor host, and the connecting module is arranged in a swinging manner under the action of an external force, and the connecting module is used for adjusting the assembly angle and assembly position of the radar sensor host.
2. The side-mounted radar sensor device of claim 1, wherein, The connecting module comprises a connecting plate and a frame connecting seat, one end of the connecting plate is arranged in a hinged manner with the frame connecting seat, and the frame connecting seat is arranged in an assembled manner with the frame fixing frame.
3. The side-mounted radar sensor device of claim 2, wherein, The frame connecting seat comprises a frame seat head and a frame seat piece, the frame seat head and the frame seat piece are arranged in a docking and integrated manner, and the frame seat head is arranged in a hinged manner with the end of the connecting plate; the frame fixing frame is provided with a fixed frame groove, the fixed frame groove is arranged in a recessed manner, the frame seat piece is embedded in the fixed frame groove, and a fixing member extends through the frame seat piece and is threadedly connected with the frame fixing frame.
4. The side-mounted radar sensor device of claim 3, wherein, The frame fixing frame is provided with a buckling block, the frame seat piece is provided with a seat piece groove, the seat piece groove is arranged in a through manner, the buckling block is embedded in the seat piece groove, and the buckling block is arranged in a buckling manner with the frame seat piece.
5. A side-mounted radar sensor device according to any one of claims 2-4, characterized in that, The connecting module comprises a plate connecting seat, the other end of the connecting plate is arranged in a hinged manner with the plate connecting seat, and the plate connecting seat is arranged in a docking and fixed manner with the machine fixing plate.
6. A side-mounted radar sensor device according to any one of claims 1-4, characterized in that The machine fixing plate is provided with a positioning block, the positioning block is arranged in a protruding manner away from the machine fixing plate, the radar sensor host comprises a host shell, the host shell is provided with a shell groove, the positioning block is embedded in the shell groove, and the positioning block is used for positioning the host shell.
7. The side-mounted radar sensor device of claim 6, wherein, The radar sensor host comprises a machine back plate, the machine back plate is arranged in an assembled manner with the host shell, and the machine back plate is located in the interior of the host shell; the machine back plate and the host shell form an outer machine cavity, the outer machine cavity is filled with a machine adhesive layer, the machine adhesive layer is used for adhesively assembling the radar sensor host and the machine fixing plate; the machine adhesive layer and the extension of the host shell synchronously abut against the machine fixing plate.
8. The side-mounted radar sensor device of claim 7, wherein, The host shell is provided with a plurality of shell edge grooves, the shell edge grooves are arranged in a through manner, and the shell edge grooves are arranged in a communication manner with the machine adhesive layer; the shell edge grooves are arranged in a conductive manner with the outside.
9. A side-mountable radar sensor device according to any one of claims 1-4, characterized in that, The frame fixing frame is provided with an inner frame groove, the inner frame groove is arranged in a corresponding manner with the connecting module, and the inner frame groove is used for accommodating the connecting module.
10. A side-mounted radar sensor device according to any one of claims 2-4, characterized in that, The connecting plate is provided with a front plate face and a rear plate face, the front plate face and the rear plate face are arranged in a corresponding manner, the front plate face is used for flatly abutting against the machine fixing plate, and the rear plate face is provided with a plurality of plate grooves, the plate grooves are arranged in a recessed manner along a direction towards the front plate face.
Citation Information
Patent Citations
Millimeter wave radar sensor mounting bracket
CN220465382U