A sensor for building intelligent monitoring convenient to install

By designing an easy-to-install building intelligent monitoring sensor, and adopting an installation structure and auxiliary fixing structure, the problem of inconvenient sensor installation on metal surfaces is solved, achieving fast and flexible installation and stable connection, and ensuring the stability of signal transmission.

CN224454172UActive Publication Date: 2026-07-03SHENZHEN ZHONGDIAN RUIDA INTELLIGENT TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN ZHONGDIAN RUIDA INTELLIGENT TECH CO LTD
Filing Date
2025-05-28
Publication Date
2026-07-03

AI Technical Summary

Technical Problem

Existing building intelligent monitoring sensors require screw holes to be drilled when installed on metal surfaces, which makes installation inconvenient and the fixed position can easily lead to uneven holes.

Method used

A sensor comprising an installation structure and an auxiliary fixing structure is designed. The installation structure enables flexible adjustment and magnetic installation of the sensor through components such as grooves, movable slots, movable blocks, mounting plates, and magnets. The auxiliary fixing structure ensures the stability of the connector through springs and pressure plates.

Benefits of technology

It enables rapid and flexible installation of sensors, has high adaptability, avoids uneven holes and loose connections, and ensures stable signal transmission.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses an easy-to-install sensor for intelligent building monitoring, belonging to the field of sensor technology. It includes a sensor body with a sensing head and a back plate on its back side, as well as a connector. Through a designed mounting structure, movable blocks are set in grooves and slots. These, in conjunction with adjusting screws, allow for adjustment of the positions of the movable blocks and mounting plate. The mounting plate is connected to the movable blocks via pins, threaded posts, and other structures, allowing for rotational adjustment to better align the mounting holes with the screw holes at the mounting location, facilitating quick and easy installation of the entire sensor. Magnets are placed on the mounting plate, allowing the sensor to be magnetically attached to metal objects without the need for drilling, further improving installation flexibility and adaptability. An auxiliary fixing structure applies an elastic force to the connector, enhancing its stability.
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Description

Technical Field

[0001] This utility model relates to the field of sensor technology, and in particular to a sensor for building intelligent monitoring that is easy to install. Background Technology

[0002] Building intelligent monitoring systems are comprehensive solutions integrating technologies such as the Internet of Things (IoT), Artificial Intelligence (AI), big data, and cloud computing. They aim to improve building safety management efficiency, energy utilization, and the living experience. Sensors are key devices for perceiving the physical world; by collecting environmental data, equipment status, and personnel behavior information, they provide a foundation for intelligent decision-making.

[0003] Existing building intelligent monitoring sensors are fixed during installation using screws passed through holes in the sensor. However, traditional sensors can only be fixed with screws. When it is necessary to place the sensor on a metal surface, screw holes need to be drilled in the metal surface for installation, making the sensor installation extremely inconvenient. Furthermore, the position of the screw holes used for installation is fixed and cannot be adjusted according to the actual situation. If the position of the screw holes is misaligned, the holes will be uneven during installation, which will affect the normal installation and fixation, making the operation time-consuming and laborious. Utility Model Content

[0004] The main objective of this invention is to provide a sensor for intelligent building monitoring that is easy to install, which can effectively solve the problems in the background technology.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0006] A sensor for building intelligent monitoring that is easy to install includes a sensor body, a sensing head on the sensor body, a back plate on the back of the sensor body, a connector on the sensor body with a cable on the connector, an installation structure on the back plate, and an auxiliary fixing structure on the sensor body near the connector.

[0007] Preferably, the sensor body is fixed to the back plate with screws, and heat dissipation holes are provided on the sensor body.

[0008] Preferably, the mounting structure is symmetrically arranged on the back plate, and the auxiliary fixing structure contacts the connector.

[0009] Preferably, the mounting structure includes a groove, a movable slot, a movable block, a mounting plate, and a magnet. The groove and the movable slot are formed on the back plate and are connected. The movable block is installed in the groove and the movable slot. The mounting plate is connected to the movable block. The magnet is embedded in the mounting plate.

[0010] Preferably, the mounting structure further includes an adjusting screw, an adjusting wheel, a pin, a threaded post, a locking block, and a mounting hole. The adjusting screw and the adjusting wheel are fixedly connected, and the adjusting screw is installed in a groove. The pin is fixed on the movable block and connected to the threaded post. The locking block is threadedly connected to the threaded post. The mounting hole is formed on the movable block and the magnet.

[0011] Preferably, the mounting plate is sleeved on the pin, and the mounting plate is rotatably connected to the movable block via the pin, and the adjusting screw is threadedly connected to the movable block.

[0012] Preferably, the auxiliary fixing structure includes a fixing frame, a movable column, a pressure plate, a spring, and a U-shaped hole. The fixing frame is fixed to the sensor body, the movable column and the pressure plate are fixedly connected, and the movable column passes through the fixing frame. The spring is sleeved on the movable column and is located between the fixing frame and the pressure plate. A limiting block is provided at the end of the movable column, and the U-shaped hole is opened on the pressure plate.

[0013] Compared with existing technologies, this utility model has the following advantages: This easy-to-install building intelligent monitoring sensor, through its installation structure, incorporates movable blocks in grooves and slots. These blocks, used in conjunction with adjusting screws, allow for adjustment of the positions of the movable blocks and mounting plate. The mounting plate, connected to the movable blocks via pins and threaded posts, can be rotated for better alignment of the mounting holes with the screw holes at the mounting location, facilitating quick and easy sensor installation. This also improves installation adaptability and flexibility. Magnets on the mounting plate allow the sensor to be magnetically attached to metal objects, eliminating the need for drilling and further enhancing installation flexibility and adaptability. An auxiliary fixing structure applies elastic force to the connector, improving its stability and preventing loosening, thus ensuring stable signal transmission. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0015] Figure 2 This is a schematic diagram of the structure of the back plate of this utility model;

[0016] Figure 3 This is a schematic diagram of the installation structure of this utility model;

[0017] Figure 4 This is a schematic diagram of the structure of the mounting plate of this utility model;

[0018] Figure 5 This is a schematic diagram of the auxiliary fixing structure of this utility model.

[0019] In the diagram: 1. Sensor body; 2. Sensor head; 3. Connector; 4. Cable; 5. Backplate; 6. Mounting structure; 601. Groove; 602. Movable groove; 603. Movable block; 604. Mounting plate; 605. Magnet; 606. Adjusting screw; 607. Adjusting wheel; 608. Pin; 609. Threaded post; 610. Locking block; 611. Mounting hole; 7. Auxiliary fixing structure; 701. Fixing frame; 702. Movable post; 703. Pressure plate; 704. Spring; 705. U-shaped hole; 8. Heat dissipation hole. Detailed Implementation

[0020] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0021] like Figures 1-5 As shown, an easy-to-install sensor for intelligent building monitoring includes a sensor body 1, a sensing head 2 on the sensor body 1, a back plate 5 on the back of the sensor body 1, a connector 3 on the sensor body 1, and a cable 4 on the connector 3. A mounting structure 6 is provided on the back plate 5, and an auxiliary fixing structure 7 is provided on the sensor body 1 near the connector 3. The sensor body 1 is fixed to the back plate 5 with screws, and heat dissipation holes 8 are provided on the sensor body 1. The mounting structure 6 is symmetrically arranged on the back plate 5, and the auxiliary fixing structure 7 contacts the connector 3.

[0022] During sensor installation, holes are drilled in the building wall and connectors are installed. The backplate 5 is then attached to the wall, and the positions of the corresponding components in the mounting structure 6 are adjusted. Screws are then used to connect the mounting structure 6 to the connectors on the wall, thus securing the sensor. The connector 3 is connected to the sensor body 1, and the end of the cable 4 is connected to the intelligent monitoring system. The auxiliary fixing structure 7 is used to apply force to the connector 3, and then the sensor is put into use. During operation, the sensing head 2 on the sensor body 1 monitors temperature and humidity. The monitoring results are fed back to the intelligent monitoring system via the cable 4, ensuring intelligent control of the building. During sensor operation, heat is dissipated through the heat dissipation holes 8 to ensure normal sensor operation.

[0023] According to the above implementation scheme, the mounting structure 6 includes a groove 601, a movable groove 602, a movable block 603, a mounting plate 604, and a magnet 605. The groove 601 and the movable groove 602 are formed on the back plate 5, and the groove 601 and the movable groove 602 are connected. The movable block 603 is installed in the groove 601 and the movable groove 602. The mounting plate 604 is connected to the movable block 603. The magnet 605 is embedded in the mounting plate 604. The mounting structure 6 also includes an adjusting screw 606, an adjusting wheel 607, a pin 608, a threaded post 609, a locking block 610, and a mounting hole 611. The adjusting screw 606 and the adjusting wheel 607 are fixedly connected, and the adjusting screw 606 is installed in the groove 601. The pin 608 is fixed on the movable block 603, and the pin 608 is connected to the threaded post 609. The locking block 610 is threadedly connected to the threaded post 609. The mounting hole 611 is formed on the movable block 603 and the magnet 605. Mounting plate 604 is sleeved on pin 608, and mounting plate 604 is rotatably connected to movable block 603 through pin 608. Adjusting screw 606 is threadedly connected to movable block 603.

[0024] When installing the sensor, the position of the mounting hole 611 on the mounting plate 604 can be adjusted according to the location of the holes on the wall. During adjustment, the adjusting screw 606 is rotated by the adjusting wheel 607. The adjusting screw 606 drives the movable block 603 to move within the groove 601 and the movable slot 602, thereby adjusting the position of the mounting plate 604. The mounting plate 604 can also be rotated. During operation, the locking block 610 on the threaded post 609 is loosened, and the mounting plate 604 rotates relative to the movable block 603 via the pin 608, thus adjusting the position of the mounting hole 611. After adjustment, the screw passes through the mounting hole 611 and connects to the corresponding structure to fix the sensor. If the sensor needs to be mounted on a metal object, it can be magnetically attached using the magnet 605 on the mounting plate 604, making sensor installation convenient and quick.

[0025] According to the above implementation scheme, the auxiliary fixing structure 7 includes a fixing frame 701, a movable column 702, a pressure plate 703, a spring 704, and a U-shaped hole 705. The fixing frame 701 is fixed on the sensor body 1. The movable column 702 and the pressure plate 703 are fixedly connected, and the movable column 702 passes through the fixing frame 701. The spring 704 is sleeved on the movable column 702 and is located between the fixing frame 701 and the pressure plate 703. A limiting block is provided at the end of the movable column 702, and the U-shaped hole 705 is opened on the pressure plate 703.

[0026] When installing connector 3, the movable column 702 pulls the pressure plate 703 to move. The pressure plate 703 compresses the spring 704 to make room. After connecting connector 3 to sensor body 1, cable 4 is located in U-shaped hole 705. After releasing pressure plate 703, under the action of spring 704, pressure plate 703 moves on fixed frame 701 through movable column 702 until pressure plate 703 contacts connector 3 and applies force. This can prevent connector 3 from loosening and falling off, ensuring connection stability.

[0027] It should be noted that, through the installation structure 6, a movable block 603 is set in the groove 601 and the movable slot 602. Used in conjunction with the adjusting screw 606, the position of the movable block 603 and the mounting plate 604 can be adjusted. Simultaneously, the mounting plate 604 is connected to the movable block 603 via a pin 608, threaded post 609, and other structures, allowing for rotational adjustment. This ensures that the mounting hole 611 aligns better with the screw hole at the mounting location, facilitating quick installation of the entire sensor and improving installation adaptability and flexibility. A magnet 605 is set on the mounting plate 604, allowing the sensor to be magnetically attached to a metal object, eliminating the need for drilling holes and further enhancing installation flexibility and adaptability. The auxiliary fixing structure 7 applies an elastic force to the connector 3, improving its stability and preventing loosening, thus ensuring stable signal transmission.

[0028] The foregoing describes the working principle, features, and beneficial effects of this utility model. Those skilled in the art will understand from the foregoing that it does not limit the utility model. The embodiments and description above illustrate the basic principles and features of this utility model. Various changes and improvements can be made to this utility model while remaining consistent with its concept, and all such improvements should fall within the scope of protection claimed by this utility model.

Claims

1. A sensor for easy installation in building intelligent monitoring, comprising a sensor body (1), a sensing head (2) provided on the sensor body (1), a back plate (5) provided on the back of the sensor body (1), a connector (3) provided on the sensor body (1), and a cable (4) provided on the connector (3), characterized in that: The back plate (5) is provided with an installation structure (6), and the sensor body (1) is provided with an auxiliary fixing structure (7) near the connector (3). The installation structure (6) includes a groove (601), a movable groove (602), a movable block (603), an installation plate (604), and a magnet (605). The groove (601) and the movable groove (602) are formed on the back plate (5), and the groove (601) and the movable groove (602) are connected. The movable block (603) is installed in the groove (601) and the movable groove (602). The installation plate (604) is connected to the movable block (603). The magnet (605) is embedded in the installation plate (604). The installation structure (6) also includes an adjusting screw (606) and an adjusting wheel (605). 07), pin (608), threaded post (609), locking block (610) and mounting hole (611), the adjusting screw (606) and adjusting wheel (607) are fixedly connected, and the adjusting screw (606) is installed in the groove (601), the pin (608) is fixed on the movable block (603), and the pin (608) is connected to the threaded post (609), the locking block (610) is threadedly connected to the threaded post (609), the mounting hole (611) is opened on the movable block (603) and the magnet (605), the mounting plate (604) is sleeved on the pin (608), and the mounting plate (604) is rotatably connected to the movable block (603) through the pin (608), and the adjusting screw (606) is threadedly connected to the movable block (603).

2. The sensor for intelligent monitoring of a building according to claim 1, wherein: The sensor body (1) is fixed to the back plate (5) by screws, and heat dissipation holes (8) are provided on the sensor body (1).

3. The sensor for intelligent monitoring of a building according to claim 2, wherein: The mounting structure (6) is symmetrically arranged on the back plate (5), and the auxiliary fixing structure (7) contacts the connector (3).

4. The sensor for intelligent monitoring of a building according to claim 3, wherein: The auxiliary fixing structure (7) includes a fixing frame (701), a movable column (702), a pressure plate (703), a spring (704), and a U-shaped hole (705). The fixing frame (701) is fixed on the sensor body (1). The movable column (702) and the pressure plate (703) are fixedly connected, and the movable column (702) passes through the fixing frame (701). The spring (704) is sleeved on the movable column (702), and the spring (704) is located between the fixing frame (701) and the pressure plate (703). The end of the movable column (702) is provided with a limiting block, and the U-shaped hole (705) is opened on the pressure plate (703).