A stable security monitoring lighting device

CN224635360UActive Publication Date: 2026-08-14WUHAN PUDA WEIYE TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-06
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

这种安装方式效率低下,尤其是在大面积监控区域需要安装较多LED灯管时,操作人员需要花费大量的时间和精力进行重复操作,不仅增加了安装成本,还可能因安装时间过长影响场所的正常使用

Benefits of technology

[0014]在需要同时安装多个LED灯管时,多个限位块通过连接架连接成整体,操作人员可以一次性对多个限位块进行移动和定位,大大提高了安装效率,节省了安装时间。例如在一些大面积的监控区域,需要安装较多LED灯管,整体操作的连接架设计能让安装过程更加流畅高效。而当某个LED灯管出现故障需要单独更换或安装时,只需拆下连接架,就能单独操作对应的限位块,不会影响其他限位块和LED灯管的安装状态,方便快捷,降低了维护和维修的难度与成本。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224635360U_ABST
    Figure CN224635360U_ABST
Patent Text Reader

Abstract

This utility model relates to the field of lighting technology, and in particular to a stable security monitoring lighting device. Its technical solution includes: side seats on both sides of a back plate, with mounting slots on the side seats containing electrode posts; a push-button switch is located at a corresponding position on the back plate. Fixing plates are located on both sides of the LED tube, with electrode plates inside the plates, electrically connected to the electrode posts. The electrode posts are electrically connected to an external switch via the push-button switch. The push-button switch detects whether an LED tube is installed in the mounting slot; only when properly installed is the corresponding electrode post connected to an external power supply. Limiting blocks are mounted on both ends of the back plate via the side seats. The side seats have slots, with one end of the U-shaped limiting block inserted into the slot and the other end covering the fixing plate, used to limit the position of the LED tube in the mounting slot. This utility model, through the above structural innovation, improves installation convenience and stability, ensures circuit safety, achieves flexible control, and meets the high-efficiency and reliable requirements of security monitoring lighting.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of lighting technology, specifically to a stable security monitoring lighting device. Background Technology

[0002] In today's society, security monitoring systems are widely used in various locations, such as shopping malls, banks, factories, and residential communities, to ensure the safety and order of these places. As an important component of security monitoring systems, the stability of lighting installations, ease of use, and maintenance costs directly affect the monitoring effectiveness and overall operational efficiency.

[0003] Currently, common security monitoring lighting devices on the market typically require operating the limiting components for each LED tube individually when installing multiple LED tubes. This installation method is inefficient, especially when installing a large number of LED tubes in a large monitored area. Operators need to spend a lot of time and effort on repetitive operations, which not only increases installation costs but may also disrupt the normal use of the site due to excessive installation time. For example, in the process of upgrading the monitoring area of ​​some large shopping malls, the need to install a large number of LED tubes means that traditional installation methods can lead to extended construction periods and affect the mall's normal operations.

[0004] Furthermore, when a single LED tube malfunctions and needs to be replaced or installed, the existing limiting structure is often interconnected with the limiting components of other LED tubes, making it difficult to operate independently. Operators may need to disassemble multiple related components to replace a single LED tube, which not only increases the difficulty of maintenance but may also affect other normally functioning LED tubes, further increasing maintenance costs and repair time. Utility Model Content

[0005] To address the shortcomings of existing technologies, this utility model provides a stable and secure security monitoring lighting device, which solves the problems mentioned in the background art.

[0006] The solution to the above-mentioned technical problems provided by this utility model is as follows:

[0007] A stable security monitoring lighting device includes:

[0008] The back plate has side seats on both sides, and mounting grooves are provided on the side seats. Electrode posts are provided in the mounting grooves, and a push switch is provided on the back plate at the position corresponding to the mounting groove.

[0009] The LED tube has fixing plates on both sides and electrode plates inside the fixing plates. The LED tube is electrically connected to the electrode post through the electrode plate. The electrode post is electrically connected to an external switch through a push switch. The push switch is used to detect whether an LED tube is installed in the current mounting slot. Only when the LED tube in the mounting slot is installed in place will the corresponding electrode post be connected to the external power supply.

[0010] The back plate has a limiting block installed at both ends via side seats. The side seats have slots. The limiting block is U-shaped, with one end inserted into the slot and the other end of the slot covered by the fixing plate. It is used to limit the LED tube installed in the mounting slot.

[0011] Based on the above technical solution, the present invention can be further improved as follows.

[0012] Furthermore, multiple limiting blocks are provided, each with a positioning pin. The multiple limiting blocks are connected by a connecting frame, which is U-shaped and engages with the multiple positioning pins, thus connecting the multiple limiting blocks into a whole. When the connecting frame is removed, it is convenient to operate the limiting blocks individually and to install individual LED tubes.

[0013] The beneficial effects of adopting the above-mentioned further solutions are:

[0014] When multiple LED tubes need to be installed simultaneously, multiple limit blocks are connected as a whole by a connecting frame. Operators can move and position multiple limit blocks at once, greatly improving installation efficiency and saving installation time. For example, in some large monitoring areas where many LED tubes need to be installed, the integrated connecting frame design makes the installation process smoother and more efficient. When an LED tube malfunctions and needs to be replaced or installed separately, simply remove the connecting frame to operate the corresponding limit block independently without affecting the installation status of other limit blocks and LED tubes. This is convenient, quick, and reduces the difficulty and cost of maintenance and repair.

[0015] Furthermore, the limiting block has a slider at one end located inside the slot, and the limiting block slides within the slot via the slider.

[0016] The beneficial effects of adopting the above-mentioned further solutions are:

[0017] The slider design provides precise guidance for the sliding of the limit block within the slot, allowing it to slide smoothly along a predetermined trajectory. This avoids issues such as jamming or misalignment during sliding, ensuring the accuracy and stability of the limit block installation. Simultaneously, the sliding design makes the limit block's position adjustment more flexible. Operators can easily slide the limit block to the appropriate position according to actual installation needs, effectively limiting the LED tube and improving the adaptability and reliability of the device.

[0018] Furthermore, a magnet is embedded in the side seat, and the limiting block is fixed by magnetic attraction after sliding.

[0019] The beneficial effects of adopting the above-mentioned further solutions are:

[0020] The magnetic adsorption fixing method is simple and reliable. After the limiting block slides to the appropriate position, it can be quickly fixed in place, preventing displacement due to vibration, collision, or other reasons during use, thus ensuring a consistently stable limiting effect on the LED tube. Moreover, this fixing method eliminates the need for additional fasteners, reducing the number of parts and lowering the complexity and cost of the device. Furthermore, when it is necessary to disassemble or adjust the limiting block, only a certain external force needs to be applied to overcome the magnetic adsorption force, making operation convenient and quick, and improving the maintainability of the device.

[0021] Furthermore, the electrode post is connected to an external power source in sequence via a push-button switch and an external switch.

[0022] The beneficial effects of adopting the above-mentioned further solutions are:

[0023] This connection method increases the safety and controllability of the circuit. The external switch acts as a master switch, allowing users to centrally control the power supply of the entire device. Power can be cut off at any time when the lighting is not in use, saving energy. The push-button switch, as a local control switch, detects whether the LED tube is properly installed. Only when the LED tube is properly installed will the electrode post be connected to the external power supply, avoiding safety hazards such as short circuits and leakage caused by improper installation of the LED tube, thus ensuring user safety.

[0024] Furthermore, there are multiple mounting slots, and each mounting slot is equipped with a corresponding electrode post and a push switch to accommodate the installation needs of multiple LED tubes.

[0025] The beneficial effects of adopting the above-mentioned further solutions are:

[0026] The multiple mounting slots allow for flexible installation of varying numbers of LED tubes to meet specific lighting needs, enhancing the device's versatility and adaptability. Whether it's a small monitoring area requiring only a few LED tubes or a large area needing multiple LED tubes, this device can meet the requirements. Furthermore, each mounting slot is equipped with a corresponding electrode post and a push-button switch, ensuring that each LED tube can be controlled independently without interference. If one LED tube malfunctions, it will not affect the normal operation of other LED tubes, facilitating troubleshooting and maintenance.

[0027] This utility model provides a stable and easy-to-install security monitoring lighting device. It has the following features:

[0028] Beneficial effects:

[0029] A push-button switch is installed within the mounting slot. This switch is triggered only when the LED tube is properly installed, connecting the electrode post to the external power supply. This design prevents power from being applied before the LED tube is fully installed, effectively preventing circuit failures and short circuits caused by poor contact, significantly improving installation stability and safety. For example, in locations with extremely high equipment stability requirements, such as bank surveillance areas, if the lighting device malfunctions due to unstable installation, it may affect the monitoring effect. This device, through precise detection by the push-button switch, ensures that the lighting device always operates stably.

[0030] The limiting block slides within the slot via a slider, and a magnet is embedded in the side seat, allowing the limiting block to be held in place by the magnet after sliding. This dual-fixing method ensures the limiting block is securely held in the correct position, reliably limiting the LED tube and preventing it from shaking or falling off during use due to vibration or impact. For example, in noisy factory workshops where equipment operation generates vibration, the limiting block design of this device ensures stable installation of the LED tube even in complex environments.

[0031] The back panel features multiple mounting slots, each equipped with a corresponding electrode post and push-button switch, accommodating the installation needs of multiple LED tubes. Users can flexibly choose the number of LED tubes to install based on actual lighting requirements, whether it's a small monitoring area requiring only a few LED tubes or a large area needing multiple LED tubes. For example, in a large shopping mall's monitoring area, different areas have different lighting brightness requirements; LED tubes can be installed in the appropriate mounting slots according to the actual situation. Multiple limit blocks are connected as a whole via a connecting bracket, facilitating unified operation and improving installation efficiency. Simultaneously, when the connecting bracket is removed, the limit blocks can be operated individually, facilitating the installation and replacement of individual LED tubes. This is highly practical in daily maintenance and repair; when an LED tube malfunctions and needs replacement, there's no need to disassemble the entire limit block structure; simply remove the connecting bracket and operate the corresponding limit block individually to complete the replacement, significantly saving maintenance time and costs. Attached Figure Description

[0032] The accompanying drawings, which are included to provide a further understanding of the present invention and form part of this application, illustrate exemplary embodiments of the present invention and are used to explain the present invention, but do not constitute an undue limitation of the present invention.

[0033] In the attached diagram:

[0034] Figure 1 This is a schematic diagram of the main appearance of this utility model;

[0035] Figure 2 This is a schematic diagram of the unfolded appearance of the limiting block of this utility model;

[0036] Figure 3 This is a schematic diagram of the appearance of the limiting block of this utility model;

[0037] Figure 4 This is a schematic diagram of the back panel of this utility model.

[0038] The attached diagram lists the components represented by each number as follows:

[0039] 1. Backplate; 101. Side mount; 102. Electrode post; 103. Magnet; 104. Mounting groove; 105. Slot; 106. Push switch; 2. Limit block; 201. Connecting bracket; 202. Positioning pin; 203. Slider; 3. LED tube; 301. Fixing plate. Detailed Implementation

[0040] 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.

[0041] Please see Figures 1 to 4 As shown, the embodiments provided by this utility model are as follows:

[0042] Example 1

[0043] A stable security monitoring lighting device includes:

[0044] The back plate 1 has side seats 101 on both sides, and mounting slots 104 are formed on the side seats 101. Electrode posts 102 are installed in the mounting slots 104. The electrode posts 102 are connected to the external power supply through a push-button switch 106 and an external switch in sequence. This connection method increases the safety and controllability of the circuit. The external switch serves as a master control switch, allowing users to control the power supply of the entire device in a unified manner. The power can be cut off at any time when the lighting device is not in use, saving energy. The push-button switch 106, acting as a local control switch, detects whether the LED tube is installed correctly. Only when the LED tube is properly installed will the electrode post 102 be connected to the external power supply, preventing safety hazards such as short circuits and leakage caused by improper installation, thus ensuring user safety. The back panel 1 has push-button switches 106 corresponding to the mounting slots 104. There are multiple mounting slots 104, each containing a corresponding electrode post 102 and push-button switch 106 to accommodate the installation of multiple LED tubes 3. The design of multiple mounting slots 104 allows the device to flexibly install different numbers of LED tubes according to actual lighting needs, improving its versatility and adaptability. Whether it's a small monitoring area requiring only a few LED tubes or a large area requiring multiple LED tubes, this device can meet the requirements. In addition, each mounting slot 104 is equipped with a corresponding electrode post 102 and a push switch 106, which ensures that each LED tube can be controlled independently and does not interfere with each other. When a certain LED tube fails, it will not affect the normal operation of other LED tubes, which facilitates troubleshooting and maintenance.

[0045] LED tube 3 has a fixing plate 301 on both sides, and an electrode plate is provided in the fixing plate 301. The LED tube 3 is electrically connected to the electrode post 102 through the electrode plate. The electrode post 102 is electrically connected to the external switch through the push switch 106. The push switch 106 is used to detect whether the LED tube 3 is installed in the current mounting slot 104. Only when the LED tube 3 in the mounting slot 104 is installed in place will the corresponding electrode post 102 be connected to the external power supply.

[0046] Limiting block 2 is installed at both ends of the back plate 1 via side seat 101. The side seat 101 has a slot 105. The limiting block 2 is U-shaped, and one end of the limiting block 2 is inserted into the slot 105. The other end of the slot 105 is covered on the fixing plate 301, which is used to limit the LED tube 3 installed in the mounting groove 104.

[0047] Example 2

[0048] To further improve the convenience, stability, and reliability of security monitoring lighting devices during installation, maintenance, and use, for example, such as Figures 1 to 4 As shown, this utility model also includes:

[0049] Multiple limit blocks 2 are provided, each equipped with a positioning pin 202. These limit blocks 2 are connected by a connecting frame 201, which is U-shaped and engages with the positioning pins 202, thus connecting the limit blocks 2 into a single unit. When the connecting frame 201 is removed, the limit blocks 2 can be operated individually, facilitating the installation of individual LED tubes 3. When multiple LED tubes need to be installed simultaneously, the multiple limit blocks 2 connected by the connecting frame 201 allow operators to move and position them all at once, significantly improving installation efficiency and saving time. For example, in large monitoring areas requiring the installation of numerous LED tubes, the integrated operation design of the connecting frame 201 makes the installation process smoother and more efficient. When an LED tube malfunctions and needs to be replaced or installed separately, the corresponding limit block 2 can be operated independently simply by removing the connecting bracket 201. This does not affect the installation status of other limit blocks 2 and LED tubes, making it convenient and quick, and reducing the difficulty and cost of maintenance and repair. One end of the limit block 2 located in the slot 105 is equipped with a slider 203. The limit block 2 slides in the slot 105 by the slider 203. The design of the slider 203 provides precise guidance for the sliding of the limit block 2 in the slot 105, so that the limit block 2 can slide smoothly along the predetermined trajectory, avoiding problems such as jamming or offset during the sliding process, and ensuring the accuracy and stability of the installation of the limit block 2. Meanwhile, the sliding limit design allows for more flexible adjustment of the limit block 2's position. Operators can easily slide the limit block 2 to a suitable position according to actual installation needs, effectively limiting the LED tube and improving the device's adaptability and reliability. A magnet 103 is embedded in the side seat 101. After the limit block 2 slides, it is attracted and fixed by the magnet 103. The magnet 103's attraction and fixing method is simple and reliable. After the limit block 2 slides to the appropriate position, it can quickly fix the limit block 2, preventing displacement due to vibration, collision, or other reasons during use, ensuring a consistently stable limiting effect on the LED tube. Moreover, this fixing method does not require additional fasteners, reducing the number of parts and lowering the device's complexity and cost. Furthermore, when it is necessary to disassemble or adjust the limit block 2, only a certain external force needs to be applied to overcome the attraction force of the magnet 103, making operation convenient and quick, and improving the device's maintainability.

[0050] Working principle:

[0051] Fix the backplate 1 in a suitable position to ensure that the side seats 101 on both sides are in a stable state.

[0052] The operator aligns the mounting plates 301 on both sides of the LED tube with the mounting slots 104 on the side seat 101 of the back plate 1, and inserts the LED tube into the mounting slots 104. During insertion, the electrode plates inside the LED tube mounting plates 301 contact the electrode posts 102 in the mounting slots 104. When the LED tube is in place, it applies pressure to the corresponding push-button switch 106 in the mounting slots 104. The push-button switch 106 detects that an LED tube is installed in the mounting slot, at which point the electrode posts 102 are electrically connected to the external switch via the push-button switch 106, and thus to the external power supply, allowing the LED tube to operate normally. This design ensures that only properly installed LED tubes can be connected to the power supply, improving installation stability and safety.

[0053] Multiple limiting blocks 2 are connected as a whole by a connecting frame 201. The connecting frame 201 is U-shaped and is snapped onto the positioning pins 202 on the multiple limiting blocks 2. The operator inserts the connected limiting blocks 2 into the slots 105 on the side seat 101. One end of the limiting block 2 in the slot 105 is equipped with a slider 203. The limiting block 2 slides within the slot 105 by the slider 203 until the other end of the limiting block 2 covers the fixing plate 301, which limits the LED tube installed in the mounting groove 104 and prevents the LED tube from shaking or falling off during use. A magnet 103 is embedded in the side seat 101. When the limiting block 2 slides to the appropriate position, the magnet 103 fixes the limiting block 2 in place, ensuring the stability of the limiting block 2.

[0054] If it is necessary to operate the limiting block 2 separately to install a single LED tube, the operator can remove the connecting bracket 201. After removing the connecting bracket 201, the limiting block 2 can be operated separately to slide within the slot 105 to complete the installation of a single LED tube. After installation, the limiting block 2 is fixed again by the magnet 103.

[0055] Throughout the installation and workflow, the detection mechanism of the push-button switch 106 ensures that only properly installed LED tubes can be connected to the power supply, improving the safety and stability of the device. The limit block 2, through the sliding of the slider 203 within the slot 105 and the magnetic attraction of the magnet 103, reliably limits the LED tubes, preventing them from shaking or falling off. The design of the connecting bracket 201 facilitates the unified operation of multiple limit blocks 2, while also allowing for individual operation of each limit block 2 to meet different installation requirements. These designs collectively ensure the stable operation of the security monitoring lighting device.

[0056] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It will be apparent to those skilled in the art that this utility model is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or basic characteristics of this utility model. Therefore, the embodiments should be considered exemplary and non-limiting in all respects. The scope of this utility model is defined by the appended claims rather than the foregoing description, and thus all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this utility model. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0057] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A security surveillance lighting fixture that is stable to install, characterized by, include: A back plate (1) is provided with side seats (101) on both sides of the back plate (1). A mounting groove (104) is provided on the side seat (101). An electrode post (102) is provided in the mounting groove (104). A push switch (106) is provided on the back plate (1) at a position corresponding to the mounting groove (104). LED tube (3), with fixing plates (301) on both sides of the LED tube (3) and electrode plates inside the fixing plates (301). The LED tube (3) is electrically connected to the electrode post (102) through the electrode plate. The electrode post (102) is electrically connected to the external switch through the push switch (106). The push switch (106) is used to detect whether the LED tube (3) is installed in the current mounting slot (104). Only when the LED tube (3) in the mounting slot (104) is installed in place will the corresponding electrode post (102) be connected to the external power supply. Limiting block (2): Limiting blocks (2) are installed at both ends of the back plate (1) via side seats (101). The side seats (101) have slots (105). The limiting block (2) is U-shaped, and one end of the limiting block (2) is inserted into the slot (105). The other end of the slot (105) is covered on the fixing plate (301) for limiting the LED tube (3) installed in the mounting groove (104).

2. The security monitoring lighting device with stable installation according to claim 1, characterized in that: Multiple limiting blocks (2) are provided. Each limiting block (2) is provided with a positioning pin (202). Multiple limiting blocks (2) are connected by a connecting frame (201). The connecting frame (201) is U-shaped and is snapped onto multiple positioning pins (202) to connect multiple limiting blocks (2) into a whole. When the connecting frame (201) is removed, it is convenient to operate the limiting block (2) individually and to install a single LED tube (3).

3. The security surveillance lighting device of claim 1, wherein: The limiting block (2) is provided with a slider (203) at one end inside the slot (105), and the limiting block (2) slides in the slot (105) by means of the slider (203).

4. The security surveillance lighting device of claim 1, wherein: A magnet (103) is embedded in the side seat (101), and the limiting block (2) is fixed by the magnet (103) after sliding.

5. The security surveillance lighting device of claim 1, wherein: The electrode post (102) is connected to an external power source via a push switch (106) and an external switch in sequence.

6. The security surveillance lighting device of claim 1, wherein: The number of mounting slots (104) is multiple, and each mounting slot (104) is provided with a corresponding electrode post (102) and a push switch (106) to accommodate the installation requirements of multiple LED tubes (3).