A multifunctional lighting lamp holder support structure

CN224651717UActive Publication Date: 2026-08-18SHENZHEN XINWENXING ELECTRONICS CO LTD
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Patent Information

Application Number
CN202522353974.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-06
Publication Date
2026-08-18
Estimated Expiration
2035-11-06

AI Technical Summary

Technical Problem

然而,市面上主流的摄像头、补光灯和电源适配器多为独立部件,在实际使用中暴露出明显的整合度不足问题

Benefits of technology

[0022] 1. This multi-functional lighting fixture integrates three main modules: a camera bracket, an intelligent supplementary light, and a DC power adapter. It uses a standard screw-in lamp holder for installation and power supply. This eliminates the cumbersome process of separate installation and wiring for traditional security equipment, achieving "plug and play." Users simply screw the fixture into a common lamp holder to simultaneously secure the equipment, obtain power, and prepare for supplementary lighting. This simplifies the installation process, reduces reliance on professional wiring, and eliminates the clutter caused by multiple device cables.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to the field of camera lighting bracket technology and discloses a multifunctional lighting head bracket structure, including: a screw-type lamp head, one end of which is threadedly connected to a DC power supply housing, a DC power board installed inside the DC power supply housing, the DC power board being electrically connected to the screw-type lamp head, an LED light fixedly mounted on the other end of the DC power supply housing, a main board disposed inside the LED light, the LED light being electrically connected to and controlled by the main board; and a rotating assembly fixedly mounted on the other end of the LED light, on which a camera is mounted. This multifunctional lighting head bracket structure integrates three major functional modules: a "camera bracket," a "smart fill light," and a "DC power adapter," and uses a standard screw-type lamp head for installation and power supply. It changes the cumbersome traditional security equipment model that requires separate installation and independent wiring, achieving "plug and play."
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Description

Technical Field

[0001] This utility model relates to the field of camera lighting bracket technology, specifically a multifunctional lighting head bracket structure. Background Technology

[0002] Currently, the demand for home security and intelligent monitoring is growing, and the use of cameras and their lighting equipment is becoming increasingly common. However, most mainstream cameras, lighting equipment, and power adapters on the market are independent components, revealing a significant lack of integration in actual use.

[0003] For ordinary users, installing a complete surveillance system in typical environments such as homes and shops requires not only separately fixing cameras and supplementary lighting equipment, but also dealing with complex cables and multiple power adapters. The entire process is cumbersome and has high requirements for installation location, making it inconvenient. Furthermore, independent supplementary lights have limited functionality and cannot automatically adjust to ambient light, often requiring manual intervention from the user, resulting in a poor user experience. At the same time, the equipment has poor expandability, making it difficult to provide convenient temporary power to other devices such as mobile phones and sensors, limiting its practicality in specific application scenarios and failing to achieve the goal of multi-functional integration.

[0004] Therefore, the market urgently needs an integrated solution that combines convenient installation, intelligent supplemental lighting, flexible adjustment, and extended power supply to meet users' urgent needs for simple, multifunctional, and efficient equipment in real-world scenarios. Utility Model Content

[0005] The purpose of this utility model is to provide a multifunctional lighting lamp holder structure to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a multifunctional lighting lamp holder structure, comprising: a screw-type lamp holder, one end of which is threadedly connected to a DC power supply housing, a DC power supply board installed inside the DC power supply housing, the DC power supply board being electrically connected to the screw-type lamp holder, an LED lamp fixedly mounted at the other end of the DC power supply housing, a main board disposed inside the LED lamp, the LED lamp being electrically connected to and controlled by the main board; a rotating assembly fixedly mounted at the other end of the LED lamp, a camera mounted on the rotating assembly, the rotating assembly driving the camera to perform multi-angle adjustment;

[0007] The screw-in lamp holder screws directly into standard household E27 or E26 screw-in lamp sockets and is connected to 220V AC power. It is "plug and play" and requires no additional wiring.

[0008] The motherboard is equipped with a power output interface, which is led out through a power cable to supply power to external devices.

[0009] After the AC mains power enters the device, it is transmitted to the DC power board sealed inside the DC power supply housing. This power board acts as a power conversion module, safely converting the high-voltage AC mains power into low-voltage DC power (such as 5V / 12V), providing a stable and safe operating power for all subsequent low-voltage electronic components (motherboard, LED lights, camera);

[0010] Furthermore, the rotating assembly includes an axial rotating component and a lateral rotating component. The axial rotating component is fixedly installed on the end of the LED light away from the DC power supply housing. The lateral rotating component is installed on the axial rotating component. The axial rotating component can drive the camera to rotate 360 ​​degrees in the horizontal plane, and the lateral rotating component can drive the camera to adjust its pitch angle by 270 degrees in the vertical plane.

[0011] Furthermore, the axial rotating component includes a fixed plate and a rotating base plate. The fixed plate is fixedly installed at one end of the LED light away from the DC power supply housing, and the rotating base plate is rotatably connected to the other side of the fixed plate.

[0012] The lateral rotating component includes screws and a rotating plate. The rotating plate is hinged to the inner side of the rotating base plate by screws, and the camera is mounted on the rotating plate.

[0013] Axial rotation: By rotating the base plate relative to the fixed plate, the camera can achieve a 360-degree panoramic rotation in the horizontal plane.

[0014] Horizontal rotation: By rotating the rotating plate, the camera can be adjusted up to 270 degrees in the vertical plane.

[0015] Furthermore, the LED light is an LED light strip, which is arranged around the periphery of the camera.

[0016] Furthermore, the motherboard is communicatively connected to the camera to control it to take pictures.

[0017] Furthermore, the motherboard is equipped with an environmental sensor, which controls the LED lights to turn on, off, or adjust their brightness.

[0018] The control program (such as MCU) inside the motherboard compares the data fed back by the sensor with the preset brightness threshold, and then automatically controls the LED light strip surrounding the camera to turn on, off, or adjust the brightness steplessly through PWM (pulse width modulation) or analog voltage regulation.

[0019] Furthermore, the power output interface is at least one of a USB interface, a Type-C interface, or a DC round hole interface.

[0020] The stable low-voltage DC power generated by the DC power board can be conveniently used to charge or power external devices such as mobile phones, wireless doorbells, and human body sensors by leading out the power output interface (such as USB and Type-C) and power cable on the motherboard.

[0021] Compared with the prior art, the present invention provides a multifunctional lighting lamp holder structure, which has the following beneficial effects:

[0022] 1. This multi-functional lighting fixture integrates three main modules: a camera bracket, an intelligent supplementary light, and a DC power adapter. It uses a standard screw-in lamp holder for installation and power supply. This eliminates the cumbersome process of separate installation and wiring for traditional security equipment, achieving "plug and play." Users simply screw the fixture into a common lamp holder to simultaneously secure the equipment, obtain power, and prepare for supplementary lighting. This simplifies the installation process, reduces reliance on professional wiring, and eliminates the clutter caused by multiple device cables.

[0023] 2. This multi-functional lighting head bracket structure integrates an ambient light sensor on the motherboard, enabling real-time monitoring of the surrounding light intensity and automatic, stepless adjustment of the LED brightness. A dual-axis rotation structure, consisting of axial and lateral rotating components, provides the camera with an ultra-wide adjustment range of 360 degrees horizontally and 270 degrees vertically. A built-in DC power board not only powers the device itself but also provides additional DC power output interfaces such as USB and Type-C via an external power cable. This allows for charging or powering nearby mobile phones, wireless doorbells, smart sensors, and other electronic devices. Attached Figure Description

[0024] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0025] Figure 2 This is an exploded three-dimensional structural diagram of the present invention;

[0026] Figure 3 This is an exploded three-dimensional structural diagram of the rotating component of this utility model;

[0027] Figure 4 This is a three-dimensional structural diagram of the rotating component of this utility model from another angle.

[0028] In the diagram: 1. LED light; 2. Screw-in lamp holder; 3. DC power supply housing; 4. Rotating assembly; 41. Axial rotating component; 411. Fixing plate; 412. Rotating base plate; 42. Lateral rotating component; 421. Screw; 422. Rotating plate; 5. Camera; 6. Power cord; 7. DC power board; 8. Main board. Detailed Implementation

[0029] 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.

[0030] Example

[0031] Please see Figures 1-4 A multifunctional lighting lamp holder structure includes: a screw-type lamp holder 2, one end of which is threadedly connected to a DC power supply housing 3, a DC power supply board 7 installed inside the DC power supply housing 3, the DC power supply board 7 being electrically connected to the screw-type lamp holder 2, an LED lamp 1 being fixedly installed at the other end of the DC power supply housing 3, a main board 8 being provided inside the LED lamp 1, the LED lamp 1 being electrically connected to and controlled by the main board 8; and a rotating component 4 being fixedly installed at the other end of the LED lamp 1, a camera 5 being installed on the rotating component 4, the rotating component 4 driving the camera 5 to perform multi-angle adjustments.

[0032] The screw-in lamp holder 2 can be directly screwed into a standard household E27 or E26 screw-in lamp socket and connected to 220V AC power. Its "plug-and-play" design eliminates the need for additional wiring.

[0033] The motherboard 8 has a power output interface, which is led out through the power cable 6 to supply power to external devices.

[0034] After the AC mains power enters the device, it is transmitted to the DC power board 7 sealed inside the DC power supply housing 3. This power board acts as a power conversion module, safely converting the high-voltage AC mains power into low-voltage DC power (such as 5V / 12V), providing a stable and safe operating power for all subsequent low-voltage electronic components (main board 8, LED light 1, camera 5).

[0035] Furthermore, the rotating assembly 4 includes an axial rotating component 41 and a lateral rotating component 42. The axial rotating component 41 is fixedly installed on the end of the LED light 1 away from the DC power supply housing 3. The lateral rotating component 42 is installed on the axial rotating component 41. The axial rotating component 41 can drive the camera 5 to rotate 360 ​​degrees in the horizontal plane, and the lateral rotating component 42 can drive the camera 5 to adjust the pitch angle by 270 degrees in the vertical plane.

[0036] Furthermore, the axial rotating component 41 includes a fixed plate 411 and a rotating base plate 412. The fixed plate 411 is fixedly installed at one end of the LED light 1 away from the DC power supply housing 3, and the rotating base plate 412 is rotatably connected to the other side of the fixed plate 411.

[0037] The horizontal rotating component 42 includes a screw 421 and a rotating plate 422. The rotating plate 422 is hinged to the inner side of the rotating base plate 412 by the screw 421, and the camera 5 is mounted on the rotating plate 422.

[0038] Axial rotation: By rotating the base plate 412 relative to the fixed plate 411, the camera can achieve a 360-degree panoramic rotation in the horizontal plane.

[0039] Horizontal rotation: By rotating the rotating plate 422, the camera can be adjusted up to 270 degrees in the vertical plane.

[0040] Furthermore, LED light 1 is an LED light strip, which is arranged around the periphery of camera 5.

[0041] Furthermore, the motherboard 8 communicates with the camera 5 to control it to take pictures.

[0042] Furthermore, an environmental sensor is installed on the motherboard 8, which controls the turning on, turning off, or adjusting the brightness of the LED light 1.

[0043] The control program (such as MCU) in the motherboard 8 compares the data fed back by the sensor with the preset brightness threshold, and then automatically controls the LED light strip 1 surrounding the camera to turn on, off or infinitely adjust its brightness through PWM (pulse width modulation) or analog voltage regulation.

[0044] Furthermore, the power output interface is at least one of a USB interface, a Type-C interface, or a DC round hole interface.

[0045] The stable low-voltage DC power generated by the DC power board 7 is led out through the power output interface (such as USB, Type-C) on the motherboard 8 and the power cable 6, which can conveniently charge or power external devices such as mobile phones, wireless doorbells, and human body sensors.

[0046] The specific usage and function of this embodiment are as follows:

[0047] The screw-in lamp holder 2 can be directly screwed into a standard household E27 or E26 screw-in lamp socket and connected to 220V AC power. It is "plug and play" and requires no additional wiring.

[0048] After the AC mains power enters the device, it is transmitted to the DC power board 7, which is sealed inside the DC power supply housing 3. This power board acts as a power conversion module, safely converting the high-voltage AC mains power into low-voltage DC power (such as 5V / 12V), providing a stable and safe operating power for all subsequent low-voltage electronic components (main board 8, LED light 1, camera 5).

[0049] After the device is powered on, motherboard 8 begins to operate. The integrated ambient light sensor on it continuously monitors the light intensity of the surrounding environment.

[0050] The control program (such as MCU) in the motherboard 8 compares the data fed back by the sensor with the preset brightness threshold, and then automatically controls the LED light strip 1 surrounding the camera to turn on, off or infinitely adjust its brightness through PWM (pulse width modulation) or analog voltage regulation.

[0051] When the environment darkens, the motherboard 8 automatically turns on the LED light 1 and adjusts it to a suitable brightness to provide sufficient fill light for the camera 5; when the environment brightens, it automatically dims or turns off the LED light 1 to achieve intelligent energy saving and adaptive fill light.

[0052] Users can change the monitoring angle of camera 5 by mechanically adjusting the rotating component 4.

[0053] Axial rotation: By rotating the base plate 412 relative to the fixed plate 411, the camera can achieve a 360-degree panoramic rotation in the horizontal plane.

[0054] Horizontal rotation: By rotating the rotating plate 422, the camera can be adjusted up to 270 degrees in the vertical plane.

[0055] This dual-axis rotating structure ensures that the camera can obtain the best field of view, eliminating blind spots in monitoring.

[0056] The motherboard 8 establishes a communication connection with the camera 5 via wired (e.g., USB) or wireless (e.g., Wi-Fi) means. Users can remotely control the camera 5 to perform operations such as shooting and recording through a mobile application or cloud platform connected to the motherboard 8.

[0057] In addition, the stable low-voltage DC power generated by the DC power board 7 is led out through the power output interface (such as USB, Type-C) and power cable 6 on the motherboard 8, which can conveniently charge or power external devices such as mobile phones, wireless doorbells, and human body sensors.

[0058] 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 multi-functional lighting lamp holder support structure, characterized by, include: A screw-type lamp holder (2) has a DC power supply housing (3) threaded to one end. A DC power supply board (7) is installed inside the DC power supply housing (3). The DC power supply board (7) is electrically connected to the screw-type lamp holder (2). An LED lamp (1) is fixedly installed at the other end of the DC power supply housing (3). A main board (8) is provided inside the LED lamp (1). The LED lamp (1) is electrically connected to and controlled by the main board (8). A rotating component (4) is fixedly installed at the other end of the LED lamp (1). A camera (5) is installed on the rotating component (4). The rotating component (4) drives the camera (5) to perform multi-angle adjustments. The motherboard (8) is provided with a power output interface, which is led out through a power cable (6) and used to supply power to external devices.

2. A multi-functional lamp holder support structure according to claim 1, wherein The rotating assembly (4) includes an axial rotating component (41) and a transverse rotating component (42). The axial rotating component (41) is fixedly installed on the end of the LED light (1) away from the DC power supply housing (3). The transverse rotating component (42) is installed on the axial rotating component (41). The axial rotating component (41) can drive the camera (5) to rotate 360 ​​degrees in the horizontal plane. The transverse rotating component (42) can drive the camera (5) to adjust the pitch angle by 270 degrees in the vertical plane.

3. The multifunctional lighting lamp holder structure according to claim 2, characterized in that, The axial rotating component (41) includes a fixed plate (411) and a rotating base plate (412). The fixed plate (411) is fixedly installed on one end of the LED lamp (1) away from the DC power supply housing (3), and the rotating base plate (412) is rotatably connected to the other side of the fixed plate (411). The transverse rotating component (42) includes a screw (421) and a rotating plate (422). The rotating plate (422) is hinged to the inner side of the rotating base plate (412) by the screw (421), and the camera (5) is mounted on the rotating plate (422).

4. The multifunctional lighting lamp holder structure according to claim 1, characterized in that, The LED light (1) is an LED light strip and is arranged around the periphery of the camera (5).

5. The multifunctional lighting lamp holder structure according to claim 1, characterized in that, The motherboard (8) is connected to the camera (5) to control it to take pictures.

6. The multifunctional lighting lamp holder structure according to claim 1, characterized in that, An environmental sensor is provided on the motherboard (8), and the LED light (1) is turned on, turned off or its brightness is adjusted by the environmental sensor.

7. The multifunctional lighting lamp holder structure according to claim 1, characterized in that, The power output interface is at least one of a USB interface, a Type-C interface, or a DC round hole interface.