Flat light source structure capable of being provided with camera
By introducing a combination of guide rails, slide plates, springs, and inserts into the flat panel light source structure, the problem of difficult camera installation is solved, enabling convenient camera installation and position adjustment. At the same time, the design of rotating rods, protective covers, and reflectors solves the problems of light source angle adjustment and protection, meeting the needs of target object analysis, identification, and monitoring.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WUXI AOPULAN PRECISION INSTRUMENT CO LTD
- Filing Date
- 2025-07-02
- Publication Date
- 2026-05-05
AI Technical Summary
Existing flat panel light sources are not designed with adequate space and adaptable structures for camera installation, resulting in difficulties in camera installation, poor heat dissipation, and limited placement, thus failing to meet the needs of target object analysis, identification, and monitoring.
A flat-panel light source structure was designed, comprising a housing, a mounting bracket, a light source, a camera, a connecting component, and a light-shielding component. The camera can be conveniently installed and its position adjusted through a combination of guide rails, a sliding plate, springs, and inserts. The light source angle can be adjusted and protected through a combination of a rotating rod, a protective cover, and a reflector.
It enables convenient installation and position adjustment of the camera, improves the camera range and monitoring range, effectively prevents damage to the light source, and meets the needs of target object analysis, identification and monitoring.
Smart Images

Figure CN224203553U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of flat panel light source technology, specifically, to a flat panel light source structure capable of mounting a camera. Background Technology
[0002] In modern industrial inspection, machine vision, and intelligent devices, flat panel light sources are widely used as important lighting devices due to their uniform light, stable brightness, and thin and light structure. Meanwhile, cameras play a crucial role in image acquisition, video surveillance, and visual recognition; combining the two can significantly enhance the functionality and performance of the equipment.
[0003] In cutting-edge fields such as industrial inspection, intelligent security, and machine vision, flat panel light sources provide a basic lighting environment for image acquisition due to their uniform light distribution and stable brightness. However, a simple flat panel light source can only perform the function of illumination and cannot meet the needs of analyzing, identifying, and monitoring target objects. Existing flat panel light sources are often not designed with reasonable space and adaptation structures for camera installation, which can easily lead to problems such as poor heat dissipation and limited installation positions when cameras are added later. Therefore, those skilled in the art provide a flat panel light source structure that can install cameras to solve the problems mentioned in the background art. Utility Model Content
[0004] The purpose of this invention is to provide a flat-panel light source structure capable of mounting a camera, thereby solving the problems in the prior art.
[0005] This utility model provides the following technical solution: a flat panel light source structure capable of mounting cameras, including a housing, a mounting bracket rotatably connected to the outer wall of the housing, several sets of light sources mounted on the bottom surface of the housing, two sets of cameras disposed on the top of the housing, a connecting component disposed between the housing and the cameras, the housing being connected to the cameras through the connecting component, and two sets of light-shielding components disposed on the outer wall of the housing.
[0006] As a preferred embodiment of the above technical solution, the connecting assembly includes a guide rail fixedly connected to the top surface of the housing. Two sets of sliding plates are slidably connected within the guide rail. Cameras are fixedly connected to the bottom surfaces of both sets of sliding plates. Slide grooves are formed on the top surfaces of both sets of sliding plates. First springs are fixedly connected to the inner walls of both sets of slide grooves. Slider blocks are fixedly connected to the other ends of both sets of first springs. Both sets of sliders slide linearly within the slide grooves. Insert blocks are fixedly connected to the surfaces of both sets of sliders facing away from the slide grooves. Handles are fixedly connected to the top surfaces of both sets of insert blocks. Two sets of connecting plates are symmetrically fixedly connected to the outer walls of the guide rail corresponding to the bottom surfaces of the two sets of insert blocks. Ten slots are formed within each set of connecting plates.
[0007] As a preferred embodiment of the above technical solution, the handle is designed in a circular shape, and the surface of the handle is polished.
[0008] As a preferred embodiment of the above technical solution, one end of the first spring is welded to the middle position of the inner wall of the bottom end of the slide groove, and the other end of the first spring is welded to the inner end of the slider.
[0009] As a preferred embodiment of the above technical solution, the light-shielding component includes two sets of fixing blocks symmetrically fixedly connected to the outer walls of both sides of the housing. A rotating rod is rotatably connected within each of the two sets of fixing blocks. A protective cover is fixedly connected to the outer surface of each of the two sets of rotating rods. A reflector is fixedly connected to the surface of each of the two sets of protective covers facing the light source. A fixing frame is fixedly connected to the surface of each of the two sets of fixing blocks facing away from the housing. A guide groove is provided within each of the two sets of fixing frames. A guide plate is slidably connected within each of the two sets of guide grooves. Two sets of second springs are fixedly connected to the surface of each of the two sets of guide plates facing away from the fixing blocks. The other ends of the two sets of second springs are fixedly connected to the inner wall of the fixing frame. A positioning post is fixedly connected to the surface of each of the two sets of guide plates facing the fixing blocks, and the positioning post is slidably connected to the fixing block and the fixing frame. Six positioning grooves are equally spaced on the outer walls of the rotating rods corresponding to the outer ends of the two sets of positioning posts.
[0010] As a preferred embodiment of the above technical solution, the outer end surface of the positioning post is spherical, and the positioning groove is formed to fit the shape of the positioning post.
[0011] Compared with the prior art, the beneficial effects of this utility model are:
[0012] 1. This utility model uses a camera to drive a sliding plate into a guide rail, aligning the insert with the slot. Then, the restoring force of the first spring drives the slider to return to its original position within the groove, allowing the insert on the sliding plate to be inserted into the slot. This achieves the purpose of mounting the camera on the housing. Simultaneously, the sliding plate drives the inserts to slide sequentially to align with the slots, and the restoring force of the first spring drives the inserts into the slots, thereby adjusting the camera position. This makes it easy to mount the camera on the housing and also allows staff to easily adjust the camera's position, thus improving the camera's field of view and monitoring range. It also solves the problem that a simple flat panel light source can only perform the illumination function and cannot meet the monitoring needs of target objects.
[0013] 2. This utility model uses a protective cover to drive a rotating rod to rotate within a fixed block, causing the positioning groove on the rotating rod to press against the positioning post, and the positioning post to slide out of the positioning groove. Simultaneously, it drives a guide plate to slide within a guide groove, allowing the positioning post to slide into the fixed frame. At the same time, the rotating rod drives the protective cover to adjust its angle, adjusting the reflector to a suitable angle. At this point, the positioning post aligns with another set of positioning grooves. Then, the restoring force of the second spring pushes the guide plate to reset and slide within the guide groove, simultaneously inserting the positioning post into the positioning groove. This achieves angle adjustment of the reflector, enabling it to provide supplementary lighting to various areas. When both sets of reflectors are rotated to the bottom of the housing, the two sets of protective covers shield the light source, thus protecting it from impacts and damage. Attached Figure Description
[0014] Figure 1 A three-dimensional structural diagram of a flat-panel light source structure capable of mounting a camera;
[0015] Figure 2 A bottom-view schematic diagram of a flat-panel light source structure capable of mounting a camera;
[0016] Figure 3 A schematic diagram showing the disassembled structure of the connecting components in a flat-panel light source structure capable of mounting a camera;
[0017] Figure 4 This is a structurally disassembled diagram of a light-shielding component in a flat-panel light source structure capable of mounting a camera.
[0018] In the diagram: 1. Housing; 2. Mounting bracket; 3. Light source; 4. Camera; 5. Connecting assembly; 51. Guide rail; 52. Slide plate; 53. Slide groove; 54. First spring; 55. Slider; 56. Insert block; 57. Handle; 58. Connecting plate; 59. Slot; 6. Light-shielding assembly; 61. Fixing block; 62. Rotating rod; 63. Protective cover; 64. Reflector; 65. Fixing frame; 66. Guide groove; 67. Guide plate; 68. Second spring; 69. Positioning post; 610. Positioning groove. Detailed Implementation
[0019] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.
[0020] Please see Figures 1-4As shown, this utility model provides a technical solution: a flat panel light source structure capable of mounting cameras, including a housing 1, a mounting bracket 2 rotatably connected to the outer wall of the housing 1, several sets of light sources 3 mounted on the bottom surface of the housing 1, two sets of cameras 4 disposed on the top of the housing 1, a connecting component 5 disposed between the housing 1 and the cameras 4, the housing 1 being connected to the cameras 4 through the connecting component 5, and two sets of light-shielding components 6 disposed on the outer wall of the housing 1.
[0021] As one implementation method in this embodiment, please refer to Figures 1-3 As shown, the connecting component 5 includes a guide rail 51 fixedly connected to the top surface of the housing 1. Two sets of sliding plates 52 are slidably connected inside the guide rail 51. Cameras 4 are fixedly connected to the bottom surfaces of both sets of sliding plates 52. Slide grooves 53 are opened on the top surfaces of both sets of sliding plates 52. First springs 54 are fixedly connected to the inner walls of both sets of slide grooves 53. Slider 55 is fixedly connected to the other end of both sets of first springs 54. Both sets of sliders 55 slide linearly inside the slide grooves 53. Insert blocks 56 are fixedly connected to the surface of the two sets of sliders 55 facing away from the slide grooves 53. Handles 57 are fixedly connected to the top surfaces of both sets of insert blocks 56. Two sets of connecting plates 58 are symmetrically fixedly connected to the outer walls of the guide rail 51 corresponding to the bottom surfaces of the two sets of insert blocks 56. Ten sets of slots 59 are opened inside the two sets of connecting plates 58.
[0022] Specifically, the camera 4 drives the slide plate 52 into the guide rail 51, aligning the insert 56 with the slot 59. Then, the restoring force of the first spring 54 drives the slider 55 to slide back in the groove 53, causing the insert 56 on the slide plate 52 to be inserted into the slot 59, thus achieving the purpose of mounting the camera 4 on the housing 1. At the same time, the slide plate 52 drives the insert 56 to slide sequentially to align with the slot 59, and then the restoring force of the first spring 54 drives the insert 56 to be inserted into the slot 59, thereby achieving the purpose of adjusting the position of the camera 4. This makes it easy to mount the camera 4 on the housing 1 and also makes it easy for staff to adjust the position of the camera 4, thereby improving the camera's field of view and monitoring range, and solving the problem that a simple flat panel light source can only perform the illumination function and cannot meet the monitoring of target objects.
[0023] As one implementation method in this embodiment, please refer to Figures 1-3 As shown, the handle 57 has a circular design and the surface of the handle 57 has been polished.
[0024] In practice, this allows staff to easily operate the insert block 56, causing the insert block 56 to drive the slider 55 to slide within the slide groove 53, thereby allowing the insert block 56 to slide out of the slot 59. Then, the camera 4 drives the slide plate 52 to slide within the guide rail 51, thus achieving the purpose of adjusting the position of the camera 4.
[0025] As one implementation method in this embodiment, please refer to Figures 1-3 As shown, one end of the first spring 54 is welded to the middle position of the inner wall of the bottom end of the slide groove 53, and the other end of the first spring 54 is welded to the inner end of the slider 55.
[0026] Specifically, this implementation allows the restoring force generated when the first spring 54 is squeezed by the slider 55 to be evenly transmitted to the slider 55, thereby enabling the slider 55 to slide back and forth evenly within the groove 53. At the same time, it increases the connection strength between the first spring 54, the groove 53, and the slider 55, thereby improving the stability of the first spring 54 during use.
[0027] As one implementation method in this embodiment, please refer to Figures 1-4 As shown, the light-shielding assembly 6 includes two sets of fixing blocks 61 symmetrically fixed to the outer walls of both sides of the housing 1. A rotating rod 62 is rotatably connected within each of the two sets of fixing blocks 61. A protective cover 63 is fixedly connected to the outer surface of each of the two sets of rotating rods 62. A reflector 64 is fixedly connected to the side surface of each of the two sets of protective covers 63 facing the light source 3. A fixing frame 65 is fixedly connected to the side surface of each of the two sets of fixing blocks 61 facing away from the housing 1. A guide groove 66 is provided within each of the two sets of fixing frames 65. Each of the two sets of guide grooves 66 contains... Guide plates 67 are slidably connected. Two sets of second springs 68 are fixedly connected to the surface of the two sets of guide plates 67 away from the fixed block 61. The other ends of the two sets of second springs 68 are fixedly connected to the inner wall of the fixed frame 65. Positioning posts 69 are fixedly connected to the surface of the two sets of guide plates 67 facing the fixed block 61. The positioning posts 69 are slidably connected to the fixed block 61 and the fixed frame 65. Six sets of positioning grooves 610 are equally spaced on the outer wall of the rotating rods 62 corresponding to the outer ends of the two sets of positioning posts 69.
[0028] Specifically, the protective cover 63 drives the rotating rod 62 to rotate within the fixed block 61, causing the positioning groove 610 on the rotating rod 62 to press against the positioning post 69, and causing the positioning post 69 to slide out of the positioning groove 610. Simultaneously, the guide plate 67 slides within the guide groove 66, causing the two sets of second springs 68 to be continuously compressed, resulting in the second springs 68 generating a pressure. Then, the positioning post 69 slides into the fixed frame 65, while the rotating rod 62 drives the protective cover 63 to rotate, adjusting the reflector 64 to the appropriate angle. At this time, the positioning post 69 is aligned with another set of positioning grooves 610. Then, the restoring force of the second spring 68 pushes the guide plate 67 to reset and slide in the guide groove 66, and the positioning post 69 is simultaneously inserted into the positioning groove 610, thereby achieving the angle adjustment of the reflector 64, so that the reflector 64 can provide supplementary lighting to various areas. When the two sets of reflectors 64 are rotated to the bottom of the housing 1, the two sets of protective covers 63 block the light source 3, thereby achieving the purpose of protecting the light source 3 and preventing the light source 3 from being damaged by bumps.
[0029] As one implementation method in this embodiment, please refer to Figures 1-4 As shown, the outer surface of the positioning post 69 is spherical, and the positioning groove 610 is shaped to fit the positioning post 69. When the rotating rod 62 rotates, it simultaneously drives the positioning post 69 to press against the positioning groove 610, and causes the positioning post 69 to slide out along the inner wall of the positioning groove 610, thereby releasing the rotation limit of the protective cover 63, so that the staff can adjust the angle of the reflector 64.
[0030] Working principle: First, pull the handle 57 away from the slide plate 52, so that the handle 57 drives the slider 55 to slide in the slide groove 53 through the insert block 56, and the slider 55 drives the first spring 54 to stretch. Then, the handle 57 drives the slide plate 52 to slide in the guide rail 51, and the insert block 56 is aligned with the slot 59. Then, by releasing the handle 57, the restoring force of the first spring 54 drives the slider 55 to return to its original position in the slide groove 53, and the insert block 56 on the slide plate 52 is inserted into the slot 59, thereby achieving the purpose of installing the camera 4 on the housing 1. At the same time, the slide plate 52 drives the insert block 56 to slide sequentially to align with the slot 59, and the restoring force of the first spring 54 drives the insert block 56 to insert into the slot 59, thereby achieving the purpose of adjusting the position of the camera 4. This makes it easy to install the camera 4 on the housing 1 and also makes it easy for the staff to adjust the position of the camera 4.
[0031] The above embodiments are only used to illustrate the technical solution of this utility model, and are not intended to limit it.
Claims
1. A flat panel light source structure capable of mounting a camera, comprising a housing (1), characterized in that: The outer wall of the housing (1) is rotatably connected to a mounting bracket (2), and several sets of light sources (3) are installed on the bottom surface of the housing (1). Two sets of cameras (4) are provided on the top of the housing (1). A connecting component (5) is provided between the housing (1) and the cameras (4). The housing (1) is connected to the cameras (4) through the connecting component (5). Two sets of light-shielding components (6) are provided on the outer wall of the housing (1).
2. The flat panel light source structure capable of mounting a camera according to claim 1, characterized in that: The connecting assembly (5) includes a guide rail (51) fixedly connected to the top surface of the housing (1). Two sets of sliding plates (52) are slidably connected inside the guide rail (51). Cameras (4) are fixedly connected to the bottom surfaces of both sets of sliding plates (52). Slide grooves (53) are opened on the top surfaces of both sets of sliding plates (52). First springs (54) are fixedly connected to the inner walls of both sets of slide grooves (53). A slider is fixedly connected to the other end of both sets of first springs (54). (55) Both sets of sliders (55) slide linearly in the groove (53). The surface of the two sets of sliders (55) facing away from the groove (53) is fixedly connected with a plug (56). The top surface of the two sets of plugs (56) is fixedly connected with a handle (57). The bottom surface of the two sets of plugs (56) is symmetrically fixedly connected with two sets of connecting plates (58) on the outer wall of the guide rail (51) corresponding to the bottom surface of the two sets of plugs (56). Ten sets of slots (59) are opened in the two sets of connecting plates (58).
3. A flat-panel light source structure capable of mounting a camera according to claim 2, characterized in that: The handle (57) is designed in a circular shape, and the surface of the handle (57) is polished.
4. A flat-panel light source structure capable of mounting a camera according to claim 2, characterized in that: One end of the first spring (54) is welded to the middle position on the inner wall of the bottom end of the slide (53), and the other end of the first spring (54) is welded to the inner end of the slider (55).
5. A flat panel light source structure capable of mounting a camera according to claim 1, characterized in that: The light-shielding assembly (6) includes two sets of fixing blocks (61) symmetrically fixedly connected to the outer walls of both sides of the housing (1). A rotating rod (62) is rotatably connected within each of the two sets of fixing blocks (61). A protective cover (63) is fixedly connected to the outer surface of each of the two sets of rotating rods (62). A reflector (64) is fixedly connected to the side of each of the two sets of protective covers (63) facing the light source (3). A fixing frame (65) is fixedly connected to the side of each of the two sets of fixing blocks (61) away from the housing (1). A guide groove (66) is provided within each of the two sets of fixing frames (65). Guide plates (67) are slidably connected inside both sets of guide plates (67). Two sets of second springs (68) are fixedly connected to the surface of the two sets of guide plates (67) facing away from the fixed block (61). The other ends of the two sets of second springs (68) are fixedly connected to the inner wall of the fixed frame (65). Positioning posts (69) are fixedly connected to the surface of the two sets of guide plates (67) facing the fixed block (61). The positioning posts (69) are slidably connected to the fixed block (61) and the fixed frame (65). Six sets of positioning grooves (610) are equally spaced on the outer wall of the rotating rod (62) corresponding to the outer ends of the two sets of positioning posts (69).
6. A flat panel light source structure capable of mounting a camera according to claim 5, characterized in that: The outer surface of the positioning post (69) is spherical, and the positioning groove (610) is shaped to fit the positioning post (69).