Laser lamp detector

By setting multiple plane mirrors and adjustable brackets in the laser light inspection machine, multi-angle laser light inspection can be achieved, solving the problems of space occupation and complexity of traditional inspection methods, and providing fast and accurate laser light performance evaluation.

CN223470784UActive Publication Date: 2025-10-24DONGGUAN OLIGHT E COMMERCE TECH CO LTD
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Patent Information

Application Number
CN202422993455.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-10-24
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

Traditional laser inspection requires a large space, which occupies physical space and increases the complexity of inspection, making it inefficient, especially in production environments with limited space.

Method used

Design a laser light inspection machine, comprising a frame, inspection window, laser light holder, multiple plane mirrors, scale plate and camera, to achieve multi-angle inspection through multiple reflections and path adjustment, and combined with detachable bracket and rotating bracket to adapt to different models of laser lights, providing stable installation and flexible adjustment.

Benefits of technology

While saving space, it enables efficient and convenient laser lamp performance evaluation, improves the speed and accuracy of testing, and adapts to the testing needs of laser lamps of different specifications.

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Abstract

The utility model belongs to the technical field of laser lamp detection equipment, and particularly relates to a laser lamp detector. Comprising a rack, a detection space is formed in the rack, and a detection window is formed in one side of the rack; the laser lamp holder is arranged on the detection window and is used for mounting a laser lamp so as to irradiate laser into the detection space; a plurality of plane mirrors arranged in the detection space and used for reflecting the laser; the scale plate is arranged in the detection space, the camera is opposite to the scale plate, the scale plate is used for receiving the laser reflected by the plane mirror, and the camera is used for shooting the scale plate; and the display screen is electrically connected with the camera. The laser lamp detection device can provide efficient and convenient laser lamp detection service while saving space, overcomes the limitation of a traditional detection mode, and realizes quicker and more accurate laser lamp performance evaluation.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to laser lamp detection equipment technical field especially relates to a laser lamp detection machine. BACKGROUND

[0002] Mobile lighting devices play a crucial role in various application scenarios, and mobile lighting devices integrated with laser technology are particularly popular due to their unique performance. In the production and manufacturing process of laser lamps, ensuring the irradiation accuracy of laser lamps is a key link in product quality control. This link involves zero adjustment and precision testing of laser lamps.

[0003] Traditionally, the detection of laser lamps needs to be carried out in a relatively large space, usually requiring the laser lamp to be irradiated to a distance of 3 to 5 meters, in order to carry out accurate performance evaluation. However, this approach not only occupies a large amount of physical space, but also increases the complexity and inconvenience of the detection process. In particular, in a production environment with limited space resources, this traditional detection method is particularly cumbersome and inefficient.

[0004] Therefore, there is an urgent need for a space-saving, efficient and convenient laser lamp detection machine. INVENTION CONTENTS

[0005] The utility model aims at the shortage of prior art, provides a kind of laser lamp detection machine, can save space while providing efficient, convenient laser lamp detection service, overcome the limitation of traditional detection method, realize more quickly, more accurate laser lamp performance evaluation.

[0006] In order to achieve the above purpose, the utility model adopts the following technical solutions:

[0007] A laser lamp detection machine, comprising:

[0008] A rack is formed with a detection space inside the rack, and a detection window is provided on one side of the rack;

[0009] A laser lamp seat is provided at the detection window, and the laser lamp seat is used to install a laser lamp to irradiate laser light into the detection space;

[0010] A plurality of plane mirrors are provided in the detection space, and the plane mirrors are used to reflect laser light;

[0011] A scale plate and a camera opposite to the scale plate are provided in the detection space, the scale plate is used to receive laser light reflected from the plane mirror, and the camera is used to take pictures of the scale plate;

[0012] A display screen is electrically connected to the camera.

[0013] Further, the detection window is provided with a detection platform, and the laser lamp holder is installed on the detection platform, and the laser lamp irradiates laser light towards the opposite side of the detection window.

[0014] Further, the laser lamp holder comprises a fixed base and a replaceable support which is detachably installed on the fixed base, and the replaceable support is formed with a mounting position, and the laser lamp is installed on the mounting position.

[0015] Further, the detection space is provided with a first plane mirror assembly located at the opposite side of the detection window, a second plane mirror assembly located at the same side of the detection window and below the detection window, and a third plane mirror assembly located at the top of the detection space.

[0016] Further, the first plane mirror assembly comprises a rotating support and a plane mirror installed on the rotating support, and the angle of the plane mirror is adjusted by rotating the rotating support.

[0017] Further, the scale board is located at the bottom of the detection space.

[0018] Further, the camera is located at the top of the detection space.

[0019] Further, the display screen is installed in the detection space and located at the same side of the first plane mirror assembly.

[0020] Further, the rack is provided with universal wheels and fixed feet at the bottom.

[0021] Further, the rack is provided with a plurality of side doors.

[0022] The beneficial effects of the utility model are as follows:

[0023] The utility model discloses a plurality of plane mirrors are arranged in the detection space of the rack, realize the multiple reflection and path adjustment of laser, and it is convenient for multi-angle, all -round laser lamp performance detection in the limited space, realize the stable installation and the orientation control of laser lamp through setting up the detection platform and the laser lamp holder at the detection window, and through setting up the fixed base and the replaceable support of detachable, it is convenient for adapting the laser lamp detection demand of different models or specifications, realize the flexible adjustment of laser reflection path through setting up the rotating support and the plane mirror of adjustable angle, the utility model discloses can provide efficient, convenient laser lamp detection service while saving space, overcome the limitation of traditional detection mode, realize more fast, more accurate laser lamp performance evaluation. BRIEF DESCRIPTION OF DRAWINGS

[0024] ATTACH Figure 1 It is the structure schematic diagram of laser lamp detection machine of the utility model;

[0025] ATTACHFigure 2 is a structural schematic diagram of the laser lamp detection machine of the utility model;

[0026] attached Figure 3 is a structural schematic diagram of the laser lamp holder and the laser lamp of the utility model;

[0027] attached Figure 4 is a structural schematic diagram of the first plane mirror assembly of the utility model;

[0028] attached Figure 5 is a light path diagram of the laser lamp of the utility model;

[0029] attached Figure 6 is a light path diagram of the laser lamp of the utility model;

[0030] In the figure, 1 is a rack, 110 is a detection space, 120 is a detection window, 130 is a detection platform, 140 is a universal wheel, 150 is a fixed foot, 160 is a side door; 2 is a laser lamp holder, 210 is a fixed base, 220 is a replacement support, 221 is a mounting position; 3 is a scale plate; 4 is a camera; 5 is a display screen; 6 is a first plane mirror assembly, 610 is a rotating support, 620 is a plane mirror; 7 is a second plane mirror assembly; 8 is a third plane mirror assembly; 9 is a laser lamp, 910 is a laser. DETAILED DESCRIPTION

[0031] The embodiments of the utility model are described in detail below, examples of the embodiments are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary, which are intended to explain the utility model, and cannot be understood as a limitation of the utility model.

[0032] In the description of the utility model, it is understood that the orientation or position relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is based on the orientation or position relationship shown in the drawings, which is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as a limitation of the utility model.

[0033] In addition, the terms "first", "second" are only for description purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more features. In the description of the utility model, the meaning of "multiple" is two or more, unless otherwise specifically limited.

[0034] In the embodiments of the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting", "fixing" and the like should be understood in a broad sense, for example, can be fixedly connected, can be detachably connected, or integrated; can be mechanically connected, can be electrically connected; can be directly connected, can be indirectly connected through an intermediate medium, can be the communication or interaction relationship between two elements. For those skilled in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.

[0035] Referring to the drawings Figure 1 to the drawings Figure 6 , a specific embodiment of a laser lamp detection machine provided by the present application is shown.

[0036] Referring to the drawings Figure 1 , the laser lamp detection machine comprises:

[0037] A rack 1 is formed with a detection space 110 inside the rack 1, and a detection window 120 is arranged on one side of the rack 1;

[0038] A laser lamp holder 2 is arranged at the detection window 120, and the laser lamp holder 2 is used to install a laser lamp 9 to irradiate laser 910 into the detection space 110;

[0039] A plurality of plane mirrors 620 are arranged in the detection space 110, and the plane mirrors 620 are used to reflect the laser 910;

[0040] A scale plate 3 and a camera 4 opposite to the scale plate 3 are arranged in the detection space 110, the scale plate 3 is used to receive the laser 910 reflected from the plane mirror 620, and the camera 4 is used to shoot the scale plate 3;

[0041] A display screen 5 is electrically connected with the camera 4.

[0042] Referring to the drawings Figure 1 and the drawings Figure 2In the above embodiment, the top, bottom and three sides of the frame 1 are closed, and one side is provided with a detection window 120, so that a laser lamp 9 is installed at the detection window 120 to emit laser 910 into the detection space 110. A plurality of plane mirrors 620 are arranged in the frame 1, and the laser 910 of the laser lamp 9 is reflected on the plane mirrors 620 and between the plane mirrors 620 to adjust the path, so as to realize multi-angle and omnidirectional laser lamp performance detection in a limited detection space 110. After multiple reflections, the laser 910 of the laser lamp 9 is projected onto the scale plate 3, and the camera 4 opposite to the scale plate 3 photographs the scale plate 3 and displays the result on the display screen 5. In the embodiment, the display screen 5 is used to directly display the photo of the scale plate 3 taken by the camera 4; in an alternative embodiment, the picture taken by the camera 4 can be first identified and judged, and then the calculated precision result is transmitted to the display screen 5 for display.

[0043] Referring to the drawings Figure 3 In the above embodiment, a detection platform 130 is arranged at the detection window 120, and the laser lamp seat 2 is installed on the detection platform 130, and the laser lamp 9 emits laser 910 towards the side opposite to the detection window 120. In the embodiment, the detection platform 130 is arranged at the middle lower position of the side of the laser lamp detection machine, so as to facilitate the test personnel to install and adjust the laser lamp 9 on the detection platform 130. In the above embodiment, the laser lamp seat 2 includes a fixed base 210 and a replaceable bracket 220 detachably installed on the fixed base 210, and the replaceable bracket 220 is formed with an installation position 221, and the laser lamp 9 is installed on the installation position 221. In the embodiment, the installation position 221 and the laser lamp 9 are slidingly installed or clamped, so as to realize quick replacement and installation of the laser lamp 9. At the same time, by using the replaceable bracket 220, the detection requirements of different models or specifications of the laser lamp 9 can be met, and the compatibility of the equipment is improved.

[0044] Referring to the drawings Figure 2In the above embodiment, the detection space 110 is provided with the first plane mirror assembly 6 located at the opposite side of the detection window 120, the second plane mirror assembly 7 located at the same side of the detection window 120 and below the detection window 120, and the third plane mirror assembly 8 located at the top of the detection space 110. In the embodiment, the first plane mirror assembly 6, the second plane mirror assembly 7, and the third plane mirror assembly 8 have the same structure, the laser 910 emitted by the laser lamp 9 is reflected to the first plane mirror assembly 6 at the opposite side, then reflected to the second plane mirror assembly 7 below the detection window 120, and then reflected to the third plane mirror assembly 8 at the top of the detection space 110, and finally reflected to the scale board 3. The scale board 3 is located at the bottom of the detection space 110, and the camera 4 is located at the center of the top of the detection space 110. The camera 4 vertically downwardly photographs and aligns the center projection point of the scale board 3, so as to realize comprehensive photographing and image capturing of the scale board 3, and facilitate subsequent analysis and evaluation of the irradiation accuracy and performance of the laser lamp 9.

[0045] Referring to the accompanying drawings Figure 4 In the above embodiment, the first plane mirror assembly 6 includes a rotating support 610 and a plane mirror 620 mounted on the rotating support 610, and the angle of the plane mirror 620 is adjusted by rotating the rotating support 610. In the embodiment, the angle-adjustable plane mirror 620 realizes flexible adjustment of the reflection path of the laser 910, so as to facilitate accurate control of the irradiation direction and angle of the laser. When the angle of the plane mirror 620 of the first plane mirror assembly 6 is adjusted to be obliquely downward, the irradiation path of the laser lamp 9 is the first plane mirror assembly 6, the second plane mirror assembly 7, the third plane mirror assembly 8 in sequence, and finally reflected to the scale board 3, which is suitable for situations requiring a longer test distance, as shown in FIG. 4. Figure 5 When the angle of the plane mirror 620 of the first plane mirror assembly 6 is adjusted to be obliquely upward, the irradiation path of the laser lamp 9 is the first plane mirror assembly 6, the third plane mirror assembly 8 in sequence, and finally reflected to the scale board 3, which is suitable for situations requiring a shorter test distance, as shown in FIG. 5. Figure 6

[0046] Referring to the accompanying drawings Figure 2 In the above embodiment, the display screen 5 is installed in the detection space 110 and located at the same side of the first plane mirror assembly 6. In the embodiment, the display screen 5 is installed in the detection space 110 to reduce the occupation of external space, and the display screen 5 is located at the opposite side of the detection window 120, that is, at the same side of the first plane mirror assembly 6. When the tester is located in front of the detection window 120 to detect the laser lamp 9, the tester can directly and intuitively view and quickly obtain the detection result through the detection window 120, so as to make corresponding adjustments according to the detection result.

[0047] Referring to the accompanying drawings Figure 1 ​In the above embodiment, the base of the rack 1 is provided with universal wheels 140 and fixed feet 150. In the embodiment, flexible movement and stable fixation of the laser lamp detection machine are achieved, and the laser lamp detection machine is convenient to use in different production environments or detection sites. The rack 1 is further provided with a plurality of side doors 160, and convenient adjustment and maintenance of the plane mirror assembly in the detection space are achieved, and daily inspection, cleaning and troubleshooting of the detection machine are facilitated.

[0048] In summary, the embodiment provides a laser lamp detection machine. A plurality of plane mirrors 620 are arranged in the detection space 110 of the rack 1, multiple reflections and path adjustment of laser 910 are achieved, multi-angle and omnidirectional performance detection of the laser lamp 9 in a limited space are facilitated, a detection platform and a laser lamp seat 2 are arranged at the detection window 120, stable installation and orientation control of the laser lamp 9 are achieved, a fixed base 210 and a detachable replacement support 220 are arranged, detection requirements of different models or specifications of the laser lamp 9 are facilitated, a rotating support 610 and an angle-adjustable plane mirror 620 are arranged, flexible adjustment of the reflection path of the laser 910 is achieved, the embodiment can save space while providing efficient and convenient laser lamp detection services, and the limitations of the traditional detection method are overcome, and more rapid and accurate performance evaluation of the laser lamp is achieved.

[0049] The above-described embodiment is only one of the preferred specific modes of the present application, and the usual changes and replacements made by the technicians in the technical field within the scope of the technical scheme of the present application should be included in the protection scope of the present application.

Claims

1. A laser lamp inspection machine characterized by, The utility model relates to a kind of detection device, including: Rack (1), detection space (110) is formed in the rack (1), one side of the rack (1) is equipped with detection window (120); Laser lamp holder (2) is equipped in the detection window (120), the laser lamp holder (2) is used to install laser lamp (9) to the detection space (110) inside laser (910) is irradiated; Multiple plane mirrors (620) are equipped in the detection space (110), and the plane mirror (620) is used to reflect laser (910); Scale board (3) and camera (4) opposite to the scale board (3) are equipped in the detection space (110), the scale board (3) is used to receive laser (910) reflected from the plane mirror (620), and the camera (4) is used to photograph the scale board (3); Display screen (5), the display screen (5) is electrically connected with the camera (4).

2. The laser lamp inspection machine of claim 1, wherein, Detection platform (130) is equipped at the detection window (120), the laser lamp holder (2) is installed on the detection platform (130), and the laser lamp (9) laser (910) is irradiated towards the opposite side of the detection window (120).

3. The laser lamp inspection machine of claim 2, wherein, The laser lamp holder (2) includes fixed base (210) and replaceable support (220) detachably installed on the fixed base (210), and the replaceable support (220) is formed with mounting position (221) on the replaceable support (220), and the laser lamp (9) is installed on the mounting position (221).

4. The laser lamp inspection machine of any of claims 1-3, wherein, First plane mirror assembly (6) is equipped in the detection space (110) and located at the opposite side of the detection window (120), second plane mirror assembly (7) is equipped with the same side of the detection window (120) and located below the detection window (120), and third plane mirror assembly (8) is located at the top of the detection space (110).

5. The laser lamp inspection machine of claim 4, wherein, The first plane mirror assembly (6) includes rotating support (610) and plane mirror (620) installed on the rotating support (610), and the angle of the plane mirror (620) is adjusted by rotating the rotating support (610).

6. The laser lamp inspection machine of claim 4, wherein, The scale board (3) is located at the bottom of the detection space (110).

7. A laser lamp inspection machine as claimed in claim 6, characterized in that The camera (4) is located at the top of the detection space (110).

8. The laser lamp inspection machine of claim 4, wherein, The display screen (5) is installed in the detection space (110) and with the same side of the first plane mirror assembly (6).

9. The laser lamp inspection machine of claim 1, wherein, Universal wheel (140) and fixed foot (150) are equipped at the bottom of the rack (1).

10. The laser lamp inspection machine of claim 1, wherein, The rack (1) is equipped with multiple side doors (160).