Lamp detection device

By designing a tight connection mechanism between the first detection component and the second detection component in the lamp detection device, the problem of low detection accuracy in the traditional lamp detection device is solved, and higher detection accuracy and stability are achieved, and it is suitable for various detection tasks on the lamp production line.

CN223166894UActive Publication Date: 2025-07-29SHENZHEN SHENKE ENG TESTING CO LTD
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Patent Information

Application Number
CN202421487382.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-26
Publication Date
2025-07-29
Estimated Expiration
2034-06-26

AI Technical Summary

Technical Problem

Traditional lamp detection devices have problems with low detection accuracy during the detection process, especially due to the error in the detection result caused by uneven pressure.

Method used

A lamp detection device is designed, including a detection box and a detection mechanism. By using the cooperation of the first detection component and the second detection component during the detection process, a driving component is used to control the second detection component to approach the lamp in a vertical direction, and appropriate pressure is applied through the first detection component to achieve close contact.

Benefits of technology

It improves the accuracy and stability of lamp inspection, reduces the error of detection results, ensures a reliable connection between lamps and detection mechanisms, and is suitable for various inspection scenarios on lamp production lines.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a lamp detection device which comprises a detection box, a backup plate is installed in the vertical direction perpendicular to the detection box, and a driving assembly driving in the vertical direction is installed on the backup plate; the detection mechanism is connected with the detection box, fixes and detects the lamp, the detection mechanism comprises a first detection assembly, one end of the first detection assembly is connected with the detection box in an attached mode, the other end of the first detection assembly is connected with the lamp in an attached mode, and the first detection assembly is located below the lamp; the first detection assembly is located above the lamp, the second detection assembly is located above the lamp, the lamp is located between the first detection assembly and the second detection assembly in the vertical direction, the second detection assembly is connected with the driving assembly, and the driving assembly drives the second detection assembly to be close to and connected with the lamp in the vertical direction. Under the pressure that the first detection assembly approaches the lamp in the vertical direction, the second detection assembly is tightly connected with the lamp. Through the structure, the detection accuracy of the lamp detection device is improved.
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Description

Technical Field

[0001] This application relates to the field of lamp production, and particularly to a lamp detection device. Background Art

[0002] Currently, the demand for lamp detection devices in the lamp manufacturing industry is increasing day by day. Traditional lamp detection devices usually consist of a detection box and a detection mechanism, which fix and detect lamps through a mechanical structure to ensure that their quality meets the standard requirements. However, traditional lamp detection devices have certain limitations in improving the detection accuracy.

[0003] During the detection process, the lamp needs to apply pressure to the detection mechanism. If the applied pressure is uneven, even if there is close contact in some areas, there may still be gaps in other areas, resulting in errors in the detection results. Therefore, a lamp detection device with improved detection accuracy is needed. Summary of the Utility Model

[0004] In view of this, it is necessary to provide a lamp detection device with improved detection accuracy to solve the above problems.

[0005] An embodiment of this application provides a lamp detection device, including a detection box, a backing plate is installed along the vertical direction perpendicular to the detection box, and a driving component driven along the vertical direction is installed on the backing plate;

[0006] A detection mechanism, connected to the detection box, fixing and detecting the lamp, the detection mechanism includes:

[0007] A first detection component, one end of which is in fit connection with the detection box, the other end of which is in fit connection with the lamp, and is located below the lamp;

[0008] A second detection component, located above the lamp, the lamp is located between the first detection component and the second detection component in the vertical direction, the second detection component is connected to the driving component, wherein the driving component drives the second detection component to approach and connect with the lamp along the vertical direction, and under the pressure of the first detection component approaching the lamp along the vertical direction, the second detection component is tightly connected to the lamp.

[0009] In at least one embodiment of this application, the lamp detection device further includes a dust-proof cover, the dust-proof cover is located between the backing plate and the detection mechanism, and is connected to the chassis, and the detection mechanism is located inside the dust-proof cover.

[0010] In at least one embodiment of this application, the second detection mechanism includes:

[0011] A moving member is connected to the dust cover, is away from one end of the support plate, and is connected to the driving assembly to slide in a vertical direction;

[0012] The cylinder frame is closely connected with the moving part and slides in the vertical direction.

[0013] In at least one embodiment of the present application, the second

[0014] Testing agencies also include:

[0015] a cylinder, mounted in a vertical direction and connected to the cylinder;

[0016] The detection component is connected to the cylinder in a vertical direction and is located at one end close to the lamp.

[0017] In at least one embodiment of the present application, a fixing hole is opened on the cylinder frame, and the cylinder passes through the fixing hole in a vertical direction and is closely connected with the cylinder.

[0018] In at least one embodiment of the present application, the second detection component further includes:

[0019] a contact frame connected to the first detection member and located between the cylinder and the lamp; the detection member passes through the hollow portion of the contact frame and is located below the contact frame and is slidably connected to the lamp;

[0020] The pressure plate is connected to the moving part and is slidably connected to the contact frame in a vertical direction.

[0021] In at least one embodiment of the present application, the first inspection component includes:

[0022] A placement board is provided on which the lamp is placed and connected to the contact frame;

[0023] A detection board has one end connected to the placement board and the other end connected to the chassis.

[0024] In at least one embodiment of the present application, the detection board includes a detection portion, which is located at one end close to the lamp and is closely connected to the lamp.

[0025] In at least one embodiment of the present application, the detection portion is configured as a plurality of the probes.

[0026] In at least one embodiment of the present application, the first detection portion further includes a buffer portion, one end of which is connected to the placement plate, and the other end of which is connected to the detection board.

[0027] The provided lamp detection device needs to apply appropriate pressure to the lamp during the detection process to ensure close contact with the second detection component, which helps improve the accuracy of the test and avoid gaps between the lamp and the detection mechanism. Brief Description of the Drawings

[0028] Figure 1 Is a perspective view of the lamp detection device of the present application;

[0029] Figure 2 Is a front view of the lamp detection device of the present application;

[0030] Figure 3 Is a left view of the lamp detection device of the present application;

[0031] Figure 4 Is Figure 2 A partial enlarged view of A-A.

[0032] Description of the Main Component Symbols

[0033] 100, lamp detection device; 10, detection box; 20, backing plate; 30, driving component; 40, detection mechanism; 50, lamp; 41, first detection component; 42, second detection component; 60, dust cover; 421, moving part; 422, cylinder frame; 423, cylinder; 424, detection part; 4221, fixing hole; 425, contact frame; 426, pressing plate; 411, placing plate; 412, detection plate; 4121, detection portion; 413, buffer portion; 70, vertical direction. Detailed Embodiment

[0034] Next, the embodiments of the present application will be described in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments.

[0035] It should be noted that when a component is considered to be "connected" to another component, it can be directly connected to the other component or there may be an intermediate component at the same time. When a component is considered to be "disposed on" another component, it can be directly disposed on the other component or there may be an intermediate component at the same time. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "rear", and similar expressions used herein are only for the purpose of illustration.

[0036] An embodiment of the present application provides a lamp detection device, which includes a detection box, a back plate is installed along the vertical direction perpendicular to the detection box, and a driving component driven along the vertical direction is installed on the back plate; it also includes a detection mechanism, which is connected to the detection box, fixes and detects the lamp. The detection mechanism includes a first detection component, one end of which is in fit connection with the detection box, and the other end is in fit connection with the lamp and is located below the lamp; it also includes a second detection component, which is located above the lamp. The lamp is located between the first detection component and the second detection component in the vertical direction. The second detection component is connected to the driving component. Wherein, the driving component drives the second detection component to approach and connect with the lamp along the vertical direction. Under the pressure of the first detection component approaching the lamp along the vertical direction, the second detection component is tightly connected to the lamp.

[0037] In the above-provided lamp detection device, during the detection process, the first detection component needs to apply appropriate pressure to the lamp to ensure close contact with the second detection component, which helps to improve the accuracy of the test and avoid gaps between the lamp and the detection mechanism.

[0038] The following will describe in detail some embodiments of the present application with reference to the accompanying drawings. Without conflict, the following embodiments and the features in the embodiments can be combined with each other.

[0039] Please refer to Figures 1-4 An embodiment of the present application provides a lamp 50 detection device 100, which includes a detection box 10, a back plate 20 is installed along the vertical direction 70 perpendicular to the detection box 10, and a driving component 30 driven along the vertical direction 70 is installed on the back plate 20; it also includes a detection mechanism 40, which is connected to the detection box 10, fixes and detects the lamp 50. The detection mechanism 40 includes a first detection component 41, one end of which is in fit connection with the detection box 10, and the other end is in fit connection with the lamp 50 and is located below the lamp 50; it also includes a second detection component 42, which is located above the lamp 50. The lamp 50 is located between the first detection component 41 and the second detection component 42 in the vertical direction 70. The second detection component 42 is connected to the driving component 30. Wherein, the driving component 30 drives the second detection component to approach and connect with the lamp 50 along the vertical direction 70. Under the pressure of the first detection component 41 approaching the lamp 50 along the vertical direction 70, the second detection component 42 is tightly connected to the lamp 50.

[0040] Specifically, the detection box 10 is the outer shell of the entire lamp 50 detection device 100 and is used to place the detection mechanism 40 and the lamp 50. The backing plate 20 is installed along the vertical direction of the detection box 10, and its function is to provide a fixed position for installing the detection mechanism 40 and the lamp 50. The driving assembly 30 is driven along the vertical direction 70 of the backing plate 20, and its function is to control the movement of the second detection assembly 42 so that it can approach and connect to the lamp 50.

[0041] Furthermore, the detection mechanism 40 is connected to the detection box 10 and is responsible for fixing and detecting the lamp 50. One end of the first detection assembly 41 is attached to the detection box 10, and the other end is attached to the lamp 50 and is located below the lamp 50. Its function is to ensure that the lamp 50 is firmly fixed and that the connection with the second detection assembly 42 is in a proper position.

[0042] Still further, the second detection assembly 42 is located above the lamp 50 and is connected to the driving assembly 30. Between it and the first detection assembly 41 in the vertical direction 70, through the control of the driving assembly 30, it can approach and tightly connect above the lamp 50, ensuring a firm connection between the lamp 50 and the detection mechanism 40.

[0043] Even further, when using the lamp 50 detection device 100, first place the lamp 50 to be detected on the detection mechanism 40 and fix it below the lamp 50 through the first detection assembly 41 to keep it stable. Then, control the second detection assembly 42 to move along the vertical direction 70 through the driving assembly 30 to make it approach the lamp 50 and tightly connect to the lamp 50 under the action of pressure. In this process, the first detection assembly 41 ensures the stability of the lamp 50 below, while the second detection assembly 42 is responsible for ensuring a firm connection between the lamp 50 and the detection mechanism 40. This device can be widely applied to the detection process on the lamp 50 production line to ensure a reliable connection between the lamp 50 and the detection equipment, improving the detection efficiency and accuracy.

[0044] In summary, through the detailed explanation of the above features, we can see that this lamp 50 detection device 100 has a simple and reliable structural design, can effectively fix and detect the lamp 50, improves the production efficiency and product quality, and is applicable to various scenarios in the lamp 50 manufacturing industry.

[0045] In a specific embodiment, the lamp 50 detection device 100 further includes a dust cover 60. The dust cover 60 is located between the backing plate 20 and the detection mechanism 40, is connected to the chassis, and the detection mechanism 40 is located inside the dust cover 60.

[0046] Specifically, dust cover 60 is located between back plate 20 and detection mechanism 40. Its primary function is to protect detection mechanism 40 from external environmental influences such as dust and dirt, ensuring the normal operation and accurate detection of detection mechanism 40. Dust cover 60 prevents impurities such as dust and water droplets from entering the device, thereby reducing interference with lamp 50 and improving the accuracy and reliability of detection.

[0047] Furthermore, when the lamp 50 is placed on the detection device, a dust cover 60 is installed between the support plate 20 and the detection mechanism 40 and connected to the chassis. During the detection process, the dust cover 60 effectively blocks external dust and dirt, protecting the normal operation of the detection mechanism 40. Even in relatively harsh working environments, the dust cover 60 ensures the stability and reliability of the device.

[0048] Furthermore, this design is applicable to various testing scenarios on the production line of lamps 50. The dust cover 60 is particularly important in situations where a clean testing environment and minimal dust interference are required. For example, in a lamp production workshop or laboratory, where the manufacturing and testing of lamps 50 require a relatively clean environment, the use of the dust cover 60 can effectively improve testing efficiency and accuracy.

[0049] In a specific embodiment, the second detection mechanism 40 includes a moving member 421 and a cylinder frame 422. The moving member 421 is connected to the dust cover 60, facing away from the end of the support plate 20, and is connected to the drive assembly 30 to slide along the vertical direction 70. The cylinder frame 422 is closely connected to the moving member 421 and slides along the vertical direction 70.

[0050] Specifically, the moving member 421 is part of the second detection mechanism 40. Its primary function is to enable the second detection assembly 42 to slide along the vertical direction 70 under the action of the drive assembly 30, thereby performing an inspection operation on the lamp 50. The end of the moving member 421 that faces away from the backing plate 20 ensures that it is not obstructed by the backing plate 20 during the inspection process, thereby enabling it to move freely along the vertical direction 70 and effectively inspect the lamp 50.

[0051] Furthermore, the cylinder frame 422 is a part of the moving member 421, being closely connected thereto and capable of sliding along the vertical direction 70. Its main function is to provide support and guidance, ensuring that the moving member 421 remains stable as it slides along the vertical direction 70. Furthermore, the cylinder frame 422 can also be connected to other components, such as the cylinder 423, to achieve more complex operations.

[0052] Furthermore, when it is necessary to detect the lamp 50, the driving assembly 30 will be activated to drive the moving member 421 to slide along the vertical direction 70. The sliding of the moving member 421 will drive the cylinder frame 422 to move together, ensuring its stability and accuracy during the sliding process. This design enables the second detection assembly 42 to accurately move above the lamp 50 and connect to the driving assembly 30, thereby achieving a tight connection and effective detection of the lamp 50.

[0053] Furthermore, the device is applicable to various detection scenarios on the production line of the lamp 50, such as the appearance detection and electrical performance testing of the lamp 50, ensuring the accuracy and stability of the detection process. Especially when detecting a large number of lamps 50 produced, this design can improve the detection efficiency and product quality, and reduce the need for manual operation.

[0054] In a specific embodiment, the second detection mechanism 40 further includes a cylinder 423 and a detection member 424. The cylinder 423 is installed along the vertical direction 70 and is connected to the cylinder 423; the detection member 424 is connected to the cylinder 423 along the vertical direction 70 and is located at one end close to the lamp 50.

[0055] Specifically, the cylinder 423 is one of the key components in the lamp 50 detection device 100. Its main function is to provide pressure and power to help establish a tight connection between the second detection assembly 42 and the lamp 50. Through the action of the cylinder 423, the movement of the second detection assembly 42 can be controlled, enabling it to move precisely along the vertical direction 70 and applying the required pressure to the lamp 50 during the detection process to ensure the accuracy and stability of the detection.

[0056] Furthermore, the detection member 424 is a component connected to the cylinder 423 along the vertical direction 70. Its main function is to implement the detection operation of the lamp 50. By being connected to the cylinder 423, the detection member 424 can move along the vertical direction 70 and is located at one end close to the lamp 50, so as to accurately sense and detect various parameters and characteristics of the lamp 50.

[0057] Furthermore, when it is necessary to detect the lamp 50, the cylinder 423 is activated to generate pressure, causing the detection member 424 to move along the vertical direction 70 and establish a tight connection with the lamp 50. The detection member 424 is located at the close end of the lamp 50 and can accurately sense and detect various parameters of the lamp 50, such as electrical performance and appearance quality. During the detection process, the cylinder 423 can adjust the pressure magnitude as needed to ensure the accuracy and reliability of the detection.

[0058] Furthermore, this design can be applied to various stages of the lamp 50 production line, such as the production, assembly, and quality inspection stages of the lamp 50, to ensure that the produced lamp 50 meets relevant standards and requirements. It can also be used by lamp 50 sellers or maintenance service providers for pre-sale inspection or post-sale repair of the lamp 50.

[0059] In a specific implementation example, a fixing hole 4221 is opened on the cylinder frame 422 , and the cylinder 423 passes through the fixing hole 4221 along the vertical direction 70 and is closely connected with the cylinder 423 .

[0060] Specifically, this feature designs the fixing hole 4221 on the cylinder frame 422 for the purpose of firmly mounting the cylinder 423 and ensuring that the cylinder 423 does not become loose or shake during use, thereby ensuring the stability and reliability of the detection device.

[0061] Furthermore, the cylinder 423 is connected to the cylinder frame 422 through the fixing hole 4221, which keeps the position of the cylinder 423 fixed, helps to ensure the stability of the cylinder 423, and can accurately control the movement trajectory of the cylinder 423, thereby improving the accuracy and efficiency of detection.

[0062] Furthermore, when assembling the testing device, cylinder 423 is securely connected to cylinder frame 422 through fixing hole 4221, ensuring that cylinder 423 remains in a fixed position during operation and prevents displacement or dislodging due to vibration or other factors. Cylinder 423 is tightly connected to cylinder frame 422 through fixing hole 4221, forming a stable assembly structure and ensuring the stability and reliability of cylinder 423 during operation.

[0063] In a specific embodiment, the second detection assembly 42 further includes a contact frame 425 and a pressure plate 426. The contact frame 425 is connected to the first detection member 424 and is located between the cylinder 423 and the lamp 50. The detection member 424 passes through the hollow portion of the contact frame 425 and is located below the contact frame 425, and is slidably connected to the lamp 50. The pressure plate 426 is connected to the moving member 421 and is slidably connected to the contact frame 425 along the vertical direction 70.

[0064] Specifically, the contact frame 425 provides a stable support platform, enabling the detection member 424 to accurately contact the lamp 50, ensuring the accuracy and reliability of the detection. It also allows the detection member 424 to slide along the surface of the lamp 50 to perform a comprehensive inspection of the lamp 50, thereby improving the comprehensiveness and efficiency of the inspection.

[0065] Furthermore, by applying appropriate pressure, the pressing plate 426 ensures a tight connection between the test piece 424 and the lamp 50, avoiding possible gaps or looseness, thus guaranteeing the accuracy of the test results. Its presence can also, to a certain extent, simulate the forces and pressures that the lamp 50 may be subjected to during actual use, thereby better evaluating the durability and stability of the lamp 50.

[0066] Still further, during the testing process, the moving member 421 slides along the vertical direction 70, driving the pressing plate 426 closer to the contact frame 425. When the pressing plate 426 comes into contact with the contact frame 425, the pressing plate 426 applies appropriate pressure, causing the test piece 424 on the contact frame 425 to be in close contact with the lamp 50. This tight connection ensures that the test piece 424 can accurately detect various parts of the lamp 50, thereby obtaining accurate test results.

[0067] In a specific embodiment, the first test assembly includes a placement plate 411 and a test plate 412. The placement plate 411 places the lamp 50 and is connected to the contact frame 425; one end of the test plate 412 is connected to the placement plate 411, and the other end is connected to the chassis.

[0068] Specifically, the placement plate 411 provides a stable support platform to ensure that the lamp 50 maintains the correct position and attitude during the testing process. This helps to ensure the accuracy of the test results and avoid errors caused by incorrect positioning of the lamp 50.

[0069] Furthermore, a test portion 4121 is installed on the test plate 412 for detecting various parameters and performances of the lamp 50. Through the connection of the test plate 412, the test results can be transmitted to the chassis for processing and recording, facilitating subsequent data analysis and report generation.

[0070] Still further, when using the lamp 50 testing device 100, first place the lamp 50 on the placement plate 411 to ensure its correct position. Then, the test portion 4121 on the test plate 412 tests the lamp 50 to obtain various parameter and performance data. Finally, transmit the test results to the chassis for processing and recording to complete the entire testing process.

[0071] Even further, the lamp 50 testing device 100 can be widely applied to the quality inspection process on the lamp 50 production line for detecting aspects such as the assembly quality, appearance defects, and electrical performance of the lamp 50. In addition, it can also be used in the after-sales service of the lamp 50 for testing and evaluating the lamp 50 during repair or troubleshooting. Through this testing device, it can be ensured that the quality of the lamp 50 meets the standard requirements and improve production efficiency and product quality.

[0072] In a specific embodiment, the detection board 412 includes a detection portion 4121, and the detection portion 4121 is located at one end close to the lamp 50 and is adhesively connected to the lamp 50.

[0073] Specifically, by adhesively connecting the detection board 412 to the lamp 50, good contact between the detection portion 4121 and the lamp 50 is ensured, which is beneficial to accurately transmitting and collecting various parameters and performance data of the lamp 50.

[0074] Furthermore, as the core component of the detection device, the detection portion 4121 is responsible for detecting various parameters and performance of the lamp 50. Its tight connection with the lamp 50 helps to avoid errors caused by poor contact, ensuring the accuracy and reliability of the detection results.

[0075] Still further, when the lamp 50 is placed in the detection device, the detection board 412 is adhesively connected to one end of the lamp 50, tightly fixing the detection portion 4121 on the lamp 50. Subsequently, the detection portion 4121 starts to detect various parameters and performance of the lamp 50 to ensure that it meets relevant standards and requirements.

[0076] In a specific embodiment, the detection portion 4121 is provided as a plurality of said probes.

[0077] Specifically, the detection portion 4121 is located on the detection board 412 at one end close to the lamp 50 and is adhesively connected to the lamp 50. In this feature, the detection portion 4121 is not a single sensor or detector, but is composed of a plurality of probes, and these probes are distributed on the detection board 412 for simultaneously detecting a plurality of parameters or performance indicators of the lamp 50.

[0078] Furthermore, using a plurality of probes can achieve simultaneous detection of multiple parameters or performance of the lamp 50, improving the detection efficiency and accuracy. Each probe can detect different parameters or performance, and by integrating the detection results of multiple probes, the overall quality and performance of the lamp 50 can be comprehensively evaluated.

[0079] Still further, the multi-probe design also improves the fault tolerance of the system. Even if a certain probe fails or malfunctions, the detection task can still be completed by other probes, ensuring the reliability and stability of the detection.

[0080] Even further, when the lamp 50 is placed in the detection device, a plurality of probes are distributed on the detection board 412 and are adhesively connected to the lamp 50. Subsequently, each probe simultaneously starts to detect specific parameters or performance of the lamp 50, collects data and transmits it to the detection system for analysis and evaluation.

[0081] In a specific embodiment, the first detection unit 4121 further includes a buffer unit 413, one end of which is connected to the placement plate 411 and the other end is connected to the detection plate 412.

[0082] Specifically, the buffer unit 413 is located at one end of the first detection unit 4121, connected to the placement plate 411, and the other end is connected to the detection plate 412. Its function is to provide a buffering effect during the detection process, reducing the impact between the detection plate 412 and the placement plate 411, thereby protecting the mechanical structure of the lamp 50 and the device.

[0083] Furthermore, the buffer unit 413 can absorb the impact force between the placement plate 411 and the detection plate 412, reduce the impact and damage to the mechanical structure, and extend the service life of the device.

[0084] Still further, the buffer unit 413 can make the detection process more stable, reduce errors caused by vibration or impact, and improve the accuracy and stability of the detection.

[0085] Even further, by reducing the impact force, the buffer unit 413 can reduce the risk of damage to the lamp 50 and ensure that the lamp 50 will not be unnecessarily damaged during the detection process.

[0086] In summary, after the lamp 50 is placed in the detection device, the buffer unit 413 is located at one end of the placement plate 411, and the other end is connected to the detection plate 412. When the detection device starts to work, the lamp 50 will be subjected to pressure and vibration from the device, and the buffer unit 413 plays a role in reducing the impact and protecting the mechanical structure of the lamp 50 and the device.

[0087] Thereby, in the provided lamp 50 detection device 100, during the detection process, the first detection component 41 needs to apply an appropriate pressure to the lamp 50 to ensure close contact with the second detection component 42, which helps to improve the accuracy of the test and avoid the gap between the lamp 50 and the detection mechanism 40.

[0088] The above are only the embodiments of the present application. It should be noted here that for those of ordinary skill in the art, without departing from the creative concept of the present application, improvements can still be made, but these all belong to the protection scope of the present application.

Claims

1. A lighting fixture detection device, characterized in that, include: The detection box is provided with a support plate installed in a vertical direction perpendicular to the detection box, and a driving component driven in the vertical direction is installed on the support plate; A detection mechanism is connected to the detection box, fixes and detects the lamp, and includes: a first detection component, one end of which is closely connected to the detection box, and the other end of which is closely connected to the lamp, and is located below the lamp; The second detection component is located above the lamp, and the lamp is located between the first detection component and the second detection component in the vertical direction. The second detection component is connected to the driving component, wherein the driving component drives the second detection component to approach and connect with the lamp along the vertical direction. Under the pressure of the first detection component approaching the lamp in the vertical direction, the second detection component is tightly connected to the lamp.

2. The lighting fixture detection device according to claim 1, wherein The lamp detection device further comprises a dust cover, which is located between the support plate and the detection mechanism and connected to the chassis, and the detection mechanism is located inside the dust cover.

3. A lighting fixture detection device according to claim 2, wherein The second detection mechanism includes: A moving member is connected to the dust cover, is away from one end of the support plate, and is connected to the driving assembly to slide in a vertical direction; The cylinder frame is closely connected with the moving part and slides in the vertical direction.

4. A lamp detection device according to claim 3, characterized in that, The second detection mechanism further includes: a cylinder, mounted in a vertical direction and connected to the cylinder; The detection component is connected to the cylinder in a vertical direction and is located at one end close to the lamp.

5. A lighting fixture detection device according to claim 3, characterized in that, A fixing hole is provided on the cylinder frame, and the cylinder passes through the fixing hole in a vertical direction and is fitted and connected with the cylinder.

6. A lighting fixture detection device according to claim 4, characterized in that, The second detection component further includes: a contact frame connected to the first detection member and located between the cylinder and the lamp; the detection member passes through the hollow portion of the contact frame and is located below the contact frame and is slidably connected to the lamp; The pressure plate is connected to the moving part and is slidably connected to the contact frame in a vertical direction.

7. A lighting fixture detection device according to claim 6, characterized in that, The first inspection component includes: A placement board is provided on which the lamp is placed and connected to the contact frame; A detection board has one end connected to the placement board and the other end connected to the chassis.

8. An illumination device detecting apparatus according to claim 1, wherein, The detection plate includes a detection portion, which is located at one end close to the lamp and is closely connected to the lamp.

9. A lamp detection device according to claim 8, characterized in that, The detection unit is provided with a plurality of the probes.

10. A lighting fixture detection device according to claim 9, characterized in that, The first detection part further includes a buffer part, one end of which is connected to the placement plate, and the other end of which is connected to the detection board.