Combined light source detection device for detecting a battery electrode

CN224718717UActive Publication Date: 2026-09-04东莞康视达自动化科技有限公司
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Patent Information

Application Number
CN202521588199.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-29
Publication Date
2026-09-04
Estimated Expiration
2035-07-29

AI Technical Summary

Technical Problem

[0003]目前现有的检测激光点的方式是人工检测,即检测人员通过用显微镜人工抽检激光点,视野要做到微米级,然而,随着电池的需求日益增加,所需要检测的电池的数量增多,而人工主观判断效率太低,难以满足生产检测需求,并且由于不同类型的电池电极结构大小不相同,检测的标准也不相同,对于检测人员的检测难度较大,会影响检测效率,而在长时间的工作过程中,检测人员容易因疲劳而出现漏检和错检的情况,难以保证检测质量

Benefits of technology

[0016]1、在本实用新型实施例中,可以将待检测的电池电极放置在通口的下方,通口的上方设置有相机检测模组,通过相机检测模组可以对通口下方的待检测的电池电极进行视觉检测;而在安装板的底端安装有光源部件,光源部件的光源组件的出光端朝向通口的下方设置,使得光源组件可以将光线照射至待检测的电池电极上,以能够为相机检测模组提供光线,保证相机检测模组的检测质量;而光源组件与安装在固定板上的转轴,并且由于光源组件通过转动槽套设于转轴外,使得光源组件能够通过转轴环绕第二水平方向发生转动,从而能够根据不同的待检测的电池电极,调节光源组件的射出光线的方向,提高适配性;而在调节光源组件转动时,第二连接件可以穿过弧形槽和第二连接孔,第二连接件能够在弧形槽内移动,以能够限定光源组件可转动的幅度,起到限位效果,完成光源组件的转动后,第二连接件连接光源组件和固定板,限定光源组件和固定板之间的位置,保证光源组件照射光线的稳定性。

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Abstract

The utility model discloses a combination light source detection device for detecting battery electrode relates in the technical field of detection light source, combination light source detection device for detecting battery electrode includes installation board, light source part and camera detection module, installation board is provided with first guide groove and through mouth, two guide blocks opposite side end surface all are provided with second guide groove, and second guide groove is along the first horizontal direction extension setting, and the both sides of sliding block end are slidably set in two second guide grooves respectively, second adjusting assembly includes fixed plate, pivot and second connecting piece, and light source subassembly rotatablely is set in pivot outside through the rotation groove, the light outlet of light source subassembly of two light source parts all is towards the below of through mouth and sets up, the utility model discloses the visual inspection through camera detection module, and independently adjusts the light source subassembly of any light source part and moves along the first horizontal direction and revolves the second horizontal direction rotation, and the adaptability is better.
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Description

Technical Field

[0001] This utility model relates to the field of detection light source technology, and in particular to a combined light source detection device for detecting battery electrodes. Background Technology

[0002] In the photovoltaic industry, laser etching technology is typically used to remove the passivation layer and guide the deposition of metal electrodes. When removing the passivation layer, it is necessary to remove the passivation layer on the silicon wafer surface to ensure good ohmic contact between the electrode and the silicon wafer, effectively reducing contact resistance and improving the fill factor and conversion efficiency of the cell. The metal electrode deposition guidance involves forming tiny trenches or pits on the silicon wafer surface of the cell electrode using laser etching, which guides the subsequent deposition of metal electrodes.

[0003] Currently, the existing method for detecting laser dots is manual inspection, where inspectors manually sample laser dots using a microscope, with a field of view down to the micrometer level. However, with the increasing demand for batteries, the number of batteries requiring inspection is growing, and manual subjective judgment is too inefficient to meet production inspection needs. Furthermore, since different types of batteries have different electrode structures and sizes, the inspection standards also differ, making inspection difficult for inspectors and affecting inspection efficiency. During long working hours, inspectors are prone to fatigue, leading to missed or incorrect detections, making it difficult to guarantee inspection quality. Utility Model Content

[0004] The purpose of this invention is to overcome the above-mentioned defects in the prior art and provide a combined light source detection device for detecting battery electrodes. It can adjust the position and direction of the light emitted by the light source component to provide light for the camera detection module. It has good adaptability and can ensure detection quality and efficiency.

[0005] To achieve the above objectives, this utility model provides a combined light source detection device for detecting battery electrodes. The combined light source detection device includes a mounting plate, a light source component, and a camera detection module. The mounting plate is provided with a first guide groove and a through-hole. Both the first guide groove and the through-hole are vertically penetrating the top and bottom ends of the mounting plate. The first guide groove extends along a first horizontal direction. There are two first guide grooves, spaced apart along the first horizontal direction. The through-hole is located between the two first guide grooves. The light source component includes a first adjustment assembly, a second adjustment assembly, and a light source assembly. The first adjustment component includes a first connector, guide blocks, and a slider; the top of the slider is provided with a first connecting hole; two guide blocks are provided, both located at the bottom of the mounting plate; the two guide blocks are spaced apart along a second horizontal direction; a second guide groove is provided on the opposite side surface of each of the two guide blocks, the second guide groove extending along the first horizontal direction, and the two sides of the slider are slidably disposed within the two second guide grooves; the second adjustment component includes a fixing plate, a rotating shaft, and a second connector; the top of the fixing plate is connected to the slider, and an arc-shaped groove is provided on the side of the fixing plate. A groove is provided along the second horizontal direction, penetrating both ends of the fixed plate; the rotating shaft is connected to the fixed plate, and the length direction of the rotating shaft is aligned with the second horizontal direction; a rotating groove and a second connecting hole are provided on the side end of the light source assembly; the rotating groove extends along the second horizontal direction; the light source assembly is rotatably sleeved on the rotating shaft through the rotating groove; the second connecting hole is at least partially opposite to the arc-shaped groove; a second connecting member passes through the arc-shaped groove and the second connecting hole to detachably connect the light source assembly and the fixed plate; the second connecting member is movable within the arc-shaped groove; the light source part... The system comprises two components: the first connecting holes of the sliders of the first adjustment assemblies of the two light source components are respectively arranged opposite to the two first guide grooves; the first connecting members of the first adjustment assemblies of the two light source components pass through the two opposite first connecting holes and the first guide grooves to detachably connect the sliders and the mounting plate; the light emitting ends of the light source assemblies of the two light source components are both arranged facing downwards from the opening; wherein, the first horizontal direction and the second horizontal direction are arranged perpendicular to each other; the camera detection module is located above the opening; the detection end of the camera detection module is arranged facing downwards.

[0006] Furthermore, the second guide groove is provided to extend through the first horizontal direction.

[0007] Furthermore, there are two of each of the fixing plates and the second connecting members. The two fixing plates are spaced apart along the second horizontal direction. The two fixing plates are respectively connected to the two ends of the slider and respectively abut against the two ends of the light source assembly. The two ends of the light source assembly are each provided with a second connecting hole. The two second connecting holes are respectively arranged opposite to the arc grooves of the two fixing plates. The two second connecting members are respectively inserted through the two opposite second connecting holes and the arc grooves.

[0008] Furthermore, the rotating shaft includes a shaft rod and a limiting block; a third connecting hole is provided on the fixing plate; the rotating groove is provided through the second horizontal direction and is respectively provided opposite to the third connecting holes of the two fixing plates; the shaft rod is rotatably passed through the rotating groove and the two third connecting holes; the limiting block is provided at one end of the shaft rod and abuts against the side end of one of the fixing plates away from the light source assembly.

[0009] Furthermore, the second adjustment component also includes an elastic limiting member; the elastic limiting member is detachably connected to the end of the shaft away from the limiting block, and abuts against the side end of another fixing plate away from the light source component.

[0010] Furthermore, the second adjustment component also includes a third connector; the fixing plate is provided with a first mounting hole, the slider is provided with a second mounting hole, the first mounting hole and the second mounting hole are arranged opposite to each other, and the third connector passes through the first mounting hole and the second mounting hole to detachably connect the fixing plate and the slider.

[0011] Furthermore, the first guide groove is composed of a first groove body and a second groove body; the first connector is a connecting bolt structure; the first groove body is located above the second groove body, the upper end of the first groove body extends to the top of the mounting plate, the lower end of the second groove body extends to the upper end of the second groove body, and the lower end of the second groove body extends to the bottom of the mounting plate; the bolt head of the first connector is located in the first groove body, and the screw of the first connector passes through the second groove body and the first connecting hole.

[0012] Furthermore, the light source assembly includes a fourth connector, a light source component, and a mounting base; the second connecting hole and the rotating groove are both disposed on the mounting base; the mounting base is also provided with a mounting groove, the light source component is partially disposed in the mounting groove, and the fourth connector detachably connects the mounting base and the light source component.

[0013] Furthermore, the portion of the light source located outside the mounting groove is provided with a heat dissipation groove, and there are multiple heat dissipation grooves arranged sequentially at intervals.

[0014] Furthermore, the first adjustment component also includes a fifth connector; the mounting plate is provided with a third mounting hole, the guide block is provided with a fourth mounting hole, the third mounting hole and the fourth mounting hole are arranged opposite to each other, and the fifth connector passes through the third mounting hole and the fourth mounting hole to detachably connect the mounting plate and the guide block.

[0015] Compared with the prior art, the present invention has the following advantages:

[0016] 1. In this embodiment of the utility model, the battery electrode to be tested can be placed below the opening, and a camera detection module is arranged above the opening. The camera detection module can perform visual inspection of the battery electrode to be tested below the opening. A light source component is installed at the bottom of the mounting plate. The light-emitting end of the light source component faces downwards from the opening, so that the light source component can illuminate the battery electrode to be tested, thereby providing light to the camera detection module and ensuring the detection quality of the camera detection module. The light source component is connected to a rotating shaft mounted on the fixed plate, and because the light source component rotates... The movable slot is fitted outside the rotating shaft, allowing the light source assembly to rotate around the second horizontal direction via the rotating shaft. This allows the direction of the emitted light from the light source assembly to be adjusted according to different battery electrodes to be tested, improving adaptability. When adjusting the rotation of the light source assembly, the second connector can pass through the arc-shaped slot and the second connecting hole. The second connector can move within the arc-shaped slot to limit the range of rotation of the light source assembly, thus providing a limiting effect. After the rotation of the light source assembly is completed, the second connector connects the light source assembly and the fixing plate, limiting the position between the light source assembly and the fixing plate and ensuring the stability of the light emitted by the light source assembly.

[0017] 2. The slider connected to the fixed plate can slide within the second guide groove of the guide block, thereby driving the position of the fixed plate and the light source assembly relative to the mounting plate. This allows for adjustment of the position of the light source assembly in the first horizontal direction, enabling the adjustment of the emitted light position of the light source assembly according to different battery electrodes to be tested, thus improving adaptability. After adjusting the position of the slider, the first connector can be inserted into the corresponding first connecting hole and the first guide groove to fix the position between the slider and the mounting plate, thereby limiting the position of the light source assembly and ensuring the stability of the light emitted by the light source assembly. Compared with traditional manual inspection, this utility model performs visual inspection through a camera inspection module. Furthermore, it allows for independent adjustment of the light source assembly of any light source component, moving it along the first horizontal direction and rotating it around the second horizontal direction, to adjust the position and direction of the emitted light, providing light to the camera inspection module. This provides better adaptability and ensures both inspection quality and efficiency. Attached Figure Description

[0018] To more clearly illustrate the technology in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is a schematic diagram of the combined light source detection device for detecting battery electrodes according to the present invention.

[0020] Figure 2 for Figure 1 A cross-sectional view of the combined light source detection device for detecting battery electrodes according to this utility model;

[0021] Figure 3 This is a schematic diagram of the light source component of the combined light source detection device for detecting battery electrodes according to this utility model.

[0022] Figure 4 This is a schematic diagram of the structure of the first adjustment component of the combined light source detection device for detecting battery electrodes according to this utility model.

[0023] Figure 5 This is a schematic diagram of the structure of the fixing plate of the combined light source detection device for detecting battery electrodes according to this utility model.

[0024] Figure 6 This is a schematic diagram of the light source assembly of the combined light source detection device for detecting battery electrodes according to this utility model.

[0025] Reference numerals: Light source component 10; First adjustment assembly 100; First connector 110; Guide block 120; Second guide groove 121; Fourth mounting hole 122; Slider 130; First connecting hole 131; Second mounting hole 132; Second adjustment assembly 200; Fixing plate 210; Arc groove 211; Third connecting hole 212; First mounting hole 213; Rotating shaft 220; Shaft 221; Limiting block 222; Second connector 230; Light source assembly 300; Fourth connector 301; Light source component 302; Mounting base 303; Heat dissipation groove 304; Rotating groove 310; Second connecting hole 320; Mounting plate 400; First guide groove 410; First groove 411; Second groove 412; Through 420; Third mounting hole 430. Detailed Implementation

[0026] The technology of this embodiment of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiment is one embodiment of the present invention, and not all embodiments thereof. Based on this embodiment of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0027] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.

[0028] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second", such descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated.

[0029] Please see Figures 1 to 6This utility model provides a combined light source detection device for detecting battery electrodes. The device includes a mounting plate 400, a light source component 10, and a camera detection module. The mounting plate 400 has a first guide groove 410 and a through-hole 420. Both the first guide groove 410 and the through-hole 420 are vertically penetrating the top and bottom ends of the mounting plate 400. The first guide groove 410 extends along a first horizontal direction. Two first guide grooves 410 are provided and arranged at intervals along the first horizontal direction. The through-hole 420 is located between the two first guide grooves 410. The light source component 10 includes a first adjustment assembly 100, a second adjustment assembly 200, and a light source assembly 3. 00; The first adjustment component 100 includes a first connector 110, a guide block 120, and a slider 130; the top of the slider 130 is provided with a first connecting hole 131; two guide blocks 120 are provided, both of which are located at the bottom of the mounting plate 400; the two guide blocks 120 are spaced apart along a second horizontal direction; a second guide groove 121 is provided on the opposite side end face of the two guide blocks 120, the second guide groove 121 extends along a first horizontal direction, and the two sides of the slider 130 are slidably disposed in the two second guide grooves 121 respectively; the second adjustment component 200 includes a fixing plate 210, a rotating shaft 220, and a second connector 230; the top of the fixing plate 210 is connected to the slider 130, and the fixing plate 210... The side end of the 10 is provided with an arc-shaped groove 211, which extends through both ends of the fixing plate 210 along the second horizontal direction; the rotating shaft 220 is connected to the fixing plate 210, and the length direction of the rotating shaft 220 is in the same direction as the second horizontal direction; the side end of the light source assembly 300 is provided with a rotating groove 310 and a second connecting hole 320; the rotating groove 310 extends along the second horizontal direction; the light source assembly 300 is rotatably sleeved on the rotating shaft 220 through the rotating groove 310; the second connecting hole 320 is at least partially opposite to the arc-shaped groove 211; the second connecting member 230 passes through the arc-shaped groove 211 and the second connecting hole 320 to detachably connect the light source assembly 300 and the fixing plate 210; the second connecting member 230 can... The light source component 300 moves within the arc-shaped groove 211; two light source components 10 are provided, and the first connecting holes 131 of the sliders 130 of the first adjustment components 100 of the two light source components 10 are respectively arranged opposite to the two first guide grooves 410; the first connecting members 110 of the first adjustment components 100 of the two light source components 10 are respectively passed through the two opposite first connecting holes 131 and the first guide grooves 410 to detachably connect the sliders 130 and the mounting plate 400; the light emitting ends of the light source components 300 of the two light source components 10 are both arranged facing downwards towards the opening 420; wherein, the first horizontal direction and the second horizontal direction are arranged perpendicular to each other; the camera detection module is located above the opening 420; the detection end of the camera detection module is arranged facing downwards.

[0030] 1. In this embodiment of the utility model, the battery electrode to be tested can be placed below the opening 420. A camera detection module is arranged above the opening 420, which can perform visual inspection on the battery electrode to be tested below the opening 420. A light source component 10 is installed at the bottom of the mounting plate 400. The light-emitting end of the light source assembly 300 of the light source component 10 is arranged facing downwards from the opening 420, so that the light source assembly 300 can illuminate the battery electrode to be tested, thereby providing light to the camera detection module and ensuring the detection quality of the camera detection module. The light source assembly 300 is mounted on the rotating shaft 220 on the fixed plate 210, and the light source assembly 300 is sleeved on the rotating shaft through the rotating groove 310. Outside of 220, the light source assembly 300 can rotate around the second horizontal direction via the rotating shaft 220, thereby adjusting the direction of the emitted light from the light source assembly 300 according to different battery electrodes to be tested, improving adaptability; while adjusting the rotation of the light source assembly 300, the second connector 230 can pass through the arc groove 211 and the second connecting hole 320. The second connector 230 can move within the arc groove 211 to limit the range of rotation of the light source assembly 300, thus achieving a limiting effect. After the rotation of the light source assembly 300 is completed, the second connector 230 connects the light source assembly 300 and the fixing plate 210, limiting the position between the light source assembly 300 and the fixing plate 210, ensuring the stability of the light emitted by the light source assembly 300.

[0031] 2. The slider 130 connected to the fixed plate 210 can slide within the second guide groove 121 of the guide block 120, thereby driving the fixed plate 210 and the light source assembly 300 relative to the mounting plate 400 to adjust the position of the light source assembly 300 in the first horizontal direction. This allows for adjustment of the position of the emitted light from the light source assembly 300 according to different battery electrodes to be tested, improving adaptability. After adjusting the position of the slider 130, the first connector 110 can be inserted into the corresponding first connecting hole 131 and the first guide groove 410 for fixation. The position between the connecting slider 130 and the mounting plate 400 defines the position of the light source assembly 300, ensuring the stability of the light emitted by the light source assembly 300. Compared with traditional manual inspection, this utility model performs visual inspection through a camera inspection module. It can also independently adjust the light source assembly 300 of any light source component 10 to move along the first horizontal direction and rotate around the second horizontal direction as needed, so as to adjust the position and direction of the light emitted by the light source assembly 300, providing light to the camera inspection module. It has good adaptability and can ensure inspection quality and efficiency.

[0032] Reference Figure 3 and Figure 4 In some embodiments of this utility model, the second guide groove 121 is provided through the first horizontal direction.

[0033] After the first connector 110 is removed from the first guide groove 410 and the first connecting hole 131, the slider 130 can move back and forth in the groove of the guide block 120 to adjust the position of the slider 130. The second guide groove 121 is provided through the first horizontal direction, so that the slider 130 can slide out from one side of the guide block 120, which facilitates the replacement and installation of the slider 130, and facilitates the removal of the light source assembly 300 and the second adjustment assembly 200.

[0034] Reference Figure 3 and Figure 4 In some embodiments of this utility model, two fixing plates 210 and two connecting members 230 are provided. The two fixing plates 210 are spaced apart along the second horizontal direction. The two fixing plates 210 are respectively connected to the two ends of the slider 130 and respectively abut against the two ends of the light source assembly 300. The two ends of the light source assembly 300 are provided with two connecting holes 320. The two connecting holes 320 are respectively opposite to the arc grooves 211 of the two fixing plates 210. The two connecting members 230 are respectively passed through the two opposite connecting holes 320 and the arc grooves 211.

[0035] Two fixing plates 210 are spaced apart along the second horizontal direction, so that the light source assembly 300 can be placed between the two fixing plates 210. The two fixing plates 210 abut against the two sides of the light source assembly 300 respectively, so as to limit the position of the light source assembly 300, prevent the light source assembly 300 from shifting in the second horizontal direction, and improve the stability of the illumination of the light source assembly 300.

[0036] Two second connectors 230 pass through two arc-shaped grooves 211 and a second connecting hole 320 respectively, so as to improve the stability of the light source assembly 300 during installation and rotation.

[0037] Specifically, the second connector 230 is a connecting bolt structure, and the second connecting hole 320 is a threaded hole structure. Tightening the second connector 230 allows the bolt head of the second connector 230 to abut against the fixing plate 210, thereby limiting the relative position of the fixing plate 210 and the light source assembly 300 through friction. The center of the arc groove 211 is located on the axis of the rotating shaft 220. After loosening the second connector 230, the second connector 230 can be at least partially located within the second connecting hole 320. Rotating the light source assembly 300 allows the second connector 230 to move within the arc groove 211, thus serving as a limiting device.

[0038] Reference Figure 1 and Figure 3In some embodiments of this utility model, the rotating shaft 220 includes a shaft 221 and a limiting block 222; a third connecting hole 212 is provided on the fixing plate 210, and the third connecting hole 212 is disposed opposite to the rotating groove 310; the rotating groove 310 is disposed through the second horizontal direction and is disposed opposite to the third connecting holes 212 of the two fixing plates 210 respectively; the shaft 221 is rotatably disposed through the rotating groove 310 and the two third connecting holes 212; the limiting block 222 is disposed at one end of the shaft 221 and abuts against the side end of a fixing plate 210 away from the light source assembly 300.

[0039] The shaft 221 of the rotating shaft 220 passes through the third connecting hole 212 and the rotating groove 310, so that the rotating shaft 220 can connect the fixing plate 210 and the light source assembly 300. The length direction of the shaft 221 is the second horizontal direction. After the rotating shaft 220 is inserted into the rotating groove 310, it continues until the limiting block 222 abuts against the side of the fixing plate 210 away from the light source assembly 300, so as to limit the position of the rotating shaft 220 relative to the light source assembly 300 and the fixing plate 210, so as to facilitate the installation and removal of the rotating shaft 220.

[0040] In some embodiments of this utility model, the second adjustment component 200 further includes an elastic limiting member; the elastic limiting member is detachably connected to the end of the shaft 221 away from the limiting block 222, and abuts against the side end of another fixing plate 210 away from the light source component 300.

[0041] Specifically, a limiting block 222 is provided at one end of the shaft 221. The limiting block 222 abuts against the side end of one of the fixing plates 210 away from the light source assembly 300. The elastic limiting member is elastic and can be installed at the end of the shaft 221 away from the limiting block 222. After the elastic limiting member is installed, the elastic limiting member can abut against the side end of the other fixing plate 210 away from the light source assembly 300, so that the limiting block 222 and the elastic limiting member together limit the position of the shaft 221 relative to the light source assembly 300.

[0042] Reference Figure 4 and Figure 5 In some embodiments of this utility model, the second adjustment component 200 further includes a third connector; the fixed plate 210 is provided with a first mounting hole 213, the slider 130 is provided with a second mounting hole 132, the first mounting hole 213 and the second mounting hole 132 are arranged opposite to each other, and the third connector passes through the first mounting hole 213 and the second mounting hole 132 to detachably connect the fixed plate 210 and the slider 130.

[0043] By setting a third connector for installing and removing the fixing plate 210 and the slider 130, the difficulty of installing and removing the fixing plate 210 and the slider 130 can be reduced, and the adaptability can be improved.

[0044] Specifically, multiple first mounting holes 213 and multiple second mounting holes 132 can be provided, and multiple third connectors can also be provided. Multiple first mounting holes 213 and multiple second mounting holes 132 are arranged opposite to each other, and multiple third connectors pass through multiple opposite first mounting holes 213 and multiple second mounting holes 132 respectively.

[0045] Reference Figure 2 In some embodiments of this utility model, the first guide groove 410 is composed of a first groove body 411 and a second groove body 412; the first connector 110 is a connecting bolt structure; the first groove body 411 is located above the second groove body 412, the upper end of the first groove body 411 extends to the top of the mounting plate 400, the lower end of the second groove body 412 extends to the upper end of the second groove body 412, and the lower end of the second groove body 412 extends to the bottom of the mounting plate 400; the bolt head of the first connector 110 is located inside the first groove body 411, and the screw of the first connector 110 passes through the second groove body 412 and the first connecting hole 131.

[0046] The screw of the first connector 110 passes through the second connection hole 320 and is threadedly connected to the second connection hole 320. After the first connector 110 is tightened, the bolt head of the first connector 110 will be located in the first groove 411 to hide the bolt head part of the first connector 110, reducing the possibility that the first connector 110 will be affected by external factors. The bolt head abuts against the bottom wall of the first groove 411 to limit the position between the mounting plate 400 and the slider 130.

[0047] Reference Figure 1 , Figure 2 ,and Figure 6 In some embodiments of this utility model, the light source assembly 300 includes a fourth connector 301, a light source 302, and a mounting base 303; the second connecting hole 320 and the rotating groove 310 are both disposed on the mounting base 303; the mounting base 303 is also provided with a mounting groove, and the light source 302 is partially disposed in the mounting groove, and the fourth connector 301 is detachably connected to the mounting base 303 and the light source 302.

[0048] By setting the fourth connector 301 to install and remove the light source 302 and the mounting base 303, the difficulty of installing and removing the light source 302 and the mounting base 303 can be reduced, and the compatibility can be improved.

[0049] Specifically, the mounting base 303 is provided with a mounting groove, into which the light source component 302 can be inserted for positioning. The fourth connector 301 then connects and fixes the position between the mounting base 303 and the light source component 302, facilitating the installation and removal of the mounting base 303 and the light source component 302.

[0050] Specifically, the light source is a point light source structure.

[0051] Reference Figure 2 and Figure 6 In some embodiments of this utility model, the portion of the light source 302 located outside the mounting groove is provided with a heat dissipation groove 304. Multiple heat dissipation grooves 304 are provided and arranged in sequence at intervals.

[0052] By setting the heat dissipation slot 304, the heat dissipation efficiency of the light source 302 during operation can be improved, ensuring the stability of the operation of the light source 302.

[0053] Reference Figures 1 to 3 In some embodiments of this utility model, the first adjustment component 100 further includes a fifth connector; the mounting plate 400 is provided with a third mounting hole 430, the guide block 120 is provided with a fourth mounting hole 122, the third mounting hole 430 and the fourth mounting hole 122 are arranged opposite to each other, and the fifth connector passes through the third mounting hole 430 and the fourth mounting hole 122 to detachably connect the mounting plate 400 and the guide block 120.

[0054] By setting a fifth connector to install and remove the fixing plate 210 and slider 130, the difficulty of installing and removing the fixing plate 210 and slider 130 can be reduced, and the adaptability can be improved.

[0055] Specifically, multiple third mounting holes 430 and multiple fourth mounting holes 122 can be provided, and multiple fifth connectors can also be provided. Multiple third mounting holes 430 and multiple fourth mounting holes 122 are arranged opposite to each other, and multiple fifth connectors pass through multiple opposite third mounting holes 430 and multiple fourth mounting holes 122 respectively.

[0056] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A combined light source detection device for detecting battery electrodes, characterized in that, include: The mounting plate (400) is provided with a first guide groove (410) and a through-hole (420); the first guide groove (410) and the through-hole (420) are both provided to penetrate the top and bottom ends of the mounting plate (400) in a vertical direction; the first guide groove (410) extends in a first horizontal direction; there are two first guide grooves (410), which are arranged at intervals in the first horizontal direction; the through-hole (420) is located between the two first guide grooves (410); The light source component (10) includes a first adjustment component (100), a second adjustment component (200), and a light source component (300). The first adjustment component (100) includes a first connector (110), a guide block (120), and a slider (130); the top of the slider (130) is provided with a first connecting hole (131); there are two guide blocks (120), both of which are located at the bottom of the mounting plate (400); the two guide blocks (120) are spaced apart along a second horizontal direction; a second guide groove (121) is provided on the opposite side end face of the two guide blocks (120), the second guide groove (121) extends along the first horizontal direction, and the two sides of the slider (130) are slidably disposed in the two second guide grooves (121); The second adjustment component (200) includes a fixed plate (210), a rotating shaft (220), and a second connecting member (230); the top end of the fixed plate (210) is connected to the slider (130), and an arc-shaped groove (211) is provided on the side end of the fixed plate (210), the arc-shaped groove (211) is provided through both ends of the fixed plate (210) along the second horizontal direction; the rotating shaft (220) is connected to the fixed plate (210), and the length direction of the rotating shaft (220) is in the same direction as the second horizontal direction; a rotating groove (310) is provided on the side end of the light source component (300). The light source assembly (300) is rotatably mounted on the rotating shaft (220) through the rotating groove (310); the second connecting hole (320) is at least partially opposite to the arc groove (211); the second connecting member (230) passes through the arc groove (211) and the second connecting hole (320) to detachably connect the light source assembly (300) and the fixing plate (210); the second connecting member (230) is movable within the arc groove (211); Two light source components (10) are provided. The first connecting holes (131) of the sliders (130) of the first adjustment components (100) of the two light source components (10) are respectively arranged opposite to the two first guide grooves (410). The first connecting members (110) of the first adjustment components (100) of the two light source components (10) are respectively passed through the two opposite first connecting holes (131) and the first guide grooves (410) to detachably connect the sliders (130) and the mounting plate (400). The light-emitting ends of the light source components (300) of the two light source components (10) are both arranged facing downwards from the opening (420). Wherein, the first horizontal direction and the second horizontal direction are perpendicular to each other; A camera detection module is located above the port (420); the detection end of the camera detection module is oriented downwards.

2. The combined light source detection device for detecting battery electrodes according to claim 1, characterized in that, The second guide groove (121) is provided through the first horizontal direction.

3. The combined light source detection device for detecting battery electrodes according to claim 1, characterized in that, Two fixing plates (210) and two second connecting members (230) are provided. The two fixing plates (210) are spaced apart along the second horizontal direction. The two fixing plates (210) are respectively connected to the two sides of the slider (130) and respectively abut against the two sides of the light source assembly (300). The two sides of the light source assembly (300) are provided with the second connecting holes (320). The two second connecting holes (320) are respectively arranged opposite to the arc grooves (211) of the two fixing plates (210). The two second connecting members (230) are respectively inserted through the two opposite second connecting holes (320) and the arc grooves (211).

4. The combined light source detection device for detecting battery electrodes according to claim 3, characterized in that, The rotating shaft (220) includes a shaft (221) and a limiting block (222); the fixing plate (210) is provided with a third connecting hole (212); the rotating groove (310) is provided through the second horizontal direction and is respectively provided opposite to the third connecting holes (212) of the two fixing plates (210); the shaft (221) is rotatably inserted through the rotating groove (310) and the two third connecting holes (212); the limiting block (222) is provided at one end of the shaft (221) and abuts against the side end of one of the fixing plates (210) away from the light source assembly (300).

5. The combined light source detection device for detecting battery electrodes according to claim 4, characterized in that, The second adjustment component (200) also includes an elastic limiting member; the elastic limiting member is detachably connected to the end of the shaft (221) away from the limiting block (222) and abuts against the side end of another fixing plate (210) away from the light source component (300).

6. The combined light source detection device for detecting battery electrodes according to claim 1, characterized in that, The second adjustment component (200) further includes a third connector; the fixed plate (210) is provided with a first mounting hole (213), the slider (130) is provided with a second mounting hole (132), the first mounting hole (213) and the second mounting hole (132) are arranged opposite to each other, and the third connector passes through the first mounting hole (213) and the second mounting hole (132) to detachably connect the fixed plate (210) and the slider (130).

7. The combined light source detection device for detecting battery electrodes according to claim 1, characterized in that, The first guide groove (410) is composed of a first groove body (411) and a second groove body (412); the first connector (110) is a connecting bolt structure; the first groove body (411) is located above the second groove body (412), the upper end of the first groove body (411) extends to the top of the mounting plate (400), the lower end of the second groove body (412) extends to the upper end of the second groove body (412), and the lower end of the second groove body (412) extends to the bottom of the mounting plate (400); the bolt head of the first connector (110) is located in the first groove body (411), and the screw of the first connector (110) passes through the second groove body (412) and the first connecting hole (131).

8. The combined light source detection device for detecting battery electrodes according to claim 1, characterized in that, The light source assembly (300) includes a fourth connector (301), a light source (302), and a mounting base (303); the second connecting hole (320) and the rotating groove (310) are both provided on the mounting base (303); the mounting base (303) is also provided with a mounting groove, and the light source (302) is partially disposed in the mounting groove; the fourth connector (301) is detachably connected to the mounting base (303) and the light source (302).

9. The combined light source detection device for detecting battery electrodes according to claim 8, characterized in that, The portion of the light source (302) located outside the mounting groove is provided with a heat dissipation groove (304). Multiple heat dissipation grooves (304) are provided and arranged in sequence at intervals.

10. The combined light source detection device for detecting battery electrodes according to claim 1, characterized in that, The first adjustment component (100) further includes a fifth connector; the mounting plate (400) is provided with a third mounting hole (430), the guide block (120) is provided with a fourth mounting hole (122), the third mounting hole (430) and the fourth mounting hole (122) are arranged opposite to each other, and the fifth connector passes through the third mounting hole (430) and the fourth mounting hole (122) to detachably connect the mounting plate (400) and the guide block (120).