Parallelism adjusting structure for scientific-grade CMOS camera

By designing a stable moving component and an auxiliary mounting component, the problem of positional shift of the CMOS camera body during adjustment is solved, achieving more stable parallelism adjustment and improving the convenience and accuracy of adjustment.

CN223744766UActive Publication Date: 2025-12-30FUZHOU HEZHONGXINTUO TECH CO LTD
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Patent Information

Application Number
CN202520139865.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2025-12-30
Estimated Expiration
2035-01-21

AI Technical Summary

Technical Problem

In the prior art, when the CMOS camera body and the adjustable plate are adjusted through the support parts in the adjustment assembly, rotating the support parts one by one will cause the position of the camera body to shift, affecting the stability of the parallelism adjustment.

Method used

The system employs a stable moving component and an auxiliary installation component. Through the cooperation of the slider and the vertical rod, the rotation of the support unit is prevented from causing the camera body to shift position. The cooperation of the limiting rod and the connecting plate ensures the stable installation of the vertical rod.

Benefits of technology

It effectively prevents the camera body from shifting position during parallelism adjustment, improving the stability and convenience of adjustment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a parallelism adjusting structure for a scientific-grade CMOS camera, and the structure comprises a parallelism adjusting assembly which comprises a camera body and an adjustable plate. The stable moving assembly comprises a fixing groove, a connecting groove, a vertical rod, a clamping groove and a sliding block; the fixing grooves are formed in the two sides of the adjustable plate respectively, the connecting grooves are formed in the two sides of the camera body respectively, the vertical rods are clamped between the inner sides of the vertically adjacent fixing grooves and the connecting grooves, the clamping grooves are formed in the inner side faces of the vertical rods, and the sliding blocks are slidably connected to the inner sides of the clamping grooves. By arranging the stable moving assembly, when the supporting parts are rotated one by one, moving force pushes the sliding block through the camera body, so that the sliding block moves in the clamping groove, the camera body is promoted to move in the direction of the vertical rod through the sliding block, and therefore the situation that the camera body is driven by rotation of the supporting parts to deviate is prevented; and the influence of position offset of the camera main body on parallelism adjustment is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to CMOS camera technical field especially is related to a parallelism adjusting structure for scientific grade CMOS camera. BACKGROUND

[0002] CMOS camera, based on photoelectric effect converts light signal into electric signal, then after a series of signal processing and digitization conversion generates image, compared with traditional CMOS camera, optimization is carried out in pixel structure, readout circuit and signal processing etc., to improve performance.

[0003] Through the retrieval, the authorized publication number CN212259122U of China has authorized the parallelism adjusting structure for scientific grade CMOS camera, including camera main body, adjustable plate and adjusting assembly;The camera main body includes the imaging surface and the first mounting surface that are parallel to each other, the adjustable plate includes the second mounting surface, the first mounting surface is connected with the second mounting surface through the adjusting assembly, and the adjusting assembly is used to adjust the parallelism between the first mounting surface and the second mounting surface.The parallelism adjusting structure for scientific grade CMOS camera provided by the utility model adjusts the parallelism between the imaging surface and the mounting surface of the camera main body after assembly from the outside by the adjusting assembly, reduces the parallelism deviation generated during assembly, so that the industrial camera can obtain higher quality image.

[0004] In the above-mentioned patent document, the camera main body and the adjustable plate are adjusted by the support part in the adjusting assembly, so as to realize the adjustment of the parallelism, in this process, the user needs to rotate and adjust the support part one by one, so that the camera main body can move through the support part, but when rotating the support part one by one, the rotation of part of the support part will drive the position of the camera main body to deviate, thereby affecting the adjustment of the parallelism, therefore, a parallelism adjusting structure for assisting movement is needed to stabilize the movement of the camera main body. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a parallelism adjusting structure for scientific grade CMOS camera to solve the problem that in the above-mentioned patent document, the camera main body and the adjustable plate are adjusted by the support part in the adjusting assembly, so as to realize the adjustment of the parallelism, in this process, the user needs to rotate and adjust the support part one by one, so that the camera main body can move through the support part, but when rotating the support part one by one, the rotation of part of the support part will drive the position of the camera main body to deviate, thereby affecting the adjustment of the parallelism.

[0006] To solve the above technical problems, the utility model is realized by the following technical schemes:

[0007] The utility model relates to a parallelism adjusting structure for scientific grade CMOS camera, comprising:

[0008] Parallelism adjusting assembly, the parallelism adjusting assembly includes camera body and adjustable plate;The adjustable plate is placed on the top end of the camera body;

[0009] Stable moving assembly, the stable moving assembly includes fixed slot, connecting slot, vertical rod, card slot and sliding block;The fixed slot and connecting slot are both provided with two groups, the fixed slot is respectively provided on both sides of the adjustable plate, the connecting slot is respectively provided on both sides of the camera body, the vertical rod is connected to the inside of the vertically adjacent fixed slot and connecting slot, the card slot is provided on the inside of the vertical rod, and the sliding block is slidingly connected to the inside of the card slot.

[0010] Further, the inside of the card slot is provided with a plug hole, the inside of the fixed slot is provided with a connecting hole, and the inside of the plug hole and the connecting hole is threadedly connected with a mounting rod, and the remaining space above the card slot is connected with a plug.

[0011] Further, the vertical surface of the sliding block is provided with a mounting hole, the inside of the connecting slot is provided with a mounting slot, the mounting hole is aligned with the mounting slot, and the inside of the two is threadedly connected with a positioning rod.

[0012] Further, the parallelism adjusting assembly further includes a support part;The support part is threadedly connected to the corner of the connection between the camera body and the adjustable plate.

[0013] Further, it further includes an auxiliary mounting assembly;

[0014] The auxiliary mounting assembly includes a connecting plate, a square hole, a square slot and a limiting rod;The connecting plate is fixed on the outside of the vertically adjacent vertical rod, the square hole is provided on the outside of the connecting plate, the square slot is provided on both sides of the adjustable plate, the square hole is aligned with the square slot, and the limiting rod is inserted between the inside of the square hole and the square slot.

[0015] Further, the outside end edge of the square hole is provided with a peripheral groove, the limiting rod is fixedly connected with a connecting block, the connecting block is connected with the peripheral groove, and the two are adsorbed.

[0016] Compared with the prior art, the advantages of the present application are that:

[0017] One, the stable moving assembly is provided, when the support part is rotated one by one, the moving force pushes the sliding block through the camera body, so that the sliding block moves in the card slot, and the camera body moves along the direction of the vertical rod through the sliding block, thereby preventing the rotation of the support part from driving the position deviation of the camera body, and avoiding the influence of the position deviation of the camera body on the adjustment of the parallelism.

[0018] Secondly, based on the beneficial effect one, by setting the auxiliary installation assembly, when the vertical rod is clamped in the fixed groove and the connecting groove, the square hole is aligned with the square groove, then the limiting rod is inserted into the square hole and the square groove, so that the limiting rod limits the two clamped vertical rods, thereby facilitating the user to install the vertical rod. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0020] Figure 1 It is an appearance structure schematic diagram of the present application.

[0021] Figure 2 It is a stable moving assembly and auxiliary installation exploded structure schematic diagram of the present application.

[0022] Figure 3 It is a card slot inside structure schematic diagram of the present application.

[0023] Figure 4 It is a connecting groove internal structure schematic diagram of the present application.

[0024] In the drawings, the component list represented by each number is as follows:

[0025] 11, camera body; 12, adjustable plate; 21, fixed groove; 22, connecting groove; 23, vertical rod; 231, plug; 24, card slot; 25, sliding block; 26, plug-in hole; 27, connecting hole; 28, installation rod; 29, mounting hole; 291, mounting groove; 292, positioning rod; 31, connecting plate; 32, square hole; 33, square groove; 34, peripheral groove; 35, limiting rod; 36, connecting block. DETAILED DESCRIPTION

[0026] In order to make the above-mentioned purpose, features and advantages of the present application more obvious and easy to understand, the specific embodiments of the present application will be described in detail below with reference to the drawings.

[0027] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be implemented in other ways different from those described herein, and those skilled in the art can make similar generalizations without departing from the connotation of the present application, therefore the present application is not limited by the specific embodiments disclosed below.

[0028] To make the objectives, technical solutions, and advantages of this utility model clearer, the embodiments of this utility model will be described in further detail below with reference to the accompanying drawings.

[0029] Please see Figures 1-4 As shown, this embodiment is a parallelism adjustment structure for a scientific-grade CMOS camera, comprising:

[0030] The parallelism adjustment assembly includes a camera body 11 and an adjustable plate 12; the adjustable plate 12 is placed on the top of the camera body 11.

[0031] The parallelism adjustment assembly also includes a support part 13; the support part 13 is threadedly connected to the corner of the connection between the camera body 11 and the adjustable plate 12;

[0032] The adjustable plate 12 and the support part 13 are used together to adjust the parallelism of the camera body 11.

[0033] The stabilizing moving component includes a fixing groove 21, a connecting groove 22, a vertical rod 23, a locking groove 24, and a slider 25. The fixing groove 21 and the connecting groove 22 are both provided in two sets. The fixing groove 21 is respectively opened on both sides of the adjustable plate 12, and the connecting groove 22 is respectively opened on both sides of the camera body 11. The vertical rod 23 is locked between the inner sides of the vertically adjacent fixing groove 21 and connecting groove 22. The locking groove 24 is opened on the inner side of the vertical rod 23, and the slider 25 is slidably connected to the inner side of the locking groove 24.

[0034] The fixing groove 21 and the connecting groove 22 are used together for the locking of the vertical rod 23. There are two fixing grooves 21 and connecting grooves 22 in each set. The vertical rod 23 is used for the opening of the locking groove 24. The locking groove 24 is used for the connection and movement of the slider 25. The slider 25 is used for the connection of the two sides of the camera body 11, so that the camera body 11 can be moved stably by the sliders 25 on both sides.

[0035] A plug-in hole 26 is provided on the upper inner side of the slot 24, and a connection hole 27 is provided on the upper inner side of the fixing slot 21. An installation rod 28 is threadedly connected between the inner sides of the plug-in hole 26 and the connection hole 27. A block 231 is plugged into the remaining space above the slot 24.

[0036] The insertion hole 26 and the connection hole 27 are used together for the rotational insertion of the mounting rod 28. When the vertical rod 23 is engaged in the connection groove 22 and the fixing groove 21, the insertion hole 26 and the connection hole 27 are aligned. At this time, the mounting rod 28 is rotated and inserted into the insertion hole 26 and the connection hole 27, so that the mounting rod 28 is connected to the insertion hole 26 and the connection hole 27 through threads, so that the vertical rod 23 is stably connected to the inside of the connection groove 22 and the fixing groove 21. Then, the plug 231 is inserted into the remaining space above the slot 24.

[0037] The slider 25 has a mounting hole 29 on its vertical surface and a mounting groove 291 is provided on the upper inner side of the connecting groove 22. The mounting hole 29 and the mounting groove 291 are aligned and a positioning rod 292 is threaded between their inner sides.

[0038] The mounting hole 29 and the mounting groove 291 are used together to connect the slider 25 to both sides of the camera body 11. Before the vertical rod 23 is installed, the slider 25 is snapped into the upper inner side of the connecting groove 22 so that the mounting hole 29 and the mounting groove 291 are aligned. Then, the positioning rod 292 is rotated and inserted into the mounting hole 29 and the mounting groove 291 so that the outer end of the positioning rod 292 is flush with the surface of the slider 25.

[0039] Working principle: When the component is not in use, the slider 25 is not connected to the two sides of the camera body 11, and the vertical rod 23 is not connected to the inside of the fixing groove 21 and the connecting groove 22. When the component is in use, hold the slider 25 by hand and snap it into the upper part of the inner side of the connecting groove 22, so that the mounting hole 29 is aligned with the mounting groove 291. Then, rotate the positioning rod 292 and insert it into the mounting hole 29 and the mounting groove 291, so that the slider 25 is connected to the two sides of the camera body 11. At the same time, the outer end of the positioning rod 292 is flush with the surface of the slider 25. Then, hold the vertical rod 23 by hand, align the top of the slot 24 with the slider 25, and push the vertical rod 23 so that the slider 25 enters the slot 24 and the two slide into connection. Then, the vertical rod 23 is closed. 3. The mounting rod 23 is inserted into the connecting groove 22 and the fixing groove 21, so that the insertion hole 26 and the connecting hole 27 are aligned. At this time, the mounting rod 28 is rotated and inserted into the insertion hole 26 and the connecting hole 27, so that the mounting rod 28 is connected to the insertion hole 26 and the connecting hole 27 through the thread, so that the vertical rod 23 is firmly connected to the inside of the connecting groove 22 and the fixing groove 21. Then, the plug 231 is inserted into the remaining space above the slot 24. When the support part 13 is rotated one by one, the moving force pushes the slider 25 through the camera body 11, so that the slider 25 moves in the slot 24, causing the camera body 11 to move along the direction of the vertical rod 23 through the slider 25, thereby preventing the rotation of the support part 13 from causing the position of the camera body 11 to shift.

[0040] The above steps prevent the positional shift of the camera body 11 from affecting the parallelism adjustment.

[0041] Please see Figures 1-2 This embodiment, based on the above embodiments, further includes:

[0042] Assisted installation components;

[0043] The auxiliary installation components include a connecting plate 31, a square hole 32, a square groove 33, and a limiting rod 35; the connecting plate 31 is fixed between the upper outer sides of the adjacent horizontal and vertical vertical rods 23, the square hole 32 is opened in the middle of the outer side of the connecting plate 31, the square groove 33 is opened in the middle of both sides of the adjustable plate 12, the square hole 32 and the square groove 33 are aligned, and the limiting rod 35 is inserted between the inner sides of the square hole 32 and the square groove 33.

[0044] The connecting plate 31 is used for the connection between the two vertical rods 23. The square hole 32 and the square groove 33 are used together for the insertion of the limiting rod 35, so that the two vertical rods 23 are assisted in limiting the position. The limiting rod 35 is used to limit the connecting plate 31.

[0045] An outer groove 34 is provided at the outer edge of the square hole 32. A connecting block 36 is fixedly connected to the outer end of the limiting rod 35. The connecting block 36 is engaged with the outer groove 34 and the two are attracted to each other.

[0046] The outer groove 34 is used for the insertion of the connecting block 36, and the inner surface of the outer groove 34 has a magnetic force, so that when the connecting block 36 is engaged with the outer groove 34, the outer groove 34 is attracted and limited by the magnetic force to the engaged connecting block 36.

[0047] Working principle: When the component is not in use, the vertical rod 23 is not engaged with the fixing groove 21 and the connecting groove 22. When the vertical rod 23 is engaged in the fixing groove 21 and the connecting groove 22, the square hole 32 and the square groove 33 are aligned. Then, the limiting rod 35 is inserted into the square hole 32 and the square groove 33, so that the limiting rod 35 limits the connecting plate 31. At the same time, the connecting block 36 is inserted into the outer groove 34. The outer groove 34 is attracted and limited by the connecting block 36 after being engaged by magnetic force, thereby limiting the vertical rod 23 after being engaged on both sides, so as to facilitate the user to install the vertical rod 23.

[0048] The above steps can improve its functionality.

[0049] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0050] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A parallelism adjustment structure for a scientific grade CMOS camera, characterized in that, The utility model relates to a parallelism adjusting assembly, stable moving assembly and auxiliary installation assembly, and belongs to the field of camera equipment. The utility model discloses a parallelism adjusting assembly, stable moving assembly and auxiliary installation assembly, and belongs to the field of camera equipment. The utility model discloses a parallelism adjusting assembly, stable moving assembly and auxiliary installation assembly, and belongs to the field of camera equipment.

2. The parallelism adjustment structure for a scientific grade CMOS camera according to claim 1, wherein, The utility model discloses a parallelism adjusting assembly, stable moving assembly and auxiliary installation assembly, and belongs to the field of camera equipment.

3. The parallelism adjustment structure for a scientific grade CMOS camera according to claim 1, wherein, The utility model discloses a parallelism adjusting assembly, stable moving assembly and auxiliary installation assembly, and belongs to the field of camera equipment.

4. The parallelism adjustment structure for a scientific grade CMOS camera according to claim 1, wherein, The utility model discloses a parallelism adjusting assembly, stable moving assembly and auxiliary installation assembly, and belongs to the field of camera equipment.

5. The parallelism adjustment structure for a scientific grade CMOS camera according to claim 1, wherein, The utility model discloses a parallelism adjusting assembly, stable moving assembly and auxiliary installation assembly, and belongs to the field of camera equipment. The utility model discloses a parallelism adjusting assembly, stable moving assembly and auxiliary installation assembly, and belongs to the field of camera equipment.

6. The parallelism adjustment structure for a scientific grade CMOS camera according to claim 5, wherein, The utility model discloses a parallelism adjusting assembly, stable moving assembly and auxiliary installation assembly, and belongs to the field of camera equipment. The utility model discloses a parallelism adjusting assembly, stable moving assembly and auxiliary installation assembly, and belongs to the field of camera equipment. The utility model discloses a parallelism adjusting assembly, stable moving assembly and auxiliary installation assembly, and belongs to the field of camera equipment. The utility model discloses a parallelism adjusting assembly, stable moving assembly and auxiliary installation assembly, and belongs to the field of camera equipment. The utility model discloses a parallelism adjusting assembly, stable moving assembly and auxiliary installation assembly, and belongs to the field of camera equipment. 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Citation Information

Patent Citations

  • Parallelism adjusting structure for scientific CMOS camera

    CN212259122U