Probe for three-dimensional imaging

By using a control box, hinge rod, and telescopic rod structure in the 3D imaging device, combined with a threaded rod and a drive motor, precise camera alignment and multi-point positioning are achieved, solving the problem of inaccurate camera alignment in existing technologies and improving the effect of 3D imaging.

CN224083592UActive Publication Date: 2026-04-03ZHICHENG ZHIXIN (SHANDONG) CULTURE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

In existing 3D imaging devices, the parallel alignment and height adjustment of the camera are not precise, resulting in poor stereoscopic effect of the 3D image and inability to accurately locate the target direction.

Method used

The main camera is installed in a control box, and the adjustment seat and telescopic rod mounting block are connected by a hinge rod. The alignment and height adjustment of the secondary camera are achieved through a threaded rod and a drive motor, forming a three-point positioning structure.

Benefits of technology

It improves the alignment accuracy and adaptability of the camera, enhances the stability and clarity of 3D imaging, and achieves more efficient 3D image presentation.

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Abstract

The probe comprises a control box, one end of the control box is fixedly connected with a main camera, connecting grooves are formed in the surfaces of the two sides of the control box, hinge rods are hinged to the interiors of the connecting grooves, one end of each hinge rod is fixedly connected with an adjusting seat, and the other end of each hinge rod is fixedly connected with a camera. An auxiliary camera is slidably mounted on the surface of one side of the adjusting seat, the auxiliary camera is aligned to the side face of the main camera, a mounting frame is fixedly connected to the upper surface of the control box, a telescopic rod is fixedly mounted on the upper surface of the mounting frame, and a mounting block is fixedly connected to the rod head of the telescopic rod; the installation block is installed in the installation frame in a sliding mode, driving rods are hinged to the two ends of the installation block, hinge joints are arranged at one ends of the driving rods, the hinge joints are hinged to the upper surfaces of the hinge rods, overturning control can be achieved through pushing adjustment, adjustment and alignment are facilitated, adaptability is high, a target can be determined through three-point positioning, and accuracy, high efficiency, convenience and stability are achieved.
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Description

Technical Field

[0001] This utility model relates to the field of three-dimensional imaging, and more specifically, to a probe for three-dimensional imaging. Background Technology

[0002] With the development of technology, remote video chat has brought people in different places closer together. During the video chat, people can see each other's status in real time, which is why it is so popular. However, current video chat uses single-camera technology, which can only show each other's two-dimensional image and cannot present a three-dimensional image, so the viewing experience is not very good.

[0003] The utility model patent CN206974422U discloses a dual-camera 3D imaging device. The device includes a display screen, a bracket, a controller mounted on the bracket, a first motor, a crossbar, two lead screws, two cameras, a first rotary encoder, an automatic tracking camera, a second rotary encoder, and a second ultrasonic ranging sensor. The first motor, second motor, automatic tracking camera, display screen, and two cameras are all electrically connected to the controller. During remote video chat, the two cameras transmit two images of the same person to the control device. The control device processes the two images and displays them on the remote display screen. By moving the two cameras using movable components, a 3D image is displayed on the screen. The 3D image has a strong sense of depth, enhancing the realism of the video chat and allowing for a more intuitive view of the other party.

[0004] In the aforementioned disclosed structure, the controller and camera are connected to the bracket, and the direction can be adjusted by rotation. However, the auxiliary camera is installed by the adjustment seat connected by the hinge rod. This is not only not conducive to aligning multiple cameras in parallel, but also cannot be flipped and adjusted to different height positions to form a triangular structure. It cannot locate the direction and position of the target by three-point marking, and the accuracy is poor, which needs to be improved. Utility Model Content

[0005] To address the problems existing in the prior art, the purpose of this utility model is to provide a probe for three-dimensional imaging. The main camera is installed through a control box, and the secondary camera is installed through an adjustment seat connected by a hinge rod. This allows for proper installation and facilitates combined shooting for imaging. Furthermore, a drive rod is installed through a mounting block connected by a telescopic rod, which can be hinged and pushed to adjust and control the flipping mechanism. This facilitates adjustment and alignment, provides high adaptability, and is conducive to three-point positioning to determine the target. It is precise, efficient, convenient, and stable.

[0006] To solve the above problems, the present invention adopts the following technical solution.

[0007] A probe for 3D imaging includes a control box. A main camera is fixedly connected to one end of the control box. Connecting grooves are provided on both sides of the control box. A hinge rod is hinged inside the connecting groove. An adjustment seat is fixedly connected to one end of the hinge rod. A secondary camera is slidably mounted on one side surface of the adjustment seat, and the secondary camera is aligned with the side of the main camera. A mounting bracket is fixedly connected to the upper surface of the control box. A telescopic rod is fixedly mounted on the upper surface of the mounting bracket. A mounting block is fixedly connected to the head of the telescopic rod. The mounting block is slidably mounted inside the mounting bracket. Drive rods are hinged to both ends of the mounting block. A hinge joint is provided at one end of the drive rod and is hinged to the upper surface of the hinge rod. A fixing plate is fixedly connected to the lower surface of the control box. Fixing holes are provided on the surface of the fixing plate and are symmetrically distributed on both sides of the control box.

[0008] Furthermore, the adjustment seat has an elongated groove inside, which is located at the rear end of the secondary camera.

[0009] Furthermore, a threaded rod is rotatably mounted inside the elongated through groove, and the threaded rod is rotatably mounted inside the adjusting seat.

[0010] Furthermore, a threaded block is threadedly installed at one end of the threaded rod, and one end of the threaded block is fixedly connected to one end surface of the secondary camera. The threaded rod is installed through a long through groove, thereby driving the threaded block with the thread. The height position can be adjusted by threaded drive control, which facilitates precise adjustment and alignment, is easy to control and use, and has high adaptability.

[0011] Furthermore, the threaded block is slidably installed inside the elongated through groove and is located on one side of the adjusting seat.

[0012] Furthermore, a drive motor is mounted on one end of the threaded rod, and the drive motor is fixedly mounted on the lower surface of the adjusting seat.

[0013] Furthermore, the drive motor is located on both sides of the control box and on the upper end of the fixed plate. The drive motor is installed through a threaded rod, which can be rotated and adjusted to facilitate threaded drive and convenient control.

[0014] Compared with existing technologies, the advantages of this utility model are:

[0015] (1) This solution uses a control box to install the main camera and an adjustment seat connected by a hinge rod to install the secondary camera. This allows for proper installation and facilitates combined shooting for imaging. The drive rod is installed by a mounting block connected by a telescopic rod, which can be hinged to push the hinge rod to adjust and flip the control. This facilitates adjustment and alignment, has high adaptability, and is conducive to three-point positioning to determine the target. It is accurate, efficient, convenient and stable.

[0016] (2) The threaded rod is installed through the long through groove, thereby driving the threaded block. The height position can be adjusted by the threaded drive control, which makes it convenient to adjust the alignment accurately, which is conducive to control and use, and has high adaptability.

[0017] (3) The drive motor is installed by the threaded rod, which can be rotated and adjusted with the threaded rod, which is beneficial for thread drive and convenient for control and use. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0019] Figure 2 This is a schematic diagram of the planar structure of the present invention;

[0020] Figure 3 This is a partial structural diagram of the drive rod connection of this utility model;

[0021] Figure 4 This is a partial structural diagram of the adjustment seat connection of this utility model;

[0022] Figure 5 This is a partial three-dimensional structural diagram of the threaded rod installation of this utility model.

[0023] Explanation of the labels in the diagram:

[0024] 1. Control box, 11. Main camera, 12. Connecting slot, 13. Hinge rod, 14. Adjustment seat, 15. Secondary camera, 16. Mounting bracket, 17. Telescopic rod, 2. Mounting block, 21. Drive rod, 22. Hinge joint, 23. Long through slot, 24. Threaded rod, 25. Threaded block, 26. Drive motor, 27. Fixing plate, 28. Fixing hole. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0026] Please see Figure 1 , Figure 3 and Figure 4A probe for 3D imaging includes a control box 1. A main camera 11 is fixedly connected to one end of the control box 1. Connecting grooves 12 are provided on both sides of the control box 1. A hinge rod 13 is hinged inside the connecting groove 12. An adjusting seat 14 is fixedly connected to one end of the hinge rod 13. A secondary camera 15 is slidably mounted on one side of the adjusting seat 14, and the secondary camera 15 is aligned with the side of the main camera 11. A mounting bracket 16 is fixedly connected to the upper surface of the control box 1. A telescopic rod 17 is fixedly mounted on the upper surface of the mounting bracket 16. A mounting block 2 is fixedly connected to the head of the telescopic rod 17. The mounting block 2 is slidably mounted inside the mounting bracket 16. Drive rods 21 are hinged to both ends of the mounting block 2. A hinge joint 22 is provided at one end of the drive rod 21, and the hinge joint 22 is hinged to the upper surface of the hinge rod 12. A fixing plate 27 is fixedly connected to the lower surface of the control box 1. The surface of the fixing plate 27 is provided with fixing holes 28, which are symmetrically distributed on both sides of the control box 1. The adjusting seat 14 can be connected to both sides of the control box 1, thereby aligning the secondary camera 15 with both sides of the main camera 11, which is convenient for combined use. The telescopic rod 17 can be controlled to push the mounting block 2 to move up and down. The drive rod 21 can be used to pull the hinge rod 13 to flip and adjust inside the connecting groove 12. The adjusting seat 14 can be flipped and adjusted to adjust the angle, thereby flipping and unfolding from both sides of the control box 1. The height position of the secondary camera 15 can be changed. It can be aligned and adjusted with the main camera 11, or it can be staggered, which is conducive to precise shooting and three-dimensional imaging. It is easy to install and use and has high adaptability.

[0027] Please see Figure 2 and Figure 5 The adjustment seat 14 has an elongated through groove 23 inside, which is located at the rear end of the secondary camera 14. A threaded rod 24 is rotatably installed inside the elongated through groove 23. The threaded rod 24 is rotatably installed inside the adjustment seat 14. A threaded block 25 is threadedly installed at one end of the threaded rod 24. One end of the threaded block 25 is fixedly connected to one end surface of the secondary camera 15. The threaded rod is installed through the elongated through groove, thereby driving the threaded block. The height position can be adjusted by threaded drive control, which is convenient for precise adjustment and alignment, easy to control and use, and highly adaptable.

[0028] Please see Figure 1 and Figure 2The threaded block 25 is slidably installed inside the elongated through groove 23 and located on one side of the adjustment seat 14. A drive motor 26 is mounted on one end of the threaded rod 24. The drive motor 26 is fixedly installed on the lower surface of the adjustment seat 14. The drive motor 26 is located on both sides of the control box 1 and on the upper end of the fixing plate 27. The drive motor is mounted on the threaded rod, which can rotate and adjust the threaded rod. This facilitates threaded drive and convenient control. The drive motor 26 rotates the threaded rod 24, which can drive the threaded block 25 to slide inside the elongated through groove 23. This allows the secondary camera 15 to slide on the surface of the adjustment seat 14, thereby adjusting its position. This facilitates alignment with the main camera 11 at the same height or distribution to different height positions, thus forming a three-point positioning structure. This is beneficial for multi-point shooting of the target, improving the accuracy of position determination and enhancing the clarity of three-dimensional imaging through multi-point shooting. This makes it easy to adjust and use, and highly adaptable.

[0029] The above description is merely a preferred embodiment of this utility model; however, the protection scope of this utility model is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the technical scope disclosed in this utility model, based on the technical solution and its improved concept, should be included within the protection scope of this utility model.

Claims

1. A probe for three-dimensional imaging, comprising a control box (1), one end of the control box (1) is fixedly connected with a main camera (11), and both side surfaces of the control box (1) are provided with connecting grooves (12), characterized in that: The inside of the connecting groove (12) is hingedly connected with a hinge rod (13), one end of the hinge rod (13) is fixedly connected with an adjusting seat (14), one side surface of the adjusting seat (14) is slidingly installed with a secondary camera (15), the secondary camera (15) is aligned with the side surface of the primary camera (11), the upper surface of the control box (1) is fixedly connected with a mounting rack (16), the upper surface of the mounting rack (16) is fixedly installed with a telescopic rod (17), the rod head of the telescopic rod (17) is fixedly connected with a mounting block (2), the mounting block (2) is slidingly installed in the inside of the mounting rack (16), both ends of the mounting block (2) are hingedly connected with a drive rod (21), one end of the drive rod (21) is provided with a hinge joint (22), the hinge joint (22) is hingedly connected with the upper surface of the hinge rod (13), the lower surface of the control box (1) is fixedly connected with a fixed plate (27), the surface of the fixed plate (27) is provided with a fixed hole (28), the fixed holes (28) are symmetrically distributed on both sides of the control box (1).

2. A probe for three-dimensional imaging according to claim 1, characterized in that: The inside of the adjusting seat (14) is provided with an elongated through slot (23), the elongated through slot (23) is located at the rear end position of the secondary camera (15).

3. A probe for three-dimensional imaging according to claim 2, characterized in that: The inside of the elongated through slot (23) is rotatably installed with a threaded rod (24), the threaded rod (24) is rotatably installed in the inside of the adjusting seat (14).

4. A probe for three-dimensional imaging according to claim 3, characterized in that: One end of the threaded rod (24) is threadedly installed with a threaded block (25), one end of the threaded block (25) is fixedly connected with one end surface of the secondary camera (15).

5. A probe for three-dimensional imaging according to claim 4, characterized in that: The threaded block (25) is slidingly installed in the inside of the elongated through slot (23) and located at one side position of the adjusting seat (14).

6. A probe for three-dimensional imaging according to claim 3, characterized in that: One end of the threaded rod (24) is combinedly installed with a drive motor (26), the drive motor (26) is fixedly installed on the lower surface of the adjusting seat (14).

7. A probe for three-dimensional imaging according to claim 6, characterized in that: The drive motor (26) is located on both sides of the control box (1) and on the upper end of the fixed plate (27).

Citation Information

Patent Citations

  • Two camera three -dimensional imaging devices

    CN206974422U