360-degree photo booth having apparatus for collecting 3D printing data

By designing an automated shooting stand with a 360-degree photo booth, the problems of low efficiency of manual drawing and poor accuracy of handheld scanners in traditional 3D printing were solved, achieving efficient and stable 3D image data acquisition and stereoscopic drawing generation.

WO2026020801A1PCT designated stage Publication Date: 2026-01-29MARVEL TECH SHENZHEN CO LTD
View PDF 16 Cites 0 Cited by

Patent Information

Application Number
PCT/CN2025/078030
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-07-24
Filing Date
2025-02-19
Publication Date
2026-01-29

AI Technical Summary

Technical Problem

Traditional 3D printing requires manual drawing of 3D blueprints, which is inefficient, especially for complex curved objects. Furthermore, existing 3D scanners suffer from poor blueprint accuracy and high labor intensity due to manual handling.

Method used

Design a 360-degree photo booth, including a support platform, a shooting stand, a camera, a light source, and a driving device. The driving device drives the shooting stand to rotate around the support platform, automatically acquiring 3D image data and avoiding hand-held shaking.

Benefits of technology

It achieves high-quality 3D image data acquisition, generates stable stereoscopic drawings, reduces the intensity of operation, and improves efficiency and drawing accuracy.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN2025078030_29012026_PF_FP_ABST
    Figure CN2025078030_29012026_PF_FP_ABST
Patent Text Reader

Abstract

Disclosed in the present utility model is a 360-degree photo booth having an apparatus for collecting 3D printing data, comprising: a support platform; a shooting vertical frame, the shooting vertical frame being disposed at peripheral side of the support platform, the shooting vertical frame being provided with collection cameras, and collection ends of the collection cameras facing an object to be photographed placed on the support platform; a driving apparatus, the driving apparatus being connected to the shooting vertical frame, and used to drive the shooting vertical frame to rotate around the support platform; a power supply assembly, the power supply assembly being electrically connected to the collection cameras and / or the driving apparatus, and used to supply power to the collection cameras and / or the driving apparatus. The shooting vertical frame comprises a first vertical frame and a second vertical frame arranged along a vertical direction; the first vertical frame is rotatably connected to the second vertical frame for folding. There are multiple collection cameras, disposed distributed along a length direction of the shooting vertical frame.
Need to check novelty before this filing date? Find Prior Art

Description

A 360-degree photographic kiosk with 3D printing data collection device TECHNICAL FIELD

[0001] The present application relates to the technical field of 3D printing devices, and particularly relates to a 360-degree photographic kiosk with 3D printing data collection device. BACKGROUND

[0002] Traditional 3D printing needs to manually draw a solid drawing of a required shape by using a drawing tool, and then import the solid drawing into the software of a 3D printer to process and print an entity object. This method is relatively good for drawing a solid drawing of a regular-shaped object. If the object is complex and contains many curved surfaces, the drawing difficulty of a drawing worker is greatly increased, the drawing time is correspondingly increased, the efficiency is low, and the method cannot well meet the needs of customers.

[0003] In the prior art, a three-dimensional scanner with data collection feedback is disclosed in application No. CN202110855190.5. An operator can directly hold a three-dimensional scanner to scan an oil clay model or an initial entity object that needs to be copied and printed, and directly generate a solid drawing, so that manual slow drawing is not needed, and the efficiency is improved. However, since the three-dimensional scanner is manually held, the stability of the manually held scanner greatly affects the accuracy of the generated drawing file. Because the manually held scanner is relatively unstable, the distance between the scanner and the scanned sample is not constant. In addition, the three-dimensional scanner is large in size and heavy in weight, and the operator has a large labor intensity.

[0004] Practical new type content

[0005] The present application mainly aims at the above problems, and provides a 360-degree photographic kiosk with 3D printing data collection device, which aims to solve the technical problems in the background art.

[0006] To achieve the above purpose, the present application provides a 360-degree photographic kiosk with 3D printing data collection device, which comprises:

[0007] A support table;

[0008] A shooting stand is arranged on the side of the support table. The shooting stand is provided with a collection camera, and the collection end of the collection camera faces the object to be shot placed on the support table.

[0009] A light source is arranged on the shooting stand, and the light emitting surface of the light source faces the support table.

[0010] A driving device is connected with the shooting stand, and is used for driving the shooting stand to rotate around the support table.

[0011] Further, the shooting stand comprises a first stand and a second stand arranged along a vertical direction; the first stand is rotationally connected to the second stand.

[0012] Further, a locking member is arranged, which comprises a lock head and a lock catch connected to the first stand and the second stand respectively; when the first stand and the second stand are rotationally folded, the lock head is locked with the lock catch to lock the connection between the first stand and the second stand.

[0013] Further, the number of the collection cameras is multiple groups, which are arranged along the length direction of the shooting stand.

[0014] Further, a power supply assembly is arranged, which is electrically connected to the collection cameras to supply power to the collection cameras.

[0015] Further, the shooting stand comprises a rotary connecting frame, one end of which is connected to the power output end of the driving device, and the other end of which is detachably connected to the shooting stand.

[0016] Further, a counterweight balancing member is arranged; the rotary connecting frame comprises a first frame body and a second frame body; one end of the first frame body is connected to the power output end of the driving device, and the other end of the first frame body is connected to the shooting stand; one end of the second frame body is connected to the power output end of the driving device and / or the first frame body, and the other end of the second frame body is connected to the counterweight balancing member; the counterweight balancing member is arranged on the opposite side of the shooting stand.

[0017] Further, the first frame body and the second frame body are both adjustable telescopic frames.

[0018] Further, the shooting stand is a hollow box body enclosed by a plate; the box body is provided with a position avoiding hole corresponding to the collection end of the collection camera and a weight reducing and heat dissipating hole.

[0019] Further, a support main shaft is arranged, one end of which is connected to the support table; the support main shaft is internally provided with a threading cavity, and the side wall of the support main shaft is provided with a threading through hole in communication with the threading cavity.

[0020] The power supply assembly comprises a conductive slip ring rotationally connected to the support main shaft, a first power supply socket mounted on the rotary connecting frame, and a first power supply line; the conductive slip ring is mounted on the rotary connecting frame; the power connection end of the conductive slip ring is connected to an external power source through the first power supply line and the threading through hole and the threading cavity;

[0021] The power connection end of the first power supply socket is electrically connected to the power supply end of the conductive slip ring.

[0022] Compared with the prior art, the 360-degree photographic pavilion with the 3D printing data collecting device can drive the shooting stand to rotate around the support table through the driving device, and can keep the collecting end of the collecting camera consistent with the distance between the shooting object and the collecting camera during rotation, so that high-quality and stable 3D image data can be collected and transmitted to the 3D printing equipment, the shaking of the handheld three-dimensional scanner in the prior art is avoided, the distance is not the same between far and near, the quality of the generated stereoscopic drawing is low, and the drawbacks of repeated collection and scanning are avoided. BRIEF DESCRIPTION OF DRAWINGS

[0023] Fig. 1 is a structural schematic view of the 360-degree photographic pavilion with the 3D printing data collecting device.

[0024] Fig. 2 is an enlarged view of A in Fig. 1.

[0025] Fig. 3 is a structural exploded view of the 360-degree photographic pavilion with the 3D printing data collecting device after removing the shooting stand.

[0026] Fig. 4 is a sectional view of the 360-degree photographic pavilion with the 3D printing data collecting device.

[0027] Fig. 5 is a structural exploded view of the shooting stand of the 360-degree photographic pavilion with the 3D printing data collecting device.

[0028] Fig. 6 is another perspective view of the shooting stand of the 360-degree photographic pavilion with the 3D printing data collecting device.

[0029] The reference signs shown in the drawings are as follows: 1, support table; 110, support framework; 120, shock-absorbing cotton; 130, upper cover plate; 2, shooting stand; 210, first stand; 220, second stand; 230, retaining locking piece; 240, rotating connecting frame; 241, first frame body; 242, second frame body; 260, weight-reducing heat dissipation hole; 3, collecting camera; 310, camera; 320, camera mainboard; 330, wireless transmitter; 4, driving device; 410, bearing; 420, driven wheel; 430, driving wheel; 440, motor; 450, controller; 5, power supply assembly; 510, conductive slip ring; 520, first power supply socket; 530, power supply interface; 540, second power supply socket; 550, first power supply line; 560, second power supply line; 570, third power supply line; 610, lock head; 620, lock catch; 7, light source; 710, light source controller; 8, counterweight balancing piece; 9, support main shaft; 910, threading cavity; 920, threading through hole; 10, support base; 1010, foot cup; 1020, support pipe. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the utility model will be clearly and completely described in the utility model embodiments combined with the drawings in the utility model embodiments. Obviously, the described embodiments are only part of the embodiments of the utility model, and not all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model. It can be understood that the drawings are only provided for reference and illustration, and not to limit the utility model. The connection relationship shown in the drawings is only for the convenience of clear description, and not to limit the connection mode.

[0031] 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 a middle component can exist simultaneously. Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which the utility model belongs. It should be noted that unless otherwise specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection, or the communication between two elements. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances. The terms used in the specification of the utility model in this paper are only for the purpose of describing the specific embodiments, and are not intended to limit the utility model.

[0032] It should be noted that in the description of the utility model, the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and not to indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, therefore it cannot be understood as a limitation on the utility model. In addition, the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying relative importance.

[0033] Please refer to FIG. 1-6, the embodiment provides a 360 degree photographic pavilion with 3D printing data acquisition device, comprising:

[0034] Supporting table 1; in some embodiments, the supporting table 1 comprises supporting framework 110, shock-absorbing cotton 120 arranged on the upper end surface of the supporting framework 110, upper cover plate 130 covering the supporting framework 110 and the shock-absorbing cotton 120 and being detachably connected with the supporting framework 110.

[0035] A photographing stand 2 is arranged on the periphery of the support table 1, and the photographing stand 2 is provided with a collection camera 3, and the collection end of the collection camera 3 faces the object to be photographed placed on the support table 1, and the collected 3D image data is transmitted to a 3D printing device.

[0036] A driving device 4 is connected with the photographing stand 2, and is used for driving the photographing stand 2 to rotate around the support table 1.

[0037] A power supply assembly 5 is electrically connected with the collection camera 3, and is used for supplying power to the collection camera 3.

[0038] The object to be scanned is placed on the support table 1, and the object can be a resin model, also known as a hand-made model; the object can be a specimen, a clay model, an animal, or the user himself / herself, and the like. Thus, the photographing stand 2 is driven by the driving device 4 to rotate around the support table 1, and in the rotating process, the collection end of the collection camera 3 can be stably kept at a consistent distance from the object to be photographed, and high-quality and stable 3D image data is collected and transmitted to the 3D printing device. The 3D image data can be directly rendered and calculated by the collection camera 3, and a stereogram equal to the object to be photographed is generated. After receiving the processing, the 3D printing device can print the corresponding model.

[0039] Thus, the problems of shaking, inconsistent distance, low-quality stereogram, and repeated collection and scanning in the prior art are avoided. The photographing stand 2 is driven by the mechanical automatic device, and the problem of high labor intensity of the operator is avoided.

[0040] When the 360-degree photographing booth with the collection 3D printing data device is used to collect 3D image data of a user as a target, the user can keep a posture on the fixed carrier of the support table 1 during the collection process, and the support table 1 does not need to rotate, so that the user does not feel dizzy. Instead, the photographing stand 2 is driven by the driving device 4 to rotate around the support table 1, which is convenient and fast. Finally, a real object similar to the user can be printed, and compared with the traditional photographing and video recording for commemoration, the 3D printing entity object is more interesting.

[0041] Please refer to FIG. 1 and FIG. 4-FIG. 6, the photographing stand 2 includes a first stand 210 and a second stand 220 arranged in a vertical direction, and the first stand 210 and the second stand 220 are rotationally connected and folded.

[0042] Preferably, the first stand 210 and the second stand 220 have substantially equal lengths, are connected by a hinge, and can be unfolded into a vertical state and fixed by the retaining lock 230. When folded, the first stand 210 and the second stand 220 are in a storage state, facilitating transportation and reducing space occupation. The retaining lock 230 can be a latch or a clasp, allowing quick operation without the need for additional tools, thus being convenient and fast.

[0043] Please refer to FIG. 1 and FIG. 2, the locking member includes a lock head 610 and a lock catch 620 connected to the first stand 210 and the second stand 220, respectively. When the first stand 210 and the second stand 220 are folded, the lock head 610 and the lock catch 620 are locked, locking the first stand 210 and the second stand 220.

[0044] In some embodiments, the lock head 610 and the lock catch 620 can be a knock bead lock. This prevents the first stand 210 and the second stand 220 from being easily unfolded after being folded, and prevents the first stand 210 and the second stand 220 from colliding and damaging the high-precision collection camera 3 during transportation.

[0045] Please refer to FIG. 1 and FIG. 4-6, the collection cameras 3 are in multiple groups and are arranged along the length direction of the shooting stand 2 at intervals.

[0046] The multiple groups of collection cameras 3 are arranged along the height direction and have a certain interval distance, which can collect different regions of the object in the height direction and can also collect overlapping regions, thus more accurately generating a stereogram.

[0047] Each group of collection cameras 3 includes a camera 310 and a camera mainboard 320, and a wireless transmitter 330 can be shared by multiple groups of collection cameras 3 to transmit data to the 3D printing device or receive control of the collection cameras 3 from an external control terminal. Since the wireless transmitter 330 is used, there is no need to worry about the problem of wire winding and cable knotting when the driving device 4 drives the shooting stand 2 to rotate around the support table 1. In some embodiments, the wireless transmitter 330 is a wireless router that is electrically connected to the camera mainboard 320 and receives power from the power supply assembly 5.

[0048] Please refer to FIG. 5 and FIG. 6, the light source 7 is arranged on the shooting stand 2, and the light emitting surface of the light source 7 faces the support table 1.

[0049] Preferably, the light source 7 is in a strip shape corresponding to the collection end camera 310 lens of the collection camera 3, and the light source 7 is arranged on the left and right sides of the collection end camera 310 lens.

[0050] The light source 7 further comprises a light source controller 710 arranged in the shooting stand 2, which can be electrically connected with the wireless transmitter 330 and receives power supply from the power supply assembly 5.

[0051] Please refer to FIG. 1-3, the shooting stand 2 comprises a rotating connecting frame 240, one end of which is connected with the power output end of the driving device 4, and the other end is detachably connected with the shooting stand 2.

[0052] The shooting stand 2 is indirectly connected with the power output end of the driving device 4 through the rotating connecting frame 240, and receives the driving of the driving device 4 to rotate around the support table 1; in some embodiments, the shooting stand 2 can be an integral structure with the rotating connecting frame 240.

[0053] When the shooting stand 2 is detached from the rotating connecting frame 240, the rotating connecting frame 240 can be connected with a conventional photography and videography shooting support to erect a shooting device such as a mobile phone, a camera, a video camera, etc.; the 3D photographing kiosk with the data collection device is converted into a photographing kiosk for shooting photos and videos.

[0054] Please refer to FIG. 1-3, including a counterweight balancing member 8; the rotating connecting frame 240 comprises a first frame body 241 and a second frame body 242; one end of the first frame body 241 is connected with the power output end of the driving device 4, and the other end is connected with the shooting stand 2; one end of the second frame body 242 is connected with the power output end of the driving device 4 and / or the first frame body 241, and the other end is connected with the counterweight balancing member 8; the counterweight balancing member 8 is arranged on the opposite side of the shooting stand 2.

[0055] When the first frame body 241 is arranged below the support table 1, the position of the shooting stand 2 has a distance interval from the rotation center of the support table 1, then the first frame body 241 erects the shooting stand 2 in a cantilever state, and by arranging the second frame body 242 and the counterweight balancing member 8 on the second frame body 242, the dynamic balance can be adjusted to prevent the shooting stand 2 from tilting and shaking when rotating, and to improve the stability and quality of collecting 3D image data.

[0056] Please refer to FIG. 1 and FIG. 3, the first frame body 241 and the second frame body 242 are both adjustable telescopic frames.

[0057] When different sizes of objects to be photographed are placed on the support table 1, in addition to the focal length adjustment of the camera 310 itself, the distance between the shooting stand 2 and the counterweight balancing member 8 from the periphery of the support table 1 can also be adjusted by the telescopic adjustment of the first frame body 241 and the second frame body 242, so as to expand the range of focal length adjustment and improve the versatility of the 3D photographing kiosk.

[0058] Preferably, the first frame body 241 and the second frame body 242 are frame structures, which have high strength and stability and can provide good support.

[0059] Please refer to FIG. 1 and FIG. 4-6, the shooting stand 2 is a hollow box body enclosed by a plate; the box body is provided with an avoidance hole corresponding to the collection end of the collection camera 3 and a weight-reducing and heat-dissipating hole 260.

[0060] The avoidance hole is used to avoid blocking the camera lens 310 and the light source 7, and the weight-reducing and heat-dissipating hole 260 can reduce the weight of the shooting stand 2, making it easier to transport. When the shooting stand 2 rotates, flowing air can enter the box body cavity, providing heat dissipation for the camera 310, the camera mainboard 320, the light source 7, and the light source controller 710, thereby improving the service life and achieving multiple purposes at once.

[0061] Please refer to FIG. 1-4, including a support spindle 9, one end of which is connected with the support table 1; the inside of the support spindle 9 is provided with a threading cavity 910, and the side wall of the support spindle 9 is provided with a threading through hole 920 in communication with the threading cavity 910;

[0062] The power supply assembly 5 includes a conductive slip ring 510 rotatably connected with the support spindle 9, a first power supply socket 520 mounted on the rotary connecting frame 240, a power supply interface 530 provided on the shooting stand 2, a second power supply socket 540 provided on the shooting stand 2, a first power supply line 550, a second power supply line 560, and a third power supply line 570; the conductive slip ring 510 is mounted on the rotary connecting frame 240; the power connection end of the conductive slip ring 510 is connected with an external power source through the first power supply line 550, the threading through hole 920, and the threading cavity 910;

[0063] The power connection end of the first power supply socket 520 is electrically connected with the power supply end of the conductive slip ring 510; the second power supply line 560 is arranged along the rotary connecting frame 240, one end of the second power supply line 560 is electrically connected with the power supply end of the first power supply socket 520, and the other end is connected with the power connection end of the power supply interface 530; one end of the third power supply line 570 is electrically connected with the power supply end of the power supply interface 530, and the other end is connected with the power connection end of the second power supply socket 540.

[0064] By using the conductive slip ring 510 as one of the components in the power supply assembly 5 for a series of components in the shooting stand 2 connected with the rotary connecting frame 240, the entanglement and knotting of the wire cable can be avoided when the rotary connecting frame 240 rotates relative to the support table 1. Preferably, the power supply interface 530 is arranged at a position adjacent to the rotary connecting frame 240.

[0065] Preferably, the conductive slip ring 510 is coaxially arranged with the supporting spindle 9.

[0066] In some embodiments, the driving device 4 comprises a bearing 410 sleeved with the outer wall of the supporting spindle 9, a driven wheel 420 connected with the outer ring of the bearing 410, a driving wheel 430 in driving connection with the driven wheel 420, a motor 440 with the power output end connected with the driving wheel 430, a controller 450 in electrical connection with the motor 440, and the rotary connecting frame 240 connected with the end face of the driven wheel 420. The driven wheel 420 is the power output end of the driving device 4, and the power of the motor 440 is transmitted to the rotary connecting frame 240 to drive the rotary connecting frame 240 to rotate.

[0067] In some embodiments, the first power supply socket 520 and the second power supply socket 540 are both row sockets with multiple power supply sockets; the power supply interface 530 is a triangular socket, and the power supply interface 530 is provided with a master control switch on the side.

[0068] The second power supply socket 540 provides power for the light source 7, the light source controller 710 and the acquisition camera 3.

[0069] In some embodiments, the other end of the supporting spindle 9 is further connected with a supporting base 10, and the bottom end of the supporting base 10 is provided with a height-adjustable foot cup 1010, and the bottom end of the supporting base 10 is further provided with a supporting pipe 1020 to assist the foot cup 1010 in supporting.

[0070] In the specification and claims of the present application, the words "comprise / contain" and the words "have / including" and their variants are used to specify the presence of the stated features, values, steps or components, but do not exclude the presence or addition of one or more other features, values, steps, components or combinations thereof.

[0071] Some features of the present application are described in different embodiments for the sake of clarity, however, these features can also be combined in a single embodiment. Conversely, some features of the present application are described in a single embodiment for the sake of brevity, however, these features can also be described in different embodiments, alone or in any suitable combination.

[0072] The above is only the preferred embodiment of the present application, and does not limit the present application, and any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A 360 degree photographic kiosk with means to capture 3D printed data, characterized by, Include: Supporting table; Photographing stand, the photographing stand is equipped on the circumferential side of the supporting table; The photographing stand is provided with a collection camera, and the collection end of the collection camera faces the photographed object placed on the supporting table; Light source, the light source is equipped on the photographing stand, and the light emitting surface of the light source faces the supporting table; Driving device, the driving device is connected with the photographing stand, for driving the photographing stand to rotate around the supporting table.

2. A 360-degree photographic kiosk with a 3D printing data collection device as defined in claim 1, characterized in that, The photographing stand includes a first stand and a second stand arranged in a vertical direction; the first stand and the second stand are rotationally connected and folded.

3. A 360-degree photographic kiosk with a 3D printing data collection device as defined in claim 2, wherein, The locking piece includes a lock head and a lock catch connected with the first stand and the second stand respectively; when the first stand and the second stand are rotationally folded, the lock head and the lock catch are locked, and the first stand and the second stand are locked.

4. The 360-degree photographic kiosk with 3D printing data collection device of claim 1, wherein, The number of collection cameras is multiple, and the collection cameras are distributed and arranged along the length direction of the photographing stand.

5. The 360 degree photographic kiosk with 3D printing data acquisition device of claim 1, wherein, The power supply assembly is electrically connected with the collection cameras, and is used for supplying power to the collection cameras.

6. A 360 degree photographic kiosk with a 3D printing data acquisition device according to claim 5, characterized in that, The photographing stand includes a rotating connecting frame, one end of the rotating connecting frame is connected with the power output end of the driving device, and the other end is detachably connected with the photographing stand.

7. A 360-degree photographic kiosk with a 3D printing data collection device as defined in claim 6, wherein, The rotating connecting frame includes a first frame body and a second frame body; one end of the first frame body is connected with the power output end of the driving device, and the other end is connected with the photographing stand; one end of the second frame body is connected with the power output end of the driving device and / or the first frame body, and the other end is connected with the counterweight balancing piece; the counterweight balancing piece is arranged on the opposite side of the photographing stand.

8. A 360-degree photographic kiosk with a 3D printing data collection device according to claim 7, characterized in that, The first frame body and the second frame body are adjustable telescopic frames.

9. The 360-degree photographic kiosk with 3D printing data acquisition device of claim 1, wherein, The photographing stand is a hollow box body enclosed by a plate; the box body is provided with a position avoiding hole corresponding to the collection end of the collection camera and a weight reducing and heat dissipating hole.

10. The 360-degree photographic kiosk with a 3D printing data collection device of claim 6, wherein, The supporting main shaft is connected with the supporting table at one end; the supporting main shaft is provided with a threading cavity in the inside, and the side wall of the supporting main shaft is provided with a threading through hole in communication with the threading cavity; The power supply assembly includes a conductive slip ring rotationally connected with the supporting main shaft, a first power supply socket mounted on the rotating connecting frame, and a first power supply line; the conductive slip ring is mounted on the rotating connecting frame; the power connection end of the conductive slip ring is connected with an external power source through the first power supply line passing through the threading through hole and the threading cavity; The power connection end of the first power supply socket is electrically connected with the power supply end of the conductive slip ring.

Citation Information

Patent Citations

  • Object appearance omnibearing image acquisition device

    CN213876298U

  • Six-surface image acquisition device

    CN216057214U

  • Anti-shake surrounding rotary shooting platform

    CN216243272U

  • 360-degree rotation shooting device

    CN217879935U

  • Shock-proof and anti-shake surrounding type shooting platform

    CN218327240U