Rotary shooting apparatus
The rotary imaging device addresses the challenges of conventional 3D imaging systems by providing a stable, efficient, and noise-reduced 3D imaging solution for heavy subjects through a fixed and rotating plate structure with emergency braking and rotational speed control, enabling safe and high-speed 360-degree capture.
Patent Information
- Authority / Receiving Office
- KR · KR
- Patent Type
- Patents
- Current Assignee / Owner
- THE PLATFORM CO CO LTD
- Filing Date
- 2026-05-19
- Publication Date
- 2026-07-21
AI Technical Summary
Conventional 3D imaging systems using multiple cameras are expensive, complex, and pose risks of equipment failure and subject discomfort or movement during rotation, especially with living subjects.
A rotary imaging device with a fixed plate and rotating plate structure, equipped with emergency braking, rotational speed control, and weight distribution, allowing for stable and noise-minimized 3D imaging of heavy subjects using LED lighting and a cam mount for 360-degree capture.
Enables safe and stable 3D imaging with improved rotational speed, reduced noise, and the ability to handle heavy subjects up to 400 kg, while minimizing equipment complexity and noise interference.
Smart Images

Figure 112026060280828-PAT00002_ABST
Abstract
Description
Technology Field
[0001] The present invention relates to a rotary imaging device, and more specifically, to a rotary imaging device capable of capturing an image of a subject by rotating a cam mount installed on the outer edge around a subject positioned on a fixed plate, while the cam mount rotates by the rotating plate. Background Technology
[0002] Thanks to the recent rapid advancements in hardware and image processing technology, technology is being developed to create a three-dimensional image (3D image) of a subject by capturing it from multiple angles and combining them.
[0003] Such 3D shooting is generally performed by positioning multiple cameras facing the target to be shot, and the images captured by each camera are edited using an image processing program to produce a completed video.
[0004] However, since these conventional video recording technologies use multiple cameras for 3D video recording, the equipment is not only expensive but also complex in configuration, which increases the risk of failure.
[0005] Therefore, the proposed conventional registered utility model No. 20-0214661 relates to a camera and a subject fixing device for capturing three-dimensional images, comprising: a subject fixing device that supports a subject to be captured in three dimensions and rotates the subject by a predetermined angle; and a camera fixing device that fixes a camera for capturing the subject in three dimensions and adjusts the height and distance of the camera capturing the subject on the subject fixing device.
[0006] At this time, the object fixing device is a structure in which a motor box containing a motor for rotating the object is placed on one of three or more support plates equipped with a horizontal adjustment screw capable of horizontal adjustment, a fixing plate for fixing the top plate to the rotation axis of the motor inside the motor box is horizontally fixed, and the top plate and the buffer plate are sequentially screw-coupled on the fixing plate.
[0007] However, conventional subject fixing devices have a structure in which the subject is placed on a top plate and rotated at predetermined angles. Therefore, in the case of living creatures such as people or pet dogs, if the subject is placed on the top plate and rotated, not only does dizziness occur, but there is also a high risk of movement while rotating, making it difficult to properly perform 3D imaging. Prior art literature
[0008] Republic of Korea Registered Utility Model Publication No. 20-0214661 The problem to be solved
[0009] The objective of the present invention is to... The invention provides a rotary shooting device that allows for safe video recording using LED lighting through emergency braking and rotational speed control, as well as stable shooting of heavy subjects by distributing the strength and weight of the fixed plate part of the footrest function, while simultaneously minimizing noise that may occur in the power supply unit (inverter). means of solving the problem
[0010] A rotary shooting device according to an embodiment of the present invention for solving the above technical problem comprises: a fixed plate portion on which a subject is placed; a rotating plate portion installed at the lower part of the fixed plate portion; a body portion installed at the lower part of the rotating plate portion; a driving unit and a rotational driving unit installed on the bottom within the body portion to rotate or stop the rotating plate portion; a cam mount installed on one side of the circumference of the rotating plate portion to rotate simultaneously with the rotation of the rotating plate portion and to photograph the subject placed on the fixed plate portion in a 360-degree direction; and a power supply unit installed on one side of the circumference of the body portion to supply power to the driving unit, the rotational driving unit, and the cam mount.
[0011] In another embodiment, the fixed plate portion of the present invention comprises: a circular stage plate portion on which a subject is placed; a radial reinforcing member coupled to extend radially from the center of the lower surface of the stage plate portion; a plurality of end reinforcing members connecting the outer ends of the radial reinforcing members; a plurality of first bearing portions rotatably installed at the ends of the radial reinforcing members and rolling in contact with the upper surface of the rotating plate portion; and a stage plate protective cover portion formed perpendicularly downward around the perimeter of the stage plate portion to block the radial reinforcing member and the plurality of first bearing portions from being exposed laterally.
[0012] In another embodiment, the rotating plate portion of the present invention comprises: an upper plate portion located below the fixed plate portion and formed to correspond to the planar area of the fixed plate portion; a lower plate portion located below the upper plate portion and formed to correspond to the planar area of the upper plate portion; a reinforcing member connecting the upper plate portion and the lower plate portion; a plurality of second bearing portions each installed on the reinforcing member at a certain interval adjacent to the outer edge of the lower plate portion and penetrating the lower surface of the lower plate portion to make contact with the upper inner surface of the body portion and perform rolling motion; and an outer protective cover portion covering the outer edge between the upper plate portion and the lower plate portion.
[0013] In another embodiment, the present invention is characterized in that a first rotary drive unit through-hole is formed at the rotation center of the upper plate portion through which the upper surface of the rotary drive unit penetrates, and a second rotary drive unit through-hole having the same diameter as the first rotary drive unit through-hole is formed at the rotation center of the lower plate portion so as to penetrate the upper surface of the rotary drive unit.
[0014] In another embodiment, the reinforcing member of the present invention comprises: a grid-type reinforcing member positioned in the space between the upper plate and the lower plate and connecting the upper plate and the lower plate; a circular reinforcing member coupled to the rotational center of the grid-type reinforcing member, having a fixed shaft through-hole formed so that the upper surface of the rotational drive member contacts and is bolted to the lower surface of the stage plate; a power supply cable through-hole formed to penetrate one side of the circular reinforcing member and connect to an internal passage on one side of the grid-type reinforcing member; a cam mount coupling extension formed protruding from one side of the grid-type reinforcing member through the outer edge between the upper plate and the lower plate; a cam mount coupling part that fastens the cam mount coupled to the cam mount coupling extension part on the lower surface of one side of the cam mount coupling extension part; and a weight-matching part installed at the outer end of the grid-type reinforcing member on the opposite side facing the cam mount coupling extension part with the circular reinforcing member in between.
[0015] In another embodiment, the first rotary drive unit through hole, the second rotary drive unit through hole, and the fixed shaft through hole of the present invention are characterized by being formed with the same diameter.
[0016] In another embodiment, the upper plate portion of the present invention is characterized by having a plurality of through-holes formed radially from the center of rotation, and a plate-shaped weight installed in the through-hole corresponding to the weight-matching portion among the plurality of through-holes to prevent eccentricity of the rotary imaging device caused by the weight of the cam mount connected to the cam mount coupling extension portion.
[0017] In another embodiment, the body portion of the present invention comprises: a bottom plate; a bottom plate reinforcing member installed in a grid shape on the lower surface of the bottom plate; an upper support plate in the shape of a ring plate disposed above the bottom plate; horizontal adjustment support legs each installed at a certain distance in the circumferential direction at the edge of the lower surface of the bottom plate; a bent portion bent at the lower part of the upper support plate to maintain a certain distance from the upper support plate; a plurality of first support plate reinforcing members and a plurality of second support plate reinforcing members each installed at a certain distance in the circumferential direction between the bottom plate and the bent portion; and a body portion protective cover portion that wraps around to connect the outer surface of the bottom plate.
[0018] In another embodiment, the rotary drive unit of the present invention comprises: a rotary side pulley coupled to the outer surface of a fixed member; a support shaft concentrically coupled to the center of the lower surface of the fixed member; a slip ring coupled to the outer surface of the support shaft; and a lower fixing member, the lower surface of which is installed on a bottom plate reinforcing member at the center of the bottom plate of the body member and coupled to the lower outer surface of the support shaft.
[0019] As another embodiment, the present invention is characterized in that a sensor unit equipped with a sensor operation receiving unit is installed between the lower plate of the rotating plate part and the bottom plate of the body part. Effects of the invention
[0020] The rotary imaging device of the present invention has the following effects.
[0021] First, immediate emergency braking is possible due to the inverter power cutoff.
[0022] Second, rotation speed control is possible through the application of a proximity sensor.
[0023] Third, since the photosensor is mounted on the cam mount, emergency braking is possible.
[0024] Fourth, the maximum rotational speed can be improved from the existing 3 rotations in about 8 seconds to about 4.5 seconds or less (maximum 50 RPM).
[0025] Fifth, video recording is possible using a wired webcam.
[0026] Sixth, LED lighting can be installed by installing a connector.
[0027] Seventh, by distributing the strength and weight of the fixed plate part of the footrest function, it can withstand high loads (up to 400 kg).
[0028] Eighth, the adverse effects of noise that may be generated in the power supply unit (inverter) on personal computers and wireless communication devices can be minimized. Brief explanation of the drawing
[0029] FIG. 1 is an overall perspective view of the rotary imaging device of the present invention. FIG. 2 is a cross-sectional view of a rotary imaging device of the present invention. FIG. 3 is a bottom perspective view of the fixing plate portion of the present invention. FIG. 4 is a bottom perspective view of the rotating plate portion of the present invention. FIG. 5 is a planar perspective view of the body portion of the present invention. FIG. 6 is an exploded view of the rotary drive unit for part "A" of FIG. 2. FIG. 7 is a cross-sectional view of the rotary drive unit combination for FIG. 6. FIG. 8 is a diagram showing the usage state of the present invention. FIG. 9 is a partial perspective view of another embodiment of the present invention equipped with a weight. Specific details for implementing the invention
[0030] Hereinafter, preferred embodiments of the present invention are described with reference to the accompanying drawings to fully understand the present invention. Embodiments of the present invention may be modified in various forms, and the scope of the present invention should not be interpreted as being limited to the embodiments described in detail below. It should be noted that in each drawing, identical components may be illustrated with the same reference numerals. Detailed descriptions of known functions and components that are deemed to unnecessarily obscure the essence of the present invention are omitted.
[0031] Referring to FIGS. 1 to 9, a rotary shooting device (100) according to an embodiment of the present invention includes a fixed plate part (10), a rotating plate part (20), a body part (30), a driving part (40), a rotary driving part (50), a rotary driving bearing (60), a power supply part (70), a cam mount (80), a sensor part (90), a cam (200), and a weight (300).
[0032] That is, the above-mentioned fixed plate portion (10) is on which an object is placed, and is formed by including a stage plate portion (11), a radial reinforcing member (13), an end connecting member (15), a plurality of first bearing portions (17), and a stage plate protective cover portion (19).
[0033] At this time, the stage plate (11) is in the shape of a circle on which an object is placed, and it is preferable that a plurality of rotary drive unit coupling holes (11a) are formed for bolting the upper part of the rotary drive unit (50) inserted into the circular hole (13c) in the center and the stage plate (11).
[0034] The above radial reinforcing member (13) is installed at 45-degree intervals along the circumference of the stage plate (11) when combined to extend radially from the center of the lower surface of the stage plate (11), and is formed by including an intermediate reinforcing member (13a), a central reinforcing member (13b), and a circular hole (13c).
[0035] At this time, the intermediate reinforcing member (13a) serves to connect the intermediate sections along the length of the radial reinforcing member (13).
[0036] The central reinforcing member (13b) above serves to connect the inner ends.
[0037] The above circular hole (13c) is installed at the lower part of the central reinforcing member (13b) and serves to guide the upper part of the rotary drive unit (50) to be inserted.
[0038] The above multiple end reinforcing members (15) each serve to connect the outer ends of the radial reinforcing members (13).
[0039] The above plurality of first bearing parts (17) are each rotatably installed at the end of the radial reinforcing member (13) and come into contact with the upper surface of the rotating plate part (20) to perform rolling motion.
[0040] The above stage plate protection cover (19) is formed at a right angle downward around the perimeter of the stage plate (11) and serves to block the radial reinforcing member (13) and a plurality of first bearing parts (17) from being exposed laterally.
[0041] The above-mentioned rotating plate portion (20) is installed at the lower part of the fixed plate portion (10) and comprises an upper plate portion (21), a lower plate portion (23), a reinforcing member (25), a plurality of second bearing portions (27), and an outer protective cover portion (29).
[0042] At this time, the upper plate portion (21) is located at the lower part of the fixed plate portion (10) and is formed to correspond to the planar area of the fixed plate portion (10). It is preferable that a first rotational drive unit through hole (21a) is formed in which the upper surface of the rotational drive unit (50) penetrates through the rotational center.
[0043] It is preferable that a plurality of through-holes (21b) are formed in the upper plate (21) and distributed radially from the center of rotation.
[0044] It is preferable that a plate-shaped weight (300) be installed in the through-hole (23b) corresponding to the weight-matching portion (25g) among the plurality of through-holes (21b) above to prevent eccentricity of the rotating shooting device (100) caused by the weight of the cam mount (80) connected to the cam mount coupling extension portion (25e).
[0045] The lower plate (23) is located at the bottom of the upper plate (21) and is formed to correspond to the planar area of the upper plate (21). It is preferable that a second rotary drive unit through hole (23a) having the same diameter as the first rotary drive unit through hole (21a) is formed so that the upper surface of the rotary drive unit (50) penetrates through the center of rotation.
[0046] The above reinforcing member (25) connects the upper plate (21) and the lower plate (23), and comprises a grid-shaped reinforcing member (25a), a circular reinforcing member (25b), a fixed shaft through hole (25c), a power supply cable through hole (25d), a cam mount connection extension part (25e), a cam mount connection part (25f), and a weight adjustment part (25g).
[0047] At this time, the grid-shaped reinforcing member (25a) is positioned in the space between the upper plate (21) and the lower plate (23) and serves to connect the upper plate (21) and the lower plate (23).
[0048] It is preferable that the above circular reinforcing member (25b) be coupled to the rotational center of the grid-shaped reinforcing member (25a) and that a fixed shaft through hole (25c) be formed so that the upper surface of the rotational drive unit (50) comes into contact with the lower surface of the stage plate unit (11) and is bolted.
[0049] It is preferable that the above power supply cable penetration part (25d) be formed to penetrate one side of the circular reinforcing member (25b) and be connected to the internal passage on one side of the grid-shaped reinforcing member (25a).
[0050] It is preferable that the above cam mounting bracket extension (25e) is formed to protrude through the outer edge between the upper plate (21) and the lower plate (23) on one side of the grid-shaped reinforcing member (25a).
[0051] The above cam mount coupling part (25f) serves to fasten the cam mount (80) coupled to the cam mount coupling extension part (25e) on one side of the cam mount coupling extension part (25e).
[0052] It is preferable that the above weight-matching portion (25g) be installed at the outer end of the opposite grid-shaped reinforcing member (25a) facing the cam mounting bracket connection extension portion (25e) with the circular reinforcing member (25b) in between.
[0053] At this time, it is preferable that the first rotary drive unit through hole (21a), the second rotary drive unit through hole (23a), and the fixed shaft through hole (25c) be formed with the same diameter.
[0054] The above-mentioned plurality of second bearing parts (27) are installed on reinforcing members (25) at regular intervals adjacent to the outer edge of the lower plate part (23), penetrating the lower surface of the lower plate part (23), and come into contact with the upper inner surface of the body part (30) to perform rolling motion.
[0055] The above outer protective cover portion (29) serves to cover the outer edge between the upper plate portion (21) and the lower plate portion (23).
[0056] Meanwhile, the body part (30) is installed at the bottom of the rotating plate part (20) and comprises a bottom plate (31), a bottom plate reinforcing member (31a), an upper support plate (31-1), a horizontal adjustment support leg (31-2), a bending part (31-1a), a plurality of first support plate reinforcing members (33) and a plurality of second support plate reinforcing members (33a), and a body part protection cover part (39).
[0057] That is, it is preferable that the floor plate reinforcing member (31a) be installed in a grid shape on the lower surface of the floor plate (31).
[0058] The upper support plate (31-1) is formed in the shape of a ring plate placed above the bottom plate (31).
[0059] It is preferable that the above horizontal adjustment support legs (31-2) be installed at regular intervals in the circumferential direction on the lower edge of the bottom plate (31).
[0060] It is preferable that the above-mentioned bent portion (31-1a) be bent at the lower part of the upper support plate (31-1) to maintain a certain distance from the upper support plate (31-1).
[0061] The above plurality of first support plate reinforcing members (33) and plurality of second support plate reinforcing members (33a) are each installed at regular intervals in the circumferential direction between the bottom plate (31) and the bent portion (31-1a), and it is preferable that they be made of a plate material bent into a U-shape.
[0062] It is preferable that the plurality of first support plate reinforcing members (33) and the plurality of second support plate reinforcing members (33a) are installed alternately with each other.
[0063] It is preferable that the plurality of second support plate reinforcing members (33a) are formed in the shape of rods.
[0064] It is preferable that the handle (35) be installed on one side of the upper outer surface of the plate.
[0065] The above body part protection cover part (39) serves to wrap around the outer surface of the bottom plate (31) to connect it, and is formed by including a handle coupling groove part (39a) and a power supply part groove part (39b).
[0066] At this time, the handle coupling groove (39a) is formed on one side of the body part protection cover part (39), and serves to allow the handle (35) to be coupled to the outer surface of the body part protection cover part (39) from the outside of the body part protection cover part (39).
[0067] The above power supply unit groove (39b) is formed on one side of the body unit protection cover (39), and serves to allow a power supply cable to be connected to the power supply unit (70).
[0068] The above-mentioned drive unit (40) is installed on one side of the bottom within the body unit (30) and serves to provide driving force to rotate or stop the rotating plate unit (20), and comprises a drive motor (41), a motor-side pulley (43), a drive belt (45), and a motor housing (47).
[0069] At this time, the drive motor (41) includes a motor-side bevel gear (41a) so as to be installed on the upper surface of the bottom plate reinforcement (31a) of the body part (30).
[0070] The motor-side pulley (43) includes a pulley-side bevel gear (43a) to be gear-coupled to the motor-side bevel gear (41a).
[0071] The above drive belt (45) serves to connect the motor-side pulley (43) and the rotary-side pulley (51) of the rotary drive unit (50) described later.
[0072] The above motor housing (47) serves to support the motor-side pulley (43) so that it can rotate upward while enclosing the pulley-side bevel gear (43a) to be gear-coupled to the motor-side bevel gear (41a).
[0073] The above-mentioned rotary drive unit (50) is installed at the center of the bottom within the body unit (30) and serves to rotate or stop the rotary plate unit (20). It comprises a rotary side pulley (51), a fixed shaft (53), a support shaft (55), a slip ring (57), and a lower fixing member (59).
[0074] That is, the above-mentioned rotating pulley (51) is coupled to the outer surface of the fixed shaft (53), and is formed by including a rotational coupling hole (51a), a rotating shaft bearing mounting portion (51b), and a power cable penetration portion (51c).
[0075] At this time, the rotational coupling hole (51a) is formed in the lower center and serves to connect so that the fixed shaft (53) is inserted through the lower part of the rotational pulley (51).
[0076] The above-mentioned rotary shaft bearing mounting portion (51b) is formed in the upper center and serves to connect so that the upper part of the fixed shaft (53) is inserted via the rotary drive bearing (60).
[0077] It is preferable that the above power cable penetration part (51c) be formed vertically on one side of the inner surface of the rotational coupling hole (51a).
[0078] The above fixed shaft (53) comprises a plurality of stage plate coupling parts (53a), a first support shaft coupling groove (53b), and a plurality of first support shaft fixing parts (53c).
[0079] At this time, the plurality of stage plate coupling parts (53a) are formed at regular intervals around the upper edge of the fixed shaft (53), and they serve to be bolted together by aligning with the rotational drive coupling groove (11a) formed in the center of the stage plate part (11).
[0080] The first support shaft coupling groove (53b) is formed in the center of the lower surface of the fixed shaft (53) and serves to provide a space into which the upper part of the support shaft (55) is inserted.
[0081] The above plurality of first support shaft fixing parts (53c) are formed around the lower outer circumference of the fixed shaft (53), and they serve to bolt the support shaft (55) inserted into the first support shaft coupling groove (53b) and the fixed shaft (53).
[0082] The above support shaft (55) is concentrically coupled to the center of the lower surface of the fixed shaft (53), and is formed by including a plurality of upper coupling grooves (55a) and a plurality of lower coupling grooves (55b).
[0083] At this time, the plurality of upper defect grooves (55a) are formed at regular intervals around the upper circumference, and they serve to be bolted together with the plurality of support shaft fixing parts (53c).
[0084] The above plurality of lower connecting grooves (55b) are formed at regular intervals around the lower perimeter and serve to be bolted together with the lower fixing member (59).
[0085] The slip ring (57) serves to be coupled to the outer surface of the support shaft (55), and it is preferable that a through-hole (57a) is formed in the center into which the support shaft (55) is vertically inserted.
[0086] The lower fixing member (59) is installed on the bottom plate reinforcing member (31a) at the center of the bottom plate (31) of the body part (30) and is coupled to the lower outer surface of the support shaft (55), and is formed by including a second support shaft coupling groove (59a) and a plurality of second support shaft fixing parts (59b).
[0087] At this time, the second support shaft coupling groove (59a) is formed in the center of the upper surface and serves to allow the lower part of the support shaft (55) to be inserted.
[0088] The above plurality of second support shaft fixing parts (59b) are formed around the upper circumference and serve to allow the support shaft (55) inserted into the second support shaft coupling groove (59a) and the lower fixing member (59) to be bolted together.
[0089] The above power supply unit (70) is installed on one of a plurality of first support plate reinforcing members (33) to supply power to the driving unit (40), the rotary driving unit (50), and the cam mount (80), and is formed by including a power supply cable (71) and a plurality of connectors (71a).
[0090] At this time, the power supply cable (71) serves to connect the drive motor (41) of the drive unit (40) through the power cable penetration part (51c) via the slip ring (57) from the support plate reinforcement (33) of the body part (30).
[0091] The above plurality of connectors (71a) are formed on one side of the lower part and one side of the upper part of the slip ring (57), respectively, and serve to connect the power supply cable (71).
[0092] The above cam mount (80) is installed on one side of the circumference of the rotating plate part (20) and rotates simultaneously with the rotation of the rotating plate part (20) to photograph a subject placed on the fixed plate part (10) in a 360-degree direction, and is formed by including a horizontal bar (81), an angle adjustment part (83), a vertical bar (85), and a cam mounting part (87).
[0093] At this time, it is preferable that the horizontal bar (81) be coupled to the cam mounting bracket extension (25e) of the rotating plate part (20).
[0094] The above vertical member (85) is connected via an angle adjustment part (83) installed at the end of the horizontal member (81), and includes a length extension part (85a) that supports a cam mounting part (87) on the upper side.
[0095] The above cam mounting part (87) is installed on the vertical bar (85) and serves to mount the cam (200).
[0096] The sensor unit (90) is installed between the lower plate (23) of the rotating plate unit (20) and the bottom plate (31) of the body unit (30), and includes a sensor operation receiving unit (91).
[0097] Meanwhile, the present invention is not limited to the embodiments described above, but can be implemented with modifications and variations within the scope of the essence of the invention, and such technical concepts to which modifications and variations are applied should also be considered to fall within the scope of the following patent claims. Explanation of the symbols
[0098] 100 : Rotating camera 10: Fixed plate part 11 : Stage Board 11a: Rotary drive unit coupling groove 13 : Radial reinforcement 13a : Intermediate reinforcement 13b : Central reinforcement 13c: Circular hole 15 : End reinforcement 17: First bearing section 19 : Stage plate protective cover 20: Rotating plate section 21 : Top plate 21a: First rotary drive unit through hole 21b : Penetration 23 : Bottom plate 23a: Through hole of the second rotary drive unit 25 : Reinforcement bar 25a: Grid-type reinforcement 25b : Round reinforcement 25c: Fixed shaft through hole 25d: Power supply cable penetration 25e : Cam mount connection extension 25f : Cam mount connection part 25g : Weight adjustment part 27 : Second bearing section 29 : Outer protective cover part 30 : Body part 31 : Base plate 31a : Floor plate reinforcement 31-1 : Upper support plate 31-1a : Bent section 31-2 : Leveling support legs 33 : 1st support plate reinforcement 33a : Second support plate reinforcement 35: Handle 37 : Third bearing section 39 : Body part protection cover part 39a : Handle coupling groove 39b : Power supply unit 40 : Drive unit 41 : Drive motor 41a : Motor-side bevel gear 43: Motor-side pulley 43a : Pulley-side bevel gear 45 : Drive belt 47 : Motor housing 50 : Rotary drive unit 51: Rotating pulley 51a: Rotation shaft coupling hole 51b: Rotating shaft bearing mounting part 51c: Power cable penetration 53 : Fixed axis 53a : Stage plate connecting part 53b : First support shaft coupling groove 53c : First support axis fixing part 55 : Support axis 55a : Upper coupling groove 55b : Lower coupling groove 57 : Slip ring 57a : Penetration 59 : Lower fixing bracket 59a : Second support shaft coupling groove 59b : Second support axis fixing part 60 : Rotary drive bearing 70 : Power supply unit 71 : Power supply cable 71a : Connector 80 : Cam mount 81 : Level 83 : Angle adjustment part 85 : Vertical bar 85a : Length extension 87 : Cam mounting section 90 : Sensor section 91 : Sensor operation receiver 200 : Cam 300 : Weight
Claims
Claim 1 A fixed plate portion (10) on which a subject is placed; a rotating plate portion (20) installed at the lower part of the fixed plate portion (10); a body portion (30) installed at the lower part of the rotating plate portion (20); a driving portion (40) and a rotational driving portion (50) installed on the bottom within the body portion (30) to rotate or stop the rotating plate portion (20); a cam mount (80) installed on one side of the circumference of the rotating plate portion (20) to rotate simultaneously with the rotation of the rotating plate portion (20) and to photograph the subject placed on the fixed plate portion (10) in a 360-degree direction; and a power supply portion (70) installed on one side of the circumference of the body portion (30) to supply power to the driving portion (40), the rotational driving portion (50), and the cam mount (80); the rotational driving portion (50) comprises a rotating side pulley (51) coupled to the outer surface of a fixed shaft (53); A rotary imaging device characterized by comprising: a support shaft (55) concentrically coupled to the center of the lower surface of the fixed shaft (53); a slip ring (57) coupled to the outer surface of the support shaft (55); and a lower fixing member (59) whose lower surface is installed on a bottom plate reinforcing member (31a) at the center of the bottom plate (31) of the body part (30) and coupled to the lower outer surface of the support shaft (55). Claim 2 A rotating shooting device according to claim 1, wherein the fixed plate portion (10) comprises: a circular stage plate portion (11) on which a subject is placed; a radial reinforcing member (13) coupled to extend radially from the center of the lower surface of the stage plate portion (11); a plurality of end reinforcing members (15) each connecting the outer ends of the radial reinforcing members (13); a plurality of first bearing portions (17) each rotatably installed at the ends of the radial reinforcing members (13) and rolling in contact with the upper surface of the rotating plate portion (20); and a stage plate protective cover portion (19) formed perpendicularly downward around the perimeter of the stage plate portion (11) to block the radial reinforcing members (13) and the plurality of first bearing portions (17) from being exposed laterally. Claim 3 A rotary imaging device according to claim 2, wherein the rotating plate portion (20) comprises: an upper plate portion (21) located at the lower part of the fixed plate portion (10) and formed to correspond to the planar area of the fixed plate portion (10); a lower plate portion (23) located at the lower part of the upper plate portion (21) and formed to correspond to the planar area of the upper plate portion (21); a reinforcing member (25) connecting the upper plate portion (21) and the lower plate portion (23); a plurality of second bearing portions (27) each installed on the reinforcing member (25) at a certain interval adjacent to the outer edge of the lower plate portion (23) and penetrating the lower surface of the lower plate portion (23) to make rolling motion in contact with the upper inner surface of the body portion (30); and an outer protective cover portion (29) covering the outer edge between the upper plate portion (21) and the lower plate portion (23). Claim 4 A rotary imaging device according to claim 3, wherein a first rotary drive unit through hole (21a) is formed at the rotation center of the upper plate (21) through which the upper surface of the rotary drive unit (50) penetrates, and a second rotary drive unit through hole (23a) having the same diameter as the first rotary drive unit through hole (21a) is formed at the rotation center of the lower plate (23) so as to penetrate the upper surface of the rotary drive unit (50). Claim 5 In claim 4, the reinforcing member (25) comprises: a grid-type reinforcing member (25a) positioned in the space between the upper plate portion (21) and the lower plate portion (23) to connect the upper plate portion (21) and the lower plate portion (23); a circular reinforcing member (25b) coupled to the rotational center of the grid-type reinforcing member (25a) and having a fixed shaft through-hole (25c) formed so that the upper surface of the rotational drive unit (50) comes into contact with the lower surface of the stage plate portion (11) and is bolted; a power supply cable through-hole (25d) formed to penetrate one side of the circular reinforcing member (25b) and connect to an internal passage on one side of the grid-type reinforcing member (25a); and a cam mounting member coupling extension (25e) formed to protrude through the outer edge between the upper plate portion (21) and the lower plate portion (23) on one side of the grid-type reinforcing member (25a). A rotating camera device characterized by comprising: a cam mount coupling part (25f) for fastening the cam mount (80) coupled to the cam mount coupling extension part (25e) on the lower surface of one side of the cam mount coupling extension part (25e); and a weight matching part (25g) installed at the outer end of the opposite grid-shaped reinforcing member (25a) facing the cam mount coupling extension part (25e) with the circular reinforcing member (25b) in between. Claim 6 A rotary imaging device according to claim 5, characterized in that the first rotary drive unit through hole (21a), the second rotary drive unit through hole (23a), and the fixed shaft through hole (25c) are formed with the same diameter. Claim 7 A rotary imaging device according to claim 6, wherein a plurality of through-holes (21b) are formed in the upper plate portion (21) and distributed radially from the center of rotation, and a plate-shaped weight (300) is installed in the through-hole (21b) corresponding to the weight-matching portion (25g) among the plurality of through-holes (21b) to prevent eccentricity of the rotary imaging device (100) caused by the weight of the cam mount (80) connected to the cam mount coupling extension portion (25e). Claim 8 A rotating imaging device according to claim 1, wherein the body part (30) comprises: a bottom plate (31); a bottom plate reinforcing member (31a) installed in a grid shape on the lower surface of the bottom plate (31); an upper support plate (31-1) in the shape of a ring plate disposed above the bottom plate (31); horizontal adjustment support legs (31-2) each installed at a certain distance in the circumferential direction on the edge of the lower surface of the bottom plate (31); a bent part (31-1a) bent at the lower part of the upper support plate (31-1) to maintain a certain distance from the upper support plate (31-1); a plurality of first support plate reinforcing members (33) and a plurality of second support plate reinforcing members (33a) each installed at a certain distance in the circumferential direction between the bottom plate (31) and the bent part (31-1a); and a body part protective cover part (39) that wraps around to connect the outer surface of the bottom plate (31). Claim 9 delete Claim 10 A rotating imaging device according to claim 1, characterized in that a sensor unit (90) equipped with a sensor operation receiving unit (91) is installed between the lower plate unit (23) of the rotating plate unit (20) and the bottom plate (31) of the body unit (30).