Novel 360-degree photo booth
By using conductive devices in a 360-degree photo booth to transmit the electrical energy of the solar power generation panel to the rotary shooting stand, the problem of exhaustion of equipment is solved, and the effect of long-term continuous work and environmental protection and energy-saving is achieved.
Patent Information
- Application Number
- PCT/CN2024/137653
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-11-28
- Filing Date
- 2024-12-07
- Publication Date
- 2025-06-05
AI Technical Summary
Due to the high power consumption and limited battery capacity of the shooting equipment in the 360-degree photography booth, the equipment's usage time is limited, making it difficult to work continuously for a long time, affecting the user experience.
A new 360-degree photography booth was designed, using conductive devices to transmit the power supply power provided by the power supply module to the rotary shooting rack for use by the shooting equipment, and continuously power supply is achieved through solar power panels as the power supply module.
Through the design of the conductive device, the problem of exhaustion of power of the shooting equipment is solved. Users can use the photo booth for a long time, which improves the user experience and achieves environmental protection and energy saving through solar power supply.
Smart Images

Figure CN2024137653_05062025_PF_FP_ABST
Abstract
Description
A new type of 360-degree photo booth Technical Field
[0001] The present application relates to the technical field of photographing devices, and in particular to a novel 360-degree photo booth. Background Art
[0002] The 360-degree photo booth is a new type of shooting equipment that is loved and actively used by fashion experts, celebrities, internet anchors, variety shows, etc., to produce all kinds of cool and creative works that amaze the audience and are increasingly attracting people who have not used it yet to try it out.
[0003] Currently, most users use their smartphones as filming devices, though some also use more professional cameras mounted on rotating stands in 360-degree photo booths. When the camera is turned on, the camera's photography, screen display power consumption, high-speed memory chip writing, and processor processing all consume significant power. Add to this the need for peripherals like microphones and fill lights, as well as live streaming and real-time image rendering. The limited battery capacity of the camera can't sustain extended operation, leading to rapid battery drain, limiting shooting time and preventing users from fully utilizing the 360-degree photo booth to capture their work and livestream.
[0004] Utility Model Content
[0005] The present invention mainly aims at the above problems and proposes a novel 360-degree photo booth, aiming to solve the technical problems in the background technology.
[0006] To achieve the above objectives, the present invention provides a novel 360-degree photo booth, comprising:
[0007] Support the stage;
[0008] Power supply module;
[0009] Drive device;
[0010] A rotating shooting frame, one end of which is connected to the power output end of the driving device, and the other end is used to set up the shooting equipment; the driving device is used to drive the rotating shooting frame to move around the supporting stage;
[0011] A conductor is electrically connected to the power supply module and is used to transmit electric energy to the shooting equipment mounted on the rotating shooting frame.
[0012] Furthermore, the power supply module is installed on the supporting stage; the conductor includes a brush, a first conductive ring, a second conductive ring, and a connecting wire; the first conductive ring and the second conductive ring are connected to the lower end surface of the supporting stage;
[0013] The first conductive ring and the second conductive ring are respectively connected to the positive and negative poles of the power supply output terminal of the power supply module; the brush device is installed on the rotating shooting frame, and the two elastic brush ends of the brush device are respectively in contact with the first conductive ring and the second conductive ring; the connecting wire is arranged along the length direction of the rotating shooting frame, one end of the connecting wire is electrically connected to the power supply output terminal of the brush device, and the other end of the connecting wire is provided with a charging plug corresponding to the charging port of the shooting device;
[0014] The central axes of the first conductive ring and the second conductive ring are roughly collinear with the central axis of the supporting stage and the central axis of the driving device driving the rotating shooting frame to rotate around the supporting stage.
[0015] Furthermore, the power supply module is a solar power generation panel; the supporting stage includes a supporting frame and a transparent supporting layer; the solar power generation panel is arranged between the supporting frame and the transparent supporting layer; the first conductive ring and the second conductive ring are electrically connected to the positive and negative poles of the power supply output end of the solar power generation panel respectively.
[0016] Furthermore, it includes a supporting main shaft and a supporting base; the supporting base is connected to the supporting stage through the supporting main shaft; the power supply module is installed on the supporting base; and the driving device is electrically connected to the power supply module.
[0017] Furthermore, the supporting main shaft is a hollow shaft; the conductor includes a brush, a first conductive ring, a second conductive ring, and a connecting wire; the first conductive ring and the second conductive ring are connected to the lower end surface of the supporting stage;
[0018] The first conductive ring and the second conductive ring are connected to the positive and negative poles of the power supply output terminal of the power supply module respectively by an electrical wire passing through the inner hole of the support spindle; the brush device is installed on the rotating shooting frame, and the two elastic brush ends of the brush device are respectively in contact with the first conductive ring and the second conductive ring; the connecting wire is arranged along the length direction of the rotating shooting frame, one end of the connecting wire is electrically connected to the power supply output terminal of the brush device, and the other end of the connecting wire is provided with a charging plug corresponding to the charging port of the shooting device;
[0019] The central axes of the first conductive ring and the second conductive ring are roughly collinear with the central axis of the supporting stage, the central axis of the driving device driving the rotating shooting frame to rotate around the supporting stage, and the central axis of the supporting main shaft.
[0020] Furthermore, the power supply module includes a solar power generation panel, and the battery module is installed on the support base; the support stage includes a support frame and a translucent support layer; the solar power generation panel is arranged between the support frame and the translucent support layer; the first conductive ring and the second conductive ring are respectively electrically connected to the positive and negative poles of the power supply output end of the solar power generation panel.
[0021] Furthermore, it includes a support base; the power supply module is installed on the support base; the driving device is electrically connected to or not connected with the power supply module; the conductor includes a brush, a first conductive ring, a second conductive ring, and a connecting wire; the first conductive ring and the second conductive ring are connected to the upper end surface of the support base; the brush is installed on the rotating shooting frame, and the two elastic brush ends in the brush are respectively connected to the first conductive ring and the second conductive ring; the connecting wire is arranged along the length direction of the rotating shooting frame, one end of the connecting wire is electrically connected to the power supply output end of the brush, and the other end of the connecting wire is provided with a charging plug corresponding to the charging port of the shooting device;
[0022] The central axes of the first conductive ring and the second conductive ring are roughly collinear with the central axis of the supporting stage, the central axis of the supporting base, and the central axis of the driving device driving the rotating shooting frame to rotate around the supporting stage.
[0023] Furthermore, the power supply module is installed on the rotating shooting frame and is arranged near the connection between the rotating shooting frame and the power output end of the driving device; the conductor is an electric wire, which is arranged along the length direction of the rotating shooting frame, one end of the electric wire is electrically connected to the power output end of the power supply module, and the other end is provided with a charging plug corresponding to the charging port of the shooting device.
[0024] Furthermore, the supporting stage also includes a supporting layer; the supporting layer is laid on the upper end surface of the supporting frame, and the supporting layer, the supporting frame edge, and the transparent supporting layer enclose an installation area, and the solar power generation panel is arranged in the installation area.
[0025] Furthermore, the rotating shooting frame includes a first bracket, a second bracket, and an angle adjustment mechanism; the first bracket and the second bracket are rotatably connected through the angle adjustment mechanism; the end of the second bracket away from the angle adjustment mechanism is connected to the power output end of the driving device; the first bracket is provided with one or more shooting equipment connectors; the angle adjustment mechanism includes a rotating shaft, an elastic member, a pull pin, and two adjustment bases; the two adjustment bases enclose a movable groove, one end of the first bracket extends into the movable groove, the rotating shaft passes through the adjustment base and the first bracket, so that the two are hingedly connected; the two The adjustment bases are all provided with an arc-shaped through groove; a plurality of spaced-apart separating protrusions are provided in the arc-shaped through groove to separate the arc-shaped through groove into a plurality of limiting holes; the first bracket extending into the movable groove is provided with an adjustment guide groove, and the length direction of the adjustment guide groove is roughly the same as the length direction of the first bracket; the pull pin passes through the arc-shaped through groove and the adjustment guide groove, and the outer wall of the pull pin located in the first bracket is provided with an anti-slip protrusion with a contour larger than the aperture of the adjustment guide groove; the elastic member is provided in the first bracket, and the two ends are respectively connected to the rotating shaft and the pull pin, for keeping the pull pin close to the rotating shaft.
[0026] Furthermore, the shooting device connector includes a protective outer frame, which is rotatably connected to the first bracket, and an elastic holder is provided in the protective outer frame.
[0027] Furthermore, the support base is provided with an anti-theft connecting seat, one end of the anti-theft connecting seat is adjustably connected to the support base, and the other end is provided with a connecting portion for fixing to the ground.
[0028] Furthermore, the supporting stage further comprises a supporting frame, which is arranged between the supporting skeleton and the light-transmitting supporting layer, and is approximately arranged at the center of the light-transmitting supporting layer; the light-transmitting supporting layer is provided with a shielding coating corresponding to the supporting frame.
[0029] Compared with the existing technology, the new 360-degree photo booth provided by the present invention can transmit the power provided by the power supply module to the shooting equipment mounted on the rotating shooting frame that is driven by the driving device to move through the conductor, thereby providing power replenishment for the shooting equipment. Users can use the photo booth more conveniently and for a long time without having to worry about the shooting equipment running out of power, resulting in limited shooting time, thereby improving the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] FIG1 is a schematic structural diagram of a novel 360-degree photo booth according to the present application.
[0031] FIG2 is a schematic diagram of the exploded structure of a novel 360-degree photo booth of the present application.
[0032] FIG3 is a schematic diagram of the structural decomposition of a novel 360-degree photo booth from another perspective of the present application.
[0033] FIG4 is a cross-sectional view of a novel 360-degree photo booth of the present application.
[0034] FIG5 is a schematic diagram of the structure of a rotating shooting frame of a novel 360-degree photo booth of the present application.
[0035] FIG6 is a partially exploded and enlarged view of a rotating shooting frame of a novel 360-degree photo booth of the present application.
[0036] FIG7 is a partially exploded and enlarged cross-sectional view of a rotating shooting frame of a novel 360-degree photo booth of the present application.
[0037] FIG8 is a schematic diagram of the structure of the conductor component of a novel 360-degree photo booth of the present application.
[0038] FIG9 is a cross-sectional view of a brush device of a novel 360-degree photo booth of the present application.
[0039] FIG10 is a schematic diagram of the structure of a cable hub for a novel 360-degree photo booth according to the present application.
[0040] Reference numerals shown in the figure: 1. support stage; 110. support frame; 120. light-transmitting support layer; 121. shielding coating; 130. supporting layer; 140. installation area; 150. support frame; 2. power supply module; 3. driving device; 310. bearing; 320. driven wheel; 330. motor; 340. driving wheel; 350. controller; 4. rotating shooting frame; 410. first bracket; 411. adjustment guide groove; 4111. loading hole; 420. second bracket; 430. angle adjustment mechanism; 431. rotating shaft; 432. elastic member; 433. pull pin; 4331. anti-drop protrusion; 434. Adjustment base; 4341. Movable slot; 4342. Arc-shaped through slot; 4343. Separation protrusion; 4344. Limiting hole; 440. Camera connector; 441. Protective outer frame; 442. Elastic holder; 443. Action camera; 5. Conductor; 510. First conductive ring; 520. Second conductive ring; 530. Brush; 531. Elastic brush; 532. Mounting box; 540. Insulation base; 6. Support spindle; 7. Support base; 710. Anti-theft connector; 711. Connecting part; 720. Foot cup; 730. Wire bridge; 8. Wiring hole; 9. Wire collection base. DETAILED DESCRIPTION
[0041] 1 to 10 , this embodiment provides a novel 360-degree photo booth, including:
[0042] Support Stage 1;
[0043] Power supply module 2;
[0044] Drive device 3;
[0045] A rotating shooting frame 4, one end of which is connected to the power output end of the driving device 3, and the other end is used to set up shooting equipment; the driving device 3 is used to drive the rotating shooting frame 4 to move around the supporting stage 1;
[0046] The conductor 5 is electrically connected to the power supply module 2 and is used to transmit electric energy to the shooting equipment mounted on the rotating shooting frame 4 .
[0047] The supporting stage 1 is for users to stand on, and the power supply module 2 transmits the power supply energy to the shooting equipment mounted on the rotating shooting frame 4 driven by the driving device 3 through the conductor 5, thereby providing power replenishment for the shooting equipment. The user can use the photo booth more conveniently and for a long time without having to worry about the shooting equipment running out of power, resulting in a limited shooting time, thereby improving the user experience.
[0048] Example 1
[0049] 2 to 4 and 8 and 9 , the power supply module 2 is mounted on the supporting stage 1 ; the conductor 5 includes a brush 530 , a first conductive ring 510 , a second conductive ring 520 , and a connecting wire (not shown); the first conductive ring 510 and the second conductive ring 520 are connected to the lower end surface of the supporting stage 1 ;
[0050] The first conductive ring 510 and the second conductive ring 520 are respectively connected to the positive and negative poles of the power output terminal of the power supply module 2; the brush device 530 is installed on the rotating shooting frame 4, and the two elastic brushes 531 in the brush device 530 are respectively in contact with the first conductive ring 510 and the second conductive ring 520; the connecting wire is arranged along the length of the rotating shooting frame 4, one end of the connecting wire is electrically connected to the power output terminal of the brush device 530, and the other end of the connecting wire is provided with a charging plug (not shown) corresponding to the charging port of the shooting device;
[0051] The central axes of the first conductive ring 510 and the second conductive ring 520 are substantially collinear with the central axis of the supporting stage 1 and the central axis of the driving device 3 driving the rotating shooting frame 4 to rotate around the supporting stage 1 .
[0052] In this embodiment, the power supply module 2 can be a battery module, which is detachably connected to the supporting stage 1. Maintenance personnel can use a fully charged battery module to quickly replace it with the supporting stage 1 to quickly replenish power, or they can charge it by connecting it to a power socket via an electric wire when the photo booth is not in use.
[0053] In some embodiments, the brush assembly 530 includes a mounting box 532, and two elastic brushes 531 include a carbon rod, an elastic holding spring, and a terminal block. The carbon rod is mounted in a lifting slot of the mounting box 532, and the terminal block is located at the bottom of the lifting slot and in the terminal block. One end of the elastic holding spring holds the carbon rod, and the other end holds the terminal block. A connecting wire is connected to the terminal block. As the brush assembly 530 moves with the rotating shooting frame 4, the carbon rod abuts against the first conductive ring 510 and the second conductive ring 520, and wears out. Under the support of the elastic holding spring, the carbon rod is replaced and remains in effective electrical contact with the first conductive ring 510 and the second conductive ring 520, ensuring that the electrical energy in the power supply module 2 can be supplied to the shooting device through the arrangement structure of the conductor 5 in this embodiment combined with the connecting wire.
[0054] In some embodiments, the first conductive ring 510 and the second conductive ring 520 are both annular sheets made of copper metal.
[0055] The manner in which the driving device 3 drives the rotating shooting frame 4 to move around the supporting stage 1 can be achieved using existing technology, and is not the focus of innovation of this application, and will not be described in detail here.
[0056] 2 to 4 and 8 and 9 , the power supply module 2 is a solar panel; the supporting stage 1 includes a supporting frame 110 and a light-transmitting supporting layer 120; the solar panel is disposed between the supporting frame 110 and the light-transmitting supporting layer 120; the first conductive ring 510 and the second conductive ring 520 are electrically connected to the positive and negative poles of the power output terminals of the solar panel, respectively.
[0057] Example 2
[0058] The solar panel supporting the stage 1 has a connected battery module. The electricity generated by the solar panel is first stored in the battery module and then supplied to the electrical appliance 5 and the filming equipment through the battery module.
[0059] Example 3
[0060] The solar power generation panel located on the supporting stage 1 does not include a battery pack, and the generated electricity is directly supplied to the filming equipment through the connected current stabilization circuit.
[0061] In some embodiments, the light-transmitting support layer 120 in Examples 2 and 3 is made of tempered glass. It provides strong support for the stage 1 while also allowing energetic light to pass through it and be directed toward the solar panels. The light-transmitting support layer 120 can be fully transparent or opaque, but allows the passage of sunlight that can be converted into electrical energy by the solar panels.
[0062] Powered by solar panels, this photo booth is eco-friendly, energy-efficient, and reduces emissions. It can be easily installed in entertainment venues as a shared facility for the public, eliminating the need for staff to monitor the power supply. Powered by solar energy, it provides continuous self-sufficiency. Users can activate the photo booth's rotating camera by scanning a QR code using an interactive program. When used as a shared facility, users can pay using smart devices or credit cards.
[0063] Please refer to Figures 2 to 4 and Figures 8 and 9, which include a supporting spindle 6 and a supporting base 7; the supporting base 7 is connected to the supporting stage 1 through the supporting spindle 6; the power supply module 2 is installed on the supporting base 7; and the driving device 3 is electrically connected to the power supply module 2.
[0064] In some embodiments, the driving device 3 includes a bearing 310 sleeved on the outer wall of the supporting main shaft 6, a driven wheel 320 sleeved on the outer wall of the bearing 310, a motor 330, a driving wheel 340 connected to the power output shaft of the motor 330, and a controller 350. The driving wheel 340 is transmission-connected to the driven wheel 320. The motor 330 and the controller 350 receive electrical energy from the power supply module 2 and are electrically connected to the power supply module 2.
[0065] Example 4
[0066] In this embodiment, the power supply module 2 can be a battery module, removably connected to the support base 7. This module not only provides charging power to the camera mounted on the rotating camera frame 4 via the conductor 5, but also provides power to the drive device 3, achieving multiple goals at once. Maintenance personnel can quickly replace a fully charged battery module with the support base 7 for rapid power replenishment, or they can charge the photo booth by connecting it to a power outlet when the booth is not in use.
[0067] Example 5
[0068] In this embodiment, the power supply module 2 is a battery module that also has a charging port. Compared to the fourth embodiment, when the battery module runs out of power, it can be replaced with a fully charged one. In this embodiment, the battery module can be directly connected to the charging port via a power outlet via a wire. While charging, the photo booth drive device 3 drives the rotating photographing frame 4 around the support stage 1 and provides charging power to the photographic equipment mounted on the rotating photographing frame 4 via the conductor 5. When the battery module is connected to an external power source, the external power source's power is preferentially used to power the drive device 3 and the photographic equipment.
[0069] 2 to 4 , the supporting main shaft 6 is a hollow shaft; the conductive device 5 includes a brush 530 , a first conductive ring 510 , a second conductive ring 520 , and a connecting wire (not shown); the first conductive ring 510 and the second conductive ring 520 are connected to the lower end surface of the supporting stage 1 ;
[0070] The first conductive ring 510 and the second conductive ring 520 are connected to the positive and negative poles of the power output terminal of the power supply module 2, respectively, by means of an electrical wire (not shown) passing through the inner hole of the support spindle 6. The brush device 530 is installed on the rotating shooting frame 4, and the two elastic brushes 531 in the brush device 530 are respectively in contact with the first conductive ring 510 and the second conductive ring 520. The connecting wire is arranged along the length of the rotating shooting frame 4, and one end of the connecting wire is electrically connected to the power output terminal of the brush device 530, and the other end of the connecting wire is provided with a charging plug corresponding to the charging port of the shooting device.
[0071] Among them, the central axes of the first conductive ring 510 and the second conductive ring 520 are roughly collinear with the central axis of the supporting stage 1, the central axis of the driving device 3 driving the rotating shooting frame 4 to rotate around the supporting stage 1, and the central axis of the supporting main shaft 6.
[0072] Example 6
[0073] In the fourth and fifth embodiments, the scheme of transmitting the electric energy of the power supply module 2 located on the supporting base 7 to the photographing equipment mounted on the rotating photographing frame 4 through the conductor 5 is as described above.
[0074] In order to avoid the problem of entanglement and knotting when using traditional electric wires as the conductor 5 and the driving device 3 drives the rotating shooting frame 4 to rotate around the supporting stage 1, in this embodiment, the first conductive ring 510 and the second conductive ring 520 in the conductor 5 are connected to the lower end surface of the supporting stage 1, and the brush 530 is installed on the rotating shooting frame 4. The electric wires are passed through the inner hole of the supporting main shaft 6 to transmit the electric energy of the power supply module 2 to the first conductive ring 510 and the second conductive ring 520. This wiring structure design of the electric wires supporting the inner hole of the main shaft 6 can avoid the problem of interference and entanglement between the moving and rotating rotating shooting frame 4 and the electric wires.
[0075] In order to facilitate wiring and reduce the redundant length of the electrical wires, a wiring through hole 8 is opened at the end of the support base 7 corresponding to the end connected to the support main shaft 6; a wiring through hole 8 is also opened on the support frame 110 to facilitate the arrangement of the electrical wires.
[0076] Example 7
[0077] 2 to 4 and 8 and 9 , the power supply module 2 includes a solar panel, and a battery module is installed on the support base 7 ; the support stage 1 includes a support frame 110 and a light-transmitting support layer 120 ; the solar panel is disposed between the support frame 110 and the light-transmitting support layer 120 ; the first conductive ring 510 and the second conductive ring 520 are electrically connected to the positive and negative poles of the power output terminals of the solar panel, respectively.
[0078] Compared to the fourth and fifth embodiments, the seventh embodiment further includes a solar panel installed on the supporting stage 1. The solar panel generates electricity to replenish the battery module, thereby extending the battery module's operating time. This eliminates the need for maintenance personnel to frequently replace fully charged battery modules with depleted ones in the photo booth, or to unplug power cords from power outlets to recharge the battery modules, thereby improving the user experience.
[0079] Embodiment 8 (not shown)
[0080] It includes a support base 7; the power supply module 2 is installed on the support base 7; the driving device 3 is electrically connected to or not connected with the power supply module 2; the conductor 5 includes a brush 530, a first conductive ring 510, a second conductive ring 520, and a connecting wire (not shown); the first conductive ring 510 and the second conductive ring 520 are connected to the upper end surface of the support base 7; the brush 530 is installed on the rotating shooting frame 4, and the two elastic brushes 531 in the brush 530 are respectively in contact with the first conductive ring 510 and the second conductive ring 520; the connecting wire is arranged along the length direction of the rotating shooting frame 4, one end of the connecting wire is electrically connected to the power output end of the brush 530, and the other end of the connecting wire is provided with a charging plug corresponding to the charging port of the shooting device;
[0081] Among them, the central axes of the first conductive ring 510 and the second conductive ring 520 are roughly collinear with the central axis of the supporting stage 1, the central axis of the supporting base 7, and the central axis of the driving device 3 driving the rotating shooting frame 4 to rotate around the supporting stage 1.
[0082] In this embodiment, the ends of the two elastic brushes 531 in the brush unit 530 face the support base 7 and engage with the first conductive ring 510 and the second conductive ring 520 on the support base 7. During operation of the present photo booth, the rotating frame 4 rotates and moves around the support stage 1, while the support base 7 sits on the ground and does not move. This arrangement of the conductor 5 ensures that the conductor 5 does not interfere with the movement of the rotating frame 4 while still transmitting power from the power supply module 2 mounted on the support base 7 to the photographic equipment mounted on the rotating frame 4. The power supply module 2 can be a battery module, removably connected to the support base 7.
[0083] Embodiment 9 (not shown)
[0084] The power supply module 2 is mounted on the rotating shooting frame 4 and is arranged near the connection between the rotating shooting frame 4 and the power output end of the driving device 3; the conductor 5 is an electric wire (not shown), which is arranged along the length direction of the rotating shooting frame 4. One end of the electric wire is electrically connected to the power output end of the power supply module 2, and the other end is provided with a charging plug corresponding to the charging port of the shooting device.
[0085] By disposing the power supply module 2 adjacent to the connection between the rotating frame 4 and the power output end of the driving device 3, specifically by mounting the power supply module 2 on the second bracket 420, the power supply module 2 rotates along with the rotating frame 4 during operation of the photo booth. This avoids the use of a heavy mobile power supply placed at the position where the rotating frame 4 clamps the photographic equipment, which would increase the weight at the outer end of the rotating frame 4 and cause the rotating frame 4 to shake during rotation, resulting in jittery and poor-quality images captured by the photographic equipment. Furthermore, if the mobile power supply exceeds the rated clamping weight of the rotating frame 4, the mobile power supply and the photographic equipment connected via the charging cable would be thrown out together under the centrifugal force of rotation, thus creating a dangerous situation.
[0086] The electrical wires are routed along the length of the rotating camera frame 4, preventing them from interfering with the upper and lower support stages 1 and bases 7. In a preferred arrangement, the power supply module 2 is located on the opposite side of the first bracket 410, bounded by the support spindle 6. This acts as a counterweight, further stabilizing the rotating camera frame 4. The power supply module 2 can be a battery module.
[0087] 2 and 3 , the supporting stage 1 further comprises a supporting layer 130 ; the supporting layer 130 is laid on the upper end surface of the supporting frame 110 , and the supporting layer 130 , the supporting frame 110 , and the light-transmitting supporting layer 120 enclose an installation area 140 , and the solar power generation panel is arranged in the installation area 140 .
[0088] In some embodiments, the supporting layer 130 is a plate made of stainless steel, and the end surface of the supporting layer 130 facing the light-transmitting support layer 120 is a mirror surface.
[0089] On the one hand, the supporting layer 130 serves to shield the supporting frame 110 for aesthetic purposes and to support the solar panels installed in the installation area 140. On the other hand, when the end surface of the supporting layer 130 facing the light-transmitting supporting layer 120 is a mirror surface, the end surface can reflect light, thereby providing fill light for users standing on the light-transmitting supporting layer 120 and improving the user's imaging effect.
[0090] If the light-transmitting support layer 120 is fully transparent or has a certain degree of transparency, a decorative pattern can be provided on the support layer 130. The decorative pattern of the support layer 130 can be seen through the light-transmitting support layer 120, thereby improving the aesthetics of the photo booth. The support layer 130 can also be a plain board without a decorative pattern.
[0091] 1 and 5 to 7, the rotating photographing frame 4 includes a first bracket 410, a second bracket 420, and an angle adjustment mechanism 430; the first bracket 410 and the second bracket 420 are rotatably connected through the angle adjustment mechanism 430; the end of the second bracket 420 away from the angle adjustment mechanism 430 is connected to the power output end of the driving device 3; the first bracket 410 is provided with one or more photographing device connectors 440; the angle adjustment mechanism 430 includes a rotating shaft 431, an elastic member 432, a pull pin 433, and two adjustment bases 434; the two adjustment bases 434 enclose a movable groove 4341, one end of the first bracket 410 extends into the movable groove 4341, and the rotating shaft 431 passes through the adjustment base 434 and the first bracket 410, so that the two are hingedly connected; the two adjustment bases The base 434 is provided with a circular arc-shaped through groove 4342; a plurality of spaced separation protrusions 4343 are provided in the circular arc-shaped through groove 4342 to separate the circular arc-shaped through groove 4342 into a plurality of limiting holes 4344; the first bracket 410 extending into the movable groove 4341 is provided with an adjustment guide groove 411, and the length direction of the adjustment guide groove 411 is roughly the same as the length direction of the first bracket 410; the pull pin 433 passes through the circular arc-shaped through groove 4342 and the adjustment guide groove 411, and the outer wall of the pull pin 433 located in the first bracket 410 is provided with an anti-slip protrusion 4331 with a contour larger than the aperture of the adjustment guide groove 411; the elastic member 432 is provided in the first bracket 410, and the two ends are respectively connected to the rotating shaft 431 and the pull pin 433, which are used to keep the pull pin 433 close to the rotating shaft 431.
[0092] Unlike conventional photographic brackets that rely on thumb screws to adjust the bracket's rotation angle and facilitate assembly and disassembly of the first bracket 410 and the second bracket 420, this rotating photographic bracket 4 also serves as an anti-theft feature. Conventional photographic brackets rely on screws for simple connection, allowing ordinary users to easily remove the screws and separate the first bracket 410 and the second bracket 420.
[0093] The first bracket 410 and the second bracket 420 are both retractable brackets, and the connecting wires in the conductor 5 can also be correspondingly selected wires with elastic retractable functions.
[0094] When using the angle adjustment mechanism 430 to adjust the relative angles of the first bracket 410 and the second bracket 420, the pull pin 433 extending out of the adjustment guide groove 411 and the arc-shaped through groove 4342 can be pulled out by hand to overcome the elastic force of the elastic member 432, so that the pull pin 433 moves along the guidance of the adjustment guide groove 411 in the direction away from the rotating shaft 431 until the pull pin 433 disengages from the limiting hole 4344 enclosed by the two separating protrusions 4343 and enters the area of the arc-shaped through groove 4342 where no separating protrusions 4343 are set. At this time, the first bracket 410 uses the rotating shaft 431 as the rotation center and adjusts and rotates relative to the second bracket 420 within the curvature of the arc-shaped through groove 4342.
[0095] After the angle of the first bracket 410 is determined, the pull pin 433 that rotates with the first bracket 410 also corresponds to the limiting hole 4344 at the corresponding position. The user only needs to loosen the pull pin 433. Under the pull of the elastic part 432, the two ends of the pull pin 433 enter the limiting hole 4344 and are clamped and limited by the separation protrusions 4343 on both sides.
[0096] In some embodiments, the elastic member 432 is a tension spring. The end of the adjustment guide groove 411 close to the rotating shaft 431 is provided with a receiving hole 4111 that matches the outer diameter of the anti-slip protrusion 4331.
[0097] Therefore, when the photo booth is placed in an entertainment venue or other places as a shared device, it has a good anti-theft function to prevent others from removing the first bracket 410.
[0098] 5 , the camera connector 440 includes a protective outer frame 441 , which is rotatably connected to the first bracket 410 , and an elastic holder 442 is disposed inside the protective outer frame 441 .
[0099] Preferably, a motion camera 443 is rotatably connected to the outside of the protective frame 441 .
[0100] In some embodiments, the action camera 443 is non-detachably connected to the outer protective frame 441. When the photo booth is used as a shared device in entertainment venues or other places, users do not need to bring their own professional action cameras to take photos. They can directly use the action camera 443 that comes with the photo booth.
[0101] The protective outer frame 441 protects the elastic retainer 442, limiting the size of the device that can enter the protective outer frame 441 and be retained by the elastic retainer 442. Furthermore, the protective outer frame 441 protects the device, preventing the user's own camera from colliding with other objects and causing damage when rotating the rotating camera frame 4.
[0102] In some embodiments, the elastic card holder 442 has an anti-theft lock structure. When the photo booth is deployed as a shared device, it is accompanied by a smart terminal, such as a smart phone, which has a built-in sharing interaction program and a special program for photography and videography. The smart terminal is clamped by the elastic card holder 442 to prevent others from taking it away without the unlocking key.
[0103] 2 and 3 , the support base 7 is provided with an anti-theft connection seat 710 , one end of which is adjustably connected to the support base 7 , and the other end of which is provided with a connection portion 711 for fixing to the ground.
[0104] In some embodiments, the support base 7 is provided with height-adjustable feet 720. The anti-theft connector 710 is an L-shaped folded plate with a long, parallel hole extending in length and height. Screws are inserted through the holes to connect the anti-theft connector 710 to the support base 7, corresponding to the feet 720. A connecting portion 711 is a through-hole designed into the other side of the L-shaped folded plate, which is attached to the ground. Expansion screws can be inserted through the connecting portion 711 to secure the support base 7 to the ground, preventing movement. This makes the photo booth suitable for use as a shared device in public entertainment venues.
[0105] 2 and 3 , the support stage 1 further comprises a support frame 150 , which is disposed between the support skeleton 110 and the light-transmitting support layer 120 , approximately at the center of the light-transmitting support layer 120 ; the light-transmitting support layer 120 is provided with a shielding coating 121 corresponding to the support frame 150 .
[0106] The support frame 150 supports the center of the light-transmitting support layer 120, enhancing its structural strength, extending its service life, and preventing stress distribution and breakage in the light-transmitting support layer 120. The shielding coating 121 can be patterned, so that the light-transmitting support layer 120 corresponds to the position of the support frame 150, shielding the support frame 150 and improving its aesthetics.
[0107] In the above embodiments, the first conductive ring 510 and the second conductive ring 520 are mounted on the insulating base 540 made of nylon. There is a gap between the first conductive ring 510 and the second conductive ring 520 and they are not electrically connected to each other.
[0108] In the seventh embodiment and related embodiments in which the solar panels are arranged on the support stage 1 and the battery module is arranged on the support base 7 as the power supply module 2, in order to make the wiring clearer and more organized, a wire hub 9 is provided at the end port of the support main shaft 6 at the connection point where the support main shaft 6 is connected to the support stage 1. The base of the wire hub 9 is connected to the upper end face of the support frame 110. The wire hub 9 is provided with two metal connecting columns. The positive and negative poles of the power output of multiple solar panels are respectively connected to the two metal connecting columns. The side wall of the support frame 150 is provided with a wiring through-hole 8 to facilitate the connection between the two. The first conductive ring 510 and the second conductive ring 520 are respectively connected to the two metal connecting columns by electrical wires. The positive and negative poles of the battery module arranged on the support base 7 are respectively passed through the wiring through-hole 8 on the support base 7 by two electrical wires and enter the inner hole of the support main shaft 6, and then connected to the two metal connecting columns. The support base 7 is provided with a wire bridge 730 for fixing the electrical wires.
[0109] In summary, through the above-described embodiments, when used as a shared device in an entertainment venue, this photo booth can power various electrical units in the booth without the traditional power cord connection to a power outlet. This avoids the problem of power cords being laid on the ground or hanging in the air, which could cause passersby to trip or run over the power cords, potentially damaging them and causing leakage. A further beneficial effect is that this photo booth can power and charge the photographic equipment mounted on the rotating frame 4 via the power supply module 2 and the conductor 5, eliminating the need for users to worry about their equipment running out of power, limiting their photography time. The clever structure of the conductor 5 and the layout of the power supply module 2 overcome the problem of heavy mobile power supplies installed on the rotating frame 4, which could cause the rotating frame 4 to shake during operation, and prevent the electrical wires from becoming tangled or entangled as they rotate. Furthermore, the design of the power supply module 2 within the support stage 1 and / or the support base 7 provides a theft prevention feature.
Claims
1. A new type of 360-degree photo booth, characterized in that: include: Support the stage; Power supply module; Drive device; A rotating shooting frame, one end of which is connected to the power output end of the driving device, and the other end is used to set up shooting equipment; the driving device is used to drive the rotating shooting frame to move around the supporting stage; A conductor is electrically connected to the power supply module and is used to transmit electric energy to the shooting equipment mounted on the rotating shooting frame.
2. A novel 360-degree photo booth according to claim 1, characterized in that: The power supply module is installed on the supporting stage; the conductor includes a brush, a first conductive ring, a second conductive ring, and a connecting wire; the first conductive ring and the second conductive ring are connected to the lower end surface of the supporting stage; The first conductive ring and the second conductive ring are respectively connected to the positive and negative electrodes of the power supply output terminal of the power supply module; the brush device is installed on the rotating shooting frame, and the two elastic brush ends of the brush device are respectively connected with the first conductive ring and the second conductive ring; the connecting wire is arranged along the length direction of the rotating shooting frame, one end of the connecting wire is electrically connected to the power supply output terminal of the brush device, and the other end of the connecting wire is provided with a charging plug corresponding to the charging port of the shooting device; The central axes of the first conductive ring and the second conductive ring are roughly colinear with the central axis of the supporting stage and the central axis of the driving device driving the rotating shooting frame to rotate around the supporting stage.
3. A novel 360-degree photo booth according to claim 2, characterized in that: The power supply module is a solar panel; the supporting stage includes a supporting frame and a light-transmitting supporting layer; the solar panel is arranged between the supporting frame and the light-transmitting supporting layer; the first conductive ring and the second conductive ring are electrically connected to the positive and negative poles of the power supply output terminal of the solar panel respectively.
4. A novel 360-degree photo booth according to claim 1, characterized in that: It includes a supporting main shaft and a supporting base; the supporting base is connected to the supporting stage through the supporting main shaft; The power supply module is installed on the supporting base; the driving device is electrically connected to the power supply module.
5. A novel 360-degree photo booth according to claim 4, characterized in that: The supporting main shaft is a hollow shaft; the conductor includes a brush, a first conductive ring, a second conductive ring, and a connecting wire; the first conductive ring and the second conductive ring are connected to the lower end surface of the supporting stage; The first conductive ring and the second conductive ring are connected to the positive and negative poles of the power supply output terminal of the power supply module respectively by passing the electric wire through the inner hole of the supporting spindle; the brush device is installed on the rotating shooting frame, and the two elastic brush ends in the brush device are respectively connected with the first conductive ring and the second conductive ring; the connecting wire is arranged along the length direction of the rotating shooting frame, one end of the connecting wire is electrically connected to the power supply output terminal of the brush device, and the other end of the connecting wire is provided with a charging plug corresponding to the charging port of the shooting device; Among them, the central axes of the first conductive ring and the second conductive ring are roughly colinear with the central axis of the supporting stage, the central axis of the driving device driving the rotating shooting frame to rotate around the supporting stage, and the central axis of the supporting main shaft.
6. A novel 360-degree photo booth according to claim 5, characterized in that: The power supply module includes a solar power generation panel, and a battery module is installed on the support base; the support stage includes a support frame and a light-transmitting support layer; the solar power generation panel is arranged between the support frame and the light-transmitting support layer; the first conductive ring and the second conductive ring are electrically connected to the positive and negative poles of the power supply output terminal of the solar power generation panel respectively.
7. A novel 360-degree photo booth according to claim 1, characterized in that: It includes a support base; the power supply module is installed on the support base; the driving device is electrically connected or not connected to the power supply module; the conductor includes a brush, a first conductive ring, a second conductive ring, and a connecting wire; the first conductive ring and the second conductive ring are connected to the upper end surface of the support base; the brush is installed on the rotating shooting frame, and the two elastic brush ends in the brush are respectively connected with the first conductive ring and the second conductive ring; the connecting wire is arranged along the length direction of the rotating shooting frame, one end of the connecting wire is electrically connected to the power supply output end of the brush, and the other end of the connecting wire is provided with a charging plug corresponding to the charging port of the shooting device; Among them, the central axes of the first conductive ring and the second conductive ring are roughly colinear with the central axis of the supporting stage, the central axis of the supporting base, and the central axis of the driving device driving the rotating shooting frame to rotate around the supporting stage.
8. A novel 360-degree photo booth according to claim 1, characterized in that: The power supply module is installed on the rotating shooting frame and is arranged near the connection between the rotating shooting frame and the power output end of the driving device; the conductor is an electric wire, which is arranged along the length direction of the rotating shooting frame, one end of the electric wire is electrically connected to the power output end of the power supply module, and the other end is provided with a charging plug corresponding to the charging port of the shooting device.
9. A novel 360-degree photo booth according to claim 3 or claim 6, characterized in that: The supporting stage also includes a supporting layer; the supporting layer is laid on the upper end surface of the supporting frame, and the supporting layer, the supporting frame edge, and the light-transmitting supporting layer enclose an installation area, and the solar power generation panel is arranged in the installation area.
10. A novel 360-degree photo booth according to claim 1, characterized in that: The rotating shooting frame includes a first bracket, a second bracket, and an angle adjustment mechanism; the first bracket and the second bracket are rotatably connected through the angle adjustment mechanism; the end of the second bracket away from the angle adjustment mechanism is connected to the power output end of the driving device; the first bracket is provided with one or more shooting equipment connectors; the angle adjustment mechanism includes a rotating shaft, an elastic member, a pull pin, and two adjustment bases; the two adjustment bases enclose a movable groove, one end of the first bracket extends into the movable groove, the rotating shaft passes through the adjustment base and the first bracket, so that the two are hingedly connected; the two adjustment bases The seats are all provided with an arc-shaped through groove; a plurality of spaced-apart dividing protrusions are provided in the arc-shaped through groove to divide the arc-shaped through groove into a plurality of limiting holes; the first bracket extending into the movable groove is provided with an adjustment guide groove, and the length direction of the adjustment guide groove is roughly the same as the length direction of the first bracket; the pull pin passes through the arc-shaped through groove and the adjustment guide groove, and the outer wall of the pull pin located in the first bracket is provided with an anti-slip protrusion with a contour larger than the aperture of the adjustment guide groove; the elastic member is arranged in the first bracket, and the two ends are respectively connected to the rotating shaft and the pull pin, which is used to keep the pull pin close to the rotating shaft.
11. A novel 360-degree photo booth according to claim 10, characterized in that: The shooting device connector comprises a protective outer frame, the protective outer frame is rotatably connected to the first bracket, and an elastic holder is arranged inside the protective outer frame.
12. A novel 360-degree photo booth according to claim 3 or claim 6, characterized in that: The support base is provided with an anti-theft connection seat, one end of the anti-theft connection seat is adjustably connected to the support base, and the other end is provided with a connection part for fixing to the ground.
13. A novel 360-degree photo booth according to claim 3 or claim 6, characterized in that: The supporting stage further comprises a supporting frame, which is arranged between the supporting frame and the light-transmitting supporting layer and is approximately arranged at the center of the light-transmitting supporting layer; the light-transmitting supporting layer is provided with a shielding coating corresponding to the supporting frame.
Citation Information
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