Multifunctional shooting support
By designing a multi-functional shooting stand that integrates mobile phone heat dissipation, follow-up shooting, and mobile charging functions, the problems of mobile phone heat dissipation and charging during outdoor live streaming were solved, enabling the mobile phone to follow up shooting and improving the user experience.
Patent Information
- Application Number
- CN202520523945.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-06-24
- Filing Date
- 2025-03-17
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-17
AI Technical Summary
The market lacks multifunctional shooting stands that integrate mobile phone heat dissipation, mobile phone follow-up shooting, and mobile charging functions, making it difficult to meet the needs of outdoor live streaming.
A multifunctional shooting bracket was designed, comprising a support column, a power bank, a cable, a portrait tracking device, and a heat dissipation device. Power is transmitted through the cable, integrating mobile phone heat dissipation, follow-up shooting, and mobile charging functions. The portrait tracking device performs face recognition, and the servo motor enables the mobile phone to follow up with the camera. The heat dissipation device uses a fan for cooling.
It fulfills the needs of mobile phones for heat dissipation, shooting, and charging during outdoor live streaming, thus improving the user's product experience.
Smart Images

Figure CN223882041U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to a shooting support, in particular to a multifunctional shooting support. BACKGROUND
[0002] There are many shooting supports for live broadcast on the market, but some shooting supports have heat dissipation function, and some shooting supports have follow-up shooting function, but there is no multifunctional shooting support integrating mobile phone heat dissipation function, mobile phone follow-up shooting function and mobile charging function on the market. People engaged in outdoor live broadcast work urgently need a multifunctional shooting support integrating mobile phone heat dissipation function, mobile phone follow-up shooting function and mobile charging function, which is more convenient for outdoor live broadcast work. SUMMARY
[0003] The technical problem to be solved by the present application is to provide a multifunctional shooting support integrating mobile phone heat dissipation function, mobile phone follow-up shooting function and mobile charging function. To achieve the above purpose, the present application provides a multifunctional shooting support, which at least comprises:
[0004] A support column, which can be placed horizontally on the ground;
[0005] A mobile power supply, which is arranged on the support column, and can provide electric energy;
[0006] A cable, which can transmit electric energy;
[0007] A portrait tracking device, which is fixed to the top end of the support column, and is electrically connected with the mobile power supply through the cable;
[0008] A heat dissipation device, which is arranged on the portrait tracking device, and at least comprises a fan and a fixing frame, and is electrically connected with the mobile power supply through the cable.
[0009] Preferably, the multifunctional shooting support is composed of a support column, a mobile power supply, a cable, a portrait tracking device and a heat dissipation device. The portrait tracking device is arranged on the support column, the heat dissipation device is arranged on the portrait tracking device, the mobile power supply is arranged on the support column, the cable is electrically connected with the mobile power supply, the portrait tracking device and the heat dissipation device, and the mobile power supply can provide electric energy for the portrait tracking device and the heat dissipation device through the cable.
[0010] Preferably, the cable is a multi-core cable, which can transmit electric energy.
[0011] Preferably, the top of the support column is provided with a threaded column, and the support column is provided with a mobile power supply support body.
[0012] Preferably, the heat dissipation device is provided with two fans, two fan cables, and a fixing frame provided with threaded columns, and the heat dissipation device is electrically connected with the two fan cables through the cables.
[0013] Preferably, the mobile power supply is arranged on the mobile power supply support of the support column, and the mobile power supply can provide electric energy, and the mobile power supply is provided with a cable interface, and the mobile power supply is electrically connected with the cable through the cable interface, and the mobile power supply is a rechargeable lithium battery.
[0014] Preferably, the aforementioned human image tracking device is composed of a base, a shell, a servo motor seat, a bearing, a servo motor, a camera seat, a first integrated circuit board, a second integrated circuit board, a rechargeable battery, a circuit board connecting cable, and a camera; the aforementioned first integrated circuit board is provided with a first connecting port, a second connecting port, a third connecting port, a charging port, and a plurality of single-chip microcomputers, and is arranged in the aforementioned camera seat; the aforementioned second integrated circuit board is provided with a connecting head and a plurality of single-chip microcomputers, and is electrically connected with the aforementioned second connecting port of the aforementioned first integrated circuit board through the aforementioned circuit board connecting cable, and is arranged in the aforementioned camera seat; the upper surface of the aforementioned base is provided with a mandrel groove, and the lower surface of the base is provided with a threaded hole connected with the aforementioned threaded column at the top of the aforementioned support column; the aforementioned shell is provided with a connecting hole, a switch button, a lens hole, and a charging hole, and the connecting hole is connected with the aforementioned threaded column of the aforementioned heat dissipation device through a fastener; the aforementioned servo motor seat is provided with a bearing seat and a central hole, and can rotate around the center of the aforementioned base; the aforementioned bearing is arranged in the aforementioned bearing seat of the aforementioned servo motor seat; the aforementioned servo motor comprises a stator mandrel, a rotor shell, and a servo motor connector, the rotor shell of the servo motor is fixed on the aforementioned servo motor seat through a fastener, the stator mandrel is inserted into the aforementioned mandrel groove of the aforementioned base after passing through the aforementioned central hole of the aforementioned servo motor seat, the stator mandrel cannot move in the horizontal direction in the aforementioned mandrel groove, and the servo motor is electrically connected with the aforementioned third connecting port of the aforementioned first integrated circuit board through the aforementioned servo motor connector; the aforementioned rechargeable battery is arranged in the aforementioned camera seat, is provided with a battery connector, and is electrically connected with the first connecting port of the aforementioned first circuit board, and is a lithium battery; the aforementioned camera seat is fixed on the aforementioned servo motor seat through a fastener, and is provided with a camera; the aforementioned shell is fixed on the aforementioned camera seat through a fastener, and is provided with a switch button, a lens hole, a charging hole, and a connecting hole, the connecting hole is connected with the aforementioned threaded column of the aforementioned fixing frame on the aforementioned heat dissipation device through a fastener, the switch button is electrically connected with the aforementioned second integrated circuit board, the aforementioned cable is electrically connected with the aforementioned charging port of the aforementioned first integrated circuit board after passing through the aforementioned charging hole, and the aforementioned camera is arranged in the aforementioned lens hole.
[0015] When the mobile phone is used, the mobile phone is placed in the fixing frame of the heat dissipation device, and then the switch button on the shell of the portrait tracking device is started, at this time, the camera starts to work, the camera obtains face information by shooting based on face recognition technology, and the collected face information is transmitted to the single-chip microcomputer on the second integrated circuit board for algorithm processing, the single-chip microcomputer sends an instruction to the first integrated circuit board through the circuit board connecting cable according to the processing result, and then the single-chip microcomputer of the first integrated circuit board performs algorithm processing again, and then sends an instruction to the servo motor, and the servo motor works according to the signal instruction sent by the first integrated circuit board.
[0016] Since the rotor shell of the servo motor is fixed on the servo motor base, the servo motor base can rotate around the center of the base, and the stator core shaft of the servo motor is arranged in the core shaft groove of the base, when the rotor shell of the servo motor rotates, the servo motor base also rotates, since the camera base is fixed on the servo motor base, the camera base is provided with a camera, therefore, the camera and the servo motor rotate synchronously, since the shell is fixed on the camera base through fasteners, the shell is connected with the fixing frame of the heat dissipation device through fasteners, and the mobile phone is arranged in the fixing frame, therefore, the lens of the mobile phone, the camera and the servo motor rotate synchronously, so that the follow-shooting function of the mobile phone is realized.
[0017] Since the heat dissipation device is electrically connected with the mobile power supply through the cable, the mobile power supply can conveniently supply power to the heat dissipation device, since the cable is electrically connected with the charging interface of the first integrated circuit through the charging hole, the mobile power supply can conveniently supply power to the portrait tracking device, and the mobile power supply can also supply power to the mobile phone through the cable, through the above arrangement, the user engaged in outdoor live broadcast no longer worries about the power shortage or overheating of the mobile phone, and the lens of the mobile phone can also follow the user, so that the user has a good product experience.
[0018] The positive progress effect of the application is that the multifunctional shooting support integrates the mobile phone heat dissipation function, the mobile phone follow-shooting function and the mobile charging function, and is convenient for the user engaged in outdoor live broadcast. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a certain angle perspective view of the multifunctional shooting support of an embodiment of the application.
[0020] Figure 2 It is a certain angle perspective view of the multifunctional shooting support of an embodiment of the application.
[0021] Figure 3 Front view of the heat dissipation device of the multifunctional shooting support according to an embodiment of the present application.
[0022] Figure 4 Rear view of the heat dissipation device of the multifunctional shooting support according to an embodiment of the present application.
[0023] Figure 5 Front view of the portrait tracking device of the multifunctional shooting support according to an embodiment of the present application.
[0024] Figure 6 Front view of the portrait tracking device of the multifunctional shooting support according to an embodiment of the present application.
[0025] Figure 7 Front view of the portrait tracking device of the multifunctional shooting support according to an embodiment of the present application.
[0026] Figure 8 Front view of the first integrated circuit board of the multifunctional shooting support according to an embodiment of the present application.
[0027] Figure 9 Front view of the first integrated circuit board of the multifunctional shooting support according to an embodiment of the present application.
[0028] Figure 10 Front view of the second integrated circuit board of the multifunctional shooting support according to an embodiment of the present application.
[0029] Figure 11 Front view of the charging battery of the multifunctional shooting support according to an embodiment of the present application.
[0030] Figure 12 Front view of the servo motor of the multifunctional shooting support according to an embodiment of the present application.
[0031] Figure 13 Front view of the portrait tracking device of the multifunctional shooting support according to an embodiment of the present application.
[0032] Figure 14 Front view of the housing of the multifunctional shooting support according to an embodiment of the present application.
[0033] Figure 15 Front view of the servo motor seat of the multifunctional shooting support according to an embodiment of the present application.
[0034] Figure 16 Front view of the base of the multifunctional shooting support according to an embodiment of the present application.
[0035] Figure 17 Another side view of the base of the multifunctional shooting support according to an embodiment of the present application.
[0036] Figure 18 A support column of the multifunctional shooting support according to an embodiment of the present application.
[0037] Figure 19 A mobile power supply of the multifunctional shooting support according to an embodiment of the present application.
[0038] Figure 20 A cable of the multifunctional shooting support according to an embodiment of the present application.
[0039] In the figure: heat dissipation device 1, portrait tracking device 2, support column 3, mobile power supply 4, cable 5, fan 101, fixed frame 102, fan cable 103, fan cable 104, threaded column 105, base 201, shell 202, servo motor seat 203, bearing 204, servo motor 205, camera seat 206, first integrated circuit board 207, second integrated circuit board 208, rechargeable battery 209, circuit board connecting cable 210, camera 211, first interface 2071, second interface 2072, third interface 2073, charging interface 2074, connecting head 2081, battery connector 2091, stator core shaft 2051, rotor shell 2052, servo motor connector 2053, switch button 2021, connecting hole 2022, charging hole 2023, lens hole 2024, bearing seat 2031, center hole 2032, core shaft groove 2011, threaded hole 2012, mobile power supply support body 301, threaded column 302, cable interface 401. DETAILED DESCRIPTION
[0040] The technical solutions of the embodiments of the present application will be described in detail below with reference to the accompanying drawings. It should be noted that the following description of the embodiments of the present application in combination with the accompanying drawings is further detailed, but the embodiments are not used to limit the present application, and any similar structure and its changes that adopt the present application should be included in the protection scope of the present application.
[0041] As shown in Figures 1-2 , the multifunctional shooting support of the present application is composed of support column 3, mobile power supply 4, cable 5, portrait tracking device 2, and heat dissipation device 1. The portrait tracking device 2 is arranged on the support column 3, the heat dissipation device 1 is arranged on the portrait tracking device 2, the mobile power supply 4 is arranged on the support column 3, the cable 5 is electrically connected with the mobile power supply 4, the portrait tracking device 2, and the heat dissipation device 1, and the mobile power supply 4 can provide electric energy to the portrait tracking device 2 and the heat dissipation device 1 through the cable 5.
[0042] As shown in Figures 1-2As shown, the cable 5 is a multi-core cable, the cable 5 can transmit electric energy, and the cable 5 is electrically connected with the human image tracking device 2, the heat dissipation device 1 and the mobile power supply 4.
[0043] As shown in the drawings, Figure 18 The top of the support column 3 is provided with a threaded column 302, and the support column 3 is provided with a mobile power supply support body 301, which is fixed on the support column 3 by fasteners.
[0044] As shown in the drawings, Figures 1-4 The heat dissipation device 1 is provided with two fans 101, fan cables 103 and 104, and a fixing frame 102, and the fixing frame 102 is provided with a threaded column 105. The heat dissipation device 1 is electrically connected with the mobile power supply 4 through the cable 5.
[0045] As shown in the drawings, Figure 1 , Figure 2 , Figure 19 The mobile power supply 4 is arranged on the mobile power supply support body 301 of the support column 3, and the mobile power supply 4 can provide electric energy. The mobile power supply 4 is provided with a cable interface 401, and is electrically connected with the cable 5 through the cable interface 401. The mobile power supply 4 is a rechargeable lithium battery.
[0046] As shown in the drawings, Figures 1-20 As shown, the portrait tracking device 2 is composed of a base 201, a shell 202, a servo motor seat 203, a bearing 204, a servo motor 205, a camera seat 206, a first integrated circuit board 207, a second integrated circuit board 208, a rechargeable battery 209, a circuit board connecting cable 210, and a camera 211. The first integrated circuit board 207 is provided with a first connecting port 2071, a second connecting port 2072, a third connecting port 2073, a charging port 2074, and a plurality of single-chip microcomputers. The first integrated circuit board 207 is arranged in the camera seat 206. The second integrated circuit board 208 is provided with a connecting head 2081 and a plurality of single-chip microcomputers. The second integrated circuit board 208 is electrically connected with the second connecting port 2072 of the first integrated circuit board 207 through the circuit board connecting cable 210. The second integrated circuit board 208 is arranged in the camera seat 206. The upper surface of the base 201 is provided with a core shaft groove 2011. The lower surface of the base 201 is provided with a threaded hole 2012 which is connected with the threaded column 302 at the top of the support column 3. The shell 202 is provided with a connecting hole 2022, a switch button 2021, a lens hole 2024, and a charging hole 2023. The connecting hole 2022 is connected with and fixed to the threaded column 105 of the heat dissipation device 1 through a fastener. The servo motor seat 203 is provided with a bearing seat 2031 and a center hole 2032. The servo motor seat 203 can rotate around the center of the base 201. The bearing 204 is arranged in the bearing seat 2031 of the servo motor seat 203. The servo motor 205 includes a stator core shaft 2051, a rotor shell 2052, and a servo motor connector 2053. The rotor shell 2052 of the servo motor 205 is fixed to the servo motor seat 203 through a fastener. The stator core shaft 2051 is inserted into the core shaft groove 2011 of the base 201 after passing through the center hole 2032 of the servo motor seat 203. The stator core shaft 2051 cannot move in the horizontal direction in the core shaft groove 2011. The servo motor 205 is electrically connected with the third connecting port 2073 of the first integrated circuit board 207 through the servo motor connector 2053. The rechargeable battery 209 is arranged in the camera seat 206. The rechargeable battery 209 is provided with a battery connector 2091 which is electrically connected with the first connecting port 2073 of the first integrated circuit board 207. The rechargeable battery 209 is a lithium battery. The camera seat 206 is fixed to the servo motor seat 203 through a fastener. The camera seat 206 is provided with the camera 211. The shell 202 is fixed to the camera seat 206 through a fastener. The shell 202 is provided with the switch button 2021, the lens hole 2024, the charging hole 2023, and the connecting hole 2022. The shell 202 is connected with the threaded column 105 of the fixing frame 102 of the heat dissipation device 1 through a fastener. The switch button 2021 is electrically connected with the second integrated circuit board 208. The cable 5 is electrically connected with the charging port 2074 of the first integrated circuit board 207 after passing through the charging hole 2023. The camera 211 is arranged in the lens hole 2024.
[0047] When using the mobile phone, the mobile phone is placed in the fixing frame 102 of the heat dissipation device 1, and then the switch button 2021 on the portrait tracking device 2 is started. At this time, the two fans 101 of the heat dissipation device 1 start to work to dissipate heat for the mobile phone, and the camera 2011 starts to work. The camera 2011 acquires face information by shooting based on face recognition technology, and transmits the collected face information to the single-chip microcomputer on the second integrated circuit board 208 for algorithm processing. The single-chip microcomputer sends an instruction to the first integrated circuit board 207 through the circuit board connecting cable 210 according to the processing result. Then, the single-chip microcomputer of the first integrated circuit board 207 performs algorithm processing again, and then sends an instruction to the servo motor 205 through the third connecting port 2073 of the first integrated circuit board 207 and the servo motor connector 2053 of the servo motor 205. The servo motor 205 works according to the signal instruction sent by the first integrated circuit board 207.
[0048] Since the rotor shell 2052 of the servo motor 205 is fixed on the servo motor seat 203, and the servo motor seat 203 can rotate around the center of the base 201, and the stator core shaft 2051 of the servo motor 205 is fixed in the core shaft groove 2011 of the base 201, when the rotor shell 2052 of the servo motor 205 rotates, the servo motor seat 203 also rotates. Since the camera seat 206 is fixed on the servo motor seat 203, and the camera seat 206 is provided with the camera 211, the camera 211 and the servo motor 205 also rotate synchronously. Since the shell 202 is fixed on the camera seat 206 through fasteners, the shell 202 is connected to the fixing frame 102 of the heat dissipation device 1 through fasteners, and the mobile phone is arranged in the fixing frame 102, so the lens of the mobile phone, the camera 211 and the servo motor 205 realize synchronous rotation, thereby realizing the follow-shooting function of the mobile phone.
[0049] Since the heat dissipation device 1 is electrically connected to the mobile power supply 4 through the cable 5, the mobile power supply 4 can conveniently supply power to the heat dissipation device 1. Since the cable 5 is electrically connected to the charging interface 2074 of the first integrated circuit 207 after passing through the charging hole 2023, the mobile power supply 4 can conveniently supply power to the portrait tracking device 2. The mobile power supply 4 can also supply power to the mobile phone through the cable 5.
[0050] Through the above arrangement, the user engaged in outdoor live broadcast no longer worries about the mobile phone running out of power or overheating, and the lens of the mobile phone can also follow the user to shoot, bringing good product experience to the user.
Claims
1. A multifunctional shooting support, characterized by The multifunctional shooting support at least comprises: A support column, which can be horizontally placed on the ground; A mobile power supply, which is arranged on the support column and can provide electric energy; A cable, which can transmit electric energy; A portrait tracking device, which is fixed to the top end of the support column and is electrically connected with the mobile power supply through the cable; A heat dissipation device, which is provided with at least one fan and a fixing frame and is electrically connected with the mobile power supply through the cable.