Self-adaptive intelligent remote control support

By introducing a miniature reducer motor and gear mechanism into the mobile phone photography bracket, the bracket is freely switched between horizontal and vertical shots, and the stability is improved through the knob-type self-locking pin and connecting rod structure, solving the adaptability and practicality of the existing bracket.

CN223076640UActive Publication Date: 2025-07-08ZHONGHUANGJU (BEIJING) TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422443255.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-10
Publication Date
2025-07-08
Estimated Expiration
2034-10-10

AI Technical Summary

Technical Problem

The existing mobile phone photography bracket cannot switch freely between horizontal and vertical shooting, and the support effect is easily worn after long-term use, which lacks adaptability and practicality.

Method used

The micro-speed reducer motor and gear mechanism are adopted to realize the 360-degree rotation of the telescopic bracket and the flip of the pan-table through the remote control. Combined with the knob-type self-locking pin and connecting rod structure, the mobile device can achieve free switching between horizontal and vertical beats, and improve the stability of the bracket.

Benefits of technology

It realizes free switching between horizontal and vertical shots of mobile devices, enhances the adaptive function and stability of the bracket, and extends the service life.

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Abstract

The utility model discloses a self-adaptive intelligent remote control support, which comprises a mobile device, a telescopic support, a cradle head, a connecting frame and a middle support, the mobile device is installed and limited on the telescopic support, the telescopic support is installed on the cradle head, the cradle head comprises a shell, an ear part connecting piece, a micro gear motor I, a micro gear motor II, a gear and a battery bin, the connecting frame is fixedly installed at the top end of the middle support, an outer surrounding piece is fixedly arranged at the top of the middle support, and a sleeve piece is arranged on the surface of the middle support in a sliding mode. According to the self-adaptive intelligent remote control support, the first micro gear motor, the second micro gear motor, the gear and the battery bin are arranged in the cradle head, 360-degree rotation of mobile equipment can be achieved through a remote controller, meanwhile, the cradle head can be turned over through forward and reverse rotation of the motors, and then the mobile equipment on the telescopic support can be freely switched between transverse shooting and vertical shooting; therefore, the self-adaptive remote control function is improved, and the intelligent effect of the support is improved.
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Description

Technical Field

[0001] The utility model relates to the field of shooting bracket devices, in particular to an adaptive intelligent remote control bracket. Background Art

[0002] Photography refers to the process of using a certain special device to record images. Generally, we use mechanical cameras or digital cameras for photography. With the popularization of smart phones and the improvement of their photography technology, more and more people begin to use smart phones for photography.

[0003] Chinese Patent No. CN207906760U discloses a mobile phone photography bracket, including a support plate. A clamping plate is connected to the support plate. A clamping cavity for placing a mobile phone is formed between the support plate and the clamping plate. A clamping mechanism is arranged on the side of the support plate facing away from the clamping plate. The clamping mechanism includes a ball joint rod, a locking seat, and a locking sleeve. The locking sleeve is sleeved on the ball joint rod. The locking sleeve is threadedly connected to the locking seat. The ball joint rod is connected to the support plate. A tripod is connected to the side of the locking seat away from the locking sleeve. This solution uses a new mechanical structure to enable the ball joint rod to stably support the mobile phone.

[0004] When the above-mentioned bracket is specifically used, it has the following disadvantages: 1. First, when the mobile phone is installed on the bracket, it cannot be freely switched between horizontal shooting and vertical shooting. It only has the function of horizontal shooting and does not have the effect of vertical shooting. The use is limited and it lacks an adaptive function; 2. The three support rods are spread apart, and the outer walls of the support rods are in contact with the triangular seat, so that the support rods support the triangular seat. After long-term use, the contact parts are worn, which will cause the change of the support angle, and then affect the support effect, lacking practicality. Summary of the Utility Model

[0005] The purpose of the utility model is to provide an adaptive intelligent remote control bracket to solve the above problems.

[0006] To achieve the above object, the present utility model provides the following technical solutions: An adaptive intelligent remote control bracket, comprising a mobile device, a telescopic bracket, a pan-tilt head, a connecting frame and a middle support. The mobile device is installed and limited on the telescopic bracket, and the telescopic bracket is installed on the pan-tilt head. The pan-tilt head includes a housing, ear connectors, a micro reduction motor I, a micro reduction motor II, a gear and a battery compartment. The interior of the housing is a cavity, and a micro reduction motor I is fixedly installed in the middle of the cavity by screws. The screw on the micro reduction motor I is threadedly connected to the threaded opening on the telescopic bracket. The micro reduction motor II is arranged on one side of the micro reduction motor I, and a gear is fixedly installed on the transmission shaft of the micro reduction motor II. The edge of the gear protrudes outside the cutout opened on the housing. The battery compartment is installed on the other side of the micro reduction motor I and is electrically connected to the micro reduction motor I and the micro reduction motor II respectively. The ear connectors are symmetrically installed on the outside of the housing and are movably connected to the toothed fixed wheels on the connecting frame through connecting shafts. The toothed fixed wheels are meshed with the gear. A main board is further arranged inside the cavity of the pan-tilt head. The main board is electrically connected to the micro reduction motor I, the micro reduction motor II and the battery compartment. The main board is also infrared-connected to the provided remote control. A charging port is opened at the rear of the pan-tilt head.

[0007] Preferably, the connecting frame is fixedly installed at the top of the middle support.

[0008] Preferably, an outer enclosure is fixedly arranged at the top of the middle support, and a kit is slidably arranged on the surface of the middle support.

[0009] Preferably, one end of the rotary knob self-locking pin is movably connected to the circumferential surface of the outer enclosure through a provided connecting piece.

[0010] Preferably, the connecting piece arranged on the circumferential surface of the kit is movably connected to the connecting piece on the rotary knob self-locking pin through a connecting rod.

[0011] Preferably, multiple groups of the rotary knob self-locking pins and connecting rods are correspondingly arranged in a circumferential array on the middle support.

[0012] The beneficial effects of the present utility model are:

[0013] 1. By arranging the micro reduction motor I, the micro reduction motor II, the gear and the battery compartment inside the pan-tilt head of the adaptive intelligent remote control bracket, the screw on the micro reduction motor I is fixedly connected to the telescopic bracket, and the 360-degree rotation of the telescopic bracket and the mobile device can be realized through the remote control. At the same time, the gear on the micro reduction motor II is meshed with the toothed fixed wheel, and the forward and reverse rotation of the motor realizes the flipping of the pan-tilt head, thereby freely switching the mobile device on the telescopic bracket between horizontal shooting and vertical shooting, so as to improve the adaptive remote control function and increase the intelligent effect of the bracket.

[0014] 2. The adaptive intelligent remote control bracket unfolds the knob-type self-locking pin feet on the middle support through the connecting rod. Under the action of the connecting rod, the stability effect of the bracket is correspondingly improved, making it strong, durable and increasing its service life. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a structural schematic diagram of the present utility model;

[0016] Figure 2 is a structural effect diagram of the present utility model;

[0017] Figure 3 is a structural usage diagram of the present utility model;

[0018] Figure 4 is a structural schematic diagram of the pan-tilt structure of the present utility model;

[0019] Figure 5 is a structural schematic diagram of the remote control of the present utility model.

[0020] In the figure: 1 - mobile device, 2 - telescopic bracket, 3 - pan-tilt, 301 - housing, 302 - ear connecting piece, 303 - micro reduction motor I, 304 - micro reduction motor II, 305 - gear, 306 - battery compartment, 307 - screw rod, 308 - notch, 309 - main board, 310 - connecting shaft, 311 - charging port, 4 - connecting frame, 5 - middle support, 6 - threaded port, 7 - fixed wheel, 8 - outer enclosure, 9 - kit, 10 - connecting piece, 11 - knob-type self-locking pin foot, 12 - connecting rod, 13 - remote control. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0021] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model. Embodiment

[0022] Please refer to Figures 1-5, the present utility model provides a technical solution: an adaptive intelligent remote control bracket, which includes a mobile device 1, a telescopic bracket 2, a pan-tilt head 3, a connecting frame 4 and a middle support 5. The mobile device 1 is installed and limited on the telescopic bracket 2, and the telescopic bracket 2 is installed on the pan-tilt head 3. The pan-tilt head 3 includes a housing 301, an ear connecting piece 302, a micro reduction motor one 303, a micro reduction motor two 304, a gear 305 and a battery compartment 306. The inside of the housing 301 is a cavity, and a micro reduction motor one 303 is fixedly installed in the middle of the cavity by screws. The screw 307 on the micro reduction motor one 303 is threadedly connected to the threaded port 6 on the telescopic bracket 2. By the rotation of the screw 307 on the micro reduction motor one 303, it drives and realizes the 360-degree rotation of the telescopic bracket 2 on the pan-tilt head 3, thereby realizing the random adjustment function of the mobile device 1. The most common is the shooting of the depression angle or the elevation angle to achieve the best shooting angle. The micro reduction motor one 303 uses a brush DC motor of model N20.

[0023] The micro reduction motor two 304 is arranged on one side of the micro reduction motor one 303, and a gear 305 is fixedly installed on the transmission shaft of the micro reduction motor two 304. The edge of the gear 305 protrudes to the outside of the notch 308 opened on the housing 301. The battery compartment 306 is installed on the other side of the micro reduction motor one 303 and is electrically connected to the micro reduction motor one 303 and the micro reduction motor two 304 respectively. The ear connecting pieces 302 are symmetrically installed on the outside of the housing 301 and are movably connected to the toothed fixed wheel 7 on the connecting frame 4 through a connecting shaft 310. The toothed fixed wheel 7 is meshed with the gear 305. It should be noted that the toothed fixed wheel 7 and the connecting frame 4 are of an integrally formed structure, and the connection between them is an "L" connection in the mirror state. The micro reduction motor two 304 uses a brush DC motor of model N20. The forward and reverse rotation of the micro reduction motor two 304 drives the gear 305 to rotate on the toothed fixed wheel 7 to realize the flipping of the pan-tilt head 3, thereby freely switching the mobile device 1 on the telescopic bracket 2 between horizontal shooting and vertical shooting. For example, Figure 1 as shown, when the plane of the pan-tilt head 3 and the connecting frame 4 is at a 90-degree vertical angle, the mobile device 1 realizes the vertical shooting effect. As Figure 3 shown, when the plane of the pan-tilt head 3 and the connecting frame 4 is parallel, the mobile device 1 realizes the horizontal shooting effect.

[0024] A main board 309 is also arranged inside the cavity of the pan-tilt head 3. The main board 309 is electrically connected to the micro reduction motor one 303, the micro reduction motor two 304 and the battery compartment 306. The main board 309 is also infrared-connected to the provided remote controller 13. A charging port 311 is opened at the rear of the pan-tilt head 3. The remote controller 13 is provided with two groups of buttons to control the micro reduction motor one 303 and the micro reduction motor two 304 respectively. The charging port 311 is used for the power supply of the battery compartment 306.

[0025] Specifically, the connecting frame 4 is fixedly installed at the top of the middle support 5. An outer enclosure 8 is fixedly arranged at the top of the middle support 5. A sleeve 9 is slidably arranged on the surface of the middle support 5. One end of the rotary self-locking pin 11 is movably connected to the circumferential surface of the outer enclosure 8 through a connecting member 10 arranged thereon. The connecting member 10 arranged on the circumferential surface of the sleeve 9 is movably connected to the connecting member 10 on the rotary self-locking pin 11 through a connecting rod 12. Multiple groups of the rotary self-locking pins 11 and the connecting rods 12 are correspondingly arranged in a circumferential array on the middle support 5.

[0026] As a preferred solution, three groups of the rotary self-locking pins 11 and the connecting rods 12 are correspondingly arranged in a circumferential array on the middle support 5. When the position of the sleeve 9 slides down, the rotary self-locking pins 11 are unfolded on the middle support 5 through the connecting rods 12, and when it slides up, they are retracted, having a folding function and being convenient to carry.

[0027] When the present utility model is specifically implemented: The mobile device 1 is clamped on the telescopic bracket 2. At a determined position, the rotary self-locking pins 11 are unfolded on the middle support 5 through the connecting rods 12. At this time, the position of the sleeve 9 slides down. Under the action of the connecting rod 11, the stability effect of the corresponding bracket is improved. The micro-decelerating motor I 303 and the micro-decelerating motor II 304 are respectively controlled through the buttons on the remote controller 13. When controlling the micro-decelerating motor II 304, the forward and reverse rotation of the micro-decelerating motor II 304 drives the gear 305 to rotate on the fixed wheel 7 with tooth grooves, so as to realize the flipping of the cloud platform 3. When the plane of the cloud platform 3 and the connecting frame 4 is at a 90-degree vertical angle, the mobile device 1 realizes a vertical shooting effect. At this time, the micro-decelerating motor I 303 is controlled, and the rotation of the screw 307 drives the telescopic bracket 2 to rotate 360 degrees on the cloud platform 3, thereby realizing the shooting of the depression angle or elevation angle of the mobile device 1 to achieve the best shooting angle. When the plane of the cloud platform 3 and the connecting frame 4 is parallel, the mobile device 1 realizes a horizontal shooting effect, and in the horizontal shooting state, the angle position of the telescopic bracket 2 can also be adjusted through the micro-decelerating motor I 303 to facilitate the functions of side shooting or front shooting.

[0028] Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. An adaptive intelligent remote control bracket, comprising a mobile device (1), a telescopic bracket (2), a pan-tilt head (3), a connecting frame (4) and a middle support (5), characterized in that: The mobile device (1) is installed and limited on the telescopic bracket (2), and the telescopic bracket (2) is installed on the pan-tilt (3). The pan-tilt (3) includes a housing (301), an ear connector (302), a micro-deceleration motor one (303), a micro-deceleration motor two (304), a gear (305), and a battery compartment (306). The interior of the housing (301) is a cavity, and a micro-deceleration motor one (303) is fixedly installed in the middle of the cavity by screws. A screw rod (307) on the micro-deceleration motor one (303) is threadedly connected to a threaded port (6) on the telescopic bracket (2). The micro-deceleration motor two (304) is arranged on one side of the micro-deceleration motor one (303), and a gear (305) is fixedly installed on the transmission shaft of the micro-deceleration motor two (304). The edge of the gear (305) protrudes outside a notch (308) opened in the housing (301). The battery compartment (306) is installed on the other side of the micro-deceleration motor one (303) and is electrically connected to the micro-deceleration motor one (303) and the micro-deceleration motor two (304) respectively. The ear connectors (302) are symmetrically installed on the outside of the housing (301) and are movably connected to a toothed fixed wheel (7) on the connecting frame (4) through a connecting shaft (310). The toothed fixed wheel (7) is meshed and connected to the gear (305). A main board (309) is further arranged inside the cavity of the pan-tilt (3). The main board (309) is electrically connected to the micro-deceleration motor one (303), the micro-deceleration motor two (304), and the battery compartment (306). The main board (309) is also infrared-connected to a set remote controller (13). A charging port (311) is opened at the rear side of the pan-tilt (3).

2. The adaptive intelligent remote control bracket according to claim 1, wherein: The connecting frame (4) is fixedly installed at the top of the middle support (5).

3. The adaptive intelligent remote control bracket according to claim 1, wherein: An outer enclosure (8) is fixedly arranged at the top of the middle support (5), and a kit (9) is slidably arranged on the surface of the middle support (5).

4. The adaptive intelligent remote control bracket according to claim 3, wherein: One end of a knob-type self-locking pin foot (11) is movably connected to the circumferential surface of the outer enclosure (8) through a set connecting piece (10).

5. An adaptive intelligent remote control bracket according to claim 3, characterized in that: A connecting piece (10) arranged on the circumferential surface of the kit (9) is movably connected to a connecting piece (10) on the knob-type self-locking pin foot (11) through a connecting rod (12).

6. The adaptive intelligent remote control bracket according to claim 4, wherein: Multiple groups of the knob-type self-locking pin feet (11) and the connecting rods (12) are correspondingly arranged in a circumferential array on the middle support (5).

Citation Information

Patent Citations

  • Cell -phone camera support

    CN207906760U