Data connection structure of unmanned aerial vehicle
By introducing a data acquisition mechanism consisting of a release lever and a locking spring into the drone, the problems of complex installation and poor interface in the drone data connection structure are solved, enabling rapid disassembly and stable data transmission, and improving work efficiency and data availability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-30
- Publication Date
- 2026-04-10
AI Technical Summary
The existing data connection structure of drones is cumbersome to install during the data acquisition process, resulting in complicated and time-consuming operation. Furthermore, the data transmission interface between the acquisition board and other components is prone to poor contact, leading to data loss or incompleteness, which affects work efficiency and data availability.
The acquisition mechanism, consisting of a release lever, a sliding groove, a mounting bracket, and a locking spring, enables quick loading and unloading of the acquisition board, ensuring that the flight data plug and the interface centerline are aligned. Data is then transmitted stably through the data conversion terminal and transmission line, simplifying disassembly operations and improving the stability of data transmission.
It enables rapid installation and removal of the data acquisition board, improves equipment utilization efficiency, ensures the stability and continuity of data transmission, avoids data loss or incompleteness, and enhances the working efficiency and data availability of the drone.
Smart Images

Figure CN224104305U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to an unmanned plane technical field especially relates to a data connection structure of unmanned plane. BACKGROUND
[0002] In recent years, the unmanned plane technology field develops rapidly, has obtained the widespread application in many fields such as military, civilian, however, there is still some problem to be solved urgently in data connection, structural design and function realization etc., therefore, particularly need a data connection structure of unmanned plane.
[0003] But the data connection structure of unmanned plane, in the data acquisition link, the acquisition equipment of traditional unmanned plane often adopts the installation mode of relatively cumbersome, when needing to replace the acquisition equipment to adapt to different tasks or realize continuous acquisition, the operation is complex and time -consuming, seriously influence work efficiency, and the data transmission interface between the acquisition board and other components is prone to the situation of poor contact, lead to the data loss or incompleteness of acquisition, greatly reduce the usability of data. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a data connection structure of unmanned plane to solve the problem of the data connection structure of unmanned plane in the prior art, but the data connection structure of unmanned plane, in the data acquisition link, the acquisition equipment of traditional unmanned plane often adopts the installation mode of relatively cumbersome, when needing to replace the acquisition equipment to adapt to different tasks or realize continuous acquisition, the operation is complex and time -consuming, seriously influence work efficiency, and the data transmission interface between the acquisition board and other components is prone to the situation of poor contact, lead to the data loss or incompleteness of acquisition, greatly reduce the usability of data.
[0005] To realize above-mentioned purpose, the utility model provides the following technical scheme: a data connection structure of unmanned plane, including landing stand, the one side surface of landing stand is connected with video recording equipment, the one side surface of video recording equipment is connected with installation base, the one side surface of installation base is connected with flight component, the one side surface of flight component is provided with data acquisition mechanism;
[0006] The data collection mechanism comprises a release pull rod, one side surface of the release pull rod is attached to one side surface of the mounting base, one side surface of the release pull rod is fixedly connected with a mounting female part, one side surface of the mounting female part is fixedly connected with a clamping spring piece, one side surface of the mounting female part is attached with a mounting male part, the upper surface of the mounting male part is fixedly connected with a collection plate, one side surface of the collection plate is fixedly connected with a flight data plug, one side surface of the flight data plug is movably connected with a flight data interface, one side surface of the collection plate is fixedly connected with an output jack, one side surface of the output jack is attached with a hidden cover, one side surface of the output jack is movably connected with a transmission line, one side surface of the transmission line is movably connected with a data conversion terminal, one side surface of the data conversion terminal is fixedly connected with a power switch, a signal lamp and a USB interface.
[0007] Preferably, the landing stand is symmetrically provided with two groups of the mounting base, and the flight assembly is symmetrically provided with four groups of the mounting base.
[0008] Preferably, the release pull rod is symmetrically provided with two groups of the mounting base, and the mounting female part is slidably connected with one side surface of the mounting base through the release pull rod.
[0009] Preferably, the clamping spring piece is S-shaped in cross section, and the mounting female part is slidably connected with the inner wall surface of the mounting base through the clamping spring piece.
[0010] Preferably, the central axes of the flight data plug and the flight data interface coincide with each other, and the video recording device is fixedly connected with the collection plate through the mounting base, the flight data plug and the flight data interface.
[0011] Preferably, one side surface of the mounting base is provided with a sliding groove, and the release pull rod is slidably connected with the inner wall surface of the mounting base through the sliding groove.
[0012] Preferably, one side surface of the data conversion terminal is provided with threads, and the transmission line is fixedly connected with one side surface of the data conversion terminal through the threads.
[0013] Compared with the prior art, the data connection structure of the unmanned aerial vehicle has the advantages that the collection mechanism is arranged, the problem of inconvenient mounting and dismounting of the collection plate of the existing device is solved, quick mounting and dismounting are realized to meet the continuous working requirement, the equipment use efficiency is improved, the central axes of the flight data plug and the flight data interface coincide with each other, the stable transmission of the video recording data is ensured, the data collection continuity is improved, the collection mechanism composed of the release pull rod, the sliding groove, the mounting female part and the clamping spring piece solves the problems of difficult dismounting of the collection plate of the existing device and damage of the parts, the dismounting operation is more stable and smooth, and the equipment maintenance is facilitated. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is the side view appearance structure schematic diagram of the utility model;
[0015] Figure 2 It is the installation male piece bottom view structure schematic diagram of the utility model;
[0016] Figure 3 It is the installation base plan view structure schematic diagram of the utility model;
[0017] Figure 4 It is the installation base section view structure schematic diagram of the utility model;
[0018] Figure 5 It is the utility model Figure 4 It is the enlarged structure schematic diagram of A place in the utility model;
[0019] Figure 6 It is the installation female piece section view structure schematic diagram of the utility model;
[0020] Figure 7 It is the data conversion terminal and transmission line mutual cooperation structure schematic diagram of the utility model.
[0021] In the drawing: 1, floor stand; 2, video recording equipment; 3, installation base; 4, flight assembly; 5, acquisition mechanism; 501, release pull rod; 502, installation female piece; 503, clamping spring piece; 504, installation male piece; 505, acquisition plate; 506, flight data plug; 507, flight data interface; 508, output jack; 509, hidden cover; 510, transmission line; 511, data conversion terminal; 512, power switch; 513, signal lamp; 514, USB interface. DETAILED DESCRIPTION
[0022] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0023] Please refer to Figures 1-7 The utility model provides a kind of technical scheme: the data connection structure of unmanned aerial vehicle, including floor stand 1, the side surface of floor stand 1 is fixedly connected with video recording equipment 2, the side surface of video recording equipment 2 is fixedly connected with installation base 3, the side surface of installation base 3 is fixedly connected with flight assembly 4, the side surface of flight assembly 4 is provided with data acquisition mechanism 5;
[0024] The data acquisition mechanism 5 comprises a release pull rod 501 attached to one side surface of the mounting base 3, one side surface of the release pull rod 501 is fixedly connected with a mounting female piece 502, one side surface of the mounting female piece 502 is fixedly connected with a clamping spring piece 503, one side surface of the mounting female piece 502 is attached with a mounting male piece 504, the upper surface of the mounting male piece 504 is fixedly connected with an acquisition plate 505, one side surface of the acquisition plate 505 is fixedly connected with a flight data plug 506, one side surface of the flight data plug 506 is movably mounted with a flight data interface 507, one side surface of the acquisition plate 505 is fixedly connected with an output jack 508, one side surface of the output jack 508 is attached with a hidden cover 509, one side surface of the output jack 508 is movably mounted with a transmission line 510, one side surface of the transmission line 510 is movably mounted with a data conversion terminal 511, one side surface of the data conversion terminal 511 is fixedly connected with a power switch 512, a signal lamp 513 and a USB interface 514, through the setting of the acquisition mechanism 5, in use, the acquisition plate 505 is attached and pressed on the upper surface of the mounting base 3, the mounting male piece 504 below the acquisition plate 505 is attached and slides with the mounting female piece 502, the clamping spring piece 503 is compressed, the clamping spring piece 503 releases the elastic potential to push the mounting female piece 502 to limit the mounting male piece 504, at the same time, the flight data plug 506 and the flight data interface 507 are connected, when the unmanned aerial vehicle is used, four groups of flight assemblies 4 are started, the landing gear 1 leaves the ground to make the unmanned aerial vehicle take off, the video equipment 2 collects data which is transmitted to the acquisition plate 505 through the mounting base 3, the flight data plug 506 and the flight data interface 507, when the acquisition plate 505 needs to be removed, the release pull rod 501 is pulled to compress the clamping spring piece 503 with the mounting female piece 502, after the mounting male piece 504 is limited, it is removed, when data is transmitted, the hidden cover 509 is pushed to expose the output jack 508, the transmission line 510 is inserted into the data conversion terminal 511 and is tightened, the power switch 512 is opened, the signal lamp 513 shows that the path is correct, the storage device is connected to the USB interface 514, the video data of the acquisition plate 505 is stored after being processed by the transmission line 510 and the data conversion terminal 511, the mounting and dismounting between the acquisition plate 505 and the mounting base 3 is convenient and fast, the acquisition plate is convenient to replace to meet the continuous working requirement, the stable and effective transmission of the video data from the video equipment 2 to the acquisition plate 505 is ensured, and the video related data in the flight process of the unmanned aerial vehicle can be collected in time and accurately.
[0025] Further, the landing frame 1 is provided with two groups symmetrically along the central axis of the mounting base 3, and the flight assembly 4 is provided with four groups symmetrically along the central axis of the mounting base 3. Through the arrangement of the landing frame 1 and the flight assembly 4, the unmanned aerial vehicle can maintain good balance and stability during landing, effectively disperses the weight of the fuselage and the landing impact force, reduces the occurrence of side turning caused by uneven force, and ensures the safe landing of the unmanned aerial vehicle. The unmanned aerial vehicle can obtain uniform power output during flight, improve the stability and controllability of flight, facilitate accurate control of the flight attitude and trajectory of the unmanned aerial vehicle, and meet various complex flight task requirements.
[0026] Further, the release pull rod 501 is provided with two groups symmetrically along the central axis of the mounting base 3, and the mounting female part 502 is slidably connected to one side surface of the mounting base 3 through the release pull rod 501. Through the arrangement of the release pull rod 501, the operation of pulling the release pull rod 501 to release the limiting of the mounting male part 504 is more balanced and stable, avoiding component damage or poor operation caused by unilateral force, improving the efficiency and reliability of dismounting the collection plate 505, and enabling the release pull rod 501 to effectively drive the mounting female part 502 to press the clamping spring piece 503, thereby smoothly releasing the limiting of the mounting male part 504 and achieving convenient dismounting of the collection plate 505, providing a convenient condition for maintenance and replacement of the collection plate.
[0027] Further, the cross section of the clamping spring piece 503 is S-shaped, and the mounting female part 502 is slidably connected to the inner wall surface of the mounting base 3 through the clamping spring piece 503. Through the arrangement of the clamping spring piece 503, it has good elastic deformation ability and energy storage effect, can store elastic potential energy when the mounting male part 504 is pressed, and can timely release to push the mounting female part 502 to limit the mounting male part 504, ensuring the stability of the installation of the collection plate 505, enabling the mounting female part 502 to smoothly slide along the inner wall of the mounting base 3 under the action of the clamping spring piece 503, thereby achieving limiting and releasing limiting of the mounting male part 504, and facilitating installation and dismounting operation of the collection plate 505.
[0028] Further, the central axes of the flight data plug 506 and the flight data interface 507 coincide with each other, and the video recording equipment 2 is fixedly connected to the collection plate 505 through the mounting base 3, the flight data plug 506 and the flight data interface 507. Through the arrangement of the mounting base 3, the flight data plug 506 and the flight data interface 507, accurate butt joint can be ensured, connection error can be effectively reduced, stability and reliability of video recording data in transmission process can be ensured, data loss or transmission error caused by poor connection can be avoided, video recording related data collected by the video recording equipment 2 can be smoothly and stably conducted to the collection plate 505 for processing and storage, a complete data transmission link is constructed, and the coherence and efficiency of unmanned aerial vehicle data collection work are improved.
[0029] Further, one side surface of the mounting base 3 is provided with a sliding groove, and the pull rod 501 is connected with the inner wall surface of the mounting base 3 through the sliding groove. Through the setting of the mounting base 3, a precise guide path is provided for the sliding of the pull rod 501 during use, so as to ensure the stability and smoothness of the sliding of the pull rod 501, thereby reliably driving the mounting female part 502 to press the spring leaf 503, releasing the limiting state of the mounting male part 504, and facilitating the disassembly operation of the collection plate 505.
[0030] Further, one side surface of the data conversion terminal 511 is provided with a thread, and the transmission line 510 is fixedly connected with the one side surface of the data conversion terminal 511 through the thread. Through the setting of the data conversion terminal 511, the transmission line 510 and the data conversion terminal 511 can be tightly and stably connected during use, effectively preventing problems such as data transmission interruption or poor contact caused by looseness, and ensuring that the video data in the collection plate 505 can stably flow through the data conversion terminal 511 for processing and transmission to the storage device.
[0031] Working principle: when the device starts running, the external power supply supplies power to the whole system, the collecting plate 505 is attached along the upper surface of the mounting base 3, the pressure is applied to the collecting plate 505, the mounting male part 504 fixedly connected to the lower surface of the collecting plate 505 is attached to one side surface of the mounting female part 502, slides along the one side surface of the mounting female part 502, and presses the clamping spring piece 503, after a certain limit, the clamping spring piece 503 releases the elastic potential energy, pushes the mounting female part 502 to apply the limiting action to the mounting female part, at the same time, the flight data plug 506 and the flight data interface 507 complete the connection and installation, at this time, if the unmanned aerial vehicle is needed to be used, the four groups of flight assemblies 4 are started, the landing gear 1 leaves the ground, drives the whole unmanned aerial vehicle to rise, the video recording equipment 2 collects the video recording related data, and conducts the video recording related data to the inside of the collecting plate 505 along the mounting base 3, the flight data plug 506 and the flight data interface 507, after the unmanned aerial vehicle completes the collection work, whether the collecting plate 505 is removed can be selected according to the actual needs, if continuous collection is needed, the release pull rod 501 is pulled, the release pull rod 501 drives the mounting female part 502 to press the clamping spring piece 503, the limiting state of the mounting male part 504 is released, the mounting male part 504 is removed and replaced with other collecting plates 505, so that the continuous work requirement is met, the hidden cover 509 is pushed, the hidden cover 509 slides along the one side surface of the collecting plate 505, at this time, the output jack 508 can be directly seen, the transmission line 510 is inserted into the output jack 508, and is connected to the data conversion terminal 511 and is rotated along the screw thread arranged on the one side surface of the data conversion terminal 511, the tight mounting of the transmission line 510 is realized, the power switch 512 is turned on, the signal lamp 513 indicates that the path is correct, the storage equipment is connected to the USB interface 514, at this time, the video recording data in the collecting plate 505 flows through the data conversion terminal 511 after processing, and is presented as a conventional recognizable data code, so that the storage equipment is stored, and the use process of the data connection structure of the unmanned aerial vehicle is completed.
[0032] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A data connection structure of a UAV, comprising a landing stand (1), characterized in that: One side surface of the landing stand (1) is fixedly connected with a video recording device (2), one side surface of the video recording device (2) is fixedly connected with a mounting base (3), one side surface of the mounting base (3) is fixedly connected with a flight assembly (4), and one side surface of the flight assembly (4) is provided with a data acquisition mechanism (5). The data acquisition mechanism (5) comprises a release pull rod (501) which is attached to one side surface of the mounting base (3), one side surface of the release pull rod (501) is fixedly connected with a mounting female part (502), one side surface of the mounting female part (502) is fixedly connected with a clamping spring piece (503), one side surface of the mounting female part (502) is attached with a mounting male part (504), the upper surface of the mounting male part (504) is fixedly connected with an acquisition plate (505), one side surface of the acquisition plate (505) is fixedly connected with a flight data plug (506), one side surface of the flight data plug (506) is movably mounted with a flight data interface (507), one side surface of the acquisition plate (505) is fixedly connected with an output jack (508), one side surface of the output jack (508) is attached with a hidden cover (509), one side surface of the output jack (508) is movably mounted with a transmission line (510), one side surface of the transmission line (510) is movably mounted with a data conversion terminal (511), one side surface of the data conversion terminal (511) is fixedly connected with a power switch (512), a signal lamp (513) and a USB interface (514). 2.The data connection structure of the unmanned aerial vehicle according to claim 1, wherein: The landing stand (1) is symmetrically provided with two groups of mounting bases (3) along the central axis of the mounting base (3), and the flight assembly (4) is symmetrically provided with four groups of mounting bases (3) along the central axis of the mounting base (3). 3.The data connection structure of the unmanned aerial vehicle according to claim 1, wherein: The release pull rod (501) is symmetrically provided with two groups along the central axis of the mounting base (3), and the mounting female part (502) is slidably connected with one side surface of the mounting base (3) through the release pull rod (501).
4. The data connection structure of claim 1, wherein: The cross section of the clamping spring piece (503) is S-shaped, and the mounting female part (502) is slidably connected with the inner wall surface of the mounting base (3) through the clamping spring piece (503).
5. The data connection structure of claim 1, wherein: The central axes of the flight data plug (506) and the flight data interface (507) coincide with each other, and the video recording device (2) is fixedly connected with the acquisition plate (505) through the mounting base (3), the flight data plug (506) and the flight data interface (507). 6.The data connection structure of the unmanned aerial vehicle according to claim 1, wherein: One side surface of the mounting base (3) is provided with a sliding groove, and the release pull rod (501) is slidably connected with the inner wall surface of the mounting base (3) through the sliding groove. 7.The data connection structure of the unmanned aerial vehicle according to claim 1, wherein: One side surface of the data conversion terminal (511) is provided with threads, and the transmission line (510) is fixedly connected with one side surface of the data conversion terminal (511) through the threads.