一种无人机航拍测绘设备

By designing a protective frame that combines support legs and buffer legs in the drone aerial surveying equipment, the problem of camera equipment damage caused by drones falling in complex environments has been solved, thus achieving equipment protection and data security.

CN224511505UActive Publication Date: 2026-07-17ZHENGZHOU AIWEI COMM TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHENGZHOU AIWEI COMM TECH CO LTD
Filing Date
2025-07-14
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Drone aerial surveying equipment is prone to malfunction in complex geographical environments, leading to damage to camera equipment and data loss.

Method used

A drone aerial surveying and mapping device was designed, including support legs and buffer legs. The support legs and buffer legs are controlled by a drive component to close together to form a cage-like protective frame, and buffer components are installed in the middle to absorb landing energy and reduce damage.

Benefits of technology

It effectively reduces damage to camera equipment when drones crash, protecting data integrity.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224511505U_ABST
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Abstract

本实用新型公开了一种无人机航拍测绘设备,包括连接座,连接座底部固定安装有安装盒,安装盒铰接安装有支撑腿,支撑腿圆周阵列设置有多个,安装盒内安装有驱动支撑腿转动的驱动件,支撑腿与安装盒之间安装有第一复位簧,支撑腿远离安装盒一端铰接有缓冲腿,支撑腿与缓冲腿之间铰接有缓冲件,安装盒底部固定安装有云台,云台固定安装有拍摄件。本实用新型通过设置支撑腿与缓冲腿,在无人机用于异常情况失去动力时,控制支撑腿与缓冲腿合拢,形成笼状防护框架,并在支撑腿与缓冲腿之间安装有缓冲件,吸收落地的能量,进一步减少摔落带来的损伤。
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Claims

1. An unmanned aerial vehicle aerial surveying and mapping device, characterized by, include: Connector (1), the connector (1) is used to connect the drone; Mounting box (2), which is fixedly mounted on the bottom of the connecting seat (1); Support leg (31), the support leg (3) is hinged to the mounting box (2), and multiple support legs (3) are arranged in a circumferential array; A driving element (4) drives the supporting leg (3) to rotate; A first return spring (32) is installed between the support leg (31) and the mounting box (2); A buffer leg (33) is hinged to the end of the support leg (31) away from the mounting box (2); The buffer (34) includes a damping rod and a return spring sleeved on the outside of the damping rod. The two ends of the buffer (34) are respectively hinged to the support leg (31) and the buffer leg (33). A gimbal (51) is fixedly installed at the bottom of the mounting box (2); A camera (52) is fixedly mounted on the gimbal (51); When the first reset spring (32) and the reset spring are reset, the gimbal (51) and the shooting device (52) are located in the space formed by the array of the buffer leg (33) and the support leg (31).

2. The unmanned aerial vehicle aerial surveying and mapping device according to claim 1, wherein: The mounting box (2) is equipped with a support rod (61), and a slide cylinder (62) is slidably mounted on the support rod (61). The end of the support leg (31) away from the buffer leg (33) is hinged to the slide cylinder (62). The section of the buffer leg (33) hinged to the slide cylinder (62) is a telescopic rod. 3.The aerial surveying and mapping device of claim 2, wherein: The support rod (61) is rotatably mounted on the mounting box (2). At least one track groove (63) is provided on the outside of the support rod (61). A protrusion is provided inside the slide cylinder (62) and is connected to the track groove (63). The support rod (61) is connected to the drive member (4). A second return spring (621) is provided between the slide cylinder (62) and the mounting box (2).

4. The unmanned aerial vehicle aerial surveying and mapping device of claim 3, wherein: The support rod (61) is slidably keyed to a first clutch tooth block (641), the output end of the drive unit (4) is fixedly connected to a second clutch tooth block (642), an electromagnet is fixedly installed inside the mounting box (2), and a magnetic suction component is installed on the first clutch tooth block (641).

5. The unmanned aerial vehicle aerial surveying and mapping device of claim 1, wherein: The bottom of the buffer leg (33) is fixedly connected to a support foot (331), and the support foot (331) is perpendicular to the buffer leg (33).

6. The unmanned aerial vehicle aerial surveying and mapping device of claim 5, wherein: When the first reset spring (32) and the reset spring are reset, the end faces of the adjacent support feet (331) are in contact.