IP Library › Granted Patent US 10,472,056
Granted Patent B2
US 10,472,056 · App. 16/353,999 · Granted Nov 12, 2019

Unmanned aerial vehicle and operations thereof

Inventors: Tao Wang (Shenzhen, CN); Tao Zhao (Shenzhen, CN); Shaojie Chen (Shenzhen, CN); Zhigang Ou (Shenzhen, CN)
Assignee: SZ DJI TECHNOLOGY CO., LTD.
B64C27/08B64C1/30B64C25/06B64C25/32B64C27/00B64C27/54B64C39/024B64D31/14B64D43/00G01R33/0047G01V3/16G05D1/00A63H27/12B64C2025/325B64C2201/024B64C2201/027B64C2201/042B64C2201/108B64C2201/12B64C2201/123B64C2201/127B64C2201/128B64C2201/14B64C2201/141B64C2201/20Y10T29/49117
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Quick Facts
Patent No.
US 10,472,056
App. No.
16/353,999
Granted
Nov 12, 2019
Kind
B2
Abstract

The present invention provides methods and apparatus for unmanned aerial vehicles (UAVs) with improved reliability. According to one aspect of the invention, interference experienced by onboard sensors from onboard electrical components is reduced. According to another aspect of the invention, user-configuration or assembly of electrical components is minimized to reduce user errors.

Claims (18)

1. A multi-rotor unmanned aerial vehicle (UAV), comprising:

a central body;

a plurality of branch housing members extending from the central body, each configured to support a corresponding actuator and foldable relative to the central body;

one or more electrical components disposed inside the central body, the one or more electrical components comprising a flight control module;

a magnetometer configured to measure a heading of the UAV and disposed sufficiently distal from the one or more electrical components to effect a reduction of interference from the one or more electrical components; and

an indicator light configured to indicate establishment of a communication channel between the UAV and a remote control device;

wherein the magnetometer is located on an extension member extending away from the central body; and

wherein the extension member is a landing stand configured to bear weight of the UAV when the UAV is not airborne.

2. The UAV of claim 1 , wherein the central body comprises an upper housing member and a lower housing member that are removably coupled to form a central cavity.

3. The UAV of claim 2 , wherein at least one of the upper housing member or the lower housing is manufactured using an additive manufacturing technique.

4. The UAV of claim 1 , wherein each of the plurality of branch housing members forms a branch cavity.

5. The UAV of claim 4 , wherein at least one of the plurality of branch housing members is manufactured using an additive manufacturing technique.

6. The UAV of claim 1 , wherein the magnetometer is disposed inside the central body.

7. The UAV of claim 1 , wherein the indicator light is positioned at an opening or window.

8. The UAV of claim 7 , wherein the opening or the window is covered by a window cover that is made of a transparent or semi-transparent material.

9. The UAV of claim 1 , wherein the one or more electrical components further comprise a GPS receiver.

10. The UAV of claim 1 , wherein the one or more electrical components further comprise a power source and an inertial measurement unit (IMU).

11. The UAV of claim 1 , wherein the one or more electrical components further comprise a plurality of electronic speed control (ESC) modules electrically connected to the flight control module.

Priority Claims (2)
CN 2012 2 0604396 U · Nov 15, 2012 · national
CN 2012 2 0686731 U · Dec 13, 2012 · national
Continuity (12)
Continuation 16027178 · Jul 3, 2018
Continuation 15175473 · Jun 7, 2016
Continuation 15012006 · Feb 1, 2016
Continuation 14954427 · Nov 30, 2015
Continuation 14947923 · Nov 20, 2015
Continuation 14836344 · Aug 26, 2015
Continuation 14954427
Continuation 14836344
Continuation 14515357 · Oct 15, 2014
Continuation 14092653 · Nov 27, 2013
Continuation In Part PCTCN2013087053 · Nov 13, 2013
Related Publication 20190276141A1 · Sep 12, 2019
Cited By (1)
US 12,256,172