QUADCOPTER WORKSHOP

quadcopter

QUADCOPTER WORKSHOP

Course Structure and Topics covered

  • Understanding rotary-wing aircraft and their Dynamics
  • Exposure to Design and concepts of Embedded Systems behind Multicopters
  • Fabrication of Quadcopter frame and its circuit
  • Calibration and Testing of the developed Quadcopter
  • Quadcopter Flying using Radio Control and competition

Kit Content

  • Embedded Development Board
  • Brushless DC motors
  • Propellers (Pushers and Pullers)
  • Electronic Speed Controllers
  • Power Distribution Board
  • Accelerometer sensors
  • Gyroscopic sensors
  • Quadrotor frame
  • Screws and Nuts
  • Transmitter *
  • Receiver *
  • Working tools *

All the above components would be provided during the program to participants in groups of 5 but would be taken back at the end. This is being done to reduce the cost of the program and make it affordable for students who do not want to buy the takeaway kit.

The take-away kit consists of all the above items excluding the items marked with *. Take-away kit can be purchased at the venue by paying an additional fee of ₹ 16,500.

Certification

  • All e-CAD TECHNOLOGIES certificates have a unique ID which can be verified online for authentication
  • Certificate of Completion
  • Certificate of Completion with Distinction (for top performers)

Eligibility

Anybody interested in rotary-wing aircraft can attend this workshop.

What is this workshop about?

The quadrotor is a remotely piloted aircraft finding major applications in research, law enforcement, and commercial purposes. The simple four rotor design of quadrotors is easy to work with and modify, allowing engineers to find better applications each day.

This workshop introduces participants to the technologies involved in Unmanned Aerial Vehicles and the techniques involved in making a working Quadrotor. Students practically understand the overall design, configuration and testing of the Quadrotor project.

Course Outcomes
  • Introduction to Rotary-wing aircraft
  • Introduction to design and development of Multi Rotor Vehicles
  • Understanding the Electronics circuitry involved in Quadrotor
  • Learning about the working of accelerometer sensors, gyroscopes, and controllers
  • Hands-on experience for participants with DC motors, electronic speed controllers and Quadcopter Embedded control board

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