
Beginner Drone Racing Course
Go from zero to race-ready with the most complete drone racing course available. You will master FPV flight, build your own racing quad, dial in your PID tune, and compete with confidence. Everything you need to hit the track and win is right here.
What you will learn:
You will start with the fundamentals of FPV racing, covering drone anatomy, race formats, and safety protocols. From there, you will build a full racing drone from scratch, learning soldering, firmware configuration, and pre-flight procedures. Simulator training will develop your muscle memory before you ever risk real hardware. You will progress into acro mode, mastering the banked turns and vertical manoeuvres that separate fast pilots from the rest. PID tuning and Blackbox log analysis will give you the technical edge to optimise your quad for any course. Race strategy, qualifying tactics, and competitor awareness will sharpen your competitive instincts. You will also cover regulations, event preparation, maintenance, and even sponsorship to build a complete racing career.
How you study practically Beginner Drone Racing Course
How you practise Beginner Drone Racing Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 38 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsIntroduction to Drone Racing
Introduction to Drone Racing
Lesson 1 • History and Evolution of FPV Racing
Traces drone racing from hobbyist origins to organised leagues and global competitions. Establishes context for understanding why specific standards and formats exist today.
Lesson 2 • Core Drone Racing Terminology
Defines essential vocabulary including FPV, LOS, throttle, yaw, pitch, and roll. Accurate terminology enables clear communication with coaches, officials, and teammates.
Lesson 3 • Safety Culture and Mindset
Establishes a safety-first mindset covering pre-flight checks, bystander awareness, and emergency procedures. Safety habits introduced here are reinforced throughout every subsequent chapter.
Lesson 4 • Race Formats and Competition Classes
Covers the main race formats—time trial, head-to-head, and endurance—and drone weight or size classes. Connects format knowledge to equipment selection decisions.
Chapter 2HideHide detailsSee detailsDrone Hardware and Components
Drone Hardware and Components
Lesson 1 • Frame Design and Materials
Examines frame geometry, arm configurations, and material properties such as carbon fibre and nylon. Frame choice directly affects durability, weight, and aerodynamic performance.
Lesson 2 • Flight Controllers and Firmware
Introduces flight controller hardware, sensor suites, and popular open-source firmware options. Firmware knowledge is prerequisite for tuning covered in later chapters.
Lesson 3 • FPV Camera and Video Transmission
Details camera specifications, video transmitter power levels, and antenna types for FPV systems. Clear video feed is critical to pilot situational awareness during racing.
Lesson 4 • Motors, ESCs, and Power Systems
Covers brushless motor KV ratings, ESC protocols, and battery cell configurations. Understanding power systems allows students to match components for optimal thrust and efficiency.
Lesson 5 • Radio Control Systems and Receivers
Explains radio protocols, transmitter modes, and receiver binding procedures. Reliable control link is the foundation of safe and responsive drone operation.
Chapter 3HideHide detailsSee detailsBuilding and Assembling a Racing Drone
Building and Assembling a Racing Drone
Lesson 1 • Frame Assembly and Component Mounting
Walks through frame assembly sequence, motor mounting, and vibration isolation techniques. Proper mounting reduces vibration noise that degrades flight controller performance.
Lesson 2 • Pre-Flight Checks and Maiden Flight
Establishes a systematic pre-flight checklist and guides the first controlled hover test. Maiden flight procedures validate the build before full-speed racing practice begins.
Lesson 3 • Firmware Configuration and Initial Setup
Covers flashing firmware, configuring ports, and setting up receiver protocols in the configurator. Correct initial configuration prevents dangerous behaviour on first flight.
Lesson 4 • Tools, Workspace, and Component Sourcing
Identifies essential tools, soldering equipment, and reliable component suppliers. A well-organised workspace reduces build errors and speeds future maintenance.
Lesson 5 • Soldering Techniques for Racing Builds
Teaches proper soldering for high-current joints, motor leads, and ESC pads. Quality solder joints prevent in-flight failures and are mandatory for safe operation.
Chapter 4HideHide detailsSee detailsSimulator Training and Basic Flight Skills
Simulator Training and Basic Flight Skills
Lesson 1 • Flying Simple Courses and Gates
Introduces gate navigation, altitude changes, and basic lap completion in the simulator. Gate accuracy builds the spatial judgment needed for real-course racing.
Lesson 2 • Choosing and Configuring a Flight Simulator
Compares leading FPV simulators and guides controller configuration for realistic feel. Simulator fidelity directly impacts how quickly real-world skills transfer.
Lesson 3 • Throttle Management and Hover Control
Focuses on maintaining altitude, smooth throttle inputs, and correcting drift. Throttle discipline is the single most important skill for new racing pilots.
Lesson 4 • Basic Directional Control and Orientation
Trains pitch, roll, and yaw inputs for controlled forward flight and turns. Orientation awareness prevents crashes when the drone faces the pilot.
Chapter 5HideHide detailsSee detailsAcro Mode and Advanced Flight Techniques
Acro Mode and Advanced Flight Techniques
Lesson 1 • Dives, Climbs, and Vertical Manoeuvres
Covers power dives, pull-outs, and vertical climbs used in 3D course layouts. Vertical manoeuvre control expands the pilot's ability to navigate complex course designs.
Lesson 2 • Understanding Acro Mode Physics
Explains angular rate control, self-leveling absence, and gyroscope feedback loops. Conceptual understanding of acro physics accelerates skill acquisition and reduces frustration.
Lesson 3 • Banked Turns and Corner Technique
Teaches coordinated roll-yaw inputs for efficient banked turns at racing speeds. Smooth cornering is the primary differentiator between beginner and intermediate pilots.
Lesson 4 • Rolls and Flips in Racing Context
Introduces aileron rolls and front flips as course-specific manoeuvres, not just tricks. Controlled rolls allow pilots to navigate inverted gates and specialty course elements.
Lesson 5 • Speed Management and Flow State
Develops the ability to maintain maximum safe speed while preserving smooth, consistent inputs. Flow state flying reduces lap times more effectively than raw speed alone.
Chapter 6HideHide detailsSee detailsPID Tuning and Flight Controller Optimisation
PID Tuning and Flight Controller Optimisation
Lesson 1 • Rates, Expo, and Stick Feel Customisation
Adjusts rate profiles, expo curves, and super-rates to match individual pilot preferences. Personalised stick feel reduces pilot fatigue and improves consistency during long race days.
Lesson 2 • Reading Blackbox Logs for Diagnosis
Teaches log capture, visualisation tools, and identifying oscillation signatures in data. Data-driven diagnosis replaces guesswork and shortens the tuning iteration cycle.
Lesson 3 • Filters, RPM Filtering, and Noise Reduction
Covers gyro filters, dynamic notch filters, and RPM-based filtering to reduce motor noise. Proper filtering protects motors and ESCs while preserving sharp control response.
Lesson 4 • PID Theory and Control Loop Basics
Explains proportional, integral, and derivative terms and how each affects drone response. Conceptual clarity here prevents random tuning and accelerates finding optimal values.
Lesson 5 • Tuning P, I, and D Systematically
Provides a step-by-step tuning sequence starting with P, then D, then I adjustments. Systematic order prevents compounding errors and produces stable, repeatable results.
Chapter 7HideHide detailsSee detailsRace Strategy and Course Navigation
Race Strategy and Course Navigation
Lesson 1 • Post-Race Analysis and Improvement Cycles
Uses DVR footage, lap time data, and telemetry to identify specific improvement areas. Structured post-race review accelerates skill development between events.
Lesson 2 • Head-to-Head Racing and Competitor Awareness
Develops situational awareness, blocking techniques, and overtaking decisions in multi-pilot races. Competitor awareness prevents collisions and creates passing opportunities.
Lesson 3 • Course Reading and Gate Sequencing
Teaches systematic course walkthroughs, gate numbering, and mental mapping before racing. Pre-race course analysis reduces hesitation and gate misses during competition.
Lesson 4 • Racing Lines and Apex Selection
Applies motorsport line theory to drone racing, covering early, late, and geometric apexes. Optimal line selection reduces total distance flown and increases average speed.
Lesson 5 • Qualifying Strategy and Heat Management
Covers qualifying formats, heat seeding, and battery management across multiple rounds. Strategic heat management preserves equipment and maximizes points accumulation.
Chapter 8HideHide detailsSee detailsRegulations, Safety, and Competition Preparation
Regulations, Safety, and Competition Preparation
Lesson 1 • Drone Regulations and Airspace Compliance
Covers registration requirements, airspace authorisation, and event-specific waivers for racing. Regulatory compliance protects pilots from penalties and keeps events legally sanctioned.
Lesson 2 • Competition Gear and Packing Checklists
Provides comprehensive packing lists covering quads, tools, batteries, and personal gear. Arriving fully equipped eliminates preventable DNFs caused by missing components.
Lesson 3 • LiPo Battery Safety and Handling
Addresses safe charging, storage, transport, and disposal of LiPo batteries. LiPo fires are a leading cause of property damage at racing events and must be prevented.
Lesson 4 • Event Safety Protocols and Pilot Conduct
Details pit area rules, frequency management, and pilot conduct standards at sanctioned events. Consistent safety behaviour builds trust with venues and event organisers.
Lesson 5 • Race Day Routine and Mental Preparation
Structures a race day timeline from arrival to final round, including warm-up and focus rituals. A consistent routine reduces anxiety and maintains peak performance across all heats.
Your valid completion certificate
This course is for you:
Hobbyist drone flyer: ready to transition from casual flying to competitive racing.
RC vehicle enthusiast: looking to bring their mechanical passion into aerial motorsport.
Competitive gamer: wanting to take fast-twitch skills from the screen to real life.
Tech-savvy tinkerer: eager to build, tune, and optimise hardware for peak performance.
Young athlete: searching for a modern, technology-driven sport to compete in seriously.
Content creator: aiming to combine FPV flying with a personal brand and sponsorships.
What our students say
Your lessons are perfect. I purchased the one-year package and finally have the opportunity to follow various topics of my interest without needing to change platforms... I thank you for everything you do, I've already recommended you to other people...

I like how the lessons are straight to the point and how I can change chapters and skip content I don't need.

I like the content and the way videos are presented and transcribed, which speeds up the process!

The platform is fast, simple to use. The diversity of content and complementary videos help a lot with learning.

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