the video version
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A ladder, not a single competition#
FIRST is deliberately designed as a progression of programs so a student can start as young as age 4 and stay engaged through high school. Each rung adds complexity, budget, and real-world engineering. Here is the ladder, from youngest to oldest:
FIRST LEGO League (FLL)#
FLL has three divisions (FIRST is moving to an age-based structure starting in 2026, but the divisions you'll still hear named are):
- FLL Discover (roughly ages 4–6 / grades PreK–1): playful, hands-on STEM intro with LEGO DUPLO and guided activities.
- FLL Explore (roughly ages 6–10): teams build and explore real-world problems with LEGO models and simple motorized elements.
- FLL Challenge (roughly ages 9–16): the iconic version — teams design, build, and program an autonomous LEGO robot (using LEGO Education SPIKE Prime kits) to complete missions on a tabletop game mat, plus an Innovation Project and a Core Values evaluation.
FIRST Tech Challenge (FTC)#
For grades 7–12. Teams build a robot from a metal kit (about the size of a microwave) that must fit within an 18-inch cube at the start of a match. FTC uses Android-based control and programs in Java (via Android Studio, OnBot Java, or Blocks). It is a strong on-ramp to FRC: smaller budget, smaller robot, but real autonomous + driver-controlled play.
FIRST Robotics Competition (FRC)#
For grades 9–12 (high school). This is the big one: teams have about six weeks to design and build a robot that commonly weighs over 100 pounds and stands several feet tall, using industrial components, real motors, pneumatics, sensors, and software. Matches are played 3-vs-3 on a field the size of a basketball court.
How skills carry up the ladder#
The progression is intentional — concepts repeat at higher fidelity:
- Autonomous routines: In FLL Challenge the robot runs pre-programmed missions; in FTC and FRC you write a timed autonomous period (currently 30 seconds in FTC and 20 seconds in FRC (2026 REBUILT)) using sensors and odometry.
- The engineering design process: Brainstorm, prototype, build, test, iterate — identical at every level, just with bigger tools.
- Core Values and judging: FLL has an explicit Core Values rubric; FRC carries the same culture into its judged awards.
- Teamwork roles: Even FLL teams split into build, program, and presentation roles — a preview of FRC sub-teams.
You don't need to start at the bottom#
A very common path is to join FRC directly in 9th grade with zero prior FIRST experience. Many of the best FRC contributors never did FLL or FTC. The progression is an opportunity, not a prerequisite. If you are reading this as a high schooler, you can jump straight into FRC.
Learn more#
- FIRST programs overview: https://www.firstinspires.org/programs
- FIRST Tech Challenge: https://www.firstinspires.org/robotics/ftc
the part worth keeping
Key takeaways
- FIRST is a progression: FLL Discover/Explore/Challenge, then FTC, then FRC, spanning roughly ages 4–18.
- Each rung reinforces the same ideas — autonomy, the design process, teamwork roles, and Core Values — at greater complexity.
- You can join FRC directly in high school with no prior FIRST experience; the progression is optional, not required.
Getting Started with FRCWhat FIRST and FRC Arelesson 2 of 3
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where this came from
Sources and corrections
This lesson is AI-assisted: drafted from primary sources, then reviewed and edited by hand. Errors still get through. When one is reported we fix it and write down what changed, in public, in the corrections log.
sources and further reading
- firstinspires.orgFIRST Programs Overview
- firstinspires.orgFIRST Tech Challenge
clipped to this lesson
Articles that go further on this
The lesson gets you through the topic. These go wider on it, and they read in one sitting.
- 7 min readFRC vs FTC vs VEX: Which Robotics Program Is Right for You?FRC vs FTC vs VEX compared: robot size, cost, age range, season length, and programming, plus how to choose the right robotics competition for you./blogread it
- 13 min readFRC Awards Explained: Every FIRST Robotics Competition Award (Impact, EI, Autonomous & More)A complete guide to every FIRST Robotics Competition award — Impact, Engineering Inspiration, Autonomous, Innovation in Control, Dean's List and more — with judged criteria and how to win./blogread it
- 8 min readFRC Autonomous with PathPlanner: A Beginner's Guide to Auto RoutinesLearn how FRC teams build autonomous routines with PathPlanner (PPLib): paths vs autos, AutoBuilder, named commands, odometry, tuning, and Choreo./blogread it
answer sheet
Lesson quiz
All 3 right completes the lesson. Miss one and only that question comes back, anything you already answered correctly stays banked.
0 of 3 answered
01Which sequence lists the FIRST progression from youngest to oldest students?
02Which FIRST program is built around LEGO Education robotics for its youngest participants?
03How do FTC robots generally compare to FRC robots in scale?
Answer every question to submit.
All 28 lessons in Getting Started with FRCopenclose
01 / what-first-and-frc-are
02 / the-season-and-the-game
03 / culture-teams-and-roles
04 / getting-started-your-first-steps
05 / worked-examples-mini-projects
- Not read yet:Project 1 — Make a NEO Spin with the REV Hardware Client
- Not read yet:Project 2 — Deploy a Real Arcade-Drive Program
- Not read yet:Project 3 — Refactor into a Command-Based Drive Subsystem
- Not read yet:Project 4 — Build a Fuel Launcher for REBUILT
- Not read yet:Project 5 — A One-Button Autonomous Routine
06 / common-mistakes-troubleshooting
- Not read yet:The Connection Chain: When the Driver Station Won't Connect
- Not read yet:Brownouts: Why the Robot Goes Limp Mid-Match
- Not read yet:CAN Bus Gremlins: Missing and Conflicting Devices
- Not read yet:Software Gotchas: Inverted Drives, Scheduler Stalls, and Reading the RioLog
- Not read yet:Inspection-Day Failures: Bumpers, Size, and Weight
07 / advanced-techniques-case-studies
- Not read yet:Closed-Loop Control: PID + Feedforward for a Consistent Shot
- Not read yet:Swerve Drive: Omnidirectional Movement with YAGSL
- Not read yet:AprilTag Vision: Knowing Where You Are with PhotonVision
- Not read yet:Data-Driven Strategy: Scouting, EPA/OPR, and Alliance Selection
- Not read yet:Choosing Your Hardware Ecosystem: REV vs CTRE