RoboSoccer

4-5 APR, 2026

RoboSoccer is one of the most famous challenges of TechnoXian, a world robotics championship series. Teams of 3 wireless bots chase a ball around a big-sized arena with the aim of kicking more goals than the opponent. This game gives the opportunity for youngsters to solve robotic challenges and build creative bots while learning science, technology, engineering, and math. The most rewarding part of designing bots is that students have fun and work together as a team, and learning occurs as naturally as breathing air.

Eligibility Criteria

  • Jr. Category : RoboClubs/ Schools or individuals may nominate. Participants’ age should be between 6-9 years and 10-12 years.

How To Get on RoboSoccer Challenge

  • STEP 1: Register your RoboClub or Institute as TechnoXian RoboClub online at the official TechnoXian website. If you do not have a Club or institute, you may form a new TX RoboClub.
  • STEP 2: Once your FLF Club is active, you may select the RoboSoccer Challenge category from the competition list in your login panel, and apply. You will also be needed to select members from your club who will participate in the challenge. A maximum of 4 members in 1 team can participate. A club can apply multiple teams for the same challenge.
  • STEP 3: Construct a wireless autonomous or manual Bot. Ready-made bots will not be allowed to compete. Only self-made or TechnoXian listed DIY kits can be used to make a bot.
  • STEP 4: Prepare a video of 1 minute to 5 minutes (maximum 100 MB), showcasing team readiness, creativity, preparing for challenges, or anything to show passion to participate in TechnoXian. Share the video either on email at   robotics.academy.center@gmail.com  (as google drive or We transfer) mentioning Your WRC ID (Competition Id). All videos will be uploaded on TechnoXian YouTube channel.
    (Note: Video is for promotion for our Participants who are coming to participate in Technoxian)

The participating bots should be wireless and controlled remotely. It can be circular / Rectangular in style. The bot must fit inside a length can't be maximize by 40 cm cube at any point in time. Maximum weight should not be more than 7Kgs (including battery for wirelessly controlled bots. However, a tolerance of 5% is acceptable.). Additionally, the top of the robot must adhere to the standard pattern size and surface constraints. Dribbling devices that actively exert spin on the ball, which keep the ball in contact with the robot are permitted under certain conditions. Participants need to ensure:

  • Each team should have three robots for the full tournament. The substitution of robots during the competition within the team or with other teams is forbidden.
  • Batteries must be sealed, immobilized electrolyte type (gel cell, lithium, NiCad, or dry cells).
  • The electric voltage anywhere in the machine can used up to 24V DC at any point in time for each robot.
  • Each robot must carry a top marker (1, 2, and 3) unique identity so that it can be distinguished by the referee easily. Unmarked Robots are not eligible to play.
  • The robot must not emit infrared light. However, optical sensors (e.g. infrared-distance-sensors) may be used if they do not affect other robots.
  • Infrared light-reflecting materials must not be used on the outside. If robots are painted, they must be painted matte. Minor parts that reflect infrared light could be used only if other robots are not affected. Robots must not produce magnetic interference for other robots on the field.
  • If a team claims that their robot is affected by the other team’s robot in any way they must show proof/evidence of the interference. Any interference must be confirmed by a Referee if a claim is placed by the other team.
  • The robot can be autonomous or manually controlled using a Remote-control system.
  • Robots must be constructed and programmed in a way that their movement is not limited to only one dimension and must move in all directions.
  • Any robotic parts/building material can be used until the robot meets the above specifications and if the design and construction are primarily the original work of the team as ready-made robots are not allowed to compete in the competition.

Tournament balls: The diameter of the ball must be 42mm (+- 5mm). A well-balanced ball shall be used. The ball must be able to resist wear and tear during the gameplay.

The playing field will be rectangular and of the following size:

  • Total arena size would be 5.0 meters X 4.0 meters and playing area would be 4.5 meters X 3.6 meters appx. The exact field dimensions and the field markings at the venue may vary by up to +10% in each linear dimension.
  • The floor consists of plane wood surface on top of a hard-level surface. All straight lines on the field will be painted white and have a thickness of 50 mm.
  • The field has two goals, centered on each of the shorter sides of the playing field. The goal inner space is 60cm in width, 60 cm high, and 60 cm deep, box-shaped. It has a cross-bar on top (to prevent robots from entering the goal and to allow checking if the ball scored). The goal posts are positioned over the white line marking the limits of the field.
  • A center circle will be drawn on the field. It is 90 cm in diameter. It is a thin white marked circle. It is there for Referees and Captains as guidance during the kick-off.
  • In front of each goal, there is a 120 cm wide and 60 cm long penalty area. The penalty area is marked with white lines of 50 mm in width. The line is part of the area. A robot is considered inside the Penalty Area when it is completely inside.
  • The figures below show the dimensions of the field, the goals, and special field areas, measured in millimeters between the line centers.

3D Model Arena: Move Cursor to View 360 degree

Robo Soccer Ground

VENUE : Iraq- Culture in Najaf
Registration Fee :

  • Per Participant Fee: 34 USD Dollars 

For Any Query :
Feel Free To Call : 964-7800033737
Email : wael.abbas@technoxian.in

Event Registration

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