ROBORISEIT Robotics 3.2 Curriculum

Robotics 3.2 provides you opportunity to show your students the more complex robots. In this course we included the robots on articulated chassis, on 4x4 automobile chassis, even the walking robot is presented. Your students will investigate the mechanisms and construction designs that may be usefull for preparing to robotics competitions. Remote control are used in all robots. This makes the testing more flexible and cognitive.

  • 8 modular lessons
  • 350+ motivating slides
  • 600+ pages of buiding instructions
  • 30+ minutes of video
  • 40+ practical tasks
  • 60+ summary questions for consolidating knowledge
  • Basic and extended version of each training model
  • X-ray patterns of the internal structure of each model
  • Total course duration 16 hours
  • Recommended lesson time is 120 minutes
  • Best for students 10-14 years

All lesson content provided via Roboriseit Content Viewer software, that supports macOS and Windows 7 - 10 devices. No additional software needed.


Curriculum requirements:

  • One LEGO MINDSTORMS Education EV3 Core Set 45544 or 5003400
  • One LEGO MINDSTORMS Education EV3 Expansion Set 45560
  • One ROBORISEIT Power Pack

9. Differential. Car chassis

Let your students check what is the differential and what advantages it gives wheeled robots. Main functions of the differential gear and it usage are in this lesson. Direct comparison od blocked and unblocked differential will show the students how it work.

10. Polar rover

Mindstorm robots are limited in number of sensors and motors that can be used in single robot. That's why sometimes is very important to create a robot's design that allows to use one motor for two or more different functions. In this lessons we shows how to build such mechanizm.

11. Robot with manipulator

Chassis, created at previous lesson, will be used in this lesson for build the robot with manipulator. It allows to operate the robot by using a single remote control.

12. Trebuchet

Space frame truss structures are widely used in the building, robotics and engineering. Students will know how to design and build massive robots that has rigid structure.

13. Front loader

We discuss about creation of high loaded all-wheel drive machines with perfect maneuverability at this lesson. Usually such requirements leads to articulated chassis using. What's why we propose students built and test the robotised wheel loader.

14. Spider robot

Robots that operates at extreme conditions and on the raw surfaces needs universal propulsor. Nature shows the solution af such task as a legs. Walking robots has the most complex sensor system and algorythms of work. We propose to build and explore the spider robot (remote controlled) that has eight legs.

15. All-wheel drive land rover

Creation of all-wheel drive robot on automobile chassis from the Mindstorms set is very interesting and non trivial task. We discuss the features of off road wheeled vehicles at this lesson and the creating of such robot. Your students will investigate the robot's transmission and make conclusions about the using of differential gear in such robots.

16. Modular assembly of robots

Semi knocked down assembling of the cars and other complex mechanisms makes the process faster and more predictable. Your students will try to use this method for creating own robot. Front and rear axles provided in two variants should be combined and tested in proposed tasks.

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Robotic year with Roborise-it!

Good news for all users we are introducing a new unique offer for schools / educational centers / clubs. We cover the needs of the curriculum for a year providing two packages: "Robotics year WeDo 2.0" and "Robotics year EV3"

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