Improving FLL Robot Game. Task. Lift your robot with 40 teeth gear wheels.
Build a similar mechanism to this one. Similar, but for your robot. This is the task for you. Try, give yourself half and hour or even an hour.
- #445
- 06 Mar 2017
Build a similar mechanism to this one. Similar, but for your robot. This is the task for you. Try, give yourself half and hour or even an hour.
In this episode I would like to show you a way to solve the FLL 2012 Medicine mission using an LEGO Mindstorms NXT Ultrasonic Sensor and a system of gears that converts circular motion to linear.
Let's try to integrate more of the things we have learned into a single attachment. One that could accumulate energy, conserve it and use it at the appropriate time. All this because of a Rubber Band and a Flywheel - and if you don't know what a flywheel is you should definitely watch this videos
There were a few problems with the 40 teeth gears that we were using. Let's list some of them
What should you do as a teacher when the students are calculating the gear ratios and number of needed rotations?
In the previous video, we found the correct answer for our task and it is 18.75, or is it?
Time to lift the robot. The first approach is by using the 40 teeth gear wheels that come with the LEGO Mindstorms EV3 and NXT robotics sets.
Второто ниво от учебната програма по LEGO роботика за ученици от пети до дванадесети клас.
Учениците строят множество роботи с вериги и се запознават с физическите понятия инерция и център на тежестта. Изучават се възможностите на зъбните колела, тяхната употреба и основни конструкции, в които могат да бъдат включени.
В програмирането се въвежда новото понятие за „условие“.
Роботите започват да стават по-умни, като могат самостоятелно да вземат сложни решения. „Шпионски“ роботи преследват своите цели, като се пазят да не бъдат забелязани. Въвежда се сензорът за светлина, който роботите използват, за да разпознават цветовете на търсените от тях обекти. Роботите могат да спират на черна линия и да следват маршрут, отбелязан с цветна линия на пода.
Най-сложната мисия на шпионина в края на нивото е да се превърне в сумист и да победи всеки друг робот на ринга.
Четвъртото ниво от учебната програма по Роботика с LEGO за ученици от втори, трети и четвърти клас.
Учениците строят множество роботи с вериги. Въвежда се сензорът за светлина, който роботите използват, за да разпознават цветовете на обектите около тях. Запознават се с възможностите на зъбните колела, тяхната употреба и основни конструкции включващи зъбни колела. Роботите могат да спират на черна линия и да следват маршрут отбелязан с цветна линия на пода.
Ready to dive deep into the 2024-2025 FIRST LEGO League SUBMERGED season? In this hands-on course, we showcase and explain a series of expertly crafted example solutions using the versatile Nautiq box robot and powerful custom-built attachments.
Unlike others, we release our solutions only after the season ends, ensuring fair play while providing full transparency. What sets this course apart is our strong focus on multi-mission runs - watch and learn how to complete 3, 4, or even 5 missions in a single program. Then, we break everything down mission by mission so you can replicate, tweak, and fully understand the strategies and logic behind each run.
This course is more than a demonstration - it's a teaching tool. Whether you're a student eager to master robotics or a coach looking to elevate your team's performance, you'll gain practical insights into how to score more points efficiently and creatively in FLL competitions.
And with the Nautiq, the fun is just getting started! You’ll explore the power of gears, the magic of attachments, and the surprising capabilities of a compact robot that packs a serious punch. Get inspired, get building, and bring your FLL journey to the next level!
Before starting this course, we recommend reviewing the FIRST LEGO League robot game guide.
This LEGO Mindstorms Attachment has three gears, one frame and two axles. The goal of the attachment is to use the gears to change the direction in which the motion is transferred.
We got the speed of rotations of the motor in Radians per second. Let's calculate the value for the speed of the whole system. We calculate that the wheels are rotating with 375 radians per second. Which is impressive and quite fast for this system. From this speed, knowing the inertia mass we can calculate how much energy is the system accumulating.
In this robotics tutorial, we present a solution to extending a VEX IQ attachment to handle two hex balls at a time
This bridge can be raised and lowered to allow transport on both the river and the road. Lower the bridge decks to prepare for the trucks to pass.