The 5 in 1 Robotics Kit is designed as a comprehensive starter package for enthusiasts and students to begin their journey into the world of Arduino and robotics. It includes essential components and a detailed booklet with instructions and basic codes for seven experiments, providing a hands-on learning experience in building and programming a robot. This product is specially designed and manufactured by Toboids Automata Pvt. Ltd. All rights reserved. This design is registered under the applicable intellectual property laws. 5 in one robot version 2 have  is built on ROS (Robot Operating System) and Arduino, giving developers the freedom to experiment, customize, and expand functionalities.  Arduino giving developers the freedom to experiment whether social robotics studies, or custom projects, 5 in one robot offers a flexible platform.

 

The 5 in 1 Robotics Kit is designed as a comprehensive starter package for enthusiasts and students to begin their journey into the world of Arduino and robotics. 

The robot kit will consist of the following components.

1. Booklet with 20 page with details how to use the kit and 7 experiements with  basic codes.

2. Mechanical components

Sl. No. Component Quantity
1 Robot Chassis 1
2 Wheel 2
3 Castor wheel 1

 

3. Electrical and Electronic components

Sl. No. Component Quantity
1 Arduino Mega2560 1
2 Battery Li-ion (3S) 11.1 2.5 Ah 1
3 Ultrasonic Sensor (HC-SR04) 3
4 BO Motor 2
5 Encoder 2
6 USB connector 1
7 Motor driver l298 1
8 IMU 6050 1
9 Wires and connectors  
10 Sensor Shield 1
11 Buck converter 1
12 Spacer caster wheel 4
13 Zip tag  
14 Charger 1

 

Version 2 of the Robotics Kit is an advanced upgrade designed for users who want to move beyond basic robotics. Equipped with an onboard computer, camera and LiDAR, this version provides the capability to develop and test advanced autonomous navigation, mapping, and intelligent control algorithms. It offers a powerful platform for students, researchers, and enthusiasts to explore real-world robotic applications in greater depth.

The robot kit will consist of the following components

1. Booklet with 20 page with details how to use the kit and 7 experiements with  basic codes.

2. Mechanical Components

Sl. No. Component Quantity
1 Robot Chassis 1
2 Wheel 2
3 Castor Wheel 1
4 20 Spoke Encoder Wheel 2
5 Frame of Mobile Robot (Bottom) 1
6 Frame of Mobile Robot (Top) 1
7 Clamp for Ultrasonic Sensor 3
8 Clamp for IR Sensor 2
9 Clamp for N20 Motor 1
10 Clamp for Ultrasonic Hybrid (LiDAR) 2
11 Clamp for Raspberry Pi Camera 1
12 Clamp for IMU 1
13 Lock for Robot Motor Mount 4
14 Photoelectric Speed Sensor Lock 2

3. Electrical and Electronic Components

Sl. No. Component Quantity
1 Arduino Mega2560 1
2 Arduino Due 1
3 Raspberry Pi 4 Model B (4GB) 1
4 Raspberry Pi 5MP Camera Module 1
5 Battery Li-ion (3S) 11.1V 2.5Ah 1
6 Ultrasonic Sensor (HC-SR04) 3
7 IR Sensors 2
8 Color Sensor Module 1
9 LDR Light Sensor 2
10 BO Motor (300 RPM Single Shaft) 2
11 N20 Shaft Motor 600RPM – 12V 1
12 Encoder 2
13 Speed Measuring Sensor (FC-03) 2
14 Motor Driver L298 (2A Dual PWM) 1
15 IMU MPU6050 1
16 360° Omni-directional LiDAR LD06 1
17 USB Connector 1
18 2.1 x 5.5mm Female Barrel Connector 1
19 Sensor Shield V5 Expansion Board 1
20 DC-DC Adjustable Buck Converter (MP1584) 2
21 Wires and Connectors
22 Zip Tie 5
23 Black Rubber Band 4
24 Charger 1

SELF-BALANCING ROBOT

Equipped with advanced gyroscopic sensors, the robot maintains stability while moving on two wheels. This helps students understand balance control, feedback systems, and PID algorithms in a hands-on way.

OBSTACLE AVOIDANCE

Using ultrasonic sensors, the robot can detect and avoid obstacles in its path. This teaches students how autonomous systems perceive surroundings, make real-time decisions, and ensure safe navigation in dynamic environments.

LINE FOLLOWER MODE

Infrared sensors enable the robot to detect and follow paths on the ground. This introduces concepts of automation, sensor-based navigation, and logic-based decision-making.

MAZE SOLVING MODE

Intelligent path-finding algorithms, the robot can solve mazes by detecting walls and optimizing routes. This builds problem-solving skills while teaching algorithms like left-hand/right-hand rule and shortest path methods.

LIGHT FOLLOWER MODE

Light sensors allow the robot to detect and follow light sources, showcasing sensor integration and autonomous response to environmental changes.

DEVELOPER SUPPORT

5 in 1 robot version 2 have is built on ROS (Robot Operating System) and Arduino, giving developers the freedom to experiment, customize, and expand functionalities. Arduino giving developers the freedom to experiment whether social robotics studies, or custom projects, 5 in one robot offers a flexible platform.

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