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Practical Arduino Robotics

You're reading from   Practical Arduino Robotics A hands-on guide to bringing your robotics ideas to life using Arduino

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Product type Paperback
Published in Mar 2023
Publisher Packt
ISBN-13 9781804613177
Length 334 pages
Edition 1st Edition
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Author (1):
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Lukas Kaul Lukas Kaul
Author Profile Icon Lukas Kaul
Lukas Kaul
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Table of Contents (21) Chapters Close

Preface 1. Part 1: Selecting the Right Components for Your Robots
2. Chapter 1: Introducing Robotics and the Arduino Ecosystem FREE CHAPTER 3. Chapter 2: Making Robots Perceive the World with Sensors 4. Chapter 3: Making Your Robot Move and Interact with the World with Actuators 5. Chapter 4: Selecting the Right Arduino Board for Your Project 6. Part 2: Writing Effective and Reliable Robot Programs for Arduino
7. Chapter 5: Getting Started with Robot Programming 8. Chapter 6: Understanding Object-Oriented Programming and Creating Arduino Libraries 9. Chapter 7: Testing and Debugging with the Arduino IDE 10. Part 3: Building the Hardware, Electronics, and UI of Your Robot
11. Chapter 8: Exploring Mechanical Design and the 3D Printing Toolchain 12. Chapter 9: Designing the Power System of Your Robot 13. Chapter 10: Working with Displays, LEDs, and Sound 14. Chapter 11: Adding Wireless Interfaces to Your Robot 15. Part 4: Advanced Example Projects to Put Your Robotic Skills into Action
16. Chapter 12: Building an Advanced Line-Following Robot Using a Camera 17. Chapter 13: Building a Self-Balancing, Radio-Controlled Telepresence Robot 18. Chapter 14: Wrapping Up, Next Steps, and a Look Ahead 19. Index 20. Other Books You May Enjoy

Replacing the USB cable with a Zigbee module

We have already used the serial interface of our Arduino extensively to communicate with the Arduino IDE’s built-in Serial Monitor and Plotter. These tools are incredibly useful to send commands to your robot or visualize live sensor data, controller outputs, or any other data that helps you understand what is happening inside your robot. So far, we always used a USB cable as the communication link between the Arduino and the PC. This is very convenient, particularly because it also works seamlessly for programming the Arduino and providing power from the USB port. But what if we wanted to use the same tools to communicate with a mobile robot that cannot be connected to your PC over a USB cable?

We can easily replace the USB cable with wireless modules that act as the link for the serial interface using a range of technologies. In this section, we will learn how to use Digi’s XBee modules for this purpose (https://www.digi...

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