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The Ultimate Guide to Informed Wearable Technology

You're reading from  The Ultimate Guide to Informed Wearable Technology

Product type Book
Published in Oct 2022
Publisher Packt
ISBN-13 9781803230597
Pages 526 pages
Edition 1st Edition
Languages
Author (1):
Christine Farion Christine Farion
Profile icon Christine Farion
Toc

Table of Contents (22) Chapters close

Preface 1. Part 1:Getting Started with Wearable Technology and Simple Circuits
2. Chapter 1: Introduction to the World of Wearables 3. Chapter 2: Understanding and Building Electronic Sewable Circuits 4. Chapter 3: Exploring e-textile Toolkits: LilyPad, Flora, Circuit Playground, and More 5. Chapter 4: Implementing Arduino Code Using Gemma M0 and Circuit Playground 6. Part 2:Creating Sewable Circuits That Sense and React Using Arduino and ESP32
7. Chapter 5: Working with Sensors: All About Inputs! 8. Chapter 6: Exploring Reactions Through Outputs 9. Chapter 7: Moving Forward with Circuit Design Using ESP32 10. Part 3:Learning to Prototype, Build, and Wear a Hyper-Body System
11. Chapter 8: Learning How to Prototype and Make Electronics Wearable 12. Chapter 9: Designing and Prototyping Your Own Hyper-Body System 13. Chapter 10: Soldering and Sewing to Complete Your Project 14. Part 4:Getting the Taste of Designing Your Own Culture-Driven Wearable and Beyond
15. Chapter 11: Innovating, with a Human-Centered Design Process 16. Chapter 12: Designing for Forgetfulness: A Case Study of Message Bag 17. Chapter 13: Implementing the Best Solutions for Creating Your Own Wearable 18. Chapter 14: Delving into Best Practices and the Future of Wearable Technology 19. Index 20. Other Books You May Enjoy Appendix: Answers and Additional Information

Summary

This chapter focused on creating a prototype for Message Bag, an informed wearable that follows a Design Innovation process. It aimed to help guide you in the process and create a near-body system. We started by revisiting our sewing skills and sewed the NeoPixels onto a bag with conductive thread. We used a new circuit board, the QT Py SAMD21, and it was chosen based on its capabilities, versatility, size, and price. We soldered the board to a charge board and then breadboarded it. We worked iteratively on the circuit (by adding one function and component at a time) to test it. We learned about the RFID reader and its capabilities. After completing this wearable implementation prototype, when we test and evaluate it, we see there are improvements and iterations that could be made. This is part of the process that should happen with all wearables you make.

As we look ahead to the next chapter, it is these iterations that we will focus on, and we will have another chance...

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