This book presents the technological basics and applications of small-scale (mm to sub-mm in length-scales) soft robots and devices, written for researchers in both academia and industry. Author Jaeyoun Kim presents technological motivations, enabling factors, and examples in an inter-linked fashion, making it easy for readers to understand and explore how microscale soft robots are a solution to researchers in search of technological platforms for safe, human-friendly biomedical devices.
A compact and timely introduction, this book summarizes not only the enabling factors for soft robots and MEMS devices, but also provides a survey of progress in the field and looks to the future in terms of the material, design, and application aspects this technology demonstrates.
| ISBN: | 9783319502854 |
| Publication date: | 27th December 2016 |
| Author: | Jaeyoun Jay Kim |
| Publisher: | Springer an imprint of Springer International Publishing |
| Format: | Paperback |
| Pagination: | 107 pages |
| Series: | SpringerBriefs in Applied Sciences and Technology |
| Genres: |
Electronics engineering Automatic control engineering Biomedical engineering |
This book presents the technological basics and applications of small-scale (mm to sub-mm in length-scales) soft robots and devices, written for researchers in both academia and industry. Author Jaeyoun Kim presents technological motivations, enabling factors, and examples in an inter-linked fashion, making it easy for readers to understand and explore how microscale soft robots are a solution to researchers in search of technological platforms for safe, human-friendly biomedical devices.
Microscale Soft Robotics features in the following genres: Electronics engineering, Automatic control engineering, Biomedical engineering
Paperback. Not Available.
Microscale Soft Robotics was written by Jaeyoun Jay Kim and published by Springer an imprint of Springer International Publishing
Microscale Soft Robotics has 107 pages
Yes it is part of SpringerBriefs in Applied Sciences and Technology series