Description: Toward Inertial-Navigation-on-Chip by Haoran Wen Estimated delivery 3-12 business days Format Hardcover Condition Brand New Description This thesis develops next-generation multi-degree-of-freedom gyroscopes and inertial measurement units (IMU) using micro-electromechanical-systems (MEMS) technology. It covers both a comprehensive study of the physics of resonator gyroscopes and novel micro/nano-fabrication solutions to key performance limits in MEMS resonator gyroscopes. Publisher Description This thesis develops next-generation multi-degree-of-freedom gyroscopes and inertial measurement units (IMU) using micro-electromechanical-systems (MEMS) technology. It covers both a comprehensive study of the physics of resonator gyroscopes and novel micro/nano-fabrication solutions to key performance limits in MEMS resonator gyroscopes. Firstly, theoretical and experimental studies of physical phenomena including mode localization, nonlinear behavior, and energy dissipation provide new insights into challenges like quadrature errors and flicker noise in resonator gyroscope systems. Secondly, advanced designs and micro/nano-fabrication methods developed in this work demonstrate valuable applications to a wide range of MEMS/NEMS devices. In particular, the HARPSS+ process platform established in this thesis features a novel slanted nano-gap transducer, which enabled the first wafer-level-packaged single-chip IMU prototype with co-fabricated high-frequency resonant triaxial gyroscopes and high-bandwidth triaxial micro-gravity accelerometers. This prototype demonstrates performance amongst the highest to date, with unmatched robustness and potential for flexible substrate integration and ultra-low-power operation. This thesis shows a path toward future low-power IMU-based applications including wearable inertial sensors, health informatics, and personal inertial navigation. Author Biography Haoran Wen is a research engineer in the School of Electrical and Computer Engineering at Georgia Tech. He received his PhD from Georgia Tech in 2018. Details ISBN 3030254690 ISBN-13 9783030254698 Title Toward Inertial-Navigation-on-Chip Author Haoran Wen Format Hardcover Year 2019 Pages 127 Edition 1st Publisher Springer Nature Switzerland AG GE_Item_ID:140424288; About Us Grand Eagle Retail is the ideal place for all your shopping needs! With fast shipping, low prices, friendly service and over 1,000,000 in stock items - you're bound to find what you want, at a price you'll love! Shipping & Delivery Times Shipping is FREE to any address in USA. Please view eBay estimated delivery times at the top of the listing. Deliveries are made by either USPS or Courier. We are unable to deliver faster than stated. International deliveries will take 1-6 weeks. NOTE: We are unable to offer combined shipping for multiple items purchased. This is because our items are shipped from different locations. Returns If you wish to return an item, please consult our Returns Policy as below: Please contact Customer Services and request "Return Authorisation" before you send your item back to us. Unauthorised returns will not be accepted. Returns must be postmarked within 4 business days of authorisation and must be in resellable condition. Returns are shipped at the customer's risk. We cannot take responsibility for items which are lost or damaged in transit. For purchases where a shipping charge was paid, there will be no refund of the original shipping charge. Additional Questions If you have any questions please feel free to Contact Us. Categories Baby Books Electronics Fashion Games Health & Beauty Home, Garden & Pets Movies Music Sports & Outdoors Toys
Price: 178.52 USD
Location: Fairfield, Ohio
End Time: 2025-01-23T03:52:14.000Z
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ISBN-13: 9783030254698
Type: NA
Publication Name: NA
Book Title: Toward Inertial-Navigation-On-Chip : The Physics and Performance Scaling of Multi-Degree-Of-Freedom Resonant MEMS Gyroscopes
Number of Pages: Xiii, 127 Pages
Language: English
Publisher: Springer International Publishing A&G
Topic: Measurement, Physics / Condensed Matter, Nanotechnology & Mems
Publication Year: 2019
Illustrator: Yes
Genre: Technology & Engineering, Science
Item Weight: 16 Oz
Item Length: 9.3 in
Author: Haoran Wen
Item Width: 6.1 in
Book Series: Springer Theses Ser.
Format: Hardcover