Ultra Low Power FM UWB Transceivers for IoT is popular PDF and ePub book, written by Vladimir Kopta in 2022-09-01, it is a fantastic choice for those who relish reading online the Technology & Engineering genre. Let's immerse ourselves in this engaging Technology & Engineering book by exploring the summary and details provided below. Remember, Ultra Low Power FM UWB Transceivers for IoT can be Read Online from any device for your convenience.

Ultra Low Power FM UWB Transceivers for IoT Book PDF Summary

Over the past two decades we have witnessed the increasing popularity of the internet of things. The vision of billions of connected objects, able to interact with their environment, is the key driver directing the development of future communication devices. Today, power consumption as well as the cost and size of radios remain some of the key obstacles towards fulfilling this vision. Ultra-Low Power FM-UWB Transceivers for IoT presents the latest developments in the field of low power wireless communication. It promotes the FM-UWB modulation scheme as a candidate for short range communication in different IoT scenarios. The FM-UWB has the potential to provide exactly what is missing today. This spread spectrum technique enables significant reduction in transceiver complexity, making it smaller, cheaper and more energy efficient than most alternative options. The book provides an overview of both circuit-level and architectural techniques used in low power radio design, with a comprehensive study of state-of-the-art examples. It summarizes key theoretical aspects of FM-UWB with a glimpse at potential future research directions. Finally, it gives an insight into a full FM-UWB transceiver design, from system level specifications down to transistor level design, demonstrating the modern power reduction circuit techniques. Ultra-Low Power FM-UWB Transceivers for IoT is a perfect text and reference for engineers working in RF IC design and wireless communication, as well as academic staff and graduate students engaged in low power communication systems research.

Detail Book of Ultra Low Power FM UWB Transceivers for IoT PDF

Ultra Low Power FM UWB Transceivers for IoT
  • Author : Vladimir Kopta
  • Release : 01 September 2022
  • Publisher : CRC Press
  • ISBN : 9781000794496
  • Genre : Technology & Engineering
  • Total Page : 224 pages
  • Language : English
  • PDF File Size : 12,8 Mb

If you're still pondering over how to secure a PDF or EPUB version of the book Ultra Low Power FM UWB Transceivers for IoT by Vladimir Kopta, don't worry! All you have to do is click the 'Get Book' buttons below to kick off your Download or Read Online journey. Just a friendly reminder: we don't upload or host the files ourselves.

Get Book

Enabling the Internet of Things

Enabling the Internet of Things Author : Massimo Alioto
Publisher : Springer
File Size : 38,9 Mb
Get Book
This book offers the first comprehensive view on integrated circuit and system design for the Intern...

Ultra Low Power Integrated Circuit Design

Ultra Low Power Integrated Circuit Design Author : Nianxiong Nick Tan,Dongmei Li,Zhihua Wang
Publisher : Springer Science & Business Media
File Size : 9,5 Mb
Get Book
This book describes the design of CMOS circuits for ultra-low power consumption including analog, ra...

Body Sensor Networks

Body Sensor Networks Author : Guang-Zhong Yang
Publisher : Springer
File Size : 17,9 Mb
Get Book
The last decade has witnessed a rapid surge of interest in new sensing and monitoring devices for we...

Automatic Gain Control

Automatic Gain Control Author : Juan Pablo Alegre Pérez,Santiago Celma Pueyo,Belén Calvo López
Publisher : Springer Science & Business Media
File Size : 34,8 Mb
Get Book
This book analyzes automatic gain control (AGC) loop circuits and demonstrates AGC solutions in the ...

OPNET IoT Simulation

OPNET IoT Simulation Author : Min Chen,Yiming Miao,Iztok Humar
Publisher : Springer Nature
File Size : 52,9 Mb
Get Book
This is the first book offering an in-depth and comprehensive IoT network simulation, supported by O...