Ultra Low Power Frequency Synthesizer For Internet Of Things Applications In 28nm Fd Soi Technology PDF Download

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Ultra-Low Power Frequency Synthesizer For Internet-of-Things Applications In 28nm FD-SOI Technology

Ultra-Low Power Frequency Synthesizer For Internet-of-Things Applications In 28nm FD-SOI Technology
Author: David Gaidioz
Publisher:
Total Pages: 0
Release: 2021
Genre:
ISBN:

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More than twenty billion of connected devices are predicted in the coming years, the Internet-of-Things (IoT) is a common reality of our day-to-day lives. Concerning a connected object, two critical parameters have to be taken into account: the power consumption has to be minimized to increase the battery-operate lifetime, and the cost of the object has to be as low as possible to ensure a successful mass deployment.The frequency synthesis design is ruled by the same IoT challenges. Although today solutions provide a power consumption around ten mW, Ultra Lower Power (ULP) solutions are more and more targeted. Realized in the frame of the common laboratory between STMicroelectronics and IMS Laboratory, this CIFRE thesis Propose a new frequency synthesis circuit implemented in 28nm FD-SOI technology. The specifications of this alternative solution are drawn to reach optimum compromise in terms of power consumption, RF performances and silicon area.


Ultra-Low-Voltage Frequency Synthesizer and Successive-Approximation Analog-to-Digital Converter for Biomedical Applications

Ultra-Low-Voltage Frequency Synthesizer and Successive-Approximation Analog-to-Digital Converter for Biomedical Applications
Author: Chung-Chih Hung
Publisher: Springer Nature
Total Pages: 231
Release: 2021-12-07
Genre: Technology & Engineering
ISBN: 3030888452

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This book introduces the origin of biomedical signals and the operating principles behind them and introduces the characteristics of common biomedical signals for subsequent signal measurement and judgment. Since biomedical signals are captured by wearable devices, sensor devices, or implanted devices, these devices are all battery-powered to maintain long working time. We hope to reduce their power consumption to extend service life, especially for implantable devices, because battery replacement can only be done through surgery. Therefore, we must understand how to design low-power integrated circuits. Both implantable and in-vitro medical signal detectors require two basic components to collect and transmit biomedical signals: an analog-to-digital converter and a frequency synthesizer because these measured biomedical signals are wirelessly transmitted to the relevant receiving unit. The core unit of wireless transmission is the frequency synthesizer, which provides a wide frequency range and stable frequency to demonstrate the quality and performance of the wireless transmitter. Therefore, the basic operating principle and model of the frequency synthesizer are introduced. We also show design examples and measurement results of a low-power low-voltage integer-N frequency synthesizer for biomedical applications. The detection of biomedical signals needs to be converted into digital signals by an analog-to-digital converter to facilitate subsequent signal processing and recognition. Therefore, the operating principle of the analog-to-digital converter is introduced. We also show implementation examples and measurement results of low-power low-voltage analog-to-digital converters for biomedical applications.


Design Techniques for Ultra High Frequency Clock Generation in 28 Nm FDSOI Technology

Design Techniques for Ultra High Frequency Clock Generation in 28 Nm FDSOI Technology
Author: Hasene Gülperi Özsema
Publisher:
Total Pages:
Release: 2017
Genre:
ISBN:

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Mots-clés de l'autrice: FDSOI ; multi-phase oscillator ; body bias ; body tuning ; constant KVCO ; linear tuning ; multi-core oscillator ; VCO ; frequency synthesizer.


2021 IEEE Radio Frequency Integrated Circuits Symposium (RFIC)

2021 IEEE Radio Frequency Integrated Circuits Symposium (RFIC)
Author: IEEE Staff
Publisher:
Total Pages:
Release: 2021-06-07
Genre:
ISBN: 9781665430821

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RFIC is the premier IC Conference focused on the latest developments in RF Microwave, and Millimeter Wave Integrated Circuit Technology and Innovation


Radio-Frequency Integrated-Circuit Engineering

Radio-Frequency Integrated-Circuit Engineering
Author: Cam Nguyen
Publisher: John Wiley & Sons
Total Pages: 898
Release: 2015-03-03
Genre: Technology & Engineering
ISBN: 1118936485

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Radio-Frequency Integrated-Circuit Engineering addresses the theory, analysis and design of passive and active RFIC's using Si-based CMOS and Bi-CMOS technologies, and other non-silicon based technologies. The materials covered are self-contained and presented in such detail that allows readers with only undergraduate electrical engineering knowledge in EM, RF, and circuits to understand and design RFICs. Organized into sixteen chapters, blending analog and microwave engineering, Radio-Frequency Integrated-Circuit Engineering emphasizes the microwave engineering approach for RFICs. * Provides essential knowledge in EM and microwave engineering, passive and active RFICs, RFIC analysis and design techniques, and RF systems vital for RFIC students and engineers * Blends analog and microwave engineering approaches for RFIC design at high frequencies * Includes problems at the end of each chapter


The Design of CMOS Radio-Frequency Integrated Circuits

The Design of CMOS Radio-Frequency Integrated Circuits
Author: Thomas H. Lee
Publisher: Cambridge University Press
Total Pages: 232
Release: 2004
Genre: Computers
ISBN: 9780521835398

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This book, first published in 2004, is an expanded and revised edition of Tom Lee's acclaimed RFIC text.


Radiation Tolerant Electronics, Volume II

Radiation Tolerant Electronics, Volume II
Author: Paul LeRoux
Publisher: Mdpi AG
Total Pages: 0
Release: 2023-01-16
Genre: Technology & Engineering
ISBN: 9783036564456

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Research on radiation tolerant electronics has increased rapidly over the last few years, resulting in many interesting approaches to model radiation effects and design radiation hardened integrated circuits and embedded systems. This research is strongly driven by the growing need for radiation hardened electronics for space applications, high-energy physics experiments such as those on the large hadron collider at CERN, and many terrestrial nuclear applications, including nuclear energy and safety management. With the progressive scaling of integrated circuit technologies and the growing complexity of electronic systems, their ionizing radiation susceptibility has raised many exciting challenges, which are expected to drive research in the coming decade. After the success of the first Special Issue on Radiation Tolerant Electronics, the current Special Issue features thirteen articles highlighting recent breakthroughs in radiation tolerant integrated circuit design, fault tolerance in FPGAs, radiation effects in semiconductor materials and advanced IC technologies and modelling of radiation effects.


Advances in VLSI, Signal Processing, Power Electronics, IoT, Communication and Embedded Systems

Advances in VLSI, Signal Processing, Power Electronics, IoT, Communication and Embedded Systems
Author: Shubhakar Kalya
Publisher: Springer Nature
Total Pages: 457
Release: 2021-04-10
Genre: Technology & Engineering
ISBN: 9811604436

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This book comprises select peer-reviewed papers from the International Conference on VLSI, Signal Processing, Power Electronics, IoT, Communication and Embedded Systems (VSPICE-2020). The book provides insights into various aspects of the emerging fields in the areas Electronics and Communication Engineering as a holistic approach. The various topics covered in this book include VLSI, embedded systems, signal processing, communication, power electronics and internet of things. This book mainly focuses on the most recent innovations, trends, concerns and practical challenges and their solutions. This book will be useful for academicians, professionals and researchers in the area of electronics and communications and electrical engineering.


Micro and Nanoelectronics Devices, Circuits and Systems

Micro and Nanoelectronics Devices, Circuits and Systems
Author: Trupti Ranjan Lenka
Publisher: Springer Nature
Total Pages: 496
Release: 2021-09-09
Genre: Technology & Engineering
ISBN: 9811637679

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The book presents select proceedings of the International Conference on Micro and Nanoelectronics Devices, Circuits and Systems (MNDCS-2021). The volume includes cutting-edge research papers in the emerging fields of micro and nanoelectronics devices, circuits, and systems from experts working in these fields over the last decade. The book is a unique collection of chapters from different areas with a common theme and will be immensely useful to academic researchers and practitioners in the industry who work in this field.


Mobile Terminal Receiver Design

Mobile Terminal Receiver Design
Author: Sajal Kumar Das
Publisher: John Wiley & Sons
Total Pages: 374
Release: 2017-05-01
Genre: Technology & Engineering
ISBN: 111910730X

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MOBILE TERMINAL RECEIVER DESIGN MOBILE TERMINAL RECEIVER DESIGN LTE and LTE-Advanced India This all-in-one guide addresses the challenges of designing innovative mobile handset solutions that offer smaller size, low power consumption, low cost, and tremendous flexibility, with improved data rates and higher performance. Readers are introduced to mobile phone system architecture and its basic building blocks, different air interface standards and operating principles, before progressing to hardware anatomy, software and protocols, and circuits for legacy and next-generation smart phones, including various research areas in 4G and 5G systems. Mobile Terminal Receiver Design/p? ulliexplains basic working principles, system architecture and specification detailsof legacy and possible next-generation mobile systems, from principle to practiceto product; covers in detail RF transmitter and receiver blocks, digital baseband processingblocks, receiver and transmitter signal processing, protocol stack, AGC, AFC, ATC,power supply, clocking; features important topics like connectivity and application modules with differentdesign solutions for tradeoff exploration; discusses multi-RAT design requirements, key design attributes such as low powerconsumption, slim form factors, seamless I-RAT handover, sensitivity, and selectivity. It will help software, hardware, and radio frequency design engineers to understand the evolution of radio access technologies and to design competitive and innovative mobile solutions and devices. Graduates, postgraduate students, and researchers in mobile telecommunications disciplines will also find this book a handy reference.