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The book is divided into three sections: devices and technology for magnetic sensing, industrial applications (automotive/navigation), and emerging applications. It covers transmission speed sensor ICs, dynamic differential Hall ICs, chopped Hall switches, programmable linear output Hall sensors, low power Hall ICs, and electromagnetic levitation.
The book presents information written by international experts in the field of Systems on Chip (SoC) Coupling, including substrate and interconnect magnetic crosstalk, 2D and 3D circuits noise coupling, and TSV and simulation. It enables the reader to analyze crosstalk noise propagating through the parasitics interconnect and package and the PCB.
Sensor technologies and applications are evolving rapidly driven by the demand for new sensors for monitoring and diagnostic purposes to improve human health and safety. The book reviews the latest developments in sensor technology and gives the reader an overview of the state-of-the-art in key areas, such as sensors for diagnostics and monitoring.
This book explores up-to-date research trends and achievements on low-power and high-speed technologies in both electronics and optics. It offers unique insight into low-power and high-speed approaches ranging from devices, ICs, sub-systems and networks that can be exploited for future mobile devices, 5G networks, and Internet of Things (IoT).
The first portion of the book is on the algorithms. The second portion of the book is about applications, covering some of the major areas like computational imaging, medical imaging, biomedical signal processing and machine learning. The concentration of this book is on algorithms and applications.
The book puts emphasis on sensor materials, detector structures, front electronics technology and their designs as well as system optimization for different applications. Also, it includes characterization measurements of the developed detection systems.
This volume presents specific applications of the detection systems in medical imaging, industrial testing and security applications. These newely developed technologies start to play a vital role in the detection, diagnosis and tratment of major human diseases.
Compressed Sensing (CS) in theory deals with the problem of recovering a sparse signal from an under-determined system of linear equations. The topic is of immense practical significance since all naturally occurring signals can be sparsely represented in some domain. In recent years, CS has helped reduce scan time in Magnetic Resonance Imaging (making scans more feasible for pediatric and geriatric subjects) and has also helped reduce the health hazard in X-Ray Computed CT. This book is a valuable resource suitable for an engineering student in signal processing and requires a basic understanding of signal processing and linear algebra.Covers fundamental concepts of compressed sensingMakes subject matter accessible for engineers of various levelsFocuses on algorithms including group-sparsity and row-sparsity, as well as applications to computational imaging, medical imaging, biomedical signal processing, and machine learningIncludes MATLAB examples for further development
This introductory, yet in-depth, book explains the physical principles of electronic imaging and sensing and provides the reader with the information necessary to understand the design, operation, and practical applications of contemporary electronic imaging and sensing systems. The text has strong practical focus and contains examples of biomedical applications of optical electronic imaging and sensing. Each chapter draws upon the authors' extensive research, teaching, and industrial experience and provides a useful resource for undergraduate and graduate students, as well as a convenient reference for scientists and engineers working in the field of electronic imaging and sensing.
Coherent scattering mechanism forms a basis of the x-ray diffraction imaging that is a subject of this book. The x-ray diffraction technology and its various applications in medical, industrial and security fields are also covered.
The goal of this book is to provide an understanding of the latest challenges and issues in 3D integration. The term 3D integration includes a variety of integration methods, such as 2.5-dimensional (2.5D) interposer-based integration, 3D integrated circuits (3D ICs), 3D systems-in-package (SiP), 3D heterogeneous integration, and monolithic 3D I
This book provides a single source for state-of-the-art information on analog electronics for the readout of radiation detectors. Featuring chapters written by international experts in their respective fields, the text defines the main design parameters of front-end circuitry developed in microelectronics technologies, explains the basis for the use of CMOS image sensors for the detection of charged particles, and describes digital pulse-processing techniques complementary to analog processing. The chapters address a variety of technologies, from analog-to-digital converters, time-to-digital converters, and silicon photomultipliers to 3D interconnects.
Circuits and Systems for Security and Privacy begins by introducing the basic theoretical concepts and arithmetic used in algorithms for security and cryptography, and by reviewing the fundamental building blocks of cryptographic systems. It then analyzes the advantages and disadvantages of real-world implementations that not only optimize power, area, and throughput but also resist side-channel attacks. Merging the perspectives of experts from industry and academia, the book provides valuable insight and necessary background for the design of security-aware circuits and systems as well as efficient accelerators used in security applications.
This modern book discusses integrated circuit design in the context of mixed-signal applications. Featuring chapters authored by leading experts from industry and academia, the text demonstrates advanced design techniques that enable digital circuits and sensitive analog circuits to coexist without any compromise. It covers signal integrity and
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