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Simultaneous Multi-Pollutants Removal in Flue Gas by Ozone (Hardcover, 1st ed. 2014): Zhihua Wang, Kefa Cen, Junhu Zhou,... Simultaneous Multi-Pollutants Removal in Flue Gas by Ozone (Hardcover, 1st ed. 2014)
Zhihua Wang, Kefa Cen, Junhu Zhou, Jianren Fan
R1,802 R1,629 Discovery Miles 16 290 Save R173 (10%) Ships in 10 - 15 working days

Simultaneous Multi-Pollutants Removal in Flue Gas by Ozone mainly introduces the multi-pollution control technology in flue gas by ozone oxidation. Based on the authors' recent research works, the book will provide readers with the updated fundamental research findings, comprised of the detail kinetic mechanisms between ozone and gas components in flue gas integrated with experimental and kinetic modeling work. The demonstration case of the multi-pollutant removal technology by ozone is also presented. The book is suitable for the researchers working in the areas of energy and environmental protection, and pollutant control technology. Zhihua Wang is a Professor at the State Key Laboratory of Clean Energy Utilization of Zhejiang University; Kefa Cen is the Academician of Chinese Academy of Engineering, and the director of Institute for Thermal Power Engineering of Zhejiang University; Junhu Zhou is a Qiushi Scholar Professor at the State Key Laboratory of Clean Energy Utilization of Zhejiang University; Jianren Fan is the Cheung Kong Scholar Professor at the State Key Laboratory of Clean Energy Utilization of Zhejiang University.

Ultra-Low Power Integrated Circuit Design - Circuits, Systems, and Applications (Hardcover, 2012): Nianxiong Nick Tan, Dongmei... Ultra-Low Power Integrated Circuit Design - Circuits, Systems, and Applications (Hardcover, 2012)
Nianxiong Nick Tan, Dongmei Li, Zhihua Wang
R3,790 R2,997 Discovery Miles 29 970 Save R793 (21%) Ships in 10 - 15 working days

This book describes the design of CMOS circuits for ultra-low power consumption including analog, radio frequency (RF), and digital signal processing circuits (DSP). The book addresses issues from circuit and system design to production design, and applies the ultra-low power circuits described to systems for digital hearing aids and capsule endoscope devices. Provides a valuable introduction to ultra-low power circuit design, aimed at practicing design engineers; Describes all key building blocks of ultra-low power circuits, from a systems perspective; Applies circuits and systems described to real product examples such as hearing aids and capsule endoscopes.

Wireless Power Transfer for Medical Microsystems (Hardcover, 2013 ed.): Tianjia Sun, Xiang Xie, Zhihua Wang Wireless Power Transfer for Medical Microsystems (Hardcover, 2013 ed.)
Tianjia Sun, Xiang Xie, Zhihua Wang
R3,248 R2,578 Discovery Miles 25 780 Save R670 (21%) Ships in 10 - 15 working days

This book provides an in-depth introduction to the newest technologies for designing wireless power transfer systems for medical applications. The authors present a systematic classification of the various types of wireless power transfer, with a focus on inductive power coupling. Readers will learn to overcome many challenges faced in the design a wirelessly powered implant, such as power transfer efficiency, power stability, and the size of power antennas and circuits. This book focuses exclusively on medical applications of the technology and a batteryless capsule endoscopy system and other, real wirelessly powered systems are used as examples of the techniques described.

High-Resolution and High-Speed Integrated CMOS AD Converters for Low-Power Applications (Hardcover, 1st ed. 2018): Weitao Li,... High-Resolution and High-Speed Integrated CMOS AD Converters for Low-Power Applications (Hardcover, 1st ed. 2018)
Weitao Li, Fule Li, Zhihua Wang
R2,993 R2,498 Discovery Miles 24 980 Save R495 (17%) Ships in 10 - 15 working days

This book is a step-by-step tutorial on how to design a low-power, high-resolution (not less than 12 bit), and high-speed (not less than 200 MSps) integrated CMOS analog-to-digital (AD) converter, to respond to the challenge from the rapid growth of IoT. The discussion includes design techniques on both the system level and the circuit block level. In the architecture level, the power-efficient pipelined AD converter, the hybrid AD converter and the time-interleaved AD converter are described. In the circuit block level, the reference voltage buffer, the opamp, the comparator, and the calibration are presented. Readers designing low-power and high-performance AD converters won't want to miss this invaluable reference. Provides an in-depth introduction to the newest design techniques for the power-efficient, high-resolution (not less than 12 bit), and high-speed (not less than 200 MSps) AD converter; Presents three types of power-efficient architectures of the high-resolution and high-speed AD converter; Discusses the relevant circuit blocks (i.e., the reference voltage buffer, the opamp, and the comparator) in two aspects, relaxing the requirements and improving the performance.

Low Power Circuit Design Using Advanced CMOS Technology (Hardcover): Milin Zhang, Zhihua Wang, Jan Van der Spiegel, Franco... Low Power Circuit Design Using Advanced CMOS Technology (Hardcover)
Milin Zhang, Zhihua Wang, Jan Van der Spiegel, Franco Maloberti
R2,467 Discovery Miles 24 670 Ships in 7 - 11 working days

Low Power Circuit Design Using Advanced CMOS Technology is a summary of lectures from the first Advanced CMOS Technology Summer School (ACTS) 2017. The slides are selected from the handouts, while the text was edited according to the lecturers talk. ACTS is a joint activity supported by the IEEE Circuit and System Society (CASS) and the IEEE Solid-State Circuits Society (SSCS). The goal of the school is to provide society members as well researchers and engineers from industry the opportunity to learn about new emerging areas from leading experts in the field. ACTS is an example of high-level continuous education for junior engineers, teachers in academe, and students. ACTS was the results of a successful collaboration between societies, the local chapter leaders, and industry leaders. This summer school was the brainchild of Dr. Zhihua Wang, with strong support from volunteers from both the IEEE SSCS and CASS. In addition, the local companies, Synopsys China and Beijing IC Park, provided support. This first ACTS was held in the summer 2017 in Beijing. The lectures were given by academic researchers and industry experts, who presented each 6-hour long lectures on topics covering process technology, EDA skill, and circuit and layout design skills. The school was hosted and organized by the CASS Beijing Chapter, SSCS Beijing Chapter, and SSCS Tsinghua Student Chapter. The co-chairs of the first ACTS were Dr. Milin Zhang, Dr. Hanjun Jiang and Dr. Liyuan Liu. The first ACTS was a great success as illustrated by the many participants from all over China as well as by the publicity it has been received in various media outlets, including Xinhua News, one of the most popular news channels in China.

Ultra-Low Power Integrated Circuit Design - Circuits, Systems, and Applications (Paperback, Softcover reprint of the original... Ultra-Low Power Integrated Circuit Design - Circuits, Systems, and Applications (Paperback, Softcover reprint of the original 1st ed. 2014)
Nianxiong Nick Tan, Dongmei Li, Zhihua Wang
R2,793 Discovery Miles 27 930 Ships in 7 - 11 working days

This book describes the design of CMOS circuits for ultra-low power consumption including analog, radio frequency (RF), and digital signal processing circuits (DSP). The book addresses issues from circuit and system design to production design, and applies the ultra-low power circuits described to systems for digital hearing aids and capsule endoscope devices. Provides a valuable introduction to ultra-low power circuit design, aimed at practicing design engineers; Describes all key building blocks of ultra-low power circuits, from a systems perspective; Applies circuits and systems described to real product examples such as hearing aids and capsule endoscopes.

Wireless Power Transfer for Medical Microsystems (Paperback, 2013 ed.): Tianjia Sun, Xiang Xie, Zhihua Wang Wireless Power Transfer for Medical Microsystems (Paperback, 2013 ed.)
Tianjia Sun, Xiang Xie, Zhihua Wang
R2,738 Discovery Miles 27 380 Ships in 7 - 11 working days

This book provides an in-depth introduction to the newest technologies for designing wireless power transfer systems for medical applications. The authors present a systematic classification of the various types of wireless power transfer, with a focus on inductive power coupling. Readers will learn to overcome many challenges faced in the design a wirelessly powered implant, such as power transfer efficiency, power stability, and the size of power antennas and circuits. This book focuses exclusively on medical applications of the technology and a batteryless capsule endoscopy system and other, real wirelessly powered systems are used as examples of the techniques described.

CMOS IC Design for Wireless Medical and Health Care (Hardcover, 2014 ed.): Zhihua Wang, Hanjun Jiang, Hong Chen CMOS IC Design for Wireless Medical and Health Care (Hardcover, 2014 ed.)
Zhihua Wang, Hanjun Jiang, Hong Chen
R3,024 R2,531 Discovery Miles 25 310 Save R493 (16%) Ships in 10 - 15 working days

This book provides readers with detailed explanation of the design principles of CMOS integrated circuits for wireless medical and health care, from the perspective of two successfully-commercialized applications. Design techniques for both the circuit block level and the system level are discussed, based on real design examples. CMOS IC design techniques for the entire signal chain of wireless medical and health care systems are covered, including biomedical signal acquisition, wireless transceivers, power management and SoC integration, with emphasis on ultra-low-power IC design techniques.

High-Resolution and High-Speed Integrated CMOS AD Converters for Low-Power Applications (Paperback, Softcover reprint of the... High-Resolution and High-Speed Integrated CMOS AD Converters for Low-Power Applications (Paperback, Softcover reprint of the original 1st ed. 2018)
Weitao Li, Fule Li, Zhihua Wang
R2,373 Discovery Miles 23 730 Out of stock

This book is a step-by-step tutorial on how to design a low-power, high-resolution (not less than 12 bit), and high-speed (not less than 200 MSps) integrated CMOS analog-to-digital (AD) converter, to respond to the challenge from the rapid growth of IoT. The discussion includes design techniques on both the system level and the circuit block level. In the architecture level, the power-efficient pipelined AD converter, the hybrid AD converter and the time-interleaved AD converter are described. In the circuit block level, the reference voltage buffer, the opamp, the comparator, and the calibration are presented. Readers designing low-power and high-performance AD converters won't want to miss this invaluable reference. Provides an in-depth introduction to the newest design techniques for the power-efficient, high-resolution (not less than 12 bit), and high-speed (not less than 200 MSps) AD converter; Presents three types of power-efficient architectures of the high-resolution and high-speed AD converter; Discusses the relevant circuit blocks (i.e., the reference voltage buffer, the opamp, and the comparator) in two aspects, relaxing the requirements and improving the performance.

CMOS IC Design for Wireless Medical and Health Care (Paperback, Softcover reprint of the original 1st ed. 2014): Zhihua Wang,... CMOS IC Design for Wireless Medical and Health Care (Paperback, Softcover reprint of the original 1st ed. 2014)
Zhihua Wang, Hanjun Jiang, Hong Chen
R2,561 Discovery Miles 25 610 Out of stock

This book provides readers with detailed explanation of the design principles of CMOS integrated circuits for wireless medical and health care, from the perspective of two successfully-commercialized applications. Design techniques for both the circuit block level and the system level are discussed, based on real design examples. CMOS IC design techniques for the entire signal chain of wireless medical and health care systems are covered, including biomedical signal acquisition, wireless transceivers, power management and SoC integration, with emphasis on ultra-low-power IC design techniques.

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