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Titlebook: Ultra-Low-Voltage Design of Energy-Efficient Digital Circuits; Nele Reynders,Wim Dehaene Book 2015 Springer International Publishing Switz

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JPEG Encoder, the focus of this book, a JPEG encoder is chosen as a representative DSP block to validate the design strategy which has been proposed in this book. The purpose of the JPEG encoder is to demonstrate that the proposed circuit and architectural techniques are generally applicable in any large and com
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Conclusion,MOS technologies. Another essential target of this research has been to design circuits which are able to operate at frequencies of . × 10 MHz. Furthermore, it is found to be imperative to achieve a high variation-resilience of these circuits in order to guarantee a high yield. Techniques on how to
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Book 2015me battery. The authors explain the energy-efficiency benefits that ultra-low-voltage circuits provide and provide answers to tackle the challenges which ultra-low-voltage operation poses. An innovative design methodology is presented, verified, and validated by four prototypes in advanced CMOS tech
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1872-082X esign, from gate-level up to architecture-level recommendatiThis book focuses on increasing the energy-efficiency of electronic devices so that portable applications can have a longer stand-alone time on the same battery. The authors explain the energy-efficiency benefits that ultra-low-voltage circ
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1872-082X fied, and validated by four prototypes in advanced CMOS technologies. These prototypes are shown to achieve high energy-efficiency through their successful functionality at ultra-low supply voltages.978-3-319-38608-9978-3-319-16136-5Series ISSN 1872-082X Series E-ISSN 2197-1854
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Conclusion,w of the conclusions which were reached throughout the book. Moreover, the obtained results of the prototypes are situated in the current state-of-the-art in literature. This chapter also presents the main contributions of this research. Finally, this book concludes by a look at future perspectives for follow-up research.
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