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Titlebook: Enabling the Internet of Things; From Integrated Circ Massimo Alioto Book 2017 Springer International Publishing AG 2017 Embedded Computer

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Ultra-Low Power Analog Interfaces for IoT,ergy constraint in IoT means the circuit specification must take into account the energy-efficient operation. Also, at the same constraint, the dynamic and static offset/noise compensation should be done effectively.
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Ultra-Low Power Analog-Digital Converters for IoT,re also required for the radio communication channel. This chapter focusses on successive approximation (SAR) ADCs, a popular architecture for IoT thanks to their high power-efficiency. After deriving requirements for IoT, the design basics of SAR ADCs are discussed, followed by various design examp
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Ferro-Electric RAM Based Microcontrollers: Ultra-Low Power Intelligence for the Internet of Things,ta memory, serial communication interfaces, general purpose IO (GPIOs) ports, comparators and ADCs, clock generation and power regulators. Microcontrollers have modest clock frequencies and memory capacities, keeping the IC cost low. High level of integration helps improves performance, lowers power
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,Die Bleicherei und Färberei der Wolle, order to maximize the system energy efficiency, keeping the cost of the solution under control. We also review the pairing and registration operations and detail the security requirements as well as the impact of security on the energy efficiency and the cost of the solution.
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Allgemeine Krankenuntersuchung,de a review of the state of the art Ultra-Low-Power (ULP) micro-controllers architecture, highlighting main challenges and perspectives, introducing the potential of exploiting parallelism in this field currently dominated by single issue processors.
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Einige Untersuchungen an Lebenden,. It discusses memory design for wide voltage range operation using 6 Transistor (6T), 8T and 10T bitcells and novel circuit assist techniques. In addition, it discusses future memory designs using emerging nano-wire FET, Tunnel FET, III-V FET, and monolithic 3-D technologies.
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https://doi.org/10.1007/978-3-662-25160-7 NVM technologies have been introduced, including Flash, OTP/MTP, resistive RAM, and phase-change memory (PCM). In the following, we examine some of the challenges in the design of circuits used for read and write operations. Future trends in ultra-low-power NVM are also discussed.
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