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Titlebook: CMOS Circuits for Electromagnetic Vibration Transducers; Interfaces for Ultra Dominic Maurath,Yiannos Manoli Book 2015 Springer Science+Bus

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Martin L. Panchula,Jackie Y. YingThis introduction starts off with an overview about the beneficial application perspectives when using micro-scale sensor systems. It is found that beside the front-end devices an efficient and smart infrastructure is crucial. Beside communication, this infrastructure comprises the energy supply and
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https://doi.org/10.1007/978-94-011-5002-6erefore, this Chapter starts with introducing general terms of transducer interface operation and the power processing chain in Sect. .. There, also a further overview of a power processing and conditioning chain is given and basic evaluation metrics are defined. Thereafter, the electromagnetic vibr
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Physical Chemistry of Intercalated System,ages, while consuming only little power. In order to improve the feasibility and efficiency of such systems new concepts and innovations in the field of analog circuit design are mandatory. Therefore, the design emphasis is always on energy-efficient low-voltage operation with a sufficient PVT robus
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Kyriakos Porfyrakis,Jamie H. Warnerncy and low voltage drops over a wide voltage range. Furthermore, it is addressed how to compensate the high impedance of the used transducers. Both, a full-wave rectifier, as well as a Delon voltage doubler circuit are realized with active diodes. Measurement results show high efficiencies over a w
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https://doi.org/10.1007/978-3-642-22227-6ut-of-phase toggled flying capacitor arrays are used to realize the POPoC-window based continuous fractional voltage tracking (FVT). The design of this prototype chip has two major intentions: testing an on-chip realization of the introduced POPoC-based continuous tracking method as a proof of conce
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