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Titlebook: Wireless Power Transfer and Data Communication for Neural Implants; Case Study: Epilepsy Gürkan Yilmaz,Catherine Dehollain Book 2017 Spring

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Wireless Power Transfer and Data Communication for Neural Implants978-3-319-49337-4Series ISSN 1872-082X Series E-ISSN 2197-1854
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https://doi.org/10.1007/978-3-319-49337-4Ultra Low Power Bioelectronics; implantable biomedical microsystem; implantable bio-MEMS; implantable b
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System Overview,s given in terms of functional blocks and the methods anticipated to be used for implementation. Next, a brief explanation of each function is presented while leaving the detailed analysis for following chapters. Moreover, a summary of the system specifications is given in order to complete the system-level idea.
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Book 2017e, power consumption, and data rate. In addition to theoretical background which explains the relevant technical challenges, the authors provide practical, step-by-step solutions to these problems. Readers will gain understanding of the numerical values in such a system, enabling projections for feasibility of new projects.          .
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Wireless Power Transfer,ransfer efficiency and less dependence of power transfer efficiency on load impedance. Detailed explanation of the 4-coil resonant inductive link is followed by the design of electronic circuits utilized to create a reliable power supply in the implant. This unit consists of an active half-wave rectifier and a low drop-out voltage regulator.
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