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020 _a9783319556338
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020 _z3319556320
020 _z9783319556321
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050 4 _aTK9966
_b.T757 2017 EB
100 1 _aTsirimokou, Georgia,
_eautor
245 1 0 _aDesign of CMOS analog integrated fractional-order circuits :
_bapplications in medicine and biology
_cGeorgia Tsirimokou, Costas Psychalinos, Ahmed Elwakil.
246 3 _aDesign of complementary metal-oxide-semiconductor analog integrated fractional-order circuits
264 1 _aCham, Switzerland
_bSpringer
_c[2017]
264 4 _c2017
300 _a1 recurso en línea
_bilustraciones
336 _aTexto
_btxt
_2rdacontent
337 _aelectrónico
_bc
_2rdamedia
338 _arecurso electrónico
_bcr
_2rdacarrier
347 _atext file
_bPDF
_2rda
490 0 _aSpringerBriefs in electrical and computer engineering
500 _aSpringerLink
_bSpringer Engineering eBooks 2017 English+International
504 _aIncluye referencias bibliográficas
505 0 _aChapter1. Introduction -- Chapter2. Procedure for designing fractional-order filters -- Chapter3. Current-mode fractional-order filters -- Chapter4. Voltage-mode fractional-order filters -- Chapter5. Emulation of fractional-order capacitors (CPEs) and inductors (FOIs) -- Chapter6. Applications of fractional-order circuits -- Chapter7. Conclusions and motivation for future work.
520 3 _aThis book describes the design and realization of analog fractional-order circuits, which are suitable for on-chip implementation, capable of low-voltage operation and electronic adjustment of their characteristics. The authors provide a brief introduction to fractional-order calculus, followed by design issues for fractional-order circuits of various orders and types. The benefits of this approach are demonstrated with current-mode and voltage-mode filter designs. Electronically tunable emulators of fractional-order capacitors and inductors are presented, where the behavior of the corresponding chips fabricated using the AMS 0.35um CMOS process has been experimentally verified. Applications of fractional-order circuits are demonstrated, including a pre-processing stage suitable for the implementation of the Pan-Tompkins algorithm for detecting the QRS complexes of an electrocardiogram (ECG), a fully tunable implementation of the Cole-Cole model used for the modeling of biological tissues, and a simple, non-impedance based measuring technique for super-capacitors. Discusses systematic design methods for deriving fractional-order circuits, including filters of arbitrary type and order, as well as tunable emulators of fractional-order capacitors and inductors; Demonstrates fractional-order circuits (e.g. filters and component emulators) which are suitable for implementation in silicon, with electronic adjustable characteristics and, also, experimental verification of their behavior; Describes applications of fractional-order fully integrated circuits in biology and medicine through practical design examples.
650 7 _aCálculo fraccionario
_2embne
_0(OCoLC)fst00933515
_0
_9162291
700 1 _aElwakil, Ahmed,
_eautor
700 1 _aPsychalinos, Costas,
_eautor
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=http://link.springer.com/10.1007/978-3-319-55633-8
_zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
988 _aEBOOK, asignarmaterias, EBSPRINGER_2017C
998 _b02/2018
_dz
_e-
_zSI
999 _c95816
_d95816
_x1