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Titlebook: Dynamic Translinear and Log-Domain Circuits; Analysis and Synthes Jan Mulder,Wouter A. Serdijn,Arthur H. M. Roermund Book 1999 Springer Sci

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Conclusions,, next to the static transfer functions, both linear and non-linear, facilitated by conventional’ static TransLinear’ (STL) technology, a wide variety of frequencydependent (transfer) functions can be realised. The resulting class of ‘Dynamic TransLinear’ (DTL) circuits implements differential equat
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The Springer International Series in Engineering and Computer Sciencehttp://image.papertrans.cn/e/image/283798.jpg
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Dynamic Translinear and Log-Domain Circuits978-1-4615-4955-0Series ISSN 0893-3405
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Forschungslandschaft und Fragestellungenly restricts the maximum dynamic range achievable using conventional filter implementation techniques, such as opamp-MOSFET-., transconductance-. and switched-capacitor. In ultra-low-power environments, linear resistors become too large for on-chip integration. The situation is even further complica
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Forschungslandschaft und Fragestellungenpter discusses the design principles that are fundamental to the realisation of companding signal processors. In Section 2.1, an abstract approach is pursued to describe the general principle of distortionless companding. At a less abstract level, Sections 2.2 and 2.3 are geared toward the inherent
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Forschungslandschaft und Fragestellungenquisite for structured electronic design. This chapter therefore explores the possible analysis procedures that can be applied to investigate the behaviour of Static TransLinear (STL) and Dynamic TransLinear (DTL) circuits, before synthesis methodologies are surveyed in Chapter 4.
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