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Titlebook: Design of Low-Voltage CMOS Switched-Opamp Switched-Capacitor Systems; Vincent S. L. Cheung,Howard C. Luong Book 2003 Springer-Verlag US 20

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书目名称Design of Low-Voltage CMOS Switched-Opamp Switched-Capacitor Systems
编辑Vincent S. L. Cheung,Howard C. Luong
视频video
丛书名称The Springer International Series in Engineering and Computer Science
图书封面Titlebook: Design of Low-Voltage CMOS Switched-Opamp Switched-Capacitor Systems;  Vincent S. L. Cheung,Howard C. Luong Book 2003 Springer-Verlag US 20
描述.In .Design of Low-Voltage CMOS Switched-Opamp Switched-Capacitor Systems., the emphasis is put on the design and development of advanced switched-opamp architectures and techniques for low-voltage low-power switched-capacitor (SC) systems. Specifically, the book presents a novel multi-phase switched-opamp technique together with new system architectures that are critical in improving significantly the performance of switched-capacitor systems at low supply voltages: .*A generic fast-settling double-sampling SC biquadratic filter architecture is proposed to achieve high-speed operation for SC circuits. .*A low-voltage double-sampling (DS) finite-gain-compensation (FGC) technique is employed to realize high-resolution SD modulator using only low-DC-gain opamps to maximize the speed and to reduce power dissipation. .*A family of novel power-efficient SC filters and SD modulators are built based on using only half-delay SC integrators. .*Single-opamp-based SCsystems are designed for ultra-low-power applications. ..In addition, on the circuit level, a fast-switching methodology is proposed for the design of the switchable opamps to achieve switching frequency up to 50 MHz at 1V, which
出版日期Book 2003
关键词CMOS; Phase; Potential; Standard; communication; computer; development; electronics; filter; integrated circu
版次1
doihttps://doi.org/10.1007/978-1-4757-3701-1
isbn_softcover978-1-4419-5358-2
isbn_ebook978-1-4757-3701-1Series ISSN 0893-3405
issn_series 0893-3405
copyrightSpringer-Verlag US 2003
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Design of Low-Voltage CMOS Switched-Opamp Switched-Capacitor Systems978-1-4757-3701-1Series ISSN 0893-3405
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From Collective Beings to Quasi-Systemssigns could achieve far more significant and pronouncing performance improvements. This chapter begins with a brief review of the double-sampling technique, which has been one of the most useful techniques in boosting the operation speed of SC circuits by double without requesting higher opamps’ per
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Network Science as New Systemicsble opamp will be discussed. Due to the extra time required to turn on the switchable opamp, the operation speed of a switched-opamp circuit is slower than its switched-capacitor counterpart for a given current consumption. The fundamental turn-on time limit of a few switchable opamps reported in li
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