A fully integrated SRAM-based CMOS arbitrary waveform generator for analog signal processing
by Song, Tae Joong, Ph.D., GEORGIA INSTITUTE OF TECHNOLOGY, 2010, 126 pages; 3425148

Abstract:

This dissertation focuses on design and implementation of a fully-integrated SRAM-based arbitrary waveform generator for analog signal processing applications in a CMOS technology. The dissertation consists of two parts: Firstly, a fully-integrated arbitrary waveform generator for a multi-resolution spectrum sensing of a cognitive radio applications, and an analog matched-filter for a radar application and secondly, low-power techniques for an arbitrary waveform generator. The fully-integrated low-power AWG is implemented and measured in a 0.18-μm CMOS technology. Theoretical analysis is performed, and the perspective implementation issues are mentioned comparing the measurement results. Moreover, the low-power techniques of SRAM are addressed for the analog signal processing: Self-deactivated data-transition bit scheme, diode-connected low-swing signaling scheme with a short-current reduction buffer, and charge-recycling with a push-pull level converter for power reduction of asynchronous design. Especially, the robust latch-type sense amplifier using an adaptive-latch resistance and fully-gated ground 10T-SRAM bitcell in a 45-nm SOI technology would be used as a technique to overcome the challenges in the upcoming deep-submicron technologies.

 
AdviserJongman Kim
SchoolGEORGIA INSTITUTE OF TECHNOLOGY
SourceDAI/B 71-10, p. , Oct 2010
Source TypeDissertation
SubjectsElectrical engineering
Publication Number3425148
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