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Design of Analog Cmos Integrated Cir
In the past two decades, CMOS technology has rapidly embraced the field of analog inte-
grated circuits, providing low-cost, high-performance solutions and rising to dominate the
market. While silicon bipolar and III-V devices still find niche applications, only CMOS
processes have emerged as a viable choice for the integration of... | | Power Management of Digital Circuits in Deep Sub-Micron CMOS TechnologiesIn the deep sub-micron regime, the power consumption has become one of the most important issues for competitive design of digital circuits. Due to dramatically increasing leakage currents, the power consumption does not take advantage of technology scaling as before. State-of-art power reduction techniques like the use of multiple supply and... | | System Integration: From Transistor Design to Large Scale Integrated CircuitsThe development of large-scale integrated systems-on-a-chip has had a dramatic effect on circuit design methodology. Escalating requirements for low-power, high-chip density circuits and systems have resulted in increasingly complex Bipolar, CMOS and BICMOS technologies. In order to design cost-effective and reliable systems a thorough... |
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Hybrid CMOS Single-Electron-Transistor Device And Circuit DesignCMOS (complementary metal oxide semiconductor) is a widely accepted and utilized technology among electrical engineers involved with circuit design. SET (single electron transistor) technology has recently gained significant attention, because it can be combined with CMOSs to improve overall performance of integrated circuits - reducing power... | | Advanced CMOS Cell Design (Professional Engineering)Our fi rst book, Basics of CMOS Cell Design, covered integrated circuit technology scale down, the MOS device model, layout and performance perspectives. It also included an extensive study of basic gates, interconnect and analog cells. We introduced basic cell design and simulation using user-friendly educational tools, Microwind and Dsch,... | | Silicon NanoelectronicsBecause the silicon process infrastructure is already in place and because of silicon's compatibility with current CMOS circuits, silicon nanodevices are positioned to become particularly important. Silicon Nanoelectronics examines recent developments of novel devices and materials that hold great promise for creating smaller and more powerful... |
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