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Titlebook: BiCMOS Technology and Applications; A. R. Alvarez Book 1990 Springer Science+Business Media New York 1990 CMOS.VLSI.analog.circuit.design.

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發(fā)表于 2025-3-21 17:11:39 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱BiCMOS Technology and Applications
影響因子2023A. R. Alvarez
視頻videohttp://file.papertrans.cn/186/185413/185413.mp4
學科分類The Springer International Series in Engineering and Computer Science
圖書封面Titlebook: BiCMOS Technology and Applications;  A. R. Alvarez Book 1990 Springer Science+Business Media New York 1990 CMOS.VLSI.analog.circuit.design.
影響因子The topic of bipolar compatible CMOS (BiCMOS) is a fascinating one and of ever-growing practical importance. The "technology pendulum" has swung from the two extremes of preeminence of bipolar in the 1950s and 60s to the apparent endless horizons for VLSI NMOS technology during the 1970s and 80s. Yet starting in the 1980s severallimits were clouding the horizon for pure NMOS technology. CMOS reemerged as a· viable high density, high performance technology. Similarly by the mid 1980s scaled bipolar devices had not only demonstrated new high speed records, but early versions of mixed bipolar/CMOS technology were being produced. Hence the paradigm of either high density . Q[ high speed was metamorphasizing into an opportunity for both speed and density via a BiCMOS approach. Now as we approach the 1990s there have been a number of practical demonstrations of BiCMOS both for memory and logic applications and I expect the trend to escalate over the next decade. This book makes a timely contribution to the field of BiCMOS technology and circuit development. The evolution is now indeed rapid so that it is difficult to make such a book exhaustive of current developments. Probably equally d
Pindex Book 1990
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BiCMOS Process Technology,nciple reason for this is that LSI and VLSI digital BiCMOS circuits tend to be CMOS-intensive because of power dissipation limitations (for example, high density ECL I/O SRAMs and gate arrays). The CMOS-intensive nature of these circuits requires a process technology that will result in the highest
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Digital Design,al TTL, ECL, and CMOS technologies each have intrinsic strengths and weaknesses and thus each has established suitable applications in both standard “glue” logic as well as the newer application specific markets. BiCMOS technology allows fabrication of monolithic circuits which use all of the above
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Specialty Memories,o particular applications, and often also render the specialty memory virtually useless in other applications. The applications for specialty memory are widely varied, and make the study of specialty memory quite interesting. Application specific memory would be a good descriptive name, except ASIC
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A Short History of Digestion Studiesglue” logic as well as the newer application specific markets. BiCMOS technology allows fabrication of monolithic circuits which use all of the above design techniques as well as new hybrid BiCMOS circuits which take advantage of the strengths of the individual technologies.
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