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Titlebook: BiCMOS Technology and Applications; A. R. Alvarez Book 1993Latest edition Springer Science+Business Media New York 1993 CMOS.Standard.anal

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BiCMOS Standard Memories,wer dissipation and memory size have been regarded as the practical indications of technology performance and density. Against this empirical yard stick BiCMOS technology has been found to produce memories with MOS-like power and density but with speeds and I/O interfaces which one normally attributes to bipolar memories.
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Testing,s removed from printed circuit boards, Fig. 7.1 [.]. With test playing such an important role, it is imperative that the implications of a technology to test methods be understood. This will allow for informed decisions to be made about the applicability of a technology to a project and the costs involved.
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Introduction to BiCMOS,e I/Os (TTL, CMOS, or ECL), 4) high performance analog, and 5) latchup immunity [.]. Compared to CMOS, BiCMOS’s reduced dependence on capacitive load and the multiple circuit and I/Os configurations possible greatly enhance design flexibility and can lead to reduced design cycle time. The inherent r
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A Perspective On BiCMOS Trends,jor semiconductor company now boasts some form of BiCMOS technology, its relative process complexity keeps cost stubbornly high. It has also taken the circuit and system designers the full decade to learn how to best exploit BiCMOS, and we’re still learning. Commercial CAD tools, while making signif
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Book 1993Latest edition processing and circuit design is assumed. Given thedivision of the book, it lends itself well to a two-part course; oneon technology and one on design. This will provide advanced studentswith a good understanding of tradeoffs between bipolar and MOS devicesand circuits..
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Introduction to BiCMOS,to achieve VLSI circuits with speed-power-density performance previously unattainable with either technology individually. CMOS technology maintains an advantage over Bipolar in power dissipation, noise margins, packing density,and the ability to integrate large complex functions with high yields. B
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BiCMOS Device Design, Optimization, and Scaling,the device designer wishes to optimize the performance of the transistors while simultaneously maintaining process simplicity. The challenge to achieve this in the BiCMOS environment is heightened because the process requirements for the MOSFET and bipolar transistors often conflict with one another
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