By Johan Huijsing, Michiel Steyaert, Arthur H.M. van Roermund
This 10th quantity of "Analog Circuit layout" concentrates on three themes: Scalable Analog Circuits, High-Speed D/A Converters, and RF energy Amplifiers. each one subject is roofed by means of 6 papers, written by way of overseas well-known specialists on that subject. those papers have an instructional nature geared toward bettering the layout of analog circuits. The ebook is split into 3 elements: half I, Scalable Analog Circuit layout describes in 6 papers problems with: scalable high-speed layout, scalable high-resolution mixed-mode ADC and OpAmp layout, scalable high-voltage layout for XDSL, scalability of wire-line entrance ends, reusable IP analog layout, and porting CAD analog layout. half II, High-Speed D/A Converters describes in 6 papers problems with: advent to high-speed D/A converter layout, retargetable 12-bit 200-MHz CMOS present steerage layout, high-speed CMOS D/A converters for upstream cable functions, static and dynamic functionality boundaries, the linearity problem of D/A converters for communications, and a 400-MHz, 10-bit charge-domain CMOS D/A converter for low-spurious frequency synthesis. half III, RF strength Amplifiers describes in 6 papers problems with: method facets, assessment and trade-offs, linear transmitter architectures, GaAs microwave SSPAs, Monolithic transformer-coupling in Si-bipolar, and RF strength amplifier layout in CMOS. "Analog Circuit layout" is an important reference resource for analog layout engineers and researchers wishing to maintain abreast with the newest advancements within the box. the academic insurance additionally makes it compatible to be used in an strengthen layout path.
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Extra info for Analog Circuit Design: Scalable Analog Circuit Design
ABSTRACT Analog design in deep sub-micron technologies is a reality now and poses severe challenges to the circuit designer. Trends in technologies as well as their effects on circuit design are discussed. It is shown that, specifically for Wire-Line AFE’s, the power required for a certain dynamic range and bandwidth decreases with minimum feature size as long as a constant ratio between signal swing and supply voltage can be maintained. However, below channel-length, predictions of the threshold voltage endanger that requirement.
WHAT HIGH VOLTAGE TECHNO LOGY FOR XDSL? Since ever, microelectronics has been driven by the insatiable requirement for better performance and lower cost. This not only translates into smaller size for a given function but also into proper integration of different functions on a single semiconductor substrate. Approaches have been proven often feasible and on a case-by-case basis economically applicable to address different applications and market segments; both approaches have been also adopted in case of XDSL.
1. ), analog integration in deep sub-micron CMOS has become an economic necessity. Several papers already discussed the problems and design challenges of analog circuits integrated in purely digital deep sub-micron CMOS technologies  - . This paper will discuss trends in technologies and their effects on circuit design, specifically focussed on Analog Front-End’s (AFE’s) for Wire-Line applications. Emphasis will be on the effect of supply voltage scaling on circuit design and performance.
Analog Circuit Design: Scalable Analog Circuit Design by Johan Huijsing, Michiel Steyaert, Arthur H.M. van Roermund