By Michael Eick, Helmut Graeb (auth.), Mourad Fakhfakh, Esteban Tlelo-Cuautle, Rafael Castro-Lopez (eds.)
Despite the truth that within the electronic area, designers can take complete advantages of IPs and layout automation instruments to synthesize and layout very advanced structures, the analog designers’ activity remains to be regarded as a ‘handcraft’, bulky and extremely time eating approach. hence, large efforts are being deployed to advance new layout methodologies within the analog/RF and mixed-signal domain names.
This e-book collects sixteen state of the art contributions dedicated to the subject of systematic layout of analog, RF and combined sign circuits. Divided within the components Methodologies and methods contemporary theories, synthesis recommendations and layout methodologies, in addition to new sizing techniques within the box of sturdy analog and combined sign layout automation are offered for researchers and R/D engineers.
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Extra resources for Analog/RF and Mixed-Signal Circuit Systematic Design
Although the S-parameter simulation for the circuit is fast, the inner optimization needs to evaluate a full population in each iteration and the optimization needs several iterations. Because the evaluation of different candidate designs in a population is independent from each other in SBDE, we use parallel computation. In our implementation, an 8-core CPU is used. Experiments for the test circuit below show that the inner optimization of one candidate transformer design can be finished in 5-6 minutes.
50 B. Liu and G. Gielen It can be seen that the presented high-frequency RF linear amplifier synthesis system can achieve a result comparable to directly using the DE algorithm and EM simulation, which is the reference benchmark. We can also see the high solution quality from the mm-wave frequency RF IC design aspect. It is well known by designers that achieving 3 dB power gain per stage requires a very good matching beyond 60GHz, and that the higher the working frequency, the more difficult it is to achieve high gain.
A synthesis tool for CMOS RF low-noise amplifier. : An efficient, fully parasitic-aware power amplifier design automation tool. : Layout-aware RF circuit synthesis driven by worst case parasitic corners. In: Proc. of ICCD, pp. : A synthesis flow toward fast parasitic closure for radio-frequency integrated circuits. In: Proc. of DAC, pp. : CYCLONE: automated design and layout of RF LC-Oscillators. : Elitist nondominated sorting genetic algorithm based RF IC optimizer. : Parasitic-aware design and optimization of a fully integrated CMOS wideband amplifier.
Analog/RF and Mixed-Signal Circuit Systematic Design by Michael Eick, Helmut Graeb (auth.), Mourad Fakhfakh, Esteban Tlelo-Cuautle, Rafael Castro-Lopez (eds.)