Title :
Miniaturized high performance shielded CPW transmission lines from RF to mm-waves
Author :
Franc, A.-L. ; Kaddour, D. ; Pistono, E. ; Corrao, N. ; Fournier, J.-M. ; Ferrari, P.
Author_Institution :
CNRS, Univ. de Savoie, Grenoble, France
Abstract :
Shielded coplanar waveguides (S-CPW) are promising candidates for the development of high-quality factor transmission lines in millimetre-wave frequency bands, from about 10 GHz to more than 65 GHz. In this paper, state-of-the art experimental results carried out on a CMOS 0.35 mum low-cost technology are first presented. These results open new possibilities for the development of low-loss compact passive circuits. Then, an accurate and simple modeling approach, based on the simulation of classical and grounded CPW transmission lines, is carried out in order to minimize the simulation time and computer memory need. Thus, very fast design procedures are obtained. Lastly, the size reduction of shielded CPW is addressed. It is demonstrated that shielded S-CPW structure leads to a chip area, for a same electrical length, divided by 2 compared to classical microstrip or CPW transmission lines.
Keywords :
CMOS integrated circuits; coplanar transmission lines; coplanar waveguides; electromagnetic shielding; CMOS low-cost technology; classical CPW transmission lines; computer memory; grounded CPW transmission lines; high-quality factor transmission lines; low-loss compact passive circuits; millimetre-wave frequency band; miniaturized shielded CPW transmission lines; shielded CPW size reduction; shielded coplanar waveguides; simulation time minimization; size 0.35 mum; Art; CMOS technology; Circuit simulation; Computational modeling; Computer simulation; Coplanar transmission lines; Coplanar waveguides; Distributed parameter circuits; Radio frequency; Transmission lines;
Conference_Titel :
Solid State Device Research Conference, 2009. ESSDERC '09. Proceedings of the European
Conference_Location :
Athens
Print_ISBN :
978-1-4244-4351-2
Electronic_ISBN :
1930-8876
DOI :
10.1109/ESSDERC.2009.5331538