Title :
Fully Symmetrical Monolithic Transformer (True 1 : 1) for Silicon RFIC
Author :
Lim, Chee Chong ; Yeo, Kiat Seng ; Chew, Kok Wai ; Cabuk, Alper ; Gu, Jiang-Min ; Lim, Suh Fei ; Boon, Chirn Chye ; Do, Manh Anh
Author_Institution :
Div. of Circuits & Syst., Nanyang Technol. Univ., Singapore
Abstract :
A novel on-chip transformer configuration that gives an identical inductor pair, a higher individual coil self-resonant frequency (SRF), and excellent area efficiency are presented. This technique involves the unique way of inter-crossing the transformer´s primary and secondary coils using multiple metallization layers. Truly symmetrical transformer configuration (100%) is demonstrated using minimum die size. Thus, a true 1 : 1 transformer has been realized on silicon. The effects of the parasitic within the transformer are represented by an equivalent-circuit model. Accurate semiempirical expressions describing the circuit components are provided based on the various layout parameters. Of all the transformer structures presented, the two designs occupying the minimum silicon area by a factor of > 2× have been selected for performance evaluation of the SRF, coupling coefficient, input impedance, quality factor, and inductance. The transmission line transformer mode has also been studied to examine the designs´ performance in the differential mode. The second proposed design reported in this paper, with enhancements in S21 and k performance, is created by adding a unique routing technique onto the first proposed structure. The method presented is fully compatible with the standard foundry CMOS processes. The silicon data reported in this study are based on chartered semiconductor manufacturing´s 0.13-mum RF CMOS technology node.
Keywords :
CMOS integrated circuits; equivalent circuits; monolithic integrated circuits; radiofrequency integrated circuits; silicon; transformers; RF CMOS technology node; SRF; chartered semiconductor manufacturing; coupling coefficient; differential mode; equivalent-circuit model; performance evaluation; radiofrequency integrated circuits; routing technique; self-resonant frequency; silicon RFIC; size 0.13 mum; symmetrical monolithic transformer; transformer coils; transmission line transformer mode; Area efficiency; RF CMOS; coupling coefficient; differential inductor; fully symmetrical transformer; identical inductor pair; inter-coil crossing; interleaved transformer; multidirectional coupling; self-resonant frequency (SRF); stacked transformer; system-on-chip (SoC); transmission line transformer (TLT);
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2008.2003531