Miniaturized low-loss millimeter-wave rat-race balun in a CMOS 28 nm technology
Francois Burdin, Florence Podevin, Anne‐Laure Franc, Emmanuel Pistono, Daniel Gloria, Philippe Ferrari
Abstract
Francois Burdin, Florence Podevin, Anne‐Laure Franc, Emmanuel Pistono, Daniel Gloria, Philippe Ferrari
Abstract
This paper presents the design of an integrated rat-race coupler for balun applications based on high quality factor Slow-wave CoPlanar Waveguides (S-CPW) transmission lines in millimeter wave frequencies. The 28 nm CMOS advanced digital technology by STMicroelectronics is used. The design procedure is detailed. Phase-inverter and optimized criteria for the transmission lines characteristics are used to minimize insertion losses and surface on the die. A 3D full wave EM software coupled to a circuit simulator is used to optimize the various building blocs. The compact and low-loss rat-race coupler shows state-of-art very exciting and promising performances. It occupies a 0.086 mm2area. From 52 GHz till 67 GHz, return loss is better than 15 dB, while coupling factors are identical, varying between -4.2 and -4.4 dB, that means 1.4 dB maximal insertion loss. Finally between 13 and 85.5 GHz, the phase difference is kept constant, equal to 180°±1° while the isolation is better than 44 dB.
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This paper presents the design of an integrated rat-race coupler for balun applications based on high quality factor Slow-wave CoPlanar Waveguides (S-CPW) transmission lines in millimeter wave frequencies. The 28 nm CMOS advanced digital technology by STMicroelectronics is used. The design procedure is detailed. Phase-inverter and optimized criteria for the transmission lines characteristics are used to minimize insertion losses and surface on the die. A 3D full wave EM software coupled to a circuit simulator is used to optimize the various building blocs. The compact and low-loss rat-race coupler shows state-of-art very exciting and promising performances. It occupies a 0.086 mm2area. From 52 GHz till 67 GHz, return loss is better than 15 dB, while coupling factors are identical, varying between -4.2 and -4.4 dB, that means 1.4 dB maximal insertion loss. Finally between 13 and 85.5 GHz, the phase difference is kept constant, equal to 180°±1° while the isolation is better than 44 dB.
Key concepts: Balun, Return loss, Insertion loss, CMOS, Extremely high frequency, Electrical engineering, Rat-race coupler, Electric power transmission