Variable transmission lines: Structure and compact modeling
Shlomo Shlafman, David Goren, et al.
COMCAS 2011
We present a passive digital-to-phase converter with sub-degree phase precision for phased array frontends. The phase tuning approach is based on manipulating the electromagnetic properties of an artificially constructed transmission line. By simultaneously controlling dispersion, characteristic impedance, and loss across the structure, the phase shifter minimizes phase imprecisions while ensuring a flat amplitude response across different phase settings. The chip prototype is fabricated in a 130nm SiGe BiCMOS process, occupies an area of 0.18mm2, and consumes no power. The insertion loss is -9.3 dB ± 0.25 dB at 28 GHz. The phase control operates with 4.75 degree steps while maintaining an RMS phase error of 0.6 degrees across multiple chips and temperatures, demonstrating the best phase and amplitude accuracy when compared to state-of-the-art integrated microwave and mm-wave phase shifters.
Shlomo Shlafman, David Goren, et al.
COMCAS 2011
Tingjun Chen, Prasanthi Maddala, et al.
Computer Networks
Asaf Tzadok, Alberto Valdes-Garcia, et al.
IMS 2020
Yahya Tousi, Ehsan Afshari
IEEE JSSC