TY - JOUR
T1 - Low 1/f(3) Noise Corner LC-VCO Design Using Flicker Noise Filtering Technique in 22nm FD-SOI
AU - Zong, Zhiwei
AU - Mangraviti, Giovanni
AU - Wambacq, Piet
PY - 2020/5
Y1 - 2020/5
N2 - This paper presents a K/Ka-band voltage biased differential LC-VCO in 22nm FD-SOI achieving a 1/f3 corner below 18 kHz and a figure-of-merit (FOM) at 1 MHz offset frequency of 188190 dBc/Hz over the tuning range. Thanks to the flicker noise filtering technique, flicker noise upconversion can be suppressed significantly without degrading the phase noise (PN) in the 1/f2 region. The difference in connection of the switched-capacitor bank (SCB) over the VCO tuning range is taken into account in our analysis of flicker noise filtering. The VCO uses differential source degeneration with a self-coupled inductor that is used for layout compactness and common-mode (CM) resonance manipulation. To obtain a low 1/f3 corner over the tuning range, a common centroid layout technique is used for the SCB. The post-layout simulation shows that the 1/f3 corner is well below 50 kHz over the tuning range in different process corners. The PN@1 MHz and PN@100 kHz are-110.2 dBc/Hz and-89.9 dBc/Hz, respectively, at the center of the tuning range with a power consumption of 8.8 mW.
AB - This paper presents a K/Ka-band voltage biased differential LC-VCO in 22nm FD-SOI achieving a 1/f3 corner below 18 kHz and a figure-of-merit (FOM) at 1 MHz offset frequency of 188190 dBc/Hz over the tuning range. Thanks to the flicker noise filtering technique, flicker noise upconversion can be suppressed significantly without degrading the phase noise (PN) in the 1/f2 region. The difference in connection of the switched-capacitor bank (SCB) over the VCO tuning range is taken into account in our analysis of flicker noise filtering. The VCO uses differential source degeneration with a self-coupled inductor that is used for layout compactness and common-mode (CM) resonance manipulation. To obtain a low 1/f3 corner over the tuning range, a common centroid layout technique is used for the SCB. The post-layout simulation shows that the 1/f3 corner is well below 50 kHz over the tuning range in different process corners. The PN@1 MHz and PN@100 kHz are-110.2 dBc/Hz and-89.9 dBc/Hz, respectively, at the center of the tuning range with a power consumption of 8.8 mW.
KW - K/Ka-band
KW - LC-VCO
KW - flicker noise suppression
KW - FD-SOI
UR - http://www.scopus.com/inward/record.url?scp=85084387642&partnerID=8YFLogxK
U2 - 10.1109/TCSI.2020.2970267
DO - 10.1109/TCSI.2020.2970267
M3 - Article
VL - 67
SP - 1469
EP - 1480
JO - IEEE Transactions on Circuits and Systems I: Regular Papers
JF - IEEE Transactions on Circuits and Systems I: Regular Papers
SN - 1549-8328
IS - 5
M1 - 9014529
ER -