A W-band divider-less cascading frequency synthesizer with push-push ×4 frequency multiplier and sampling PLL in 65nm CMOS
Le Ye, Yixiao Wang, Congyin Shi, Huailin Liao, Ru Huang
Abstract
Le Ye, Yixiao Wang, Congyin Shi, Huailin Liao, Ru Huang
Abstract
A fully integrated 79-to-87GHz cascading frequency synthesizer, which combines a W-band push-push ×4 frequency multiplier and a K-band divider-less fundamental PLL with sampling phase detector, is implemented in a standard 65nm CMOS process. It consumes low power of 54mW, achieves as low as −100.1dBc/Hz @ 100kHz and −106.2dBc/Hz @ 1MHz phase noise performance at divide-by-2 frequency, covers 9.6% tuning range from 79 to 87GHz, and occupies smaller than 1.48×0.8 mm2silicon area. This frequency synthesizer is qualified to support 81-to-86GHz point-to-point high speed data link.
OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
A fully integrated 79-to-87GHz cascading frequency synthesizer, which combines a W-band push-push ×4 frequency multiplier and a K-band divider-less fundamental PLL with sampling phase detector, is implemented in a standard 65nm CMOS process. It consumes low power of 54mW, achieves as low as −100.1dBc/Hz @ 100kHz and −106.2dBc/Hz @ 1MHz phase noise performance at divide-by-2 frequency, covers 9.6% tuning range from 79 to 87GHz, and occupies smaller than 1.48×0.8 mm2silicon area. This frequency synthesizer is qualified to support 81-to-86GHz point-to-point high speed data link.
Key concepts: Phase-locked loop, Frequency synthesizer, Phase noise, CMOS, Frequency multiplier, Frequency divider, Multiplier (economics), Electrical engineering