A reference-sampling based calibration-free fractional-N PLL with A PI-linked sampling clock generator

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초록

Sampling-based PLLs have become a new research trend due to the possibility of remov-ing the frequency divider (FDIV) from the feedback path, where the FDIV increases the contribution of in-band noise by the factor of dividing ratio square (N2). Between two possible sampling methods, sub-sampling and reference-sampling, the latter provides a relatively wide locking range, as the slower input reference signal is sampled with the faster VCO output signal. However, removal of FDIV makes the PLL not feasible to implement fractional-N operation based on varying divider ratios through random sequence generators, such as a Delta-Sigma-Modulator (DSM). To address the above design challenges, we propose a reference-sampling-based calibration-free fractional-N PLL (RSFPLL) with a phase-interpolator-linked sampling clock generator (PSCG). The proposed RSFPLL achieves fractional-N operations through phase-interpolator (PI)-based multi-phase generation instead of a typical frequency divider or digital-to-time converter (DTC). In addition, to alle-viate the power burden arising from VCO-rated sampling, a flexible mask window generation method has been used that only passes a few sampling clocks near the point of interest. The prototype PLL system is designed with a 65 nm CMOS process with a chip size of 0.42 mm2. It achieves 322 fs rms jitter, −240.7 dB figure-of-merit (FoM), and −44.06 dBc fractional spurs with 8.17 mW power consumption.

키워드

Calibration-free; Fractional-N; Frequency synthesizer; Low power; Low-phase noise; Phase locked loop; Refer-ence-sampling PLL; Sampling clock generator; Sub-sampling PLL; PHASE NOISE; FREQUENCY-SYNTHESIZER; DIGITAL PLL
제목
A reference-sampling based calibration-free fractional-N PLL with A PI-linked sampling clock generator
저자
Han, J.-S.; Eom, T.-H.; Choi, S.-W.; Seong, K.; Yoon, D.-H.; Kim, T.T.-H.; Baek, K.-H.; Shim, Y.
DOI
10.3390/s21206824
발행일
2021-10
유형
Article
저널명
Sensors
권
21
호
20