A Crystal-less Clock Generator for Low-power and Low-cost Sensor Transceiver with 12.9MHz-to-3.3GHz Range, 16.67ppm/°C Inaccuracy from -25°C to 85°C, and 0.25μs Settle-time

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초록

This paper proposes the design and implementation of a crystal-less clock generator for low-power, cost-effective sensor transceiver systems. The proposed system integrates a p-poly resistor-based relaxation RC oscillator (RCO), a Fractional-N PLL (W-FPLL) with a wide frequency range and fast settling time, and an on-chip temperature sensor unit (TSU) for temperature compensation. To minimize frequency variation in the RCO, a low target frequency is set, and the frequency range is expanded using the PLL. The W-FPLL supports a wide frequency range from 12.9 MHz to 3.3 GHz. Additionally, temperature-induced frequency variations are compensated by applying the TSU’s digital data to the Delta-Sigma Modulator (DSM), while Piecewise Linear Calibration enhances compensation accuracy. The proposed clock generator achieves a frequency stability of 16.67 ppm/°C under temperature variations. The total system die area is 0.102 mm². At 3.3 GHz, the system consumes 6.35 mW of total power. © 2013 IEEE.

키워드

Crystal-less clock generatorFractional-N PLLOn-chip RC oscillatorSensor transceiverTemperature compensation
제목
A Crystal-less Clock Generator for Low-power and Low-cost Sensor Transceiver with 12.9MHz-to-3.3GHz Range, 16.67ppm/°C Inaccuracy from -25°C to 85°C, and 0.25μs Settle-time
저자
Jung, SangdonPark, MinsuChun, Jung-Hoon
DOI
10.1109/ACCESS.2025.3578249
발행일
2025-06
유형
Article
저널명
IEEE Access
13
페이지
105995 ~ 106002