標題: | 以0.18微米CMOS製程設計一具有自動校正之溫度補償石英振盪器 Design of an Auto-calibration Temperature-compensated Crystal Oscillator in 0.18μm CMOS Process |
作者: | 謝景文 Xie, Jing-Wen 趙昌博 影像與生醫光電研究所 |
關鍵字: | 石英振盪器 數位控制 溫度補償 低功耗 延遲單元 溫度感測器;Crystal oscillator Digital control Temperature compensation Low power Delay cell Temperature sensor |
公開日期: | 2015 |
摘要: | 本論文提出一工作頻率為16 MHz之數位控制石英振盪器以及一時域溫度感測器之電路設計,其用於在低功耗的行動裝置內實現一具有自動校正功能之溫度補償石英振盪器。數位控制石英振盪器是基於皮爾斯振盪器的電路架構,並內含兩個8位元的切換式電容陣列。數位控制石英振盪器的溫度感測是藉由量測由本論文提出之延遲單元的延遲時間對溫度的變化達成,其稱為時域溫度感測器。數位控制石英振盪器和時域溫度感測器的電源電壓是透過使用兩組低壓降穩壓器穩壓在1.2 V。本論文所設計的電路已使用台積電0.18微米CMOS製程下線製作成功,其總面積為2.2平方毫米。在環境溫度為25度的條件下,於1 kHz頻率偏移測得的相位雜訊為-116.37 dB/Hz。在溫度變化範圍從-40度至85度的情況下,量測到自動校正後的頻率漂移介於+/- 0.2 ppm的範圍內。時域溫度感測器在1K Hz轉換速度條件下,量測到的溫度感測解析度為0.18 C/LSB,以及溫度感測誤差範圍為-2度至1.6度之間。晶片測得的電流消耗大約為2.5毫安培。 This thesis presents a 16-MHz digital-controlled crystal oscillator and a time-domain temperature sensor design to achieve a high-precision auto calibration temperature-compensated crystal oscillator in a low-power mobile device. The digital-controlled crystal oscillator is based on Pierce readout topology with two 8-bit switched-capacitor arrays. The temperature is measured with the temperature-dependent delays of proposed delay cell, called time-domain temperature sensor. The supply voltage of digital-controlled crystal oscillator and time-domain temperature sensor are regulated at 1.2 V by using two on-chip low-dropout regulators. The designed circuit has been successfully fabricated by using TSMC 0.18-μm CMOS process, where the active area is 2.2 mm2. The measured phase noise of 1 kHz offset at 25C is -116.37 dB/Hz. The frequency deviation over -40C to 85C is within +/- 0.2 ppm after compensation. The measured effective temperature resolution of time-domain temperature sensor is 0.18 C/LSB and the measured error is within -2C to 1.6C at 1k Hz conversion rate. The measured current consumption of chip is about 2.5 mA. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT070258216 http://hdl.handle.net/11536/127800 |
顯示於類別: | 畢業論文 |