标题: | 高频、高品质因素及低相位杂讯压电振荡器之研究 Investigations of High Frequency, High Quality Factor and Low Phase Noise Oscillators with Piezoelectric Resonators |
作者: | 林炯宏 Lin, Jon-Hong 高曜煌 Kao, Yao-Huang 电信工程研究所 |
关键字: | 高品质因素;相位杂讯;压电共振器;压控振荡器;皮尔斯振荡器;平衡式振荡器;high qulality factor;phase noise;piezoelectric resonator;VCO;Pierce oscillator;balanced oscillator |
公开日期: | 2008 |
摘要: | 在高速数位通讯系统中,为解决不同传输速率设备间讯号之连结与讯号在长距离传输后之衰减,系统之宽频收发器须具备时脉恢复电路对讯号作频率转换及波形重整以维持资料完整性。上述电路中均须使用高性能之压控振荡器,因此具高稳定性之高品质因素压控压电振荡器成为最佳选择。若以压电共振器的制程限制及工作频率来区分,当工作振荡频率低于200 MHz时,石英晶体共振器为最佳选择;当工作频率低于3000 MHz时,表面声波共振器(SAWR)为目前主流元件;而薄膜体波共振器(FBAR)则适用于微波频段。 本论文共提出四种高品质因素压电振荡器,分别为: 2488 MHz压控声横波(STW)振荡器,2488 MHz压控薄膜体波(FBAR)振荡器,622 MHz 修正式皮尔斯(Pierce)振荡器及433 MHz平衡式表面声波(SAW)振荡器。 本文中2488 MHz压控声横波振荡器之可调频率范围可达±200 ppm,其相位杂讯在100 kHz偏移时,相较于一般市售同类产品低8分贝;在振荡器设计阶段藉由分析元件的残余相位杂讯(residual phase noise),发现声横波共振器为本振荡器主要杂讯来源,而非主动元件。振荡器之相位杂讯可经由元件之残余相位杂讯及回路转换函数预测且预测值与量测结果相当接近。本2488 MHz压控薄膜体波振荡器之可调频率范围可达±6%,其振荡频率之温度系数大约为-34.5 ppm/oC。 我们藉由在传统皮尔斯振荡器之回授π电路上增加一相移器来降低回授电路之插入损失,以改善其在高频应用不易起振之缺点。本振荡器核心电路仅销耗+1.2V, 10.2 mA,其相位杂讯在距中心载波10 kHz处可达-136 dBc/Hz。 我们藉由一般商用表面声波共振器来制作平衡式表面声波振荡器,其对偶特性经由量测获得验证,并增加一180度反相功率偶合器来完成push-push架构振荡器,其相位杂讯相对于单端输出可获6分贝之改善。 The increasing demand for high speed digital communication applications motivates a growing interest in the high data rate transceivers. In these transceivers, clock recovery circuits are used for data integrity. The clock is usually extracted from a phase-lock-loop circuit with low phase noise voltage-controlled oscillator (VCO). For the requirements on the high frequency and low phase noise voltage-controlled oscillators, the highly stable VCOs with piezoelectric resonators are the hopeful candidates. In the frequency below 200 MHz, the crystal resonators are the best choice. In the ultar-high-frequency (UHF) band, surface acoustic wave resonators (SAWR) play the important roles now. In the band of UHF and microwave frequency, the film bulk acoustic resonators (FBAR) are the future stars. There are four different types oscillators are presented in this thesis. They are VCO with STW resonator, VCO with FBAR, modified Pierce SAW oscillator, and balanced SAW oscillator. Both the surface transverse wave (STW) resonator and FBAR are applied for the low phase noise 2488 MHz voltage-controlled oscillators. The tuning ability of the 2488 MHz voltage-controlled oscillator with STW resonator achieves ±200 ppm and its phase noise performance is 8 dB better than the other commercial products at offset 100 kHz frequency. The white phase-noise floor is about -170 dBc/Hz. In the design phase of the oscillator with STW resonator, by examining the residual phase noises of the main components in the oscillator, we found that the STW resonator dominates the phase noise of the oscillator, instead of active devices. The behavior of the phase noise of the oscillator is shaped by the important factor of group delay. The tuning capability of the voltage-controlled FBAR oscillator achieves ±6%. The temperature coefficients factor is about -34.5 ppm/oC which is dominated by FBAR. An extra phase shifter is used to reduce the insertion loss of the π-feedback network in the conventional Pierce SAW oscillator. The modified Pierce oscillator provides 4.0dBm of output power and the core circuit consumes 10.2 mA from +1.2V DC power supply. The phase noise level of the oscillator is approximately –136 dBc/Hz at 10 kHz offset. With a popular commercial one-port SAW resonator, the behavior of the balanced SAW oscillator is presented. The balanced SAW oscillator provides pure antiphase signals without balun. By using an 180o power combiner, a push-push topology SAW oscillator is presented and results in 6dB phase noise improvement in comparison with the single-end output. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009313809 http://hdl.handle.net/11536/78468 |
显示于类别: | Thesis |
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