高频无线通信系统中基于MEMS振荡器的性能分析

Dhifaf Talal Shakir, Hassan Jassim Al-Qureshy, Saad S. Hreshee
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引用次数: 3

摘要

频率振荡器是在许多电气、电子和通信电路和系统中发现的基本组件。振荡器有各种形状和尺寸,这取决于在给定应用中使用的频率范围。一些应用需要产生低频的振荡器,而其他应用需要产生极高和极高频率的振荡器。由于现代技术的发展和速度,出现了以极高频率工作的新型振荡器。大多数无线通信系统的性能受到参考频率的精度和稳定性的限制。微机电系统(MEMS)由于其与硅的兼容性,是电路集成和降低功耗的首选技术。微机电系统是一个快速发展的先进微电子领域。电子和机械元件在微尺寸上的集成被称为MEMS。近年来,基于MEMS的振荡器显示出巨大的高频应用潜力。这是因为它们具有体积小、集成了CMOS集成电路技术、产品质量因数高、功耗低、批量生产成本低等特点。本文的主要目的是描述MEMS振荡器技术在高频应用中的性能,以及讨论开发能够在千兆赫频率下工作的新型MEMS振荡器的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Analysis of MEMS Based Oscillator for High Frequency Wireless Communication Systems
The frequency oscillator is a basic component found in many electrical, electronic, and communications circuits and systems. Oscillators come in a variety of shapes and sizes, depending on the frequency range employed in a given application. Some applications need oscillators that generate low frequencies and other applications need oscillators that generate extremely high and high frequencies. As a result of the expansion and speed of modern technologies, new oscillators appeared that operating at extremely high frequencies. Most wireless communication systems are constrained in their performance by the accuracy and stability of the reference frequency. Because of its compatibility with silicon, micro-electro-mechanical system (MEMS) is the preferred technology for circuit integration and power reduction. MEMS are a rapidly evolving area of advanced microelectronics. The integration of electrical and mechanical components at the micro size is referred to as a MEMS. MEMS based oscillators have demonstrated tremendous high frequency application potential in recent years. This is owing to their great characteristics such as small size, integration of CMOS IC technology, high frequency-quality factor product, low power consumption, and cheap batch manufacturing cost. This paper's primary objective is to describe the performance of MEMS oscillator technology in high-frequency applications, as well as to discuss the challenges of developing a new MEMS oscillator capable of operating at gigahertz frequencies.
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