Crystal oscillators in communication receivers

A. Manke
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引用次数: 4

Abstract

The application of crystal oscillators to communications receivers is considered and the problems encountered are enumerated and separately analyzed. In regard to crystal oscillator operation, two typical circuits are cited for illustration and are analyzed in regard to the type of feedback used to produce oscillation. The analysis concludes that for maximum oscillator reliability in obtaining the inherent stability a crystal is capable of; regenerative feed-back which is present irrespective of the crystal impedance should be avoided and that these effects are largely determined by the type of crystal oscillator circuit used in a particular application. Over the temperature range normally encountered in communication receiver applications the reversals in the frequency vs. temperature characteristics for a typical close tolerance un-heated crystal is shown in Fig. #1. This data shows that for this type of crystal the total drift for temperature extremes is less rather than maximum due to the curvature of the frequency vs. temperature characteristic. Typical spurious responses of crystals normally used for oscillator purposes are also shown and the possibility of operation on spurious of the crystal is considered from a circuit viewpoint. Preferred methods for crystal oscillator injection and frequency trim are also discussed.
通信接收机中的晶体振荡器
考虑了晶体振荡器在通信接收机中的应用,列举了所遇到的问题并分别进行了分析。关于晶体振荡器的工作,引用了两个典型的电路来说明,并分析了用于产生振荡的反馈类型。分析表明,为了获得最大的振荡器可靠性,晶体能够获得固有稳定性;应避免与晶体阻抗无关的再生反馈,这些影响在很大程度上取决于特定应用中使用的晶体振荡器电路的类型。在通信接收机应用中通常遇到的温度范围内,典型的紧密公差非加热晶体的频率与温度特性的反转如图1所示。该数据表明,对于这种类型的晶体,由于频率与温度特性的曲率,温度极值的总漂移较小,而不是最大。还给出了通常用于振荡器用途的晶体的典型杂散响应,并从电路的角度考虑了晶体杂散操作的可能性。讨论了晶体振荡器注入和频率微调的优选方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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