首页> 外文会议>Frequency Control Symposium, 1996. 50th., Proceedings of the 1996 IEEE International. >A VHF, quartz crystal oscillator exhibiting exceptional vibration immunity
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A VHF, quartz crystal oscillator exhibiting exceptional vibration immunity

机译:VHF石英晶体振荡器具有出色的抗振动能力

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This paper describes the design and performance of a 100 MHz quartz crystal oscillator employing a combination of technologies to achieve exceptionally good spectral performance under vibration. The oscillator is intended for use as the exciter master oscillator in a multi-function radar. The oscillator design utilizes two, series-connected, third overtone, SC-cut crystals oriented to provide partial cancellation of vibration occurring in the plane of the crystal blanks. The oscillator design incorporates a "building block" approach, including the use of a self-limiting, modular amplifier sustaining stage. In order to minimize oscillator signal spectral degradation encountered as a result of enclosure and component mechanical resonances, the following design was implemented: (1) Except for the crystals and a voltage regulator IC, the oscillator circuit employs leadless, surface mount components. (2) The use of a rigid chassis employing closely-spaced stiffening ribs which trisect both the PWA and steel covers. (3) Use of a thermally isolated but rigidly mounted crystal heater block. In addition, the oscillator assembly is designed with its center of gravity (C.G.) co-incident with the isolation system center of mass and is mounted via an elastomeric isolation system developed specifically for attenuating dynamic disturbances in small assemblies. The prototype unit produced resonant frequencies between 70 and 85 Hz with an acceleration spectral density roll-off rate up to 12 dB/octave. Oscillator at-rest phase noise is characterized by L(100 Hz)=-135 dBc/Hz and a phase noise floor level of -175 dBc/Hz. Phase noise performance under vibration measurements indicate very little degradation due to mechanical resonances. The performance that has been achieved in the region of unity transmissibility in the isolators (fm>75 Hz) corresponds to a net fractional frequency sensitivity to vibration of less than 2 to 3/spl times/10/sup -10/ per g. The corresponding sensitivity achieved for vibration occurring in the direction of the crystal blanks is on the order of 1/spl times/10/sup -10/ per g.
机译:本文介绍了一种100 MHz石英晶体振荡器的设计和性能,该振荡器采用了多种技术组合来在振动下获得异常好的光谱性能。该振荡器旨在用作多功能雷达中的激励器主振荡器。振荡器的设计利用了两个串联连接的,第三次泛音,SC切割晶体,其取向可以部分抵消在晶体毛坯平面中发生的振动。振荡器设计采用了“构建模块”方法,包括使用自限幅,模块化放大器维持级。为了最大程度地减少由于外壳和组件的机械谐振而导致的振荡器信号频谱退化,实施了以下设计:(1)除晶体和稳压器IC外,振荡器电路还采用无铅的表面安装组件。 (2)使用带有紧密间隔的加劲肋的刚性底盘,该肋将PWA和钢盖三等分。 (3)使用隔热但刚性安装的晶体加热器块。此外,振荡器组件的重心(C.G.)与隔离系统的质心重合,并通过专门为减少小型组件中的动态干扰而开发的弹性体隔离系统进行安装。原型单元产生的共振频率在70到85 Hz之间,加速频谱密度的下降率高达12 dB /倍频程。振荡器静止相位噪声的特征在于L(100 Hz)=-135 dBc / Hz,相位噪声底限为-175 dBc / Hz。振动测量下的相位噪声性能表明由于机械共振而导致的退化很小。在隔离器的整体透射率区域(fm> 75 Hz)中已实现的性能相当于对振动的净分数频率灵敏度小于2至3 / spl乘以/ 10sup -10 /每克。对于在晶体坯料的方向上发生的振动所达到的相应灵敏度为每克1 / spl次/ 10sup -10 /。

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