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Characterization of the Vectron PX-570 Crystal Oscillator for Use in Harsh Environments

机译:在恶劣环境中使用的Vectron PX-570晶体振荡器的特性

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摘要

Computing hardware, data-acquisition systems, communications systems, and many electronic control systems require well-controlled timing signals for proper and accurate operation. These signals are, in most cases, provided by circuits that employ crystal oscillators due to availability, cost, ease of operation, and accuracy. In some cases, the electronic systems are expected to survive and operate under harsh conditions that include exposure to extreme temperatures. These applications exist in terrestrial systems as well as in aerospace products. Well-logging, geothermal systems, and industrial process control are examples of ground-based applications, while distributed jet engine control in aircraft, space-based observatories (such as the James Webb Space Telescope), satellites, and lunar and planetary landers are typical environments where electronics are exposed to harsh operating conditions. To ensure these devices produce reliable results, the digital heartbeat from the oscillator must deliver a stable signal that is not affected by external temperature or other conditions. One such solution is a recently introduced commercial-off-the-shelf (COTS) oscillator, the PX-570 series from Vectron International. The oscillator was designed for high-temperature applications and as proof, the crystal oscillator was subjected to a wide suite of tests to determine its ruggedness for operation in harsh environments. The tests performed by Vectron included electrical characterization under wide range of temperature, accelerated life test/aging, shock and vibration, internal moisture analysis, ESD threshold, and latch-up testing. The parametric evaluation was performed on the oscillator's frequency, output signal rise and fall times, duty cycle, and supply current over the temperature range of -125 C to +230 C. The evaluations also determined the effects of thermal cycling and the oscillator's re-start capability at extreme hot and cold temperatures. These thermal cycling and restart tests were performed at the NASA Glenn Research Center. Overall, the crystal oscillator performed well and demonstrated very good frequency stability. This paper will discuss the test procedures and present details of the performance results.
机译:计算硬件,数据采集系统,通信系统和许多电子控制系统需要良好控制的定时信号,以确保正确,准确地运行。由于可用性,成本,操作简便性和准确性,在大多数情况下,这些信号由采用晶体振荡器的电路提供。在某些情况下,预计电子系统可以在包括暴露于极端温度的恶劣条件下生存和运行。这些应用存在于地面系统以及航空航天产品中。测井,地热系统和工业过程控制是地面应用的示例,而飞机,天文台(例如James Webb太空望远镜),卫星以及月球和行星着陆器中的分布式喷气发动机控制都是典型的电子设备暴露于恶劣工作条件的环境。为了确保这些设备产生可靠的结果,来自振荡器的数字心跳必须提供不受外部温度或其他条件影响的稳定信号。一种这样的解决方案是最近推出的商用振荡器(COTS),Vectron International的PX-570系列。该振荡器是为高温应用而设计的,作为证明,该晶体振荡器经过了一系列测试,以确定其在恶劣环境下的坚固性。 Vectron进行的测试包括在宽温度范围内的电气特性,加速寿命测试/老化,冲击和振动,内部水分分析,ESD阈值和闩锁测试。在-125 C至+230 C的温度范围内,对振荡器的频率,输出信号的上升和下降时间,占空比和电源电流进行了参数评估。这些评估还确定了热循环的影响以及振荡器的重新启动。在极端高温和低温下的启动能力。这些热循环和重新启动测试是在NASA格伦研究中心进行的。总的来说,晶体振荡器表现良好,并表现出非常好的频率稳定性。本文将讨论测试程序并提供性能结果的详细信息。

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