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HBAR-Based 3.6 GHz oscillator with low power consumption and low phase noise

机译:基于HBAR的3.6 GHz振荡器,具有低功耗和低相位噪声

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摘要

We have designed and built 2 oscillators at 1.2 and 3.6 GHz based on high-overtone bulk acoustic resonators (HBARs) for application in chip-scale atomic clocks (CSACs). The measured phase noise of the 3.6 GHz oscillator is -67 dBc/Hz at 300 Hz offset and -100 dBc/Hz at 10 kHz offset. The Allan deviation of the free-running oscillator is 1.5 × 10-9 at one second integration time and the power consumption is 3.2 mW. The low phase noise allows the oscillator to be locked to a CSAC physics package without significantly degrading the clock performance.
机译:我们基于高泛音体声谐振器(HBAR)设计并构建了2个1.2和3.6 GHz振荡器,用于芯片级原子钟(CSAC)。 3.6 GHz振荡器的实测相位噪声在300 Hz偏移时为-67 dBc / Hz,在10 kHz偏移时为-100 dBc / Hz。自由运行振荡器的Allan偏差在一秒钟的积分时间内为1.5×10-9,功耗为3.2 mW。低相位噪声使振荡器可以锁定在CSAC物理封装上,而不会显着降低时钟性能。

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