首页> 外文期刊>Japanese journal of applied physics >A detection electronics enabling ultimate suppression of leakage signals in highspeed and phase-sensitive laser probe for radio frequency surface and bulk acoustic wave devices
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A detection electronics enabling ultimate suppression of leakage signals in highspeed and phase-sensitive laser probe for radio frequency surface and bulk acoustic wave devices

机译:一种检测电子设备,可实现高速抑制的高速和相敏激光探头中的漏电信号,用于射频表面和散装声波器件

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摘要

This paper proposes a detection electronics which enables ultimate suppression of leakage signals in high-speed and phase-sensitive laser probe for radio frequency surface and bulk acoustic wave devices. Another merit is simpler circuit configuration than the conventional one. First, the complete suppression of leakage signals is verified. Then impact of the oscillator phase noise is examined by utilizing oscillators with various phase noise performance. This is because the proposed electronics is expected to be more sensitive to the oscillator phase noise than the conventional one. The result indicates that although performance degradation appears, it is practically negligible. In this electronics, the absolute phase can not be determined. This is not a demerit for use in the laser probe because additional phase shift caused by cables and printed circuit board is hard to calibrate.
机译:本文提出了一种检测电子器件,其能够实现射频表面和散装声波装置的高速和相敏激光探头中的漏电信号的最终抑制。 另一种优点比传统的更简单的电路配置。 首先,验证完全抑制泄漏信号。 然后通过利用具有各种相位噪声性能的振荡器来检查振荡器相位噪声的影响。 这是因为预计所提出的电子器件与振荡器相位噪声比传统噪声更敏感。 结果表明,尽管出现性能下降,但实际上是可忽略不计的。 在这种电子器件中,绝对不能确定绝对相。 这不是用于激光探头的缺点,因为由电缆和印刷电路板引起的额外相移难以校准。

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