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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Measuring the photodetector frequency response for ultrasonic applications by a heterodyne system with difference- frequency servo control
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Measuring the photodetector frequency response for ultrasonic applications by a heterodyne system with difference- frequency servo control

机译:通过带有差频伺服控制的外差系统测量超声波应用的光电探测器频率响应

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摘要

A technique for the calibration of photodiodes in ultrasonic measurement systems using standard and costeffective optical and electronic components is presented. A heterodyne system was realized using two commercially available distributed feedback lasers, and the required frequency stability and resolution were ensured by a difference-frequency servo control scheme. The frequency-sensitive element generating the error signal for the servo loop comprised a delay-line discriminator constructed from electronic elements. Measurements were carried out at up to 450 MHz, and the uncertainties of about 5% (k = 2) can be further reduced by improved radio frequency power measurement without losing the feature of using only simple elements. The technique initially dedicated to the determination of the frequency response of photodetectors applied in ultrasonic applications can be transferred to other application fields of optical measurements.
机译:提出了一种使用标准且经济高效的光学和电子组件在超声测量系统中校准光电二极管的技术。外差系统是使用两个市售的分布式反馈激光器实现的,并通过差频伺服控制方案确保了所需的频率稳定性和分辨率。产生用于伺服回路的误差信号的频率敏感元件包括由电子元件构成的延迟线鉴别器。在高达450 MHz的频率下进行测量,改进的射频功率测量可以进一步降低约5%(k = 2)的不确定性,而不会失去仅使用简单元件的功能。最初专用于确定在超声应用中应用的光电探测器的频率响应的技术可以转移到光学测量的其他应用领域。

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