Coherent (I/Q) Detector Performance Under Extended Drive Signal Conditions

G. Bright, R. Macior, H. Schuman
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Abstract

Procedures are needed for accurate and efficient testing of large quantities of microwave amplifier/digital phase shifter devices under a wide variety of signal and environment conditions. Pulsed conditions, in particular, preclude the use of conventional automatic network analyzers. A method is investigated for applying direct detection (no local oscillator) I/Q detectors to obtain accurate phase measurements without the need for leveling input signals. The investigation focuses on identifying the minimum amount of measured calibration data required to reduce uncertainties in measured phase to less than 1°. A mathematical model of the device is developed that contains parameters that can be defined from a limited amount of calibration data. Once defined, the model then can be used to determine the device error for a wide range of signal amplitudes and phases. Data obtained with an Anaren phase discriminator is presented as an illustration of the method.
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扩展驱动信号条件下相干(I/Q)检测器的性能
程序需要在各种各样的信号和环境条件下对大量微波放大器/数字移相器器件进行准确和有效的测试。脉冲条件,特别是,排除了传统的自动网络分析仪的使用。研究了一种应用直接检测(无本振)I/Q检测器而无需调平输入信号即可获得精确相位测量的方法。调查的重点是确定将测量阶段的不确定度降低到小于1°所需的最小测量校准数据量。建立了该装置的数学模型,其中包含可以从有限数量的校准数据定义的参数。一旦定义,该模型就可以用于确定一个大范围的信号幅度和相位的器件误差。用Anaren鉴相器获得的数据作为该方法的例证。
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A Calibration Method for De-Embedding a Microwave Test Fixture Preliminary Results of a Time-Harmonic Electromagnetic Analysis of Shielded Microstrip Circuits Techniques for Pulsed Microwave Measurements New RF Test Methods Using Waveform Synthesis from Digital Data In Search of a More Realistic Accuracy Statement for Microwave Metrology
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