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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >A new lock indicator circuit for microwave and millimeter-wave phase locked loops
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A new lock indicator circuit for microwave and millimeter-wave phase locked loops

机译:用于微波和毫米波锁相环的新型锁定指示器电路

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摘要

A circuit useful as a lock detector in microwave phase-locked loop (PLL) systems has been developed. This circuit avoids the quadrature phase detector or coherent amplitude detector commonly used as a lock indicator in PLLS, thereby reducing the microwave circuitry and components. It is based on the properties of the phase-error signal coming from the phase detector; a frequency-voltage conversion is performed on it in a low-frequency (secondary) PLL, the input to which is the output of the phase detector in the main (microwave) PLL. The secondary voltage-controlled oscillator (VCO) control signal gives, after a comparison, a logic level related to the lock condition in the main (microwave) PLL. This circuit has been used with success in microwave phase-locked oscillators (PLOs) in which the phase detection was made at 290 MHz, 2.55 GHz, 27 GHz and 29.7 GHz.
机译:已经开发了一种在微波锁相环(PLL)系统中用作锁定检测器的电路。该电路避免了通常用作PLLS锁定指示器的正交相位检测器或相干幅度检测器,从而减少了微波电路和组件。它基于来自相位检测器的相位误差信号的特性。在低频(次级)PLL中对其进行频率-电压转换,输入是主(微波)PLL中的鉴相器的输出。经过比较,次级压控振荡器(VCO)控制信号给出与主(微波)PLL中的锁定条件相关的逻辑电平。该电路已成功用于微波锁相振荡器(PLO),其中的相位检测在290 MHz,2.55 GHz,27 GHz和29.7 GHz进行。

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