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Frequency and Phase Modulation Performance of an Injection-Locked CW Magnetron

机译:注入锁定连续磁控管的频率和相位调制性能

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It is demonstrated that the output of a 2.45-GHz magnetron operated as a current-controlled oscillator through its pushing characteristic can lock to injection signals in times of the order of 100-500 ns depending on injection power, magnetron heater power, load impedance, and frequency offset of the injection frequency from the natural frequency of the magnetron. Accordingly, the magnetron can follow frequency and phase modulations of the injection signal, behaving as a narrow-band amplifier. The transmission of phase-shift-keyed data at 2 Mb/s has been achieved. Measurements of the frequency response and anode current after a switch of phase as a function of average anode current and heater power give new insight into the locking mechanisms and the noise characteristics of magnetrons.
机译:已证明,通过其推动特性,作为电流控制振荡器工作的2.45-GHz磁控管的输出可根据注入功率,磁控管加热器功率,负载阻抗,约100-500 ns的时间锁定注入信号。注入频率与磁控管固有频率之间的频率偏移。因此,磁控管可以像窄带放大器那样遵循注入信号的频率和相位调制。已经实现了2 Mb / s的相移键控数据传输。根据平均阳极电流和加热器功率的变化,对相位转换后的频率响应和阳极电流进行测量,使人们对磁控管的锁定机理和噪声特性有了新的认识。

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