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The impulse modulator. Initial studies in a strobe and negative feed-back method applied to the design of an amplitude modulator of great linearity

机译:脉冲调制器。频闪和负反馈方法的初步研究应用于大线性度的幅度调制器的设计

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A feed-back circuit is discussed wherein the anode current flowing in a valve is made almost exactly proportional to its anode potential. Sharp pulses at r.f. are now applied suitably so that the valve becomes intermittently cut-off. The amplitude of each anode current pulse is proportional to the instantaneous anode potential which is controlled by the modulating signal. A resonant load in series with the valve extracts the modulated r.f. signal. A simple circuit elaboration is discussed which permits 100 per cent, depth without the necessity for residual carrier neutralization. Since the r.f. oscillator and the modulator are quite separate, there is zero frequency modulation. A circuit of the above type is treated both theoretically and experimentally, with special reference to harmonic distortion in the output carrier, modulation efficiency and linearity, and the effect of pulse mark/space ratio. A complete quantitative theory, enabling the degree of modulation linearity to be computed, has not yet been worked out but the paper gives a clear physical treatment of this matter and indicates how an estimate of the distortion may be made. The importance of this modulator lies in the fact that its linearity may be made arbitrarily high by processes which are physically very clear and not dependent on subtle aspects of valve characteristics. The efficiency falls as the linearity is increased but not to such an extent as to deprive the circuit of practical use for many purposes. Furthermore it seems probable that circuit constants can be adjusted so that fairly high modulation linearity can be achieved at high efficiency by cancellation of two opposing forms of distortion. This development is not pursued here.
机译:讨论了一种反馈电路,其中使阀中流动的阳极电流几乎正好与其阳极电位成正比。射频锐利脉冲现在可以适当地使用阀门,以使阀门断断续续地切断。每个阳极电流脉冲的幅度与由调制信号控制的瞬时阳极电位成正比。与阀门串联的谐振负载提取调制后的r.f.信号。讨论了一种简单的电路结构,该电路结构允许100%的深度,而无需残留载流子中和。自从振荡器和调制器非常分开,存在零频率调制。在理论上和实验上都对上述类型的电路进行了处理,特别要注意输出载波中的谐波失真,调制效率和线性度以及脉冲标记/间隔比的影响。尚无法解决一个完整的定量理论,该理论可以计算出调制线性度,但是本文对此问题给出了明确的物理处理方法,并指出了如何估计失真。该调节器的重要性在于以下事实:通过物理上非常清楚并且不依赖于阀特性的微妙方面的过程,可以任意提高其线性度。效率随着线性度的增加而下降,但不会达到使电路不能用于许多目的的程度。此外,似乎可以调节电路常数,从而可以通过消除两种相反形式的失真来高效地获得相当高的调制线性度。这里不追求这种发展。

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