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首页> 外文期刊>Telecommunications and Radio Engineering >PULSE LOGARITHMIC AMPLIFIER WITH AUTOMATIC GAIN CONTROL FOR THE FREQUENCY RANGE FROM 1 MHZ TO 8 GHZ
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PULSE LOGARITHMIC AMPLIFIER WITH AUTOMATIC GAIN CONTROL FOR THE FREQUENCY RANGE FROM 1 MHZ TO 8 GHZ

机译:具有自动增益控制的脉冲对数放大器,频率范围为1 MHZ至8 GHZ

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摘要

Today, the problem of overloading of pulse radar receivers by target return signals is of especially importance because of appearance of new kinds of radio systems of various applications. To prevent the overload, a number of techniques is used, including automatic gain control in dependence on the input signal level, separation of the dynamic range into subranges and multichannel amplification, application of amplifiers with logarithmic amplitude characteristic, etc. Good results are provided by combining a logarithmic amplification with automatic gain control of the signal level. In the paper, a pulse logarithmic amplifier with a time-transit control of the signal gain control operating in the frequency range 1 to 8 GHz is described and its functional diagram and circuit schematic are presented. A compact-size experimental mockup of the device has been developed with the use of the modern circuitry which extends essentially its application capabilities. The physical principles of selecting the necessary bandwidth, not producing distortions in the radio pulse spectra and dynamic operation mode of the time-transit automatic gain control, are considered. Experimentally obtained amplitude curves are presented. The mockup parameters are as follows: the gain factor K0 within the linear range is ~53 dB; dynamic range of the input signals makes ~55 dB; the input and output resistances are Rin ≈ Rout = 50 Ω; and supply voltages are ±12 V (current consumption 100 mA) and ±5 V (current consumption 20 mA).
机译:如今,由于出现了各种应用的新型无线电系统,目标返回信号使脉冲雷达接收机超载的问题变得尤为重要。为了防止过载,使用了多种技术,包括取决于输入信号电平的自动增益控制,将动态范围分离为子范围和多通道放大,具有对数幅度特性的放大器的应用等。将对数放大与信号电平的自动增益控制相结合。本文介绍了一种在时间范围为1至8 GHz范围内具有信号增益控制的时间转换控制的脉冲对数放大器,并给出了其功能图和电路原理图。通过使用现代电路开发了该设备的紧凑型实验模型,该电路实质上扩展了其应用能力。考虑了选择必要带宽而不在无线电脉冲频谱中产生失真的物理原理以及时移自动增益控制的动态操作模式。呈现了实验获得的振幅曲线。样机参数如下:线性范围内的增益因子K0为〜53 dB;输入信号的动态范围约为55 dB;输入和输出电阻为Rin≈Rout = 50Ω;电源电压为±12 V(电流消耗100 mA)和±5 V(电流消耗20 mA)。

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