脉冲分布波形发生器的设计

S. Janaki, S. Yellampalli
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引用次数: 3

摘要

介绍了一种产生超宽带脉冲的脉冲分布波形发生器的设计与实现。产生的超宽带脉冲的频率范围为1GHz到8GHz。它使用时间交错脉冲发生器来产生脉冲。触发信号以指定的延迟提供给时间交错脉冲发生器。频率变化是通过调整触发延迟以及调整所产生脉冲的宽度来实现的。触发延迟从30ps变化到100ps,脉冲宽度从80ps变化到1ns。所产生的脉冲由脉冲整形电路进行整形,该电路执行脉冲幅度调谐。产生的脉冲通过片上传输线进行组合,既减少了损耗,又增加了带宽。该电路的能量效率为15pJ/脉冲,比现有系统低得多。通过在现有系统中引入低电压电流反射镜来降低电路的电压水平,从而降低功耗。基带数据可以直接用作触发信号,这解释了OOK调制能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of impulse distributed waveform generator
This paper presents the design and implementation of impulse distributed waveform generator which generates Ultra Wide Band pulses. The generated Ultra Wide Band pulses are in the frequency range of 1GHz to 8GHz. It uses time-interleaved impulse generators to generate the impulses. The trigger signal is supplied to the time-interleaved impulse generators with a specified delay. Frequency variation is achieved by tuning the trigger delay as well as tuning the width of the impulses generated. The trigger delay is varied from 30ps to 100ps, and the width of an impulse is varied from 80ps to 1ns. The generated impulses are shaped by a pulse shaping circuit, which performs pulse amplitude tuning. The generated impulses are combined using on-chip transmission line, which reduces the loss, as well as increase the bandwidth. The energy efficiency of the circuit is 15pJ/pulse which is considerably lesser than the existing system. Power consumption is reduced by introducing low voltage current mirror to the existing system which reduces the voltage levels of the circuit. The baseband data can be directly used as the trigger signal which explains OOK modulation capabilities.
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