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Massively parallel time-stretched analog-to-digital converter

机译:大规模并行时间拉伸模数转换器

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Time interleaving is an effective method for increasing the sampling rate of electronic analog-to-digital converters (ADCs). The main artifact of time-interleaved ADC (TI-ADC) is caused by mismatches between different sub-ADC channels. The mismatches include mismatches in gain, bandwidth, and frequency response. The ultimate achievable bandwidth of the TI-ADC is limited by the bandwidth of the sample-and-hold (S/H). Currently, the bandwidth of S/H constructed using electronic transistor is limited to the lower tens of GHz range. To increase the bandwidth of ADC into the upper tens of GHz range and beyond, incorporating photonic preprocessor becomes the natural choice. In this paper, we present our efforts on the implementation of a massively parallel TI-ADC with photonic preprocessor. In our system, the input signal is sampled using a mode-lock laser. The sampled pulses are stretched in optical fiber until they are long enough to be sampled by a massive array of 2 Giga-samples per second (GS/s) electronic ADC.
机译:时间交织是提高电子模数转换器(ADC)采样率的有效方法。时间交错ADC(TI-ADC)的主要伪像是由不同子ADC通道之间的不匹配引起的。失配包括增益,带宽和频率响应的失配。 TI-ADC的最终可实现带宽受到采样保持(S / H)带宽的限制。当前,使用电子晶体管构造的S / H的带宽被限制在较低的数十GHz范围。为了将ADC的带宽增加到数十GHz以上的范围,结合光子预处理器成为自然选择。在本文中,我们介绍了我们在实现具有光子预处理器的大规模并行TI-ADC方面所做的努力。在我们的系统中,使用锁模激光器对输入信号进行采样。采样脉冲在光纤中拉伸,直到它们足够长,足以被每秒2个千兆采样(GS / s)的电子ADC大规模阵列采样。

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