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A technique for dynamic range improvement of intermodulation distortion products for an Interpolating DAC-based Arbitrary Waveform Generator using a phase switching algorithm

机译:一种用于使用相位切换算法的内插DAC基任意波形发生器的互调失真产品的动态范围改进技术

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This paper describes a phase switching algorithm for Interpolating Digital-to-Analog Converter (DAC) based Arbitrary Waveform Generators (AWG). This was possible by using the standard phase switching algorithm with the addition of simple phase offset and systematic phase difference adjustment; this was discovered by experimenting with suppression of the intermodulation distortion (IMD) components of a two-tone signal. In this case, we examine the 3rd, 5th and 7th order IMD tones and the effect of the phase switching algorithm and phase shift has on the AWG by measurement with a digitizer. Then we show what the effect of the developed two-tone phase switching technique has upon the performance measurement of a 16-bit Analog-to-Digital Converter (ADC). It is shown that using the original algorithm, no improvement could be achieved for the odd order IMD products. However, by using an even order suppression technique (another phase difference) with a phase shift, a suppression was achieved compared to the standard two-tone signal generation (without phase switching). We show how this technique allows the use of a low-cost tester resource to test IMD products with a higher dynamic range than was previously possible.
机译:本文介绍了一种基于数字到模拟转换器(DAC)的任意波形发生器(AWG)的相位切换算法。通过使用标准相位切换算法进行简单相位偏移和系统相位差调节,这是可能的。通过尝试抑制双音信号的互调失真(IMD)组分来发现这一点。在这种情况下,我们检查第3,第5和第7阶IMD音调,并且通过用数字转换器测量,相位切换算法和相移算法的效果和相移。然后,我们展示了开发的双色相位切换技术对16位模数转换器(ADC)的性能测量的效果。结果表明,使用原始算法,对于奇数IMD产品,可以实现没有改进。然而,通过使用相移均衡抑制技术(另一相位差),与标准双音信号产生(没有相位切换),实现了抑制。我们展示了该技术如何允许使用低成本测试仪资源来测试具有比以前可能的动态范围更高的IMD产品。

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