首页> 外文期刊>Journal of Electronic Testing: Theory and Applications: Theory and Applications >A Distortion Shaping Technique to Equalize Intermodulation Distortion Performance of Interpolating Arbitrary Waveform Generators in Automated Test Equipment
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A Distortion Shaping Technique to Equalize Intermodulation Distortion Performance of Interpolating Arbitrary Waveform Generators in Automated Test Equipment

机译:一种失真整形技术,均衡在自动测试设备中互连任意波形发生器的互调失真性能

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摘要

This paper demonstrates a phase switching algorithm for Interpolating Digital-to-Analog Converter (DAC) based Arbitrary Waveform Generator (AWG) that resides in Automated Test Equipment (ATE) to test semiconductor devices. This confirms a previous exercise that was made by experiment with different Intermodulation Distortion (IMD) suppression techniques and starting phase shifts to suppress IMD tones of the AWG with the interpolating DAC. We show that the poor performance of the AWG can be improved by using the phase switching algorithm over the installed base of a company’s tester platform. It is also shown that the IMD performance of AWGs across a company’s tester installed base can be equalized, and how it can be achieved using the phase switching technique. We describe how the IMD specifications of the instrument are much worse than those actually measured, and by using phase switching, better performance can be achieved than what would be possible under normal conditions. We present how this technique allows the use of a low-cost tester resource to test IMD products of such as communication application ADCs with a higher dynamic range than what was previously possible.
机译:本文演示了一种用于内插的基于模拟转换器(DAC)的任意波形发生器(AWG)的相位切换算法,其驻留在自动测试设备(ATE)中以测试半导体器件。这证实了通过使用不同互调失真(IMD)抑制技术和起始相位转移来抑制AWG的IMD音调与内插DAC的IMD音调进行的先前运动。我们表明,通过在公司测试仪平台的安装基础上使用相位切换算法,可以改善AWG的性能不佳。还表明,AWG在公司的测试仪安装底座上的IMD性能可以均衡,以及如何使用相位切换技术实现。我们描述了仪器的IMD规格如何比实际测量的IMD规格更差,通过使用相位切换,可以实现更好的性能,而不是在正常情况下的可能性。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诸如通信应用ADC的IMD产品,其动态范围比以前可能的更高。

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