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Accurate Spectral Testing with Impure Test Stimulus for Multi-tone Test

机译:具有不纯测试刺激的精确光谱测试,用于多色调测试

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Analog-to-Digital Converters (ADCs) are among one of the world's largest volume devices. ADCs are a necessary, vital mixed-signal integrated circuit (IC) component in almost every electrical device and system. One of the challenge is to accurately and cost-effectively test the continually better performance ADCs. For spectral testing of the ADC, one of the goals is to obtain dynamic performance of the ADC under test. The conventional test has become extremely difficult to implement accurately and cost-effectively, since the test stimulus to the ADC must have an even better purity than ADC under test with continuously higher performance. In addition, multi-tone tests require harmonics and spur, as well as the intermodulation must be accurately tested without influence from impure test stimuli. To resolve this issue, this paper proposes a new method. This method uses the low purity test stimulus instead of a high precision test stimulus, passes the signal to two different cost-effective filters, and the output signals are then sampled by the ADC, by separating the nonlinearity from the source, the true ADC nonlinearity is accurately estimated. And the dynamic performance of the ADC under test can be obtained. Extensive simulation results validate the functionality and robustness of the proposed method with different levels of impure test stimulus and different types or resolutions of the ADC under test. The proposed method greatly reduces the requirements on the test stimulus and is implemented into the board level or on-chip high performance ADC spectral testing and characterization.
机译:模数转换器(ADCS)是世界上最大的批量设备之一。 ADC是几乎每个电气设备和系统中的必要的重要混合信号集成电路(IC)组件。其中一个挑战是准确且成本有效地测试不断更好的性能ADC。对于ADC的频谱测试,其中一个目标是获得被测ADC的动态性能。传统的测试变得非常难以准确地实施,因为ADC的测试刺激必须具有比ADC的甚至更好,并且具有不断更高的性能。此外,多色调测试需要谐波和刺激,并且必须准确地测试互调,而不会影响不纯的测试刺激。要解决此问题,本文提出了一种新方法。该方法使用低纯度测试刺激而不是高精度测试刺激,将信号传递给两个不同的经济有效的滤波器,然后通过分离来自源的非线性的ADC采样输出信号,真正的ADC非线性准确估计。可以获得正在测试的ADC的动态性能。广泛的仿真结果验证了具有不同水平的纯度测试刺激和抗ADC的不同类型或分辨率水平的所提出的方法的功能和鲁棒性。所提出的方法大大降低了对测试刺激的要求,并实现为板级或片上高性能ADC光谱测试和表征。

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