Kurikov S F, Prilutskiĭ D A, Selishchev S V
Med Tekh. 1997 Jul-Aug(4):7-10.
With advances in the manufacture of super great integrated circuits, a commercially available element base that realizes the sigma-delta (sigma-delta) analog-to-digital conversion principle in one microcircuit has appeared. The sigma-delta analog-to-digital converters (ADC) have a high resolving power (above 12 bits), they are largely based on the signal digital filtration principles, which may moderate requirements for the analog filtration of signals and use direct-current amplifiers as alternatives to instrument ones. For electrocardiograph operation, the sigma-delta ADC of an AD 7716 (Analog Devices) with 22 bits were used in this study. The use of sigma-delta ADC in the electrocardiographs has been shown to be a rather useful alternative of traditional ADC. Moreover, sigma-delta ADC may be also useful for other systems for collecting and processing biomedical signals which are close in their requirements for a frequency range and a dynamic range, i.e. encephalographic, myographic, rheographic and other input signals.
随着超大型集成电路制造技术的进步,一种在单个微电路中实现∑-△(sigma-delta)模数转换原理的商用元件库已经出现。∑-△模数转换器(ADC)具有高分辨率(高于12位),它们很大程度上基于信号数字滤波原理,这可以降低对信号模拟滤波的要求,并使用直流放大器替代仪表放大器。在本研究中,使用了具有22位的AD 7716(模拟器件公司)的∑-△ADC用于心电图操作。在心电图仪中使用∑-△ADC已被证明是传统ADC的一种相当有用的替代方案。此外,∑-△ADC对于其他收集和处理生物医学信号的系统也可能有用,这些系统在频率范围和动态范围的要求上相近,即脑电图、肌电图、血流图和其他输入信号。