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Concurrent Acquisition Approach for High Resolution Sensor Arrays

机译:高分辨率传感器阵列的并发采集方法

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An increasing amount of sensor applications require multiple data acquisition with high resolution in truly parallel fashion. This requirement is particularly useful in the field of Nanotechnology where concurrent acquisition is required to understand the correlation between weak stochastic events. In this paper, we will propose a sensor array readout approach where synchronous sigma-delta converters are interfacing each sensing point and whose outputs are concurrently downsampled by dedicated hardware for decimation processing. The approach shows the following advantages: on the one hand the sigma-delta conversion ensures high resolution and linearity (>12 bits), on the other, the 1-bit output allows easier routing access to the array. The approach is particularly useful in the presence of very low signals where direct raster-mode switching access to the array would compromise the signal-to-noise ratio of the readout process. As a proof of this concept, the approach is applied to an array of lipid bilayer membranes (BLMs) permitting to acquire and display single molecule event data by means of a PC-based graphical user interface (GUI).
机译:越来越多的传感器应用要求以真正的并行方式进行高分辨率的多数据采集。在需要并发采集以了解弱随机事件之间的相关性的纳米技术领域,此要求特别有用。在本文中,我们将提出一种传感器阵列读出方法,其中同步sigma-delta转换器与每个感测点接口,并且其输出同时通过专用硬件进行下采样以进行抽取处理。该方法具有以下优点:一方面,sigma-delta转换可确保高分辨率和线性(> 12位),另一方面,1位输出可简化对阵列的路由访问。该方法在信号非常低的情况下特别有用,在这种情况下,直接光栅模式切换访问阵列会损害读出过程的信噪比。作为该概念的证明,该方法被应用于脂质双层膜(BLM)阵列,该脂质双层膜允许通过基于PC的图形用户界面(GUI)来获取和显示单分子事件数据。

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