Design methodology of an audio sensor system using switched-current cells

J. Santana, F. Sandoval-Ibarra, I. Grout
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Abstract

This paper describes the design and simulation of a current-mode filter that is to be part of an application specific integrated circuit (ASIC) for signal conditioning the input from an audio sensor. Such filters may be used in electronic systems where sensors are used to measure physical parameters in order to provide information to the human user. The filter design described in this paper is based on switched-current (SI) design techniques (in particular a biquadratic filter is implemented for this design). With the SI design technique, variations in current values may be achieved with relatively small variations in nodal voltage. In addition, the power supply requirements and fabrication cost will be two considerations for the final choice of implementation method. In this study, current-mode design techniques are used for its suitability in low voltage operation and the ability to create analogue signal conditioning circuitry using a standard digital CMOS fabrication process. This ability to utilize a digital fabrication process may result in a lower cost solution than using an analogue fabrication process.
使用开关电流单元的音频传感器系统的设计方法
本文描述了一个电流模式滤波器的设计和仿真,该滤波器是专用集成电路(ASIC)的一部分,用于对音频传感器的输入进行信号调理。这种滤波器可用于电子系统中,其中传感器用于测量物理参数以便向人类用户提供信息。本文中描述的滤波器设计基于开关电流(SI)设计技术(特别是在该设计中实现了双二次滤波器)。使用SI设计技术,可以通过节点电压相对较小的变化来实现电流值的变化。此外,电源要求和制造成本将是最终选择实施方法的两个考虑因素。在本研究中,电流模式设计技术适用于低电压操作,并且能够使用标准的数字CMOS制造工艺创建模拟信号调理电路。这种利用数字制造工艺的能力可能导致比使用模拟制造工艺成本更低的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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