数字可编程模拟VLSI人工耳蜗的新方法及集成电路技术的实现

M. Loulou, K. Neji, C. Mabrouk, A. Fakhfakh, M. Fakhfakh, N. Masmoudi
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引用次数: 1

摘要

提出了一种新的助听器系统设计方法。它是基于使用开关电流电路来设计模拟可编程滤波器。该思想包括利用改变开关频率来控制SI电路参数的可能性。实际上,SI电路是使用数字CMOS工艺设计的,因为它只使用晶体管来执行基本的处理模块。我们的工作重点是在CMOS技术的数字控制电路的设计。我们提出了一种基于分布在8 kHz音频频带上的音频SI滤波器的假体系统。每个滤波器参数由基于数字可编程锁相环的频率合成器和开关加权增益级控制。整个系统仅采用CMOS工艺设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New approach to a digitally programmable analogue VLSI cochlea prosthesis and its implementation with SI technique
A novel approach to the design of hearing aids system is shown. It is based on the use of switched current circuit to design analogue programmable filter. The idea consists of using the possibility to control SI circuit parameter by varying switching frequency. Indeed, SI circuits are designed using digital CMOS process since it uses only transistors to perform basic processing blocks. Our effort was focused on the design of a digitally controlling circuit in CMOS technology. We proposed a prosthesis system based on a set of audio SI filters distributed on the 8 kHz audio band. Each filter parameters are controlled by a digitally programmable PLL based frequency synthesizer and a switched weighted gain stages. The whole system is designed using only CMOS process.
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