首页> 外文学位 >Fully Differential Difference Amplifier based Microphone Interface Circuit and an Adaptive Signal to Noise Ratio Analog Front end for Dual Channel Digital Hearing Aids.
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Fully Differential Difference Amplifier based Microphone Interface Circuit and an Adaptive Signal to Noise Ratio Analog Front end for Dual Channel Digital Hearing Aids.

机译:基于全差分放大器的麦克风接口电路,以及用于双通道数字助听器的自适应信噪比模拟前端。

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摘要

A dual-channel directional digital hearing aid (DHA) front-end using a fully differential difference amplifier (FDDA) based Microphone interface circuit (MIC) for a capacitive Micro Electro Mechanical Systems (MEMS) microphones and an adaptive-power analog font end (AFE) is presented.;The Microphone interface circuit based on FDDA converts the capacitance variations into voltage signal, achieves a noise of 32 dB SPL (sound pressure level) and an SNR of 72 dB, additionally it also performs single to differential conversion allowing for fully differential analog signal chain. The analog frontend consists of 40dB VGA and a power scalable continuous time sigma delta ADC, with 68dB SNR dissipating 67uW from a 1.2V supply. The ADC implements a self calibrating feedback DAC, for calibrating the 2nd order non-linearity. The VGA and power scalable ADC is fabricated on 0.25 um CMOS TSMC process.;The dual channels of the DHA are precisely matched and achieve about 0.5dB gain mismatch, resulting in greater than 5dB directivity index. This will enable a highly integrated and low power DHA.
机译:双通道定向数字助听器(DHA)前端,使用基于全差分放大器(FDDA)的麦克风接口电路(MIC),用于电容式微机电系统(MEMS)麦克风和自适应电源模拟字体端(基于FDDA的麦克风接口电路将电容变化转换为电压信号,实现32 dB SPL(声压级)的噪声和SNR 72 dB的SNR,此外,它还执行了单到差分转换,从而实现了全差分模拟信号链。模拟前端由40dB VGA和可扩展功率的连续时间sigma delta ADC组成,具有1.2dB电源消耗的67uW的68dB SNR。 ADC实现了自校准反馈DAC,用于校准2阶非线性。 VGA和可扩展功率的ADC采用0.25 um CMOS TSMC工艺制造。DHA的双通道精确匹配,并实现约0.5dB的增益失配,从而导致大于5dB的方向性指标。这将实现高度集成的低功耗DHA。

著录项

  • 作者

    Naqvi, Syed Roomi.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Biomedical.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 97 p.
  • 总页数 97
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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