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An analog correlator based CMOS analog front end with digital gain control circuit for hearing aid devices

机译:基于模拟相关器的CMOS模拟前端,具有用于助听器的数字增益控制电路

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In this paper, an analog correlator based analog front end with gain control circuit for hearing aid devices is designed and fabricated with 0.18 mu m CMOS process. The proposed analog front end consists of an analog correlator comprised of a multiplier, an integrator, and a mixed mode variable gain amplifier. The analog correlator is utilized to ensure the low input referred noise. A gain control circuit is implemented in variable gain amplifier. Based on the output of piezoelectric micro-phone, designed gain control circuit automatically sets the gain. The investigated analog front end offers lower noise and wider dynamic range with compact size compared to conventional architecture. It achieves a 42 nV(rms) input referred noise and 84 dB signal to noise ratio. The total area of the designed analog front end circuit is 386 mu m x 569 mu m. Designed circuit is interfaced with a sensor model of piezoelectric microphone and its performance is successfully verified against simulation results.
机译:在本文中,设计和制造了一种基于增益控制电路的基于模拟相关性的模拟前端,并制造了0.18 mu M CMOS工艺。所提出的模拟前端由模拟相关器组成,该模拟相关器包括乘法器,积分器和混合模式可变增益放大器。模拟相关器用于确保低输入引用噪声。增益控制电路以可变增益放大器实现。基于压电微手机的输出,设计的增益控制电路自动设置增益。与传统架构相比,调查的模拟前端提供更低的噪音和更宽的动态范围,尺寸紧凑。它实现了42 nV(RMS)输入的引用噪声和84dB信号到噪声比。设计的模拟前端电路的总面积为386μmx 569 mu m。设计电路与压电麦克风的传感器模型接口,其性能成功地针对模拟结果验证。

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