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Compact, ultra low power, programmable continuous-time filter banks for feedback cancellation in hearing aid

机译:紧凑,超低功耗,可编程连续时间滤波器组,可消除助听器中的反馈

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This paper describes the design of a compact, ultra low power continuous time programmable filter. Compact programmable filters are required for a number of applications. A particular application is in feedback cancellation filters in hearing aids. Here, a feedback cancellation filter that matches the open loop transfer function is used to suppress acoustic oscillations. Because of the complexity of the transfer function the number of poles in the cancellation filter is fairly large. To realize an integrated cancellation filter an ultra-low power transconductance cell with large linear range has been designed. Both measurement and simulation results are presented to confirm our design. The power consumption for a transconductance cell is comparable to the theoretical minimum bound and is measured to be 0.8 /spl mu/W at a 3 V supply. The linear input range for this cell is 2 V/sub p-p/. In this paper we also compare our design with a programmable switched capacitor implementation and show that there is a significant savings in area as well. The complete filter has been designed, implemented and fabricated in an 2 /spl mu/ CMOS technology.
机译:本文介绍了一种紧凑型,超低功耗连续时间可编程滤波器的设计。紧凑的可编程滤波器是许多应用所必需的。特定的应用是助听器中的反馈消除滤波器。此处,与开环传递函数匹配的反馈消除滤波器用于抑制声波振荡。由于传递函数的复杂性,抵消滤波器中的极点数量很大。为了实现集成抵消滤波器,设计了具有大线性范围的超低功率跨导单元。同时提供了测量结果和仿真结果,以确认我们的设计。跨导电池的功耗与理论上的最小界限相当,在3 V电源下测得的功耗为0.8 / spl mu / W。该电池的线性输入范围是2 V / sub p-p /。在本文中,我们还将我们的设计与可编程开关电容器实现方案进行了比较,并表明在面积上也有很大的节省。完整的滤波器采用2 / spl mu / CMOS技术进行设计,实现和制造。

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