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Optimization Methods and Circuit Topologies for Low-Power Analog Filters

机译:低功耗模拟滤波器的优化方法和电路拓扑

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This paper presents several solutions for reducing the power consumption of analog filters, from optimizing their transfer functions using tailored genetic algorithms to novel circuit topologies and effective transistor-level implementations. First, transfer functions are obtained that provide same attenuation as their classical-approximation counterparts, but have lower order; next, the transfer function of a cascaded filter is optimized considering implementation-related requirements, such as minimizing the quality factor of the biquads; next, an effective way to implement tunable single-OA biquads is presented. As an application, the design of the channel filter for a Zero-IF UWB receiver, with 250MHz cut-off frequency and over 30dB rejection of the 530 MHz blocker, is briefly discussed.
机译:本文介绍了几种用于减少模拟滤波器的功耗的解决方案,从优化其传输功能,使用量身定制的遗传算法与新型电路拓扑和有效的晶体管级实现。首先,获得传递函数,其提供与其经典近似对应物相同的衰减,但具有较低的顺序;接下来,考虑到实现相关的要求,优化级联滤波器的传递函数,例如最小化销售的质量因数;接下来,提出了实现可调调谐单OA双层的有效方法。作为应用,简要讨论了零 - UWB接收器的频道滤波器的设计,具有250MHz截止频率和超过530MHz阻塞器的抑制。

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