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Optimal Low Power Complex Filters

机译:最佳低功耗复合滤波器

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摘要

Realizations of voltage-mode and current-mode complex filters based on transconductance, transresistance, and current amplifiers for intermediate frequency (IF) applications are systematically developed. Various amplifiers are realized utilizing the second generation current conveyor (CCII) to promote comparisons at device levels. The adopted approach shows that the most efficient designs in terms of the number of active components are current-mode filters based on the transconductance and current amplifiers. As an application example, a 4th-order complex filter based on the CA is designed for low-IF Bluetooth receiver. Fabricated in a standard 0.18 $mu$m CMOS technology, experimental results show that the proposed design offers improved characteristics over the available solutions in terms of power consumption and spurious-free dynamic range (SFDR). The filter exhibits in-band SFDR of 65.8 dB while consuming 1 mW.
机译:系统开发了基于跨导,跨阻和中频(IF)应用的电流放大器的电压模式和电流模式复合滤波器的实现。利用第二代电流传送器(CCII)来实现各种放大器,以促进器件级的比较。采用的方法表明,就有源元件数量而言,最有效的设计是基于跨导和电流放大器的电流模式滤波器。作为一个应用示例,为低中频蓝牙接收器设计了基于CA的四阶复数滤波器。实验结果表明,采用标准的0.18μmCMOS技术制造的该设计在功耗和无杂散动态范围(SFDR)方面比现有解决方案具有更好的特性。该滤波器的带内SFDR为65.8 dB,而功耗为1 mW。

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