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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Synthesis of Wideband High-Quality Factor Delay-Tunable Fully Differential All-Pass Filters
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Synthesis of Wideband High-Quality Factor Delay-Tunable Fully Differential All-Pass Filters

机译:宽带高品质因子延迟可调谐全差分全通滤波器的合成

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In this article, all possible wideband fully differential second-order voltage-mode active all-pass filters (APFs) based on a common-source differential amplifier are systematically derived using two-port network modeling techniques and symbolic math CAD tools. The proposed APF structure is based on the generic two-transistor differential-pair and all possible combinations of the surrounding impedances. In particular, 26 transfer functions and a total of 180 APF circuits, all of which can have a pole quality factor (Q) value greater than unity, are found to be possible. Hence, the proposed topology can be used to produce APFs with dispersive delay as well as flat delay for true time delay elements. The operation of some APFs is verified with simulations and a selected circuit with tunable peak delay is designed and fabricated in a 65-nm CMOS process. The implemented filter achieved a maximum peak delay of 88.4 ps at 31 GHz, a constant delay of 11.5 ps over the frequency band 5-20 GHz, and a delay Q-factor (Q(D)) value of 3.74, while consuming 1.74 mW from a 1-V supply voltage. The fabricated circuit occupies an area of 0.11x0.348 mm(2) and experimentally demonstrates an APF with the highest Q value of any published second-order APF known to the authors.
机译:本文使用双端口网络建模技术和符号数学CAD工具系统地推导了所有可能的基于共源差分放大器的宽带全差分二阶电压模式有源全通滤波器(APF)。所提出的APF结构基于通用双晶体管差分对和周围阻抗的所有可能组合。特别是,26个传递函数和总共180个APF电路,所有这些电路的极质量因数(Q)值都大于单位,是可能的。因此,所提出的拓扑结构可用于生产具有色散延迟的APF,以及真实时延元件的平坦延迟。通过仿真验证了一些 APF 的运行,并在 65nm CMOS 工艺中设计和制造了具有可调峰值延迟的选定电路。所实现的滤波器在 31GHz 时实现了 88.4ps 的最大峰值延迟,在 5-20GHz 频段上实现了 11.5ps 的恒定延迟,延迟 Q 因数 (Q(D)) 值为 3.74,同时在 1V 电源电压下功耗为 1.74mW。制造的电路占地0.11x0.348 mm(2),并通过实验证明了APF在作者已知的任何已发表的二阶APF中具有最高的Q值。

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