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Design of Voltage Mode Electronically Tunable First Order All Pass Filter in ±0.7 V 16 nm CNFET Technology

机译:电压模式设计电子调谐首次订购全通滤波器±0.7 V 16 NM CNFET技术

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摘要

A novel voltage mode first order active only tuneable all pass filter (AOTAPF) circuit configuration is presented. The AOTAPF has been designed using ±0.7 V, 16 nm carbon nanotube field effect transistor (CNFET) Technology. The circuit uses CNFET based varactor and unity gain inverting amplifier (UGIA). The presented AOTAPF is realized with three N-type CNFETs and without any external passive components. It is to be noted that the realized circuit uses only two CNFETs between its supply-rails and thus, suitable for low-voltage operation. The electronic tunability is achieved by varying the voltage controlled capacitance of the employed CNFET varactor. By altering the varactor tuning voltage, a wide tunable range of pole frequency between 34.2 GHz to 56.9 GHz is achieved. The proposed circuit does not need any matching constraint and is suitable for multi-GHz frequency applications. The presented AOTAPF performance is substantiated with HSPICE simulation program for 16 nm technology-node, using the well-known Stanford CNFET model. AOTAPF simulation results verify the theory for a wide frequency-range.
机译:提出了一种新型电压模式的第一阶Active仅调谐所有通道滤波器(AOTAPF)电路配置。 AOTAPF已经设计使用±0.7 V,16nm碳纳米管场效应晶体管(CNFET)技术。该电路采用基于CNFET的变容二极管和UNITITE GANT反相放大器(UGIA)。呈现的AOTAPF用三个n型CNFET实现,无需任何外部无源部件。应注意,实现的电路仅在其供应轨之间使用两个CNFET,因此适用于低压操作。通过改变所采用的CNFET变容二极管的电压控制电容来实现电子可调性。通过改变变量调谐电压,实现了34.2GHz至56.9 GHz之间的宽度可调范围。所提出的电路不需要任何匹配约束,适用于多GHz频率应用。使用众所周知的Stanford CNFET模型,通过HSPICE仿真程序执行了呈现的AOTAPF性能。 AOTAPF仿真结果验证了广泛频率范围的理论。

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