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Design of high quality factor fully-differential CMOS current conveyor for a complex filter application

机译:用于复杂滤波器应用的高质量因子全差分CMOS电流传输器的设计

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The filter proposed in this paper has an advantage of higher frequency response and better selectivity against the classical band pass filter. A Fully Differential Current (FDC) Conveyor has been designed and it uses the application of differential difference operational floating amplifier (DDOFA) and floating current source circuits. The circuit design is synthesized using 180nm CMOS technology with ±1.8V power supply in cadence virtuoso and the simulation is done using Spectre. The FDC Conveyor is to be used in the complex filter with 700MHz center frequency. Using cascading technique, another higher order complex filter at 700 MHz center frequency is proposed and it is now suitable for applications like Bluetooth receivers.The simulation results shows that the gain is programmable without altering the ‘Q’ value of the filter which makes FDC Conveyor suitable to implement as a VGA and FDC Conveyor-Based Band Pass filter is shown in our work.
机译:本文提出的滤波器具有相对于经典带通滤波器更高的频率响应和更好的选择性的优点。设计了一种全差分电流(FDC)传送带,它使用了差分差分运算浮动放大器(DDOFA)和浮动电流源电路的应用。该电路设计是采用180nm CMOS技术,具有±1.8V电源的节奏进行综合的,并使用Spectre进行了仿真。 FDC传送带将用于中心频率为700MHz的复杂滤波器中。利用级联技术,提出了另一种中心频率为700 MHz的高阶复数滤波器,该滤波器现在适用于蓝牙接收器等应用。仿真结果表明,增益是可编程的,而无需改变滤波器的“ Q”值,这使得FDC输送机我们的工作显示了适合用作VGA和FDC基于传送带的带通滤波器的方法。

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