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The design of wideband and low-power CMOS active polyphase filter and its application in RF double-quadrature receivers

机译:宽带低功耗CMOS有源多相滤波器的设计及其在RF双正交接收机中的应用

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In this work, a new technique to implement the transfer function of polyphase filter with CMOS active components is proposed and analyzed. In the proposed polyphase filter structure, the currents mirrored from capacitors and the transistors in a single-stage are used to realize high-pass and low-pass functions, respectively. The multistage structure expands the frequency bandwidth to more than 20 MHz. Furthermore, a constant-gm bias circuit is employed to decrease the sensitivity of image rejection to temperature and process variations. HSPICE simulations are performed to confirm the performance. With the current-mode operation, the low-voltage version of proposed active polyphase filters was designed. It can be operated at 1-V power supply with similar performance but with only 50% of the power dissipation of the normal-voltage version. The proposed four-stage polyphase filter is fabricated in 0.25-μm CMOS 1P5M technology. The measured image rejection ratio is higher than -48 dB at frequencies of 6.1 MHz~30 MHz. The measured voltage gain is 6.6 dB at 20 MHz and IIP3 is 8 dBm. The power dissipation is 11 mW at a supplied voltage of 2.5 V and the active chip area is 1162×813 μm2.
机译:在这项工作中,提出并分析了一种实现具有CMOS有源元件的多相滤波器的传递函数的新技术。在所提出的多相滤波器结构中,从电容器和晶体管中镜像的电流在单级中分别用于实现高通和低通功能。多级结构将频率带宽扩展到20 MHz以上。此外,采用恒定gm偏置电路来降低图像抑制对温度和工艺变化的敏感性。执行HSPICE仿真以确认性能。通过电流模式操作,设计了建议的有源多相滤波器的低压版本。它可以在具有类似性能的1V电源上工作,但功耗仅为普通电压版本的50%。拟议的四级多相滤波器采用0.25μmCMOS 1P5M技术制造。在6.1 MHz〜30 MHz的频率下,测得的镜像抑制比高于-48 dB。在20 MHz时测得的电压增益为6.6 dB,IIP3为8 dBm。供电电压为2.5 V时,功耗为11 mW,有源芯片面积为1162×813μm2。

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