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The design of a new wideband and low-power CMOS active polyphase filter for low-IF receiver applications

机译:针对低中频接收器应用的新型宽带低功耗CMOS有源多相滤波器的设计

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This work presents a new technique to implement an active polyphase filter. In this design, the currents mirrored from capacitors and transistors realize the high-pass and low-pass signals, respectively. The multi-stage structure, which is commonly used in RC networks, expands the frequency bandwidth. Furthermore, a constant-gm bias circuit is used to decrease the sensitivities of gain and bandwidth to temperature and process variations. HSPICE is simulated to confirm the performances. The voltage gain is 8.1 dB and THD is -48 dB when a 20 MHz, 100 mV quadrature signal is applied. The image-rejection ratio exceeds 60 dB over the frequency range of 15.4 MHz /spl sim/ 44.6 MHz. The polyphase filter is implemented with 0.18 /spl mu/m CMOS technology and the power dissipation is 6.85 mW with a 1.8 V power supply. Simulations of various corners and temperatures show that the variations in gain and frequency are effectively controlled.
机译:这项工作提出了一种实现有源多相滤波器的新技术。在这种设计中,从电容器和晶体管镜像的电流分别实现高通和低通信号。 RC网络中常用的多级结构扩展了频率带宽。此外,恒定gm偏置电路用于降低增益和带宽对温度和工艺变化的敏感度。对HSPICE进行仿真以确认性能。当施加20 MHz,100 mV正交信号时,电压增益为8.1 dB,THD为-48 dB。在15.4 MHz / spl sim / 44.6 MHz的频率范围内,镜像抑制比超过60 dB。多相滤波器采用0.18 / spl mu / m CMOS技术实现,使用1.8 V电源时的功耗为6.85 mW。对各种拐角和温度的仿真表明,增益和频率的变化得到了有效控制。

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