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An Active-gm-RC Structured CMOS Analog Filter with Time Constant Auto-Tuning

机译:具有时间常数自动调谐功能的有源gm-RC结构CMOS模拟滤波器

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Based on TSMC 0.18μm 1P6M RF CMOS process, a 4th-order Butterworth analog low-pass filter (LPF) used in the transmitting link of 2.4GHz Wireless Sensor Network (WSN) radio frequency (RF) front-end is designed in this paper. In this design, active-gm-RC structure is derived, and it can achieve the same low consumption performance as the gm-C structure while have better linearity than that of the gm-C structure. Furthermore, a RC time constant auto-tuning circuit is also designed to automatically calibrate the RC time constant variation of the filter due to the variations of process corners, so the bandwidth precision of the filter is efficiently improved. The layout size of the whole filter with the auto-tuning circuit is 740μm7;880μm. With 1.8V supply voltage, post-simulation results show that as the process varies, the cut-off frequency of the filter varies very little, which means that the tuning circuit effectively calibrates the bandwidth of the filter. The out of band attenuation rate is -80dB per decade frequency, and the operating current of the core circuit of the LPF is about 0.54mA. Post-simulation results achieve the specification requirements of IEEE802.15.4/ZigBee Wireless Sensor Networks.
机译:基于TSMC0.18μm1P6M RF CMOS工艺,设计了一种用于2.4GHz无线传感器网络(WSN)射频(RF)前端的传输链路的四阶巴特沃斯模拟低通滤波器(LPF)。 。在该设计中,推导了有源gm-RC结构,它可以实现与gm-C结构相同的低功耗性能,同时具有比gm-C结构更好的线性度。此外,还设计了RC时间常数自动调谐电路,以自动校准由于工艺角的变化而引起的滤波器的RC时间常数变化,从而有效地提高了滤波器的带宽精度。带有自整定电路的整个滤波器的布局尺寸为740μm 7; 880微米。在1.8V电源电压下,后仿真结果表明,随着过程的变化,滤波器的截止频率变化很小,这意味着调谐电路可以有效地校准滤波器的带宽。带外衰减率为每十进制频率-80dB,LPF核心电路的工作电流约为0.54mA。仿真后的结果达到了IEEE802.15.4 / ZigBee无线传感器网络的规格要求。

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