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A reconfigurable analog baseband circuit for WLAN, WCDMA, and Bluetooth

机译:用于WLAN,WCDMA和蓝牙的可重配置模拟基带电路

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摘要

A reconfigurable analog baseband circuit for WLAN, WCDMA, and Bluetooth in 0.35 μm CMOS is presented. The circuit consists of two variable gain amplifiers (VGA) in cascade and a Gm-C elliptic low-pass filter (LPF). The filter-order and the cut-off frequency of the LPF can be reconfigured to satisfy the requirements of various applications. In order to achieve the optimum power consumption, the bandwidth of the VGAs can also be dynamically reconfigured and some Gm cells can be cut off in the given application. Simulation results show that the analog baseband circuit consumes 16.8 mW for WLAN, 8.9 mW for WCDMA and only 6.5 mW for Bluetooth, all with a 3 V power supply. The analog baseband circuit could provide –10 to +40 dB variable gain, third-order low pass filtering with 1 MHz cut-off frequency for Bluetooth, fourth-order low pass filtering with 2.2 MHz cut-off frequency for WCDMA, and fifth-order low pass filtering with 11 MHz cut-off frequency for WLAN, respectively.
机译:提出了在0.35μmCMOS中用于WLAN,WCDMA和蓝牙的可重构模拟基带电路。该电路由两个级联的可变增益放大器(VGA)和一个Gm-C椭圆形低通滤波器(LPF)组成。 LPF的滤波器阶数和截止频率可以重新配置以满足各种应用的要求。为了实现最佳功耗,还可以动态重新配置VGA的带宽,并且在给定应用中可以切断某些Gm单元。仿真结果表明,模拟基带电路的WLAN功耗为16.8 mW,WCDMA的功耗为8​​.9 mW,而蓝牙的功耗仅为6.5 mW,均采用3 V电源供电。模拟基带电路可以提供–10至+40 dB的可变增益,用于蓝牙的具有1 MHz截止频率的三阶低通滤波,用于WCDMA的具有2.2 MHz截止频率的四阶低通滤波和用于WLAN的具有11 MHz截止频率的低阶低通滤波分别。

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