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A High-Performance CMOS Feedforward AGC Circuit for a WLAN Receiver

机译:用于WLAN接收器的高性能CMOS前馈AGC电路

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This paper presents a fast-settling compact feedforward automatic-gain-control (AGC) circuit suitable for use in wireless local-area network receivers with orthogonal frequency-division multiplexing (OFDM). The use of these signals introduces stringent settling-time constraints which limit the use of traditional closed-loop feedback amplifiers. Furthermore, the amplitude detection of OFDM signals cannot be performed by a typical peak detector (PD) due to their high peak-to-average power ratio; as a consequence, a novel fast-settling PD is employed to solve this task. The AGC has been implemented in a low-cost 0.35-$muhbox{m}$ CMOS technology. Supplied at 1.8 V, it operates with a power consumption of 2.4 mW at frequencies as high as 100 MHz, while its gain ranges from 0 to 22 dB in 2-dB steps through a 5-b word. The settling time of the circuit is below 2.4 $muhbox{s}$ (three symbols).
机译:本文提出了一种快速沉降的紧凑型前馈自动增益控制(AGC)电路,适用于具有正交频分复用(OFDM)的无线局域网接收器。这些信号的使用引入了严格的建立时间限制,从而限制了传统闭环反馈放大器的使用。此外,由于OFDM信号的峰均功率比很高,因此无法通过典型的峰值检测器(PD)进行幅度检测。结果,采用了一种新型的快速沉降PD来解决该任务。 AGC已在低成本的0.35- $ muhbox {m} $ CMOS技术中实现。它的电源电压为1.8 V,在高达100 MHz的频率下功耗为2.4 mW,增益范围为0至22 dB,通过5 b字以2 dB为步长。电路的建立时间低于2.4 $ muhbox {s} $(三个符号)。

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