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首页> 外文期刊>Circuits and Systems I: Regular Papers, IEEE Transactions on >A Wideband Inductorless dB-Linear Automatic Gain Control Amplifier Using a Single-Branch Negative Exponential Generator for Wireline Applications
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A Wideband Inductorless dB-Linear Automatic Gain Control Amplifier Using a Single-Branch Negative Exponential Generator for Wireline Applications

机译:使用单分支负指数发生器的有线应用宽带无电感dB线性自动增益控制放大器

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This paper reports a wideband inductorless automatic gain control (AGC) amplifier for wireline applications. To realize a dB-linear AGC range, a pseudo-folded Gilbert cell driven by a single-branch negative exponential generator (NEG) is proposed as the core variable-gain amplifier. The NEG features a composite of dual Taylor series to extend the AGC approximation range without sacrificing the precision. Fabricated in 65-nm CMOS, the AGC amplifier occupies a tiny die area of 0.045 mmn2nand consumes 28 mW at 1.2 V. Measured over a dB-linear gain range of ~40 dB, < ± 1 dB gain error is achieved and the 3-dB bandwidth stays roughly constant at 7 GHz. For the closed-loop AGC measurement, the input dynamic range is ~40 dB (10 mVnppnto 1 Vnppn) for a BER <10n−12nunder a 2n7n− 1 PRBS data at 10 Gb/s. The achieved figure-of-merit (FOM) of 2.8 pJ/bit compares favorably with state-of-the-art.
机译:本文报道了一种用于有线应用的宽带无电感器自动增益控制(AGC)放大器。为了实现dB线性AGC范围,提出了由单分支负指数发生器(NEG)驱动的伪折叠吉尔伯特单元作为核心可变增益放大器。 NEG具有双重泰勒级数的合成,可在不牺牲精度的情况下扩展AGC近似范围。 AGC放大器采用65纳米CMOS制造,占用的芯片面积仅为0.045毫米。2n在1.2 V时消耗28 mW的功率。在〜40 dB的dB线性增益范围内测得的增益误差为<±1 dB,3 dB带宽在7 GHz时大致保持恒定。对于闭环AGC测量,输入动态范围约为40 dB(10 mVn ppnto 1 Vn ppn),用于BER <10n −12 在2n 7 n-1 PRBS数据,速率为10 Gb / s。所达到的2.8 pJ / bit的品质因数(FOM)与最新技术水平相比具有优势。

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