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A Low-Power Gigabit CMOS Limiting Amplifier Using Negative Impedance Compensation and Its Application

机译:负阻抗补偿的低功耗千兆CMOS限幅放大器及其应用

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This paper presents a low-power, gigabit limiting amplifier (LA) for application to optical receivers that employ the negative impedance compensation technique not only to enhance the gain and bandwidth characteristics simultaneously, but also to allow low-voltage, low-power operations. Test chips of the LA were implemented in a standard 0.18-$mu$ m CMOS process, demonstrating 2.5-Gb/s operation with 40-dB gain, 0.053-UI rms jitter for $2^{31}-1$ pseudorandom bit sequence inputs, 9.5-mV $_{rm pp}$ input sensitivity for $10^{- 12}$ bit error rate (BER), and 5.2-mW power dissipation from a single 1.2-V supply. The chip core occupies the area of only 0.25$,times,$ 0.1 mm$^{2}$ . The proposed LA was adopted to realize a low-power, gigabit optical receiver. Fabricated using the same 0.18-$mu$m CMOS technology, the measured results of the optical receiver chip reveal 132.6-dB $Omega$ transimpedance gain, 2.7-GHz bandwidth even with a large 1.5-pF input parasitic capacitance, ${-}$16-dBm optical sensitivity for 10$^{-12}$ BER, and 51-mW power dissipation from a single 1.8-V supply. The area of the whole chip is 1.75$,times,$ 0.45 mm$^{2}$ .
机译:本文提出了一种低功耗,千兆位限幅放大器(LA),该放大器可应用于采用负阻抗补偿技术的光接收器,该技术不仅可以同时增强增益和带宽特性,而且还允许低电压,低功率工作。 LA的测试芯片采用标准的0.18-μmCMOS工艺实现,展示了2.5Gb / s的操作和40dB的增益,0.053-UI rms的抖动,适用于$ 2 ^ {31} -1 $伪随机比特序列输入,9.5 mV的$ _ {rm pp} $输入灵敏度,可实现$ 10 ^ {-12} $的误码率(BER),以及来自1.2 V单电源的5.2 mW功耗。芯片核心仅占0.25 $乘以0.1 mm $ ^ {2} $的面积。提议的LA被采用以实现低功率,千兆位光接收器。使用相同的0.18-μmCMOS技术制造,光接收器芯片的测量结果显示,即使具有1.5pF的大输入寄生电容$ {-},Omega $的跨阻增益,2.7GHz的带宽仍为132.6dB。 16 dBm的光学灵敏度,可实现10 ^ {-12} $的BER,单1.8V电源的功耗为51 mW。整个芯片的面积为1.75 $倍0.45 mm $ ^ {2} $。

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