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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Wide-Bandwidth, High-Linearity, 2.8-GS/s, 10-bit Accurate Sample and Hold Amplifier in 130-nm SiGe BiCMOS
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Wide-Bandwidth, High-Linearity, 2.8-GS/s, 10-bit Accurate Sample and Hold Amplifier in 130-nm SiGe BiCMOS

机译:130nm SiGe BiCMOS中的宽带,高线性度,2.8GS / s,10位准确采样保持放大器

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摘要

This paper presents a highly linear BiCMOS sample and hold amplifier (SHA) providing 2.8-GS/s intermediate frequency (IF) sampling for a 1-GHz input bandwidth spanning from 1.5 to 2.5 GHz. A single-transistor hold-mode feedthrough cancellation technique is implemented to remove distortion resulting from the nonlinear parasitic capacitance at the sampling node. The SHA is designed in a mainstream 130-nm BiCMOS technology using SiGe heterojunction bipolar transistors to buffer and sample the wideband input. The proposed SHA enables monolithic integration with a high-speed analog-to-digital converter core to realize a high-performance converter solution. This independent sampling front end occupies a core chip area of 0.6 mm(2) and consumes an average power of 1.26 W. The SHA is a pseudo-differential open-loop design that includes two cascaded track-and-hold amplifiers, a high-speed clock driver, and externally adjustable current mirror biases. The high-speed clock drivers and buffers add 170 mW to the total power consumption. The measurements of the fabricated SHA show a 10-bit effective resolution across the 1-GHz IF bandwidth and < -61-dBc HD2 and HD3.
机译:本文提出了一种高度线性的BiCMOS采样保持放大器(SHA),可为2.8 GHz至GS / s的中频(IF)采样提供1.5 GHz至2.5 GHz的1 GHz输入带宽。实现了单晶体管保持模式馈通消除技术,以消除由采样节点处的非线性寄生电容引起的失真。 SHA采用主流的130 nm BiCMOS技术进行设计,该技术使用SiGe异质结双极晶体管对宽带输入进行缓冲和采样。拟议的SHA可以与高速模数转换器内核进行单片集成,以实现高性能的转换器解决方案。这个独立的采样前端占用0.6 mm(2)的核心芯片面积,平均功耗为1.26W。SHA是一种伪差分开环设计,包括两个级联的采样保持放大器,一个高功率放大器。高速时钟驱动器和外部可调电流镜偏置。高速时钟驱动器和缓冲器使总功耗增加了170 mW。制成的SHA的测量结果表明,在1 GHz IF带宽和<-61 dBc HD2和HD3范围内,有效分辨率为10位。

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