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Design and Analysis of a Stage-Scaled Distributed Power Amplifier

机译:级缩放分布式功率放大器的设计与分析

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This paper presents the design, analysis, and measurement of a pseudodifferential distributed power amplifier in a 0.13-$mu$ m SiGe BiCMOS process. To mitigate the large loaded transmission line loss due to bipolar base resistance, emitter degeneration is used and an optimal small-signal design point is selected for maximum gain-bandwidth product. To enhance the efficiency of distributed amplifiers (DAs), a stage-scaling technique is proposed to utilize more voltage swing while reducing the total current consumption. The output power and efficiency of the amplifier are evaluated as a function of two scaling coefficients. The fabricated distributed power amplifier achieves a small-signal gain of 10 dB and a 3-dB bandwidth of 110 GHz. The measured midband saturated output power is 17.5 dBm with a peak power-added efficiency (PAE) of 13.2% and the 3-dB output power bandwidth is greater than 77 GHz. The amplifier consumes 119 mA from a 3-V supply and occupies an area of 2.08 mm $,times,$ 1.05 mm. Compared to a uniform nonscaled DA fabricated in the same process, the stage-scaled amplifier achieves the same output power with higher collector efficiency and PAE over the entire measured frequency range.
机译:本文介绍了采用0.13μmSiGe BiCMOS工艺的伪差分分布式功率放大器的设计,分析和测量。为了减轻由于双极基极电阻引起的大负载传输线损耗,使用了发射极退化,并为最大增益带宽乘积选择了一个最佳的小信号设计点。为了提高分布式放大器(DA)的效率,提出了一种阶段缩放技术,以利用更多的电压摆幅,同时降低总电流消耗。评估放大器的输出功率和效率是两个缩放系数的函数。所制造的分布式功率放大器可实现10 dB的小信号增益和110 GHz的3 dB带宽。测得的中频带饱和输出功率为17.5 dBm,峰值功率附加效率(PAE)为13.2%,并且3-dB输出功率带宽大于77 GHz。该放大器从3 V电源消耗119 mA电流,占地2.08 mm×1.05 mm。与以相同工艺制造的均匀非标度DA相比,该级标度放大器在整个测量频率范围内以更高的集电极效率和PAE实现了相同的输出功率。

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