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Two-dimensional distributed amplifier for extreme extension of GBW, PAE and OP

机译:二维分布式放大器,可扩展GBW,PAE和OP

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In this study, a new technique is introduced for full power combining in distributed amplifiers which contain multiplicative gain stages. Produced powers from middle stages of multiplicative structures are always wasted in terminating resistors. This study shows that an electrical funnel can be used to combine all produced powers from all stages. To do so, two configurations are considered to terminate middle stages with transistors. It is shown how a typical distributed amplifier can be converted to a two-dimensional distributed amplifier (2D-DA). Analytical expressions for gain calculation are also presented. All inductors and connections of 2D-DA are simulated by advanced design system (ADS) electromagnetic simulator with TSMC 0.18 CMOS layout specifications. Post-layout simulation results show the trueness of the presented relations. The designed 2D-DA shows 17.4 dB gain along 0.7-25.7 GHz bandwidth by consuming 75.2 mW DC power. More than 3.9 dBm output power at 1 dB output compression point (OP) is achieved and the noise figure of the 2D-DA is between 3.6 and 6.4 dB. Using 2D-DA, produced powers from middle stages participate in the outgoing power. This helps to improve gain bandwidth (GBW), power added efficiency (PAE) and OP by 84.3, 143 and 86%.
机译:在这项研究中,引入了一种新技术,用于包含乘法增益级的分布式放大器中的全功率合并。乘法结构中间阶段产生的功率总是浪费在终端电阻中。这项研究表明,电漏斗可用于组合各个阶段产生的所有功率。为此,考虑了两种配置来终止晶体管的中间级。它显示了如何将典型的分布式放大器转换为二维分布式放大器(2D-DA)。还提供了用于增益计算的解析表达式。 2D-DA的所有电感器和连接均通过具有TSMC 0.18 CMOS布局规格的高级设计系统(ADS)电磁模拟器进行模拟。布局后的仿真结果表明了所提出关系的真实性。设计的2D-DA通过消耗75.2 mW的直流功率,在0.7-25.7 GHz带宽上显示了17.4 dB的增益。在1 dB输出压缩点(OP)时,可实现超过3.9 dBm的输出功率,并且2D-DA的噪声系数在3.6至6.4 dB之间。使用2D-DA,中间阶段产生的功率会参与输出功率。这有助于将增益带宽(GBW),功率附加效率(PAE)和OP分别提高84.3、143和86%。

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