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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >A Novel 1 src='/images/tex/326.gif' alt='times'> 4 Coupler for Compact and High-Gain Power Amplifier MMICs Around 250 GHz
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A Novel 1 src='/images/tex/326.gif' alt='times'> 4 Coupler for Compact and High-Gain Power Amplifier MMICs Around 250 GHz

机译:适用于250 GHz左右的紧凑型和高增益功率放大器MMIC的新型1 src =“ / images / tex / 326.gif” alt =“ times”> 4耦合器

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摘要

For application in radar and communication systems operating in the frequency range around 250 GHz, a power amplifier (PA) millimeter-wave monolithic integrated circuit (MMIC) has been developed. The amplifier makes use of a novel coupler approach allowing for in-phase and equal-magnitude distribution of an incoming signal to four parallel output ports. This is possible due to a subtle use of grounded coplanar waveguide and air-bridge microstrip transmission lines, providing different propagation constants. With a size of quarter-wavelength, the coupler is very compact and is the key to the presented PA topology. The amplifier exploits the virtual open occurring due to the identical signals for transistor biasing and matching. The amplifier topology is applied to develop an amplifier MMIC. When biased for maximum gain, it shows a 17-GHz 3-dB bandwidth around its center frequency at 248 GHz with a maximum gain of 32.8 dB. When biased for maximum output power, it provides an output power of 10 and 8.5 dBm at 250 and 270 GHz, respectively. At 250 GHz, it demonstrates a state-of-the-art power density of 125 mW/mm. Due to the amplifier topology, the MMIC is very compact .
机译:为了在工作于250 GHz左右频率范围的雷达和通信系统中应用,已经开发了功率放大器(PA)毫米波单片集成电路(MMIC)。该放大器利用新颖的耦合器方法,可将输入信号同相和等幅分布到四个并行输出端口。由于微妙地使用了接地共面波导和空气桥微带传输线,从而提供了不同的传播常数,因此这是可能的。耦合器尺寸为四分之一波长,非常紧凑,是提出的PA拓扑的关键。放大器利用由于晶体管偏置和匹配的信号相同而产生的虚拟开路。应用放大器拓扑来开发放大器MMIC。当偏置最大增益时,它在248 GHz的中心频率附近显示17 GHz 3-dB带宽,最大增益为32.8 dB。当偏置最大输出功率时,它在250 GHz和270 GHz时分别提供10 dBm和8.5 dBm的输出功率。在250 GHz时,它显示出125 mW / mm的最新功率密度。由于放大器的拓扑结构,MMIC非常紧凑。

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