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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Broad-Band High-Power Amplifier Using Spatial Power-Combining Technique
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Broad-Band High-Power Amplifier Using Spatial Power-Combining Technique

机译:利用空间功率合并技术的宽带大功率放大器

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High power, broad bandwidth, high linearity, and low noise are among the most important features in amplifier design. The broad-band spatial power-combining technique addresses all these issues by combining the output power of a large quantity of microwave monolithic integrated circuit (MMIC) amplifiers in a broad-band coaxial waveguide environment, while maintaining good linearity and improving phase noise of the MMIC amplifiers. A coaxial waveguide was used as the host of the combining circuits for broader bandwidth and better uniformity by equally distributing the input power to each element. A new compact coaxial combiner with much smaller size is investigated. Broad-band slotline to microstrip-line transition is integrated for better compatibility with commercial MMIC amplifiers. Thermal simulations are performed and an improved thermal management scheme over previous designs is employed to improve the heat sinking in high-power application. A high-power amplifier using the compact combiner design is built and demonstrated to have a bandwidth from 6 to 17 GHz with 44-W maximum output power. Linearity measurement has shown a high third-order intercept point of 52 dBm. Analysis shows the amplifier has the ability to extend spurious-free dynamic range by N~(2/3) times. The amplifier also has shown a residual phase floor close to -140 dBc at 10-kHz offset from the carrier with 5-6-dB reductions compared to a single MMIC amplifier it integrates.
机译:高功率,宽带宽,高线性度和低噪声是放大器设计中最重要的功能。宽带空间功率组合技术通过在宽带同轴波导环境中组合大量微波单片集成电路(MMIC)放大器的输出功率来解决所有这些问题,同时保持良好的线性度并改善其相位噪声。 MMIC放大器。同轴波导用作组合电路的主机,可通过将输入功率平均分配给每个元素来获得更宽的带宽和更好的均匀性。研究了一种尺寸更小的新型紧凑型同轴组合器。集成了宽带时隙线到微带线的过渡,以更好地与商用MMIC放大器兼容。进行热仿真,并采用比以前的设计改进的热管理方案,以改善大功率应用中的散热。构建并采用紧凑型组合器设计的高功率放大器被证明具有6至17 GHz的带宽,最大输出功率为44W。线性测量显示出52 dBm的高三阶截点。分析表明,该放大器具有将无杂散动态范围扩展N〜(2/3)倍的能力。与集成的单个MMIC放大器相比,该放大器还显示出在距载波10kHz偏移处接近-140 dBc的残留相位本底,降低了5-6 dB。

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