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Frequency multiplier response to spurious signals and its effect on local oscillator systems in millimeter and submillimeter wavelengths

机译:频率乘数对杂散信号的响应及其对毫米振荡器系统的影响毫米和淹没波长

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Broadband fixed-tuned frequency multipliers in conjunction with broadband power amplifiers driven by frequency synthesizers are often used as local oscillator (LO) sources in the millimeter and submillimeter wave heterodyne instruments. At these frequencies the multipliers use Gallium Arsenide (GaAs) based Schottky varactor diodes as the nonlinear element, and like most other harmonic generators are susceptible to spurious signal interference. The state-of-the-art LO sources in the millimeter and submillimeter wavelengths use MMIC power amplifiers producing in excess of 250 mW of output power in the 100 GHz range, and they are used to drive the subsequent multiplier stages. Because of the high input power environment and the presence of noise in the system, the multipliers become vulnerable to spurious signal interference, either through the bias lines or through the RF port. As the spurious signals propagate through the multiplier chain, they generate inter-modulation products which might fall in the passband of the heterodyne instrument and seriously degrade its performance. The issues of frequency multiplier response to spurious signal interference and its effect on local oscillator performance in millimeter and submillimeter wave heterodyne instruments are investigated. Results of numerical harmonic balance simulations and laboratory experiments are presented here, and are found to show good agreement.
机译:宽带固定调谐频率倍增器与由频率合成器驱动的宽带功率放大器一起使用通常用作毫米和亚倍数镜波外差仪器中的本地振荡器(LO)源。在这些频率,乘法器使用基于砷化镓(GaAs)的肖特基变容二极管作为非线性元件,并且如大多数其他谐波发生器易受杂散信号干扰的影响。毫米和亚倍数钟波长的最先进的LO源使用MMIC功率放大器在100 GHz范围内生产超过250 MW的输出功率,它们用于驱动后续乘数级。由于高输入功率环境和系统中存在噪声的存在,乘法器通过偏置线或通过RF端口变得容易受到虚假信号干扰的影响。随着杂散信号通过乘法器链传播,它们会产生可能落入外部贸易仪器的通带中的调制互换产品,并严重降低其性能。研究了对杂散信号干扰的频率乘数响应的问题及其对毫米和杂波外差仪器中本地振荡器性能的影响。这里提出了数值谐波平衡模拟和实验室实验的结果,并发现了良好的一致性。

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