Burdt R, Curry R D
University of Missouri-Columbia, 349 Engineering Building West, Columbia, Missouri 65211, USA.
Rev Sci Instrum. 2007 Jul;78(7):074703. doi: 10.1063/1.2753833.
Recent analysis and experiments have demonstrated the potential for transmission line transformers to be employed as compact, high-frequency, high-power, pulsed oscillators with variable rise time, high output impedance, and high operating efficiency. A prototype system was fabricated and tested that generates a damped sinusoidal wave form at a center frequency of 4 MHz into a 200 Omega load, with operating efficiency above 90% and peak power on the order of 10 MW. The initial rise time of the pulse is variable and two experiments were conducted to demonstrate initial rise times of 12 and 3 ns, corresponding to a spectral content from 4-30 and from 4-100 MHz, respectively. A SPICE model has been developed to accurately predict the circuit behavior and scaling laws have been identified to allow for circuit design at higher frequencies and higher peak power. The applications, circuit analysis, test stand, experimental results, circuit modeling, and design of future systems are all discussed.
最近的分析和实验表明,传输线变压器有潜力被用作紧凑、高频、高功率、具有可变上升时间、高输出阻抗和高运行效率的脉冲振荡器。制作并测试了一个原型系统,该系统在中心频率为4兆赫兹时向200欧姆负载生成一个阻尼正弦波形,运行效率高于90%,峰值功率约为10兆瓦。脉冲的初始上升时间是可变的,进行了两个实验来证明初始上升时间分别为12纳秒和3纳秒,分别对应于4 - 30兆赫兹和4 - 100兆赫兹的频谱内容。已经开发了一个SPICE模型来准确预测电路行为,并确定了缩放定律,以便在更高频率和更高峰值功率下进行电路设计。文中还讨论了应用、电路分析、测试台、实验结果、电路建模以及未来系统的设计。