Homma Akira
Division of Quantum Science and Engineering, Faculty of Engineering, Hokkaido University, Kita 13, Nishi 8, Kita-ku, Sapporo, Hokkaido 060-8628, Japan.
Rev Sci Instrum. 2011 Jul;82(7):074701. doi: 10.1063/1.3606448.
A novel annular parallel-strip transmission line was devised to construct high-voltage high-speed pulse isolation transformers. The transmission lines can easily realize stable high-voltage operation and good impedance matching between primary and secondary circuits. The time constant for the step response of the transformer was calculated by introducing a simple low-frequency equivalent circuit model. Results show that the relation between the time constant and low-cut-off frequency of the transformer conforms to the theory of the general first-order linear time-invariant system. Results also show that the test transformer composed of the new transmission lines can transmit about 600 ps rise time pulses across the dc potential difference of more than 150 kV with insertion loss of -2.5 dB. The measured effective time constant of 12 ns agreed exactly with the theoretically predicted value. For practical applications involving the delivery of synchronized trigger signals to a dc high-voltage electron gun station, the transformer described in this paper exhibited advantages over methods using fiber optic cables for the signal transfer system. This transformer has no jitter or breakdown problems that invariably occur in active circuit components.
设计了一种新型环形平行带状传输线,用于构建高压高速脉冲隔离变压器。该传输线能够轻松实现稳定的高压运行以及初级和次级电路之间良好的阻抗匹配。通过引入一个简单的低频等效电路模型,计算了变压器阶跃响应的时间常数。结果表明,变压器的时间常数与低截止频率之间的关系符合一般一阶线性时不变系统的理论。结果还表明,由新型传输线组成的测试变压器能够在超过150 kV的直流电位差下传输上升时间约为600 ps的脉冲,插入损耗为 -2.5 dB。测得的有效时间常数为12 ns,与理论预测值完全一致。对于涉及将同步触发信号传输到直流高压电子枪站的实际应用,本文所述的变压器在信号传输系统中比使用光纤电缆的方法具有优势。该变压器不存在有源电路元件中总是会出现的抖动或击穿问题。