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Nanosecond Pulse Generator Using Fast Recovery Diodes for Cell Electromanipulation

机译:纳秒级脉冲发生器,使用快速恢复二极管进行细胞电操纵

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Design and operation of a fast recovery diode based pulse generator is presented. The generator produces 3.5-ns-wide, 1200 V amplitude unipolar pulses or +/- 600-V bipolar pulses into 50-Ω load at the maximum repetition rate of 100 kHz. Pulses shorter than 10 ns are essential for the studies of biological cell response to high electric fields while avoiding ordinary electroporation effects dominant at long pulses. Bipolar pulses are used for the studies of biological cell response to high electric fields when the net transfer of charge is undesirable. The bipolar pulse is produced from a unipolar pulse with the help of a shorted transmission line. This transmission line delays and inverts the initial pulse, so the output is the sum of the initial and the inverted and delayed pulses. The use of mass-produced fast recovery surface-mount rectifier diodes in this circuit substantially simplifies the generator and results in low cost and very small footprint. Similar diode switched pulse generators have been described in the literature using mostly custom fabricated snap-recovery diodes. Here we give an example of an ordinary low-cost diode performing similarly to the custom fabricated counterpart. The diode switched circuit relaxes the requirement on the speed of the main closing switch; in our case, a low-cost power metal-oxide semiconductor field-effect transistor (MOSFET)-saturable core transformer combination.
机译:介绍了一种基于快速恢复二极管的脉冲发生器的设计和操作。发生器以100 kHz的最大重复频率向50Ω负载产生3.5 ns宽,1200 V幅度的单极性脉冲或+/- 600V双极性脉冲。短于10 ns的脉冲对于研究生物细胞对高电场的响应至关重要,同时又避免了长脉冲时占主导地位的普通电穿孔效应。当不希望电荷的净转移时,双极脉冲用于研究生物细胞对高电场的响应。借助于短路的传输线,由单极性脉冲产生双极性脉冲。该传输线延迟并反转了初始脉冲,因此输出是初始脉冲与反转脉冲和延迟脉冲之和。在此电路中使用大量生产的快速恢复表面安装整流二极管可大大简化发电机,并降低成本和减小占地面积。文献中已经描述了使用大多数定制制造的快速恢复二极管的类似二极管开关脉冲发生器。在这里,我们给出了一个普通的低成本二极管的示例,其性能与定制的同类产品相似。二极管开关电路放宽了对主闭合开关速度的要求;在我们的案例中,是一种低成本的功率金属氧化物半导体场效应晶体管(MOSFET)-饱和铁心变压器组合。

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