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METHOD OF FORMING NANOSECOND PULSES BY TRANSFORMER INDUCTIVE ENERGY STORAGE IN LOADING

机译:变压器感应储能形成纳秒脉冲的方法。

摘要

FIELD: power engineering.;SUBSTANCE: invention relates to a powerful pulse technique. Due to the magnetic coupling between the secondary winding and the short-circuited solid non-magnetic high-resistance winding, as well as between the short-circuited solid non-magnetic high-resistance winding and the primary winding, energy from the transformer inductive energy storage is distributed between the load connected in parallel to the switch and the short-circuited solid non-magnetic high-resistance winding. Thickness, resistivity of the material and the geometric dimensions of the short-circuited solid non-magnetic high resistance winding, as well as the time parameters of the transfer unit are selected from the conditions of diffusion of the magnetic field through a short-circuited continuous non-magnetic high resistance winding, namely the minimum energy loss during the time of current conversion from the primary winding to the secondary winding. After the current drops to zero in the secondary winding and, accordingly, in the load, the energy of the transformer inductive energy storage associated with the primary current can be reused.;EFFECT: expansion of the arsenal of high power pulses.;3 cl, 9 dwg
机译:技术领域本发明涉及一种强大的脉冲技术。由于次级绕组与短路的固态非磁性高电阻绕组之间以及次级固态非磁性高电阻绕组与初级绕组之间的磁耦合,变压器的感应能量在并联连接到开关的负载和短路的固态非磁性高阻绕组之间分配存储空间。固体的厚度,材料的电阻率和短路的固态非磁性高电阻绕组的几何尺寸,以及传输单元的时间参数,是通过磁场通过连续的短路扩散的条件来选择的非磁性高阻绕组,即在从初级绕组到次级绕组的电流转换期间的最小能量损耗。在次级绕组中的电流降为零后,相应地在负载中,与初级电流相关的变压器感应储能的能量可以重新使用。;效果:高功率脉冲的军火库扩展; 3 cl ,9 dwg

著录项

  • 公开/公告号RU2680343C1

    专利类型

  • 公开/公告日2019-02-19

    原文格式PDF

  • 申请/专利权人 EGOROV OLEG GEORGIEVICH;

    申请/专利号RU20170138183

  • 发明设计人 EGOROV OLEG GEORGIEVICH (RU);

    申请日2017-11-02

  • 分类号H03K5/12;B82B1/00;

  • 国家 RU

  • 入库时间 2022-08-21 11:46:24

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