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ARRANGEMENT FOR ATTENUATION OF THE OVERSHOOT EFFECT OF CURRENT PULSES SUPPLIED TO INTERACT WITH CORE MEMORIES

机译:用于减弱与核心记忆相互作用的当前脉冲的过时效应的安排

摘要

1,209,665. Circuits employing bi-stable magnetic elements. TELEFONAKTIEBOLAGET L. M. ERICSSON. 11 Jan., 1968 [12 Jan., 1967], No. 1743/68. Heading H3B. In order to attenuate overshoot effects of drive current pulses in a matrix drive wire the drive current pulses are fed to one end of the matrix drive wire via the primary winding of the transformer, the secondary winding of which is connected between the other end of the drive wire and earth. In the arrangement of Fig. 4 pulse source I emits a voltage pulse U which appears across the primary and secondary windings of transformer T and since the capacitance to ground is uniformly distributed along the drive wire and the primary and secondary windings have equal numbers of turns a voltage distribution symmetrical to ground will be obtained. The overshoots of the drive current pulses due to the distributed inductance and capacitance to ground of the drive wire will be largest at the point A and since distributed capacitances and inductances of only half the drive wire are contributing to the production of overshoots the latter are reduced in magnitude. By connecting the drive wire as shown reverse voltages in the secondary winding induced at the end of the drive pulse are eliminated which voltages would otherwise produce a disturb pulse in the drive wire. Fig. 5 shows how a plurality of arrangements of Fig. 4 may be connected in series a disadvantage being that the voltages in the transformers T1, T2, T3 are successively decreasing. This may be overcome by using the arrangement of Fig. 6 in which transformer T is used in the same way as in Fig. 4 and toroidal cores Q1, Q2, Q3, Q4 are connected between sections of the matrix drive wire. Each section has one fifth of the voltage appearing across it and the voltages across the toroidal cores acting as single winding transformers are equal.
机译:1,209,665。采用双稳态磁性元件的电路。 TELEFONAKTIEBOLAGET L.M.ERICSSON。 1968年1月11日[1967年1月12日],第1743/68号。标题H3B。为了减弱矩阵驱动线中驱动电流脉冲的过冲效应,驱动电流脉冲通过变压器的初级绕组馈入矩阵驱动线的一端,该变压器的次级绕组连接在变压器的另一端之间。驱动电线和大地。在图4的布置中,脉冲源I发射电压脉冲U,该电压脉冲U出现在变压器T的初级绕组和次级绕组上,并且由于接地电容沿驱动线均匀分布并且初级绕组和次级绕组具有相等的匝数将获得与地面对称的电压分布。由于分布在驱动点上的电感和接地电容引起的驱动电流脉冲的过冲将在A点处最大,并且由于只有一半驱动线的分布电容和电感会导致过冲的产生,后者的产生将减少在数量上。通过如图所示连接驱动线,消除了在驱动脉冲结束时在次级绕组中感应的反向电压,否则这些电压会在驱动线中产生干扰脉冲。图5示出了图4的多个布置可以如何串联连接的缺点是变压器T1,T2,T3中的电压连续降低。这可以通过使用图6的布置来克服,在该布置中,以与图4相同的方式使用变压器T,并且环形芯Q1,Q2,Q3,Q4连接在矩阵驱动线的各部分之间。每个部分的两端都出现五分之一的电压,而充当单个绕组变压器的环形铁心上的电压是相等的。

著录项

  • 公开/公告号GB1209665A

    专利类型

  • 公开/公告日1970-10-21

    原文格式PDF

  • 申请/专利权人 TELEFONAKTIEBOLAGET L M ERICSSON;

    申请/专利号GB19680001743

  • 发明设计人

    申请日1968-01-11

  • 分类号G11C7/02;H03K3/45;

  • 国家 GB

  • 入库时间 2022-08-23 10:29:25

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