Characteristics of a High-Speed Multipath Core for a Coincident-Current Memory

Edgar C. Leaycraft, E. Melan
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引用次数: 2

Abstract

Design factors and operational features of a multiaperture ferrite memory core are discussed showing how a low coercive force, low switching coefficient material may be used for a high-speed coincident current storage device. The formulation, geometry, and important processing variables are given and a method of handling large numbers of asymmetrical cores for electrical test is described. Electromagnetic characteristics, pulse drive and bias test conditions are given. Data is presented showing the effect on core responses of varying net drive, pulse duration, half select drive and temperature. This device represents about a four-fold speed increase in comparison with present coincident current toroids.
合流存储器的高速多径核特性
讨论了多孔径铁氧体存储磁芯的设计因素和工作特性,展示了如何将低矫顽力、低开关系数的材料用于高速同步电流存储器件。给出了其公式、几何形状和重要的加工变量,并描述了一种处理大量电试验用不对称铁芯的方法。给出了电磁特性、脉冲驱动和偏置测试条件。给出了不同净驱动、脉冲持续时间、半选择驱动和温度对磁芯响应的影响。与目前的同步电流环面相比,该装置的速度提高了约四倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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