Batch fabricated matrix memories

T. McCormack, C. Battarel, H. Fuller
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引用次数: 3

Abstract

Present-day matrix memory fabrication techniques are relatively expensive since discrete binary memory elements are individually made and then assembled into a matrix array by means of manual or semimanual wiring. The assembly of individual matrix planes is usually followed by another expensive step wherein the planes of a memory stack are interconnected. The key to low cost matrix memories lies in integrated or batch fabrication of the memory elements and wiring structure of a plane, and also batch forming the interconnections between planes in a memory stack. Additional economy results from making the bit capacity of a plane as large as possible. The need for batch fabricated memory planes appears to be generally recognized, considering the number of suggestions that have been made for achieving the goal. Thin magnetic film memory elements were initially of interest because of their high switching speed, which made very fast memories possible, but today thin magnetic film memories are of interest principally because they offer one approach to batch fabrication, since in the meantime ways have been found for achieving high speed with ferrites.
批量制造矩阵存储器
目前的矩阵存储器制造技术相对昂贵,因为离散的二进制存储器元件是单独制造的,然后通过手工或半手工布线的方式组装成矩阵阵列。单个矩阵平面的组装之后通常是另一个昂贵的步骤,其中内存堆栈的平面相互连接。低成本矩阵存储器的关键在于集成或批量制造存储元件和平面布线结构,以及批量形成存储堆栈中平面之间的互连。通过使飞机的钻头容量尽可能大,可以获得额外的经济效益。考虑到为实现这一目标而提出的许多建议,人们似乎普遍认识到批量制造存储平面的必要性。薄磁膜存储器元件最初是因为其高开关速度而引起兴趣,这使得非常快速的存储器成为可能,但今天,薄磁膜存储器主要是因为它们提供了一种批量制造的方法,因为同时已经找到了用铁氧体实现高速的方法。
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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