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- W1466048278 abstract "This chapter focuses on various aspects of the high-speed magnetic-core memory technology. The three-dimensional or coincident-current, toroidal core storage array is the most widely explored and used random-access electronic memory. The speed that can be achieved with ferrite cores in a three-dimensional array is fast enough to satisfy most random-access storage requirements. A brief description of the memory cycle of operation and the associated terminology is discussed in this chapter. The primary factor determining the overall design and operating characteristics of the total 3D memory is the ferrite core storage array. The saturable magnetic core is one in which moderate positive or negative drive forces will result in a large change in magnetization toward corresponding positive or negative magnetization. It is important to note that while the cores in the array may be subjected to disturbances or half-select drives from an arbitrarily large number of bit drivers, they need to only withstand the disturbance of one word-write drive between the storing of a datum state and the time for which it is subsequently read. It is found that the common bit-drive and sense winding is usually accomplished by dividing a common winding into two halves and connecting one end of each into a differential amplifier." @default.
- W1466048278 created "2016-06-24" @default.
- W1466048278 creator A5065451209 @default.
- W1466048278 date "1966-01-01" @default.
- W1466048278 modified "2023-09-25" @default.
- W1466048278 title "High-Speed Magnetic-Core Memory Technology" @default.
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- W1466048278 doi "https://doi.org/10.1016/s0065-2539(08)61011-2" @default.
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