磁泡存储器模块中的EMC问题

John A. Malack
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引用次数: 0

摘要

磁泡存储设备提供非易失性数据存储,并且比当代存储设备增加了存储密度;它们正在由世界各地的一些来源进行批量生产。该设备体积小,使用低信号电平;对于操作,它们需要一组独特的条件,与它们的半导体前辈所需要的条件完全不同。特别是,永久(静态)和旋转(动态)正交磁场是维持和沿坡莫合金模式传播磁泡域所必需的。气泡域必须在单轴磁膜上以规定的方式产生、定向和湮灭。与半导体不同,气泡存储器件不使用pn结。低能级气泡信号的检测通常是用磁阻技术来完成的。介绍了泡泡存储器的基本工作原理,确定了泡泡存储器工作的必要条件,并介绍了泡泡存储器模块的电磁兼容性问题。从两个方面讨论了模块的EMC问题:内部兼容性,考虑了在独特的工作环境中影响气泡检测的固有因素;外部兼容性,考虑外部环境的电磁因素,模块必须在其中满意地工作。
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EMC Concerns in Magnetic Bubble Memory Modules
Magnetic bubble memory devices offer nonvolatile data storage and increased storage densities over contemporary storage devices; they are being manufactured in production quantities by a number of sources world wide. The devices are small and use low signal levels; for operation, they require a unique set of conditions quite different from those required by their semiconductor predecessors. In particular, permanent (static) and rotational (dynamic) orthogonal magnetic fields are necessary to sustain and propagate magnetic bubble domains along permalloy patterns. Bubble domains must be generated, directed, and annihilated on a uniaxial magnetic film in a prescribed manner. Unlike semiconductors, bubble memory devices do not employ p-n junctions. Detection of low-level bubble signals is typically accomplished with magnetoresistive techniques. This paper describes basic bubble memory operation, identifies conditions necessary for memory operation, and presents EMC (electromagnetic compatibility) concerns of a magnetic bubble memory module. EMC concerns of the module are discussed from two aspects: internal compatibility, which considers inherent factors that compromise bubble detection in the unique operation environment; and external compatibility, which considers electromagnetic factors of the outside environment in which the module must satisfactorily operate.
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