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Magnetic characteristics of cores in amplifiers

Roy W. Roberts

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Abstract

A METHOD of measuring the magnetic characteristics which control the manner in which cores operate in self-saturating magnetic amplifiers is necessary both for economical production and accurate design of such amplifiers. Because of the eddy-current-type effects present, even in thin gauges of the rectangular loop magnetic materials used in cores for high-performance self-saturating magnetic amplifiers, it has not been found possible to directly relate the amplifier performance to usual d-c or a-c hysteresis loop measurements.1, 2When operating in an amplifier, a core will generally follow a peculiar minor hysteresis loop determined by the combination of core magnetic characteristics and conditions imposed by amplifier circuitry.2Thus to predetermine the behavior of a core, it must be tested under conditions which simulate amplifier operation.

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A METHOD of measuring the magnetic characteristics which control the manner in which cores operate in self-saturating magnetic amplifiers is necessary both for economical production and accurate design of such amplifiers. Because of the eddy-current-type effects present, even in thin gauges of the rectangular loop magnetic materials used in cores for high-performance self-saturating magnetic amplifiers, it has not been found possible to directly relate the amplifier performance to usual d-c or a-c hysteresis loop measurements.1, 2When operating in an amplifier, a core will generally follow a peculiar minor hysteresis loop determined by the combination of core magnetic characteristics and conditions imposed by amplifier circuitry.2Thus to predetermine the behavior of a core, it must be tested under conditions which simulate amplifier operation.

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Available abstract

A METHOD of measuring the magnetic characteristics which control the manner in which cores operate in self-saturating magnetic amplifiers is necessary both for economical production and accurate design of such amplifiers. Because of the eddy-current-type effects present, even in thin gauges of the rectangular loop magnetic materials used in cores for high-performance self-saturating magnetic amplifiers, it has not been found possible to directly relate the amplifier performance to usual d-c or a-c hysteresis loop measurements.1, 2When operating in an amplifier, a core will generally follow a peculiar minor hysteresis loop determined by the combination of core magnetic characteristics and conditions imposed by amplifier circuitry.2Thus to predetermine the behavior of a core, it must be tested under conditions which simulate amplifier operation.

Key concepts: Amplifier, Magnetic amplifier, Hysteresis, Magnetic hysteresis, Eddy current, Magnetic core, Core (optical fiber), Physics

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