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Magnetic-coupled multivibrator developments

William A. Geyger

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Abstract

In static d-c to a-c converters employing a saturating transformer with rectangular hysteresis-loop core material in conjunction with two switching transistors (magnetic-coupled multivibrators), the oscillation frequency is linearly proportional to the d-c supply voltage. This fact is significant with regard to telemetering-transducer applications. However, the relation between d-c input voltage and frequency of the square-wave output voltage is quite unfavorable in those cases; e.g., design of test circuits for magnetic amplifiers, where it is necessary to vary the oscillation frequency of the magnetic-coupled multivibrator independently, without changing magnitude of the supply voltage.

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What this paper is about

In static d-c to a-c converters employing a saturating transformer with rectangular hysteresis-loop core material in conjunction with two switching transistors (magnetic-coupled multivibrators), the oscillation frequency is linearly proportional to the d-c supply voltage. This fact is significant with regard to telemetering-transducer applications. However, the relation between d-c input voltage and frequency of the square-wave output voltage is quite unfavorable in those cases; e.g., design of test circuits for magnetic amplifiers, where it is necessary to vary the oscillation frequency of the magnetic-coupled multivibrator independently, without changing magnitude of the supply voltage.

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Available abstract

In static d-c to a-c converters employing a saturating transformer with rectangular hysteresis-loop core material in conjunction with two switching transistors (magnetic-coupled multivibrators), the oscillation frequency is linearly proportional to the d-c supply voltage. This fact is significant with regard to telemetering-transducer applications. However, the relation between d-c input voltage and frequency of the square-wave output voltage is quite unfavorable in those cases; e.g., design of test circuits for magnetic amplifiers, where it is necessary to vary the oscillation frequency of the magnetic-coupled multivibrator independently, without changing magnitude of the supply voltage.

Key concepts: Multivibrator, Magnetic amplifier, Transformer, Voltage, Amplifier, Magnetic core, Electrical engineering, Transistor

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