2002•Unpublished venueRequires access

Steady-state characteristics of an overload-protected frequency compensated current-feedback magnetic multivibrator

Akihiko Katsuki, M. Ouchiyama, Takaharu Takeshita

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Abstract

The current-feedback magnetic multivibrator (Wilson-Moore circuit) is highly efficient and the number of components is extremely small. However, this circuit has no ability of overload protection and the frequency of oscillation depends much on the load current. So, we proposed an improved current-feedback magnetic multivibrator with overload protection and frequency compensation. In this paper, steady-state characteristics of this circuit are investigated in detail.

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What this paper is about

The current-feedback magnetic multivibrator (Wilson-Moore circuit) is highly efficient and the number of components is extremely small. However, this circuit has no ability of overload protection and the frequency of oscillation depends much on the load current. So, we proposed an improved current-feedback magnetic multivibrator with overload protection and frequency compensation. In this paper, steady-state characteristics of this circuit are investigated in detail.

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Available abstract

The current-feedback magnetic multivibrator (Wilson-Moore circuit) is highly efficient and the number of components is extremely small. However, this circuit has no ability of overload protection and the frequency of oscillation depends much on the load current. So, we proposed an improved current-feedback magnetic multivibrator with overload protection and frequency compensation. In this paper, steady-state characteristics of this circuit are investigated in detail.

Key concepts: Multivibrator, Current (fluid), Frequency compensation, Compensation (psychology), Oscillation (cell signaling), Steady state (chemistry), Computer science, Control theory (sociology)

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