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Switching regulated power supply apparatus including a resonant circuit

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TLDR
In this paper, a switching regulated power supply apparatus, comprising an alternative current power source, a first rectifier for rectifying the alternate current output, a high frequency reference pulse generator, a pulse width modulator for modulating the pulse width of the reference pulse output as a function of a control signal, a switching transistor for on/off controlling the output from the first rectifiers and a switching device coupled to the output of the second rectifier to suppress a flyback pulse obtained from the smoothing circuit when the switching transistor is turned off.
Abstract
A switching regulated power supply apparatus, comprising: an alternative current power source, a first rectifier for rectifying the alternate current output, a high frequency reference pulse generator, a pulse width modulator for modulating the pulse width of the reference pulse output as a function of a control signal, a switching transistor for on/off controlling the output from the first rectifier as a function of the pulse width modulated output, a high frequency transformer connected in series with the first rectifier and the switching transistor, a second rectifier for rectifying the output from the high frequency transformer, and a smoothing circuit for smoothing the output from the second rectifier, the output from the smoothing circuit being applied to the pulse width modulator as a control signal, characterized in that the said apparatus further comprises a resonance capacitor coupled to the said high frequency transformer for causing resonance cooperatively with the said high frequency transformer when the said switching transistor is turned off, and a switching device coupled to the output of the second rectifier to be turned on responsive to a flyback pulse obtained from the smoothing circuit when the switching transistor is turned off, whereby the said resonance is suppressed by means of the second rectifier and the switching device in the latter half cycle of the resonance during the off time period of the switching transistor.

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Citations
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High efficiency power converter

TL;DR: In this article, a power converter nearly losslessly delivers energy and recovers energy from capacitors associated with controlled rectifiers in a secondary winding circuit, each controlled rectifier having a parallel uncontrolled rectifier.
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TL;DR: In this paper, the secondary leakage inductance of a transformer and a capacitor is combined with a rectifier to prevent the LC circuit from becoming a resonant circuit and leads to a unidirectional flow of energy from source to load.
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Low line harmonic ac to dc power supply

George Gabor
TL;DR: In this paper, a PWM control scheme is illustrated in conjunction with a power distribution control circuit (30), wherein the duty cycle of convverter (32) is suitably controlled by a number of feedback loops embodying various parameters, for example, a voltage error signal, an average (eg. RMS) value of the input voltage (Vin), and the output voltage output error signal applied to multiplier circuit by error circuit provides the correction value for Vout variations.
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Start-up circuit for flyback converter having secondary pulse width modulation control

TL;DR: In this article, an output isolated, switching power supply (100) has a transformer (73) with a primary (91) and two secondaries (92, 93), and an electronic switch (75) in series with the primary, a first rectifier (87) and filter (88) on the first secondary (93) to provide bias power during both startup and operating modes, and a second rectifier and filter on the second secondary (92), to provide regulated output power.
References
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Patent

Switching regulator having improved control circuiting

TL;DR: An electrical circuit particularly applicable for use as a switching regulator having a storage inductor which periodically receives energy from a D.C. voltage source through a switch is discussed in this paper, where energy is released from the inductor when the switch is off to supply a load circuit.
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High dc voltage generating circuit

TL;DR: In this paper, a high DC voltage generating circuit is provided with an impedance element connecting a switching element with the primary winding of a flyback transformer, and a capacitive element is connected to the primary wound of the fly-back transformer to form a resonance circuit therewith, so that the fly back transformer delivers, as its output, a sinusoidal high voltage which is subjected to a voltage doubler rectification.
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Frequency stabilized single-ended regulated converter circuit

TL;DR: In this article, the switching frequency of a single-ended converter is stabilized by adjusting the charging threshold of a timer circuit controlling the conducting interval of the switching devices in response to a voltage regulation error signal.
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TL;DR: In this paper, a voltage supply circuit comprises an input for receiving a DC input voltage having one of plural possible levels, a DC-AC inverter for inverting the input voltage and which includes a boosting transformer having a winding with end terminals and an intermediate terminal and an inverter drive circuit for providing an AC current to the transformer.
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TL;DR: In this article, a microwave oven has a magnetron wave energy supply energized by high voltage pulses at a superaudible frequency, where the voltage pulses are produced by a decreasing portion of a magnetic flux cycle of said frequency in a transformer added to a voltage on a capacitance whose charge is replenished during a portion of said cycle during which a semiconductor switch connects a winding of the transformer to a source of unidirectional voltage to increase the flux in the transformer thereby energizing the magnetron with voltage pulses.