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Subclass of:

323 - Electricity: power supply or regulation systems

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Class / Patent application numberDescriptionNumber of patent applications / Date published
323223000 Using a three or more terminal semiconductive device 39
323222000 Using choke and switch across source 26
323233000 Using impedance 17
323229000 Using diode 5
20100259232SYSTEM AND METHOD FOR DRIVING A POWER SUPPLY DEVICE IN AN INITIAL ACTIVATION STAGE - The present application describes a system and method for driving a power supply device in an initial activation stage. In one embodiment, the method comprises providing in the power supply device at least one voltage regulator that is coupled with a voltage output adapted to supply a power voltage to a client device, receiving a signal indicative of an activation of the power supply device, and converting the at least one voltage regulator to an equivalent shunting circuit coupled between the voltage output and a reference voltage. Before power voltages are applied at the outputs of the power supply device, shunting paths are thus provided for releasing undesired currents.10-14-2010
20110221403Semiconductor buck circuit with floating-voltage supression shunting current load - The present invention relates to a conventional circuit connected with the direct-current (DC) power supply in series through the semiconductor forward voltage drop, for producing voltage drop to lower the output DC voltage, however, if the output current is smaller, the voltage drop produced is not enough, the floating-voltage accordingly rises and damages the load, so a shunting current load is arranged in the circuit to suppress the floating-voltage.09-15-2011
20110316494SWITCHING POWER SUPPLY DEVICE, SWITCHING POWER SUPPLY CIRCUIT, AND ELECTRICAL EQUIPMENT - According to an embodiment of the invention, there is provided a switching power supply device including an integrated body and a plurality of external terminals. In the integrated body, a first switching element, a constant current element, and a diode are connected in series. The plurality of external terminals include a first external terminal connected to a main terminal of an element disposed on one end side of the integrated body and a second external terminal connected to a main terminal of an element disposed on another end side of the integrated body.12-29-2011
20140103889Rapid-Transition DC-DC Converter - A DC-DC converter for delivering electrical power to a load includes an output filter having an inductor and an output capacitor, a first switch, and a second switch. The first switch is configured to alternately couple and decouple the inductor to and from a DC input voltage as power is being delivered to the load. The second switch is configured to electrically disconnect the output capacitor when the load is removed or deactivated. Disconnecting the output capacitor allows the DC-DC converter to rapidly transition from an operating state to a disabled state, obviating any need to discharge the output capacitor in order to fully disable the DC-DC converter. Residual energy stored in the electric field of the output capacitor and/or the magnetic field of the inductor at the time the load is next reactivated is available to hasten transition back to the operating state.04-17-2014
20140159678CABLE COMPENSATION CIRCUIT - One cable compensation circuit is connected to a shunt regulator to generate a feedback voltage corresponding to an output voltage of a power supply device. The cable compensation circuit controls cathode impedance of the shunt regulator according to the output current of the power supply device to compensate a voltage drop generated in a cable.06-12-2014
323232000 Using inductor 3
20090001943Current mode boost converter using slope compensation - A boost converter circuit that includes a power supply, an inductor coupled to the power supply to receive current from the power supply, a diode coupled to receive current from the inductor and coupled to provide current to a load as an output, an inductor switch coupled to a node between the inductor and the diode for selectively switching current from the inductor anyway from the diode, and a ramp circuit. The ramp circuit is coupled to the node between the inductor and the diode, and is configured to selectively sample a voltage at the node between the inductor and the diode via a sampling switch and use the sampled signal to produce a stabilization ramp to stabilize the output.01-01-2009
20090212748Voltage Sag Generator Device - A voltage sag generator device (08-27-2009
20100102784Soft-Switching Voltage Regulation in a Step-Down Circuit - An information handling system may comprise a direct-current to direct-current step-down power converter, a memory, and a processor. The step-down power converter may include a first inductive unit, a first switching unit connected between a voltage source and the first inductive unit, a second switching unit connected to ground, a capacitance unit connected between the second switching unit and the first inductive unit, and a second inductive unit connected between the second switching unit and the first inductive unit. The capacitance unit is configured to delay a change in voltage across the first or second switching units, and the second inductive unit is configured to delay a change in current in the first or second switching units.04-29-2010
Entries
DocumentTitleDate
20080278122Apparatus and method for termination powered differential interface periphery - An apparatus and method for supplying power to the peripheral circuits of a transmitter circuit, especially an HDMI transmitter circuit, is disclosed. In an HDMI transmitter the termination resistors of the output driver are part of the receiver. DC power for the driver is supplied through these termination resistors. In prior art implementations of circuits this power, supplied by the receiver circuit, is wasted in the DC set-up circuit of the differential line driver. It is suggested to use this wasted power from the remote termination to power selected peripheral circuits of the transmitter. The use of this wasted power in the line driver for powering the peripheral circuits reduces the total system power.11-13-2008
20080297121POWER SUPPLY APPARATUS, TEST APPARATUS, AND ELECTRONIC DEVICE - There is provided a power supply apparatus including a power supply section that supplies an output current to an external load, and a current control section that flows an electric current varying in a direction opposite to a supply current being supplied to the power supply section into a ground of the power supply section.12-04-2008
20090128101POWER CONVERSION CIRCUIT - A power conversion circuit comprising an input; an output; an electrical energy storage element having one side connected to the input; and at least two sub-circuits, wherein each respective sub-circuit is connected in series between the output and the other side of said electrical energy storage element; and wherein each said sub-circuit includes an inductive device, a rectifying element, and a controllable switching element connected in circuit therebetween to be capable of connecting the inductive device in parallel across the input; wherein the inductive elements of said at least two sub-circuits are magnetically coupled together. Smaller circuit components can therefore be used.05-21-2009
20090295340REGULATOR WITH SOFT-START USING CURRENT SOURCE - There is provided a regulator with soft-start using a current source. The regulator with soft-start may include: a power switch unit including first and second power switches connected between a power supply terminal and an output terminal; a load capacitor connected between the output terminal and a ground; a voltage detection unit detecting a voltage of the output terminal; a comparison unit comparing a detection voltage and a predetermined reference voltage, and outputting first and second switching signals; a current generating a predetermined constant current; a current control unit switching a connection between a control terminal of the first power switch and the current source unit according to the first switching, and switching a connection between the control terminal of the first power switch and the ground according to the second switching signal; and an error amplification unit amplifying an error voltage between the detection.12-03-2009
20110121794BUS INSTRUMENT AND METHOD FOR PREDICTIVELY LIMITED POWER CONSUMPTION IN A TWO-WIRE INSTRUMENTATION BUS - A bus instrument (05-26-2011
20130057232METHOD FOR REDUCING CURRENT THROUGH A LOAD AND AN ELECTRICAL DEVICE - A method for reducing current flowing through a load within a particular frequency band includes the steps of configuring an electrical device to receive an alternating current (AC) signal; and configuring a filter to determine the current flowing through a load according to a frequency of the AC signal. An impedance of the filter in a conducting frequency band is lower than an impedance of the filter in a non-conducting frequency band so the filter divides the current of the AC signal within the conducting frequency band so that the load current through the load is reduced.03-07-2013
20140247023PRECISION OUTPUT CONTROL FOR DC VOLTAGE REGULATORS - A power supply includes an input terminal, an output terminal, a DC voltage regulator coupled between the input terminal and the output terminal to provide a substantially constant DC output voltage at the output terminal, a voltage divider coupled between the output terminal and ground (e.g., earth ground or another suitable reference potential), the voltage divider including at least a first resistance, a second resistance and a first node between the first resistance and the second resistance, the first node coupled to the DC voltage regulator to provide a feedback voltage to the DC voltage regulator for regulating the DC output voltage, and an adjustable shunt regulator coupled between the output terminal and the first node.09-04-2014

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