Power supply device and method of controlling power supply device

US2019089157A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2019089157-A1
Application numberUS-201715766430-A
CountryUS
Kind codeA1
Filing dateAug 4, 2017
Priority dateAug 4, 2017
Publication dateMar 21, 2019
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A power supply device includes an output circuit configured to be supplied with electric power from a power supply, and to output a current, a driving circuit configured to control an output operation of the output circuit to output a current, an overcurrent detection circuit configured to output a detection signal to a first node when detecting an overcurrent in the output circuit, an off-state fixing circuit configured to output an off-state fixing signal to the driving circuit for performing a forcible suspension of the output operation of the output circuit based on a detection signal inputted to the first node, regardless of whether a control signal is outputted, and a control unit configured to receive the detection signal and to output the control signal for controlling the output operation to the driving circuit in order to cause the driving circuit to control the output operation.

First claim

Opening claim text (preview).

1 . A power supply device, comprising: an output circuit configured to be supplied with electric power from a power supply, and to output a current; a driving circuit configured to control an output operation of the output circuit for outputting the current; an overcurrent detection circuit configured to output a detection signal to a first node when detecting an overcurrent in the output circuit; an off-state fixing circuit configured to output, based on the detection signal inputted to the first node, an off-state fixing signal for performing a forcible suspension of the output operation of the output circuit from an output node to the driving circuit, regardless of whether a control signal is outputted; and a control unit configured to receive the detection signal, and to output the control signal for controlling the output operation of the output circuit to the driving circuit for controlling the output operation of the output circuit by means of the driving circuit, wherein, in response to the off-state fixing signal, the driving circuit performs the forcible suspension of the output operation of the output circuit regardless of whether the control signal is outputted, wherein the control unit outputs a cancellation signal for cancelling the forcible suspension of the output operation of the output circuit to the off-state fixing circuit after an off period passes from time when the detection signal is inputted, wherein, in response to the cancellation signal, the off-state fixing circuit stops outputting the off-state fixing signal to cause the driving circuit to return to a normal operation for controlling the output operation of the output circuit based on the control signal, wherein the off-state fixing circuit: outputs the detection signal inputted to the first node to the driving circuit as the off-state fixing signal, and thereafter, controls a potential at the first node to stop outputting the off-state fixing signal in response to the cancellation signal inputted, wherein the overcurrent detection circuit does not output the detection signal to the first node when no overcurrent caused by the output operation of the output circuit is detected, wherein the control unit outputs the control signal for controlling the output operation of the output circuit to the driving circuit in order to control the output operation of the output circuit by means of the driving circuit when the detection signal is not inputted after the cancellation signal is outputted, wherein the output node is connected to the first node, wherein the off-state fixing circuit includes: a first control resistor having an end that is connected to the power supply, and another end that is connected to the first node, a second control resistor having an end that is connected to the power supply, a capacitor having an end that is connected to the first node, and another end that is connected to a fixed potential, a PNP-type bipolar transistor having an emitter that is connected to the first node, another end that is connected to the fixed potential, and a base that is connected to another end of the second control resistor, and an NPN-type bipolar transistor having a collector that is connected to the other end of the second control resistor, an emitter that is connected to the fixed potential, and a base to which the cancellation signal from the control unit is inputted, and wherein the off-state fixing circuit outputs a signal that is based on the potential at the first node to the driving circuit as the off-state fixing signal, in response to the detection signal outputted from the overcurrent detection circuit, and stops outputting the off-state fixing signal to the driving circuit in response to the cancellation signal outputted from the control unit. 2 . (canceled) 3 . The power supply device according to claim 1 , wherein the control unit: makes a feedback of the cancellation signal that is outputted, and detects whether there is an abnormal condition in the cancellation signal in the feedback; and controls the driving circuit by means of the control signal to stop the output operation of the output circuit when detecting the abnormal condition in the cancellation signal. 4 .- 5 . (canceled) 6 . The power supply device according to claim 1 , wherein the driving circuit includes: a logic circuit configured to output a logic signal obtained by performing calculation of the control signal and a signal that is based on a potential at the first node; and a driver configured to control, based on the logic signal, the output operation for outputting the current from the output circuit. 7 . The power supply device according to claim 1 , wherein the output circuit is a bridge circuit configured to control and output the electric power supplied from the power supply. 8 . The power supply device according to claim 7 , wherein the bridge circuit includes: a first output transistor having an end that is connected to the power supply, and another end that is connected to a first output terminal; a second output transistor having an end that is connected to the power supply, and another end that is connected to a second output terminal; a third output transistor having an end that is connected to the first output terminal, and another end that is connected to a fixed potential; a fourth output transistor having an end that is connected to the second output terminal, and another end that is connected to the fixed potential; a first detection resistor having an end that is connected to the other end of the third output transistor, and another end that is connected to the fixed potential; and a second detection resistor having an end that is connected to the other end of the fourth output transistor, and another end that is connected to the fixed potential, wherein the overcurrent detection circuit detects currents flowing through the first detection resistor and the second detection resistor to detect the overcurrent of a current outputted from the bridge circuit, and outputs the detection signal depending on a detection result, and wherein the driving circuit controls an output operation of the bridge circuit to output electric power by controlling operations of the first to fourth output transistors based on the control signal during the normal operation. 9 . The power supply device according to claim 1 , wherein the control unit sets the off period, during which the output operation of the output circuit is forcibly suspended, by means of software. 10 . The power supply device according to claim 1 , wherein the output node is connected to the first node, wherein the off-state fixing circuit includes: a first PNP-type bipolar transistor having an emitter that is connected to the power supply; a first control resistor having an end that is connected to a collector of the first PNP-type bipolar transistor; a first NPN-type bipolar transistor having a collector that is connected to another end of the first control resistor, an emitter that is connected to a fixed potential, and a base, to which the cancellation signal is inputted from the control unit; a second control resistor having an end that is connected to the power supply, and another end that is connected to a base of the first PNP-type bipolar transistor; a third control resistor having an end that is connected to the other end of the second control resistor, and another end that is connected to the first node; and a second NPN-type bipolar transistor having a collector that is connected to the other end of the third control resistor, an emitter that is connected to the fixed potential, and a base that is connected to the other end of the first control resisto

Assignees

Inventors

Classifications

  • H02J3/10Primary

    Current-controlled supply systems, e.g. constant-current supply systems · CPC title

  • Interface arrangements · CPC title

  • semiconductor devices only · CPC title

  • using digital techniques or performing arithmetic operations (using digital techniques to measure a voltage or a current, see G01R19/25) · CPC title

  • Modifications for eliminating interference voltages or currents · CPC title

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What does patent US2019089157A1 cover?
A power supply device includes an output circuit configured to be supplied with electric power from a power supply, and to output a current, a driving circuit configured to control an output operation of the output circuit to output a current, an overcurrent detection circuit configured to output a detection signal to a first node when detecting an overcurrent in the output circuit, an off-stat…
Who is the assignee on this patent?
Shindengen Electric Mfg
What technology area does this patent fall under?
Primary CPC classification H02J3/10. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Mar 21 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).