System and method for fault ride through
US-2017141570-A1 · May 18, 2017 · US
US11444565B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11444565-B2 |
| Application number | US-201917272495-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 11, 2019 |
| Priority date | Sep 13, 2018 |
| Publication date | Sep 13, 2022 |
| Grant date | Sep 13, 2022 |
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Official abstract text for this publication.
A power device includes: a DC voltage output circuit that generates a DC internal power voltage from external supply power; a capacitor that is connected to the internal power voltage; and a voltage supply control circuit that monitors a voltage level of the internal power voltage and that, when detecting a drop in the internal power voltage, cuts off supply of the internal power voltage. The power device supplies internal power to a load. The power device supplies, to a first load that is a part of the load, the internal power voltage, and supplies, to a second load that is a load other than the first load, the internal power voltage via the voltage supply control circuit.
Opening claim text (preview).
The invention claimed is: 1. A power device that supplies internal power to a load, the power device comprising: a DC voltage output circuit that generates a DC internal power voltage from an external supply power; a capacitor that is connected to the DC internal power voltage; and a voltage supply control circuit that monitors a voltage level of the DC internal power voltage and that, when detecting a drop in the DC internal power voltage, cuts off supply of the internal power voltage, wherein the voltage supply control circuit includes a voltage monitoring circuit that monitors the DC internal power voltage and an opening and closing switch controlled by the voltage monitoring circuit, the power device is configured to supply, to a first load that is a part of the load, the DC internal power voltage, and is configured to supply, to a second load that is a load other than the first load, the DC internal power voltage via the opening and closing switch, and the voltage monitoring circuit is configured to open the opening and closing switch when the DC internal power voltage is at a voltage lower than a predetermined reference voltage. 2. The power device according to claim 1 , wherein when detecting a drop in the DC internal power voltage, the voltage supply control circuit cuts off the supply of the DC internal power voltage for a predetermined period. 3. A motor control apparatus that drives and controls a motor, the motor control apparatus comprising: the power device according to claim 1 ; as the first load, a motor controller that controls rotation of the motor; and as the second load, a motor drive unit that energizes the motor according to a command from the motor controller. 4. The motor control apparatus according to claim 3 , wherein the motor controller has a microcontroller, the power device supplies the DC internal power voltage to the microcontroller, and the microcontroller controls the voltage supply control circuit so as to resume the supply of the DC internal power voltage after a predetermined time has passed since cut-off of the supply of the DC internal power voltage by the voltage supply control circuit. 5. The power device according to claim 1 , wherein the second load is a load that does not need to operate after the supply is cut off, and the first load is a circuit that needs to operate for a while after the supply of power is cut off. 6. A power device that supplies internal power to a load, the power device comprising: a DC voltage output circuit that generates a DC internal power voltage from an external power supply; a capacitor that is connected to the DC internal power voltage; a voltage supply control circuit that monitors a voltage level of the DC internal power voltage and, when detecting a drop in the DC internal power voltage, cuts off supply of the internal power voltage; and a booster circuit that generates a boosted voltage by boosting the DC internal power voltage, wherein the voltage supply control circuit includes a selection switch that selects one of the DC internal power voltage and the boosted voltage and supplies the selected voltage to a first load that is a part of the load, a first terminal of the selection switch being connected to an output of the DC internal power voltage and a second terminal of the selection switch being connected to an output of the booster circuit, and the voltage supply control circuit is configured to cut off the supply of the DC internal power voltage to a second load that is a load other than the first load, when it detects a drop in the DC internal power voltage, and is configured to supply, to the first load, by controlling the selection switch, by switching from the supply of the DC internal power voltage to the supply of the boosted voltage. 7. A power device that supplies internal power to a load, the power device comprising: a DC voltage output circuit that generates a DC internal power voltage from an external supply power; a capacitor that is connected to the DC internal power voltage; a booster circuit that generates a boosted voltage by boosting the DC internal power voltage; and a selection switch that selects and outputs one of the internal power voltage and the boosted voltage, a first terminal of the selection switch being connected to an output of the DC internal power voltage and a second terminal of the selection switch being connected to an output of the booster circuit, and a voltage supply control circuit that monitors a voltage level of the DC internal power voltage and that, when detecting a drop in the DC internal power voltage, supplies the internal power by switching from supply of the DC internal power voltage to supply of the boosted voltage by controlling the selection switch, wherein the power device is configured to supply, to a part of the load, the internal power via the voltage supply control circuit.
with means for allowing continuous operation despite a fault, i.e. fault tolerant converters · CPC title
with pulse width modulation · CPC title
Means for increasing hold-up time, i.e. the duration of time that a converter's output will remain within regulated limits following a loss of input power · CPC title
Means for starting or stopping converters · CPC title
using semiconductor devices only · CPC title
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