Load driving device
US-2017329378-A1 · Nov 16, 2017 · US
US2016190791A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016190791-A1 |
| Application number | US-201514983355-A |
| Country | US |
| Kind code | A1 |
| Filing date | Dec 29, 2015 |
| Priority date | Dec 31, 2014 |
| Publication date | Jun 30, 2016 |
| Grant date | — |
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Disclosed embodiments relate to a DC circuit breaker and a circuit breaking method thereof which comprises: a measuring portion for measuring a DC current conducted through a first circuit portion; the first circuit portion for conducting and blocking the DC current; and a second circuit portion for conducting and blocking the DC current which is bypassed from the first circuit portion and controlling the open/close operation of the first circuit portion according to a measuring result of the measuring portion, wherein, in the first circuit portion and the second circuit portion, switching elements, which are included in each of them, are connected in a parallel configuration such that a high switching operation during a blocking operation can be improved and the DC current can be blocked in a safer and more efficient manner, and a circuit breaking method of the DC circuit breaker.
Opening claim text (preview).
What is claimed is: 1 . A direct current (DC) circuit breaker comprising: a first circuit portion configured to conduct or block a DC current; a measuring portion configured to measure the DC current which is conducted to the first circuit portion; and a second circuit portion configured to conduct or block the DC current, which is bypassed from the first circuit portion, and further configured to control the opening/closing of the first circuit portion according to a measuring result of the measuring portion, wherein in the first circuit portion and the second circuit portion, switching elements, which are included in each of the first and second circuit portions, are arranged in a parallel structure. 2 . The DC circuit breaker of claim 1 , wherein the measuring portion comprises: a current transformer configured to be arranged at an earlier stage than the first circuit portion to measure the DC current; and a determining portion configured to determine whether a failure occurs based on a measuring result of the current transformer. 3 . The DC circuit breaker of claim 1 , wherein the switching elements are power semiconductor elements configured to be turned on or off according to the measuring result of the measuring portion. 4 . The DC circuit breaker of claim 3 , wherein the power semiconductor elements formed in a bidirectional structure in which two semiconductor elements are configured to conduct the current in different directions. 5 . The DC circuit breaker of claim 1 , wherein the first circuit portion comprises: a first switching element configured to conduct and block the DC current; and a first contact portion configured to open and close the first circuit portion, wherein the first switching element and the first contact portion are connected in series to each other. 6 . The DC circuit breaker of claim 5 , wherein the first switching element is configured to block the DC current according to the measuring result of the measuring portion such that the DC current is bypassed toward the second circuit portion. 7 . The DC circuit breaker of claim 5 , wherein the first contact portion is configured to be close-circuited during normal use and configured to be open-circuited when the current flows through a driving coil which is included in the second circuit portion. 8 . The DC circuit breaker of claim 1 , wherein the second circuit portion comprises: a second switching element configured to conduct and block the DC current which is bypassed from the first circuit portion; and the driving coil configured to allow a first contact portion, which is included in the first circuit portion, to be open-circuited when the driving coil conducts the current, wherein the second switching element and the driving coil are connected in series to each other. 9 . The DC circuit breaker of claim 8 , wherein the second circuit portion is connected in parallel with a first switching element which is included in the first circuit portion. 10 . The DC circuit breaker of claim 8 , wherein the second switching element is configured to block the bypassed DC current after the first contact portion is open-circuited. 11 . The DC circuit breaker of claim 8 , wherein the second circuit portion comprises an impedance element which is configured to prevent an overvoltage from being applied on the second switching element. 12 . The DC circuit breaker of claim 1 , wherein an impedance element is configured to maintain, during a normal state, the impedance of the second circuit portion to be higher than the impedance of the first circuit portion. 13 . The DC circuit breaker of claim 1 , further comprising: a charging portion configured to be charged by the DC current which is bypassed from the first circuit portion and the second circuit portion; and a limiting portion configured to limit the current which is discharged from the charging portion after the charging of the charging portion is completed, wherein the charging portion and the limiting portion are connected in parallel with each other. 14 . The DC circuit breaker of claim 13 , wherein the charging portion is connected in parallel with the first circuit portion and comprises: a capacitor configured to be charged by the DC current which is bypassed from the first circuit portion and the second circuit portion; and a second contact portion configured to open and close the charging portion, wherein the capacitor and the second contact portion are connected in series to each other. 15 . The DC circuit breaker of claim 14 , wherein the capacitor is configured to be charged by the bypassed DC current from when the second contact portion is close-circuited until a first contact portion is open-circuited and the arc, which is generated at the first contact portion, is extinguished. 16 . The DC circuit breaker of claim 14 , wherein the second contact portion is configured to be open-circuited during a normal use and close-circuited when the current flows through the driving coil which is included in the second circuit portion. 17 . The DC circuit breaker of claim 1 , further comprising: arresters which are arranged at an input terminal, to which the DC current is inputted, and an output terminal, from which the DC current is outputted, respectively, wherein the arresters are configured to extinguish the remaining electrical energy after a circuit breaking operation of the DC circuit breaker. 18 . A circuit breaking method performed by a DC circuit breaker, the method comprising: measuring, by a measuring portion, a DC current which is conducted through the first circuit portion; blocking, by the first circuit portion, the DC current according to a measuring result; conducting a DC current, which is bypassed from the first circuit portion, to a second circuit portion; controlling, by the second circuit portion, the first circuit portion to be open-circuited and a charging portion to be close-circuited; blocking, by the second circuit portion, the bypassed DC current; charging the charging portion by the DC current which is bypassed from the second circuit portion; discharging, by the charging portion, a charged current to a limiting portion; and limiting, by the limiting portion, the discharged current.
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