Electronic Switching and Protection Circuit with Wakeup Function
US-2017294774-A1 · Oct 12, 2017 · US
US2018041022A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2018041022-A1 |
| Application number | US-201615555926-A |
| Country | US |
| Kind code | A1 |
| Filing date | Feb 3, 2016 |
| Priority date | Mar 6, 2015 |
| Publication date | Feb 8, 2018 |
| Grant date | — |
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Official abstract text for this publication.
A load current control apparatus according to the present invention includes a current detecting circuit adapted to detect an electric current on a power supply line used to supply electric power from a power supply unit to a load device, a field effect transistor adapted to turn on and off the power supply line, and a controller adapted to control the field effect transistor according to the electric current on the power supply line, in which the controller starts counting time from a time point when the electric current on the power supply line exceeds the overcurrent detection threshold while maintaining the field effect transistor in an ON state, sets an upper limit time corresponding to the electric current on the power supply line at that time as a time threshold based on a relationship between electric current and time set beforehand according to electrical characteristics of the field effect transistor, and turns off the field effect transistor when a time period corresponding to the time threshold elapses.
Opening claim text (preview).
1 . A load current control apparatus comprising: a current detecting circuit adapted to detect an electric current on a power supply line used to supply electric power from a power supply unit to a load device; a semiconductor switch adapted to turn on and off the power supply line; and a controller adapted to control the semiconductor switch according to the electric current on the power supply line, wherein the controller maintains the semiconductor switch in an ON state while the electric current on the power supply line is equal to or smaller than an overcurrent detection threshold, starts counting time from a time point when the electric current on the power supply line exceeds the overcurrent detection threshold while maintaining the semiconductor switch in the ON state, identifies an upper limit time corresponding to the electric current on the power supply line at that time based on a predetermined relationship between electric current and time according to electrical characteristics of the semiconductor switch, and sets the upper limit time as a time threshold, and turns off the semiconductor switch when a time period corresponding to the time threshold elapses without the electric current on the power supply line falling to or below the overcurrent detection threshold. 2 . The load current control apparatus according to claim 1 , further comprising a heat radiator adapted to dissipate heat generated by the semiconductor switch, wherein: the relationship between electric current and time is predetermined according to the electrical characteristics of the semiconductor switch and heat dissipation characteristics of the heat radiator. 3 . The load current control apparatus according to claim 1 , wherein if the electric current on the power supply line changes before the time period corresponding to the time threshold elapses, the controller identifies the upper limit time corresponding to the electric current after the change based on the relationship between electric current and time while continuing to count the time and updates the time threshold with the upper limit time corresponding to the electric current after the change. 4 . The load current control apparatus according to claim 2 , wherein if the electric current on the power supply line changes before the time period corresponding to the time threshold elapses, the controller identifies the upper limit time corresponding to the electric current after the change based on the relationship between electric current and time while continuing to count the time and updates the time threshold with the upper limit time corresponding to the electric current after the change.
the timing being determined by numerical means · CPC title
for DC applications · CPC title
characterised by their shape, e.g. having conical or cylindrical projections · CPC title
with timing means {(in general H02H3/027; thermal delay H02H3/085; timing means for undervoltage protection H02H3/247)} · CPC title
Electricity · mapped topic
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