Apparatus and method for reverse battery protection
US-2016241013-A1 · Aug 18, 2016 · US
US11228305B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11228305-B2 |
| Application number | US-201816770339-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 22, 2018 |
| Priority date | Dec 6, 2017 |
| Publication date | Jan 18, 2022 |
| Grant date | Jan 18, 2022 |
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A load drive circuit includes a power source terminal (“PST”), a power source and a load terminal connecting a load to the power source. A semiconductor switch connects the PST to the load terminal. A control circuit includes an output terminal for opening/closing the semiconductor switch. A freewheeling circuit includes a freewheeling diode and a protection switch blocks a current from the power source to the semiconductor switch when the power source is connected in a reverse manner. A first terminal connects the control circuit to a first fixed potential and a second terminal connects an anode of the freewheeling diode to a second fixed potential. A connection circuit includes a connection switch connecting the output terminal and the first terminal. The connection circuit connects the output terminal to the first terminal when a rise in a potential difference between the first terminal and the second terminal is detected.
Opening claim text (preview).
The invention claimed is: 1. A load drive circuit for preventing a flyback current from a common splice load, the load circuit comprising: a power source terminal for connecting a power source; a load terminal for connecting a load to which power is to be supplied from the power source connected to the power source terminal; a semiconductor switch connected between the power source terminal and the load terminal; a freewheeling circuit that includes: a freewheeling diode connected to the semiconductor switch, and a protection switch that is connected to the freewheeling diode in series, and, when the power source is connected in a reverse manner, switches off and blocks flow of a current from the power source to the semiconductor switch via the freewheeling diode; a control circuit that includes: a first control terminal for outputting a signal for opening/closing the semiconductor switch, and a second control terminal for outputting a signal for opening/closing the protection switch; a first terminal for connecting the control circuit to a first fixed potential; a second terminal for connecting an anode of the freewheeling diode to a second fixed potential via the protection switch, wherein the common splice load is also connected to the second terminal; and a connection circuit that includes a connection switch installed in a conductive path that connects the second control terminal and the first terminal, wherein, when a rise in a potential difference between the first terminal and the second terminal is detected, the connection circuit connects the second control terminal and the first terminal by switching on the connection switch so as to prevent the flyback current from the common splice load to the freewheeling diode. 2. The load drive circuit according to claim 1 , wherein the connection circuit detects a rise in a potential difference that occurs when connection between the second terminal and the second fixed potential is cancelled. 3. The load drive circuit according to claim 2 , comprising: a zener diode connected between the protection switch and the power source terminal. 4. The load drive circuit according to claim 1 , comprising: a first blocking circuit that is provided between the second control terminal and the freewheeling circuit, and switches off the protection switch when connection between the first terminal and the first fixed potential is cancelled. 5. The load drive circuit according to claim 4 , further comprising: a second blocking circuit that is provided between the first blocking circuit and the freewheeling circuit, and, when a decrease in a potential difference between the power source terminal and the second terminal is detected, switches off the protection switch. 6. The load drive circuit according to claim 5 , comprising: a zener diode connected between the protection switch and the power source terminal. 7. The load drive circuit according to claim 4 , comprising: a zener diode connected between the protection switch and the power source terminal. 8. The load drive circuit according to claim 1 , comprising: a zener diode connected between the protection switch and the power source terminal.
the devices being field-effect transistors · CPC title
responsive to reversal of power transmission direction (reversal of direct current H02H3/18) · CPC title
for the generation of a regulated current to a load whose impedance is substantially inductive · CPC title
by measures taken in the control circuit · CPC title
responsive to deterioration or interruption of earth connection (for preventing switching-on H02H11/001) · CPC title
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