SYSTEMS AND METHODS FOR PREVENTING ELECTRIC POWER CONVERTERS FROM OPERATING IN SLEEP MODE
A system for providing power to a load includes an output converter configured to provide power to a load, at least one battery coupled to the output converter, an input converter coupled to the at least one battery and the output converter, and a control circuit coupled to the input converter. The input converter is configured to provide an output voltage and an output current to the at least one battery and the output converter. The control circuit is configured to regulate the output voltage of the input converter at a defined voltage level to prevent the output converter from operating in a sleep mode. Other example systems, control circuits etc. are also disclosed.
1 . A system for providing power to a load, the system comprising:
an output converter configured to provide power to a load;
at least one battery coupled to the output converter;
an input converter coupled to the at least one battery and the output converter, the input converter configured to provide an output voltage and an output current to the at least one battery and the output converter; and
a control circuit coupled to the input converter, the control circuit configured to regulate the output voltage of the input converter at a defined voltage level to prevent the output converter from operating in a sleep mode.
2 . The system of claim 1 wherein the control circuit is configured to determine a charge state of the at least one battery, and in response to the at least one battery having available capacity, decrease the output voltage of the input converter to the defined voltage level.
3 . The system of claim 1 wherein the control circuit is configured to monitor an input current to the at least one battery, and in response to the input current to the at least one battery equaling a defined current level, regulate the output voltage of the input converter at the defined voltage level.
4 . The system of claim 3 wherein the defined current level is greater than zero.
5 . The system of claim 3 wherein the defined current level is not more than about one tenth percent ( 1/10%) of an output current of the output converter.
6 . The system of claim 1 wherein the defined voltage level is a voltage between about 10.8V and about 15V.
7 . The system of claim 1 wherein the at least one battery includes a Li-Ion battery.
8 . The system of claim 7 wherein the input converter includes a rectifier.
9 . The system of claim 8 wherein the output converter includes a DC/DC converter.
10 . The system of claim 1 wherein the control circuit includes a digital control.
11 . The system of claim 1 wherein the at least one battery and the output converter are components of a battery backup unit.
12 . The system of claim 1 wherein the input converter, the at least one battery, and the output converter are components of a battery backup unit.
13 . The system of claim 1 wherein the control circuit is configured to regulate the output voltage of the input converter at the defined voltage level to maintain the least one battery in a substantially charged state.
14 . A control circuit for a battery backup unit configured to provide power to a load, the BBU including an output converter configured to provide power to a load, at least one battery coupled to the output converter, and an input converter coupled to the at least one battery and the output converter, the input converter configured to provide an output voltage and an output current to the at least one battery and the output converter, the control circuit configured to couple to the input converter and regulate the output voltage of the input converter at a defined voltage level to prevent the output converter from operating in a sleep mode.
15 . The control circuit of claim 14 wherein the control circuit is configured to determine a charge state of the at least one battery, and in response to the at least one battery being in the substantially charged state, decrease the output voltage of the input converter to the defined voltage level.
16 . The control circuit of claim 14 wherein the control circuit is configured to monitor an input current to the at least one battery, and in response to the input current to the at least one battery equaling a defined current level, regulate the output voltage of the input converter at the defined voltage level.
17 . The control circuit of claim 16 wherein the defined current level is greater than zero.
18 . The control circuit of claim 16 wherein the defined current level is not more than about one tenth percent ( 1/10%) of an output current of the output converter.
19 . The control circuit of claim 14 wherein the defined voltage level is a voltage between about 10.8V and about 15V.
20 . The control circuit of claim 14 wherein the control circuit includes a digital control.