IPC분류정보
국가/구분 |
United States(US) Patent
등록
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국제특허분류(IPC7판) |
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출원번호 |
US-0648891
(2003-08-27)
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발명자
/ 주소 |
- Stanesti,Vlad Popescu
- Niculae,Marian
- Bucur,Constantin
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출원인 / 주소 |
- O2Micro International Limited
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대리인 / 주소 |
Grossman, Tucker, Perreault &
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인용정보 |
피인용 횟수 :
18 인용 특허 :
15 |
초록
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A charging circuit for controlling a system charging parameter provided to a host of rechargeable batteries, wherein the host of batteries includes at least a first battery and second battery that may be coupled in parallel. The charging circuit provides for fast charging of rechargeable batteries i
A charging circuit for controlling a system charging parameter provided to a host of rechargeable batteries, wherein the host of batteries includes at least a first battery and second battery that may be coupled in parallel. The charging circuit provides for fast charging of rechargeable batteries in parallel. Independent current and voltage sensing for each battery enables parallel charging of batteries at different charging currents. The charging circuit may be configured to accept either analog or digital signals from an associated power management unit.
대표청구항
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What is claimed is: 1. A charging circuit for controlling a system charging parameter provided to a host of batteries by a DC to DC converter, wherein said host of batteries comprises at least a first battery and second battery that may be coupled in parallel, said charging circuit compnsing: a fir
What is claimed is: 1. A charging circuit for controlling a system charging parameter provided to a host of batteries by a DC to DC converter, wherein said host of batteries comprises at least a first battery and second battery that may be coupled in parallel, said charging circuit compnsing: a first pat configured to monitor a first battery charging current provided to said first battery; a second path configured to monitor a second battery charging current provided to said second battery; a third path configured to monitor a first battery charging voltage provided to said first battery; a fourth path configured to monitor a second battery charging voltage provided to said second battery; and a regulating circuit configured to reduce said system charging parameter provided to said host of batteries by providing a control signal to said DC to DC converter if said first battery charging current exceeds a first maximum charging current level or said second battery charging current exceeds a second maximum charging current level or said first battery charging voltage exceeds a first maximum charging voltage level, or said second battery charging voltage exceeds a second maximum charging voltage level, said first and second maximum charging current levels and said first and second maximum charging voltage levels provided to at least one input terminal of said charging circuit by a host power management unit. 2. The charging circuit of claim 1, wherein said first maximum charging current level is substantially equal to said second maximum charging current level. 3. The charging circuit of claim 1, wherein said first maximum charging voltage level is substantially equal to said second maximum charging voltage level. 4. The charging circuit of claim 1, wherein said first path comprises a first error amplifier configured to receive a first monitoring signal representative of said first battery charging current and a first comparison signal representative of said first maximum charging current level, and to provide a first control signal to said regulating circuit based on a difference between said first monitoring signal and said first comparison signal, and wherein said second path comprises a second error amplifier configured to receive a second monitoring signal representative of said second battery charging current and a second comparison signal representative of said second maximum charging current level, and to provide a second control signal to said regulating circuit based on a difference between said second monitoring signal and said second comparison signal, an output of said first and second error amplifiers coupled directly to said regulating circuit, and wherein said first error amplifier controls said regulated circuit if said first error amplifier detects said first charging current is greater than said first maximum charging current level before said second error amplifier detects said second charging current is greater than said second maximum charging current level. 5. A method for controlling a system charging parameter provided to a host of batteries by a DC to DC converter wherein said host of batteries comprises at least a first battery and second battery that may be coupled in parallel, said method comprising: monitoring a first battery charging current level provided to said first battery with a charging circuit; monitoring a second battery charging current provided to said second battery with a charging circuit; monitoring a first battery charging voltage provided to said first battery with a charging circuit; monitoring a second battery charging voltage provided to said second battery with a charging circuit; and reducing said system charging parameter provided to said host of batteries if said first charging current level exceeds a second maximum charging current level or said second charging current level exceeds a second maximum charging current level, or said first battery charging voltage exceeds a first maximum charging voltage level, or said second battery charging voltage exceeds a second maximum charging voltage level, said first and second maximum charging current levels and said first and second maximum charging voltage levels provided to at least one input terminal of said charging circuit by a host power management unit. 6. The method of claim 5, wherein said first maximum charging current level is substantially equal to said second maximum charging current level. 7. The method of claim 5, wherein said first maximum charging voltage level is substantially equal to said second maximum charging voltage level. 8. A charging circuit for regulating an output parameter of a DC to DC converter, said output parameter of said DC to DC converter providing power to a host of batteries, wherein said host of batteries comprises at least a first battery and second battery that may be coupled in parallel, said charging circuit comprising: a first path configured to monitor a first battery charging current level provided to said first battery; a second path configured to monitor a second battery charging current provided to said second battery; a third path configured to monitor a first battery charging voltage provided to said first battery; a fourth path configured to monitor a second battery charging voltage provided to said second battery; and a regulating circuit configured to reduce said output parameter of said DC to DC converter if one of said first battery charging current, said second battery charging current, said first battery charging voltage, and said second battery charging voltage exceeds an associated maximum level when said first battery and said second battery are coupled in parallel, said associated maximum levels provided to at least one input terminal of said charging circuit by a host power management unit. 9. An electronic device comprising: a power management unit configured to provide an output signal representative of at least a first maximum charging current level, a second maximum charging current level, a first maximum charging voltage level, and a second maximum charging voltage level; a host of batteries comprising at least a first battery and a second battery coupled in parallel; a charging circuit for controlling a system charging parameter provided to said host of batteries by a DC to DC converter, said charging circuit comprising: a first path configured to monitor a first battery charging current provided to said first battery and compare said first battery charging current to said first maximum charging current level; a second pat configured to monitor a second battery charging current level provided to said second battery and compare said second battery charging current to said second maximum charging current level; a third path configured to monitor a first battery charging voltage provided to said first battery and compare said first battery charging voltage to said first maximum charging voltage a fourth path configured to monitor a second battery charging voltage provided to said second battery and compare said second battery charging voltage to said second maximum charging voltage level; and a regulating circuit configured to reduce said system charging parameter provided to said host of batteries if said first charging current exceeds said first maximum charging current level or said second charging current exceeds said second maximum charging current level, or said first battery charging voltage exceeds said first maximum charging voltage level, or said second battery charging voltage exceeds said second maximum charging voltage level, said first and second maximum charging current levels and said first and second maximum charging voltage levels provided to at least one input terminal of said charging circuit by said power management unit. 10. The electronic device of claim 9, wherein said output signal from said power management unit comprises an analog signal. 11. The electronic device of claim 9, wherein said output signal from said power management unit comprises a digital signal. 12. The electronic device of claim 11, wherein said charging circuit further comprises: a digital interface configured to receive said digital signal from said power management unit and provide an interface output signal; and a DAC configured to receive said interface output signal and convert said signal to an analog signal representative of said interface output signal. 13. The electronic device of claim 12, wherein said charging circuit further comprises a multiplexer to separate said analog signal into a plurality of analog signals representative of at least said first maximum charging current level, said second maximum charging current level, said first maximum charging voltage level, and said second maximum charging voltage level. 14. An electronic device that may be powered by one or more of a host of rechargeable batteries or a DC power source, said electronic device comprising: a power management unit (PMU) configured to run a power management routine; a charging circuit configured to control charging of said host of rechargeable batteries, wherein said host of batteries comprises at least a first battery and a second battery coupled in parallel, said charging circuit comprising; a first path configured to monitor a first battery charging current level provided to said first battery and compare said first battery charging current level to said first maximum charging current level; a second path configured to monitor a second battery charging current level provided to said second battery and compare said second battery charging current level to said second maximum charging current level; a third path configured to monitor a first battery charging voltage provided to said first battery and compare said first battery charging voltage to said first maximum charging voltage level; a fourth path configured to monitor a second battery charging voltage provided to said second battery and compare said second battery charging voltage to said second maximum charging voltage level; and a regulating circuit configured to reduce said system charging parameter provided to said host of batteries if said first charging current exceeds said first maximum charging current level or said second charging current exceeds said second maximum charging current level, or said first battery charging voltage exceeds said first maximum charging voltage level, or said second battery charging voltage exceeds said second maximum charging voltage level, said first and second maximum charging current levels and said first and second maximum charging voltage levels provided to at least one input terminal of said charging circuit by said power management unit; and a selector circuit configured to select at least one of said DC source and said host of batteries in response to a PMU output signal from said PMU. 15. The electronic device of claim 14, wherein said charging circuit and said selector circuit are integrated onto one integrated circuit.
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