US2009108677A1PendingUtilityA1
Bidirectional power converters
Est. expiryOct 29, 2027(~1.2 yrs left)· nominal 20-yr term from priority
H02M 1/32H02M 1/0009Y02B70/10H02M 3/1588H02M 3/1582H02M 3/33584H02M 3/1584
37
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Claims
Abstract
Circuits and methods for bidirectional power conversion are provided that allow mobile and other devices to generate power suitable to support multiple modes of operation. The bidirectional power converters of the present invention may operate in both step up and step down configurations rather than having a single dedicated conversion function and use many of the same components thereby reducing converter size and complexity.
Claims
exact text as granted — not AI-modified1 . A bi-directional power converter, which operates as a step down converter in a first direction and a step up converter in a second direction, comprising:
one reactive element for storing energy when operating in the first direction and the second direction; a plurality of switching elements for selectively coupling the one reactive element to one of two or more power sources; and mode selection circuitry for selectively coupling the bi-directional power converter to a first power source when operating as a step down converter and to a second power source when operating a step up converter, such that when the bi-directional power converter is operating as the step up converter, the bi-directional power converter is configured to deliver power to a communications link that includes a power component.
2 . The bi-directional power converter of claim 1 configured to provide power to the communications link in compliance with the universal serial bus On The GO specification when operating as a step up converter.
3 . The bi-directional power converter of claim 1 configured to provide power sufficient to operate a mobile device when operating as a step down converter.
4 . The bi-directional power converter of claim 1 further comprising a battery charging circuit.
5 . The bi-directional power converter of claim 4 wherein the battery charging circuit is used to regulate power provided to an energy storage device when the bi-directional power converter operating as a step down converter.
6 . The bi-directional power converter of claim 1 further comprising control circuitry coupled to the mode selection circuitry, the control circuitry controlling the plurality of switches such that the bi-directional power converter operates in either the step up or step down mode in response to a mode selection signal provided by the mode selection circuitry.
7 . The bi-directional power converter of claim 6 wherein the control circuitry controls the duty cycle of at least one of the plurality of switches such that the bi-directional power converter provides a desired regulated output voltage.
8 . The bi-directional power converter of claim 1 wherein the mode selection circuitry further comprises sensing circuitry.
9 . The bi-directional power converter of claim 8 wherein the sensing circuitry includes a comparison circuit.
10 . The bi-directional power converter of claim 1 wherein the first power source is a power adapter.
11 . The bi-directional power converter of claim 1 wherein the second power source is a battery of a mobile device.
12 . A bi-directional DC to DC power converter, which operates as a buck converter in a first direction and a boost converter in a second direction, comprising:
one reactive element for storing energy when operating in either the first direction or the second direction; a plurality of switching elements for selectively coupling the one reactive element to one of two or more power sources; and control circuitry controlling the plurality of switches such that the bi-directional power converter operates in either a buck mode or boost mode, such that when the bi-directional power converter is operating as the boost converter, the bi-directional power converter is configured to deliver power to a communications link that includes a power component.
13 . The bi-directional power converter of claim 12 configured to provide power to the communications link in compliance with the universal serial bus On The GO specification when operating as a boost converter.
14 . The bi-directional power converter of claim 12 configured to provide power sufficient to operate a mobile device when operating as a buck converter.
15 . The bi-directional power converter of claim 12 further comprising a battery charging circuit.
16 . The bi-directional power converter of claim 15 wherein the battery charging circuit is used to regulate power provided to an energy storage device when the bi-directional power converter operating as a buck converter.
17 . The bi-directional power converter of claim 1 further comprising mode selection circuitry coupled to the control circuitry for selectively coupling the bi-directional power converter to a first power source when operating as the buck converter and to a second power source when operating as the boost converter.
18 . The bi-directional power converter of claim 17 wherein the control circuitry controls the duty cycle of at least one of the plurality of switches such that the bi-directional power converter provides a desired regulated output voltage.
19 . The bi-directional power converter of claim 17 wherein the mode selection circuitry further comprises sensing circuitry.
20 . The bi-directional power converter of claim 19 wherein the sensing circuitry includes a comparison circuit.
21 . The bi-directional power converter of claim 12 wherein the first power source is a power adapter.
22 . The bi-directional power converter of claim 12 wherein the second power source is a battery of a mobile device.Join the waitlist — get patent alerts
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