MULTI-MODE FEEDBACK CONTROL THROUGH DIGITAL ISOLATOR

    公开(公告)号:US20200083874A1

    公开(公告)日:2020-03-12

    申请号:US16125620

    申请日:2018-09-07

    Abstract: Power isolators with multiple selectable feedback modes are described. The power isolators may transfer a power signal from a primary side to a second side. A feedback signal may be provided from the secondary side to the primary side to control generation of the power signal on the primary side. In this manner, the power signal provided to the secondary side may be maintained within desired levels. The feedback signal may be generated by feedback circuitry configurable to operate in different modes, such that the feedback signal may be of differing types depending on which feedback mode is implemented.

    POWER TRANSFER AND FEEDBACK ACROSS A COMMON ISOLATOR

    公开(公告)号:US20180205319A1

    公开(公告)日:2018-07-19

    申请号:US15406014

    申请日:2017-01-13

    Abstract: Isolated DC-DC converters are described. A DC-DC converter is a device which converts a direct current (DC) signal from one voltage to another. An isolated DC-DC converter performs the conversion across an electrical isolation barrier separating two voltage domains. The signal converted from one voltage to another, and transferred from one voltage domain to another, may be a power signal. Described are isolated DC-DC converters which transfer a power signal from one voltage domain to another via an isolator, and a power feedback signal back across the isolator. The isolator is a transformer in some situations.

    ISOLATED DC-DC CONVERTER WITH AN H-BRIDGE CIRCUIT

    公开(公告)号:US20180175735A1

    公开(公告)日:2018-06-21

    申请号:US15383480

    申请日:2016-12-19

    CPC classification number: H02M3/33507 H02M1/44 H02M3/3376 H02M2001/123

    Abstract: Isolated DC-DC converters and methods for operating the same are described herein. DC-DC converters include a driver that drives a primary winding of a transformer to transmit power to a secondary winding of the transformer across an isolation barrier. In some embodiments, a pair of symmetrical serial capacitors are provided between the driver and the primary winding of a resonant DC-DC converter with an on-chip transformer to slow down variations of a common mode voltage on the primary winding during operation. This in turn can suppress radiation emissions related to time variation rates of the common mode voltage and, and can also improve electromagnetic interference (EMI) performance of the DC-DC converter.

    Power transfer and feedback across a common isolator

    公开(公告)号:US10680526B2

    公开(公告)日:2020-06-09

    申请号:US15406014

    申请日:2017-01-13

    Abstract: Isolated DC-DC converters are described. A DC-DC converter is a device which converts a direct current (DC) signal from one voltage to another. An isolated DC-DC converter performs the conversion across an electrical isolation barrier separating two voltage domains. The signal converted from one voltage to another, and transferred from one voltage domain to another, may be a power signal. Described are isolated DC-DC converters which transfer a power signal from one voltage domain to another via an isolator, and a power feedback signal back across the isolator. The isolator is a transformer in some situations.

    Isolated DC-DC converter with an H-bridge circuit

    公开(公告)号:US10003267B1

    公开(公告)日:2018-06-19

    申请号:US15383480

    申请日:2016-12-19

    Abstract: Isolated DC-DC converters and methods for operating the same are described herein. DC-DC converters include a driver that drives a primary winding of a transformer to transmit power to a secondary winding of the transformer across an isolation barrier. In some embodiments, a pair of symmetrical serial capacitors are provided between the driver and the primary winding of a resonant DC-DC converter with an on-chip transformer to slow down variations of a common mode voltage on the primary winding during operation. This in turn can suppress radiation emissions related to time variation rates of the common mode voltage and, and can also improve electromagnetic interference (EMI) performance of the DC-DC converter.

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