Charge pump circuit, corresponding device and method

    公开(公告)号:US11646658B2

    公开(公告)日:2023-05-09

    申请号:US17533338

    申请日:2021-11-23

    CPC classification number: H02M3/077 H02M3/076

    Abstract: Charge pump stages are coupled between flying capacitor pairs and arranged in a cascaded between a bottom voltage line and an output voltage line. Gain stages apply pump phase signals having a certain amplitude to the charge pump stages via the flying capacitors. A feedback signal path from the output voltage line to the bottom voltage line applies a feedback control signal to the bottom voltage line. Power supply for the gain stages is provided by a voltage of the feedback control signal in order to control the amplitude of the pump phase signals. An asynchronous logic circuit generates the switching drive signals for the gain stages with a certain switching frequency which is a function of a logic supply voltage derived from the voltage of the feedback control signal.

    Control circuit for an electronic converter, related integrated circuit, electronic converter and method

    公开(公告)号:US11527956B2

    公开(公告)日:2022-12-13

    申请号:US17335523

    申请日:2021-06-01

    Abstract: A control circuit for controlling switching operation of a switching stage of a converter includes a phase detector circuit that generates a pulse-width modulated (PWM) signal in response to a phase comparison of two clock signals. A first clock signal has a frequency determined as a function of a first feedback signal proportional to converter output voltage. A first transconductance amplifier generates a first current indicative of a difference between a reference voltage and the first feedback signal, and a second transconductance amplifier generates a second current indicative of a difference between the reference voltage and a second feedback signal proportional to a derivative of the converter output voltage. A delay line introduces a delay in the first clock signal that is dependent on the first and second currents as well as a compensation current dependent on a selected operational mode of the converter.

    Large input swing circuit, corresponding device and method

    公开(公告)号:US10326418B2

    公开(公告)日:2019-06-18

    申请号:US15982548

    申请日:2018-05-17

    Abstract: A circuit includes an input transistor pair with first and second input transistors, the first input transistor having a control terminal configured to receive an input signal and a cascode transistor pair including a first and second cascode transistors having a common control node. A bias circuit has a bias input configured to receive the input signal and a first bias output coupled to the common node of the first and second cascode transistors. The bias circuit includes a signal tracking circuit operating to generate the first bias output to track the input signal. A pair of load transistors are coupled to the input transistor pair and biased by a second bias output of the bias circuit.

    High-efficiency energy harvesting interface and corresponding energy harvesting system
    39.
    发明授权
    High-efficiency energy harvesting interface and corresponding energy harvesting system 有权
    高效能量采集接口和相应的能量采集系统

    公开(公告)号:US09379615B2

    公开(公告)日:2016-06-28

    申请号:US14749254

    申请日:2015-06-24

    CPC classification number: H02M3/02 H02J3/385 H02J7/32 H02J7/35 H02M3/158 Y02B10/14

    Abstract: An electrical-energy harvesting system envisages a transducer for converting energy from an environmental energy source into a transduced signal, an electrical energy harvesting interface for receiving the transduced signal and for supplying a harvesting signal, and an energy storage element coupled to the electrical energy harvesting interface for receiving the harvesting signal. The electrical-energy harvesting system also includes a voltage converter connected to the electrical energy harvesting interface for generating a regulated voltage. The harvesting interface samples an open-circuit voltage value of the transduced signal, generates an optimized voltage value starting from the open-circuit voltage value, and generates an upper threshold voltage and a lower threshold voltage on the basis of the optimized voltage value. The harvesting interface controls the voltage converter in switching mode so that the harvesting signal has a value between the upper and lower threshold voltages in at least one operating condition.

    Abstract translation: 电能收集系统设想用于将来自环境能源的能量转换成转换信号的换能器,用于接收转换信号并用于提供收获信号的电能收集界面,以及耦合到电能收集的能量存储元件 用于接收收获信号的接口。 电能收集系统还包括连接到电能收集界面的电压转换器,用于产生调节电压。 采集接口采样转换信号的开路电压值,从开路电压值开始产生优化的电压值,并根据优化电压值生成上阈值电压和下阈值电压。 采集接口以开关模式控制电压转换器,使得收集信号在至少一个操作条件下具有在上限和下限阈值电压之间的值。

    Biasing circuit for a microelectromechanical acoustic transducer and related biasing method

    公开(公告)号:US09329610B2

    公开(公告)日:2016-05-03

    申请号:US13921033

    申请日:2013-06-18

    CPC classification number: G05F1/467 H02M3/07

    Abstract: A biasing circuit for an acoustic transducer is provided with: a voltage-booster stage, which supplies, on a biasing terminal, a boosted voltage for biasing a first terminal of the acoustic transducer; and filtering elements, set between the biasing terminal and the acoustic transducer, for filtering disturbances on the boosted voltage. The biasing circuit is further provided with switches, which can be actuated so as to connect the first terminal to the biasing terminal of the voltage-booster stage, directly during a start-up step of the biasing circuit, and through the filtering elements at the end of the start-up step.

Patent Agency Ranking