Ambient light sensor and method
    161.
    发明授权

    公开(公告)号:US11713998B2

    公开(公告)日:2023-08-01

    申请号:US17663915

    申请日:2022-05-18

    CPC classification number: G01J1/4204 G01J1/44 G01J2001/446

    Abstract: According to one aspect, an ambient-light sensor includes a photodiode configured to generate an electrical signal according to an ambient light, a capacitive-feedback transimpedance amplifier connected at its input to the photodiode for receiving a signal generated by the photodiode and for generating as an output an amplified signal from the signal generated by the photodiode, and an auto-zero switch at the input of the capacitive-feedback transimpedance amplifier. The ambient-light sensor further includes a control circuit including a bootstrap circuit configured to receive an initial positive- or zero-voltage logic control signal, and then generate, from this initial logic control signal, an adapted logic control signal having a first positive voltage level and a second negative voltage control level for controlling the auto-zero switch.

    VOLTAGE LEVEL SHIFTER FOR SUB-THRESHOLD OPERATION

    公开(公告)号:US20230231559A1

    公开(公告)日:2023-07-20

    申请号:US18151337

    申请日:2023-01-06

    CPC classification number: H03K19/018521

    Abstract: Provided is a voltage level shifter that operates in sub-threshold voltages. The level shifter includes a level shifting stage. The level shifting stage receives a first signal from a first voltage domain and outputs a second signal to a second voltage domain. The level shifter includes a first auxiliary stage. In response to the first signal having a first voltage level corresponding to a first logical state and a first node of the level shifting stage having a supply voltage level, the first auxiliary stage sources current to a second node of the level shifting stage. Sourcing the current to the second node accelerates a transition of the first node to a reference voltage. The level shifting stage outputs a second signal to a second voltage domain.

    POSITIVE AND NEGATIVE CHARGE PUMP CONTROL
    165.
    发明公开

    公开(公告)号:US20230198386A1

    公开(公告)日:2023-06-22

    申请号:US18168936

    申请日:2023-02-14

    CPC classification number: H02M3/07 G11C5/145

    Abstract: A voltage supply circuit and a method for controlling a voltage supply circuit are provided. The voltage supply circuit includes a positive charge pump stage that generates a positive voltage and a negative charge pump stage that generates a negative voltage. The voltage supply circuit also includes a control stage that compares a voltage representative of the negative voltage with a reference voltage and causes a slope of the positive voltage to decrease when the voltage representative of the negative voltage exceeds the reference voltage.

    Voltage gain amplifier architecture for automotive radar

    公开(公告)号:US11658624B2

    公开(公告)日:2023-05-23

    申请号:US17461123

    申请日:2021-08-30

    Abstract: Disclosed herein is a method including sinking current from a pair of input transistors of a differential amplifier while sourcing more current to the pair of input transistors than is sunk. The method further includes generating a pair of input differential signals using a pair of input voltage regulators, and amplifying a difference between the pair of input differential signals to produce a pair of differential output voltages, using the differential amplifier. The method also includes amplifying the pair of differential output voltages using at least one voltage gain amplifier, and generating control signals for current sources that source the current to the pair of input transistors of the differential amplifier, from the pair of differential output voltages after at least amplification.

    HIGH ACCURACY FAST VOLTAGE AND TEMPERATURE SENSOR CIRCUIT

    公开(公告)号:US20230140251A1

    公开(公告)日:2023-05-04

    申请号:US17965282

    申请日:2022-10-13

    Inventor: Atul DWIVEDI

    Abstract: A temperature sensing circuit includes a current generation circuit generating an initial current proportional to absolute temperature (Iptat), and a voltage generation circuit configured to mirror Iptat using an adjustable current source to produce a scaled current and to source the scaled current to a first terminal of a resistor to produce a reference voltage at the first terminal. A second terminal of the resistor has a voltage complementary to absolute temperature (Vctat) applied thereto. An analog-to-digital converter (ADC) has a reference input receiving the reference voltage, and a data input receiving Vctat or an externally sourced voltage. The ADC generates an output code indicative of a ratio between: a) either Vctat or the externally sourced voltage, and b) the reference voltage. A digital circuit determines a temperature readout from the output code and calibrates the reference voltage and the temperature readout determination based upon the output code.

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