Abstract: Methods and apparatuses for regulating a power converter are described. A device comprising a control circuit and a logic circuit can be integrated in a controller coupled to the power converter. The control circuit can generate a constant off-time signal based on a ramp signal and an error signal. The logic circuit can generate a control signal based on the constant off-time signal and a constant on-time signal. The logic circuit can output the control signal to the power converter. In response to an on-time period of the constant off-time signal being less than an on-time period of the constant on-time signal, the control signal can vary according to the constant on-time signal. In response to the on-time period of the constant off-time signal being greater than the on-time period of the constant on-time signal, the control signal can vary according to the constant off-time signal.
Type:
Grant
Filed:
July 9, 2021
Date of Patent:
April 4, 2023
Assignee:
Renesas Electronics America, Inc.
Inventors:
Long Yu, Jin Yang, Jianhua Yang, Pengcheng Tang, Xiaodong Zhan
Abstract: Battery charger systems and apparatuses are described. In an example, an apparatus may include a first controller, a first port connected to the first controller, a first charger module connected to the first controller, a second controller, a second port connected to the second controller, and a second charger module connected to the second controller. The first controller may be configured to form a first connection path between the first charger module and the second port via the second controller. The first controller may be further configured to form a second connection path between the second charger module and the first port via the first controller.
Abstract: A light detection and ranging system having a reference receiver channel and at least one comparator for comparing the output of the reference receiver channel and the output of each of the separate receiver channels to a second emitted light signal, the reference receiver channel having a reference optical sensor and a reference amplifier, wherein the at least one comparator can adjust the gain of the amplifiers of each separate receiver channels based on the result of the comparison of the output of the reference receiver channel and the output of the corresponding separate receiver channel. An optical receiver system and a method for operating a light detection and ranging system are also provided.
Abstract: Various exemplary embodiments are directed to methods including obtaining an input sample magnitude, filtering the obtained input sample magnitude, generating a sample-to-sample difference based on the filtered input sample magnitude, and engaging an actuator in accordance with a determination that the sample-to-sample difference satisfies a rate threshold.
Type:
Grant
Filed:
June 23, 2020
Date of Patent:
March 28, 2023
Assignee:
Renesas Electronics America Inc.
Inventors:
Christopher Semanson, James Page, Onkar Raut
Abstract: Example implementations include a method of obtaining an input voltage of a power converter circuit and a system voltage of the power converter circuit, obtaining a voltage rate gain based on an aggregate inductance of the power converter circuit, and in accordance with a determination that the input voltage and the system voltage are not equal, generating a rate offset voltage based on the voltage rate gain and the system voltage difference.
Abstract: Systems and apparatuses for wireless power transfer system are described. A receiver may send an amplitude shift key (ASK) signal to a transmitter. The transmitter may receive the ASK signal from the receiver. The transmitter may perform a demodulation on the ASK signal. The transmitter may, in response to a failure to demodulate the ASK signal, encode a notification of failure in a frequency shift key (FSK) signal. The transmitter may transmit the FSK signal to the receiver. The receiver may receive the FSK signal. The receiver may perform a function to resolve the failure to demodulate the ASK signal.
Type:
Application
Filed:
September 15, 2021
Publication date:
March 16, 2023
Applicant:
Renesas Electronics America Inc.
Inventors:
Jiangjian Huang, Hulong Zeng, Gopinath Akkinepally, Amit Dharmendra Bavisi
Abstract: According to certain general aspects, the present embodiments relate generally to securing communication between ECUs. Example implementations can include a method of securely transmitting Controller Area Network (CAN) protocol frames via a CAN controller.
Abstract: Methods and apparatuses for controlling an apparatus comprising a controller integrated in a first slave device. In an example, the controller can detect a sensed current of the first slave device. The controller can receive a voltage signal associated with a second slave device connected to the first slave device. The controller can generate a correction current based on the sensed current of the first slave device and the voltage signal. The controller can modulate a pulse width modulation (PWM) signal received by the first slave device using the correction current. The controller can control a power converter using the modulated PWM signal.
Type:
Grant
Filed:
June 14, 2021
Date of Patent:
February 14, 2023
Assignee:
Renesas Electronics America, Inc.
Inventors:
Chun Cheung, Paul Dackow, Brandon Howell, Kunrong Wang, Matthew Harris
Abstract: Apparatuses, systems, and methods for implementing a multi-driver architecture are described. The multi-driver architecture may include a first driver and a second driver configured to receive an input voltage. A predriver logic circuit may select one of the first driver and the second driver to convert the input voltage into an output voltage. A controller may be connected to the first driver and the second driver, and a switch may be connected between an output terminal of the first driver and the controller. The controller may be configured to control an internal resistance of the switch. In response to the first driver being selected by the predriver logic circuit, the first driver may output the output voltage at a constant impedance level.
Abstract: A method for detecting a phase shift in an output signal of an inductive position sensor by calculating the phase spectrum of the position signal based on a Fast Fourier Transformation of the position signal and comparing the calculated phase spectrums over time to detect changes in the phase spectrums.
Type:
Application
Filed:
July 25, 2022
Publication date:
February 2, 2023
Applicant:
Renesas Electronics America Inc.
Inventors:
Gentjan QAMA, Harald HARTL, Andreas BUCHINGER
Abstract: Apparatuses including multiple selectable circuit elements are described. In an example, an apparatus may include a power supply configured to output a voltage. The apparatus may further include a controller connected to the power supply and a transmission unit connected to the controller. The transmission unit may be configured to output power. The transmission unit may include comprising an inverter connected to the power supply. The inverter may include a high-side switching element. The transmission unit may further include a circuit element a circuit connected to the power supply. The circuit may be configured to select the circuit element. The circuit may include a switch connected between the inverter and the circuit element. The switch and the high-side switching element may be configured to be driven by the voltage outputted by power supply. The controller may be configured to control the power being outputted by the transmission unit.
Abstract: Methods and system for clock alignment are described. In an example, a timing device can distribute a clock signal to a line card via a trace of a backplane. The timing device can further send a pulse to the line card at a first time via the trace. The timing device can further receive a return pulse from the line card at a second time via the trace. The timing device can determine a time difference between the first time and the second time. The time difference can indicate a propagation delay associated with the line card and the trace. The timing device can send the time difference to the line card. The line card can adjust a phase delay offset of the line card using the time difference.
Abstract: In an embodiment, an apparatus is disclosed that includes a power management integrated circuit (PMIC). The PMIC includes a voltage regulator supplied by a first power source and configured to generate a first output and a charge pump supplied by a second power source and configured to generate a second output. A bias voltage output of the power management integrated circuit is generated based at least in part on the first output and the second output. The charge pump is configured to adjust the second output based at least in part on a comparison between the bias voltage output and a reference voltage.
Abstract: Example implementations include a method of pre-bootup fault monitor of a LASER diode driver output, by applying a first power to a pre-bootup fault monitor device, setting a fault condition at the pre-bootup fault monitor device to a no-fault state, initiating the pre-bootup fault monitor device, determining whether a first impedance of driver output satisfies an impedance threshold, and in response to a determination that the first impedance satisfies the impedance threshold, applying a second power to the output device.
Type:
Grant
Filed:
March 1, 2021
Date of Patent:
December 27, 2022
Assignee:
Renesas Electronics America Inc.
Inventors:
Lokesh Kumath, Muthukumaran Chandrasekaran, Barry Concklin, Bin Liu, Ha Chu Vu, Matthew Cole
Abstract: Methods and apparatuses for regulating a power converter are described. A device comprising a control circuit and a logic circuit can be integrated in a controller coupled to the power converter. The control circuit can generate a constant off-time signal based on a ramp signal and an error signal. The logic circuit can generate a control signal based on the constant off-time signal and a constant on-time signal. The logic circuit can output the control signal to the power converter. In response to an on-time period of the constant off-time signal being less than an on-time period of the constant on-time signal, the control signal can vary according to the constant on-time signal. In response to the on-time period of the constant off-time signal being greater than the on-time period of the constant on-time signal, the control signal can vary according to the constant off-time signal.
Type:
Application
Filed:
July 9, 2021
Publication date:
December 22, 2022
Applicant:
Renesas Electronics America Inc.
Inventors:
Long YU, Jin YANG, Jianhua YANG, Pengcheng TANG, Xiaodong ZHAN
Abstract: Methods and apparatuses for signal attenuation is described. In an example, an attenuator can be configured to perform attenuation of signals for an integrated circuit. The attenuator can vary the attenuation with an ambient temperature. The attenuator can further adjust the attenuation based on a control signal applied to the attenuator. The control signal can be based on one or more of a temperature profile of the attenuator and a target gain variation of the integrated circuit.
Type:
Application
Filed:
June 11, 2021
Publication date:
December 15, 2022
Applicant:
Renesas Electronics America Inc.
Inventors:
Mohammad GHADIRI SADRABADI, Tumay KANAR
Abstract: Methods and apparatuses for controlling an apparatus comprising a controller integrated in a first slave device. In an example, the controller can detect a sensed current of the first slave device. The controller can receive a voltage signal associated with a second slave device connected to the first slave device. The controller can generate a correction current based on the sensed current of the first slave device and the voltage signal. The controller can modulate a pulse width modulation (PWM) signal received by the first slave device using the correction current. The controller can control a power converter using the modulated PWM signal.
Type:
Application
Filed:
June 14, 2021
Publication date:
December 15, 2022
Applicant:
Renesas Electronics America Inc.
Inventors:
Chun Cheung, Paul Dackow, Brandon Howell, Kunrong Wang, Matthew Harris
Abstract: Methods and systems for operating a multiphase voltage regulator are described. The multiphase voltage regulator can include a plurality of power stages. A controller can be connected to the plurality of power stages. The controller can detect a number of activated power stages among the plurality of power stages. The controller can adjust a gain of a current sense feedback loop of the controller to control a load-transient response of the multiphase voltage regulator. The adjustment to the gain can be based on the number of activated power stages.
Type:
Application
Filed:
December 31, 2021
Publication date:
December 15, 2022
Applicant:
Renesas Electronics America Inc.
Inventors:
Michael Jason HOUSTON, Mehul SHAH, Warren SCHROEDER, Akshat SHENOY
Abstract: According to certain general aspects, the present embodiments relate generally to securing communication between ECUs. Example implementations can include a method of securely transmitting Controller Area Network (CAN) protocol frames via a CAN controller.
Abstract: According to certain aspects, the present embodiments are directed to techniques for providing the ability to monitor one or more operational parameters of a voltage regulator. In embodiments, the voltage regulator is a multiphase voltage regulator having a plurality of power stages corresponding to each respective phase. In these and other embodiments, the operational parameters include one or both of a phase current and a phase temperature. According to certain additional aspects, the present embodiments provide the ability to monitor the respective phase current output and phase temperature of each phase independently. According to further aspects, this ability to monitor the operational parameters is achieved while minimizing circuit complexity.
Type:
Grant
Filed:
March 21, 2018
Date of Patent:
December 6, 2022
Assignee:
Renesas Electronics America Inc.
Inventors:
Shea Petricek, Chun Cheung, Ankit Sharma