Patents by Inventor Francesco Dalena

Francesco Dalena has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11843386
    Abstract: An integrated circuit can include latched comparator circuitry. The latched comparator circuitry may include first and second input transistors configured to receive an input signal, first and second cross-coupled inverting circuits, reset transistors, and a current pulse generator. The first and second inverting circuits may each include a pull-up transistor and a pull-down transistor. The first input transistor may be coupled between the pull-up and pull-down transistors in the first inverting circuit. The second input transistor may be coupled between the pull-up and pull-down transistors in the second inverting circuit. The reset transistors may be coupled in parallel with the pull-up transistors and may receive a clock signal. The current pulse generator may receive the clock signal and generate current pulse signals in response to detecting edges in the clock signal. Latched comparator circuitry configured and operated in this way can provide reduced clock kickback noise.
    Type: Grant
    Filed: August 30, 2022
    Date of Patent: December 12, 2023
    Assignee: Apple Inc.
    Inventor: Francesco Dalena
  • Patent number: 11387666
    Abstract: A dual stage power converter and a method for charging an energy storage device are presented. The dual stage power converter has a first stage and a second stage arranged in series. A first stage has a voltage divider circuit with a flying capacitor to convert an input voltage at an input of the dual stage power converter into a smaller, intermediate voltage at an intermediate node of the dual stage power converter. A second stage has a voltage regulator circuit to receive said intermediate voltage for regulating, using a feedback loop, an output voltage at an output of the dual stage power converter. The described dual stage power converter enables a reduction of the switching power losses in the voltage regulator circuit and a reduction of the resistive power losses within an external cable connecting the dual stage power converter with an external wall adapter.
    Type: Grant
    Filed: April 2, 2019
    Date of Patent: July 12, 2022
    Assignee: Dialog Semiconductor (UK) Limited
    Inventor: Francesco Dalena
  • Patent number: 10804802
    Abstract: A power converter comprises a high side switching element and a low side switching element arranged in series between an input terminal of the power converter and a reference terminal. A first feedback circuit of the power converter is configured to control an output voltage or an output current at an output terminal of the power converter. The first feedback circuit comprises a first comparator configured to generate a first control signal for controlling the switching of the switching elements by comparing a first error voltage with a first ramp signal. A second feedback circuit of the power converter is also configured to control said output voltage or said output current. The second feedback circuit comprises a second comparator configured to generate a second control signal by comparing a second error voltage with a second ramp signal.
    Type: Grant
    Filed: October 18, 2018
    Date of Patent: October 13, 2020
    Assignee: Dialog Semiconductor (UK) Limited
    Inventor: Francesco Dalena
  • Publication number: 20200119573
    Abstract: A dual stage power converter and a method for charging an energy storage device are presented. The dual stage power converter has a first stage and a second stage arranged in series. A first stage has a voltage divider circuit with a flying capacitor to convert an input voltage at an input of the dual stage power converter into a smaller, intermediate voltage at an intermediate node of the dual stage power converter. A second stage has a voltage regulator circuit to receive said intermediate voltage for regulating, using a feedback loop, an output voltage at an output of the dual stage power converter. The described dual stage power converter enables a reduction of the switching power losses in the voltage regulator circuit and a reduction of the resistive power losses within an external cable connecting the dual stage power converter with an external wall adapter.
    Type: Application
    Filed: April 2, 2019
    Publication date: April 16, 2020
    Inventor: Francesco Dalena
  • Patent number: 10601323
    Abstract: A power converter which converts electrical power at an input voltage into electrical power at an output voltage is presented. It has a power stage with a high side switching element, a low side switching element and an inductor. The power converter has a voltage-to-current converter coupled to the power stage to convert a voltage indicative of a current flowing into the inductor into an indicator current. A peak current detector receives the indicator current to determine a pedestal component of the indicator current in a first time interval during which the high side switching element is open, and to generate a calibrated indicator current by subtracting the pedestal component from the indicator current. The peak current detector compares the calibrated indicator current with a threshold value for detecting a more precise peak current flowing into the inductor, taking into account the effects of temperature or circuit aging.
    Type: Grant
    Filed: December 15, 2017
    Date of Patent: March 24, 2020
    Assignee: Dialog Semiconductor (UK) Limited
    Inventors: Francesco Dalena, Alexandre Morello
  • Patent number: 10523118
    Abstract: A switching mode power converter circuit is disclosed, comprising a first high-side switch and a first low-side switch coupled in series between an input voltage level and a reference voltage level, a second high-side switch and a second low-side switch coupled in series between the input voltage level and the reference voltage level, and a control circuit for controlling switching operation of the first and second high-side switches and the first and second low-side switches. The first high-side switch has a larger on-state resistance than the second high-side switch and the first low-side switch has a larger on-state resistance than the second low-side switch. The control circuit is configured to, during an on-state of the first and second low-side switches, control the second low-side switch to switch to the off-state and control the first high-side switch to switch to the on-state, so that the first high-side switch and the first low-side switch are both in the on-state.
    Type: Grant
    Filed: March 8, 2018
    Date of Patent: December 31, 2019
    Assignee: Dialog Semiconductor (UK) Limited
    Inventors: Francesco Dalena, Alexandre Morello
  • Publication number: 20190190387
    Abstract: A power converter which converts electrical power at an input voltage into electrical power at an output voltage is presented. It has a power stage with a high side switching element, a low side switching element and an inductor. The power converter has a voltage-to-current converter coupled to the power stage to convert a a-voltage indicative of a a-current flowing into the inductor into an indicator current. A peak current detector receives the indicator current at an input node, to determine a pedestal component of the indicator current in a first time interval during which the high side switching element is open, and to generate a calibrated indicator current by subtracting the pedestal component from the indicator current. The peak current detector compares the calibrated indicator current with a threshold value for detecting a more precise peak current flowing into the inductor, taking into account the effects of temperature or circuit aging.
    Type: Application
    Filed: December 15, 2017
    Publication date: June 20, 2019
    Inventors: Francesco Dalena, Alexandre Morello
  • Publication number: 20190123649
    Abstract: A power converter comprises a high side switching element and a low side switching element arranged in series between an input terminal of the power converter and a reference terminal. A first feedback circuit of the power converter is configured to control an output voltage or an output current at an output terminal of the power converter. The first feedback circuit comprises a first comparator configured to generate a first control signal for controlling the switching of the switching elements by comparing a first error voltage with a first ramp signal. A second feedback circuit of the power converter is also configured to control said output voltage or said output current. The second feedback circuit comprises a second comparator configured to generate a second control signal by comparing a second error voltage with a second ramp signal.
    Type: Application
    Filed: October 18, 2018
    Publication date: April 25, 2019
    Inventor: Francesco Dalena
  • Patent number: 10177659
    Abstract: A switching mode power converter circuit and a method are presented. The circuit comprises a first transistor switch and a second transistor switch coupled in series between an input voltage level and ground. There is a control circuit for controlling switching operation of the first transistor switch and the second transistor switch. There is a detection circuit for sensing a voltage at an intermediate node arranged between the first transistor switch and the second transistor switch, for deriving an indication of a slope of the sensed voltage, and for generating a switching control signal for the control circuit on the basis of the derived indication of the slope of the sensed voltage. The control circuit sets a first timing for activating the first transistor switch and/or a second timing for activating the second transistor switch on the basis of the switching control signal.
    Type: Grant
    Filed: November 21, 2016
    Date of Patent: January 8, 2019
    Assignee: Dialog Semiconductor (UK) Limited
    Inventors: Francesco Dalena, Nicolo Nizza, Danilo Gerna, Enrico Pardi, Stefano Scaldaferri, Alexandre Morello, Tommaso Baldetti
  • Publication number: 20180294723
    Abstract: A switching mode power converter circuit is disclosed, comprising a first high-side switch and a first low-side switch coupled in series between an input voltage level and a reference voltage level, a second high-side switch and a second low-side switch coupled in series between the input voltage level and the reference voltage level, and a control circuit for controlling switching operation of the first and second high-side switches and the first and second low-side switches. The first high-side switch has a larger on-state resistance than the second high-side switch and the first low-side switch has a larger on-state resistance than the second low-side switch. The control circuit is configured to, during an on-state of the first and second low-side switches, control the second low-side switch to switch to the off-state and control the first high-side switch to switch to the on-state, so that the first high-side switch and the first low-side switch are both in the on-state.
    Type: Application
    Filed: March 8, 2018
    Publication date: October 11, 2018
    Inventors: Francesco Dalena, Alexandre Morello
  • Patent number: 10044259
    Abstract: A DC-DC converter comprises an oscillator and a charge pump, to ensure operation at low voltage. The oscillator comprises one or more source degenerated transistors comprising a degeneration impedance located between a source of the transistor and a ground connection. The degeneration impedance comprises an inductor and a capacitor. Also provided is an energy harvesting device comprising such a DC-DC converter.
    Type: Grant
    Filed: November 21, 2016
    Date of Patent: August 7, 2018
    Assignee: Dialog Semiconductor (UK) Limited
    Inventors: Stefano D'Amico, Francesco Dalena, Mirko Pasca
  • Publication number: 20180026538
    Abstract: A switching mode power converter circuit and a method are presented. The circuit comprises a first transistor switch and a second transistor switch coupled in series between an input voltage level and ground. There is a control circuit for controlling switching operation of the first transistor switch and the second transistor switch. There is a detection circuit for sensing a voltage at an intermediate node arranged between the first transistor switch and the second transistor switch, for deriving an indication of a slope of the sensed voltage, and for generating a switching control signal for the control circuit on the basis of the derived indication of the slope of the sensed voltage. The control circuit sets a first timing for activating the first transistor switch and/or a second timing for activating the second transistor switch on the basis of the switching control signal.
    Type: Application
    Filed: November 21, 2016
    Publication date: January 25, 2018
    Inventors: Francesco Dalena, Nicolo Nizza, Danilo Gerna, Enrico Pardi, Stefano Scaldaferri, Alexandre Morello, Tommaso Baldetti
  • Publication number: 20170070139
    Abstract: A DC-DC converter comprises an oscillator and a charge pump, to ensure operation at low voltage. The oscillator comprises one or more source degenerated transistors comprising a degeneration impedance located between a source of the transistor and a ground connection. The degeneration impedance comprises an inductor and a capacitor. Also provided is an energy harvesting device comprising such a DC-DC converter.
    Type: Application
    Filed: November 21, 2016
    Publication date: March 9, 2017
    Inventors: Stefano D'Amico, Francesco Dalena, Mirko Pasca
  • Patent number: 9559587
    Abstract: The present document relates to DC/DC converters with a modular structure for providing different levels of output currents. A power converter configured to convert electrical power at an input voltage into electrical power at an output voltage is described. The power converter comprises inverter stages with half bridges comprising a high side switches and low side switches which are arranged in series between the input voltage and a reference voltage; and with high side drivers for providing drive signals for the high side switches, subject to a high side control signals at a drive voltage level. In addition, the power converter comprises a level shifting unit configured to convert a high side control signal at a logic voltage level into the high side control signal at the drive voltage level for driving the high side switches.
    Type: Grant
    Filed: July 29, 2014
    Date of Patent: January 31, 2017
    Assignee: Dialog Semiconductor (UK) Limited
    Inventors: Francesco Dalena, Enrico Pardi, Stefano Scaldaferri
  • Patent number: 9431904
    Abstract: The present document relates to efficient DC/DC converters with a modular structure for providing different levels of output currents. A controller for controlling a power converter which is configured to convert electrical power at an input voltage into electrical power at an output voltage is described. The power converter comprises first and second inverter stages comprising high side switches and low side switches which are arranged in series between the input voltage and a reference voltage. The midpoints between the high side switches and the low side switches are coupled. The electrical power at the output voltage is drawn from the midpoint. The controller is configured to determine an indication of a requested level of the electrical power at the output voltage, and to activate or deactivate the second inverter stage based on the indication of the requested level of the electrical power at the output voltage.
    Type: Grant
    Filed: July 29, 2014
    Date of Patent: August 30, 2016
    Assignee: Dialog Semiconductor (UK) Limited
    Inventors: Francesco Dalena, Enrico Pardi, Stefano Scaldaferri
  • Publication number: 20150194890
    Abstract: The present document relates to efficient DC/DC converters with a modular structure for providing different levels of output currents. A controller for controlling a power converter which is configured to convert electrical power at an input voltage into electrical power at an output voltage is described. The power converter comprises first and second inverter stages comprising high side switches and low side switches which are arranged in series between the input voltage and -a reference voltage. The midpoints between the high side switches and the low side switches are coupled. The electrical power at the output voltage is drawn from the midpoint. The controller is configured to determine an indication of a requested level of the electrical power at the output voltage, and to activate or deactivate the second inverter stage based on the indication of the requested level of the electrical power at the output voltage.
    Type: Application
    Filed: July 29, 2014
    Publication date: July 9, 2015
    Inventors: Francesco Dalena, Enrico Pardi, Stefano Scaldaferri
  • Publication number: 20150194889
    Abstract: The present document relates to DC/DC converters with a modular structure for providing different levels of output currents. A power converter configured to convert electrical power at an input voltage into electrical power at an output voltage is described. The power converter comprises inverter stages with half bridges comprising a high side switches and low side switches which are arranged in series between the input voltage and a reference voltage; and with high side drivers for providing drive signals for the high side switches, subject to a high side control signals at a drive voltage level. In addition, the power converter comprises a level shifting unit configured to convert a high side control signal at a logic voltage level into the high side control signal at the drive voltage level for driving the high side switches.
    Type: Application
    Filed: July 29, 2014
    Publication date: July 9, 2015
    Inventors: Francesco Dalena, Enrico Pardi, Stefano Scaldaferri
  • Publication number: 20080001662
    Abstract: A class AB operational amplifier is provided that includes first and second input transistors respectively coupled between first and second internal nodes and a first common node, first and second input stage load transistors diode connected and respectively coupled between a first voltage reference and the first and second internal nodes, first and second output transistors coupled in series between the first voltage reference and a second voltage reference, a tail current generator coupled between the first common node and the second voltage reference, an adaptive bias block coupled between the first and second voltage references and coupled to the first common node, and a positive feedback network coupled between the first voltage reference and the first and second internal nodes. Also provided is an integrated circuit having at least one such operational amplifier.
    Type: Application
    Filed: May 30, 2007
    Publication date: January 3, 2008
    Applicant: STMICROELECTRONICS S.r.I.
    Inventor: Francesco Dalena