Patents by Inventor Vanni Poletto

Vanni Poletto 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).

  • Publication number: 20230055745
    Abstract: A system and method for measuring a capacitance value of a capacitor are provided. In embodiments, a resistor is coupled to a terminal of the capacitor. A difference in voltage at the terminal between a first time and a second time during a discharge routine of the capacitor is measured. The discharge routine includes sinking a current through a discharge circuit coupled to the resistor from first to second. Integration of a difference in voltage at terminals of the resistor during the discharge routine between the first and second times is also measured. The capacitance value is computed based on the measured difference in voltage, the measured integration, and the resistance value of the resistor. The health of the capacitor is determined based on a difference between the computed capacitance value and a threshold value.
    Type: Application
    Filed: August 20, 2021
    Publication date: February 23, 2023
    Inventors: Davide Argento, Orazio Pennisi, Stefano Castorina, Vanni Poletto, Matteo Landini, Andrea Maino
  • Publication number: 20220209763
    Abstract: A circuit for decoding a pulse width modulated (PWM) signal generates an output signal switching between a first and second logic values as a function of a duty-cycle of the PWM signal. Current generating circuitry receives the PWM signal and injects a current to and sinks a current from an intermediate node as a function of the values of the PWM signal. A capacitor coupled to the intermediate node is alternatively charged and discharged by the injected and sunk currents, respectively, to generate a voltage. A comparator circuit coupled to the intermediate node compares the generated voltage to a comparison voltage and drives the logic values of the output signal as a function of the comparison.
    Type: Application
    Filed: December 20, 2021
    Publication date: June 30, 2022
    Applicant: STMicroelectronics S.r.l.
    Inventors: Vanni POLETTO, Ivan FLORIANI
  • Publication number: 20220200509
    Abstract: In an embodiment, an electronic circuit includes: a controller configured to produce a pulse-width-modulated (PWM) signal to control a first current of an electrical load; a redundant current measurement circuit configured to measure the first current and provide first and second current measurement signal; a monitor circuit coupled to the redundant current measurement circuit, the monitor circuit configured to assert a current monitor signal in response to the first and second current measurement signals being found to be matching with each other, wherein the monitor circuit is configured to: detect an absence of the asserted current monitor signal prior to expiry of a threshold time interval, and in response to detecting the absence of the asserted current monitor signal, force the controller to produce, prior to expiry of the threshold time interval, a first PWM signal pulse having a controlled duty-cycle.
    Type: Application
    Filed: November 24, 2021
    Publication date: June 23, 2022
    Inventors: Nicola Errico, Vanni Poletto, Paolo Vilmercati, Marco Cignoli
  • Publication number: 20220014187
    Abstract: In accordance with an embodiment, a pulse generator circuit includes: an LC resonant circuit coupled between a first node and a reference node; a first switch coupled between the first node and the reference node; a switching network comprising a second switch coupled between the first node and a respective drive node; and drive circuit having outputs coupled to the first switch and to the second switch of the switching network. The drive circuit configured to, in repeating cycles: close the first switch when a current flowing through an inductor of the LC resonant circuit increases during a resonant cycle, when the current flowing through the inductor reaches a threshold value, open the first switch, close the second switch of the switching network for a pulse duration time when the first switch is open, and open the second switch at an expiration of the pulse duration time.
    Type: Application
    Filed: June 3, 2021
    Publication date: January 13, 2022
    Inventors: Romeo Letor, Vanni Poletto, Antoine Pavlin, Alfio Russo, Nadia Lecci
  • Publication number: 20220013984
    Abstract: An embodiment pulse generator circuit comprises a first electronic switch coupled between first and second nodes, and a second electronic switch coupled between the second node and a reference node. An LC resonant circuit comprising an inductance and a capacitance is coupled between the first and reference nodes along with charge circuitry comprises a further inductance in a current flow line between a supply node and an intermediate node in the LC resonant circuit. Drive circuitry of the electronic switches repeats, during a sequence of switching cycles, charge time intervals, wherein the capacitance in the LC resonant circuit is charged via the charge circuit, and pulse generation time intervals, wherein a pulsed current is provided to the load via the first and second nodes. The charge and pulse generation time intervals are interleaved with oscillation time intervals where the LC resonant circuit oscillates at a resonance frequency.
    Type: Application
    Filed: June 28, 2021
    Publication date: January 13, 2022
    Inventors: Romeo Letor, Vanni Poletto, Antoine Pavlin, Nadia Lecci, Alfio Russo
  • Publication number: 20210389351
    Abstract: An embodiment circuit comprises high-side and low-side switches arranged between supply and reference nodes, and having an intermediate node. A switching control signal is applied with opposite polarities to the high-side and low-side switches. An inductive load is coupled between the intermediate node and one of the supply and reference nodes. Current sensing circuitry is configured to sample a first value of the load current flowing in one of the high-side and low-side switches before a commutation of the switching control signal, sample a second value of the load current flowing in the other of the high-side and low-side switches after the commutation of the switching control signal, sample a third value of the load current flowing in the other of the high-side and low-side switches after the second sampling, and generate a failure signal as a function of the first, second and third sampled values of the load current.
    Type: Application
    Filed: June 7, 2021
    Publication date: December 16, 2021
    Inventors: Vanni Poletto, Nicola Errico, Paolo Vilmercati, Marco Cignoli, Vincenzo Salvatore Genna, Diego Alagna
  • Publication number: 20210333330
    Abstract: A method of operating a control device includes performing an open load test or a current leakage test. The open load test includes activating a first current and then a second current and sensing with the first current and the second current activated, respectively, a first voltage drop and a second voltage drop between charge distribution pins and charge sensing pins of the control device. Respective differences are calculated between the first voltage drop and the second voltage drop sensed with the first current and the second current activated, respectively. These differences are compared with respective thresholds and an open circuit condition is declared as a result of the differences calculated reaching these thresholds.
    Type: Application
    Filed: July 6, 2021
    Publication date: October 28, 2021
    Inventors: Orazio Pennisi, Valerio Bendotti, Vanni Poletto, Vittorio D'Angelo
  • Patent number: 11150279
    Abstract: A circuit includes a switching circuit including a first switch and a second switch. A current sensing circuit is coupled to the switching circuit to sense a first current through the first switch and to generate a first sensed current signal based on the sensed first current, and configured to sense a second current through the second switch and to generate a second sensed current signal based on the sensed second current. An output circuit is coupled to the current sensing circuit and is configured to generate a failure signal based on the first sensed current signal and the second sensed current signal.
    Type: Grant
    Filed: August 28, 2019
    Date of Patent: October 19, 2021
    Assignee: STMicroelectronics S.r.l.
    Inventors: Vanni Poletto, Riccardo Miglierina, Antonio Davide Leone, Sergio Lecce
  • Patent number: 11139811
    Abstract: A drive circuit for airbag systems, for instance includes a differential transconductance amplifier having a first input node, a second input node, an output node coupled to the second input node via a feedback line; a transistor coupled between a drive node and a supply node configured to be coupled to a power supply source; a control node coupled to the control electrode of the transistor and the output node; a Zener diode arrangement having cathode and anode terminals coupled to the supply node and the first input node, respectively; a pull-up component arranged in parallel with the Zener diode arrangement; and an enable switch coupled to the first input node and referred to ground and switchable between a conductive state and a non-conductive state with the differential transconductance amplifier providing controlled current discharging/charging of the control node to make the transistor conductive/non-conductive, respectively.
    Type: Grant
    Filed: April 21, 2020
    Date of Patent: October 5, 2021
    Assignee: STMicroelectronics S.r.l.
    Inventors: Giancarlo Ragone, Vanni Poletto
  • Patent number: 11079442
    Abstract: A method of operating a control device includes performing an open load test or a current leakage test. The open load test includes activating a first current and then a second current and sensing with the first current and the second current activated, respectively, a first voltage drop and a second voltage drop between charge distribution pins and charge sensing pins of the control device. Respective differences are calculated between the first voltage drop and the second voltage drop sensed with the first current and the second current activated, respectively. These differences are compared with respective thresholds and an open circuit condition is declared as a result of the differences calculated reaching these thresholds.
    Type: Grant
    Filed: May 23, 2019
    Date of Patent: August 3, 2021
    Assignee: STMICROELECTRONICS S.R.L.
    Inventors: Orazio Pennisi, Valerio Bendotti, Vanni Poletto, Vittorio D'Angelo
  • Patent number: 11077755
    Abstract: A circuit includes a differential stage configured to provide a differential output signal. An analog-to-digital converter is coupled to first and second output nodes of the differential stage. The analog-to-digital converter is configured to provide an output signal that is a function of the differential output signal from the differential stage. A multiplexer is configured to receive a differential input signal. The multiplexer includes a test switch switchable between a conductive state and a non-conductive state. In the conductive state, the test switch couples the first input node and the second input node of the differential stage. Test signal injection circuitry is activatable to force a differential current through the differential stage. The circuit is selectively switchable between an operational mode and a self-test mode.
    Type: Grant
    Filed: May 23, 2019
    Date of Patent: August 3, 2021
    Assignee: STMICROELECTRONICS S.R.L.
    Inventors: Orazio Pennisi, Valerio Bendotti, Vanni Poletto
  • Patent number: 10983151
    Abstract: A device to read a variable resistor has an analog to digital converter (ADC), a first switch and a second switch. The ADC has a first ADC input, a second ADC input and an ADC output. The first switch selectively couples a first voltage indicative of a voltage across a first resistance to the first ADC input. The second switch selectively couples a second voltage indicative of a voltage across a second resistance to the second ADC input. The ADC outputs a signal indicative of a value of the second resistance.
    Type: Grant
    Filed: July 24, 2019
    Date of Patent: April 20, 2021
    Assignee: STMICROELECTRONICS S.R.L.
    Inventors: Vanni Poletto, Nicola Rogledi
  • Patent number: 10917087
    Abstract: A circuit for controlling a first plurality of transistors connected in parallel and a second plurality of transistors connected in parallel, includes: a first plurality of stages, a respective one of the first plurality of stages being configured to supply a first control signal to a respective one of the first plurality of transistors; and a second plurality of stages, a respective one of the second plurality of stages being configured to supply a second control signal to a respective one of the second plurality of transistors. An output current of the respective one of the first plurality of stages is regulated based on a difference between a first value representative of a sum of output currents of each stage of the first plurality of stages and a second value representative of a sum of set points assigned to the first plurality of stages.
    Type: Grant
    Filed: December 18, 2019
    Date of Patent: February 9, 2021
    Assignees: STMICROELECTRONICS S.r.l., STMICROELECTRONICS, Inc., STMICROELECTRONICS (ALPS) SAS
    Inventors: Vanni Poletto, David F. Swanson, Giovanni Luca Torrisi, Laurent Chevalier
  • Patent number: 10901444
    Abstract: A (pre) driver circuit includes first and second output terminals configured to be coupled to a power transistor. A differential stage has non-inverting and inverting inputs for receiving an input voltage. The input voltage is replicated as an output voltage across the first and second output terminals as a drive signal for the power transistor. The differential stage includes a differential transconductance amplifier in a voltage follower arrangement configured to provide continuous regulation of a voltage at the first output terminal with respect to the second output terminal.
    Type: Grant
    Filed: January 30, 2020
    Date of Patent: January 26, 2021
    Assignee: STMICROELECTRONICS S.R.L.
    Inventors: Vanni Poletto, Biagio Provinzano
  • Patent number: 10879894
    Abstract: In one embodiment, a (pre)driver circuit includes first and a second output terminal for driving an electronic switch that includes a control terminal and a current path through the switch. The arrangement can operate in one or more first driving configurations (e.g., for PMOS), with the first and second output terminals are coupled to the current path and the control electrode of the electronic switch, respectively, and one or more second driving configurations (e.g., for NMOS, both HS and LS), wherein the first and second output terminals of the driver circuit are coupled to the control electrode and the current path of the electronic switch, respectively.
    Type: Grant
    Filed: June 20, 2019
    Date of Patent: December 29, 2020
    Assignee: STMICROELECTRONICS S.R.L.
    Inventors: Daniele Zella, Vanni Poletto, Mauro Foppiani
  • Patent number: 10848062
    Abstract: A PWM signal generator to provide a supply current to an electrical load generates PWM signals at a first frequency, the PWM signals having a duty cycle. Operating the generator involves receiving a set point signal indicative of a target average value for the supply current, sensing a sensing signal indicative of a current actual value of the supply current, performing a closed-loop control of the supply current targeting the target value for the supply current via a controller such as a PID Controller which controls the duty cycle of the PWM signals generated by the PWM signal generator as a function of the offset of the sensing signal with respect to the set point signal.
    Type: Grant
    Filed: October 22, 2019
    Date of Patent: November 24, 2020
    Assignee: STMICROELECTRONICS S.R.L.
    Inventors: Vanni Poletto, Diego Alagna, Nicola Errico, Marco Cignoli, Gian Battista De Agostini
  • Publication number: 20200350902
    Abstract: A drive circuit for airbag systems, for instance includes a differential transconductance amplifier having a first input node, a second input node, an output node coupled to the second input node via a feedback line; a transistor coupled between a drive node and a supply node configured to be coupled to a power supply source; a control node coupled to the control electrode of the transistor and the output node; a Zener diode arrangement having cathode and anode terminals coupled to the supply node and the first input node, respectively; a pull-up component arranged in parallel with the Zener diode arrangement; and an enable switch coupled to the first input node and referred to ground and switchable between a conductive state and a non-conductive state with the differential transconductance amplifier providing controlled current discharging/charging of the control node to make the transistor conductive/non-conductive, respectively.
    Type: Application
    Filed: April 21, 2020
    Publication date: November 5, 2020
    Inventors: Giancarlo RAGONE, Vanni POLETTO
  • Publication number: 20200166960
    Abstract: A (pre) driver circuit includes first and second output terminals configured to be coupled to a power transistor. A differential stage has non-inverting and inverting inputs for receiving an input voltage. The input voltage is replicated as an output voltage across the first and second output terminals as a drive signal for the power transistor. The differential stage includes a differential transconductance amplifier in a voltage follower arrangement configured to provide continuous regulation of a voltage at the first output terminal with respect to the second output terminal.
    Type: Application
    Filed: January 30, 2020
    Publication date: May 28, 2020
    Inventors: Vanni Poletto, Biagio Provinzano
  • Publication number: 20200136511
    Abstract: A PWM signal generator to provide a supply current to an electrical load generates PWM signals at a first frequency, the PWM signals having a duty cycle. Operating the generator involves receiving a set point signal indicative of a target average value for the supply current, sensing a sensing signal indicative of a current actual value of the supply current, performing a closed-loop control of the supply current targeting the target value for the supply current via a controller such as a PID Controller which controls the duty cycle of the PWM signals generated by the PWM signal generator as a function of the offset of the sensing signal with respect to the set point signal.
    Type: Application
    Filed: October 22, 2019
    Publication date: April 30, 2020
    Inventors: Vanni Poletto, Diego Alagna, Nicola Errico, Marco Cignoli, Gian Battista De Agostini
  • Publication number: 20200127660
    Abstract: A circuit for controlling a first plurality of transistors connected in parallel and a second plurality of transistors connected in parallel, includes: a first plurality of stages, a respective one of the first plurality of stages being configured to supply a first control signal to a respective one of the first plurality of transistors; and a second plurality of stages, a respective one of the second plurality of stages being configured to supply a second control signal to a respective one of the second plurality of transistors. An output current of the respective one of the first plurality of stages is regulated based on a difference between a first value representative of a sum of output currents of each stage of the first plurality of stages and a second value representative of a sum of set points assigned to the first plurality of stages.
    Type: Application
    Filed: December 18, 2019
    Publication date: April 23, 2020
    Inventors: Vanni Poletto, David F. Swanson, Giovanni Luca Torrisi, Laurent Chevalier