Patents by Inventor Vittorio D'Angelo
Vittorio D'Angelo 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).
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Publication number: 20240305185Abstract: A driver circuit includes high- and low-side switches coupled to first and second output pins, respectively, that are couplable to a power switch control terminal. High- and low-side drive circuits supplied by programmable and fixed voltages, respectively, drive the high- and low-side switches, respectively. A voltage generator receives a programming signal and produces the programmable voltage. Control circuitry coupled to the high- and low-side drive circuits receives an input command signal indicating initiation of a discharge action, in response to which the control circuitry asserts a drive signal to activate the high-side drive circuit, turning on the high-side switch and clamping the first output pin at the programmable voltage. In response to expiration of a time interval, the control circuitry de-asserts the drive signal to activate the low-side drive circuit, turning on the low-side switch and tying the second output pin to the second supply voltage node.Type: ApplicationFiled: February 14, 2024Publication date: September 12, 2024Inventors: Vittorio D'Angelo, Salvatore Cannavacciuolo
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Patent number: 11892518Abstract: 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: GrantFiled: July 6, 2021Date of Patent: February 6, 2024Assignee: STMicroelectronics S.r.l.Inventors: Orazio Pennisi, Valerio Bendotti, Vanni Poletto, Vittorio D'Angelo
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Patent number: 11888304Abstract: An integrated circuit with a hot-plug protection circuit includes input pins and an output pin. The input pins are electrically coupled to a common node in the hot-plug protection circuit via respective electrical connections. The integrated circuit includes clamping circuitry coupled between the common node and the output pin, the clamping circuitry activatable as a result of a voltage spike applied across the clamping circuitry. The plurality of electrical connections and the clamping circuitry provide respective current discharge paths between the input pins in the input pins and the output pin, the respective current discharge paths configured to become conductive as a result of a voltage spike applied to any of the input pins in the plurality of input pins being transferred to the common node via the respective electrical connection in the plurality of electrical connections electrically coupling said any of said input pins to the common node.Type: GrantFiled: October 29, 2019Date of Patent: January 30, 2024Assignee: STMicroelectronics S.r.l.Inventors: Vittorio D'Angelo, Salvatore Cannavacciuolo, Sergio Lecce, Valerio Bendotti, Orazio Pennisi
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Publication number: 20230308097Abstract: In an embodiment a method includes receiving, at an input of a low-voltage section of a gate driver, a PWM control signal with a switching frequency, providing, at an output of a high-voltage section of the gat driver, a gate-driving signal as a function of the PWM control signal to a power stage, wherein the high-voltage section is galvanically isolated from the low-voltage section, receiving, at a feedback input of the high-voltage section, at least one feedback signal indicative of an operation of the power stage, converting, at an ADC module of the high-voltage section, the feedback signal into a digital data stream, providing, to the ADC module, a conversion-trigger signal designed to determine a start of a conversion for acquiring a new sample of the feedback signal and sending, via an isolation communication channel between the low-voltage section and the high-voltage section, the digital data stream to the low-voltage section.Type: ApplicationFiled: June 2, 2023Publication date: September 28, 2023Inventors: Vittorio D'Angelo, Salvatore Cannavacciuolo, Valerio Bendotti, Paolo Selvo, Diego Alagna
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Patent number: 11722133Abstract: In an embodiment an isolated gate driver device includes a low-voltage section having a control input configured to receive a PWM control signal with a switching frequency from a control stage, a high-voltage section, galvanically isolated from the low-voltage section the high-voltage section including a driving output configured to provide a gate-driving signal as a function of the PWM control signal to a power stage having at least one switch, a feedback input configured to receive at least one feedback signal indicative of an operation of the power stag, and an ADC module configured to convert the feedback signal into a digital data stream and a conversion-control module coupled to the ADC module and configured to provide a conversion-trigger signal designed to determine a start of a conversion for acquiring a new sample of the feedback signal.Type: GrantFiled: June 17, 2022Date of Patent: August 8, 2023Assignee: STMicroelectronics S.r.l.Inventors: Vittorio D'Angelo, Salvatore Cannavacciuolo, Valerio Bendotti, Paolo Selvo, Diego Alagna
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Patent number: 11648896Abstract: In an embodiment a circuit includes drive circuitry configured to be coupled to a control terminal of an electronic switch and configured to apply a discharge signal to the control terminal causing the electronic switch to become conductive and provide an electrical discharge path for an energized element, a sensing node configured to be coupled to the control terminal and configured to sense a voltage at the control terminal and a feedback network coupled between the sensing node and the drive circuitry, wherein the feedback network includes a comparator circuit coupled to the sensing node and configured to compare the voltage at the control terminal and sensed at the sensing node with a reference threshold and to provide a comparison signal having a first value and a second value, respectively, in response to the voltage at the control terminal being higher or lower than the reference threshold, and wherein the drive circuitry is configured to produce the discharge signal as a function of the comparison sigType: GrantFiled: September 21, 2021Date of Patent: May 16, 2023Assignee: STMicroelectronics S.r.l.Inventors: Vittorio D'Angelo, Salvatore Cannavacciuolo
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Publication number: 20230006667Abstract: In an embodiment an isolated gate driver device includes a low-voltage section having a control input configured to receive a PWM control signal with a switching frequency from a control stage, a high-voltage section, galvanically isolated from the low-voltage section the high-voltage section including a driving output configured to provide a gate-driving signal as a function of the PWM control signal to a power stage having at least one switch, a feedback input configured to receive at least one feedback signal indicative of an operation of the power stag, and an ADC module configured to convert the feedback signal into a digital data stream and a conversion-control module coupled to the ADC module and configured to provide a conversion-trigger signal designed to determine a start of a conversion for acquiring a new sample of the feedback signal.Type: ApplicationFiled: June 17, 2022Publication date: January 5, 2023Inventors: Vittorio D'Angelo, Salvatore Cannavacciuolo, Valerio Bendotti, Paolo Selvo, Diego Alagna
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Publication number: 20220219544Abstract: A method can be used to control a battery management system. A first voltage drop is sensed between a first terminal of a first battery cell and a second terminal of the first battery cell and a second voltage drop is sensed between a first terminal of a second battery cell and a second terminal of the second battery cell. A faulty condition is detected in the first battery cell or the second battery cell based on the first voltage drop or the second voltage drop. The first voltage drop is swapped for a first swapped voltage drop between a common terminal and the second terminal of the second battery cell.Type: ApplicationFiled: April 1, 2022Publication date: July 14, 2022Inventors: Orazio Pennisi, Valerio Bendotti, Vittorio D'Angelo, Paolo Turbanti
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Patent number: 11370321Abstract: A method of operating a battery management system is disclosed. A first voltage drop is sensed between a first terminal of a first battery cell and a second terminal of the first battery cell and a second voltage drop is sensed between a charge distribution pin and the second terminal of the first battery cell. The charge distribution pin is coupled to the first terminal of the first battery cell through a resistor. A difference is calculated between the first voltage drop and the second voltage drop and a faulty condition is detected when Rn absolute value of the difference between the first voltage drop and the second voltage drop exceeds a threshold.Type: GrantFiled: June 5, 2020Date of Patent: June 28, 2022Assignee: STMicroelectronics S.r.LInventors: Orazio Pennisi, Valerio Bendotti, Vittorio D'Angelo, Daniele Zella
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Patent number: 11312238Abstract: A method can be used to control a battery management system. A first voltage drop is sensed between a first terminal of a first battery cell and a second terminal of the first battery cell and a second voltage drop is sensed between a first terminal of a second battery cell and a second terminal of the second battery cell. A faulty condition is detected in the first battery cell or the second battery cell based on the first voltage drop or the second voltage drop. The first voltage drop is swapped for a first swapped voltage drop between a common terminal and the second terminal of the second battery cell.Type: GrantFiled: June 5, 2020Date of Patent: April 26, 2022Assignee: STMicroelectronics S.r.l.Inventors: Orazio Pennisi, Valerio Bendotti, Vittorio D'Angelo, Paolo Turbanti
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Publication number: 20220097632Abstract: In an embodiment a circuit includes drive circuitry configured to be coupled to a control terminal of an electronic switch and configured to apply a discharge signal to the control terminal causing the electronic switch to become conductive and provide an electrical discharge path for an energized element, a sensing node configured to be coupled to the control terminal and configured to sense a voltage at the control terminal and a feedback network coupled between the sensing node and the drive circuitry, wherein the feedback network includes a comparator circuit coupled to the sensing node and configured to compare the voltage at the control terminal and sensed at the sensing node with a reference threshold and to provide a comparison signal having a first value and a second value, respectively, in response to the voltage at the control terminal being higher or lower than the reference threshold, and wherein the drive circuitry is configured to produce the discharge signal as a function of the comparison sigType: ApplicationFiled: September 21, 2021Publication date: March 31, 2022Inventors: Vittorio D'Angelo, Salvatore Cannavacciuolo
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Publication number: 20210333330Abstract: 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: ApplicationFiled: July 6, 2021Publication date: October 28, 2021Inventors: Orazio Pennisi, Valerio Bendotti, Vanni Poletto, Vittorio D'Angelo
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Patent number: 11079442Abstract: 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: GrantFiled: May 23, 2019Date of Patent: August 3, 2021Assignee: STMICROELECTRONICS S.R.L.Inventors: Orazio Pennisi, Valerio Bendotti, Vanni Poletto, Vittorio D'Angelo
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Publication number: 20200391594Abstract: A method can be used to control a battery management system. A first voltage drop is sensed between a first terminal of a first battery and a second terminal of the first battery and a second voltage drop is sensed between a first terminal of a second battery cell and a second terminal of the second battery cell. A faulty condition is detected in the first or second battery cell based on the first or second voltage drop. The first voltage drop is swapped for a first swapped voltage drop between a common terminal and the second terminal of the second battery cell.Type: ApplicationFiled: June 5, 2020Publication date: December 17, 2020Inventors: Orazio Pennisi, Valerio Bendotti, Vittorio D'Angelo, Paolo Turbanti
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Publication number: 20200391609Abstract: A method of operating a battery management system is disclosed. A first voltage drop is sensed between a first terminal of a first battery cell and a second terminal of the first battery cell and a second voltage drop is sensed between a charge distribution pin and the second terminal of the first battery cell. The charge distribution pin is coupled to the first terminal of the first battery cell through a resistor. A difference is calculated between the first voltage drop and the second voltage drop and a faulty condition is detected when the absolute value of the difference between the first voltage drop and the second voltage drop exceeds the threshold.Type: ApplicationFiled: June 5, 2020Publication date: December 17, 2020Inventors: Orazio Pennisi, Valerio Bendotti, Vittorio D'Angelo, Daniele Zella
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Publication number: 20200136366Abstract: An integrated circuit with a hot-plug protection circuit includes input pins and an output pin. The input pins are electrically coupled to a common node in the hot-plug protection circuit via respective electrical connections. The integrated circuit includes clamping circuitry coupled between the common node and the output pin, the clamping circuitry activatable as a result of a voltage spike applied across the clamping circuitry. The plurality of electrical connections and the clamping circuitry provide respective current discharge paths between the input pins in the input pins and the output pin, the respective current discharge paths configured to become conductive as a result of a voltage spike applied to any of the input pins in the plurality of input pins being transferred to the common node via the respective electrical connection in the plurality of electrical connections electrically coupling said any of said input pins to the common node.Type: ApplicationFiled: October 29, 2019Publication date: April 30, 2020Inventors: Vittorio D'Angelo, Salvatore Cannavacciuolo, Sergio Lecce, Valerio Bendotti, Orazio Pennisi
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Publication number: 20190372178Abstract: 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 and the second current activated, respectively, first and second voltage drops between charge distribution pins and charge sensing pins of the control device. Respective differences are calculated between the first and second voltage drops sensed with the first current and 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: ApplicationFiled: May 23, 2019Publication date: December 5, 2019Inventors: Orazio Pennisi, Valerio Bendotti, Vanni Poletto, Vittorio D'Angelo