Patents by Inventor Guido De Sandre
Guido De Sandre 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: 20260181319Abstract: Control of an electrostatic sound transducer including a microelectronic component. A control circuit including a differential amplifier is provided, wherein, at a central terminal of the sound transducer, a bias voltage is provided relative to the common mode voltage of the differential amplifier. The supply voltage of the differential amplifier is adjusted on the basis of the maximum signal amplitude of the input signal.Type: ApplicationFiled: May 3, 2023Publication date: June 25, 2026Inventor: Guido De Sandre
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OPTIMIZED CONTROL CIRCUIT FOR A MICROELECTROMECHANICAL SOUND GENERATOR AND A SOUND GENERATION SYSTEM
Publication number: 20250132742Abstract: A control circuit for a microelectromechanical sound generator with a first center connector, a second center connector, a first external connector, and a second external connector. The control circuit includes a differential amplifier which comprises a first output connector coupled to the first external connector and a second output connector coupled to the second external connector and is configured to control the first external connector and the second external connector with a differential signal that corresponds to an input signal. The control circuit includes a first voltage generator circuit, which is configured to provide the first center connector with a predetermined first DC voltage in relation to a common-mode voltage of the differential amplifier, and a second voltage generator circuit, which is configured to provide the second center connector with a predetermined second DC voltage in relation to the common-mode voltage of the differential amplifier.Type: ApplicationFiled: September 17, 2024Publication date: April 24, 2025Inventors: Guido De Sandre, Raik Fiedler -
Patent number: 11598829Abstract: A magnetic field sensor array includes a plurality of sensor segments, each including a plurality of magnetic field sensors. A magnetizing current conductor is situated so as to run in the area of the magnetic field sensors in such a way that elements of the magnetic field sensors may be magnetized. A plurality of parallel-connected half-bridges, each including a high switch pJ and a low switch nJ, each include a center tap connection situated between the switches. The magnetizing current conductor is connected to each center tap connection, by means of which the magnetizing current conductor is divided into separately activatable magnetizing segments. Elements of a sensor segment are magnetized in that two switches nJ and pJ+1 having different electrical potentials, or alternatively pJ and nJ+1, of two directly adjacent half-bridges are closed simultaneously. At least one further switch nX<J or pY>J+1 or alternatively pX<J or nY>J+1 is closed.Type: GrantFiled: July 9, 2021Date of Patent: March 7, 2023Assignee: ROBERT BOSCH GMBHInventors: Brad Engel, Carlo Alberto Romani, Guido De Sandre, Johannes Artzner, Phillip Mather, Martin Maschmann
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Patent number: 11237231Abstract: An out-of-plane tunneling magnetoresistive (TMR) magnetic field sensor includes a sense element that defines a sense plane and a flux guide configured to direct a magnetic field perpendicular to the sense plane into the sense plane. The magnetic field sensor further includes a first coil arranged in a first plane, a second coil electrically insulated from the first coil and arranged in a spaced-apart second plane, and drive circuitry operatively connected to the first coil and the second coil. The drive circuitry in a first mode energizes the first and second coils to generate respective first and second fields that combine to set a magnetization of the flux guide. The drive circuitry in a second mode energizes only the first coil to generate the first field so as to set a magnetization of the sense element without changing the magnetization of the flux guide.Type: GrantFiled: December 20, 2018Date of Patent: February 1, 2022Assignee: Robert Bosch GmbHInventors: Anuraag Mohan, Phillip Mather, Guido De Sandre
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Publication number: 20220026508Abstract: A magnetic field sensor array includes a plurality of sensor segments, each including a plurality of magnetic field sensors. A magnetizing current conductor is situated so as to run in the area of the magnetic field sensors in such a way that elements of the magnetic field sensors may be magnetized. A plurality of parallel-connected half-bridges, each including a high switch pJ and a low switch nJ, each include a center tap connection situated between the switches. The magnetizing current conductor is connected to each center tap connection, by means of which the magnetizing current conductor is divided into separately activatable magnetizing segments. Elements of a sensor segment are magnetized in that two switches nJ and pJ+1 having different electrical potentials, or alternatively pJ and nJ+1, of two directly adjacent half-bridges are closed simultaneously. At least one further switch nX<J or pY>J+1 or alternatively pX<j or nY>J+1 is closed.Type: ApplicationFiled: July 9, 2021Publication date: January 27, 2022Inventors: Brad Engel, Carlo Alberto Romani, Guido De Sandre, Johannes Artzner, Phillip Mather, Martin Maschmann
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Patent number: 10948552Abstract: A magnetometer includes a measurement value transducer that supplies a signal to a first amplifier device; a summation element that reduces an output signal range of an output signal of the first amplifier device; a second amplifier device that amplifies an output signal of the summation element; a low-pass filter filtering an output signal of the second amplifier device; an analog-digital converter converting output of the filter into digital form; and a correction element that divides the digital signal by a correction factor that corresponds to the defined gain factor of the second amplifier device and adds a digital correction signal to the quotient to form a resulting signal, where a scope of the correction signal corresponds to the defined attenuation of the output signal of the first amplifier device.Type: GrantFiled: December 15, 2017Date of Patent: March 16, 2021Assignee: Robert Bosch GmbHInventor: Guido De Sandre
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Publication number: 20200371171Abstract: An out-of-plane tunneling magnetoresistive (TMR) magnetic field sensor includes a sense element that defines a sense plane and a flux guide configured to direct a magnetic field perpendicular to the sense plane into the sense plane. The magnetic field sensor further includes a first coil arranged in a first plane, a second coil electrically insulated from the first coil and arranged in a spaced-apart second plane, and drive circuitry operatively connected to the first coil and the second coil. The drive circuitry in a first mode energizes the first and second coils to generate respective first and second fields that combine to set a magnetization of the flux guide. The drive circuitry in a second mode energizes only the first coil to generate the first field so as to set a magnetization of the sense element without changing the magnetization of the flux guide.Type: ApplicationFiled: December 20, 2018Publication date: November 26, 2020Inventors: Anuraag Mohan, Phillip Mather, Guido De Sandre
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Publication number: 20190353716Abstract: A magnetometer includes a measurement value transducer that supplies a signal to a first amplifier device; a summation element that reduces an output signal range of an output signal of the first amplifier device; a second amplifier device that amplifies an output signal of the summation element; a low-pass filter filtering an output signal of the second amplifier device; an analog-digital converter converting output of the filter into digital form; and a correction element that divides the digital signal by a correction factor that corresponds to the defined gain factor of the second amplifier device and adds a digital correction signal to the quotient to form a resulting signal, where a scope of the correction signal corresponds to the defined attenuation of the output signal of the first amplifier device.Type: ApplicationFiled: December 15, 2017Publication date: November 21, 2019Inventor: Guido De Sandre
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Patent number: 10168397Abstract: A magnetic field sensor includes a plurality of transducer legs coupled together as a first circuit to sense a magnetic field, wherein each transducer leg comprises a plurality of magnetoresistance sense elements. The magnetic field sensor also includes a second circuit including a first plurality of current lines, wherein each current line of the first plurality of current lines is adjacent to a corresponding plurality of magnetoresistance sense elements of a transducer leg of the plurality of transducer legs. When at least one current line of the first plurality of current lines is energized, a magnetization of each magnetoresistance sense element of the transducer leg is aligned in a first direction or a second direction opposite to the first direction. A routing pattern of the at least one current line is configured to generate an equal population of magnetoresistance sense elements with magnetization aligned in the first and second directions.Type: GrantFiled: January 31, 2018Date of Patent: January 1, 2019Assignee: Everspin Technologies, Inc.Inventors: Phillip G. Mather, Bradley Neal Engel, Guido De Sandre
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Patent number: 10012707Abstract: A magnetic field sensor includes built-in self-test coils in a configuration to provide magnetic field stimulation along three axes, with a high field factor, and thus, reduce a power budget of the sensor and physical size of the self-test coils. The magnetic field sensor comprises a first bridge circuit including a plurality of sense elements configured to sense a magnetic field. The magnetic field sensor further comprises re-configurable self-test current lines coupled to a self-test source to perform high field, high power wafer and die level testing and trim, as well as low power in-situ characterization and calibration of the sensor. The self-test current lines may be routed to form a coil with multiple turns around the TMR elements.Type: GrantFiled: April 27, 2016Date of Patent: July 3, 2018Assignee: Everspin Technologies, Inc.Inventors: Phillip G. Mather, Anuraag Mohan, Guido De Sandre
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Publication number: 20180156876Abstract: A magnetic field sensor includes a plurality of transducer legs coupled together as a first circuit to sense a magnetic field, wherein each transducer leg comprises a plurality of magnetoresistance sense elements. The magnetic field sensor also includes a second circuit including a first plurality of current lines, wherein each current line of the first plurality of current lines is adjacent to a corresponding plurality of magnetoresistance sense elements of a transducer leg of the plurality of transducer legs. When at least one current line of the first plurality of current lines is energized, a magnetization of each magnetoresistance sense element of the transducer leg is aligned in a first direction or a second direction opposite to the first direction. A routing pattern of the at least one current line is configured to generate an equal population of magnetoresistance sense elements with magnetization aligned in the first and second directions.Type: ApplicationFiled: January 31, 2018Publication date: June 7, 2018Applicant: Everspin Technologies, Inc.Inventors: Phillip G. Mather, Bradley Neal Engel, Guido De Sandre
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Patent number: 9910106Abstract: A magnetic field sensor includes a plurality of transducer legs coupled together as a first circuit to sense a magnetic field, wherein each transducer leg comprises a plurality of magnetoresistance sense elements. The magnetic field sensor also includes a second circuit including a first plurality of current lines, wherein each current line of the first plurality of current lines is adjacent to a corresponding plurality of magnetoresistance sense elements of a transducer leg of the plurality of transducer legs. When at least one current line of the first plurality of current lines is energized, a magnetization of each magnetoresistance sense element of the transducer leg is aligned in a first direction or a second direction opposite to the first direction. A routing pattern of the at least one current line is configured to generate an equal population of magnetoresistance sense elements with magnetization aligned in the first and second directions.Type: GrantFiled: April 20, 2016Date of Patent: March 6, 2018Assignee: Everspin Technologies, Inc.Inventors: Phillip G. Mather, Bradley Neal Engel, Guido De Sandre
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Publication number: 20160320459Abstract: A system, device, and method are disclosed for a tunneling magnetoresistance (TMR) magnetic sensor to effectively increase magnetic field measurement linearity and minimize cross-axis interference. The TMR magnetic sensor comprises a plurality of transducer legs, each having multiple sense elements. The TMR magnetic sensor comprises a plurality of built-in current lines located adjacent to each sense element. The current lines are routed such that two or more sense elements have magnetic responses that have opposing contributions from the cross-axis effect for a given field direction in each transducer leg within the TMR magnetic sensor. Therefore, the overall field response from each transducer leg is internally compensated and the TMR magnetic sensor has an output with minimal cross-axis interference.Type: ApplicationFiled: April 20, 2016Publication date: November 3, 2016Applicant: EVERSPIN TECHNOLOGIES, INC.Inventors: Phillip G. MATHER, Bradley Neal ENGEL, Guido DE SANDRE
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Publication number: 20160320462Abstract: A magnetic field sensor is disclosed with built-in self-test coils in a configuration to provide magnetic field stimulation along three axes, with a high field factor, and thus, reduce a power budget of the sensor and physical size of the self-test coils. The magnetic field sensor comprises a first bridge circuit including a plurality of sense elements configured to sense a magnetic field. The magnetic field sensor further comprises re-configurable self-test current lines coupled to a self-test source to perform high field, high power wafer and die level testing and trim, as well as low power in-situ characterization and calibration of the sensor. The self-test current lines may be routed to form a coil with multiple turns around the TMR elements.Type: ApplicationFiled: April 27, 2016Publication date: November 3, 2016Applicant: EVERSPIN TECHNOLOGIES, INC.Inventors: Phillip G. MATHER, Anuraag MOHAN, Guido DE SANDRE
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Patent number: 8797092Abstract: An embodiment of a discharge circuit for evacuating electric charge accumulated in circuit nodes of a charge pump during a discharge phase consequent to a shutdown of the charge pump is proposed. The charge pump is configured to bias each circuit node with a corresponding pump voltage during an operational phase of the charge pump. The discharge circuit includes a generator circuit configured to generate a discharge current during the discharge phase. The discharge circuit further includes means for evacuating the electric charge stored in each circuit node of the charge pump during a corresponding portion of the discharge phase; such means for evacuating include a respective discharge stage for each circuit node of the charge pump. Each discharge stage includes a first discharge circuit branch and a second discharge circuit branch coupled to the corresponding circuit node.Type: GrantFiled: August 31, 2011Date of Patent: August 5, 2014Assignee: STMicroelectronics S.r.l.Inventors: Guido De Sandre, Luca Bettini, Gianni Giacomi
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Patent number: 8278986Abstract: An embodiment is proposed for trimming a programmable delay line in an integrated device, which delay line is adapted to delay an input signal being synchronous with a synchronization signal of the integrated device—by a total delay. An embodiment of a corresponding method includes the steps of: preliminary programming the delay line to provide a selected nominal value of the total delay equal to a period of the timing signal, and trimming the delay line to vary an actual value of the total delay until the actual value of the total delay matches the period of the synchronization signal.Type: GrantFiled: December 23, 2010Date of Patent: October 2, 2012Assignee: STMicroelectronics S.r.l.Inventors: Luca Bettini, Guido De Sandre
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Patent number: 8264872Abstract: A column decoder is for a phase-change memory device provided with an array of memory cells, a reading stage for reading data contained in the memory cells, and a programming stage for programming the data. The column decoder selects and enables biasing of a bitline of the array and generates a current path between the bitline and the reading stage or, alternatively, the programming stage, respectively during a reading or a programming operation of the contents of the memory cells. In the column decoder, a first decoder circuit generates a first current path between the bitline and the reading stage, and a second decoder circuit, distinct and separate from the first decoder circuit, generates a second current path, distinct from the first current path, between the bitline and the programming stage.Type: GrantFiled: August 26, 2009Date of Patent: September 11, 2012Assignee: STMicroelectronics S.r.l.Inventors: Guido De Sandre, Marco Pasotti
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Publication number: 20120075010Abstract: An embodiment of a discharge circuit for evacuating electric charge accumulated in circuit nodes of a charge pump during a discharge phase consequent to a shutdown of the charge pump is proposed. The charge pump is configured to bias each circuit node with a corresponding pump voltage during an operational phase of the charge pump. The discharge circuit includes a generator circuit configured to generate a discharge current during the discharge phase. The discharge circuit further includes means for evacuating the electric charge stored in each circuit node of the charge pump during a corresponding portion of the discharge phase; such means for evacuating include a respective discharge stage for each circuit node of the charge pump. Each discharge stage includes a first discharge circuit branch and a second discharge circuit branch coupled to the corresponding circuit node.Type: ApplicationFiled: August 31, 2011Publication date: March 29, 2012Applicant: STMICROELECTRONICS S.R.L.Inventors: Guido DE SANDRE, Luca BETTINI, Gianni GIACOMI
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Patent number: 8054698Abstract: A device for programming PCM cells includes a pulse-generator circuit for supplying programming current pulses. The pulse-generator circuit includes: at least one first capacitive element; a charging circuit, connectable to the first capacitive element in a first operating condition, for bringing a reference voltage on the first capacitive element to a reset value; a discharge-current generator, selectively connectable to the first capacitive element in a second operating condition, for discharging the first capacitive element through a controlled discharge current; a logic unit, configured to control connection and disconnection of the first capacitive element), of the charging circuit, and of the discharge-current generator; and a voltage-to-current converter, for converting the reference voltage into current.Type: GrantFiled: July 28, 2009Date of Patent: November 8, 2011Assignee: STMicroelectronics S.r.l.Inventors: Guido De Sandre, Luca Bettini
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Publication number: 20110156785Abstract: An embodiment is proposed for trimming a programmable delay line in an integrated device, which delay line is adapted to delay an input signal being synchronous with a synchronization signal of the integrated device—by a total delay. An embodiment of a corresponding method includes the steps of: preliminary programming the delay line to provide a selected nominal value of the total delay equal to a period of the timing signal, and trimming the delay line to vary an actual value of the total delay until the actual value of the total delay matches the period of the synchronization signal.Type: ApplicationFiled: December 23, 2010Publication date: June 30, 2011Applicant: STMICROELECTRONICS S.R.L.Inventors: Luca BETTINI, Guido DE SANDRE