Patents by Inventor Matthew Bacchi
Matthew Bacchi 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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Patent number: 11448690Abstract: A testing method and apparatus is disclosed for testing an integrated circuit device (100) which has a dedicated ground bias pad (121) connected across a high voltage electrostatic discharge clamp circuit (123) to a well-driving ground pad (122) by applying a first voltage to the dedicated ground bias pad to bias a wafer substrate (101) while simultaneously applying a second voltage to the well-driving ground pad to bias the well region (103), where the first and second voltage create a stressing voltage across a buried insulator layer (102, 105) in the integrated circuit device so that a screening test can be conducted to screen for a defect (106) in the buried insulator layer by measuring a leakage current.Type: GrantFiled: June 21, 2021Date of Patent: September 20, 2022Assignee: NXP USA, INC.Inventors: Laurent Segarra, Maarten Jacobus Swanenberg, Pierre Turpin, Matthew Bacchi, Russell Schaller, Keith Jackoski, Ronghua Zhu
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Publication number: 20220003812Abstract: A testing method and apparatus is disclosed for testing an integrated circuit device (100) which has a dedicated ground bias pad (121) connected across a high voltage electrostatic discharge clamp circuit (123) to a well-driving ground pad (122) by applying a first voltage to the dedicated ground bias pad to bias a wafer substrate (101) while simultaneously applying a second voltage to the well-driving ground pad to bias the well region (103), where the first and second voltage create a stressing voltage across a buried insulator layer (102, 105) in the integrated circuit device so that a screening test can be conducted to screen for a defect (106) in the buried insulator layer by measuring a leakage current.Type: ApplicationFiled: June 21, 2021Publication date: January 6, 2022Applicant: NXP USA, Inc.Inventors: Laurent Segarra, Maarten Jacobus Swanenberg, Pierre Turpin, Matthew Bacchi, Russell Schaller, Keith Jackoski, Ronghua Zhu
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Patent number: 10496114Abstract: A detector (110) detects an unwanted oscillation generated by a closed-loop system (112) due to disconnection, improper usage, or absence of a stability-controlling element (104) necessary for the closed-loop system to function properly. An integrated circuit (102) includes the closed-loop system, the detector, and a supervisory system (114) that disables the closed-loop system upon disconnection of the stability-controlling element from the closed-loop system.Type: GrantFiled: August 13, 2018Date of Patent: December 3, 2019Assignee: NXP USA, Inc.Inventors: Guillaume Mouret, Matthew Bacchi, Pascal Sandrez, Alexis Nathanael Huot-Marchand
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Publication number: 20190109562Abstract: A detector (110) detects an unwanted oscillation generated by a closed-loop system (112) due to disconnection, improper usage, or absence of a stability-controlling element (104) necessary for the closed-loop system to function properly. An integrated circuit (102) includes the closed-loop system, the detector, and a supervisory system (114) that disables the closed-loop system upon disconnection of the stability-controlling element from the closed-loop system.Type: ApplicationFiled: August 13, 2018Publication date: April 11, 2019Inventors: Guillaume MOURET, Matthew BACCHI, Pascal SANDREZ, Alexis Nathanael HOUT-MARCHAND
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Patent number: 7786714Abstract: In the field of step-down voltage conversion, it is known to regulate an output of a DC-DC converter circuit with both a Pulse Wave Modulation voltage signal or a Pulse Frequency Modulation voltage signal, depending upon a current demand made upon the DC-DC converter circuit. Typically, circuits to generate both voltage signals are provided and selection of the appropriate regulation mode is achieved by means of a pin and decision software controlling the pin. However, the use of the pin and the software is an overhead that is desirably avoided. Consequently, the present invention provides a voltage conversion apparatus comprising a signal analyzer to analyze a load current signal and compare a characteristic of the load current signal to at least one predetermined criterion. Regulation by the PWM signal or the PFM signal is selected in response to the evaluation of the comparison with the at least one criterion.Type: GrantFiled: April 1, 2005Date of Patent: August 31, 2010Assignee: Freescale Semiconductor, Inc.Inventors: Matthew Bacchi, Vincent Teil
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Patent number: 7696739Abstract: An electronic switch circuit includes an electronic switch having a first terminal, a second terminal and a third terminal, control means for applying to the first terminal a cyclic drive waveform which causes the electronic switch to conduct between the second and third terminals during a selected portion of each cycle of the waveform, operably coupled to the control means to control synchronisation of the cyclic drive waveform a detector operable to detect a change of direction of current flow at the second terminal of the electronic switch and means for monitoring and, where required, compensating for offset error of the detector. The electronic switch may beneficially be a synchronous rectifier. The synchronous rectifier may be used in DC-DC power converters to improve efficiency.Type: GrantFiled: April 1, 2005Date of Patent: April 13, 2010Assignee: Freescale Semiconductor, Inc.Inventors: Matthew Bacchi, Vincent Teil
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Publication number: 20080203989Abstract: In the field of step-down voltage conversion, it is known to regulate an output of a DC-DC converter circuit with both a Pulse Wave Modulation voltage signal or a Pulse Frequency Modulation voltage signal, depending upon a current demand made upon the DC-DC converter circuit. Typically, circuits to generate both voltage signals are provided and selection of the appropriate regulation mode is achieved by means of a pin and decision software controlling the pin. However, the use of the pin and the software is an overhead that is desirably avoided. Consequently, the present invention provides a voltage conversion apparatus comprising a signal analyser to analyse a load current signal and compare a characteristic of the load current signal to at least one predetermined criterion. Regulation by the PWM signal or the PFM signal is selected in response to the evaluation of the comparison with the at least one criterion.Type: ApplicationFiled: April 1, 2005Publication date: August 28, 2008Applicant: Freescale Semiconductor, Inc.Inventors: Matthew Bacchi, Vincent Teil
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Publication number: 20080191677Abstract: An electronic switch circuit includes an electronic switch having a first terminal, a second terminal and a third terminal, control means for applying to the first terminal a cyclic drive waveform which causes the electronic switch to conduct between the second and third terminals during a selected portion of each cycle of the waveform, operably coupled to the control means to control synchronisation of the cyclic drive waveform a detector operable to detect a change of sense of current flow at the second terminal of the electronic switch and means for monitoring and, where required, compensating for offset error of the detector. The electronic switch may beneficially be a synchronous rectifier. The synchronous rectifier may be used in DC-DC power converters to improve efficiency. Also described is a DC-DC power converter, which includes the electronic switch in the form of a synchronous rectifier together with a further electronic switch.Type: ApplicationFiled: April 1, 2005Publication date: August 14, 2008Applicant: Freescale Semiconductor, Inc.Inventors: Matthew Bacchi, Vincent Teil