Patents by Inventor Nikhil Apte
Nikhil Apte 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: 20200030850Abstract: A Piezoelectric Micromachined Ultrasonic Transducer (PMUT) device is provided. The PMUT includes a substrate and an edge support structure connected to the substrate. A membrane is connected to the edge support structure such that a cavity is defined between the membrane and the substrate, where the membrane configured to allow movement at ultrasonic frequencies. The membrane comprises a piezoelectric layer and first and second electrodes coupled to opposing sides of the piezoelectric layer. For operation in a Capacitive Micromachined Ultrasonic Transducer (CMUT) mode, a third electrode is disposed on the substrate and separated by an air gap in the cavity from the second electrode. Also provided are an integrated MEMS array, a method for operating an array of PMUT/CMUT dual-mode devices, and a PMUT/CMUT dual-mode device.Type: ApplicationFiled: October 3, 2019Publication date: January 30, 2020Applicant: InvenSense, Inc.Inventors: Nikhil APTE, Renata Melamud BERGER, Michael DANEMAN
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Patent number: 10474862Abstract: A method for generating an image is provided. The method comprises capturing a first set of image pixels by an ultrasonic sensor comprising an array of ultrasonic transducers using a first beamforming pattern, wherein the first beamforming pattern comprises a first pattern of transmit signals routed to a plurality of ultrasonic transducers of the ultrasonic sensor. The method further comprises capturing a second set of image pixels at the ultrasonic sensor using a second beamforming pattern, wherein the second beamforming pattern comprises a second pattern of transmit signals routed to the plurality of ultrasonic transducers. The second beamforming pattern is different than the first beamforming pattern. The second set of image pixels corresponds to an edge region of the ultrasonic sensor. The method additionally comprises combining the first set of image pixels and the second set of image pixels to form the image.Type: GrantFiled: June 1, 2017Date of Patent: November 12, 2019Assignee: InvenSense, Inc.Inventors: Bruno W. Garlepp, Michael H. Perrott, Michael Daneman, James Christian Salvia, Nikhil Apte
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Patent number: 10441975Abstract: A Piezoelectric Micromachined Ultrasonic Transducer (PMUT) device is provided. The PMUT includes a substrate and an edge support structure connected to the substrate. A membrane is connected to the edge support structure such that a cavity is defined between the membrane and the substrate, where the membrane configured to allow movement at ultrasonic frequencies. The membrane comprises a piezoelectric layer and first and second electrodes coupled to opposing sides of the piezoelectric layer. For operation in a Capacitive Micromachined Ultrasonic Transducer (CMUT) mode, a third electrode is disposed on the substrate and separated by an air gap in the cavity from the second electrode. Also provided are an integrated MEMS array, a method for operating an array of PMUT/CMUT dual-mode devices, and a PMUT/CMUT dual-mode device.Type: GrantFiled: January 30, 2017Date of Patent: October 15, 2019Assignee: InvenSense, Inc.Inventors: Nikhil Apte, Renata Melamud Berger, Michael Daneman
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Patent number: 10408797Abstract: An electronic device including an array of ultrasonic transducers, a temperature sensor for determining a temperature of the array of ultrasonic transducers, and a control module communicatively coupled to the array of ultrasonic devices and the temperature sensor. The control module is for receiving the temperature and for controlling operation of the array of ultrasonic transducers based at least in part on the temperature.Type: GrantFiled: February 3, 2017Date of Patent: September 10, 2019Assignee: InvenSense, Inc.Inventors: Nikhil Apte, Renata Melamud Berger, Michael Daneman, James Christian Salvia
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Publication number: 20190262865Abstract: A piezoelectric micromachined ultrasound transducer (PMUT) device may include a plurality of layers including a structural layer, a piezoelectric layer, and electrode layers located on opposite sides of the piezoelectric layer. Conductive barrier layers may be located between the piezoelectric layer and the electrodes to the prevent diffusion of the piezoelectric layer into the electrode layers.Type: ApplicationFiled: February 7, 2019Publication date: August 29, 2019Inventors: Emad Mehdizadeh, Bongsang Kim, Chienliu Chang, Leonardo Baldasarre, Nikhil Apte, Xiaoyue Jiang, Mei-Lin Chan
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Publication number: 20190267536Abstract: A piezoelectric micromachined ultrasound transducer (PMUT) array may comprise PMUT devices with respective piezoelectric layers and electrode layers. Parasitic capacitance can be reduced when an electrode layer is not shared across PMUT devices but may expose the devices to electromagnetic interference (EMI). A conductive layer located within the structural layer or on a shared plane with the electrode layers may reduce EMI affecting the PMUT array operation.Type: ApplicationFiled: February 21, 2019Publication date: August 29, 2019Inventors: Nikhil Apte, Chienliu Chang, Shreyas Thakar, Mei-Lin Chan
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Publication number: 20190247887Abstract: An electronic device includes a plurality of CMOS control elements arranged in a two-dimensional array, where each CMOS control element of the plurality of CMOS control elements includes two semiconductor devices. The plurality of CMOS control elements include a first subset of CMOS control elements, each CMOS control element of the first subset of CMOS control elements including a semiconductor device of a first class and a semiconductor device of a second class, and a second subset of CMOS control elements, each CMOS control element of the second subset of CMOS control elements including a semiconductor device of the first class and a semiconductor device of a third class.Type: ApplicationFiled: April 25, 2019Publication date: August 15, 2019Applicant: InvenSense, Inc.Inventors: James Christian SALVIA, Michael H. PERROTT, Marian VOROS, Eldwin NG, Julius Ming-Lin TSAI, Nikhil APTE
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Patent number: 10325915Abstract: An electronic device includes a plurality of CMOS control elements arranged in a two-dimensional array, where each CMOS control element of the plurality of CMOS control elements includes semiconductor devices. The plurality of CMOS control elements each including a PMOS semiconductor device portion comprising a high voltage PMOS device and a low voltage PMOS device and an NMOS semiconductor device portion comprising a high voltage NMOS device and a low voltage NMOS device.Type: GrantFiled: October 14, 2016Date of Patent: June 18, 2019Assignee: InvenSense, Inc.Inventors: James Christian Salvia, Michael H. Perrott, Marian Voros, Eldwin Ng, Julius Ming-Lin Tsai, Nikhil Apte
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Patent number: 10315222Abstract: An electronic device includes a plurality of CMOS control elements arranged in a two-dimensional array, where each CMOS control element of the plurality of CMOS control elements includes two semiconductor devices. The plurality of CMOS control elements include a first subset of CMOS control elements, each CMOS control element of the first subset of CMOS control elements including a semiconductor device of a first class and a semiconductor device of a second class, and a second subset of CMOS control elements, each CMOS control element of the second subset of CMOS control elements including a semiconductor device of the first class and a semiconductor device of a third class.Type: GrantFiled: October 14, 2016Date of Patent: June 11, 2019Assignee: InvenSense, Inc.Inventors: James Christian Salvia, Michael H. Perrott, Marian Voros, Eldwin Ng, Julius Ming-Lin Tsai, Nikhil Apte
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Publication number: 20190005300Abstract: A method for generating a composite image having an increased image pixel density by an array of ultrasonic transducers having a given spatial density is provided. The method comprises capturing a first set of pixels at an ultrasonic sensor using a first beamforming pattern, wherein the first beamforming pattern comprises a first pattern of ultrasonic transducers of the ultrasonic sensor. The method further comprises capturing a second set of pixels at the ultrasonic sensor using a second beamforming pattern, wherein the second beamforming pattern comprises a second pattern of ultrasonic transducers. The first beamforming pattern and the second beamforming pattern are different. Pixels of the second set of pixels correspond to positions between pixels of the first set of pixels. The method additionally comprises combining the first and second sets of pixels to form the composite image. An electronic device and a method of generating an image of a fingerprint are also provided.Type: ApplicationFiled: June 28, 2017Publication date: January 3, 2019Applicant: InvenSense, Inc.Inventors: Bruno W. GARLEPP, James Christian SALVIA, Michael DANEMAN, Nikhil APTE, Julius Ming-Lin TSAI
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Publication number: 20180349663Abstract: A method for generating an image is provided. The method comprises capturing a first set of image pixels by an ultrasonic sensor comprising an array of ultrasonic transducers using a first beamforming pattern, wherein the first beamforming pattern comprises a first pattern of transmit signals routed to a plurality of ultrasonic transducers of the ultrasonic sensor. The method further comprises capturing a second set of image pixels at the ultrasonic sensor using a second beamforming pattern, wherein the second beamforming pattern comprises a second pattern of transmit signals routed to the plurality of ultrasonic transducers. The second beamforming pattern is different than the first beamforming pattern. The second set of image pixels corresponds to an edge region of the ultrasonic sensor. The method additionally comprises combining the first set of image pixels and the second set of image pixels to form the image.Type: ApplicationFiled: June 1, 2017Publication date: December 6, 2018Applicant: InvenSense, Inc.Inventors: Bruno W. GARLEPP, Michael H. PERROTT, Michael DANEMAN, James Christian SALVIA, Nikhil APTE
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Publication number: 20170326591Abstract: A Piezoelectric Micromachined Ultrasonic Transducer (PMUT) device is provided. The PMUT includes a substrate and an edge support structure connected to the substrate. A membrane is connected to the edge support structure such that a cavity is defined between the membrane and the substrate, where the membrane configured to allow movement at ultrasonic frequencies. The membrane comprises a piezoelectric layer and first and second electrodes coupled to opposing sides of the piezoelectric layer. For operation in a Capacitive Micromachined Ultrasonic Transducer (CMUT) mode, a third electrode is disposed on the substrate and separated by an air gap in the cavity from the second electrode. Also provided are an integrated MEMS array, a method for operating an array of PMUT/CMUT dual-mode devices, and a PMUT/CMUT dual-mode device.Type: ApplicationFiled: January 30, 2017Publication date: November 16, 2017Applicant: InvenSense, Inc.Inventors: Nikhil APTE, Renata Melamud BERGER, Michael DANEMAN
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Publication number: 20170328866Abstract: An electronic device including an array of ultrasonic transducers, a temperature sensor for determining a temperature of the array of ultrasonic transducers, and a control module communicatively coupled to the array of ultrasonic devices and the temperature sensor. The control module is for receiving the temperature and for controlling operation of the array of ultrasonic transducers based at least in part on the temperature.Type: ApplicationFiled: February 3, 2017Publication date: November 16, 2017Applicant: InvenSense, Inc.Inventors: Nikhil APTE, Renata Melamud BERGER, Michael DANEMAN, James Christian SALVIA
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Publication number: 20170322290Abstract: A Piezoelectric Micromachined Ultrasonic Transducer (PMUT) device is provided. The PMUT includes a substrate and an edge support structure connected to the substrate. A membrane is connected to the edge support structure such that a cavity is defined between the membrane and the substrate, where the membrane is configured to allow movement at ultrasonic frequencies. The membrane includes a piezoelectric layer and first and second electrodes coupled to opposing sides of the piezoelectric layer. An interior support structure is disposed within the cavity and connected to the substrate and the membrane.Type: ApplicationFiled: July 8, 2016Publication date: November 9, 2017Applicant: InvenSense, Inc.Inventors: Eldwin NG, Julius Ming-Lin TSAI, Nikhil APTE
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Publication number: 20170322291Abstract: An electronic device includes a plurality of CMOS control elements arranged in a two-dimensional array, where each CMOS control element of the plurality of CMOS control elements includes two semiconductor devices. The plurality of CMOS control elements include a first subset of CMOS control elements, each CMOS control element of the first subset of CMOS control elements including a semiconductor device of a first class and a semiconductor device of a second class, and a second subset of CMOS control elements, each CMOS control element of the second subset of CMOS control elements including a semiconductor device of the first class and a semiconductor device of a third class.Type: ApplicationFiled: October 14, 2016Publication date: November 9, 2017Applicant: InvenSense, Inc.Inventors: James Christian SALVIA, Michael H. PERROTT, Marian VOROS, Eldwin NG, Julius Ming-Lin TSAI, Nikhil APTE
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Publication number: 20170322292Abstract: An electronic device includes a plurality of CMOS control elements arranged in a two-dimensional array, where each CMOS control element of the plurality of CMOS control elements includes semiconductor devices. The plurality of CMOS control elements each including a PMOS semiconductor device portion comprising a high voltage PMOS device and a low voltage PMOS device and an NMOS semiconductor device portion comprising a high voltage NMOS device and a low voltage NMOS device.Type: ApplicationFiled: October 14, 2016Publication date: November 9, 2017Applicant: InvenSense, Inc.Inventors: James Christian SALVIA, Michael H. PERROTT, Marian VOROS, Eldwin NG, Julius Ming-Lin TSAI, Nikhil APTE
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Publication number: 20170322305Abstract: In a method of operating a two-dimensional array of ultrasonic transducers, a plurality of array positions comprising pluralities of ultrasonic transducers of the two-dimensional array of ultrasonic transducers is defined, the plurality of array positions each comprising a portion of ultrasonic transducers of the two dimensional array of ultrasonic transducers. For each array position of the plurality of array positions, a plurality of ultrasonic transducers associated with the respective array position are activated. The activation includes transmitting ultrasonic signals from a first group of ultrasonic transducers of the plurality of ultrasonic transducers, wherein at least some ultrasonic transducers of the first group of ultrasonic transducers are phase delayed with respect to other ultrasonic transducers of the first group of ultrasonic transducers, the first group of ultrasonic transducers for forming a focused ultrasonic beam.Type: ApplicationFiled: September 15, 2016Publication date: November 9, 2017Applicant: InvenSense, Inc.Inventors: Nikhil APTE, Julius Ming-Lin TSAI, Michael Julian DANEMAN, Renata Melamud BERGER
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Patent number: 9586233Abstract: A capacitive micromachined ultrasonic transducer (CMUT) is provided that includes a substrate, a bottom conductive layer disposed on a bottom surface of the substrate, a cavity disposed into a top surface of the substrate, a nonconductive layer disposed on the substrate top surface and on the cavity, a CMUT plate disposed on the nonconductive layer and across the cavity, a top conductive layer disposed on a top surface of the CMUT plate, a pressure control via that spans from the cavity to an ambient environment, and an active pressure controller connected to the pressure control via, wherein the active pressure controller is capable of actively varying a pressure differential across the CMUT plate.Type: GrantFiled: December 9, 2013Date of Patent: March 7, 2017Assignee: The Board of Trustees of the Leland Stanford Junior UniversityInventors: Nikhil Apte, Butrus T. Khuri-Yakub, Kwan Kyu Park
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Publication number: 20140239770Abstract: A capacitive micromachined ultrasonic transducer (CMUT) is provided that includes a substrate, a bottom conductive layer disposed on a bottom surface of the substrate, a cavity disposed into a top surface of the substrate, a nonconductive layer disposed on the substrate top surface and on the cavity, a CMUT plate disposed on the nonconductive layer and across the cavity, a top conductive layer disposed on a top surface of the CMUT plate, a pressure control via that spans from the cavity to an ambient environment, and an active pressure controller connected to the pressure control via, wherein the active pressure controller is capable of actively varying a pressure differential across the CMUT plate.Type: ApplicationFiled: December 9, 2013Publication date: August 28, 2014Inventors: Nikhil Apte, Butrus T. Khuri-Yakub, Kwan Kyu Park