Patents Assigned to SENSOR
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Patent number: 9263533Abstract: A device having a channel with multiple voltage thresholds is provided. The channel can include a first section located adjacent to a source electrode, which is a normally-off channel and a second section located between the first section and a drain electrode, which is a normally-on channel. The device can include a charge-controlling electrode connected to the source electrode, which extends from the source electrode over at least a portion of the second section of the channel. During operation of the device, a potential difference between the charge-controlling electrode and the channel can control the on/off state of the normally-on section of the channel.Type: GrantFiled: September 19, 2012Date of Patent: February 16, 2016Assignee: Sensor Electronic Technology, Inc.Inventors: Grigory Simin, Michael Shur, Remigijus Gaska
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Patent number: 9255875Abstract: Detection of corrosion and other defects in piping is needed to prevent catastrophic pipeline failure. Sensors, systems and methods are provided to enable detection of such defects. These apparatus and methods are configured to characterize pipe protected by insulation and conductive weather protection. The sensors may utilize inductive and/or solid state sensing element arrays operated in a magnetic field generated in part by a drive winding of the sensor. Multiple excitation frequencies are used to generate the magnetic field and record corresponding sensing element responses. Relatively high excitation frequencies may be used to estimate the properties of the weather protection and sensor lift-off while lower frequencies may be used to detect internal and external pipe damage. Linear arrays may be moved to generate damage images of the pipe providing size and location information for defects. Two dimensional sensor arrays may be used to provide imaging without moving the sensor.Type: GrantFiled: October 25, 2012Date of Patent: February 9, 2016Assignee: Jentek Sensors, Inc.Inventors: Scott A. Denenberg, Todd A. Dunford, Neil J. Goldfine, Yanko K. Sheiretov
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Patent number: 9256240Abstract: A circuit including a semiconductor device having a set of space-charge control electrodes is provided. The set of space-charge control electrodes is located between a first terminal, such as a gate or a cathode, and a second terminal, such as a drain or an anode, of the device. The circuit includes a biasing network, which supplies an individual bias voltage to each of the set of space-charge control electrodes. The bias voltage for each space-charge control electrode can be: selected based on the bias voltages of each of the terminals and a location of the space-charge control electrode relative to the terminals and/or configured to deplete a region of the channel under the corresponding space-charge control electrode at an operating voltage applied to the second terminal.Type: GrantFiled: October 29, 2014Date of Patent: February 9, 2016Assignee: Sensor Electronic Technology, Inc.Inventors: Grigory Simin, Michael Shur, Remigijus Gaska
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Publication number: 20160032449Abstract: Disclosed are devices, materials, systems, and methods, including a device that includes one or more structural components, at least one of the one or more structural components comprising substantially HfO2—TiO2 material. Also disclosed is a hemispherical resonator that includes a hemisphere including one or more structural components with at least one of the one or more structural components comprising substantially HfO2—TiO2 material, a forcer electrode configured to apply an electrical force on the hemisphere to cause the hemisphere to oscillate, and one or more sensor electrodes disposed in proximity to the hemisphere and configured to sense an orientation of a vibration pattern of the hemispherical resonator gyroscope.Type: ApplicationFiled: October 13, 2015Publication date: February 4, 2016Applicant: BEI Sensors & Systems Company, Inc.Inventor: Chris Painter
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Publication number: 20160035936Abstract: A method of fabricating a device using a layer with a patterned surface for improving the growth of semiconductor layers, such as group III nitride-based semiconductor layers with a high concentration of aluminum, is provided. The patterned surface can include a substantially flat top surface and a plurality of stress reducing regions, such as openings. The substantially flat top surface can have a root mean square roughness less than approximately 0.5 nanometers, and the stress reducing regions can have a characteristic size between approximately 0.1 microns and approximately five microns and a depth of at least 0.2 microns. A layer of group-III nitride material can be grown on the first layer and have a thickness at least twice the characteristic size of the stress reducing regions. A device including one or more of these features also is provided.Type: ApplicationFiled: August 10, 2015Publication date: February 4, 2016Applicant: SENSOR ELECTRONIC TECHNOLOGY, INC.Inventors: Rakesh Jain, Wenhong Sun, Jinwei Yang, Maxim S. Shatalov, Alexander Dobrinsky, Michael Shur, Remigijus Gaska
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Publication number: 20160035871Abstract: A lateral semiconductor device and/or design including a space-charge generating layer and a set of electrodes located on an opposite side of a device channel as contacts to the device channel is provided. The space-charge generating layer is configured to form a space-charge region to at least partially deplete the device channel in response to an operating voltage being applied to the contacts to the device channel.Type: ApplicationFiled: October 16, 2015Publication date: February 4, 2016Applicant: Sensor Electronic Technology, Inc.Inventors: Grigory Simin, Mikhail Gaevski, Michael Shur, Remigijus Gaska
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Publication number: 20160025660Abstract: A thermal flow sensor for determining a gas or the composition of a gas mixture as well as its flow velocity, comprising: a substrate onto which at least a first dielectric layer is applied; at least one heating structure that is applied onto the first dielectric layer and serves to heat the gas or the gas mixture; at least a first temperature sensor element that is applied onto the first dielectric layer at a distance from the heating structure and captures the temperature of the gas or gas mixture heated at the heating structure; a control device that controls the heating structure in a first operating mode in such a way that the heating structure shows a predetermined temperature, and controls the heating structure in a second operating mode in such a way that a power input into the heating structure corresponds to a predetermined power; and an evaluation unit which determines at least one physical characteristic of the gas present or the gas mixture on the basis of the operating modes and determines the gType: ApplicationFiled: February 24, 2014Publication date: January 28, 2016Applicant: Innovative Sensor Technology IST AGInventors: Christoph Hepp, Florian Krogmann
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Publication number: 20160027970Abstract: A solution for packaging an optoelectronic device using an ultraviolet transparent polymer is provided. The ultraviolet transparent polymer material can be placed adjacent to the optoelectronic device and/or a device package on which the optoelectronic device is mounted. Subsequently, the ultraviolet transparent polymer material can be processed to cause the ultraviolet transparent polymer material to adhere to the optoelectronic device and/or the device package. The ultraviolet transparent polymer can be adhered in a manner that protects the optoelectronic device from the ambient environment.Type: ApplicationFiled: May 11, 2015Publication date: January 28, 2016Applicant: Sensor Electronic Technology, Inc.Inventors: Maxim S. Shatalov, Saulius Smetona, Alexander Dobrinsky, Michael Shur
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Patent number: 9234883Abstract: The invention relates to an apparatus and a method for analyzing sample fluids, in particular for analyzing blood samples, for example for the purpose of determining the glucose content, with the same apparatus. A cavity delimited by a carrier tape is hereby positioned above a sensor surface, sample fluid is received in the cavity, at least one value of the sample fluid is measured, the cavity containing the sample fluid is removed from the sensor surface, and a regeneration agent is supplied to the sensor surface by way of the carrier tape.Type: GrantFiled: March 5, 2012Date of Patent: January 12, 2016Assignee: BST Bio Sensor Technology GmbHInventors: Dorothea Zahn, Frank Bier
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Publication number: 20160000953Abstract: A solution for disinfecting electronic devices is provided. An ultraviolet radiation source is embedded within an ultraviolet absorbent case. While the electronic device is within the ultraviolet absorbent case, ultraviolent radiation is directed at the electronic device. A monitoring and control system monitors a plurality of attributes for the electronic device, which can include: a frequency of usage for the device, a biological activity at a surface of the device, and a disinfection schedule history for the device. Furthermore, the monitoring and control system can detect whether the device is being used. Based on the monitoring, the monitoring and control system controls the ultraviolet radiation directed at the electronic device.Type: ApplicationFiled: September 14, 2015Publication date: January 7, 2016Applicant: SENSOR ELECTRONIC TECHNOLOGY, INC.Inventors: Timothy James Bettles, Yuri Bilenko, Saulius Smetona, Alexander Dobrinsky, Michael Shur, Remigijus Gaska
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Patent number: 9228842Abstract: A processing apparatus, optionally integrated into a device having a plurality of sensors including a magnetometer, generates navigational state estimates for the device. The processing apparatus has a magnetometer-assisted mode of operation in which measurements from the magnetometer are used to estimate the navigational state and an alternate mode of operation in which the navigational state of the device is estimated without measurements from the magnetometer. For a respective time period, the processing apparatus operates in the alternate mode of operation. During the respective time period, the processing apparatus collects a plurality of magnetometer measurements and determines whether they meet measurement-consistency requirements. If the measurements meet the measurement-consistency requirements, the processing apparatus transitions to the magnetometer-assisted mode of operation.Type: GrantFiled: March 22, 2013Date of Patent: January 5, 2016Assignee: Sensor Platforms, Inc.Inventors: Benjamin E. Joseph, Ian Chen, Deborah Kathleen Vitus
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Patent number: 9228969Abstract: A surface-conforming obscured feature detector includes a plurality of sensor plates, each having a capacitance that varies based on the dielectric constant of the materials that compose the surrounding objects and the proximity of those objects. A sensing circuit is coupled to the sensor plates 32 to measure the capacitances of the sensor plates. A controller is coupled to the sensing circuit to analyze the capacitances measured by the sensing circuit. One or a plurality of indicators are coupled to the controller, and are selectively activated to identify the location of an obscured feature behind a surface.Type: GrantFiled: October 1, 2014Date of Patent: January 5, 2016Assignee: Franklin Sensors, Inc.Inventor: David M. Dorrough
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Publication number: 20150374295Abstract: Techniques for shielding permittivity-sensitive devices are disclosed.Type: ApplicationFiled: March 14, 2013Publication date: December 31, 2015Applicant: Vital Sensors Holdig Company, Inc.Inventors: Volker Boedecker, Axel Niemeyer, Bernhard Wagner
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Patent number: 9223935Abstract: An apparatus, system, and method for the measurement, aggregation and analysis of data collected using non-contact or minimally-contacting sensors provides quality of life parameters for individual subjects, particularly in the context of a controlled trial of interventions on human subjects (e.g., a clinical trial of a drug, or an evaluation of a consumer item such as a fragrance). In particular, non-contact or minimal-contact measurement of quality-of-life parameters such as sleep, stress, relaxation, drowsiness, temperature and emotional state of humans may be evaluated, together with automated sampling, storage, and transmission to a remote data analysis center. One component of the system is that the objective data is measured with as little disruption as possible to the normal behavior of the subject. The system can also support behavioral and pharmaceutical interventions aimed at improving quality of life.Type: GrantFiled: September 23, 2009Date of Patent: December 29, 2015Assignee: ResMed Sensor Technologies LimitedInventors: Conor Heneghan, Conor Hanley, Niall Fox, Alberto Zaffaroni, Philip De Chazal
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Publication number: 20150372193Abstract: A device having a layer with a patterned surface for improving the growth of semiconductor layers, such as group III nitride-based semiconductor layers with a high concentration of aluminum, is provided. The patterned surface can include a substantially flat top surface and a plurality of stress reducing regions, such as openings. The substantially flat top surface can have a root mean square roughness less than approximately 0.5 nanometers, and the stress reducing regions can have a characteristic size between approximately 0.1 microns and approximately five microns and a depth of at least 0.2 microns. A layer of group-III nitride material can be grown on the first layer and have a thickness at least twice the characteristic size of the stress reducing regions.Type: ApplicationFiled: October 9, 2012Publication date: December 24, 2015Applicant: SENSOR ELECTRONIC TECHNOLOGY, INC.Inventor: Sensor Electronic Technology, Inc.
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Publication number: 20150364443Abstract: A solution for packaging a two terminal device, such as a light emitting diode, is provided. In one embodiment, a method of packaging a two terminal device includes: patterning a metal sheet to include a plurality of openings; bonding at least one two terminal device to the metal sheet, wherein a first opening corresponds to a distance between a first contact and a second contact of the at least one two terminal device; and cutting the metal sheet around each of the least one two terminal device, wherein the metal sheet forms a first electrode to the first contact and a second electrode to the second contact.Type: ApplicationFiled: August 25, 2015Publication date: December 17, 2015Applicant: SENSOR ELECTRONIC TECHNOLOGY, INC.Inventors: Yuri Bilenko, Michael Shur, Remigijus Gaska, Alexander Dobrinsky
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Patent number: 9214492Abstract: The present invention relates to a color and non-visible light e.g. IR sensor, namely a multispectral sensor which can be used in a camera such as a TOF camera for depth measurement, reflectance measurement and color measurement, and for generation of 3D image data or 3D images as well as the camera itself and methods of operating the same.Type: GrantFiled: January 10, 2013Date of Patent: December 15, 2015Assignee: Softkinetic Sensors N.V.Inventors: Ward Van Der Tempel, Daniel Van Nieuwenhove, Maarten Kuijk
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Patent number: 9214604Abstract: An infra-red (IR) device comprising a dielectric membrane formed on a silicon substrate comprising an etched portion; and at least one patterned layer formed within or on the dielectric membrane for controlling IR emission or IR absorption of the IR device, wherein the at least one patterned layer comprises laterally spaced structures.Type: GrantFiled: June 10, 2014Date of Patent: December 15, 2015Assignee: Cambridge CMOS Sensors LimitedInventors: Syed Zeeshan Ali, Florin Udrea, Julian Gardner, Richard Henry Hooper, Andrea De Luca, Mohamed Foysol Chowdhury, Ilie Poenaru
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Patent number: D748271Type: GrantFiled: August 22, 2014Date of Patent: January 26, 2016Assignee: ResMed Sensor Technologies LimitedInventors: Martin Clowry, Mark Doyle, Paul Phillips, Dominic Southgate
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Patent number: D748275Type: GrantFiled: March 15, 2013Date of Patent: January 26, 2016Assignee: Tesseract Sensors, LLCInventors: Michael J. Vosch, Benjamin M. Downey