Patents Assigned to SENSOR
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Publication number: 20180128883Abstract: An electrical structural member comprises a first package and a second package. The first package has a first connection frame, a chip disposed in the first connection frame, and a first encapsulation material encapsulating the chip and at least portions of the first connection frame. The second package has a second connection frame and a second encapsulation material encapsulating at least portions of the second connection frame. The first encapsulation material is securely connected to the second encapsulation material.Type: ApplicationFiled: January 3, 2018Publication date: May 10, 2018Applicant: TE Connectivity Sensors Germany GmbHInventor: Georg Stute
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Patent number: 9966496Abstract: A light emitting heterostructure including a partially relaxed semiconductor layer is provided. The partially relaxed semiconductor layer can be included as a sublayer of a contact semiconductor layer of the light emitting heterostructure. A dislocation blocking structure also can be included adjacent to the partially relaxed semiconductor layer.Type: GrantFiled: April 12, 2016Date of Patent: May 8, 2018Assignee: Sensor Electronic Technology, Inc.Inventors: Maxim S. Shatalov, Alexander Dobrinsky, Michael Shur, Remigijus Gaska
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Patent number: 9965076Abstract: Sensors incorporating piezoresistive materials are described. One class of sensors includes piezoresistive material that is held or otherwise supported adjacent conductive traces on a substrate. Another class of sensors includes conductive traces formed directly on the piezoresistive material.Type: GrantFiled: June 9, 2014Date of Patent: May 8, 2018Assignee: BeBop Sensors, Inc.Inventor: Keith A. McMillen
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Patent number: 9964651Abstract: An ultra-thin radiation detector includes a radiation detector gas chamber having at least one ultra-thin chamber window and an ultra-thin first substrate contained within the gas chamber. The detector further includes a second substrate generally parallel to and coupled to the first substrate and defining a gas gap between the first substrate and the second substrate. The detector further includes a discharge gas between the substrates and contained within the gas chamber, where the discharge gas is free to circulate within the gas chamber and between the first and second substrates at a given gas pressure. The detector further includes a first electrode coupled to one of the substrates and a second electrode electrically coupled to the first electrode. The detector further includes a first discharge event detector coupled to at least one of the electrodes for detecting a gas discharge counting event in the electrode.Type: GrantFiled: July 18, 2017Date of Patent: May 8, 2018Assignee: Integrated Sensors, LLCInventor: Peter S. Friedman
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Publication number: 20180117201Abstract: 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: December 28, 2017Publication date: May 3, 2018Applicant: Sensor Electronic Technology, Inc.Inventors: Timothy James Bettles, Yuri Bilenko, Saulius Smetona, Alexander Dobrinsky, Michael Shur, Remigijus Gaska
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Publication number: 20180122987Abstract: A semiconductor structure comprising a buffer structure and a set of semiconductor layers formed adjacent to a first side of the buffer structure is provided. The buffer structure can have an effective lattice constant and a thickness such that an overall stress in the set of semiconductor layers at room temperature is compressive and is in a range between approximately 0.1 GPa and 2.0 GPa. The buffer structure can be grown using a set of growth parameters selected to achieve the target effective lattice constant a, control stresses present during growth of the buffer structure, and/or control stresses present after the semiconductor structure has cooled.Type: ApplicationFiled: December 28, 2017Publication date: May 3, 2018Applicant: Sensor Electronic Technology, Inc.Inventors: Maxim S. Shatalov, Jinwei Yang, Alexander Dobrinsky, Michael Shur, Remigijus Gaska
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Publication number: 20180117194Abstract: A system capable of detecting and/or sterilizing surface(s) of an object using ultraviolet radiation is provided. The system can include a disinfection chamber and/or handheld ultraviolet unit, which includes ultraviolet sources for inducing fluorescence in a contaminant and/or sterilizing a surface of an object. The object can comprise a protective suit, which is worn by a user and also can include ultraviolet sources for disinfecting air prior to the air entering the protective suit. The system can be implemented as a multi-tiered system for protecting the user and others from exposure to the contaminant and sterilizing the protective suit after exposure to an environment including the contaminant.Type: ApplicationFiled: December 22, 2017Publication date: May 3, 2018Applicant: Sensor Electronic Technology, Inc.Inventors: Alexander Dobrinsky, Michael Shur, Remigijus Gaska, Timothy James Bettles
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Publication number: 20180120453Abstract: A radiation wavelength converter includes a detector configured to receive radiation of a first wavelength and to convert the radiation of a first wavelength to one or more electrical signals. The converter includes an integrated circuit (e.g., electrically connected to the detector to receive the one or more electrical signals) configured to amplify the one or more electrical signals. The converter also includes an emitter (e.g., formed on or attached to the integrated circuit and configured to be electrically connected to the integrated circuit to receive the one or more amplified electrical signals) configured to convert the one or more amplified electrical signals to radiation of a second wavelength.Type: ApplicationFiled: October 27, 2016Publication date: May 3, 2018Applicant: Sensors Unlimited, Inc.Inventors: Richard J. Fustos, Kenneth A. Loesser
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Publication number: 20180124887Abstract: A solid-state light source (SSLS) structure with integrated control. In one embodiment, a SSLS control circuit can be integrated with a SSLS structure formed from a multiple of SSLSs. The SSLS control circuit controls the total operating current of the SSLS structure to within a predetermined total operating current limit by selectively limiting the current in individual SSLSs or in groups of SSLSs as each are turned on according to a sequential order. The SSLS control circuit limits the current in each of the individual SSLSs or groups of SSLSs as function of the saturation current of the SSLSs. In one embodiment, the individual SSLSs or groups of SSLSs has a turn on voltage corresponding to a voltage causing a preceding SSLS or group of SSLSs in the sequential order to saturate current.Type: ApplicationFiled: December 28, 2017Publication date: May 3, 2018Applicant: Sensor Electronic Technology, Inc.Inventors: Grigory Simin, Michael Shur, Alexander Dobrinsky, Maxim S. Shatalov
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Publication number: 20180120420Abstract: A sensor for motion or gesture sensing may be configured to emit radio frequency signals such as for pulsed range gated sensing. The sensor may include a radio frequency transmitter configured to emit the pulses and a receiver configured to receive reflected ones of the emitted radio frequency signals. The received pulses may be processed by a motion channel and/or a gesture channel. The gesture channel may produce signals for further processing for identification of one or more different motion gestures such as by calculating and evaluating features from one or more of the amplitude, phase and frequency of the output signals of the gesture channel. The sensing apparatus may optionally serve as a monitor for evaluating user activities, such as by counting certain activities. The sensor may optionally serve as a user control interface for many different devices by generating control signal(s) based on the identification of one or more different motion gestures.Type: ApplicationFiled: April 20, 2016Publication date: May 3, 2018Applicant: RESMED SENSOR TECHNOLOGIES LIMITEDInventors: Stephen McMahon, Emma Marie Meade, Redmond Shouldice
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Publication number: 20180120946Abstract: Disclosed is a user interface device that interacts with a computer or a TV that realizes an electronic device, the user interface device including a motion recognition module configured to recognize a motion of a user by using transmission and reception of an ultrasonic signal; and a battery configured to supply electric power to the motion recognition module.Type: ApplicationFiled: October 30, 2017Publication date: May 3, 2018Applicant: Center for Integrated Smart Sensors FoundationInventor: Kyung Il Cho
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Publication number: 20180117195Abstract: A diffusive illuminator is provided. The diffusive illuminator includes a set of light sources and a light guiding structure including a plurality of layers. At least some of the layers can be formed of a fluoropolymer and at least one layer can be formed of a transparent fluid. The light guiding structure also includes an emission surface through which diffused light exits. The light guiding structure can further include diffusive elements associated with at least one of the plurality of layers. Each diffusive element can diffuse the light to within forty percent of Lambertian distribution. The diffusive elements can be arranged based on a desired uniformity of the diffused light at a target distance corresponding to a surface to be illuminated. The diffusive illuminator can emit ultraviolet light, and can be implemented as part of a disinfection system.Type: ApplicationFiled: December 28, 2017Publication date: May 3, 2018Applicant: Sensor Electronic Technology, Inc.Inventors: Alexander Dobrinsky, Michael Shur, Remigijus Gaska
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Publication number: 20180117354Abstract: A system for sterilizing at least one surface of an object is provided. The system includes a set of ultraviolet radiation sources and a set of wave guiding structures configured to direct ultraviolet radiation having a set of target attributes to a desired location on at least one surface of the object. The set of wave guiding structures can include at least one ultraviolet reflective surface having an ultraviolet reflection coefficient of at least thirty percent. Furthermore, the system can include a computer system for operating the ultraviolet radiation sources to deliver a target dose of ultraviolet radiation to the at least one target surface of the object.Type: ApplicationFiled: December 28, 2017Publication date: May 3, 2018Applicant: Sensor Electronic Technology, Inc.Inventors: Michael Shur, Alexander Dobrinsky, Maxim S. Shatalov
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Patent number: 9960315Abstract: A light emitting heterostructure including a partially relaxed semiconductor layer is provided. The partially relaxed semiconductor layer can be included as a sublayer of a contact semiconductor layer of the light emitting heterostructure. A dislocation blocking structure also can be included adjacent to the partially relaxed semiconductor layer.Type: GrantFiled: December 21, 2016Date of Patent: May 1, 2018Assignee: Sensor Electronic Technology, Inc.Inventors: Maxim S. Shatalov, Alexander Dobrinsky, Michael Shur, Remigijus Gaska
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Patent number: 9960321Abstract: A multi-layered contact to a semiconductor structure and a method of making is described. In one embodiment, the contact includes a discontinuous Chromium layer formed over the semiconductor structure. A discontinuous Titanium layer is formed directly on the Chromium layer, wherein portions of the Titanium layer extend into at least some of the discontinuous sections of the Chromium layer. A discontinuous Aluminum layer is formed directly on the Chromium layer, wherein portions of the Aluminum layer extend into at least some of the discontinuous sections of the Titanium layer and the Chromium layer.Type: GrantFiled: June 30, 2016Date of Patent: May 1, 2018Assignee: Sensor Electronic Technology, Inc.Inventors: Michael Shur, Alexander Dobrinsky
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Patent number: 9958444Abstract: According to one aspect, a system for sensing ethanol from human skin, that comprises at least one apparatus for sensing ethanol and a coupling matrix readout extraction unit for performing a method of extracting a coupling-matrix readout. The at least one sensing apparatus and the coupling matrix readout extraction may be mounted on a substrate. The substrate may be adapted such that it can be formed into a wearable accessory that can be worn by a human subject. When the wearable accessory is worn by the human subject such that the subject provides a skin tissue sample to the accessory, the presence or concentration of ethanol and other compounds may be determined from the vapor associated with the tissue sample.Type: GrantFiled: May 30, 2014Date of Patent: May 1, 2018Assignee: Sober stearing Sensors Canada, Inc.Inventors: Scott W. T. Chen, John T. Carroll, Raafat R. Mansour
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Patent number: 9952393Abstract: A light guiding structure is provided. The structure includes an anodized aluminum oxide (AAO) layer and a fluoropolymer layer located immediately adjacent to a surface of the AAO layer. Light propagates through the AAO layer in a direction substantially parallel to the fluoropolymer layer. An optoelectronic device can be coupled to a surface of the AAO layer, and emit/sense light propagating through the AAO layer. Solutions for fabricating the light guiding structure are also described.Type: GrantFiled: June 26, 2017Date of Patent: April 24, 2018Assignee: Sensor Electronic Technology, Inc.Inventors: Alexander Dobrinsky, Michael Shur, Remigijus Gaska
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Publication number: 20180104368Abstract: A system for sterilizing at least one surface of an object is provided. The system includes a set of ultraviolet radiation sources and a set of wave guiding structures configured to direct ultraviolet radiation having a set of target attributes to a desired location on at least one surface of the object. The set of wave guiding structures can include at least one ultraviolet reflective surface having an ultraviolet reflection coefficient of at least thirty percent. Furthermore, the system can include a computer system for operating the ultraviolet radiation sources to deliver a target dose of ultraviolet radiation to the at least one target surface of the object.Type: ApplicationFiled: December 19, 2017Publication date: April 19, 2018Applicant: Sensor Electronic Technology, Inc.Inventors: Alexander Dobrinsky, Michael Shur
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Publication number: 20180106897Abstract: One or more sensors are configured for detection of characteristics of moving objects and living subjects for human identification or authentication. One or more processors, such as in a system of sensors or that control a sensor, may be configured to process signals from the one or more sensors to identify a person. The processing may include evaluating features from the signals such as breathing rate, respiration depth, degree of movement and heart rate etc. The sensors may be radio frequency non-contact sensors with automated detection control to change detection control parameters based on the identification of living beings, such as to avoid sensor interference.Type: ApplicationFiled: April 20, 2016Publication date: April 19, 2018Applicant: RESMED SENSOR TECHNOLOGIES LIMITEDInventors: Redmond Shouldice, Emer DOHENY, Alberto Zaffaroni
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Publication number: 20180108806Abstract: 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: December 29, 2017Publication date: April 19, 2018Applicant: Sensor Electronic Technology, Inc.Inventors: Rakesh Jain, Wenhong Sun, Jinwei Yang, Maxim S. Shatalov, Alexander Dobrinsky, Michael Shur, Remigijus Gaska