Patents Assigned to SENSOR
  • Publication number: 20160109403
    Abstract: A gas sensor for measuring the concentrations of gases includes a solid body electrolyte, at least three electrodes, and a closed chamber. The doped platinum includes at least 50% by weight platinum and the remainder includes at least one further element selected from the group of solid body electrolytes. In particular, the doped platinum includes between 0.5% by weight to 15% by weight ZrO2 and the remainder is platinum, or the pure platinum is 100% by weight platinum and the gold alloy comprises at least 50% by weight gold and maximally 50% by weight platinum. In particular, the gold alloy includes approximately 85% by weight gold and approximately 15% by weight platinum or the gold alloy comprises at least gold and platinum at a ratio of 85% gold to 15% platinum.
    Type: Application
    Filed: May 28, 2014
    Publication date: April 21, 2016
    Applicant: Heraeus Sensor Technology GmbH
    Inventors: Karlheinz WIENAND, Karl-Heinz ULLRICH, Matsvei ZINKEVICH
  • Patent number: 9318865
    Abstract: An illuminator comprising a short-wave infrared (SWIR) laser, a fiber optic, and a lens optic. The fiber optic is coupled to the SWIR laser for mixing the modes of a beam emitted by the SWIR laser. The lens optic is coupled to the fiber optic for shaping the beam into a top-hat beam profile. A method for creating SWIR illumination includes emitting a laser beam with multiple modes from a SWIR laser, transmitting the laser beam through a multi-mode fiber optic, and transmitting the laser beam through a lens optic. Transmitting the laser beam through the multi-mode fiber optic can including mixing modes of the laser beam thereby reducing speckle and constructive and destructive interference in the laser beam. Transmitting the laser beam through the lens optic can include generating a top-hat beam profile.
    Type: Grant
    Filed: April 29, 2014
    Date of Patent: April 19, 2016
    Assignee: Sensors Unlimited, Inc.
    Inventor: Marc Hansen
  • Patent number: 9316513
    Abstract: A computer system stores calibration information corresponding to respective sets of sensor measurements associated with respective operating environments. After storing, in a first data structure, calibration information for a first operating environment, the system determines a current operating environment of the device. When the current operating environment of the device is consistent with the first operating environment and the calibration information for the first operating environment meets predefined measurement diversity criteria, the system calibrates at least one sensor for the first operating environment using the stored calibration information for the first operating environment. When the current operating environment of the device is inconsistent with the first operating environment, the system excludes the stored calibration information for the first operating environment when calibrating one or more sensors for the current operating environment.
    Type: Grant
    Filed: January 8, 2013
    Date of Patent: April 19, 2016
    Assignee: Sensor Platforms, Inc.
    Inventors: Benjamin E. Joseph, Ian Chen, Kevin A Shaw, James V. Steele
  • Patent number: 9320145
    Abstract: An electronic component assembly comprises a printed component structure comprising at least one of a semiconducting ink, an insulating ink and a conducting ink deposited onto a substrate. The component structure defining at least one contact area, with a connecting lead disposed against or adjacent to the contact area. At least one layer of electrically insulating material encloses the component structure. At least one of the substrate and the layer of electrically insulating material comprises packaging material. The component structure can be printed on a substrate such as paper or another soft material, which is secured to a layer of insulating packaging material such as polyethylene. Instead, the substrate can be the insulating packaging material itself. Variations using hard and soft substrates are possible, and various examples of electronic component assembly are disclosed.
    Type: Grant
    Filed: September 13, 2011
    Date of Patent: April 19, 2016
    Assignee: PST Sensors (Proprietary) Limited
    Inventors: David Thomas Britton, Margit Harting
  • Publication number: 20160104784
    Abstract: A solution for forming an ohmic contact to a semiconductor layer is provided. A masking material is applied to a set of contact regions on the surface of the semiconductor layer. Subsequently, one or more layers of a device heterostructure are formed on the non-masked region(s) of the semiconductor layer. The ohmic contact can be formed after the one or more layers of the device heterostructure are formed. The ohmic contact formation can be performed at a processing temperature lower than a temperature range within which a quality of a material forming any semiconductor layer in the device heterostructure is damaged.
    Type: Application
    Filed: December 17, 2015
    Publication date: April 14, 2016
    Applicant: Sensor Electronic Technology, Inc.
    Inventors: Remigijus Gaska, Michael Shur, Jinwei Yang, Alexander Dobrinsky, Maxim S. Shatalov
  • Patent number: 9310510
    Abstract: An apparatus and method for in-situ wellbore measurements wherein the apparatus includes one or more sensors arranged outside a wellbore, one or more actuators associated with the sensors, a wireless instrument unit situated outside the non-magnetic portion of wellbore conduit, and an electromagnetic transceiver situated inside a non-magnetic portion of wellbore conduit and mounted on an electric-line logging cable, each of the wireless instrument unit and the transceiver have a transmission antenna and a spaced apart receiver antenna, each transmission antenna disposed to be positioned to oppose through the non-magnetic casing a receiver antenna to form a phase-locked loop that verifies the relative positions of the transceiver and wireless instrument unit.
    Type: Grant
    Filed: November 30, 2010
    Date of Patent: April 12, 2016
    Assignee: Sensor Developments AS
    Inventor: Oivind Godager
  • Patent number: 9312428
    Abstract: 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: Grant
    Filed: January 9, 2014
    Date of Patent: April 12, 2016
    Assignee: Sensor Electronic Technology, Inc.
    Inventors: Maxim S. Shatalov, Alexander Dobrinsky, Michael Shur, Remigijus Gaska
  • Patent number: 9310363
    Abstract: An aptamer-based solid-state electrochemical biosensor for label-free detection of Salmonella enterica serovars utilizing immobilized aptamers. The device is realized by forming a matrix array of parallel capacitors, thus allowing the realization of low-cost, portable, fully integrated devices. Protein-aptamer binding modulates the threshold voltage of a circuit, changing the impedance (capacitance) of the circuit. This circuit is further characterized by an electrode coded with a p-Si substrate, enhancing the affinity between the Salmonella outer membrane proteins (OMPs) and the aptamer. An aptamer embedded detection plate is configured within a testing lid device that fits a standard, commercially available polymer specimen jar. A sample is mixed with broth for incubation and cultivation of any present Salmonella bacteria to obtain acceptable concentration of the pathogen for testing. The information obtained can then be transmitted by wireless network.
    Type: Grant
    Filed: April 21, 2010
    Date of Patent: April 12, 2016
    Assignee: Sensor-Kinesis Corporation
    Inventors: Yehoshua Shachar, Winston Wu, Thomas Chen, Leslie Farkas, Brett Jordan, Paladin Luboff, Herwin Chan, Kyle Zimmerman
  • Patent number: 9312448
    Abstract: A contact to a semiconductor layer in a light emitting structure is provided. The contact can include a plurality of contact areas formed of a metal and separated by a set of voids. The contact areas can be separated from one another by a characteristic distance selected based on a set of attributes of a semiconductor contact structure of the contact and a characteristic contact length scale of the contact. The voids can be configured to increase an overall reflectivity or transparency of the contact.
    Type: Grant
    Filed: July 12, 2013
    Date of Patent: April 12, 2016
    Assignee: Sensor Electronic Technology, Inc.
    Inventors: Alexander Lunev, Maxim S Shatalov, Alexander Dobrinsky, Michael Shur, Remigijus Gaska
  • Patent number: 9312347
    Abstract: 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: Grant
    Filed: December 19, 2014
    Date of Patent: April 12, 2016
    Assignee: Sensor Electronic Technology, Inc.
    Inventors: Grigory Simin, Michael Shur, Remigijus Gaska
  • Publication number: 20160088868
    Abstract: A solution for treating a surface with ultraviolet radiation is provided. A movable ultraviolet source is utilized to emit a beam of ultraviolet radiation having a characteristic cross-sectional area smaller than an area of the surface to be treated. The movable ultraviolet source can be moved as necessary to directly irradiate any portion of the surface with radiation within the characteristic cross-sectional area of the beam of ultraviolet radiation. The movement can include, for example, rotational movement and/or repositioning the movable ultraviolet source with respect to the surface.
    Type: Application
    Filed: September 30, 2015
    Publication date: March 31, 2016
    Applicant: Sensor Electronic Technology, Inc.
    Inventors: Alexander Dobrinsky, Michael Shur, Remigijus Gaska
  • Publication number: 20160093771
    Abstract: A patterned surface for improving the growth of semiconductor layers, such as group III nitride-based semiconductor layers, is provided. The patterned surface can include a set of substantially flat top surfaces and a plurality of openings. Each substantially flat top surface can have a root mean square roughness less than approximately 0.5 nanometers, and the openings can have a characteristic size between approximately 0.1 micron and five microns. One or more of the substantially flat top surfaces can be patterned based on target radiation.
    Type: Application
    Filed: March 17, 2015
    Publication date: March 31, 2016
    Applicant: Sensor Electronic Technology, Inc.
    Inventors: Maxim S. Shatalov, Rakesh Jain, Jinwei Yang, Michael Shur, Remigijus Gaska
  • Publication number: 20160093702
    Abstract: An ohmic contact to a semiconductor layer including a heterostructure barrier layer and a metal layer adjacent to the heterostructure barrier layer is provided. The heterostructure barrier layer can form a two dimensional free carrier gas for the contact at a heterointerface of the heterostructure barrier layer and the semiconductor layer. The metal layer is configured to form a contact with the two dimensional free carrier gas.
    Type: Application
    Filed: December 1, 2015
    Publication date: March 31, 2016
    Applicant: Sensor Electronic Technology, Inc.
    Inventors: Remigijus Gaska, Michael Shur
  • Patent number: 9291512
    Abstract: A sensor for measuring pressure and/or force includes at least one measuring assembly having at least one piezoelectric measuring element subjected to compressive stress for dynamic pressure and/or force measurement, and a diaphragm for introducing the pressure and/or the force onto at least the piezoelectric measuring element. The sensor also includes a further measuring assembly that is based on a different physical measuring principle for measuring static pressure and/or force.
    Type: Grant
    Filed: May 31, 2012
    Date of Patent: March 22, 2016
    Assignee: Piezocryst Advanced Sensorics GmbH
    Inventors: Alexander Schricker, Andreas Mayer, Dietmar Kröger
  • Publication number: 20160077292
    Abstract: 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: Application
    Filed: September 14, 2015
    Publication date: March 17, 2016
    Applicant: Sensor Electronic Technology, Inc.
    Inventors: Alexander Dobrinsky, Michael Shur, Remigijus Gaska
  • Publication number: 20160074548
    Abstract: 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: Application
    Filed: September 14, 2015
    Publication date: March 17, 2016
    Applicant: SENSOR ELECTRONIC TECHNOLOGY, INC.
    Inventors: Alexander Dobrinsky, Michael Shur, Remigijus Gaska
  • Publication number: 20160074547
    Abstract: An ultraviolet (UV) footwear illuminator for footwear treatment is disclosed. In one embodiment, the UV footwear illuminator includes an insert adapted for placement in an article of footwear. At least one UV radiation source is located in the insert and is configured to emit UV radiation in the footwear through a transparent window region formed in the insert. A control unit is configured to control at least one predetermined UV radiation characteristics associated with the radiation emitted from each UV radiation source. A power supply is configured to power each UV radiation source and the control unit.
    Type: Application
    Filed: September 14, 2015
    Publication date: March 17, 2016
    Applicant: Sensor Electronic Technology, Inc.
    Inventors: Alexander Dobrinsky, Michael Shur, Remigijus Gaska
  • Publication number: 20160077278
    Abstract: A solution for fabricating a structure including a light guiding structure is provided. The light guiding structure can be formed of a fluoropolymer-based material and include one or more regions, each of which is filled with a fluid transparent to radiation having a target wavelength, such as ultraviolet radiation. The region(s) can be created using a filler material, which is at least substantially enclosed by the fluoropolymer-based material and subsequently removed from each region. The structure can further include at least one optical element integrated into the light guiding structure.
    Type: Application
    Filed: September 14, 2015
    Publication date: March 17, 2016
    Applicant: SENSOR ELECTRONIC TECHNOLOGY, INC.
    Inventors: Alexander Dobrinsky, Michael Shur, Remigijus Gaska
  • Patent number: 9285656
    Abstract: A system for determining lens position including a first capacitor plate disposed on a stationary housing of a camera. A second capacitor plate is disposed on a rotating lens component of the camera. A processor is operatively connected to the first and second capacitor plates to identify the position of the lens of the camera based on capacitance between the first and second capacitor plates.
    Type: Grant
    Filed: July 8, 2014
    Date of Patent: March 15, 2016
    Assignee: Sensors Unlimited, Inc.
    Inventors: John T. Foster, Michael Delamere, John P. Barby
  • Patent number: 9287449
    Abstract: A device including a first semiconductor layer and a contact to the first semiconductor layer is disclosed. An interface between the first semiconductor layer and the contact includes a first roughness profile having a characteristic height and a characteristic width. The characteristic height can correspond to an average vertical distance between crests and adjacent valleys in the first roughness profile. The characteristic width can correspond to an average lateral distance between the crests and adjacent valleys in the first roughness profile.
    Type: Grant
    Filed: January 9, 2014
    Date of Patent: March 15, 2016
    Assignee: Sensor Electronic Technology, Inc.
    Inventors: Remigijus Gaska, Maxim S. Shatalov, Alexander Lunev, Alexander Dobrinsky, Jinwei Yang, Michael Shur