Patents Examined by David E Smith
  • Patent number: 11630080
    Abstract: Synchronized ion modification systems and techniques are described. An ion modifier can be used to modify a portion of ions that enter a drift chamber via a gate that controls entry of the ions to the drift chamber. A controller that is communicatively coupled to the ion modifier is configured to control the ion modifier to select a portion of the ion to be modified. In embodiments, the controller selects the portion based on a detector's previous response to other ions that are formed from a sample from which the ions were formed. The other ions, for example, correspond to ions that are associated with a peak in previous operation of a spectrometer.
    Type: Grant
    Filed: October 13, 2020
    Date of Patent: April 18, 2023
    Assignee: Smiths Detection—Watford LTD.
    Inventors: Stephen J. Taylor, Jonathan R. Atkinson
  • Patent number: 11624737
    Abstract: Provided are methods for determining the amount of lacosamide in a sample using mass spectrometry. The methods generally involve ionizing lacosamide in a sample and detecting and quantifying the amount of the ion to determine the amount of lacosamide in the sample.
    Type: Grant
    Filed: June 13, 2022
    Date of Patent: April 11, 2023
    Assignee: Quest Diagnostics Investments Incorporated
    Inventors: Beatrisa Boyadzhyan, Karin Thomassian, Anita Dermartirosian, Lou Jambor
  • Patent number: 11621094
    Abstract: A radiation shielded vault structure includes a rigid outer structure comprising a plurality of rigid structural components that are interconnected at elongated joints to define an interior space. The structural components include a layer of lower atomic number (Z) material such as aluminum alloy and one or more layers of higher atomic number (Z) material titanium and/or tantalum. The vault structure may include radiation shield members extending along the elongated joints to provide radiation shielding at the elongated joints. The shield members comprise a higher atomic number (Z) material such as titanium or tantalum. The rigid structural components may comprise plate members that are interconnected along side edges thereof. End plates may be attached to the plate members to close off the interior space.
    Type: Grant
    Filed: June 22, 2021
    Date of Patent: April 4, 2023
    Assignee: UNITED STATES OF AMERICA AS REPRESENTED BY THE ADMINISTRATOR OF NASA
    Inventors: Donald L. Thomsen, III, William Girard
  • Patent number: 11614399
    Abstract: The present disclosure relates to a system and method for automatic online monitoring of dimethyl sulfide in environment. The method may realize separation of water vapor and the substance to be detected in accordance with the adsorption phase equilibrium principle of substance, thus eliminating the influence of water vapor on detection. The disturbance of other substances in an environmental sample can be eliminated in accordance with the charge or proton transfer principle of molecule ion reaction. Automatic online sampling, preprocessing and sample injection units are configured using valves, numerically controlled motor-driven injectors, flow controllers and a peristaltic pump, so that continuous online detection of DMS in an environmental water sample (e.g., seawater, or lake water) or a gas sample (e.g., atmosphere) can be realized.
    Type: Grant
    Filed: November 30, 2020
    Date of Patent: March 28, 2023
    Inventors: Jun Sun, Liying Peng, Yu Guo, Dai Jia
  • Patent number: 11615951
    Abstract: This disclosure presents inventions for ionization, for example, for use in mass spectrometer devices and methods. In an embodiment, a device is provided for introduction of pulses of a first carrier gas into an ionization chamber and introduction of a second carrier gas into the ionization chamber. Electrodes in the chamber ionize the carrier gas and direct the ionized gas toward a sample for analysis. The second carrier gas can either assist in washing out the first carrier gas or may become ionized along with the first carrier gas to improve ionization of an analyte. In an embodiment, a method for producing ionized carrier gasses is provided.
    Type: Grant
    Filed: March 30, 2022
    Date of Patent: March 28, 2023
    Assignee: IonSense, Inc.
    Inventors: Scott Oro, Brian Musselman
  • Patent number: 11612670
    Abstract: Apparatus, methods and instructions for disinfecting air. The apparatus may include, and the methods may involve, a fixture. The fixture may include a germicidal light source. The fixture may include a fan. The fan may circulate air through a volume into which the germicidal light source propagates germicidal light. The light source may be configured to emit, upward from a horizontal plane, a beam that, absent reflection off an environmental object, does not cross the horizontal plane. The apparatus may include a shield that prevents light from the light source from crossing the horizontal plane. The sensor may face upward from the horizontal plane. The sensor may face downward from the horizontal plane.
    Type: Grant
    Filed: February 17, 2022
    Date of Patent: March 28, 2023
    Assignee: Wangs Alliance Corporation
    Inventors: Shelley S. Wald, Voravit Puvanakijjakorn, Rong Feng Yu, David Xin Wang, Li Changyong, Zhou Tingting
  • Patent number: 11610758
    Abstract: A collimated electron beam is illuminated to a grounded metal mask such that patterns on the mask can be transferred to a substrate identically. In a preferred embodiment, a linear electron source can be provided for enhancing lithographic throughput. The metal mask is adjacent to the substrate, but does not contact with substrate.
    Type: Grant
    Filed: January 15, 2020
    Date of Patent: March 21, 2023
    Assignee: KKT HOLDINGS SYNDICATE
    Inventors: Tzu-Yi Kuo, Yu-Kuang Tseng
  • Patent number: 11611848
    Abstract: Provided herein are methods and systems for verifying a path in a monitored space, comprising transmitting a device identification (ID) of the mobile wireless device while the mobile wireless device moves through a monitored space, receiving one or more location certificates transmitted, in response to reception of the device ID, by one or more wireless transceivers deployed at a predefined location in the monitored space and having a limited transmission range, each location certificate comprising at least the device ID and a transceiver ID of the respective wireless transceiver, storing the one or more location certificates, and transmitting the one or more location certificates to one or more verification units configured to verify a path of the mobile wireless device in the monitored space estimated according to the predefined location of the one or more wireless transceivers identified by the transceiver ID extracted from the one or more location certificates.
    Type: Grant
    Filed: June 18, 2020
    Date of Patent: March 21, 2023
    Assignee: NEC Corporation Of America
    Inventor: Tsvi Lev
  • Patent number: 11605532
    Abstract: The invention relates to a method for, in an ion guide (10), modulating a stream of ions according to a modulation function, wherein the stream of ions includes at least N different ion species, wherein N is at least 1. This ion guide (10) forms an ion guide path, wherein the ions of the stream of ions are conveyed along the ion guide path in a conveying direction to form the stream of ions. The ion guide (10) includes an ion gate (12) arranged at an ion gate position on the ion guide path, wherein the ion gate (12) is adapted to provide an open state for allowing the ions passing the ion gate position when being conveyed along the ion guide path and a closed state for preventing the ions from passing the ion gate position.
    Type: Grant
    Filed: May 27, 2021
    Date of Patent: March 14, 2023
    Assignee: TOFWERK AG
    Inventors: Stephan Graf, Michael Kamrath, Sebastian Gerber
  • Patent number: 11605523
    Abstract: Aberration corrector includes a lower electrode substrate to be formed therein with plural first passage holes having a first hole diameter and making multiple electron beams pass therethrough, and to be arranged thereon plural electrode sets each being plural electrodes of four or more poles, surrounding a first passage hole, for each of the plural first passage holes, and an upper electrode substrate above the lower one, to be formed therein with plural second passage holes making multiple electron beams pass therethrough, whose size from the top of the upper electrode substrate to the middle of way to the back side of the upper electrode substrate is a second hole diameter, and whose size from the middle to the back side is a third hole diameter larger than each of the first and second hole diameters, wherein a shield electrode is on inner walls of plural second passage holes.
    Type: Grant
    Filed: May 21, 2020
    Date of Patent: March 14, 2023
    Assignee: NuFlare Technology, Inc.
    Inventors: Kazuhiko Inoue, Munehiro Ogasawara
  • Patent number: 11600483
    Abstract: A method of carrying out mass spectrometry, comprising: using an electrostatic or electrodynamic ion trap to contain a plurality of ions, each ion having a mass to charge ratio, the ions having a first plurality of mass to charge ratios, each ion following a path within the electrostatic or electrodynamic ion trap having a radius; and for each of a second plurality of the mass to charge ratios: modulating the radii of the ions in a mass to charge ratio-dependent fashion dependent upon the mass to charge ratio; fragmenting the ions thus modulated in a radius-dependent fashion; and determining a mass spectrum of the ions.
    Type: Grant
    Filed: September 12, 2017
    Date of Patent: March 7, 2023
    Assignee: The University Of Warwick
    Inventors: Peter O'Connor, Maria A. Van Agthoven
  • Patent number: 11600480
    Abstract: A mass spectrometry method comprises: receiving a stream of ions at an inlet end of an ion transport device; accumulating a first portion of the ion stream at a first electrical potential well at a first position within the ion transport device between the inlet and outlet ends; creating a generally descending potential profile within the ion transport apparatus between a second position and the outlet end and, simultaneously, creating a second potential well at a third position within the ion transport apparatus, the second position disposed between the first position and the inlet end, the third position disposed between the second position and the inlet end; and transporting the accumulated first portion of the ion stream from the first position to the outlet end under the impetus of the generally descending potential profile and, simultaneously, accumulating a second portion of the ion stream at the second potential well.
    Type: Grant
    Filed: September 22, 2020
    Date of Patent: March 7, 2023
    Assignee: Thermo Finnigan LLC
    Inventors: Pablo Nieto Ramos, Mikhail V. Ugarov
  • Patent number: 11594408
    Abstract: The invention generally relates to systems and methods for conducting reactions and screening for reaction products.
    Type: Grant
    Filed: May 16, 2022
    Date of Patent: February 28, 2023
    Assignee: Purdue Research Foundation
    Inventor: Robert Graham Cooks
  • Patent number: 11594395
    Abstract: Detectors and detection systems are disclosed. According to certain embodiments, a detector comprises a substrate comprising a plurality of sensing elements including a first sensing element and a second sensing element, wherein at least the first sensing element is formed in a triangular shape. The detector may include a switching region configured to connect the first sensing 5 element and the second sensing element. There may also be provided a plurality of sections including a first section connecting a first plurality of sensing elements to a first output and a second section connecting a second plurality of sensing elements to a second output. The section may be provided in a hexagonal shape.
    Type: Grant
    Filed: March 21, 2019
    Date of Patent: February 28, 2023
    Assignee: ASML Netherlands B.V.
    Inventors: Yongxin Wang, Zhonghua Dong
  • Patent number: 11594405
    Abstract: A CDMS may include an ELIT having a charge detection cylinder (CD), a charge generator for generating a high frequency charge (HFC), a charge sensitive preamplifier (CP) having an input coupled to the CD and an output configured to produce a charge detection signal (CHD) in response to a charge induced on the CD, and a processor configured to (a) control the charge generator to induce an HFC on the CD, (b) control operation of the ELIT to cause a trapped ion to oscillate back and forth through the CD each time inducing a charge thereon, and (c) process CHD to (i) determine a gain factor as a function of the HFC induced on the CD, and (ii) modify a magnitude of the portion of CHD resulting from the charge induced on the CD by the trapped ion passing therethrough as a function of the gain factor.
    Type: Grant
    Filed: September 8, 2021
    Date of Patent: February 28, 2023
    Assignee: The Trustees Of Indiana University
    Inventors: Martin F. Jarrold, Andrew W. Alexander, Aaron R. Todd
  • Patent number: 11587778
    Abstract: Provided herein are approaches for performing electrodynamic mass analysis with a radio frequency (RF) biased ion source to reduce ion beam energy spread. In some embodiments, a system may include an ion source including a power supply, the ion source operable to generate a plasma within a chamber housing, and an extraction power assembly including a first power supply and a second power supply electrically coupled with the chamber housing of the ion source, wherein the first power supply and the second power supply are operable to bias the chamber housing of the ion source with a time modulated voltage to extract an ion beam from the ion source. The system may further include an electrodynamic mass analysis (EDMA) assembly operable to receive the ion beam and perform mass analysis on the ion beam.
    Type: Grant
    Filed: November 3, 2020
    Date of Patent: February 21, 2023
    Assignee: Applied Materials, Inc.
    Inventors: Alexandre Likhanskii, Joseph C. Olson, Frank Sinclair, Peter F. Kurunczi
  • Patent number: 11587763
    Abstract: A substrate processing system includes a substrate processing apparatus and a switching timing creation support device, wherein the switching timing creation support device includes: an acquisition part configured to acquire, for each of a plurality of properties of particles contained in a gas in the substrate processing apparatus during a processing for a substrate, a measured value of an amount of the particles from a measuring device; a selection part configured to select properties of a predetermined number of the particles in descending order of temporal variations in the amount of the particles; a determination part configured to determine an operation expression and a switching condition for determining a switching timing based on a temporal change in the amount of the particles for each of the selected properties of the particles; and an output part configured to output the operation expression and the switching condition to the substrate processing apparatus.
    Type: Grant
    Filed: February 25, 2021
    Date of Patent: February 21, 2023
    Assignee: TOKYO ELECTRON LIMITED
    Inventor: Takeshi Akimoto
  • Patent number: 11587775
    Abstract: An ion detector according to this embodiment has a structure for reducing influences of signal reflection or the like on an output signal. The ion detector comprises an electron multiplier, a signal output unit, a signal output terminal, and an AC coupler. The AC coupler is disposed on a signal line between the signal output unit and the signal output terminal, including a resin sheet and a pair of conductive sections facing each other with the resin sheet interposed therebetween. One conductive section is electrically connected to an output terminal of the signal output unit, and the other conductive section is electrically connected to the signal output terminal.
    Type: Grant
    Filed: May 19, 2020
    Date of Patent: February 21, 2023
    Assignee: HAMAMATSU PHOTONICS K.K.
    Inventors: Hiroshi Kobayashi, Sayaka Takatsuka, Yuuya Washiyama, Yuto Yanagihara
  • Patent number: 11587762
    Abstract: The invention relates to a device and method for determining a property of a sample that is to be used in a charged particle microscope. The sample comprises a specimen embedded within a matrix layer. The device comprises a light source arranged for directing a beam of light towards said sample, and a detector arranged for detecting light emitted from said sample in response to said beam of light being incident on said sample. Finally, the device comprises a controller that is connected to said detector and arranged for determining a property of said matrix layer based on signals received by said detector.
    Type: Grant
    Filed: February 5, 2021
    Date of Patent: February 21, 2023
    Assignee: FEI Company
    Inventors: Maarten Kuijper, Matthijn Robert-Jan Vos, Ondrej Ludmil Shànël, Peet Goedendorp
  • Patent number: 11587780
    Abstract: Provided is a time-of-flight mass spectrometer including: a loop-orbit defining electrode (21) including an outer electrode (211) and inner electrode (212) located on the outside and inside of a loop orbit, respectively; an ion inlet (22); an ion outlet (23) provided in either the outer or inner electrode; a loop-flight voltage applier (28) configured to apply loop-flight voltages to the outer and inner electrodes, respectively; a set of deflecting electrodes (24) facing each other across a section of an n-th loop orbit, where n is a predetermined number, the deflecting electrodes including a first portion (241) which faces the n-th loop orbit and a second portion (242) which includes other portions; and a voltage applier (29) configured to apply deflecting voltages to the first portion so as to reverse the drifting direction of the ions flying in the n-th loop orbit, and a voltage to the second portion so as to create the loop-flight electric field.
    Type: Grant
    Filed: September 3, 2021
    Date of Patent: February 21, 2023
    Assignee: SHIMADZU CORPORATION
    Inventors: Yusuke Tateishi, Hiroyuki Miura, Hideaki Izumi