Patents by Inventor Arne Berneking

Arne Berneking 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).

  • Publication number: 20220128721
    Abstract: A sensor chip includes a plurality of microcells to which an xy position is assigned, composed of a photodiode Dn,m, a current divider Sq,nm, with outputs Sq,v,nm, for the y direction and outputs Sq,h,nm for the x direction, the outputs Sq,h,nm being equipped with a quenching apparatus Rq,h,nm for quenching the current, and the outputs Sq,v,nm being equipped with a quenching apparatus Rq,v,nm for quenching the current, which divides the generated photocurrent of the diodes Dn,m into two equally large fractions. The microcells are arranged in a sequence of N columns in the x direction xn,=x1, x2, x3, . . . xn with n=1, 2, 3, . . . N and M rows in the y direction ym,=y1, y2, y3, . . . ym with m=1, 2, 3, . . . M. Outputs Sq,h,nm of the current dividers Sq,nm for the x direction are connected to the read-out channels ChA and ChB for the x direction.
    Type: Application
    Filed: December 18, 2019
    Publication date: April 28, 2022
    Inventors: Christoph Lerche, Arne Berneking, Nadim Joni Shah
  • Publication number: 20220099769
    Abstract: A magnet arrangement arranged radially around a sample volume generates a changing magnetic field B with a z-direction component A circuit board arrangement (6; 14) is arranged radially within the magnet arrangement and has electrical conductor tracks (7; 12) divided into conductor track sections (10), at least two adjoining ones of which form a structure section (11a, 11b) spanning an area (A1, A2). For each conductor track (7; 12), two structure sections (11a, 11b) respectively form a structure section pair (11), wherein the conductor tracks are arranged on the circuit board arrangement (6; 14) such that equal and opposite voltages and/or currents are induced by a change in the magnetic field B of the magnet arrangement in the two structure sections of each structure section pair. As a result, eddy currents and resultant interference in the circuit board and the components thereof are avoided or at least minimized.
    Type: Application
    Filed: December 13, 2021
    Publication date: March 31, 2022
    Inventors: Arne BERNEKING, Thorsten Greeb
  • Patent number: 11054533
    Abstract: An SiPM sensor chip includes pixels consisting of microcells Z, each pixel being associated with an xy position x1, x2, x3, . . . , xN or y1, y2, y3, . . . yM. A plurality of pixels form a block, and the microcells are connected to output channels for a linear coding.
    Type: Grant
    Filed: June 20, 2017
    Date of Patent: July 6, 2021
    Assignee: FORSCHUNGSZENTRUM JUELICH GMBH
    Inventors: Christoph Lerche, Arne Berneking, Nadim Joni Shah
  • Patent number: 10901056
    Abstract: A hybrid imaging apparatus includes a magnetic resonance imaging (MM) arrangement having an RF resonator structure (1) and a gradient coil system (8) having a longitudinal axis, an emission tomography (ET) arrangement with a detector device having at least one photosensor (3) and one circuit board arrangement with at least one readout circuit board (11) on which an ET electronics is arranged, and an internal shielding device (7) shielding the readout electronics (4) of the ET arrangement and shielding the RF resonator structure of the MRI arrangement. The photosensor is arranged, in relation to the longitudinal axis, radially inside the sensor circuit boards and radially outside the RF resonator structure. The internal shielding device is arranged radially outside the photosensor and/or integrated into the photosensor. This achieves both a compact design and optimized performance of the detection of the MR and ET imaging.
    Type: Grant
    Filed: July 9, 2019
    Date of Patent: January 26, 2021
    Assignee: BRUKER BIOSPIN MRI GMBH
    Inventors: Arne Berneking, Sven Junge
  • Patent number: 10605931
    Abstract: A SiPM sensor chip with a plurality of pixels includes a photodiode; a quench resistor; and a current divider configured to divide the photocurrent of the photodiodes into two currents of equal size. The current divider Sq,nm or Snm lead to networks NS,h,n and NS,V,m, each of which leads to additional current dividers Sh,n and Sv m having coding resistors Rh,A,n and Rh,B,n, and Rv,c,m and Rv D m, which are linearly coded and which lead to output channels A, B, C, D, with these sensor features being integrated into the sensor chip. The networks Ns,h,n and/or NSiVlm each lead to a summation network Oh and/or Ov, in which the signals of the networks Ns,h,n and/or NS,v,m are merged via summation resistors Rs,h,n and Rs,v,m, respectively, and lead to the output channels E and/or F.
    Type: Grant
    Filed: December 2, 2016
    Date of Patent: March 31, 2020
    Assignee: FORSCHUNGSZENTRUM JUELICH GMBH
    Inventors: Christoph Lerche, Arne Berneking, Joni Nadim Shah
  • Patent number: 10539686
    Abstract: A method for photosensor signal processing includes carrying out, by measuring a combination of readout channels of a direction e with linearly increasing and linearly decreasing signal strength, a linear coding in at least one e-direction. The linearly increasing and linearly decreasing signal strengths of readout channels of the direction e, which are respectively used for the linear coding, are multiplied by each other. The linear coding satisfies the following edge condition: Q1(e)=c1·ec2+c3, Q2(e)=c4·ec5+c6, c1=const. ?(0, ?), c4=const. ?(??, 0), c3, c6=const. ?(??, ?), and 0.5<c2; c5<1.5. Q1 denotes the charge of the output channel signal strengths increasing via the e-position, and Q2 denotes the charge of the output channel signal strengths decreasing via the e-position and the coding direction.
    Type: Grant
    Filed: November 10, 2017
    Date of Patent: January 21, 2020
    Assignee: FORSCHUNGSZENTRUM JUELICH GMBH
    Inventors: Christoph Lerche, Arne Berneking, Nadim Joni Shah
  • Publication number: 20200011948
    Abstract: A hybrid imaging apparatus includes a magnetic resonance imaging (MM) arrangement having an RF resonator structure (1) and a gradient coil system (8) having a longitudinal axis, an emission tomography (ET) arrangement with a detector device having at least one photosensor (3) and one circuit board arrangement with at least one readout circuit board (11) on which an ET electronics is arranged, and an internal shielding device (7) shielding the readout electronics (4) of the ET arrangement and shielding the RF resonator structure of the MRI arrangement. The photosensor is arranged, in relation to the longitudinal axis, radially inside the sensor circuit boards and radially outside the RF resonator structure. The internal shielding device is arranged radially outside the photosensor and/or integrated into the photosensor. This achieves both a compact design and optimized performance of the detection of the MR and ET imaging.
    Type: Application
    Filed: July 9, 2019
    Publication date: January 9, 2020
    Inventors: Arne BERNEKING, Sven JUNGE
  • Publication number: 20190339399
    Abstract: A method for photosensor signal processing includes carrying out, by measuring a combination of readout channels of a direction e with linearly increasing and linearly decreasing signal strength, a linear coding in at least one e-direction. The linearly increasing and linearly decreasing signal strengths of readout channels of the direction e, which are respectively used for the linear coding, are multiplied by each other. The linear coding satisfies the following edge condition: Q1(e)=c1·ec2+c3, Q2(e)=c4·ec5+c6, c1=const.?(0, ?), c4=const.?(??, 0), c3, c6=const.?(??, ?), and 0.5<c2?; c5<1.5. Q1 denotes the charge of the output channel signal strengths increasing via the e-position, and Q2 denotes the charge of the output channel signal strengths decreasing via the e-position and the coding direction.
    Type: Application
    Filed: November 10, 2017
    Publication date: November 7, 2019
    Inventors: Christoph LERCHE, Arne BERNEKING, Nadim Joni SHAH
  • Publication number: 20190204461
    Abstract: An SiPM sensor chip includes pixels consisting of microcells Z, each pixel being associated with an xy position x1, x2, x3, . . . , xN or y1, y2, y3, . . . yM. A plurality of pixels form a block, and the microcells are connected to output channels for a linear coding.
    Type: Application
    Filed: June 20, 2017
    Publication date: July 4, 2019
    Inventors: Christoph LERCHE, Arne BERNEKING, Nadim Joni SHAH
  • Publication number: 20180329085
    Abstract: A SiPM sensor chip with a plurality of pixels includes a photodiode; a quench resistor; and a current divider configured to divide the photocurrent of the photodiodes into two currents of equal size. The current divider Sq,nm or Snm lead to networks NS,h,n and NS,V,m, each of which leads to additional current dividers Sh,n and Sv m having coding resistors Rh,A,n and Rh,B,n, and Rv,c,m and Rv D m, which are linearly coded and which lead to output channels A, B, C, D, with these sensor features being integrated into the sensor chip. The networks Ns,h,n and/or NSiVlm each lead to a summation network Oh and/or Ov, in which the signals of the networks Ns,h,n and/or NS,v,m are merged via summation resistors Rs,h,n and Rs,v,m, respectively, and lead to the output channels E and/or F.
    Type: Application
    Filed: December 2, 2016
    Publication date: November 15, 2018
    Inventors: Christoph Lerche, Arne Berneking, Joni Nadim Shah