Patents Assigned to CTG ADVANCED MATERIALS, LLC
  • Publication number: 20160251773
    Abstract: This invention includes a system and a method for growing crystals including a batch auto-feeding mechanism. The proposed system and method provide a minimization of compositional segregation effect during crystal growth by controlling growth rate involving a high-temperature flow control system operable in an open and a closed loop crystal growth process. The ability to control the growth rate without corresponding loss of volatilize-able elements enables significantly improvement in compositional homogeneity and a consequent increase in crystal yield. This growth system and method can be operated in production scale, simultaneously for a plurality of growth crucibles to further the reduction of manufacturing costs, particularly for the crystal materials of binary or ternary systems with volatile components, such as Lead (Pb) and Indium (In).
    Type: Application
    Filed: November 16, 2015
    Publication date: September 1, 2016
    Applicant: CTG ADVANCED MATERIALS, LLC
    Inventors: Pengdi HAN, Jian TIAN
  • Publication number: 20160192905
    Abstract: Piezoelectric crystal elements are provided having preferred cut directions that optimize the shear mode piezoelectric properties. In the discovered cut directions, the crystal elements have super-high piezoelectric performance with d15, d24 and d36 shear modes at room temperature. The d15 shear mode crystal gives a maximum d value and is free from the cross-talk of d11 and d16. The d36 mode is extremely reliable compared to other shear elements due to its ready re-poling capability. The crystal elements may be beneficially used for high-sensitive acoustic transducers.
    Type: Application
    Filed: November 16, 2015
    Publication date: July 7, 2016
    Applicant: CTG ADVANCED MATERIALS, LLC
    Inventor: PENGDI HAN
  • Patent number: 9260794
    Abstract: This invention includes a system and a method for growing crystals including a batch auto-feeding mechanism. The proposed system and method provide a minimization of compositional segregation effect during crystal growth by controlling growth rate involving a high-temperature flow control system operable in an open and a closed loop crystal growth process. The ability to control the growth rate without corresponding loss of volatilize-able elements enables significantly improvement in compositional homogeneity and a consequent increase in crystal yield. This growth system and method can be operated in production scale, simultaneously for a plurality of growth crucibles to further the reduction of manufacturing costs, particularly for the crystal materials of binary or ternary systems with volatile components, such as Lead (Pb) and Indium (In).
    Type: Grant
    Filed: April 30, 2014
    Date of Patent: February 16, 2016
    Assignee: CTG ADVANCED MATERIALS, LLC
    Inventors: Pengdi Han, Jian Tian
  • Patent number: 9219223
    Abstract: Preparations of piezoelectric single crystal elements involving the steps of mechanically finishing a single crystal element with select cuttings, coating electrodes on a pair of Z surfaces, poling the single crystal along the <011> axis under a 500V/mm electric field and a product made by the process thereof.
    Type: Grant
    Filed: February 11, 2011
    Date of Patent: December 22, 2015
    Assignee: CTG ADVANCED MATERIALS, LLC
    Inventor: Pengdi Han
  • Publication number: 20150159296
    Abstract: This invention includes a system and a method for growing crystals including a batch auto-feeding mechanism. The proposed system and method provide a minimization of compositional segregation effect during crystal growth by controlling growth rate involving a high-temperature flow control system operable in an open and a closed loop crystal growth process. The ability to control the growth rate without corresponding loss of volatilize-able elements enables significantly improvement in compositional homogeneity and a consequent increase in crystal yield. This growth system and method can be operated in production scale, simultaneously for a plurality of growth crucibles to further the reduction of manufacturing costs, particularly for the crystal materials of binary or ternary systems with volatile components, such as Lead (Pb) and Indium (In).
    Type: Application
    Filed: April 30, 2014
    Publication date: June 11, 2015
    Applicants: H.C. MATERIALS CORPORATION, CTG ADVANCED MATERIALS, LLC
    Inventors: Pengdi HAN, Jian TIAN