Patents by Inventor Kevin P. Wallis

Kevin P. Wallis 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: 20220202326
    Abstract: The present disclosure provides redox mediators having two tridentate ligands and analyte sensors comprising such redox mediators. The present disclosure further provides methods of using such analyte sensors for detecting one or more analytes present in a biological sample of a subject.
    Type: Application
    Filed: January 3, 2022
    Publication date: June 30, 2022
    Applicant: ABBOTT DIABETES CARE INC.
    Inventors: John V. LaTour, Kevin P. Wallis, Phu Le, Udo Hoss
  • Publication number: 20170339914
    Abstract: Composite particles and methods for making the same. An absorbent material is formed into a particle. An optional performance-enhancing active is coupled to the absorbent material before, during, or after the particle-forming process, homogeneously and/or in layers. Additionally, the composite absorbent particle may include a core material. Preferred methods for creating the absorbent particles include a pan agglomeration process, a high shear agglomeration process, a low shear agglomeration process, a high pressure agglomeration process, a low pressure agglomeration process, a rotary drum agglomeration process, a mix muller process, a roll press compaction process, a pin mixer process, a batch tumble blending mixer process, an extrusion process, and a fluid bed process.
    Type: Application
    Filed: June 27, 2017
    Publication date: November 30, 2017
    Inventors: Charles F. Fritter, Ananth N. Shenoy, Kevin P. Wallis, Sarah P. Blondeau, Ryan M. Ochylski, Dennis B. Jenkins
  • Publication number: 20160150757
    Abstract: Composite particles and methods for making the same. An absorbent material is formed into a particle. An optional performance-enhancing active is coupled to the absorbent material before, during, or after the particle-forming process, homogeneously and/or in layers. Additionally, the composite absorbent particle may include a core material. Preferred methods for creating the absorbent particles include a pan agglomeration process, a high shear agglomeration process, a low shear agglomeration process, a high pressure agglomeration process, a low pressure agglomeration process, a rotary drum agglomeration process, a mix muller process, a roll press compaction process, a pin mixer process, a batch tumble blending mixer process, an extrusion process, and a fluid bed process.
    Type: Application
    Filed: February 8, 2016
    Publication date: June 2, 2016
    Inventors: Charles F. Frittter, Ananth N. Shenoy, Kevin P. Wallis, Sarah P. Blondeau, Ryan M. Ochylski, Dennis B. Jenkins
  • Patent number: 9283540
    Abstract: Composite particles and methods for making the same. An absorbent material is formed into a particle. An optional performance-enhancing active is coupled to the absorbent material before, during, or after the particle-forming process, homogeneously and/or in layers. Additionally, the composite absorbent particle may include a core material. Preferred methods for creating the absorbent particles include a pan agglomeration process, a high shear agglomeration process, a low shear agglomeration process, a high pressure agglomeration process, a low pressure agglomeration process, a rotary drum agglomeration process, a mix muller process, a roll press compaction process, a pin mixer process, a batch tumble blending mixer process, an extrusion process, and a fluid bed process.
    Type: Grant
    Filed: October 11, 2007
    Date of Patent: March 15, 2016
    Assignee: The Clorox Company
    Inventors: Charles F. Fritter, Ananth N. Shenoy, Kevin P. Wallis, Sarah P. Blondeau, Ryan M. Ochylski, Dennis Jenkins
  • Publication number: 20090007852
    Abstract: Composite particles and methods for making the same. An absorbent material is formed into a particle. An optional performance-enhancing active is coupled to the absorbent material before, during, or after the particle-forming process, homogeneously and/or in layers. Additionally, the composite absorbent particle may include a core material. Preferred methods for creating the absorbent particles include a pan agglomeration process, a high shear agglomeration process, a low shear agglomeration process, a high pressure agglomeration process, a low pressure agglomeration process, a rotary drum agglomeration process, a mix muller process, a roll press compaction process, a pin mixer process, a batch tumble blending mixer process, an extrusion process, and a fluid bed process.
    Type: Application
    Filed: October 30, 2007
    Publication date: January 8, 2009
    Inventors: Charles F. Fritter, Ananth N. Shenoy, Kevin P. Wallis, Sarah P. Blondeau, Ryan M. Ochylski, Dennis Jenkins
  • Publication number: 20080308045
    Abstract: Composite particles and methods for making the same. An absorbent material is formed into a particle. An optional performance-enhancing active is coupled to the absorbent material before, during, or after the particle-forming process, homogeneously and/or in layers. Additionally, the composite absorbent particle may include a core material. Preferred methods for creating the absorbent particles include a pan agglomeration process, a high shear agglomeration process, a low shear agglomeration process, a high pressure agglomeration process, a low pressure agglomeration process, a rotary drum agglomeration process, a mix muller process, a roll press compaction process, a pin mixer process, a batch tumble blending mixer process, an extrusion process, and a fluid bed process.
    Type: Application
    Filed: October 11, 2007
    Publication date: December 18, 2008
    Inventors: Charles F. Fritter, Ananth N. Shenoy, Kevin P. Wallis, Sarah P. Blondeau, Ryan M. Ochylski, Dennis Jenkins