Patents by Inventor Dennis M. Diehl

Dennis M. Diehl 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).

  • Patent number: 7751734
    Abstract: A marking engine forms one or more toned patches and/or images on a photoreceptor transfer device such as a photoreceptor belt or drum, either within or outside a main image area. A sensor illuminates the tones patches and/or images on the photoreceptor transfer device using wavelengths outside the photo response range of the photoreceptor transfer device, thereby allowing reflectance values for each toned patch and/or image to be measured without generating ghost images on the photoreceptor transfer device. The sensor supports collection of measured reflectance values from single-color, mixed-color; and multi-separation image-on-image toned patches and/or images directly from the photoreceptor transfer device at rates as high as one or more times per revolution of the photoreceptor transfer device. The measured reflectance values may be used to generate and/or update color stabilization tone reproduction curves.
    Type: Grant
    Filed: September 26, 2006
    Date of Patent: July 6, 2010
    Assignee: Xerox Corporation
    Inventors: Lalit K. Mestha, Tonya L. Love, Daniel A. Robbins, Dennis M. Diehl
  • Patent number: 7684082
    Abstract: An algorithmic method is identified for compensating for thermochromaticity errors in insitu spectral color measurements of a color printing device. A difference is mapped between spectral measurements of a printed color generated by the color printing device measured at a first or hot temperature and at a second or cool ambient temperature where the mapping comprises a referenceable characteristic of the color printing device. The spectrophotometric measurement of a hot color is compared with colors obtained with thermochromaticity compensation matrix to assess if the measured color corresponds to the desired color which will result when cooled to ambient temperature.
    Type: Grant
    Filed: April 19, 2007
    Date of Patent: March 23, 2010
    Assignee: Xerox Corporation
    Inventors: Lalit Keshav Mestha, Tonya L. Love, Dennis M. Diehl, Daniel A. Robbins
  • Publication number: 20080259374
    Abstract: An alogrithmic method is identified for compensating for thermochromaticity errors in insitu spectral color measurements of a color printing device. A difference is mapped between spectral measurements of a printed color generated by the color printing device measured at a first or hot temperature and at a second or cool ambient temperature where the mapping comprises a referenceable characteristic of the color printing device. The spectrophotometric measurement of a hot color is compared with colors obtained with thermochromaticity compensation matrix to assess if the measured color corresponds to the desired color which will result when cooled to ambient temperature.
    Type: Application
    Filed: April 19, 2007
    Publication date: October 23, 2008
    Inventors: Lalit Keshav Mestha, Tonya L. Love, Dennis M. Diehl, Daniel A. Robbins
  • Publication number: 20080075492
    Abstract: A marking engine forms one ore more toned patches and/or images on a photoreceptor transfer device such as a photoreceptor belt or drum, either within or outside a main image area. A sensor illuminates the tones patches and/or images on the photoreceptor transfer device using wavelegths outside the photo response range of the photoreceptor transfer device, thereby allowing reflectance values for each toned patch and/or image to be measured without generating ghost images on the photoreceptor transfer device. The sensor supports collection of measured reflectance values from single-color, mixed-color; and multi-separation image-on-image toned patches and/or images directly from the photoreceptor transfer device at rates as high as one or more times per revolution of the photoreceptor transfer device. The measured reflectance values may be used to generate and/or update color stabilization tone reproduction curves.
    Type: Application
    Filed: September 26, 2006
    Publication date: March 27, 2008
    Applicant: XEROX CORPORATION
    Inventors: Lalit K. MESTHA, Tonya L. LOVE, Daniel A. ROBBINS, Dennis M. DIEHL
  • Patent number: 6639669
    Abstract: In a color analysis method in which sheets with multiple different color printed test patches are moved relative to a color analyzing spectrophotometer, and in which fiducial marks are printed adjacent to respective test patches and optically detected by a fiducial mark detector to provide a triggering system for the respective test patch analysis, there is provided automatic diagnostic testing of the spectrophotometer and the fiducial mark triggering system, including automatically generating special test sheets, some of which may include test areas of varying density black.
    Type: Grant
    Filed: September 10, 2001
    Date of Patent: October 28, 2003
    Assignee: Xerox Corporation
    Inventors: Fred F. Hubble, III, Tonya L. Love, Lalit K. Mestha, Gary W. Skinner, Dennis M. Diehl, Robert E. Grace, Eric Jackson, Yao Rong Wang
  • Publication number: 20030063275
    Abstract: In a color analysis system in which sheets with multiple different color printed test patches are moved relative to a color analyzing spectrophotometer, and in which fiducial marks are printed adjacent to respective test patches and optically detected by a fiducial mark detector to provide a triggering system for the respective test patch analysis, there is provided automatic diagnostic testing of the spectrophotometer and the fiducial mark triggering system, including automatically generating special test sheets, some of which may include test areas of varying density black.
    Type: Application
    Filed: September 10, 2001
    Publication date: April 3, 2003
    Applicant: Xerox Corporation
    Inventors: Fred F. Hubble, Tanya L. Love, Lalit K. Mestha, Gary W. Skinner, Dennis M. Diehl, Robert E. Grace, Eric Jackson, Yao Rong Wang