Patents Assigned to Zink Imaging, Inc.
  • Patent number: 8866861
    Abstract: The present application is directed to systems and methods for print alignment by a continuous feed printer. A sensor of a printer detects a first line of a pattern on a non-printing side of a printing medium, the pattern comprising two non-parallel lines separated by a predetermined distance at a predetermined position of the printing medium. The printer advances the printing medium a first distance, and the sensor detects a second line of the pattern. The printer identifies a horizontal offset of the printing medium from an expected location of the predetermined position proportional to the difference between the first distance and the predetermined distance.
    Type: Grant
    Filed: March 14, 2013
    Date of Patent: October 21, 2014
    Assignee: Zink Imaging, Inc.
    Inventors: Dana F. Schuh, James Peter Zelten, Suhail S. Saquib
  • Publication number: 20140187418
    Abstract: A multicolor direct thermal imaging method wherein a multicolor image is formed in a thermal imaging member comprising at least first and second different image-forming compositions and a thermal printer for use in practicing the method. Heat is applied to at least the second image-forming composition while the first image-forming composition is at a first baseline temperature (T1) to form an image in at least the second image-forming composition, and heat is applied to at least the first image-forming composition while it is at a second baseline temperature (T2) to form an image in at least the first image-forming composition, wherein T1 is different from T2.
    Type: Application
    Filed: August 6, 2013
    Publication date: July 3, 2014
    Applicant: Zink Imaging, Inc.
    Inventors: Brian D. Busch, Fariza B. Hasan, Chien Liu, Stephen J. Telfer, William T. Vetterling
  • Patent number: 8722574
    Abstract: There are described thermal imaging members and thermal imaging methods utilizing unsymmetrical rhodamine compounds. The rhodamine color-forming compounds exhibit a first color when in a crystalline form and a second color, different from the first color, when in an amorphous form.
    Type: Grant
    Filed: April 27, 2012
    Date of Patent: May 13, 2014
    Assignee: Zink Imaging, Inc.
    Inventors: Michael P Filosa, Stephen J. Telfer, John L Marshall, Richard M Allen, John M Hardin
  • Patent number: 8610750
    Abstract: In one aspect of the invention there is disclosed a multicolor thermal imaging system wherein different heating elements on a thermal print head can print on different color-forming layers of a multicolor thermal imaging member in a single pass. The line-printing time is divided into portions, each of which is divided into a plurality of subintervals. All of the pulses within the portions have the same energy. In one embodiment, every pulse has the same amplitude and duration. Different colors are selected for printing during the different portions by varying the fraction of subintervals that contain pulses. This technique allows multiple colors to be printed using a thermal print head with a single strobe signal line. Pulsing patterns may be chosen to reduce the coincidence of pulses provided to multiple print head elements, thereby reducing the peak power requirements of the print head.
    Type: Grant
    Filed: June 26, 2013
    Date of Patent: December 17, 2013
    Assignee: Zink Imaging, Inc.
    Inventors: Chien Liu, William T. Vetterling
  • Patent number: 8557361
    Abstract: An optical disc is described that bears, on one surface, a plurality of color-forming layers that can form a multicolored image when heated in contact with a thermal print head. The color-forming composition comprises color-forming layers and thermally-insulating spacers and is designed such that warping of the optical disc in conditions of changing temperature and humidity is minimized. The compliance of the color-forming composition is such that intimate contact between the thermal print head and the printable surface of the disc can be maintained as one is translated relative to the other. Methods for assembling such an optical disc are provided.
    Type: Grant
    Filed: February 3, 2011
    Date of Patent: October 15, 2013
    Assignee: Zink Imaging, Inc.
    Inventors: Yulin Hardin, Stephen Robert Herchen, Dana Frederic Schuh, William T. Vetterling, Michael Armour Young, Stephen J. Telfer, Chien Liu
  • Patent number: 8502848
    Abstract: A multicolor direct thermal imaging method wherein a multicolor image is formed in a thermal imaging member comprising at least first and second different image-forming compositions and a thermal printer for use in practicing the method. Heat is applied to at least the second image-forming composition while the first image-forming composition is at a first baseline temperature (T1) to form an image in at least the second image-forming composition, and heat is applied to at least the first image-forming composition while it is at a second baseline temperature (T2) to form an image in at least the first image-forming composition, wherein T1 is different from T2.
    Type: Grant
    Filed: November 29, 2011
    Date of Patent: August 6, 2013
    Assignee: Zink Imaging, Inc.
    Inventors: Brian D. Busch, Fariza B. Hasan, Chien Liu, Stephen J. Telfer, William T. Vetterling
  • Patent number: 8502846
    Abstract: In one aspect of the invention there is disclosed a multicolor thermal imaging system wherein different heating elements on a thermal print head can print on different color-forming layers of a multicolor thermal imaging member in a single pass. The line-printing time is divided into portions, each of which is divided into a plurality of subintervals. All of the pulses within the portions have the same energy. In one embodiment, every pulse has the same amplitude and duration. Different colors are selected for printing during the different portions by varying the fraction of subintervals that contain pulses. This technique allows multiple colors to be printed using a thermal print head with a single strobe signal line. Pulsing patterns may be chosen to reduce the coincidence of pulses provided to multiple print head elements, thereby reducing the peak power requirements of the print head.
    Type: Grant
    Filed: March 19, 2012
    Date of Patent: August 6, 2013
    Assignee: Zink Imaging, Inc.
    Inventors: Chien Liu, William T. Vetterling
  • Patent number: 8377844
    Abstract: Multicolor thermal imaging members are described that comprise color-forming layers that are separated by thermally-insulating layers and can be addressed with a thermal printing head in contact with a surface to form an image. The thermally-insulating layers are designed to be as thin as possible consistent with at least partially independent addressing of the color-forming layers, and are formulated so as not to lead to instabilities either before or after printing or to give rise to dimensional changes of a thermal imaging member when it is subjected to changes in temperature or humidity. Coating compositions for manufacturing such thermally-insulating layers are also provided.
    Type: Grant
    Filed: August 3, 2009
    Date of Patent: February 19, 2013
    Assignee: Zink Imaging, Inc.
    Inventors: John C. Day, John Hardin, Yulin Hardin, Fariza B. Hasan, Stephen Telfer, William T. Vetterling
  • Patent number: 8372782
    Abstract: There are disclosed imaging members wherein a chemical compound in a crystalline form is converted, at least partially, and preferably substantially completely or completely, to an amorphous form that has intrinsically a different color from the crystalline form. Also described are imaging methods utilizing the imaging members. The conversion of the compound from the crystalline form to an amorphous form can be effected by laser exposure.
    Type: Grant
    Filed: October 5, 2009
    Date of Patent: February 12, 2013
    Assignee: Zink Imaging, Inc.
    Inventors: William T. Vetterling, Chien Liu, Suhail Shabbir Saquib, Brian David Busch, Stephen Telfer
  • Patent number: 8345307
    Abstract: Techniques are disclosed for stitching images printed by a multi-head printer in a manner that is relatively insensitive to misregistration of the image segments. When a pair of overlapping print heads print a pair of adjacent image segments which meet in a stitching region, printing at each location in the stitching region is accomplished by both print heads with a weighting that depends on the location being printed within the stitching region. In one embodiment, for example, the output of each print head is weighted by a linear function of horizontal pixel position. Techniques are also disclosed for selecting screening patterns for use when stitching is performed with variable-dot printers. Such screening patterns are selected to minimize variations in density that may arise as the result of cross-web and/or down-web misregistration.
    Type: Grant
    Filed: December 6, 2011
    Date of Patent: January 1, 2013
    Assignee: Zink Imaging, Inc.
    Inventors: Suhail S. Saquib, William T. Vetterling
  • Patent number: 8305408
    Abstract: Devices and methods for thermally printing on a thermal image member are disclosed using a thermal print head and a nonrotating platen. The nonrotating platen is adapted to bias the thermal imaging member against the print head. The nonrotating platen includes an elastic member and a mounting means for securing at least one end of the elastic member with respect to the print head. A portion of the thermal imaging member is placed in a printing nip formed between a thermal print head and the nonrotating platen. The print head exerts a torque on the elastic member when the elastic member biases the imaging member against the print head. The thermal imaging member is translated along a transport direction through the printing nip, such that at least one surface of the imaging member slides across the nonrotating platen. The print head forms an image upon the translated thermal imaging member.
    Type: Grant
    Filed: May 25, 2007
    Date of Patent: November 6, 2012
    Assignee: Zink Imaging, Inc.
    Inventors: Kenneth J. Launie, Leo R. Lechtenberg, Juan C. Van Dijk, William T. Vetterling
  • Patent number: 8164609
    Abstract: In one aspect of the invention there is disclosed a multicolor thermal imaging system wherein different heating elements on a thermal print head can print on different color-forming layers of a multicolor thermal imaging member in a single pass. The line-printing time is divided into portions, each of which is divided into a plurality of subintervals. All of the pulses within the portions have the same energy. In one embodiment, every pulse has the same amplitude and duration. Different colors are selected for printing during the different portions by varying the fraction of subintervals that contain pulses. This technique allows multiple colors to be printed using a thermal print head with a single strobe signal line. Pulsing patterns may be chosen to reduce the coincidence of pulses provided to multiple print head elements, thereby reducing the peak power requirements of the print head.
    Type: Grant
    Filed: November 5, 2010
    Date of Patent: April 24, 2012
    Assignee: Zink Imaging, Inc.
    Inventors: Chien Liu, William T. Vetterling
  • Patent number: 8098269
    Abstract: In one aspect of the invention there is disclosed a multicolor thermal imaging system wherein different heating elements on a thermal print head can print on different color-forming layers of a multicolor thermal imaging member in a single pass. The line-printing time is divided into segments, each of which is divided into a plurality of subintervals. All of the pulses within the segments have the same energy. In one embodiment, every pulse has the same amplitude and duration. Different colors are selected for printing during the different segments by varying the fraction of subintervals that contain pulses. This technique allows multiple colors to be printed using a thermal print head with a single strobe signal line. Pulsing patterns may be chosen to reduce the coincidence of pulses provided to multiple print head elements, thereby reducing the peak power requirements of the print head.
    Type: Grant
    Filed: September 1, 2010
    Date of Patent: January 17, 2012
    Assignee: Zink Imaging, Inc.
    Inventors: Brian Busch, Chien Liu, Stephen J. Telfer, William T. Vetterling, Peter Zelten
  • Patent number: 8077192
    Abstract: The input energies provided to a print head of a thermal printer are adjusted based on the temperature of a platen in the thermal printer. The platen temperature may be measured by a sensor or predicted by a platen temperature model. Such a model may derive the predicted platen temperature from an observed temperature of a heat sink in the thermal printer. A thermal history control algorithm may use the platen temperature, whether actual or predicted, to compensate for the platen temperature by adjusting the input energies.
    Type: Grant
    Filed: January 7, 2008
    Date of Patent: December 13, 2011
    Assignee: ZINK Imaging, Inc.
    Inventors: Suhail S. Saquib, Brian Busch
  • Patent number: 8072644
    Abstract: Techniques are disclosed for stitching images printed by a multi-head printer in a manner that is relatively insensitive to misregistration of the image segments. When a pair of overlapping print heads print a pair of adjacent image segments which meet in a stitching region, printing at each location in the stitching region is accomplished by both print heads with a weighting that depends on the location being printed within the stitching region. In one embodiment, for example, the output of each print head is weighted by a linear function of horizontal pixel position. Techniques are also disclosed for selecting screening patterns for use when stitching is performed with variable-dot printers. Such screening patterns are selected to minimize variations in density that may arise as the result of cross-web and/or down-web misregistration.
    Type: Grant
    Filed: September 1, 2010
    Date of Patent: December 6, 2011
    Assignee: Zink Imaging, Inc.
    Inventors: Suhail S. Saquib, William T. Vetterling
  • Patent number: 8068126
    Abstract: A multicolor direct thermal imaging method wherein a multicolor image is formed in a thermal imaging member comprising at least first and second different image-forming compositions and a thermal printer for use in practicing the method. Heat is applied to at least the second image-forming composition while the first image-forming composition is at a first baseline temperature (T1) to form an image in at least the second image-forming composition, and heat is applied to at least the first image-forming composition while it is at a second baseline temperature (T2) to form an image in at least the first image-forming composition, wherein T1 is different from T2.
    Type: Grant
    Filed: June 30, 2010
    Date of Patent: November 29, 2011
    Assignee: Zink Imaging, Inc.
    Inventors: Brian D. Busch, Fariza B. Hasan, Chien Liu, Stephen J. Telfer, William T. Vetterling
  • Patent number: 8009184
    Abstract: Thermal history control is performed in a thermal printer in which a single thermal print head prints sequentially on multiple color-forming layers in a single pass. Each pixel-printing interval may be divided into segments, each of which may be used to print a different color. The manner in which the input energy to be provided to each print head element is selected may be varied for each of the segments. Different energy computation functions may be used to compute the energy to be provided to the print head in each of the segments based on the predicted print head element temperature at the beginning of the segment, the color to be printed, and the energy that was supplied when printing other colors during the time period between the beginning of the segment of the current pixel-printing interval and the end of the equivalent segment of the previous pixel-printing interval.
    Type: Grant
    Filed: May 19, 2009
    Date of Patent: August 30, 2011
    Assignee: ZINK Imaging, Inc.
    Inventor: Suhail S. Saquib
  • Patent number: 7830405
    Abstract: In one aspect of the invention there is disclosed a multicolor thermal imaging system wherein different heating elements on a thermal print head can print on different color-forming layers of a multicolor thermal imaging member in a single pass. The line-printing time is divided into portions, each of which is divided into a plurality of subintervals. All of the pulses within the portions have the same energy. In one embodiment, every pulse has the same amplitude and duration. Different colors are selected for printing during the different portions by varying the fraction of subintervals that contain pulses. This technique allows multiple colors to be printed using a thermal print head with a single strobe signal line. Pulsing patterns may be chosen to reduce the coincidence of pulses provided to multiple print head elements, thereby reducing the peak power requirements of the print head.
    Type: Grant
    Filed: June 23, 2005
    Date of Patent: November 9, 2010
    Assignee: Zink Imaging, Inc.
    Inventors: Chien Liu, Willilam T. Vetterling
  • Patent number: 7829497
    Abstract: There are described thermal imaging members and thermal imaging methods utilizing unsymmetrical rhodamine compounds. The rhodamine color-forming compounds exhibit a first color when in a crystalline form and a second color, different from the first color, when in an amorphous form.
    Type: Grant
    Filed: May 12, 2006
    Date of Patent: November 9, 2010
    Assignee: Zink Imaging, Inc.
    Inventors: Michael P. Filosa, Stephen J. Telfer, John L. Marshall, Richard M. Allen, John M. Hardin
  • Patent number: 7825945
    Abstract: The present invention provides a thermal printer in which the temperature of the thermal printing head can be modulated by means of an auxiliary heat sink, and methods for printing using such a thermal printer.
    Type: Grant
    Filed: September 17, 2007
    Date of Patent: November 2, 2010
    Assignee: Zink Imaging, Inc.
    Inventors: Brian Busch, Stephen J. Telfer, Juan Carlos Van Dijk, William T. Vetterling, Peter Zelten