Patents by Inventor Craig A. Herb

Craig A. Herb 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: 9310661
    Abstract: An electrophoretic medium comprises an electrophoretic layer, a layer of lamination adhesive and a polymeric layer disposed between the electrophoretic layer and the lamination adhesive layer, the polymeric layer being impermeable to the fluid. A second form of electrophoretic medium has a layer of a complex of an alkali metal and a polymer in contact with the electrophoretic layer. A third form of electrophoretic medium comprises a plurality of discrete droplets of internal phase in a binder, and further comprises a salt.
    Type: Grant
    Filed: October 15, 2010
    Date of Patent: April 12, 2016
    Assignee: E Ink Corporation
    Inventors: Bin Wu, Charles Howie Honeyman, Stephen P. Dudek, Anthony Zalesky, Richard J. Paolini, Jr., Craig A. Herb, George G. Harris
  • Publication number: 20160085132
    Abstract: An electrophoretic medium comprises a fluid, a first, light scattering particle (typically white) and second, third and fourth particles having three subtractive primary colors (typically magenta, cyan and yellow); at least two of these colored particles being non-light scattering. The first and second particles bear polymer coatings such that the electric field required to separate an aggregate formed by the third and the fourth particles is greater than that required to separate an aggregate formed from any other two types of particles. Methods for driving the medium to produce white, black, magenta, cyan, yellow, red, green and blue colors are also described.
    Type: Application
    Filed: September 10, 2015
    Publication date: March 24, 2016
    Inventors: Stephen J. Telfer, Stephen Bull, Jennifer M. Morrison, Luke M. Slominski, David Darrell Miller, Olga Vladimirovna Barykina-Tassa, Christopher L. Hoogeboom, Ana L. Lattes, Lee Yezek, Brandon MaCDonald, Kosta Ladavac, Craig A. Herb
  • Publication number: 20150002178
    Abstract: The present disclosure provides a method and an apparatus for measuring electrical conductivity of liquids. In one aspect, the apparatus includes a waveform generator module configured to generate a first waveform signal and to supply the first waveform signal to a sensor; a phase adjustment module configured to receive the first waveform signal from the waveform generator module and to generate a phase-shifted signal from the first waveform signal, said phase-shifted signal having a phase that is adjusted based upon expected or measured properties of the liquid and further adjusted to eliminate phase error induced inaccuracies in the measurement; and a signal combination module configured to receive a return signal from the sensor and the phase-shifted signal from the phase adjustment module and to sum the return signal and the phase-shifted signal to produce an adjusted return signal containing information associated with the electrical property of the liquid.
    Type: Application
    Filed: March 12, 2014
    Publication date: January 1, 2015
    Inventors: Glenn T. Herb, Craig A. Herb, Curt W. Jarva
  • Publication number: 20140340430
    Abstract: An electrophoretic medium comprises a fluid and at least one species of particles disposed, When a first addressing impulse is applied to the medium, the first species of particles move in one direction relative to the electric field, but when a second addressing impulse, larger than the first addressing impulse, is applied to the medium, the first species of particles move in the opposed direction relative to the electric field.
    Type: Application
    Filed: May 14, 2014
    Publication date: November 20, 2014
    Inventors: Stephen J. Telfer, Stephen Bull, Alain Bouchard, Craig A. Herb, JR., Kosta Ladavac, Ana L. Lattes, Jennifer M. Morrison, Richard J. Paolini, JR., Michael Thomas Regan, Luke M. Slominski, Lee Yezek, Kenneth R. Crounse, J. Ryan Kruse, Christopher L. Hoogeboom, Jason D. Feick, David Darrell Miller
  • Publication number: 20140055841
    Abstract: An electro-optic display comprising at least two separate layers of electro-optic material, with one of these layers being capable of displaying at least one optical state which cannot be displayed by the other layer. The display is driven by a single set of electrodes between which both layers are sandwiched, the two layers being controllable at least partially independently of one another. Another form of the invention uses three different types of particles within a single electrophoretic layer, with the three types of particles being arranged to shutter independently of one another.
    Type: Application
    Filed: November 4, 2013
    Publication date: February 27, 2014
    Applicant: E INK CORPORATION
    Inventors: Stephen J. Telfer, Richard J. Paolini, JR., Sunil Krishna Sainis, Randall M. Hill, Isaac W. Moran, Lee Yezek, Alain Bouchard, William Vetterling, George G. Harris, Hywel Morgan, Luke Slominski, Jay William Anseth, Jennifer Quimby, Craig A. Herb
  • Patent number: 8576476
    Abstract: An electro-optic display comprising at least two separate layers of electro-optic material, with one of these layers being capable of displaying at least one optical state which cannot be displayed by the other layer. The display is driven by a single set of electrodes between which both layers are sandwiched, the two layers being controllable at least partially independently of one another. Another form of the invention uses three different types of particles within a single electrophoretic layer, with the three types of particles being arranged to shutter independently of one another.
    Type: Grant
    Filed: May 23, 2011
    Date of Patent: November 5, 2013
    Assignee: E Ink Corporation
    Inventors: Stephen J. Telfer, Richard J. Paolini, Jr., Sunil Krishna Sainis, Randall M. Hill, Isaac W. Moran, Lee Yezek, Alain Bouchard, William Vetterling, George G. Harris, Hywel Morgan, Luke Slominski, Jay William Anseth, Jennifer Quimby, Craig A. Herb
  • Patent number: 8115729
    Abstract: The invention relates to methods and materials for controlling stability and color intensity in an electrophoretic display element. Filler particles in the electrophoretic display element, serves as a medium that the electrophoretic particles must travel through during switching between optical states of the display. The filler particles provide improved control over the color intensity of the electrophoretic display element. In addition, the filler particles create resistance to the migration of the electrophoretic particles, thereby improving the bistability of the electrophoretic displays and inhibiting settling of the electrophoretic particles. Also, migration resistance provided by the filler particles can enable threshold addressing of an electrophoretic display.
    Type: Grant
    Filed: March 16, 2006
    Date of Patent: February 14, 2012
    Assignee: E Ink Corporation
    Inventors: Guy M. Danner, Karl R. Amundson, Craig Herb, Libing Zhang
  • Publication number: 20120008188
    Abstract: An electro-optic display comprising at least two separate layers of electro-optic material, with one of these layers being capable of displaying at least one optical state which cannot be displayed by the other layer. The display is driven by a single set of electrodes between which both layers are sandwiched, the two layers being controllable at least partially independently of one another. Another form of the invention uses three different types of particles within a single electrophoretic layer, with the three types of particles being arranged to shutter independently of one another.
    Type: Application
    Filed: May 23, 2011
    Publication date: January 12, 2012
    Applicant: E INK CORPORATION
    Inventors: Stephen J. Telfer, Richard J. Paolini, JR., Sunil Krishna Sainis, Randall M. Hill, Isaac W. Moran, Lee Yezek, Alain Bouchard, William Vetterling, George G. Harris, Hywel Morgan, Luke Slominski, Jay William Anseth, Jennifer Quimby, Craig A. Herb
  • Patent number: 7910175
    Abstract: A coating of an encapsulated electrophoretic medium is formed on a substrate (106) by dispersing in a fluid (104) a plurality of electrophoretic capsules (102), contacting at least a portion of a substrate (106) with the fluid (104); and applying a potential difference between at least a part of the portion of the substrate (106) contacting the fluid (104) and a counter-electrode (110) in electrical contact with the fluid (104), thereby causing capsules (102) to be deposited upon at least part of the portion of the substrate (106) contacting the fluid (102). Patterned coatings of capsules containing different colors may be deposited in registration with electrodes using multiple capsule deposition steps. Alternatively, patterned coatings of capsules may be formed by applying a fluid form of an electrophoretic medium to a substrate, and applying a temporally varying voltage between an electrode and the substrate. The process may be repeated to allow for deposition of full color displays.
    Type: Grant
    Filed: August 3, 2007
    Date of Patent: March 22, 2011
    Assignee: E Ink Corporation
    Inventors: Richard M. Webber, Thomas H. Whitesides, Craig A. Herb, Guy M. Danner, Charles Howie Honeyman, Michael D. McCreary, Shamus Ford Patry, Richard J. Paolini, Jr., Michael D. Walls, Stephen P. Dudek
  • Publication number: 20110026101
    Abstract: An electrophoretic medium comprises an electrophoretic layer, a layer of lamination adhesive and a polymeric layer disposed between the electrophoretic layer and the lamination adhesive layer, the polymeric layer being impermeable to the fluid. A second form of electrophoretic medium has a layer of a complex of an alkali metal and a polymer in contact with the electrophoretic layer. A third form of electrophoretic medium comprises a plurality of discrete droplets of internal phase in a binder, and further comprises a salt.
    Type: Application
    Filed: October 15, 2010
    Publication date: February 3, 2011
    Applicant: E INK CORPORATION
    Inventors: Bin Wu, Charles Howie Honeyman, George G. Harris, Stephen P. Dudek, Anthony Zalesky, Richard J. Paolini, JR., Craig A. Herb
  • Patent number: 7826129
    Abstract: An electrophoretic medium comprises an electrophoretic layer, a layer of lamination adhesive and a polymeric layer disposed between the electrophoretic layer and the lamination adhesive layer, the polymeric layer being impermeable to the fluid. A second form of electrophoretic medium has a layer of a complex of an alkali metal and a polymer in contact with the electrophoretic layer. A third form of electrophoretic medium comprises a plurality of discrete droplets of internal phase in a binder, and further comprises a salt.
    Type: Grant
    Filed: March 6, 2008
    Date of Patent: November 2, 2010
    Assignee: E Ink Corporation
    Inventors: Bin Wu, Charles Howie Honeyman, George G. Harris, Stephen P. Dudek, Anthony Zalesky, Richard J. Paolini, Jr., Craig A. Herb
  • Publication number: 20100163623
    Abstract: Presented are compositions that when applied in a spatial manner so as to encode information, can remotely detected. Such compositions have liquid properties that make them adaptable to delivery by means such as a jet or needle injector. Instant compositions comprise a particulate material, a suspending agent, and a dispersing agent. Also taught are readable codes made by such compositions, and methods of applying such compositions.
    Type: Application
    Filed: September 25, 2007
    Publication date: July 1, 2010
    Inventors: Ramos Mays, Craig Herb
  • Patent number: 7679814
    Abstract: The image stability of electrophoretic media, comprising a plurality of particles disposed in a fluid and capable of moving through the fluid upon application of an electric field to the medium, can be improved by including in the fluid either a polystyrene or an aggregating diblock copolymer which forms micelle-like structures in the fluid, the diblock copolymer having a first block soluble in the fluid and a second block not swellable by the fluid. In variable transmission electrophoretic media, haze can be reduced by using as the fluid a mixture of a partially hydrogenated aromatic hydrocarbon and a terpene.
    Type: Grant
    Filed: January 23, 2007
    Date of Patent: March 16, 2010
    Assignee: E Ink Corporation
    Inventors: Richard J. Paolini, Jr., George G. Harris, Charles Howie Honeyman, Craig A. Herb, Richard M. Webber, Thomas H. Whitesides
  • Publication number: 20090109519
    Abstract: An electrophoretic medium comprises an electrophoretic layer, a layer of lamination adhesive and a polymeric layer disposed between the electrophoretic layer and the lamination adhesive layer, the polymeric layer being impermeable to the fluid. A second form of electrophoretic medium has a layer of a complex of an alkali metal and a polymer in contact with the electrophoretic layer. A third form of electrophoretic medium comprises a plurality of discrete droplets of internal phase in a binder, and further comprises a salt.
    Type: Application
    Filed: March 6, 2008
    Publication date: April 30, 2009
    Applicant: E Ink Corporation
    Inventors: Bin Wu, Charles Howie Honeyman, George G. Harris, Stephen P. Dudek, Anthony Zalesky, Richard J. Paolini, Jr., Craig A. Herb
  • Patent number: 7411720
    Abstract: In electrophoretic media, it is advantageous to use pigment particles having about 1 to 15 per cent by weight of a polymer chemically bonded to, or cross-linked around, the pigment particles. The polymer desirably has a branched chain structure with side chains extending from a main chain. Charged or chargeable groups can be incorporated into the polymer or can be bonded to the particles separately from the polymer. The polymer-coated particles can be prepared by first attaching a polymerizable or polymerization-initiating group to the particle and then reacting the particle with one or more polymerizable monomers or oligomers.
    Type: Grant
    Filed: February 9, 2007
    Date of Patent: August 12, 2008
    Assignee: E Ink Corporation
    Inventors: Charles Howie Honeyman, Elizabeth Moran Gates, Libing Zhang, Anthony Edward Pullen, Emily J. Pratt, Kimberly L. Houde, Matthew A. King, Craig A. Herb, Richard J. Paolini, Jr.
  • Patent number: 7339715
    Abstract: A coating of an encapsulated electrophoretic medium is formed on a substrate (106) by dispersing in a fluid (104) a plurality of electrophoretic capsules (102), contacting at least a portion of a substrate (106) with the fluid (104); and applying a potential difference between at least a part of the portion of the substrate (106) contacting the fluid (104) and a counter-electrode (110) in electrical contact with the fluid (104), thereby causing capsules (102) to be deposited upon at least part of the portion of the substrate (106) contacting the fluid (102). Patterned coatings of capsules containing different colors may be deposited in registration with electrodes using multiple capsule deposition steps. Alternatively, a patterned coating may be deposited upon a substrate containing a conductive layer by varying the conductivity of the conductive layer by radiation exposure or by coating portions of the conductive layer with an insulating layer, typically a photoresist.
    Type: Grant
    Filed: March 24, 2004
    Date of Patent: March 4, 2008
    Assignee: E Ink Corporation
    Inventors: Richard M. Webber, Thomas H. Whitesides, Guy M. Danner, Craig A. Herb, Charles H. Honeyman, Michael McCreary
  • Publication number: 20080023332
    Abstract: A coating of an encapsulated electrophoretic medium is formed on a substrate (106) by dispersing in a fluid (104) a plurality of electrophoretic capsules (102), contacting at least a portion of a substrate (106) with the fluid (104); and applying a potential difference between at least a part of the portion of the substrate (106) contacting the fluid (104) and a counter-electrode (110) in electrical contact with the fluid (104), thereby causing capsules (102) to be deposited upon at least part of the portion of the substrate (106) contacting the fluid (102). Patterned coatings of capsules containing different colors may be deposited in registration with electrodes using multiple capsule deposition steps. Alternatively, patterned coatings of capsules may be formed by applying a fluid form of an electrophoretic medium to a substrate, and applying a temporally varying voltage between an electrode and the substrate. The process may be repeated to allow for deposition of full color displays.
    Type: Application
    Filed: August 3, 2007
    Publication date: January 31, 2008
    Applicant: E INK CORPORATION
    Inventors: Richard Webber, Thomas Whitesides, Craig Herb, Guy Danner, Charles Honeyman, Michael McCreary, Shamus Patry, Richard Paolini, Michael Walls, Stephen Dudek
  • Publication number: 20070146310
    Abstract: The image stability of electrophoretic media, comprising a plurality of particles disposed in a fluid and capable of moving through the fluid upon application of an electric field to the medium, can be improved by including in the fluid either a polystyrene or an aggregating diblock copolymer which forms micelle-like structures in the fluid, the diblock copolymer having a first block soluble in the fluid and a second block not swellable by the fluid. In variable transmission electrophoretic media, haze can be reduced by using as the fluid a mixture of a partially hydrogenated aromatic hydrocarbon and a terpene.
    Type: Application
    Filed: January 23, 2007
    Publication date: June 28, 2007
    Applicant: E INK CORPORATION
    Inventors: Richard Paolini, George Harris, Charles Honeyman, Craig Herb, Richard Webber, Thomas Whitesides
  • Publication number: 20070128352
    Abstract: In electrophoretic media, it is advantageous to use pigment particles having about 1 to 15 per cent by weight of a polymer chemically bonded to, or cross-linked around, the pigment particles. The polymer desirably has a branched chain structure with side chains extending from a main chain. Charged or chargeable groups can be incorporated into the polymer or can be bonded to the particles separately from the polymer. The polymer-coated particles can be prepared by first attaching a polymerizable or polymerization-initiating group to the particle and then reacting the particle with one or more polymerizable monomers or oligomers.
    Type: Application
    Filed: February 9, 2007
    Publication date: June 7, 2007
    Applicant: E INK CORPORATION
    Inventors: Charles Honeyman, Elizabeth Moran, Libing Zhang, Anthony Pullen, Emily Pratt, Kimberly Houde, Matthew King, Craig Herb, Richard Paolini
  • Publication number: 20060202949
    Abstract: The invention relates to methods and materials for controlling stability and color intensity in an electrophoretic display element. Filler particles in the electrophoretic display element, serves as a medium that the electrophoretic particles must travel through during switching between optical states of the display. The filler particles provide improved control over the color intensity of the electrophoretic display element. In addition, the filler particles create resistance to the migration of the electrophoretic particles, thereby improving the bistability of the electrophoretic displays and inhibiting settling of the electrophoretic particles. Also, migration resistance provided by the filler particles can enable threshold addressing of an electrophoretic display.
    Type: Application
    Filed: March 16, 2006
    Publication date: September 14, 2006
    Applicant: E INK CORPORATION
    Inventors: Guy Danner, Karl Amundson, Craig Herb, Libing Zhang