Patents by Inventor Donald Bott
Donald Bott 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).
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Patent number: 7742733Abstract: Fuser assemblies, xerographic apparatuses, and methods of fusing toner on media in xerographic apparatuses are disclosed. An embodiment of the fuser assemblies includes a fuser belt having an inner surface and an outer surface opposite the inner surface, at least a first roll and a second roll supporting the fuser belt, and a radiant heater facing the inner surface of the fuser belt. The radiant heater is adapted to emit radiant heat onto the inner surface of the fuser belt to increase the temperature of the outer surface of the fuser belt opposite the inner surface heated by the radiant heater.Type: GrantFiled: June 27, 2008Date of Patent: June 22, 2010Assignee: Xerox CorporationInventors: Augusto E. Barton, Anthony S. Condello, Donald Bott
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Publication number: 20090324273Abstract: Fuser assemblies, xerographic apparatuses, and methods of fusing toner on media in xerographic apparatuses are disclosed. An embodiment of the fuser assemblies includes a fuser belt having an inner surface and an outer surface opposite the inner surface, at least a first roll and a second roll supporting the fuser belt, and a radiant heater facing the inner surface of the fuser belt. The radiant heater is adapted to emit radiant heat onto the inner surface of the fuser belt to increase the temperature of the outer surface of the fuser belt opposite the inner surface heated by the radiant heater.Type: ApplicationFiled: June 27, 2008Publication date: December 31, 2009Applicant: Xerox CorporationInventors: Augusto E. Barton, Anthony S. Condello, Donald Bott
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Publication number: 20070177913Abstract: Disclosed herein are several embodiments to facilitate the characterization of fuser stripping performance. Recognizing that the characteristics of a substrate exiting a fusing nip are indicative of the operation of the nip and the stripping operation itself, several contact and non-contact sensing methods are described to detect or predict degraded stripping performance, thereby permitting one or more compensation techniques to be employed, or to identify the need for fuser subsystem replacement.Type: ApplicationFiled: January 31, 2006Publication date: August 2, 2007Applicant: Xerox CorporationInventors: Steven Russel, Mansour Messalti, Jeremy deJong, Anthony Condello, Daniel McVeigh, Donald Bott, James Padula
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Publication number: 20070140751Abstract: A fusing system for use in a printing system is provided. In practice, a print media sheet having a size parameter value is transmitted to the fusing system along a first direction. Additionally, the print media sheet is provided with developer material prior to being delivered to the fusing system. The fusing system includes a fusing member positioned along a second direction for receiving the developed print media sheet. The second direction is substantially perpendicular to the first direction, and the fusing member is operated in accordance with a thermal profile that relates fusing temperature to the fusing member. The fusing system further includes a print media shifting control system for changing the position of the print media sheet relative to the fusing member in the second direction by a selected increment. The position changing of the print media sheet varies as a function of the size parameter value, and promotes uniformity in the thermal profile.Type: ApplicationFiled: December 15, 2005Publication date: June 21, 2007Inventors: Yongsoon Eun, Nicholas Kladias, Donald Bott
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Publication number: 20070120930Abstract: In a tonerless imaging process, an inked image layer jetted on an image receptor is simultaneously transferred and fused to a recording medium. A radiation-curable material is incorporated in the image layer such that irradiation of the image layer cures the radiation-curable material therein. An ink jet printing apparatus for performing the above process is also disclosed.Type: ApplicationFiled: November 30, 2005Publication date: May 31, 2007Inventors: Gerald Domoto, Donald Bott, Stephan Drappel
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Publication number: 20070071466Abstract: A fuser system of a xerographic device provides a fuser member, and a pressure member supported for pressure engagement with the fuser member. The pressure member includes an inner layer and an outer layer. The inner layer is variably pressurized for controlled change of the effective hardness of the outer layer. Controlling the effective hardness of the outer layer can be in response to the media paper weight and/or image content being processed though the xerographic device.Type: ApplicationFiled: September 28, 2005Publication date: March 29, 2007Inventors: Anthony Condello, Donald Bott, Jeremy De Jong, Roger Leighton
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Publication number: 20070041758Abstract: A fuser system of a xerographic device provides a fuser roll, and first and second pressure rolls supported for selective engagement with the fuser roll. The fuser system further provides a repositioner which cooperates with the first and second pressure rolls for operatively selectively engaging one of the first and second pressure rolls with the fuser roll. The first pressure roll can include an outer surface having an effective modulus creating a first nip pressure, and the second pressure roll can include an outer surface having an effective modulus creating a second nip pressure. The selection of the first or second pressure roll can be in response to the media paper weight and/or image content being processed through the xerographic device.Type: ApplicationFiled: August 17, 2005Publication date: February 22, 2007Inventors: Anthony Condello, Donald Bott, Jeremy De Jong
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Publication number: 20070003335Abstract: A fusing member is formed from an evacuable inner tube with a cylindrical wall. The evacuable inner tube is inserted into an outer tube and the inner tube is pressurized to expand the inner tube such that the wall is in contact with the outer tube. An amount of a working fluid is then sealed within the inner tube at a below atmospheric pressure.Type: ApplicationFiled: June 29, 2005Publication date: January 4, 2007Inventors: Jeremy de Jong, David Pan, Osman Polatkan, Gerald Domoto, Donald Bott, Nicholas Kladias
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Publication number: 20060289481Abstract: A coated member includes a substrate and a coating layer over the substrate where the coating layer includes at least one of ferromagnetic and magnetic particles dispersed in a binder. The member, which is suitable for use in an electrostatographic printing process, can be in the form of a fuser member, a fixing member, a pressure roller, or a release agent donor member.Type: ApplicationFiled: June 27, 2005Publication date: December 28, 2006Applicant: Xerox CorporationInventors: David Pan, Gerald Domoto, Donald Bott, Jeremy De Jong, Nicholas Kladias
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Publication number: 20060280517Abstract: A printing device includes: multiple marking engines that during operation place marks on output media; and, a power supply that selectively supplies selected levels of power to the marking engines for selected times so as to ready the marking engines for operation from a dormant state. Power from the power supply is selectively distributed to the multiple marking engines so that at least one of the marking engines is readied for operation prior to at least one of the other marking engines.Type: ApplicationFiled: June 14, 2005Publication date: December 14, 2006Inventors: Bryan Roof, Donald Bott
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Publication number: 20060238593Abstract: An offset printing apparatus for transferring a phase change ink onto a print medium having a phase change ink component for applying a phase change ink in a phase change ink image; an imaging member for accepting the phase change ink image from the phase change ink component, and transferring the phase change ink image from the imaging member to the print medium, and a transfix pressure member positioned in association with the imaging member, wherein the print medium passes through a nip formed between the imaging member and the transfix pressure member, and wherein the imaging member exerts pressure on the transfix pressure member so as to transfer and fuse the phase change ink image from the imaging member to the print medium, and further wherein the transfix pressure member includes a substrate; an intermediate layer positioned on the substrate; and an outer layer on the intermediate layer and the outer layer has a modulus of from about 1 to about 50 MPa, a thickness of from about 0.Type: ApplicationFiled: April 25, 2005Publication date: October 26, 2006Inventors: Jeffrey Kohne, Santokh Badesha, Edward Caruthers, Anthony Yeznach, Bryan Roof, Donald Bott, James Williams, Michael Gordon
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Publication number: 20060222423Abstract: An energy transfer device and system includes a heat pipe and an interior coating to at least a portion of an interior surface of the heat pipe, the interior coating comprises at least one of the properties selected from chemically inert, liquid phobic, stable at high temperature, of low porosity and of low surface energy. Moreover, a manufacturing method of an energy transfer device that includes providing a heat pipe and providing an interior coating to an interior surface of at least a portion of the heat pipe, the interior coating comprising at least one of the properties selected from chemically inert, liquid phobic, stable at high temperature, of low porosity and of low surface energy.Type: ApplicationFiled: March 31, 2005Publication date: October 5, 2006Applicant: XEROX CORPORATIONInventors: Jeremy Dejong, Donald Bott, Gerald Domoto, David Pan, Nicholas Kladias, Osman Polatkan
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Publication number: 20060115305Abstract: Methods and apparatus for performing addressable fusing and/or heating of a substrate undergoing xerographic processing are disclosed. The apparatus includes a fuser having an array of addressable heating elements in radiative communication with a substrate through a fuser roll or fuser belt. The array of addressable heating elements is operated to selectively heat portions of the substrate to achieve a desired effect on the substrate, such as changing its surface finish, or fusing unfused toner to the substrate. In the case of toner fusing, the array is operated such that substantially only an area covered by the unfused toner is heated. This eliminates the need for blanket fusing, and generally provides for greater flexibility in xerographically processing substrates. Apparatus and methods for performing two-sided selective fusing and/or heating are also disclosed.Type: ApplicationFiled: November 30, 2004Publication date: June 1, 2006Inventors: Robert Lofthus, Kristine German, Donald Bott, John Andrews, David Biegelsen, Armin Volkel
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Publication number: 20050220473Abstract: A fuser system of a xerographic device, including a fuser member and a pressure member in which the pressure member is made to exert pressure upon the fuser member so as to form a nip having a nip width between the fuser member and the pressure member, wherein the nip width is set to within a specification nip width range, a drive system for driving said fuser member relative to said pressure roll; a sensor for monitoring the torque of said drive system; a processor in communication with the sensor that receives torque data from the sensor, wherein the processor determines a current nip pressure uniformity from the torque data and compares the current nip pressure uniformity to the specification nip pressure uniformity range, and a nip pressure adjustment device in communication with the processor, which adjusts the current nip pressure uniformity to be within the specification nip pressure uniformity range.Type: ApplicationFiled: March 30, 2004Publication date: October 6, 2005Inventors: Donald Bott, Joseph Antonio, Aaron Burry, Osman Polatkan
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Publication number: 20050147454Abstract: An air diffusing vacuum transport belt including a first perforated layer and a second non-perforated layer is provided for transporting image carrying substrates without vacuum belt induced image defects. The first perforated layer includes a top surface and a bottom surface, solid areas, and perforated hole areas interspersing the solid areas for directing pressurized airflow from the top surface through to the bottom surface. The air diffusing vacuum transport belt also includes a second non-perforated layer formed over the top surface of the first perforated layer and covering the solid areas and the perforated hole areas. The second non-perforated layer has an inner surface positioned over the top surface of the first perforated layer, and an outer surface for uniformly supporting substrates.Type: ApplicationFiled: November 21, 2003Publication date: July 7, 2005Inventors: James Spence, Steven Russel, Donald Bott