Patents by Inventor Thomas J. Staiger

Thomas J. Staiger 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: 5967045
    Abstract: For control of static ink delivery pressure, a system and method make use of an outer chamber having a first outlet for delivery of ink to an ink printing mechanism, an inner chamber having a second outlet for delivery of ink to the outer chamber, and a pressure source that applies negative pressure to the outer chamber. The inner chamber maintains an internal negative pressure that is selected to control a level of the ink within the outer chamber relative to a height of the second outlet within the outer chamber. In particular, inner chamber maintains the ink level at a substantially constant level by replenishing the volume of ink within the outer chamber upon consumption. When ink is consumed by the ink printing mechanism, the inner chamber delivers a proportional volume of ink to the outer chamber that is sufficient to restore the ink to the desired level.
    Type: Grant
    Filed: October 20, 1998
    Date of Patent: October 19, 1999
    Assignee: Imation Corp.
    Inventors: Thomas J. Staiger, Charles L. Rennolet, John R. Hofmann
  • Patent number: 5635718
    Abstract: A multi-module radiation detecting device, a radiation detecting module for incorporation in a multi-module radiation detecting device, and a method for assembling a multi-module radiation detecting device are provided. The radiation detecting module includes a carrier substrate and a radiation detecting tile mounted over the carrier substrate. The module includes interconnection structure for connecting radiation detecting elements in the radiation detecting tile to conductive contacts on a base substrate. The module facilitates attachment and detachment of the module relative to the base substrate and relative to a test fixture used in test and burn-in operations. The module is constructed to isolate the radiation detecting tile from thermal and/or mechanical stresses produced at the interconnection interface during attachment and detachment for test and burn-in, assembly, and rework operations.
    Type: Grant
    Filed: January 16, 1996
    Date of Patent: June 3, 1997
    Assignee: Minnesota Mining and Manufacturing Company
    Inventors: James M. DePuydt, Nang T. Tran, James C. Brown, Thomas J. Staiger, John C. Dahlquist, Meredith J. Williams
  • Patent number: 5436695
    Abstract: A thin flexible film is loaded into an interior surface of a hollow image-processing drum by releasably adhering a sheet of the film to a carrier. The carrier is admitted into the drum and positioned in spaced relation to the interior surface of the drum. The upper surface of the carrier is urged to the surface of the drum to place the sheet in residence against the interior surface of the drum. The sheet of film is releasably adhered to the drum and the carrier is removed from the drum. A receptor sheet may be placed within the drum and a donor sheet placed over it in a similar manner.
    Type: Grant
    Filed: March 17, 1994
    Date of Patent: July 25, 1995
    Assignee: Minnesota Mining and Manufacturing
    Inventors: Lawrence M. Lucking, Thomas J. Staiger
  • Patent number: 5262259
    Abstract: An electrographic imaging process is described in which electrostatic images are toned in sequence to form a multicolor intermediate image on a temporary dielectric receptor. The intermediate image is then transferred to a permanent receptor. Certain relative properties of the toner and the intermediate image, such as surface energy, T.sub.g, work of adhesion, and complex dynamic viscosity, have been found to be important to the production of good final images.
    Type: Grant
    Filed: April 18, 1990
    Date of Patent: November 16, 1993
    Assignee: Minnesota Mining and Manufacturing Company
    Inventors: Hsin-hsin Chou, John F. Eisele, Gaye K. Lehman, Wu-Shyong Li, Valdis Mikelsons, Michael J. Petrich, Prabhakara S. Rao, Thomas J. Staiger, Paul J. Wang, Gregory L. Zwaldo, Michael G. Baier, Richard H. Olson