Patents by Inventor Thomas W. Fitzsimmons

Thomas W. Fitzsimmons 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: 7520109
    Abstract: A mailing machine is provided for processing mailpiece envelopes including a housing having a transport deck adapted to convey an envelope along a feed path and a receiving station. The mailing machine is reconfigurable to perform one of two mailpiece processing operations by alternately selecting or activating one of two mailpiece modules/assemblies. A first processing module/assembly is disposed along the feed path and is operative to moisten a glue line disposed along an envelope flap during the first mailpiece processing operation. The second processing module assembly is disposed along the feed path and is adapted to cut and open an edge of the envelope during the second mailpiece processing operation. Further, a mechanism for interchangeably receiving one of the first and second the processing modules/assemblies within the receiving station to perform the processing operations.
    Type: Grant
    Filed: April 9, 2007
    Date of Patent: April 21, 2009
    Assignee: Pitney Bowes Inc.
    Inventors: Thomas W. Fitzsimmons, Walter J. Kulpa, Richard D. Boughton, Ralph A. Rapillo
  • Publication number: 20080249963
    Abstract: A mailing machine is provided for processing mailpiece envelopes including a housing having a transport deck adapted to convey an envelope along a feed path. The mailing machine is reconfigurable to perform one of two mailpiece processing operation by alternately selecting or activating one of two mailpiece modules/assemblies. A first processing module/assembly is disposed along the feed path and is operative to moisten a glue line disposed along an envelope flap during the first mailpiece processing operation. The second processing module assembly is disposed along the feed path and is adapted to cut and open an edge of the envelope during the second mailpiece processing operation. Further, a means is provided for selecting one of the first and second the processing modules/assemblies to perform the processing operations.
    Type: Application
    Filed: April 9, 2007
    Publication date: October 9, 2008
    Applicant: Pitney Bowes Incorporated
    Inventors: Thomas W. Fitzsimmons, Walter J. Kulpa, Richard D. Boughton, Ralph A. Rapillo
  • Patent number: 4137460
    Abstract: A radiographic system comprising an X-ray source disposed to direct an X-ray beam through an adjustable shutter aperture in an aligned collimator and onto an image receptor in a holder located at a preselected distance from the source; and automatic means for preventing an X-ray exposure until prescribed operating conditions have been satisfied, the automatic means including a readily interchangeable read-only-memory module for storing the prescribed conditions therein and ascertaining whether or not the prescribed conditions have been met.
    Type: Grant
    Filed: June 17, 1976
    Date of Patent: January 30, 1979
    Assignee: The Machlett Laboratories, Inc.
    Inventors: Thomas W. Fitzsimmons, Vincent Berluti, Jr., Howard G. Wagner, Jonathan S. Shapiro
  • Patent number: 4018716
    Abstract: A radiographic system comprising an X-ray source disposed to direct an X-ray beam through an adjustable shutter aperture in an aligned collimator and onto an image receptor in a holder located at a preselected distance from the source; and automatic means for preventing an X-ray exposure until prescribed operating conditions have been satisfied, the automatic means including read-only-memory means for storing the prescribed conditions therein and ascertaining whether or not the prescribed conditions have been met.
    Type: Grant
    Filed: June 16, 1975
    Date of Patent: April 19, 1977
    Assignee: The Machlett Laboratories, Incorporated
    Inventors: Thomas W. Fitzsimmons, Vincent Berluti, Jr., Howard G. Wagner, Jonathan S. Shapiro