Patents by Inventor David Brian Moody

David Brian Moody 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: 7324864
    Abstract: An axial force measurement apparatus (40) comprises a head member (42) adapted for receiving force imparted by an external force-applying source, and a transducer (44) such as a load cell for measuring the amount of force applied to the head member (42). Electronic circuitry (61) for receiving, processing, storing and/or sending electrical information generated by the transducer is provided either externally to the measurement apparatus (40), or is integrated with the apparatus (40). The apparatus (40) can be used to calibrate the valve crimping station (75) and/or the test firing station (125) of a metered dose delivery canister production line. The apparatus (40) is designed to emulate an actual canister (12).
    Type: Grant
    Filed: June 12, 2002
    Date of Patent: January 29, 2008
    Assignee: SmithKline Beecham Corporation
    Inventors: Lee A. Barger, David Brian Moody, Donald Devereaux Munn
  • Patent number: 6770823
    Abstract: A system for check weighing the content of a blister strip which includes a guide adapted to receive a blister strip comprised of at least one blister, a punch aligned with the guide for receiving the at least one blister, an actuator engaged with the punch for driving the punch toward the blister strip, whereby the blister is punched from the blister strip, and a balance adapted to receive the punched blister for weighing the punched blister and generating a weight signal after subtracting a predetermined value representing the weight of an empty blister. An alternative method of determining the content of a blister strip comprises reflecting a beam of energy off of a blister strip and determining the height of the blister from the reflected energy. The measured height is compared to a predetermined height to derive the amount of powder contained therein.
    Type: Grant
    Filed: August 13, 2002
    Date of Patent: August 3, 2004
    Assignee: Smithkline Beecham Corporation
    Inventors: Charles Amick Buckner, III, Milton David Bynum, David Brian Moody, Michael Richard Strong, Thomas Scott Wilson
  • Publication number: 20040148042
    Abstract: An axial force measurement apparatus (40) comprises a head member (42) adapted for receiving force imparted by an external force-applying source, and a transducer (44) such as a load cell for measuring the amount of force applied to the head member (42). Electronic circuitry (61) for receiving, processing, storing and/or sending electrical information generated by the transducer is provided either externally to the measurement apparatus (40), or is integrated with the apparatus (40). The apparatus (40) can be used to calibrate the valve crimping station (75) and/or the test firing station (125) of a metered dose delivery canister production line. The apparatus (40) is designed to emulate an actual canister (12).
    Type: Application
    Filed: December 12, 2003
    Publication date: July 29, 2004
    Inventors: Lee A. Barger, David Brian Moody, Donald Devereaux Munn
  • Publication number: 20030062288
    Abstract: A system for check-weighing a metered dose powder inhaler blister comprises a guide (12) adapted to receive a blister strip (14) comprised of at least one blister, a punch (20) aligned with the guide (12) for receiving the at least one blister; an actuator (26) engaged with the punch (20) for driving the punch toward the blister strip (14), whereby the blister (18) is punched from the blister strip; and a balance (32) adapted to receive the punched blister (18) for weighing the punched blister (18) and generating a punched blister weight for the at least one blister.
    Type: Application
    Filed: August 13, 2002
    Publication date: April 3, 2003
    Inventors: Charles Amick Buckner, Milton David Bynum, David Brian Moody, Michael Richard Strong, Thomas Scott Wilson