Patents by Inventor Son Ngoc Nguyen

Son Ngoc Nguyen 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).

  • Publication number: 20090261033
    Abstract: A hollow cylindrical fluid treatment element (10B) including at least one fluid treatment zone (Z1) comprising melt-blown fibers and at least one reinforcement element (200A) comprising yarn and/or wire, is disclosed.
    Type: Application
    Filed: June 25, 2009
    Publication date: October 22, 2009
    Applicant: PALL CORPORATION
    Inventors: Ahamad Y. A. Khan, Steven D. Barboza, Son Ngoc Nguyen, Michael B. Whitlock
  • Patent number: 7123174
    Abstract: A compressor can compress an image by reducing the amount of data while preserving the information. Some compressors use run length coding wherein image data is converted into a series of run length code words. The efficiency of run length coding can be increased with the introduction of differential run length code words. The differential run length code words can augment the original set of run length codes. Differential run length codes vary from current run length codes by encoding runs of differences.
    Type: Grant
    Filed: June 29, 2005
    Date of Patent: October 17, 2006
    Assignee: Xerox Corporation
    Inventors: George L. Eldridge, Bill P. Gunther, San A. Phong, Son Ngoc Nguyen, Farzin Blurfrushan
  • Patent number: 6662842
    Abstract: Filter cartridges may have a core element formed of a non-filtering, self-supporting non-woven mass of indefinite length continuous synthetic polymeric core fibers, and at least one annular filtration zone layer formed of a mass of non-woven indefinite length continuous synthetic polymeric filtration fibers. The non-woven core element is most preferably formed in situ during filter cartridge manufacturing by melt-blowing synthetic polymeric core fiber streams toward a forming mandrel. The non-woven core element is completely solidified prior to the filtration zone fibers being melt-blown thereon so that the core and filtration fibers are predominantly mechanically interlocked with one another, instead of being melt-bonded thereto. Filter cartridges of predetermined length may be cut from an upstream filter cartridge preform of indefinite length by subjecting the preform to forced cooling air to thereby minimize (if not eliminate entirely) significant filter cartridge shrinkage over time.
    Type: Grant
    Filed: August 30, 2001
    Date of Patent: December 16, 2003
    Assignee: Pall Corporation
    Inventors: Brian Mozelack, Robert J. Schmitt, Steven D. Barboza, Praveen Jana, Son Ngoc Nguyen, Ronald R. Gschwandtner, Robert D. Connor, Timothy W. Yingling
  • Publication number: 20020031629
    Abstract: Filter cartridges may have a core element formed of a non-filtering, self-supporting non-woven mass of indefinite length continuous synthetic polymeric core fibers, and at least one annular filtration zone layer formed of a mass of non-woven indefinite length continuous synthetic polymeric filtration fibers. The non-woven core element is most preferably formed in situ during filter cartridge manufacturing by melt-blowing synthetic polymeric core fiber streams toward a forming mandrel. The non-woven core element is completely solidified prior to the filtration zone fibers being melt-blown thereon so that the core and filtration fibers are predominantly mechanically interlocked with one another, instead of being melt-bonded thereto. Filter cartridges of predetermined length may be cut from an upstream filter cartridge preform of indefinite length by subjecting the preform to forced cooling air to thereby minimize (if not eliminate entirely) significant filter cartridge shrinkage over time.
    Type: Application
    Filed: August 30, 2001
    Publication date: March 14, 2002
    Applicant: USF Filtration & Separations, Inc.
    Inventors: Brian Mozelack, Robert J. Schmitt, Steven D. Barboza, Araveen Jana, Son Ngoc Nguyen, Ronald R. Gschwandtner, Robert D. Connor, Timothy W. Yingling
  • Publication number: 20020025397
    Abstract: Filter cartridges may have a core element formed of a non-filtering, self-supporting non-woven mass of indefinite length continuous synthetic polymeric core fibers, and at least one annular filtration zone layer formed of a mass of non-woven indefinite length continuous synthetic polymeric filtration fibers. The non-woven core element is most preferably formed in situ during filter cartridge manufacturing by melt-blowing synthetic polymeric core fiber streams toward a forming mandrel. The non-woven core element is completely solidified prior to the filtration zone fibers being melt-blown thereon so that the core and filtration fibers are predominantly mechanically interlocked with one another, instead of being melt-bonded thereto. Filter cartridges of predetermined length may be cut from an upstream filter cartridge preform of indefinite length by subjecting the preform to forced cooling air to thereby minimize (if not eliminate entirely) significant filter cartridge shrinkage over time.
    Type: Application
    Filed: August 30, 2001
    Publication date: February 28, 2002
    Applicant: USF Filtration & Separations, Inc.
    Inventors: Brian Mozelack, Robert J. Schmitt, Steven D. Barboza, Praveen Jana, Son Ngoc Nguyen, Ronald R. Gschwandtner, Robert D. Connor, Timothy W. Yingling
  • Patent number: 6342283
    Abstract: Filter cartridges may have a core element formed of a non-filtering, self-supporting non-woven mass of indefinite length continuous synthetic polymeric core fibers, and at least one annular filtration zone layer formed of a mass of non-woven indefinite length continuous synthetic polymeric filtration fibers. The non-woven core element is most preferably formed in situ during filter cartridge manufacturing by melt-blowing synthetic polymeric core fiber streams toward a forming mandrel. The non-woven core element is completely solidified prior to the filtration zone fibers being melt-blown thereon so that the core and filtration fibers are predominantly mechanically interlocked with one another, instead of being melt-bonded thereto. Filter cartridges of predetermined length may be cut from an upstream filter cartridge preform of indefinite length by subjecting the preform to forced cooling air to thereby minimize (if not eliminate entirely) significant filter cartridge shrinkage over time.
    Type: Grant
    Filed: July 22, 1999
    Date of Patent: January 29, 2002
    Assignee: USF Filtration & Separations, Inc.
    Inventors: Brian Mozelack, Robert J. Schmitt, Steven D. Barboza, Praveen Jana, Son Ngoc Nguyen, Ronald R. Gschwandtner, Robert D. Connor, Timothy W. Yingling
  • Patent number: 6195593
    Abstract: The design of an integrated circuit device is simplified by employing reusable modules to avoid or reduce the need to design special purpose glue logic otherwise needed to interconnect the modules. Functional modules comprise interface circuits that are interconnected by buses and operate according to prescribed bus-access protocols. In a preferred embodiments, bus access is arbitrated in an adaptive manner that may be controlled by a principal module in the device. In other embodiments, bus arbitration is not required. The operation of each functional module may be programmed under the control of the principal module.
    Type: Grant
    Filed: July 22, 1998
    Date of Patent: February 27, 2001
    Assignee: Seiko Epson Corporation
    Inventor: Son Ngoc Nguyen