Patents by Inventor Jason E. Squire

Jason E. Squire 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: 8864501
    Abstract: A connector includes an insulator, and a plurality of spaced apart signal contacts and return reference contacts which are held by and routed through the insulator. The signal contacts form signal pairs which include a positive signal contact and a negative signal contact. At a first end of the insulator, the signal pairs and return reference contacts are provided in two rows. At the second end of the insulator, the signal pairs and return reference contacts are provided in at least three rows. The signal pairs and return reference contacts form either a plurality of isosceles triangles or a plurality of diagonal lines.
    Type: Grant
    Filed: August 22, 2008
    Date of Patent: October 21, 2014
    Assignee: Molex Incorporated
    Inventors: Jeng-de Lin, Jason E. Squire, Scott D. Sommers
  • Patent number: 7976344
    Abstract: A connector includes a housing with a set of broad-side coupled terminals configured to engage a pair of signal traces on a first panel and a second panel and transfer signals between the signal traces on the first and second panels. The connector may be slid onto the edges and then fastened to one or both of the panels with a locking feature. Multiple signal pairs may be included in the connector and may be electrically separated. The design of the connector helps facilitate high-speed data communication per signal pair with a return loss performance that does not exceed at predetermined level. Certain configurations of the connector may be used for co-planar configurations. Certain configurations of the connector may couple together panels of different thicknesses.
    Type: Grant
    Filed: November 9, 2010
    Date of Patent: July 12, 2011
    Assignee: Molex Incorporated
    Inventors: David L. Brunker, Timothy R. Gregori, David E. Dunham, Jason E. Squire, Kevin O'Connor, Joseph D. Comerci
  • Publication number: 20110104915
    Abstract: A connector includes an insulator, and a plurality of spaced apart signal contacts and return reference contacts which are held by and routed through the insulator. The signal contacts form signal pairs which include a positive signal contact and a negative signal contact. At a first end of the insulator, the signal pairs and return reference contacts are provided in two rows. At the second end of the insulator, the signal pairs and return reference contacts are provided in at least three rows. The signal pairs and return reference contacts form either a plurality of isosceles triangles or a plurality of diagonal lines.
    Type: Application
    Filed: August 22, 2008
    Publication date: May 5, 2011
    Applicant: Molex Incorporated
    Inventors: Jeng-de Lin, Jason E. Squire, Scott D. Sommers
  • Publication number: 20110053425
    Abstract: A connector includes a housing with a set of broad-side coupled terminals configured to engage a pair of signal traces on a first panel and a second panel and transfer signals between the signal traces on the first and second panels. The connector may be slid onto the edges and then fastened to one or both of the panels with a locking feature. Multiple signal pairs may be included in the connector and may be electrically separated. The design of the connector helps facilitate high-speed data communication per signal pair with a return loss performance that does not exceed at predetermined level. Certain configurations of the connector may be used for co-planar configurations. Certain configurations of the connector may couple together panels of different thicknesses.
    Type: Application
    Filed: November 9, 2010
    Publication date: March 3, 2011
    Applicant: Molex Incorporated
    Inventors: David L. Brunker, Timothy R. Gregori, David E. Dunham, Jason E. Squire, Kevin O'Connor, Joseph D. Comerci
  • Patent number: 7845985
    Abstract: A connector includes a housing with a set of broad-side coupled terminals configured to engage a pair of signal traces on a first panel and a second panel and transfer signals between the signal traces on the first and second panels. The connector may be slid onto the edges and then fastened to one or both of the panels with a locking feature. Multiple signal pairs may be included in the connector and may be electrically separated. The design of the connector helps facilitate high-speed data communication per signal pair with a return loss performance that does not exceed at predetermined level. Certain configurations of the connector may be used for co-planar configurations. Certain configurations of the connector may couple together panels of different thicknesses.
    Type: Grant
    Filed: December 4, 2008
    Date of Patent: December 7, 2010
    Assignee: Molex Incorporated
    Inventors: David L. Brunker, Timothy R. Gregori, David E. Dunham, Jason E. Squire, Kevin O'Connor, Joseph D. Comerci
  • Publication number: 20090298304
    Abstract: A connector includes a housing with a set of broad-side coupled terminals configured to engage a pair of signal traces on a first panel and a second panel and transfer signals between the signal traces on the first and second panels. The connector may be slid onto the edges and then fastened to one or both of the panels with a locking feature. Multiple signal pairs may be included in the connector and may be electrically separated. The design of the connector helps facilitate high-speed data communication per signal pair with a return loss performance that does not exceed at predetermined level. Certain configurations of the connector may be used for co-planar configurations. Certain configurations of the connector may couple together panels of different thicknesses.
    Type: Application
    Filed: December 4, 2008
    Publication date: December 3, 2009
    Applicant: MOLEX INCORPORATED
    Inventors: David L. Brunker, Timothy R. Gregori, David E. Dunham, Jason E. Squire, Kevin O'Connor, Joseph D. Comerci