Patents by Inventor Tracy Hall

Tracy Hall 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: 6929493
    Abstract: An electrical contact system for transmitting information across tool joints while minimizing signal reflections that occur at the tool joints includes a first electrical contact comprising an annular resilient material. An annular conductor is embedded within the annular resilient material and has a surface exposed from the annular resilient material. A second electrical contact is provided that is substantially equal to the first electrical contact. Likewise, the second electrical contact has an annular resilient material and an annular conductor. The two electrical contacts configured to contact one another such that the annular conductors of each come into physical contact. The annular resilient materials of each electrical contact each have dielectric characteristics and dimensions that are adjusted to provide desired impedance to the electrical contacts.
    Type: Grant
    Filed: October 2, 2003
    Date of Patent: August 16, 2005
    Assignee: IntelliServ, Inc.
    Inventors: David R. Hall, H. Tracy Hall, Jr., David S. Pixton, Scott Dahlgren, Joe Fox, Cameron Sneddon
  • Publication number: 20050145406
    Abstract: The invention is a system for transmitting data through a string of downhole components. In accordance with one aspect of the invention, the system includes a plurality of downhole components, such as sections of pipe in a drill string. Each component has a first and second end, with a first communication element located at the first end and a second communication element located at the second end. Each communication element includes a first contact and a second contact. The system also includes a coaxial cable running between the first and second communication elements, the coaxial cable having a conductive tube and a conductive core within it. The system also includes a first and second connector for connecting the first and second communication elements respectively to the coaxial cable. Each connector includes a conductive sleeve, lying concentrically within the conductive tube, which fits around and makes electrical contact with the conductive core.
    Type: Application
    Filed: November 23, 2004
    Publication date: July 7, 2005
    Inventors: David Hall, Tracy Hall, David Pixton, Scott Dahlgren, Joe Fox, Cameron Sneddon, Michael Briscoe
  • Patent number: 6913093
    Abstract: A robust transmission element for transmitting information between downhole tools, such as sections of drill pipe, in the presence of hostile environmental conditions, such as heat, dirt, rocks, mud, fluids, lubricants, and the like. The transmission element maintains reliable connectivity between transmission elements, thereby providing an uninterrupted flow of information between drill string components. A transmission element is mounted within a recess proximate a mating surface of a downhole drilling component, such as a section of drill pipe. To close gaps present between transmission elements, transmission elements may be biased with a “spring force,” urging them closer together.
    Type: Grant
    Filed: May 6, 2003
    Date of Patent: July 5, 2005
    Assignee: IntelliServ, Inc.
    Inventors: David R. Hall, H. Tracy Hall, David Pixton, Scott Dahlgren, Cameron Sneddon, Michael Briscoe, Joe Fox
  • Patent number: 6888473
    Abstract: A drill pipe having a box end having a tapered thread, and an internal shoulder and an external face for engagement with a drill pipe pin end having a tapered mating thread, and an external shoulder and an external face adapted for data acquisition or transmission. The relative dimensions of the box and pin ends are precisely controlled so that when the tool joint is made up, a repeatable reference plane is established for transmitting power and tuning downhole sensors, transducers, and means for sending and receiving data along the drill string. When the power or data acquisition and transmission means are located in the tool joint, the dimensions of the tool joint are further proportioned to compensate for the loss of cross-sectional area in order maintain the joints ability to sustain nominal makeup torque.
    Type: Grant
    Filed: July 20, 2000
    Date of Patent: May 3, 2005
    Assignee: IntelliServ, Inc.
    Inventors: David R. Hall, Joe Fox, David S. Pixton, H. Tracy Hall, Jr.
  • Publication number: 20050082092
    Abstract: An apparatus in a drill string comprises an internally upset drill pipe. The drill pipe comprises a first end, a second end, and an elongate tube intermediate the first and second ends. The elongate tube and the ends comprising a continuous an inside surface with a plurality of diameters. A conformable spirally welded metal tube is disposed within the drill pipe intermediate the ends thereof and terminating adjacent to the ends of the drill pipe. The conformable metal tube substantially conforms to the continuous inside surface of the metal tube. The metal tube may comprise a non-uniform section which is expanded to conform to the inside surface of the drill pipe. The non-uniform section may comprise protrusions selected from the group consisting of convolutions, corrugations, flutes, and dimples. The non-uniform section extends generally longitudinally along the length of the tube.
    Type: Application
    Filed: September 20, 2004
    Publication date: April 21, 2005
    Inventors: David Hall, Scott Dahlgren, Tracy Hall, Joe Fox, David Pixton
  • Patent number: 6844498
    Abstract: The invention is a system for transmitting data through a string of downhole components. In accordance with one aspect of the invention, the system includes a plurality of downhole components, such as sections of pipe in a drill string. Each component has a first and second end, with a first communication element located at the first end and a second communication element located at the second end. Each communication element includes a first contact and a second contact. The system also includes a coaxial cable running between the first and second communication elements, the coaxial cable having a conductive tube and a conductive core within it. The system also includes a first and second connector for connecting the first and second communication elements respectively to the coaxial cable. Each connector includes a conductive sleeve, lying concentrically within the conductive tube, which fits around and makes electrical contact with the conductive core.
    Type: Grant
    Filed: February 2, 2003
    Date of Patent: January 18, 2005
    Assignee: Novatek Engineering Inc.
    Inventors: David R. Hall, H. Tracy Hall, Jr., David Pixton, Scott Dahlgren, Cameron Sneddon, Joe Fox, Michael Briscoe
  • Patent number: 6838951
    Abstract: The present invention provides circuitry for maintaining the desired phase noise across the tuning range of a frequency synthesizer by compensating the voltage controlled oscillator (VCO) bias current according to various tuning parameters available within the frequency synthesizer, thereby reducing overall current drain and inductor quality factor requirements. In general, the present invention includes a VCO bias circuit capable of controlling the VCO bias current in response to a control signal provided by additional circuitry based on the operating frequency of the frequency synthesizer. Further, the VCO bias current changes in response to changing the operating frequency of the frequency synthesizer.
    Type: Grant
    Filed: June 3, 2003
    Date of Patent: January 4, 2005
    Assignee: RF Micro Devices, Inc.
    Inventors: Ralph Christopher Nieri, Scott Robert Humphreys, Tracy Hall
  • Patent number: 6830467
    Abstract: The invention is a mechanism for retaining an electrical transmission line. In one embodiment of the invention it is a system for retaining an electrical transmission line within down hole components. In accordance with one aspect of the invention, the system includes a plurality of downhole components, such as sections of pipe in a drill string. The system also includes a coaxial cable running between the first and second end of a drill pipe, the coaxial cable having a conductive tube and a conductive core within it. The invention allows the electrical transmission line to with stand the tension and compression of drill pipe during routine drilling cycles.
    Type: Grant
    Filed: April 30, 2003
    Date of Patent: December 14, 2004
    Assignee: IntelliServ, Inc.
    Inventors: David R. Hall, H. Tracy Hall, Jr., David Pixton, Scott Dahlgren, Cameron Sneddon, Michael Briscoe, Joe Fox
  • Publication number: 20040244964
    Abstract: The invention is a mechanism for retaining an electrical transmission line. In one embodiment of the invention it is a system for retaining an electrical transmission line within downhole components. The invention allows a transmission line to be attached to the internal diameter of drilling components that have a substantially uniform drilling diameter. In accordance with one aspect of the invention, the system includes a plurality of downhole components, such as sections of pipe in a drill string, drill collars, heavy weight drill pipe, and jars. The system also includes a coaxial cable running between the first and second end of a drill pipe, the coaxial cable having a conductive tube and a conductive core within it. The invention allows the electrical transmission line to withstand the tension and compression of drill pipe during routine drilling cycles.
    Type: Application
    Filed: June 9, 2003
    Publication date: December 9, 2004
    Inventors: David R. Hall, H. Tracy Hall, David Pixton, Scott Dahlgren, Cameron Sneddon, Michael Briscoe, Joe Fox
  • Patent number: 6821147
    Abstract: The invention is a seal system for a coaxial cable more specifically an internal seal system placed within the coaxial cable and its constituent components. A series of seal stacks including flexible rigid rings and elastomeric rings are placed on load bearing members within the coaxial cable. The current invention is adapted to seal the annular space between the coaxial cable and an electrical contact passing there through. The coaxial cable is disposed within drilling components to transmit electrical signals between drilling components within a drill string. During oil and gas exploration, a drill string can see a range of pressures and temperatures thus resulting in multiple combinations of temperature and pressure and increasing the difficulty of creating a robust seal for all combinations. The seal system can be used in a plurality of downhole components, such as sections of pipe in a drill string, drill collars, heavy weight drill pipe, and jars.
    Type: Grant
    Filed: August 14, 2003
    Date of Patent: November 23, 2004
    Assignee: Intelliserv, Inc.
    Inventors: David R. Hall, H. Tracy Hall, Jr., David Pixton, Scott Dahlgren, Cameron Sneddon, Michael Briscoe, Joe Fox
  • Publication number: 20040221995
    Abstract: A robust transmission element for transmitting information between downhole tools, such as sections of drill pipe, in the presence of hostile environmental conditions, such as heat, dirt, rocks, mud, fluids, lubricants, and the like. The transmission element maintains reliable connectivity between transmission elements, thereby providing an uninterrupted flow of information between drill string components. A transmission element is mounted within a recess proximate a mating surface of a downhole drilling component, such as a section of drill pipe. To close gaps present between transmission elements, transmission elements may be biased with a “spring force,” urging them closer together.
    Type: Application
    Filed: May 6, 2003
    Publication date: November 11, 2004
    Inventors: David R. Hall, H. Tracy Hall, David Pixton, Scott Dahlgren, Cameron Sneddon, Michael Briscoe, Joe Fox
  • Publication number: 20040219831
    Abstract: The invention is a mechanism for retaining an electrical transmission line. In one embodiment of the invention it is a system for retaining an electrical transmission line within down hole components. In accordance with one aspect of the invention, the system includes a plurality of downhole components, such as sections of pipe in a drill string. The system also includes a coaxial cable running between the first and second end of a drill pipe, the coaxial cable having a conductive tube and a conductive core within it. The invention allows the electrical transmission line to with stand the tension and compression of drill pipe during routine drilling cycles.
    Type: Application
    Filed: April 30, 2003
    Publication date: November 4, 2004
    Inventors: David R. Hall, H. Tracy Hall, David Pixton, Scott Dahlgren, Cameron Sneddon, Michael Briscoe, Joe Fox
  • Publication number: 20040164833
    Abstract: The present invention includes a method of making an inductive coupler for downhole components. The method includes providing an annular housing, preferably made of steel, the housing having a recess. A conductor, preferably an insulated wire, is also provided along with a plurality of generally U-shaped magnetically conducting, electrically insulating (MCEI) segments. Preferably, the MCEI segments comprise ferrite. An assembly is formed by placing the plurality of MCEI segments within the recess in the annular housing. The segments are aligned to form a generally circular trough. A first portion of the conductor is placed within the circular trough. This assembly is consolidated with a meltable polymer which fills spaces between the segments, annular housing and the first portion of the conductor. The invention also includes an inductive coupler including an annular housing having a recess defined by a bottom portion and two opposing side wall portions.
    Type: Application
    Filed: March 27, 2004
    Publication date: August 26, 2004
    Inventors: David R. Hall, H. Tracy Hall, David S. Pixton, Scott Dahlgren, Michael A. Briscoe, Cameron Sneddon, Joe Fox
  • Publication number: 20040164838
    Abstract: The present invention includes an element for use in an inductive coupler in a downhole component. The element includes a plurality of ductile, generally U-shaped leaves that are electrically conductive. The leaves are less than about 0.0625″thick and are separated by an electrically insulating material. These leaves are aligned so as to form a generally circular trough. The invention also includes an inductive coupler for use in downhole components, the inductive coupler including an annular housing having a recess with a magnetically conductive, electrically insulating (MCEI) element disposed in the recess. The MCEI element includes a plurality of segments where each segment further includes a plurality of ductile, generally U-shaped electrically conductive leaves. Each leaf is less than about 0.0625″thick and separated from the otherwise adjacent leaves by electrically insulating material. The segments and leaves are aligned so as to form a generally circular trough.
    Type: Application
    Filed: March 25, 2004
    Publication date: August 26, 2004
    Inventors: David R. Hall, H. Tracy Hall, David S. Pixton, Scott Dahlgren, Joe Fox, Cameron Sneddon
  • Publication number: 20040149471
    Abstract: The invention is a system for transmitting data through a string of downhole components. In accordance with one aspect of the invention, the system includes a plurality of downhole components, such as sections of pipe in a drill string. Each component has a first and second end, with a first communication element located at the first end and a second communication element located at the second end. Each communication element includes a first contact and a second contact. The system also includes a coaxial cable running between the first and second communication elements, the coaxial cable having a conductive tube and a conductive core within it. The system also includes a first and second connector for connecting the first and second communication elements respectively to the coaxial cable. Each connector includes a conductive sleeve, lying concentrically within the conductive tube, which fits around and makes electrical contact with the conductive core.
    Type: Application
    Filed: February 2, 2003
    Publication date: August 5, 2004
    Inventors: David R. Hall, H. Tracy Hall, David Pixton, Scott Dahlgren, Cameron Sneddon, Joe Fox
  • Publication number: 20040145492
    Abstract: A robust data transmission element for transmitting information between downhole components, such as sections of drill pipe, in the presence of hostile environmental conditions, such as heat, dirt, rocks, mud, fluids, lubricants, and the like. The data transmission element components include a generally U-shaped annular housing, a generally U-shaped magnetically conductive, electrically insulating element such as ferrite, and an insulated conductor. Features on the magnetically conducting, electrically insulating element and the annular housing create a pocket when assembled. The data transmission element is filled with a polymer to retain the components within the annular housing by filling the pocket with the polymer. The polymer can bond with the annular housing and the insulated conductor but preferably not the magnetically conductive, electrically insulating element.
    Type: Application
    Filed: November 29, 2003
    Publication date: July 29, 2004
    Inventors: David R. Hall, H. Tracy Hall, David S. Pixton, Scott Dahlgren, Joe Fox, Cameron Sneddon, Michael Briscoe
  • Publication number: 20040104797
    Abstract: A system for transmitting data through a string of downhole components. In one aspect, the system includes first and second magnetically conductive, electrically insulating elements at both ends of the component. Each element includes a first U-shaped trough with a bottom, first and second sides and an opening between the two sides. Electrically conducting coils are located in each trough. An electrical conductor connects the coils in each component. In operation, a varying current applied to a first coil in one component generates a varying magnetic field in the first magnetically conductive, electrically insulating element, which varying magnetic field is conducted to and thereby produces a varying magnetic field in the second magnetically conductive, electrically insulating element of a connected component, which magnetic field thereby generates a varying electrical current in the second coil in the connected component.
    Type: Application
    Filed: August 19, 2003
    Publication date: June 3, 2004
    Inventors: David R. Hall, H. Tracy Hall, David S. Pixton, Scott Dahlgren, Joe Fox
  • Patent number: 6717501
    Abstract: A system for transmitting data through a string of down-hole components. In accordance with one aspect, the system includes a plurality of downhole components, such as sections of pipe in a drill string. Each downhole component includes a pin end and a box end, with the pin end of one downhole component being adapted to be connected to the box end of another. Each pin end includes external threads and an internal pin face distal to the external threads. Each box end includes an internal shoulder face with internal threads distal to the internal shoulder face. The internal pin face and the internal shoulder face are aligned with and proximate each other when the pin end of the one component is threaded into a box end of the other component.
    Type: Grant
    Filed: July 18, 2001
    Date of Patent: April 6, 2004
    Assignee: Novatek Engineering, Inc.
    Inventors: David R. Hall, H. Tracy Hall, Jr., David Pixton, Scott Dahlgren, Joe Fox
  • Patent number: 6670880
    Abstract: A system for transmitting data through a string of downhole components. In one aspect, the system includes first and second magnetically conductive, electrically insulating elements at both ends of the component. Each element includes a first U-shaped trough with a bottom, first and second sides and an opening between the two sides. Electrically conducting coils are located in each trough. An electrical conductor connects the coils in each component. In operation, a varying current applied to a first coil in one component generates a varying magnetic field in the first magnetically conductive, electrically insulating element, which varying magnetic field is conducted to and thereby produces a varying magnetic field in the second magnetically conductive, electrically insulating element of a connected component, which magnetic field thereby generates a varying electrical current in the second coil in the connected component.
    Type: Grant
    Filed: March 23, 2001
    Date of Patent: December 30, 2003
    Assignee: Novatek Engineering, Inc.
    Inventors: David R. Hall, H. Tracy Hall, Jr., David Pixton, Scott Dahlgren, Joe Fox
  • Publication number: 20020075114
    Abstract: The invention is a system for transmitting data through a string of downhole components. In accordance with one aspect of the invention, the system includes a plurality of downhole components, such as sections of pipe in a drill string. Each downhole component includes a pin end and a box end, with the pin end of one downhole component being adapted to be connected to the box end of an other. Each pin end includes external threads and an internal pin face distal to the external threads. Each box end includes an internal shoulder face with internal threads distal to the internal shoulder face. The internal pin face and the internal shoulder face are aligned with and proximate each other when the pin end of the one component is threaded into a box end of the other component. The system also includes a first communication element located within a first recess formed in each internal pin face and a second communication element located within a second recess formed in each internal shoulder face.
    Type: Application
    Filed: July 18, 2001
    Publication date: June 20, 2002
    Inventors: David R. Hall, H. Tracy Hall, David Pixton, Scott Dahlgren, Joe Fox