Patents by Inventor Brian Odom

Brian Odom 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: 20080005406
    Abstract: System and method for controlling cartridges to perform industrial operation(s). The system may include cartridge controllers coupled to the cartridges, timing and data routing logic coupled to the cartridge controllers, and controlling software coupled to the timing and data routing logic. Each of the cartridge controllers may be operable to detect and establish communications with a respective cartridge based on information retrieved from the cartridge, and adapt input/output signals of the respective cartridge according to instructions specified by the timing and data routing logic. The timing and data routing logic may be operable to synthesize data stream(s) from the adapted input/output signals, wherein each of the data stream(s) includes a respective subset of the adapted input/output signals received from a corresponding subset of the cartridges, and transmit the data stream(s) to the controlling software.
    Type: Application
    Filed: April 12, 2006
    Publication date: January 3, 2008
    Inventors: Brian Odom, Jeffrey Kellam, Rafael Castro, Kyle Bryson
  • Publication number: 20070233417
    Abstract: System and method for measurement, DAQ, and control operations which uses small form-factor measurement modules or cartridges with a re-configurable carrier unit, sensors, and a computer system to provide modular, efficient, cost-effective measurement solutions. The measurement module includes measurement circuitry, e.g., signal conditioner and/or signal conversion circuitry, and interface circuitry for communicating with the carrier unit. The module communicates interface information to the carrier unit, which informs the computer system how to program or configure a functional unit on the carrier unit to implement the communicated interface, or sends the information directly to the computer system. The computer system programs the carrier unit with the interface, and the programmed carrier unit and measurement module together function as a DAQ, measurement, and/or control device.
    Type: Application
    Filed: June 6, 2007
    Publication date: October 4, 2007
    Inventors: Perry Steger, Garritt Foote, David Potter, James Truchard, Brian Odom
  • Publication number: 20070233418
    Abstract: System and method for measurement, DAQ, and control operations which uses small form-factor measurement modules or cartridges with a re-configurable carrier unit, sensors, and a computer system to provide modular, efficient, cost-effective measurement solutions. The measurement module includes measurement circuitry, e.g., signal conditioner and/or signal conversion circuitry, and interface circuitry for communicating with the carrier unit. The module communicates interface information to the carrier unit, which informs the computer system how to program or configure a functional unit on the carrier unit to implement the communicated interface, or sends the information directly to the computer system. The computer system programs the carrier unit with the interface, and the programmed carrier unit and measurement module together function as a DAQ, measurement, and/or control device.
    Type: Application
    Filed: June 6, 2007
    Publication date: October 4, 2007
    Inventors: Perry Steger, Garritt Foote, David Potter, James Truchard, Brian Odom
  • Publication number: 20070233431
    Abstract: System and method for measurement, DAQ, and control operations which uses small form-factor measurement modules or cartridges with a re-configurable carrier unit, sensors, and a computer system to provide modular, efficient, cost-effective measurement solutions. The measurement module includes measurement circuitry, e.g., signal conditioner and/or signal conversion circuitry, and interface circuitry for communicating with the carrier unit. The module communicates interface information to the carrier unit, which informs the computer system how to program or configure a functional unit on the carrier unit to implement the communicated interface, or sends the information directly to the computer system. The computer system programs the carrier unit with the interface, and the programmed carrier unit and measurement module together function as a DAQ, measurement, and/or control device.
    Type: Application
    Filed: June 6, 2007
    Publication date: October 4, 2007
    Inventors: Perry Steger, Garritt Foote, David Potter, James Truchard, Brian Odom
  • Publication number: 20070225954
    Abstract: A computer-implemented system and method for generating a hardware implementation of graphical code. The method comprises first creating a graphical program. A first portion of the graphical program may optionally be compiled into machine code for execution by a CPU. A second portion of the graphical program is converted into a hardware implementation according to the present invention. The operation of converting the graphical program into a hardware implementation comprises exporting the second portion of the graphical program into a hardware description, wherein the hardware description describes a hardware implementation of the second portion of the graphical program, and then configuring a programmable hardware element utilizing the hardware description to produce a configured hardware element. The configured hardware element thus implements a hardware implementation of the second portion of the graphical program.
    Type: Application
    Filed: May 22, 2007
    Publication date: September 27, 2007
    Inventors: Jeffrey Kodosky, Hugo Andrade, Brian Odom, Cary Butler
  • Publication number: 20070198236
    Abstract: A computer-implemented system and method for generating a hardware implementation of graphical code. The method comprises first creating a graphical program. A first portion of the graphical program may optionally be compiled into machine code for execution by a CPU. A second portion of the graphical program is converted into a hardware implementation according to the present invention. The operation of converting the graphical program into a hardware implementation comprises exporting the second portion of the graphical program into a hardware description, wherein the hardware description describes a hardware implementation of the second portion of the graphical program, and then configuring a programmable hardware element utilizing the hardware description to produce a configured hardware element. The configured hardware element thus implements a hardware implementation of the second portion of the graphical program.
    Type: Application
    Filed: December 5, 2006
    Publication date: August 23, 2007
    Inventors: Jeffrey Kodosky, Hugo Andrade, Brian Odom, Cary Butler
  • Publication number: 20070093994
    Abstract: A computer-implemented system and method for generating a hardware implementation of graphical code. The method comprises first creating a graphical program. A first portion of the graphical program may optionally be compiled into machine code for execution by a CPU. A second portion of the graphical program is converted into a hardware implementation according to the present invention. The operation of converting the graphical program into a hardware implementation comprises exporting the second portion of the graphical program into a hardware description, wherein the hardware description describes a hardware implementation of the second portion of the graphical program, and then configuring a programmable hardware element utilizing the hardware description to produce a configured hardware element. The configured hardware element thus implements a hardware implementation of the second portion of the graphical program.
    Type: Application
    Filed: December 18, 2006
    Publication date: April 26, 2007
    Inventors: Jeffrey Kodosky, Hugo Andrade, Brian Odom, Cary Butler
  • Publication number: 20060190209
    Abstract: System and method for measurement, DAQ, and control operations which uses small form-factor measurement modules or cartridges with a re-configurable carrier unit, sensors, and a computer system to provide modular, efficient, cost-effective measurement solutions. The measurement module includes measurement circuitry, e.g., signal conditioner and/or signal conversion circuitry, and interface circuitry for communicating with the carrier unit. The module communicates interface information to the carrier unit, which informs the computer system how to program or configure a functional unit on the carrier unit to implement the communicated interface, or sends the information directly to the computer system. The computer system programs the carrier unit with the interface, and the programmed carrier unit and measurement module together function as a DAQ, measurement, and/or control device.
    Type: Application
    Filed: April 12, 2006
    Publication date: August 24, 2006
    Inventor: Brian Odom
  • Publication number: 20060184335
    Abstract: A cartridge controller, usable to provide an interface between a cartridge and a controller for performing industrial operations using the cartridge. The cartridge controller may include interface circuitry, operable to provide an interface between a cartridge coupled to the cartridge controller and the cartridge controller, and detection circuitry coupled to the interface circuitry, operable to detect coupling of the cartridge to the cartridge controller via the interface circuitry. The interface circuitry may be further operable to query the cartridge for a cartridge type of the cartridge, determine a communication protocol required to communicate with the cartridge from a plurality of communication protocols based on the cartridge type, and establish communications with the cartridge based on the determined communication protocol.
    Type: Application
    Filed: April 12, 2006
    Publication date: August 17, 2006
    Inventor: Brian Odom
  • Publication number: 20060037008
    Abstract: In some embodiments, a user may select an elemental function such as read, write, or configuration from a graphical programming environment. A file may be created that instantiates functionality into a programmable hardware element to allow it to send a command across a serial protocol to peripheral interface circuitry and ultimately to peripheral chips (e.g., network chips on a CAN). The elemental node concept may be generic to any network chip because the node may contain only the general data of a packet (e.g., command type, value of data bytes, etc). The actual interface to a network chip may be handled inside the peripheral interface circuitry. The peripheral interface circuitry may have the details of the network chip in which it interfaces and may abstract details of the network chip from the target programmable hardware element through the serial protocol.
    Type: Application
    Filed: August 15, 2005
    Publication date: February 16, 2006
    Inventors: Timothy Stelzer, William Pitts, Rodney Cummings, Brian Odom, Craig Conway
  • Publication number: 20060015862
    Abstract: A system and method for configuring a device to perform a function, where the device includes a programmable hardware element and one or more fixed hardware resources. A program is stored which represents the function. A hardware configuration program is generated based on the program, specifying a configuration for the programmable hardware element that implements the function, and usage of the fixed hardware resources by the programmable hardware element in performing the function. A deployment program deploys the hardware configuration program onto the programmable hardware element, where, after deployment, the device is operable to perform the function, where the programmable hardware element directly performs a first portion of the function, and the programmable hardware element invokes the fixed hardware resources to perform a second portion of the function. An optional measurement module couples to the device and performs signal conditioning and/or conversion logic on an acquired signal for the device.
    Type: Application
    Filed: September 20, 2005
    Publication date: January 19, 2006
    Inventors: Brian Odom, Joseph Peck, Hugo Andrade, Cary Butler, James Truchard, Newton Petersen, Matthew Novacek
  • Publication number: 20060004553
    Abstract: A computer-implemented system and method for generating a hardware implementation of graphical code. The method comprises first creating a graphical program. A first portion of the graphical program may optionally be compiled into machine code for execution by a CPU. A second portion of the graphical program is converted into a hardware implementation according to the present invention. The operation of converting the graphical program into a hardware implementation comprises exporting the second portion of the graphical program into a hardware description, wherein the hardware description describes a hardware implementation of the second portion of the graphical program, and then configuring a programmable hardware element utilizing the hardware description to produce a configured hardware element. The configured hardware element thus implements a hardware implementation of the second portion of the graphical program.
    Type: Application
    Filed: August 29, 2005
    Publication date: January 5, 2006
    Inventors: Jeffrey Kodosky, Hugo Andrade, Brian Odom, Cary Butler
  • Publication number: 20060005160
    Abstract: A computer-implemented system and method for deploying a graphical program onto an image acquisition (IMAQ) device. The method may operate to configure an image acquisition (IMAQ) device to perform image processing or machine vision functions, wherein the device includes a programmable hardware element and/or a processor and memory. The method comprises first creating a graphical program which implements the image processing or machine vision function. A portion of the graphical program may be converted into a hardware implementation on a programmable hardware element, and a portion may optionally be compiled into machine code for execution by a CPU. The programmable hardware element is thus configured utilizing a hardware description and implements a hardware implementation of at least a portion of the graphical program. The CPU-executable code may be executed by a computer coupled to the IMAQ device, or by a processor/memory on the IMAQ device.
    Type: Application
    Filed: August 26, 2005
    Publication date: January 5, 2006
    Inventors: Kevin Schultz, Jeffrey Kodosky, Hugo Andrade, Brian Odom, Cary Butler
  • Publication number: 20050143968
    Abstract: A system and method for configuring a device to perform a function, where the device includes a programmable hardware element and one or more fixed hardware resources. A program is stored which represents the function. A hardware configuration program is generated based on the program, specifying a configuration for the programmable hardware element that implements the function, and usage of the fixed hardware resources by the programmable hardware element in performing the function. A deployment program deploys the hardware configuration program onto the programmable hardware element, where, after deployment, the device is operable to perform the function, where the programmable hardware element directly performs a first portion of the function, and the programmable hardware element invokes the fixed hardware resources to perform a second portion of the function. An optional measurement module couples to the device and performs signal conditioning and/or conversion logic on an acquired signal for the device.
    Type: Application
    Filed: October 29, 2001
    Publication date: June 30, 2005
    Inventors: Brian Odom, Joseph Peck, Hugo Andrade, Cary Butler, James Truchard, Newton Petersen, Matthew Novacek