Patents Assigned to Ford Global Technologies, Inc.
  • Publication number: 20030233989
    Abstract: A crankshaft, for use with a variable compression ratio engine having a connecting rod and a rod bearing, includes a crankpin adapted to be coupled to the connecting rod with the rod bearing disposed between the crankpin and the connecting rod. The crankpin includes a circumferential surface having first and second side surface portions and a main surface portion disposed between the side surface portions. The main surface portion is configured to receive the rod bearing. The first side surface portion has a first aperture disposed at least partially outwardly of the rod bearing when the rod bearing is received on the main surface portion of the crankpin and the crankpin is coupled to the connecting rod. The crankpin further defines, at least partially, a first fluid passage for supplying pressurized fluid to the first aperture, such that the fluid is useable to vary compression ratio of the engine.
    Type: Application
    Filed: June 25, 2002
    Publication date: December 25, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventors: George Aristidis Papaioannou, Jeffrey Eliot Chottiner, Joshua Putman Styron, Pravin Sashidharan, V. Durga Nageswar Rao, Yash Andrew Imai
  • Publication number: 20030230705
    Abstract: A night vision system for a vehicle includes a pulsed light source for illuminating a region proximate the vehicle, the light source operating at a predetermined pulse timing. A light sensor generates a light intensity signal in response to detecting light at approximately the same wavelength as light from the light source. A controller receives first and second light intensity signals from the light sensor corresponding to first and second time periods between pulses of the light source, compares the first and second light intensity signals, and modifies the light source pulse timing as a function of a ratio or difference between the first and second light intensity signals, to avoid blinding of the vehicle's night vision system by similarly-equipped vehicle's traveling in the opposite direction.
    Type: Application
    Filed: June 12, 2002
    Publication date: December 18, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventors: Craig Hammann Stephan, Jeffrey Thomas Remillard
  • Publication number: 20030232189
    Abstract: A method and system for determining weather strip fit for the closure panels of a vehicle includes a flexible carrier with a transferable disclosing agent disposed on the flexible carrier. The flexible carriers may be applied to a closure panel of vehicle when the panel is in an open position, with the panel then being closed so as to allow the disclosing agent to either be transferred to the fixed side of the opening, or to be merely dislodged from the flexible carrier. In either case, the pattern of interference fit between the weather strip and the closure panel is then disclosed.
    Type: Application
    Filed: June 13, 2002
    Publication date: December 18, 2003
    Applicant: FORD GLOBAL TECHNOLOGIES, INC.
    Inventors: Chris Conway Gearhart, Sankaran Subramaniam, Vijitha Senaka Kiridena
  • Publication number: 20030230715
    Abstract: A lighting system for night vision applications including a near infrared light source, a visible light source, a beamsplitter and an optical element. The beamsplitter is arranged to reflect light emitting from either the near infrared light source or the visible light source and transmit light emitting from the other of the near infrared light source or visible light source so as to produce a color-corrected light source. The optical element is disposed a predetermined distance from the color-corrected light source. The optical element includes an input surface for receiving light from the color-corrected light source and an output surface for emitting the received light in a desired emission pattern. In one embodiment, each of the near infrared light source and visible light source is associated with respective first and second optical elements.
    Type: Application
    Filed: June 12, 2002
    Publication date: December 18, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventors: Jeffrey Thomas Remillard, Timothy Fohl, Willes H. Weber
  • Publication number: 20030227164
    Abstract: A method for manufacturing an automotive frame assembly (10) includes an inner rail (12) having an exterior side (26) and an interior side (30). First, the exterior side (26) of the inner rail (12) has fixedly attached thereto at least one flange (24) extending from a cross member (20). At least one two-sided fastener (28) is operatively applied to the exterior side (26) and the interior side (30) of the inner rail (12) so as to fixedly attach the flange (24) to the inner rail (12). Thereafter, the interior side (30) of the inner rail (12) has fixedly attached thereto at least one lip (32) extending from an outer rail (12″). Likewise, at least one two-sided fastener (28) is operatively applied to the exterior side (26) and the interior side (30) of the inner rail so as to fixedly attach the lip (32) to the inner rail (12).
    Type: Application
    Filed: June 5, 2002
    Publication date: December 11, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventors: Chris Sean Young, Henry J. Cornille, Joseph Porcari, Michael William Danyo
  • Publication number: 20030226543
    Abstract: A vehicle reciprocating piston, variable displacement internal combustion engine arrangement 7 is provided. The arrangement 7 includes a first cylinder group 12. A second selectively deactivatable cylinder group 14 is also provided. A manifold 18 is provided which is exposed to at least one of the cylinder groups. A vacuum system 24 is powered by manifold 18. An engine controller 16 is cognizant of a vacuum level of the vacuum system 24.
    Type: Application
    Filed: June 10, 2002
    Publication date: December 11, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventors: Christopher Paul Glugla, John Ottavio Michelini, Michael Flory
  • Publication number: 20030221655
    Abstract: A method is disclosed for controlling operation of an engine coupled to an exhaust treatment catalyst. Under predetermined conditions, the method operates an engine with a first group of cylinders combusting a lean air/fuel mixture and a second group of cylinders pumping air only (i.e., without fuel injection). In addition, the engine control method also provides the following features in combination with the above-described split air/lean mode: idle speed control, sensor diagnostics, air/fuel ratio control, adaptive learning, fuel vapor purging, catalyst temperature estimation, default operation, and exhaust gas and emission control device temperature control. In addition, the engine control method also changes to combusting in all cylinders under preselected operating conditions such as fuel vapor purging, manifold vacuum control, and purging of stored oxidants in an emission control device.
    Type: Application
    Filed: June 4, 2002
    Publication date: December 4, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventors: Gopichandra Surnilla, John Ottavio Michelini, John M. Roth
  • Publication number: 20030225494
    Abstract: A vehicle control system (10) including a vehicle motion control subsystem (12) that has an input receiving an intended driving demand (14) and a plurality of coordinator subsystems (16) for coordinating actuators of the vehicle. The vehicle motion control subsystem (12) communicates with the coordinator subsystems (16) to determine whether a single coordinator subsystem (16) can carry out the intended driving demand (14). The vehicle motion control subsystem (12) will distribute demand signals among one or more of the coordinator subsystems (16) to allow the vehicle to implement the intended driving demand (14).
    Type: Application
    Filed: May 29, 2002
    Publication date: December 4, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventors: Erik Coelingh, Jonas Ekmark
  • Publication number: 20030221416
    Abstract: A method is disclosed for controlling operation of an engine coupled to an exhaust treatment catalyst. Under predetermined conditions, the method operates an engine with a first group of cylinders combusting a lean air/fuel mixture and a second group of cylinders pumping air only (i.e., without fuel injection). In addition, the engine control method also provides the following features in combination with the above-described split air/lean mode: idle speed control, sensor diagnostics, air/fuel ratio control, adaptive learning, fuel vapor purging, catalyst temperature estimation, default operation, and exhaust gas and emission control device temperature control. In addition, the engine control method also changes to combusting in all cylinders under preselected operating conditions such as fuel vapor purging, manifold vacuum control, and purging of stored oxidants in an emission control device.
    Type: Application
    Filed: June 4, 2002
    Publication date: December 4, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventors: Grant Alan Ingram, Gopichandra Surnilla
  • Publication number: 20030225496
    Abstract: A vehicle control system (10) including a vehicle motion control subsystem (12) that has an input receiving an intended driving demand (14) and a plurality of coordinator subsystems (16) for coordinating actuators of the vehicle. The vehicle motion control subsystem (12) communicates with the coordinator subsystems (16) to determine whether a single coordinator subsystem (16) can carry out the intended driving demand (14). The vehicle motion control subsystem (12) will distribute demand signals among one or more of the coordinator subsystems (16) to allow the vehicle to implement the intended driving demand (14).
    Type: Application
    Filed: May 29, 2002
    Publication date: December 4, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventors: Erik Coelingh, Jonas Ekmark
  • Publication number: 20030221681
    Abstract: A method is disclosed for controlling operation of an engine coupled to an exhaust treatment catalyst. Under predetermined conditions, the method operates an engine with a first group of cylinders combusting a lean air/fuel mixture and a second group of cylinders pumping air only (i.e., without fuel injection). In addition, the engine control method also provides the following features in combination with the above-described split air/lean mode: idle speed control, sensor diagnostics, air/fuel ratio control, adaptive learning, fuel vapor purging, catalyst temperature estimation, default operation, and exhaust gas and emission control device temperature control. In addition, the engine control method also changes to combusting in all cylinders under preselected operating conditions such as fuel vapor purging, manifold vacuum control, and purging of stored oxidants in an emission control device.
    Type: Application
    Filed: June 4, 2002
    Publication date: December 4, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventors: David Karl Bidner, Gopichandra Surnilla
  • Publication number: 20030221419
    Abstract: A method is disclosed for controlling operation of an engine coupled to an exhaust treatment catalyst. Under predetermined conditions, the method operates an engine with a first group of cylinders combusting a lean air/fuel mixture and a second group of cylinders pumping air only (i.e., without fuel injection). In addition, the engine control method also provides the following features in combination with the above-described split air/lean mode: idle speed control, sensor diagnostics, air/fuel ratio control, adaptive learning, fuel vapor purging, catalyst temperature estimation, default operation, and exhaust gas and emission control device temperature control. In addition, the engine control method also changes to combusting in all cylinders under preselected operating conditions such as fuel vapor purging, manifold vacuum control, and purging of stored oxidants in an emission control device.
    Type: Application
    Filed: June 4, 2002
    Publication date: December 4, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventor: Gopichandra Surnilla
  • Publication number: 20030221667
    Abstract: A method is disclosed for controlling operation of an engine coupled to an exhaust treatment catalyst. Under predetermined conditions, the method operates an engine with a first group of cylinders combusting a lean air/fuel mixture and a second group of cylinders pumping air only (i.e., without fuel injection). In addition, the engine control method also provides the following features in combination with the above-described split air/lean mode: idle speed control, sensor diagnostics, air/fuel ratio control, adaptive learning, fuel vapor purging, catalyst temperature estimation, default operation, and exhaust gas and emission control device temperature control. In addition, the engine control method also changes to combusting in all cylinders under preselected operating conditions such as fuel vapor purging, manifold vacuum control, and purging of stored oxidants in an emission control device.
    Type: Application
    Filed: June 4, 2002
    Publication date: December 4, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventor: Gopichandra Surnilla
  • Publication number: 20030221417
    Abstract: A method is disclosed for controlling operation of an engine coupled to an exhaust treatment catalyst. Under predetermined conditions, the method operates an engine with a first group of cylinders combusting a lean air/fuel mixture and a second group of cylinders pumping air only (i.e., without fuel injection). In addition, the engine control method also provides the following features in combination with the above-described split air/lean mode: idle speed control, sensor diagnostics, air/fuel ratio control, adaptive learning, fuel vapor purging, catalyst temperature estimation, default operation, and exhaust gas and emission control device temperature control. In addition, the engine control method also changes to combusting in all cylinders under preselected operating conditions such as fuel vapor purging, manifold vacuum control, and purging of stored oxidants in an emission control device.
    Type: Application
    Filed: June 4, 2002
    Publication date: December 4, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventor: Gopichandra Surnilla
  • Publication number: 20030224907
    Abstract: A method is disclosed for controlling operation of an engine coupled to an exhaust treatment catalyst. Under predetermined conditions, the method operates an engine with a first group of cylinders combusting a lean air/fuel mixture and a second group of cylinders pumping air only (i.e., without fuel injection). In addition, the engine control method also provides the following features in combination with the above-described split air/lean mode: idle speed control, sensor diagnostics, air/fuel ratio control, adaptive learning, fuel vapor purging, catalyst temperature estimation, default operation, and exhaust gas and emission control device temperature control. In addition, the engine control method also changes to combusting in all cylinders under preselected operating conditions such as fuel vapor purging, manifold vacuum control, and purging of stored oxidants in an emission control device.
    Type: Application
    Filed: June 4, 2002
    Publication date: December 4, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventor: Gopichandra Surnilla
  • Publication number: 20030221653
    Abstract: A crankshaft assembly (18) for a VDIC engine (16) of an automotive vehicle (14) includes a crankshaft (44) integrated within an internal combustion engine (16). The crankshaft (44) has at least two pendulum vibration absorber assemblies (58) integrated therein. Each pendulum vibration absorber assembly (58) includes a counterweight member (60) integrally formed within the crankshaft (44). The counterweight member (60) has a desired counterweight mass for providing, in conjunction with the mass of the assembly (58), first order engine balance. The counterweight member (60) has a pendulum (64) pivotally coupled thereto. The pendulum (64) has a desired mass and geometry for attenuating torsional fluctuation.
    Type: Application
    Filed: May 29, 2002
    Publication date: December 4, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventors: John Edward Brevick, Alvin Henry Berger, Sherry Renee Lopez
  • Publication number: 20030221666
    Abstract: A method is disclosed for controlling operation of a engine coupled to an exhaust treatment catalyst. Under predetermined conditions, the method operates an engine with a first group of cylinders combusting a lean air-fuel mixture and a second group of cylinders pumping air only (i.e. without fuel injection.) In addition, the engine control method also provides the following features in combination with the above-described split air/lean mode: auto speed control, sensor diagnostics, air-fuel ratio control, adaptive learning, fuel vapor purging, catalyst temperature estimation, and default operation. In addition, the engine control method also disables the split air/lean operating mode under preselected operating conditions.
    Type: Application
    Filed: June 4, 2002
    Publication date: December 4, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventors: Gopichandra Surnilla, Stephen B. Smith
  • Publication number: 20030221664
    Abstract: A method is disclosed for controlling operation of an engine coupled to an exhaust treatment catalyst. Under predetermined conditions, such as after an engine cold start, the method operates an engine with a first group of cylinders having a first ignition timing, and a second group of cylinders having a second ignition timing more retarded than the first group. In addition, the engine control method also provides the following features in combination with the above-described split air/lean mode: idle speed control, sensor diagnostics, air/fuel ratio control, adaptive learning, fuel vapor purging, catalyst temperature estimation, default operation, and exhaust gas and emission control device temperature control. In addition, the engine control method also can change to combusting all cylinders at substantially the same ignition timing under preselected operating conditions such as fuel vapor purging, manifold vacuum control, and purging of stored oxidants in an emission control device.
    Type: Application
    Filed: June 4, 2002
    Publication date: December 4, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventor: Gopichandra Surnilla
  • Publication number: 20030221671
    Abstract: A method is disclosed for controlling operation of an engine coupled to an exhaust treatment catalyst. Under predetermined conditions, the method operates an engine with a first group of cylinders combusting a lean air/fuel mixture and a second group of cylinders pumping air only (i.e., without fuel injection). In addition, the engine control method also provides the following features in combination with the above-described split air/lean mode: idle speed control, sensor diagnostics, air/fuel ratio control, adaptive learning, fuel vapor purging, catalyst temperature estimation, default operation, and exhaust gas and emission control device temperature control. In addition, the engine control method also changes to combusting in all cylinders under preselected operating conditions such as fuel vapor purging, manifold vacuum control, and purging of stored oxidants in an emission control device.
    Type: Application
    Filed: June 4, 2002
    Publication date: December 4, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventors: David Karl Bidner, Gopichandra Surnilla
  • Publication number: 20030225495
    Abstract: A vehicle control system (10) including a vehicle motion control subsystem (12) that has an input receiving an intended driving demand (14) and a plurality of coordinator subsystems (16) for coordinating actuators of the vehicle. The vehicle motion control subsystem (12) communicates with the coordinator subsystems (16) to determine whether a single coordinator subsystem (16) can carry out the intended driving demand (14). The vehicle motion control subsystem (12) will distribute demand signals among one or more of the coordinator subsystems (16) to allow the vehicle to implement the intended driving demand (14).
    Type: Application
    Filed: May 29, 2002
    Publication date: December 4, 2003
    Applicant: Ford Global Technologies, Inc.
    Inventors: Erik Coelingh, Jonas Ekmark, Mats Andersson