Patents Assigned to For Global Technologies, LLC
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Publication number: 20090167590Abstract: A method and system for presence detection within a detection volume delimited by an inner radius and an outer radius using microwave radiation. The outer radius of the detection volume is controlled by selecting the length of a first pulse controlling the transmit interval of a microwave transmitter and by selecting the length of a third pulse controlling the receive interval of a microwave receiver. The inner radius of the detection volume is controlled through selecting the length of a second pulse defining a predetermined time period between the first pulse and the third pulse.Type: ApplicationFiled: October 17, 2008Publication date: July 2, 2009Applicant: FORD GLOBAL TECHNOLOGIES, LLCInventors: Anders Antonsson, Goran Svedoff
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Patent number: 7552588Abstract: A system, comprising of an internal combustion engine having a combustion chamber with a piston located therein, an intake passage coupled to the combustion chamber, wherein the intake passage supplies intake air to the combustion chamber, an adjustable compressor arranged in the intake passage upstream of the combustion chamber, a throttle arranged in the intake passage upstream of the compressor, and a controller configured to operate the engine so that, at least under some conditions, the piston compresses an air and fuel mixture within the combustion chamber to attain substantial auto-ignition of the mixture; and to increase a boosting of the compressor to increase heating of the intake air, and to decrease the boosting to decrease heating of the intake air, while throttling the intake air with the throttle.Type: GrantFiled: December 15, 2005Date of Patent: June 30, 2009Assignee: Ford Global Technologies, LLCInventors: Steve Magner, Mrdjan Jankovic
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Patent number: 7553255Abstract: A motor vehicle driveline that can transmit power in a 4×4 mode includes two front wheels, a rear drive shaft, a differential mechanism for transmitting power to two rear axle shafts connected driveably through the differential to the rear driveshaft, and a clutch for engaging and disengaging a drive connection in the differential mechanism. A method for controlling operation of the clutch includes the steps of operating the driveline in 4×4 mode, determining a current accelerator pedal position, determining whether a current accelerator pedal position is less than a reference position for a predetermined period, determining a current speed of each front wheel of the vehicle, determining whether a current speed difference between the front wheels of the vehicle is less than a reference wheel slip for a first predetermined period, determining during a second predetermined period whether a current time rate of speed change of the rear drive shaft is less than a reference rear wheel slip.Type: GrantFiled: October 13, 2006Date of Patent: June 30, 2009Assignee: Ford Global Technologies, LLC.Inventors: Joe J. Torres, John O'Rear, Peter J. Barrette, Patrick Meloche, Dana J. Katinas
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Patent number: 7552958Abstract: A vehicle tailgate movement assist mechanism including a tailgate configured to rotate between opened and closed positions and a tailgate lever arm fixedly connected to a bottom area of the tailgate. A drive lever may be pivotally connected at one end thereof to the tailgate lever arm and pivotally connected at an opposite end thereof to a bell crank. The bell crank may be pivotally anchored at one end thereof to a vehicle body, and a plunger damper may be anchored to the vehicle body adjacent the bell crank. With the mechanism configured as discussed above, rotation of the tailgate from a closed to an opened position simultaneously rotates the tailgate lever arm to impart movement to the drive lever and the bell crank to thereby contact and actuate a plunger of the plunger damper to reduce an opening speed of the tailgate.Type: GrantFiled: May 31, 2007Date of Patent: June 30, 2009Assignee: Ford Global Technologies, LLCInventors: Eric L. Stratten, Ryan A. Delaney
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Patent number: 7552776Abstract: A method and an apparatus for forming casing in a borehole.Type: GrantFiled: October 13, 2005Date of Patent: June 30, 2009Assignee: Enventure Global Technology, LLCInventor: Greg Noel
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Publication number: 20090159019Abstract: A expansion tank for an engine cooling system comprises a housing forming a main chamber and a swirl chamber, the swirl chamber being defined by a cylindrical wall. An inlet connection discharges through an inlet orifice towards a collector duct having an entrance. From the inlet orifice the coolant is directed as a stream or jet along the adjacent surface of the cylindrical wall towards the entrance of the collector duct, guided by circumferential ribs. The kinetic energy of the stream is converted into pressure energy so that the pressure delivered from the outlet connection is slightly above the pressure at the top of the swirl chamber, above the level of liquid. This swirl chamber pressure is set by the relief pressure allowed by a filler cap, the gain in pressure helping to avoid cavitation in a coolant circulation pump.Type: ApplicationFiled: December 16, 2008Publication date: June 25, 2009Applicants: Ford Global Technologies, LLC, Jaguar Cars LimitedInventor: William Richard Hutchins
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Publication number: 20090160227Abstract: A vehicle seat is provided with a seat back having a seating surface for supporting a back of an occupant. The seat back is adapted to be mounted to a vehicle and at least a portion of the seat back has a pivotal connection for movement from an upright position to a deployed position. A handle is mounted to the seating surface of the pivotal portion of the seat back. A cover is mounted to the seat back seating surface and extends over the handle.Type: ApplicationFiled: December 21, 2007Publication date: June 25, 2009Applicant: FORD GLOBAL TECHNOLOGIES, LLCInventors: Mary Rose Crombez, Dale Scott Crombez
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Publication number: 20090159057Abstract: As one example, a fuel rail assembly for supplying pressurized fuel to a plurality of cylinders of an engine is provided. The fuel rail assembly includes a fuel rail housing defining an internal fuel rail volume having at least a first region and a second region; a fuel separation membrane element disposed within the fuel rail housing that segregates the first region from the second region. The membrane element can be configured to pass a first component of a fuel mixture such as an alcohol through the membrane element from the first region to the second region at a higher rate than a second component of the fuel mixture such as a hydrocarbon. The separated alcohol and hydrocarbon components can be provided to the engine in varying relative amounts based on operating conditions.Type: ApplicationFiled: December 21, 2007Publication date: June 25, 2009Applicant: FORD GLOBAL TECHNOLOGIES, LLCInventors: Ross Dykstra Pursifull, Mark Allen Dearth, Tom G. Leone
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Publication number: 20090160206Abstract: A mounting system for mounting a body to a tailgate having first and second latch assemblies that engage a pair of striker plates. The mounting system includes a first mounting bracket having a first striker plate to engage the first latch assembly and a second mounting bracket having a second striker plate to engage the second latch assembly. The first and second mounting brackets mount the body on the tailgate when the first and the second mounting brackets are attached to the body and when the first and second striker plates are engaged with the first and second latch assemblies.Type: ApplicationFiled: December 22, 2008Publication date: June 25, 2009Applicant: Ford Global Technologies, LLCInventors: Edward Andrew Pleet, William M. Frykman
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Publication number: 20090158714Abstract: The invention involves an engine system and a method for an engine system comprising an internal combustion engine comprising at least one cylinder, and an exhaust system comprising an exhaust gas treatment device, in which engine system the admittance of air and fuel is controllable by means of air flow control means and fuel control means, the method comprising performing an exhaust gas treatment device regeneration. The method comprises controlling, during the exhaust gas treatment device regeneration, the air flow control means and the fuel control means so as to provide a mixture to the exhaust gas treatment device with a lambda value of at least 1.0.Type: ApplicationFiled: December 19, 2008Publication date: June 25, 2009Applicant: Ford Global Technologies, LLCInventors: Jonas Hermansson, Anders Johnsson
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Publication number: 20090164100Abstract: The present invention relates to an internal combustion engine that can be operated in a homogeneous charge combustion mode as well as a method and a computer readable storage device for controlling such an engine. The engine comprises at least one fuel injector, a fuel injection controller that controls a fuel amount injected into a first cylinder, and a piston in the first cylinder whose compression causes an air and fuel mixture to be ignited. The engine further comprises at least one intake valve, at least one exhaust valve, a valve operation controller, and at least one sensor for measuring an engine operation parameter in the first cylinder. The engine is particularly characterized in that the valve operation controller is adapted to determine the opening and closing of the intake and exhaust valves of the first cylinder on the basis of a first fuel injection or injections.Type: ApplicationFiled: December 19, 2008Publication date: June 25, 2009Applicant: FORD GLOBAL TECHNOLOGIES, LLCInventors: Claes Ostberg, Lucien Koopmans
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Patent number: 7549406Abstract: A method for discontinuing combustion in a cylinder of an internal combustion engine having an intake manifold and an emission control device coupled downstream of thereof, where the cylinder has at least one valve, the method comprising during a shut-down and after a final combustion event in the cylinder, adjusting valve timing of the valve to reduce a flow of gasses from the engine to the emission control device.Type: GrantFiled: January 2, 2008Date of Patent: June 23, 2009Assignee: Ford Global Technologies, LLCInventor: Donald J. Lewis
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Patent number: 7549283Abstract: In one example, a system for a vehicle traveling on the road is described. The system includes a first cylinder; a second cylinder; a linear exhaust gas sensor coupled exclusively to said first cylinder; a switching exhaust gas sensor coupled exclusively to said second cylinder; and a controller configured to operate in a first mode with both said first and second cylinders carrying out lean combustion, where fuel injection amounts to each of said first and second cylinder are adjusted based on said linear sensor; said controller further configured to operate in a second mode with both said first and second cylinders carrying out combustion about stoichiometry, where fuel injection amounts to at least one of said first and second cylinder are adjusted based on said switching sensor.Type: GrantFiled: August 31, 2005Date of Patent: June 23, 2009Assignee: Ford Global Technologies, LLCInventors: James Kerns, Gopichandra Surnilla, Tobias Pallett, Sukhdev Sekhon, Shane Elwart
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Patent number: 7549657Abstract: A wheel support knuckle and trailing arm assembly that is attached to a toe link of a vehicle suspension system. The trailing arm assembly is formed by a blade member and a reinforcement member. The wheel support knuckle defines an axle bore and includes an integrally formed upper link receptacle and an integrally formed brake caliper track. The toe link is retained on the trailing arm assembly by a clevis formed by a transverse wall formed in the blade member and a parallel transverse wall formed in the reinforcement member. An alternative embodiment discloses a one-piece trailing arm that defines a clevis for connection to the toe link between a transverse wall and a tab that extends parallel to the transverse wall. A method of making cast wheel support knuckle and stamped trailing arm assembly is also disclosed.Type: GrantFiled: September 15, 2008Date of Patent: June 23, 2009Assignee: Ford Global Technologies, LLCInventors: Peter Jargowsky, Jaspal Sohal, Greg Gombert, Oskar Rozalski, Chris Allard
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Patent number: 7549408Abstract: A method for operating an engine having at least one cylinder that may be deactivated and a fuel system operating with an alcohol fuel blend, comprising of adjusting a range of operating parameters in which the at least one cylinder is deactivated, where said range is adjusted as the alcohol blend of the fuel varies.Type: GrantFiled: November 20, 2006Date of Patent: June 23, 2009Assignee: Ford Global Technologies, LLCInventor: John D. Russell
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Patent number: 7549689Abstract: A pull cup in a vehicle door is fitted to a door trim panel substrate and is connected to the inner door panel of the vehicle door by way of a bracket. The bracket is oriented to resist vertical loads and tension loads such that the bracket is allowed to deflect in compression loading in the event of a side impact. In one embodiment the bracket has horizontal slots through which shoulder fasteners are fitted to attach the bracket to the inner door panel. This configuration allows deflection in compression loading. In another embodiment of the bracket a pair of arms is provided between the pull cup and the inner door panel. This configuration allows buckling of the arms on compression loading.Type: GrantFiled: October 3, 2007Date of Patent: June 23, 2009Assignee: Ford Global Technologies, LLCInventors: John Pinkerton, Joseph Edward Abramczyk
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Patent number: 7549694Abstract: A filler neck housing assembly is disclosed that includes a reinforcement bracket having a ring-shaped portion and a reinforcement flange. The reinforcement bracket is assembled to a housing panel that defines a recessed area inside a body outer panel. The reinforcement bracket includes door stop flanges and hinge attachment flanges to which a fuel door is attached by a hinge and hinge bracket.Type: GrantFiled: November 1, 2006Date of Patent: June 23, 2009Assignee: Ford Global Technologies, LLCInventors: Jason Scott, Michael Freeman
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Publication number: 20090157277Abstract: A fuel delivery system for a fuel burning engine of a vehicle and a method of operating the fuel delivery system is provided. As one example, the method includes separating a first fuel and a second fuel from a fuel vapor on-board the vehicle, said fuel vapor including at least an alcohol component and a hydrocarbon component and said first fuel including a higher concentration of the alcohol component than the fuel vapor and the second fuel; condensing the separated first fuel from a vapor phase to a liquid phase; delivering the condensed liquid phase of the first fuel to the engine; and combusting at least the condensed liquid phase of the first fuel at the engine.Type: ApplicationFiled: December 12, 2007Publication date: June 18, 2009Applicant: FORD GLOBAL TECHNOLOGIES, LLCInventors: Ross Dykstra Pursifull, Mark Allen Dearth
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Publication number: 20090151684Abstract: A starter arrangement for an internal combustion engine the arrangement including a starter motor having a pinion gear coupled to an output shaft, the pinion gear being arranged in constant engagement with a corresponding crank gear of a crank wheel located between an engine block and a flywheel of the engine. The crank wheel is operatively coupled to a crankshaft of the engine via a one-way clutch unit loosely fitted to an end of the crankshaft, the crankshaft including a circumferential slot carrying a clip ring. The one-way clutch unit including a tube shaped hub loosely fitted to an end of the crankshaft, the axial movement of the one-way hub is fixed via a clip-ring in co-operation with a first axially delimiting member and a second axially delimiting member at least partially enclosed by the hub.Type: ApplicationFiled: December 16, 2008Publication date: June 18, 2009Applicant: FORD GLOBAL TECHNOLOGIES, LLCInventors: Peter Gast, Jonas Forssell, Lars Stenvall, Petter Almhagen
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Publication number: 20090151330Abstract: Systems and methods for updating the PF soot load of an engine are provided herein. In one embodiment, the method may include performing regeneration in response to both pressure-based measurements as well as estimated soot loading independent of the pressure-based measurements, where during conditions in which the pressure-based measurements may be inaccurate, the soot load is estimated based on operating conditions and previous pressure-based measurements that occurred during previous conditions in which the pressure-based measurements are more accurate. In this way, more continuous monitoring of particulate filter loading is provided, while taking advantage of pressure-based measurements from the most recent accurate reading, for example, and operating conditions that have transpired since such reading, including transient conditions. Thus, more appropriately timed regeneration may be provided.Type: ApplicationFiled: April 3, 2008Publication date: June 18, 2009Applicant: FORD GLOBAL TECHNOLOGIES, LLCInventors: Gopal K. Chamarthi, Edwin Allen Krenz, David Chester Waskiewicz, Peter Mitchell Lyon, Bradley D. Gresens, Norman Hiam Opolsky, Michiel J. Van Nieuwstadt