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Jeffrey Lawrence

Jeffrey Lawrence Bergers, Grand Rapids, MI US

Patent application numberDescriptionPublished
20080301999Personal Fish Sack Carrier - The invention is a fish transport sack specifically designed to transport larger fish such as salmon or steelhead by wading or pedestrian fisherman. The salmon is a large fish approximately 10 to 30 pounds in weight and lengths sometimes exceeding 30 inches. A fish of this size is cumbersome to carry by hand in the traditional method with a stringer, particularly when long distances need to be traversed across rugged terrain such as steep hills and fallen trees. The dangling of the fish on the stringer causes considerable strain on the fisherman's hands, wrist, arms, and shoulders. The discomfort is compounded when several large fish need to be carried simultaneously. The fish sack carrier (12-11-2008

Jeffrey Lawrence Laya, Northville, MI US

Patent application numberDescriptionPublished
20120081234Lane Departure Haptic Warning with Compensation for Road-Caused Vibration - A method of alerting the driver of a vehicle to a lane departure condition. The method includes operating a lane detection system to detect that the vehicle is experiencing a lane departure condition, operating a sensor to detect background vibration experienced by the vehicle, determining a characteristic making a haptic signal likely to be distinguishable from the background vibration, and operating a haptic signal generator in response to the lane departure condition to deliver to a driver the haptic signal having the characteristic.04-05-2012

Jeffrey Lawrence Muschiatti, Tigard, OR US

Patent application numberDescriptionPublished
20110253415Coaxial Cable with Wire Layer - A coaxial cable includes a center conductor, a dielectric layer extending around the center conductor, and an outer conductor extending around the dielectric layer. The outer conductor includes winding turns wrapped along a helical path around the dielectric layer in a first lay direction. A wire layer extends around the outer conductor. The wire layer includes winding turns wrapped along a helical path around the outer conductor in a second lay direction. The second lay direction is opposite to the first lay direction.10-20-2011

Jeffrey Lawrence Tonges, Versailles, KY US

Patent application numberDescriptionPublished
20090232545Devices And Methods For Retracting A Cartridge In An Image Forming Device - The present application is directed to methods and devices for moving a cartridge between engaged and disengaged positions in an image forming device. The image forming device may include a bias control arm movable between first and second positions. When the bias control arm is in one of the first and second positions, a biasing force on the cartridge is reduced and the cartridge moves to the disengaged position. When the bias control arm is in the other of the first and second positions, a biasing force on the cartridge is increased and the cartridge is moved to the engaged position. In one embodiment, the bias control arm moves in a first direction, and the cartridge moves in a second direction different than the first direction.09-17-2009
20090232549Fuser Assembly Including A NIP Release Bias Spring - A fuser assembly includes first and second fuser structures, drive apparatus and nip engagement and release apparatus. The nip engagement and release apparatus includes nip-loading structure, a bias spring for engaging the nip-loading structure, a nip release cam for engaging the bias spring, a swing arm assembly and nip release structure. The nip engagement and release apparatus is adapted to cause a fuser nip to release during a reverse operation except when performing a duplex operation.09-17-2009
20090232554Methods To Control Transitions Between Color Printing And Black-Only Printing In An Image Forming Device - The present application is directed to methods for transitioning between color printing and black-only printing in an image forming device. A cartridge is moved between a first position in which color printing may occur and a second position in which black-only printing may occur. In the first position, a color developer unit may be in contact with a color photoconductor unit. The color developer unit may be spaced from the color photoconductor unit in the second position. During the transition, a voltage supplied to the cartridge and a speed of a drive motor driving the cartridge may be adjusted.09-17-2009
20120103118Detachable Reversible Pick Mechanism for Feeding Media From a Media Tray of an Image Forming Device - A detachable reversible pick mechanism for a media input tray. The pick mechanism comprises a reversible drive transmission having a drive shaft gear operatively connected to a pick axle gear, the drive shaft gear slidably engageable onto a cantilevered drive shaft extending from a housing, a pick axle having a pick wheel at each end, the pick axle operatively connected to the pick axle gear; and a transmission housing consisting of a top, a bottom, and a side surface defining a cavity therein for containing the reversible drive transmission, an opening in a front portion and in a rear portion of the transmission housing through which the pick axle and drive shaft, respectively, pass, the front portion dimensioned so that the pick wheels each extend beyond the top and the bottom of the front portion, and a releasable latch mounted on the side surface for rotatably engaging a free end of the cantilevered drive shaft to axially position the pick mechanism on the drive shaft, the latch allowing a user to readily dismount the pick mechanism for service or replacement.05-03-2012
20120104679Method for Positioning and Feeding Media Into a Media Feed Path of an Image Forming Device - A method for positioning and feeding media into a media feed path according to one embodiment includes moving a first media sheet from the top of a stack of media sheets in a media storage location in a media process direction from an initial pick position into a media feed path leaving a second media sheet at the top of the stack of media sheets. In the media storage location, the second media sheet is moved opposite the media process direction away from an entrance to the media feed path until a leading edge of the second media sheet reaches a known predetermined position in the media storage location. After the leading edge of the second media sheet reaches the known predetermined position, the second media sheet is moved in the media process direction from the stack of media sheets into the media feed path.05-03-2012
20120104683System for Feeding and Separating Media in an Image Forming Device - A system for feeding and separating media in an image forming device according to one embodiment includes a pick mechanism having at least one rotatable pick roller for feeding a topmost media sheet from a stack of media sheets in a media storage location in a media process direction from an initial pick position into a media feed path. The system further includes at least one rotatable separator roller positioned opposite and spaced away from the at least one pick roller downstream from the initial pick position. The separator roller forms an open nip with the at least one pick roller. The at least one separator roller is rotatable counter to the media process direction for separating the topmost media sheet from an adjacent media sheet and returning the adjacent media sheet to a separation point upstream from the at least one separator roller.05-03-2012
20120104686RAISABLE LIFT PLATE SYSTEM FOR POSITIONING AND FEEDING MEDIA IN AN IMAGE FORMING DEVICE - A system for positioning and feeding media in an image forming device according to one embodiment includes a raisable lift plate having a top surface for receiving a stack of media sheets and a pick mechanism for feeding the media sheets into a media feed path. The system further includes a drive transmission having a single input, a first output connected to the pick mechanism for driving the pick mechanism, a second output connected to the lift plate for raising the lift plate, a first clutched gear connected to the first output of the drive transmission, and a second clutched gear connected to the first clutched gear and the second output of the drive transmission. The second clutched gear has an engagement opposite the first clutched gear. A single motor is connected to the input of the drive transmission for raising the lift plate and driving the pick mechanism.05-03-2012
20120104688METHOD FOR DETERMINING THE AMOUNT OF MEDIA SHEETS IN A MEDIA TRAY IN AN IMAGE FORMING DEVICE - A method for determining the amount of media sheets in a media tray in an image forming device according to one embodiment includes raising a lift plate supporting a stack of media sheets toward a pick mechanism for feeding the media sheets by rotation of a motor in a first direction. An amount of rotation of the motor in the first direction is determined. An indication of an amount of media sheets remaining in the media tray is provided based on the determined amount of rotation of the motor in the first direction.05-03-2012

Patent applications by Jeffrey Lawrence Tonges, Versailles, KY US

Jeffrey Lawrence Tonges, Versalles, KY US

Patent application numberDescriptionPublished
20120104680Method for Feeding Compressible Media in an Image Forming Device - A pick mechanism according to one exemplary embodiment includes transmission housing and a drive transmission engageable with a drive shaft for receiving rotational force from the drive shaft. A pick axle has at least one pick wheel mounted thereon and is operatively connected to the drive transmission for rotating the at least one pick wheel. A first stop extends from the transmission housing for limiting the rotation of the pick mechanism about the drive shaft. A method for feeding compressible media according to one embodiment includes rotating a pick mechanism downward about a drive shaft, limiting the downward rotation of the pick mechanism to convert the pick mechanism from a compliant element to a non-compliant element, and feeding a first compressible media from a top surface of a lift plate in a media process direction with the non-compliant pick mechanism.05-03-2012