Abstract:
Systems and methods of remanufacturing an imaging cartridge including the replacement a rotatable member, such as an organic photo conductor (OPC) drum or toner adder roller, for example, in the imaging cartridge without detaching the rotatable member retaining elements, such as end caps, for example, and installing a replacement rotatable element without disturbing the rotatable member retaining elements end caps.
Abstract:
Provided is a motion converter which comprises a housing, a cam plate reciprocal to the housing, a lower link and an upper link. The cam plate has a groove which extends diagonally across the width thereof. The lower link is pivotably mounted to the housing and has a cam pin and a slot formed at a free end thereof. The cam pin is engageable to the groove of the cam plate. The upper link is also pivotably mounted to the housing in offset relationship to the lower link. A free end of the upper link has a link pin which is engageable to the slot. The motion converter is configured such that the lower link pivots in response to slidable movement of a cam pin within the groove during reciprocation of the cam plate. The upper link is configured to pivot in response to the slidable movement of the link pin within the slot during pivoting in a lower link.
Abstract:
A universal cartridge chip for use with an imaging process cartridge installed in an imaging device is disclosed. The universal cartridge chip includes a memory storing imaging process cartridge data. The universal cartridge chip may be installed on the imaging process cartridge in a first orientation or a second orientation. If the cartridge chip is installed in a first orientation, the cartridge chip operates in a first mode. If the cartridge chip is installed in a second orientation the cartridge chip operates in a second mode.
Abstract:
Techniques for remanufacturing an imaging cartridge include providing the imaging cartridge including a memory element storing cartridge usage data, reading from the memory element the cartridge usage data, analyzing the cartridge usage data to produce results, and determining, based on the results, if a component of the imaging cartridge needs to be replaced. A cartridge memory interface device includes processing circuitry adapted for reading cartridge usage data from the memory element of the imaging cartridge. The processing circuitry is further adapted for analyzing the cartridge usage data to produce results for determining if any components of the imaging cartridge need to be replaced. A user interface displays the results to a user.
Abstract:
A drive gear for a generally cylindrical imaging component. The drive gear includes a body for engaging the generally cylindrical imaging component; a cylindrical shaft attached to the body, the cylindrical shaft having an end surface; and three prongs extending longitudinally outward from the end surface.
Abstract:
Techniques for remanufacturing a toner cartridge include providing the toner cartridge including an end plate secured to an end of the toner cartridge, removing the end plate from the toner cartridge, attaching an anchoring fixture to the end of the toner cartridge, and securing the end plate to the anchoring fixture of the toner cartridge.
Abstract:
Techniques for attaching a replacement chip to an imaging cartridge are described. a method of replacing a component of an imaging cartridge includes: providing the imaging cartridge comprising a chip and a chip holding structure holding the chip, the chip holding structure including a left upper flange, a right upper flange, a rear retaining member, bottom supporting rails, a left forward retaining element extending from the left upper flange, and a right forward retaining element extending from the right upper flange; removing at least a portion of the left forward retaining element and the right forward retaining element to form a modified chip holding structure; removing the chip from the cartridge; installing a replacement chip in the modified chip holding structure; and attaching the replacement chip to the imaging cartridge.
Abstract:
A method for modifying a process cartridge includes providing the process cartridge comprising a waste bin having physical characteristics. The method further includes altering the physical characteristics of the waste bin to form an altered process cartridge.
Abstract:
A dual-gasket seal for a toner cartridge includes a first gasket, a second gasket, a removable seal disposed between the first gasket and the second gasket, and a lubricating element attached a first end of the second gasket and adapted to aid the sliding of the removable seal when the removable seal is removed.
Abstract:
In accordance with the present invention, there is provided a lie loaded packing assembly for a valve which comprises a valve body defining a passage having a valve stem moveably disposed therein and selectively moveable between open and closed positions. Extending about a portion of the valve stem is a packing. One end of a sleeve of the valve bears axially onto and compresses the packing, with a spigot of the valve being cooperatively engaged to the opposite end of the sleeve. A clamp of the valve is cooperatively engaged to the valve body, with a pair of bolts extending between and being secured to the clamp, the spigot, and a flange member which is itself cooperatively engaged to the spigot. The combination of the bolt, spigot and flange member provide an integral spring construction for the valve.