Abstract:
A replacement imaging chip includes a single row of contact pads adapted for engagement with an imaging device having rows and columns of contacts, the single row of contact pads disposed to contact the rows and columns of contacts when the replacement imaging chip is installed in the imaging device.
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 spoofing an imaging device adapted for reading data from an electrical storage device to determine a volume of ink in an ink container include providing a replacement electrical storage device for use with the ink container, the replacement electrical storage device comprising memory locations; and responding, by the replacement electrical storage device, to reads of memory locations of the replacement electrical storage device by returning data to the imaging device which causes the imaging device to calculate an inaccurate initial volume of ink stored in the ink container.
Abstract:
An ink jet remanufacturing chip verifier for new ink jet chips attached to remanufactured ink jet cartridges includes a controller for verifying during the process of remanufacturing the ink jet cartridges: if the new ink jet chips attached to the remanufactured ink jet cartridges are new ink jet chips, if the new ink jet chips attached to the remanufactured ink jet cartridges were manufactured by a predetermined manufacturer of new ink jet chips, if the new ink jet chips attached to the remanufactured ink jet cartridges are functional, and if the new ink jet chips attached to the remanufacture ink jet cartridges are a predetermined type of new ink jet chip; the controller for rejecting during the process of remanufacturing the ink jet cartridges: ink jet chips attached to remanufactured ink jet cartridges which have been previously used, ink jet chips attached to remanufactured ink jet cartridges which produced by manufacturers other than the predetermined manufacturer of inkjet chips, inkjet chips attached to remanufactured inkjet cartridges which are not functional, inkjet chips attached to remanufactured inkjet cartridges which are not a predetermined type of new inkjet chips; and a user interface for communicating the verification or rejection of the new ink jet chips from the controller during the process of remanufacturing.
Abstract:
Techniques are provided for modifying an image processing cartridge. In one aspect, a method of modifying one such imaging process cartridge is disclosed. The method provides the imaging process cartridge, the imaging process cartridge has a waste bin assembly, and the waste bin assembly further has an organic photo conductor (OPC) drum which is coupled with a first wiper blade. The first wiper blade exerts a first abutment pressure when the first wiper blade is coupled to the OPC drum. The method removes the first wiper blade and installs a second wiper blade, wherein the second wiper blade exerts a second abutment pressure when coupled to the OPC drum.
Abstract:
A method of cleaning and coating a used organic photoconductive drum is disclosed. Using this method remanufacturers can reliably reuse certain used organic photoconductive drums which could not be reused without this method. The method comprises providing a used organic photoconductive drum, cleaning the surface of the used organic photoconductive drum, applying a new surface layer comprising a non-volatile non-polar dielectric fluid such as a silicone oil with a viscosity of less than 200 cSt at 40 degrees Celsius. The resulting liquid surface on the used organic photoconductive drum provides wear resistance, and improved electrical characteristics allowing the used organic photoconductive drum to be used at least a second time.
Abstract:
A cartridge chip for use with a first type of imaging cartridge and a second type of imaging cartridge comprises a controller and a resistive element connected between the controller and a reference potential, the cartridge chip adapted for operation in a first mode of operation compatible with the first type of imaging cartridge when the controller detects the reference potential through the resistive element, the cartridge chip adapted for operation in a second mode of operation compatible with the second type of imaging cartridge when the controller cannot detect the reference potential through the resistive element.
Abstract:
A universal ink cartridge seal is disclosed. The seal is used to seal an exit port on an ink jet cartridge. The seal has a top and a surrounding wall. The surrounding wall extends perpendicularly away from the circumference of the top. The surrounding wall has an inside surface. The seal further has a rib positioned on the inside surface of the surrounding wall, the rib providing a securing force when the seal is installed on the exit port of the ink jet cartridge.
Abstract:
A toner cartridge comprises toner and electrical development components which consume a portion of the toner by printing a plurality of images. An electronic circuit stores an indication of the amount of toner remaining, and a value controlling a voltage applied to at least one of the electrical development components. The electronic circuit determines when a predetermined amount of the toner remains in the toner cartridge. When the predetermined amount of toner remains in the toner cartridge, the electronic circuit alters the amount of toner consumed to form images by changing a voltage level applied to at least one of the electrical development components. The electronic circuit alters the amount of toner consumed by replacing the stored value controlling the voltage applied to at least one of the electrical development components with a new value controlling the voltage applied to at least one of the electrical development components.
Abstract:
Techniques are provided for modifying an image processing cartridge. In one aspect, a method of modifying one such imaging process cartridge is disclosed. The method provides the imaging process cartridge, the imaging process cartridge has a waste bin assembly, and the waste bin assembly further has an organic photo conductor (OPC) drum which is coupled with a first wiper blade. The first wiper blade exerts a first abutment pressure when the first wiper blade is coupled to the OPC drum. The method removes the first wiper blade and installs a second wiper blade, wherein the second wiper blade exerts a second abutment pressure when coupled to the OPC drum.