Abstract:
Disclosed is a system and method for verifying a chip having a memory. Remanufacturers of imaging devices, such as inkjet printers or electrostatic printers, often have to use a replacement chip in order to reuse an imaging cartridge. It is desirable to have a system and method for determining if the replacement chip is suitable for use with a specific imaging cartridge. Also, it may be desirable to confirm that the chip was manufactured by a specific manufacturer. The disclosed system and method allow the remanufacturer a reliable and efficient way to verify chips.
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 method of modifying an imaging cartridge detachably mountable to an imaging apparatus, the imaging cartridge comprising a cartridge chip, the method including detaching the cartridge chip from the imaging cartridge, the cartridge chip comprising a light emitting device adapted for emitting light in the visible spectrum; and attaching a replacement cartridge chip to the imaging cartridge, the replacement cartridge chip comprising a light emitting device adapted for emitting light outside the visible spectrum.
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:
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:
A method of remanufacturing a replaceable consumable unit includes providing the replaceable consumable unit including a first electronic circuit, with the first electronic circuit being at least partially inoperable; providing a second electronic circuit; communicatively connecting the second electronic circuit to the first electronic circuit; and intercepting, by the second electronic circuit, signals sent by an imaging system to the first electronic circuit.
Abstract:
An electronic module for use in a printer consumable unit includes a first input and output (I/O) port adapted connected to an external contact, and a second I/O port connected to the external contact. Circuitry controls the electronic module and responds to read memory commands and write memory commands received through the external contact on the I/O ports. A memory stores data. A third port is connected to the external contact and adapted to source current. The circuitry is initially configured to send and receive data through the first I/O port. The circuitry tests the functionality of the first I/O port by directing the third port to source current and drive the external contact to a predetermined voltage, and read a voltage received by the first I/O port in response to sourced current. If the circuitry determines the first I/O port is not functioning correctly based on the read voltage, the circuitry will send and receive data through the second I/O port.
Abstract:
An electrical power probe is provided. In one aspect, an electrical power probe includes a power probe control unit adapted to connect to a direct current (DC) power source and receive an input source voltage from the DC power source. The power probe control unit comprises a power switch controlling the switching of the input source voltage to a cable. A power probe wand includes a conductive wand tip and a user controlled switch, with the wand tip being connected to the power switch by the cable. The power probe control unit sends a query message to the power probe wand. The power probe wand unit sends a response to the power probe control unit in response to the query message, with response indicating the position of the user controlled switch. The power probe control unit selectably switches the power switch based on the position of the user controlled switch.
Abstract:
Disclosed is a system and method for verifying a chip having a memory. Remanufacturers of imaging devices, such as inkjet printers or electrostatic printers, often have to use a replacement chip in order to reuse an imaging cartridge. It is desirable to have a system and method for determining if the replacement chip is suitable for use with a specific imaging cartridge. Also, it may be desirable to confirm that the chip was manufactured by a specific manufacturer. The disclosed system and method allow the remanufacturer a reliable and efficient way to verify chips.
Abstract:
Disclosed is a system and method for verifying a chip having a memory. Remanufacturers of imaging devices, such as inkjet printers or electrostatic printers, often have to use a replacement chip in order to reuse an imaging cartridge. It is desirable to have a system and method for determining if the replacement chip is suitable for use with a specific imaging cartridge. Also, it may be desirable to confirm that the chip was manufactured by a specific manufacturer. The disclosed system and method allow the remanufacturer a reliable and efficient way to verify chips.