B41J13/12

CARD PRINTING MECHANISM WITH CARD RETURN PATH
20220121899 · 2022-04-21 ·

Card processing mechanisms and methods whereby after a card has been processed on one surface thereof at a card processing station such as, but not limited to, a card printing mechanism, the card can be recirculated back upstream of the card processing station along a return card travel path that is separate from the primary card travel path through the card processing station where the card can then be reintroduced back into the primary card travel path and transported through the card processing station a second time. As the card is being returned along the return card travel path, the card can be flipped over so that when the card is transported back through the card processing station, the opposite surface of the card can be processed.

Card-issuing device
11186096 · 2021-11-30 · ·

A card-issuing device may include a card stack unit, a card feeding mechanism. A card reader unit configured to perform at least one of reading of data recorded on a card and recording of data onto a card, a printing unit, and a card-flipping unit. The printing unit may include a supply roll, a winding roll, and a thermal head. The thermal head may be arranged between the supply roll and the winding roll in a front-rear direction of the card-issuing device, the supply roll and the winding roll may be arranged above the thermal head, and the card stack unit, the card-flipping unit, the thermal head, and the card reader unit may be arranged in that order in the front-rear direction.

Card-issuing device
11186096 · 2021-11-30 · ·

A card-issuing device may include a card stack unit, a card feeding mechanism. A card reader unit configured to perform at least one of reading of data recorded on a card and recording of data onto a card, a printing unit, and a card-flipping unit. The printing unit may include a supply roll, a winding roll, and a thermal head. The thermal head may be arranged between the supply roll and the winding roll in a front-rear direction of the card-issuing device, the supply roll and the winding roll may be arranged above the thermal head, and the card stack unit, the card-flipping unit, the thermal head, and the card reader unit may be arranged in that order in the front-rear direction.

Contaminant control process in a retransfer card printer
11220099 · 2022-01-11 · ·

A retransfer printing process that prevents dust and other contaminants from becoming statically or otherwise attached to the transfer layer of the retransfer film and/or to the print ribbon used to print on the retransfer film. In the described process, some or all of the unused retransfer film is rewound back onto the retransfer film supply and/or some or all of the unused print ribbon is rewound onto the print ribbon supply, for example until the next print job is submitted.

DESKTOP PLASTIC CARD PRINTER WITH REMOVABLY INSTALLABLE SMART CARD CARTRIDGE
20210339546 · 2021-11-04 ·

A desktop plastic card printer that is configured to allow installation of a smart card cartridge within an interior space of the printer housing through an opening, for example an opening in a side wall, in the printer housing. Both the mechanical installation and electrical installation of the smart card cartridge occurs via the opening. This allows the desktop plastic card printer to be quickly and easily retrofitted to have the ability to electronically read data from and/or electronically program data on an integrated circuit chip of a plastic card. The retrofitting can take place without using any mechanical tools and without having to remove the entire, or a substantial portion of, the printer housing.

DESKTOP PLASTIC CARD PRINTER WITH REMOVABLY INSTALLABLE SMART CARD CARTRIDGE
20210339546 · 2021-11-04 ·

A desktop plastic card printer that is configured to allow installation of a smart card cartridge within an interior space of the printer housing through an opening, for example an opening in a side wall, in the printer housing. Both the mechanical installation and electrical installation of the smart card cartridge occurs via the opening. This allows the desktop plastic card printer to be quickly and easily retrofitted to have the ability to electronically read data from and/or electronically program data on an integrated circuit chip of a plastic card. The retrofitting can take place without using any mechanical tools and without having to remove the entire, or a substantial portion of, the printer housing.

Printer

A printer for printing plate-like media, in particular for printing marker cards with markers for marking electrical appliances includes a housing and at least one input station for the marker cards to be printed The printer further includes a printing station with a printing device and an output station for printed marker cards. The output station has a magazining device which has one or more guide devices so that the output station, with the magazining device, can be drawn from a position pushed into the housing into a position outside the housing and can be pushed back into the housing of the printer, Each guide device also has its own stacking unit which is pivotably mounted.

Printer

A printer for printing plate-like media, in particular for printing marker cards with markers for marking electrical appliances includes a housing and at least one input station for the marker cards to be printed The printer further includes a printing station with a printing device and an output station for printed marker cards. The output station has a magazining device which has one or more guide devices so that the output station, with the magazining device, can be drawn from a position pushed into the housing into a position outside the housing and can be pushed back into the housing of the printer, Each guide device also has its own stacking unit which is pivotably mounted.

Inkjet printer image improvement techniques

Techniques for reducing or eliminating image banding in an ink-jet image are provided. In an example, a method of operating a printer to reduce or eliminate image banding can include generating command profile for printing a given image, applying a filter to the command profile to provide a filtered profile, and dispensing ink from a printhead of the printer based on the filtered profile. In certain examples, the filter can randomize droplet sizes of ink dispensed while executing the printing to reduce or eliminate image banding.

Inkjet printer image improvement techniques

Techniques for reducing or eliminating image banding in an ink-jet image are provided. In an example, a method of operating a printer to reduce or eliminate image banding can include generating command profile for printing a given image, applying a filter to the command profile to provide a filtered profile, and dispensing ink from a printhead of the printer based on the filtered profile. In certain examples, the filter can randomize droplet sizes of ink dispensed while executing the printing to reduce or eliminate image banding.