Abstract:
Methods for generating an inverse mask image are provided. In one aspect, image data is determined for an image to be printed said image data having color data for a first set of colors used in a first color model; and, an inverse mask toner image is generated using color data for one of the first set of colors. The inverse mask image is generated based upon the color data for a selected one of the first set of colors so that the inverse mask pattern can be generated without first determining of color separation toner images that define amounts of color toner to be applied to a receiver to form the image.
Abstract:
The present invention relates to a multi-functional cap having an assistant visor that can be detached and can shield even portions that are not shielded by a visor 20 of an existing cap. The multi-functional cap includes a crown portion formed to cover the head, a visor 20 extended from a crown portion, and an assistant visor that is detachably coupled to the edge of the crown portion and the edge of the visor 20, wherein the assistant visor comprises foldable visor units, and fixed units for fixing the assistant visor to the crown portion and the visor 20.
Abstract:
A dye donor cartridge and method for use in a printer. The cartridge comprises a dye donor ribbon formed into a roll. The dye donor ribbon has an end portion. A shield is attached to the end portion of the dye donor ribbon and surrounds the dye donor ribbon as the dye donor ribbon forms the roll. In this manner, the shield shields the dye donor ribbon from damage during handling of the ribbon roll. The dye donor ribbon roll including its shield is mountable on a supply spool, so that the dye donor ribbon unrolls from about the supply spool as the supply spool rotates. The shield preferably has a plurality of sprocket holes for engaging the sprockets of a take-up spool, so that the dye donor ribbon is precisely taken-up onto the take-up spool without "jamming" as the take-up spool rotates. An alternative embodiment of the invention comprises an encasement surrounding the shield as the shield surrounds the dye donor ribbon for enhancing protection of the dye donor ribbon roll during handling. The encasement has a slit for passage of the shield and the dye donor ribbon therethrough. Moreover, the encasement includes an integrally attached lip of predetermined shape and extending along the slit for separating the shield from the roll of dye donor ribbon and for guiding the shield through the slit.
Abstract:
Sheets are bound to form a bound document by fastening together the sheets and a binding strip. A spacer is applied to a back sheet adjacent to the feet of the fasteners. A wraparound portion of the binding strip is folded around the spine edges of the sheets so that adhesive on the strip contacts the spacer or the back sheet farther from the spine than the feet of the fasteners. The adhesive is affixed to the back sheet. The binding strip includes a spacer adjacent to the heads of the fasteners, protruding above the face-attachment portion at least as far as the heads of the fasteners do.
Abstract:
A binding strip includes a substrate having an interior surface and an exterior surface, a spine-alignment edge, a free edge opposite the spine-alignment edge and substantially non-perpendicular thereto, a face-attachment portion of the exterior surface adjacent to the spine-alignment edge, and a wraparound portion of the interior surface adjacent to the free edge. A border is defined laterally between the face-attachment portion and the wraparound portion and substantially parallel to the spine-alignment edge. An adhesive layer is arranged over the wraparound portion. A first spacer is affixed to the interior surface opposite the face-attachment portion so that a fastener area is defined. The spacer has a selected thickness.
Abstract:
A bound document has front, back, and interior sheets with spine edges. The document has a binding strip and fasteners binding the sheets and the binding strip together. The strip has a flexible substrate with a face-attachment portion through which the fasteners are driven, and a wraparound portion that is bent so adhesive on the wraparound portion contacts the back sheet farther from the spine edge of the book than the feet of the fasteners. The strip also has a first spacer affixed to the interior surface opposite the face-attachment portion so that a fastener area is defined, the spacer at least as thick as the protrusion of the heads of the fasteners above the face-attachment portion.
Abstract:
Both a method and printer are provided that utilize a single microprocessor to modulate a thermal printhead and implement all other printing functions. In the method of the invention, the microprocessor expands numerical image data in the form of binary numbers indicative of the color tone of an image pixel into data bit streams. The microprocessor then stores at least a portion of each of the data bit streams in a temporary memory, and sequentially collates single bits of each of the data bit streams into a serial string of data bits which are then loaded into a shift register to modulate the thermal elements of the printhead. The storage of the expanded numerical image data into a temporary memory obviates the need for the microprocessor to expand each binary number of the image data a multiplicity of times, thereby allowing the microprocessor to modulate the thermal printhead while freeing up its capacity to implement all of the other necessary printing functions, thereby obviating the need for the ASIC used to modulate the printhead in prior art printers.
Abstract:
Both a method and apparatus are provided for sizing and operating enable groups of thermal elements in a thermal printer to allow the printer to be operated by power sources having outputs too small to operate all of the thermal elements simultaneously. Prior to the printing operation, the maximum number of thermal elements that can be actuated by the output of the power source is determined, and then divided into the total number of thermal elements. Next, the resulting quotient is rounded up into the nearest integer in order to ascertain the number of enable groups. The number of enable groups is then divided into the total number of thermal elements to determine the size of each enable group. During the printing operation, streams of non-actuating data are multiplexed into the stream of image data to create virtual enable groups wherein the number of thermal elements actuatable by the image data is no greater than the number of thermal elements in any of the enable groups at any time during the printing operation, thereby preventing the power source from being overtaxed.
Abstract:
The present invention relates to techniques for ensuring that an image receiving sheet, which has only one major surface thereof coated with an image receiving coating, is properly oriented prior to an image being printed thereon. The image receiving sheet has a concave or convex irregularity (e.g., a notch, arc, etc.) formed in at least one nominally straight edge of the sheet. In a first embodiment, a mechanical or optical sensing means detects whether or not the image receiving sheet is stacked correctly in a loading tray by sensing whether or not the edge irregularities are properly positioned. In a second embodiment, an edge and a notch sensing means detect whether or not the image receiving sheet is oriented properly while being fed into the printer. An improperly loaded image receiving sheet is either not fed into the printer, or transits the printer without causing the printer to attempt to print the image thereon. A visual and/or audible alarm can be activated upon the detection of an improperly loaded image receiving sheet to apprise a printer operator of the improperly loaded sheet.
Abstract:
A binding strip includes a substrate having an interior surface and an exterior surface, a spine-alignment edge, a free edge opposite the spine-alignment edge and substantially non-perpendicular thereto, a face-attachment portion of the exterior surface adjacent to the spine-alignment edge, and a wraparound portion of the interior surface adjacent to the free edge. A border is defined laterally between the face-attachment portion and the wraparound portion and substantially parallel to the spine-alignment edge. An adhesive layer is arranged over the wraparound portion. A first spacer is affixed to the interior surface opposite the face-attachment portion so that a fastener area is defined. The spacer has a selected thickness.