Abstract:
An imaging apparatus includes an image capturing system. A controller is communicatively coupled to the image capturing system. A scanner body has a scanner opening. The image capturing system is located adjacent the scanner opening. A document planar member is positioned across the scanner opening. The document planar member is communicatively coupled to the controller. The document planar member has an input operating state wherein the document planar member receives at least one input from a user input object and supplies the at least one input to the controller for further processing.
Abstract:
An imaging apparatus includes an image capturing system. A controller is communicatively coupled to the image capturing system. A scanner body has a scanner opening. The image capturing system is located adjacent the scanner opening. A document planar member is positioned across the scanner opening. The document planar member is communicatively coupled to the controller. The document planar member has an input operating state wherein the document planar member receives at least one input from a user input object and supplies the at least one input to the controller for further processing.
Abstract:
An apparatus for perforating a sheet of print media having a front side and a back side includes a printhead carriage for carrying a printhead. A perforator carriage carries a perforation forming mechanism. An isolation damper having elastic, vibration absorbing, characteristics couples the printhead carriage to the perforator carriage.
Abstract:
An imaging apparatus includes a scan bar having a scanner head. A drive mechanism is drivably coupled to the scan bar. A controller is communicatively coupled to the scanner head and the drive mechanism. A scanner body has a cover defining a scanner opening in which a document glass is mounted. The scan bar is located below the cover. The scanner body has a home position opening separate from the scanner opening that passes through the cover. A scanner lid is pivotably coupled to the scanner body. The scanner lid has a home protrusion located for mating engagement with the home position opening of the scanner body when the scanner lid is closed to define a home position for the scanner head.
Abstract:
Multiple enhancements are provided to a smart copy function of an imaging device to improve performance by making it operate in a time efficient manner. The enhancements include determining pre-positioning of the scan bar based upon the content type setting in the user interface. The smart copy function is also enhanced by determining when to implement and implementing a second pre-scan at a higher resolution when misidentification occurs. Another enhancement uses original size and edge to edge properties to determine content of the original document, which then allows optimal selection of the final copy scan and print parameters.
Abstract:
An imaging apparatus includes an image capturing system. A controller is communicatively coupled to the image capturing system. A scanner body has a scanner opening. The image capturing system is located adjacent the scanner opening. A document planar member is positioned across the scanner opening. The document planar member is communicatively coupled to the controller. The document planar member has a transparent state wherein the document planar member is clear and having a translucent state wherein the document planar member is translucent. The controller executes program instructions to control the document planar member to display scan operation related indicia formed by controlling a first portion of the document planar member to be in the transparent state and controlling a second portion of the document planar member to be in the translucent state.
Abstract:
An imaging apparatus includes a scan bar having a scanner head. A drive mechanism is drivably coupled to the scan bar. A controller is communicatively coupled to the scanner head and the drive mechanism. A scanner body has a cover defining a scanner opening in which a document glass is mounted. The scan bar is located below the cover. The scanner body has a home position opening separate from the scanner opening that passes through the cover. A scanner lid is pivotably coupled to the scanner body. The scanner lid has a home protrusion located for mating engagement with the home position opening of the scanner body when the scanner lid is closed to define a home position for the scanner head.
Abstract:
An imaging apparatus includes an image capturing system. A controller is communicatively coupled to the image capturing system. A scanner body has a scanner opening. The image capturing system is located adjacent the scanner opening. A document planar member is positioned across the scanner opening. The document planar member is communicatively coupled to the controller. The document planar member has a transparent state wherein the document planar member is clear and having a translucent state wherein the document planar member is translucent. The controller executes program instructions to control the document planar member to display scan operation related indicia formed by controlling a first portion of the document planar member to be in the transparent state and controlling a second portion of the document planar member to be in the translucent state.
Abstract:
A printing system including a substrate and a dual-mode printing device, the dual-mode printing device including a permanent writing source and a transient writing source, wherein the permanent writing source is adapted to deposit an imaging material onto the substrate and the transient writing source is adapted to develop an image on the substrate by applying a stimulus to the substrate.
Abstract:
A micro-miniature fluid ejecting device. The fluid ejecting device includes a semiconductor substrate having fluid ejectors formed on a surface of the substrate. A flexible circuit is fixedly attached to the semiconductor substrate. The flexible circuit has power contacts for providing power to the fluid ejectors. At least one drive circuit is connected to the fluid ejectors. The drive circuit is disposed on one of the semiconductor substrate and the flexible circuit. A fluid sequencer is connected to the drive circuit for selectively activating the fluid ejectors. The fluid sequencer is also disposed on one of the semiconductor substrate and the flexible circuit. The semiconductor substrate is attached to a housing. A fluid source is provided for supplying fluid to the semiconductor substrate for ejection by the fluid ejectors. The fluid ejecting device provides low cost construction for application specific miniature fluid jetting devices.