Abstract:
An image scanning apparatus includes: a reflective document lamp that emits light to the surface of a reflective document; a carriage that has the reflective document lamp and an image sensor for detecting light and converting the detected light into an electric signal mounted thereon and reciprocates in a sub-scanning direction; an indicator lamp that emits light and indicates the state of the apparatus; a determining unit that determines whether the reflective document lamp is turned on by using the image sensor; and a control unit that controls the on or off state of the reflective document lamp, the on or off state of the indicator lamp, and the movement of the carriage. In the image scanning apparatus, when the determining unit determines that the reflective document lamp is not turned on, the control unit moves the carriage to a predetermined position such that the indicator lamp emits light to the reflective document lamp.
Abstract:
A line-imaging lens condenses a light beam from a light-source unit in one direction to form a line image. An optical deflecting unit deflects the light beam passing through the line-imaging lens. An imaging optical unit images the light beam deflected by the optical deflecting unit in a spot shape on a scanning surface to be scanned. An adjusting unit adjusts a position of irradiation of the light beam from the light-source unit on the optical deflecting unit.
Abstract:
An image reading apparatus of a contact image sensor type includes an area light source. The image reading apparatus is used for reading a light transmitting original placed on an original base by irradiating light thereto from the area light source and receiving transmission light. The original base has an uneven portion on a front surface on the side on which the light transmitting original is placed so that the adhesion of the light transmitting original to the original base is prevented upon placing the light transmitting original on the original base. The uneven portion does not effect optical characteristics for reading the light transmitting original.
Abstract:
A document platen. A support member supports an end portion of the document platen from below in a sub scanning direction. A sensor module has a first protruding portion protruding in the sub scanning direction. The sensor module includes a first sensor, and a second sensor being shorter than the first sensor in length and being housed into the first protruding portion. A transport unit transports the sensor module in the sub scanning direction. When the sensor module is transported to an end part in the sub scanning direction, the support member is housed into a space disposed at a side of the first protruding portion in a main scanning direction.
Abstract:
A height adjustment structure for an image-scanning device. The scanning device has a guiding rod, an optical system and a document panel. The guiding rod and the document panel are fixed relative to each other. The optical system includes a box body and an axial rod bearer that can slide along into the guiding rod. The height adjustment structure includes a first positioning section and a second positioning section. The first positioning section is attached to one side of the box body and the second positioning section is attached to one side the axial rod bearer that faces the first positioning section. The first positioning section and the second positioning section has hooking mechanism, screwing mechanism or teeth-meshing mechanism for fixing the box body relative to the axial rod bearer and hence setting the distance from the box body to the document panel.
Abstract:
Microelectromechanical pagewidth printheads include a very large number of ink ejection nozzles fabricated upon a silicon wafer. Ink stored in the printhead subsequent to a printing operation is vulnerable to becoming undesirably viscous thereby causing inconsistent printing. In order to address this problem the present invention provides a printhead recapping mechanism. The mechanism includes a base portion, that includes a solenoid coil and a movable capping portion which incorporates magnetically attractive material responsive to the coil. A spring biases the capping portion to a quiescent capping position when the printhead is not in use. During printing operations a current is applied to the solenoid coil to overcome the biasing spring and draw the capping portion from the capping position.
Abstract:
A device for image capture and processing for a print-on-demand camera includes image sensing circuitry. The device also includes memory circuitry for storing an image sensed by the image sensing circuitry. Analogue to digital conversion circuitry is interposed between the image sensing circuitry and the memory circuitry to digitize the image data from the sensing circuitry for storage in the memory circuitry. Decoding and processing circuitry is connected to the memory circuitry to decode and process the digitized image data stored in the memory circuitry. Drive circuitry is connected to the decoding and processing circuitry to drive at least one component of a printing mechanism of the print-on-demand camera.
Abstract:
A platen for a print on demand digital device, such as a digital camera, is provided. The platen includes a print media transport roller located on a first side of a planar member to support print media. A cutting mechanism is located on a second opposite side of the planar member to sever the print media. The cutting mechanism includes a cutting wheel mounted to a block threaded on a rotating threaded rod. A pawl extends from the block and is arranged to incrementally rotate a counter wheel with each cutting action.
Abstract:
Optical image scanners with a reduced optical head profile are provided. One embodiment is an optical image scanner having a reduced optical head profile. Briefly described, one such optical image scanner comprises an optical head assembly having a scanline axis and a translation system for translating the optical head assembly. The translation system is positioned within a cross-sectional width of the optical head assembly along the scanline axis of the optical head assembly.
Abstract:
An image reading apparatus includes a line light source having a light guide plate and red-, green-, and blue-LEDs, for a light transmitting original, and a contact image sensor unit for detecting light from the line light source. The light transmitting original is arranged between the line light source and the contact image sensor unit. The light transmitting original is read by moving the line light source and the contact image sensor unit relative to the light transmitting original. The line light source is moved interlockingly with the contact image sensor unit by the attraction between a magnet provided at both ends of the line light source in the longitudinal direction thereof and a magnet provided at both ends of the contact image sensor unit in the longitudinal direction thereof.