Abstract:
A document imaging apparatus (10) for recording document data has an imager body (12) that has an image data transformation apparatus (34) and a paper feed apparatus (36) for urging a document sheet along a paper path from a paper feed input source (14), past the image data transformation apparatus (34), to an output slot (16). The imager body (12) is pivotably coupled to a support pedestal (20) for adjusting the tilt angle of the imager body (12) to one of a plurality of tilt angle positions.
Abstract:
Provided is a self-running type scanner comprising a movable scanner unit (1′) and a running guiding and assisting plate (23) mounting the scanner unit for guiding running of the scanner unit. The movable scanner unit comprises an illuminating light source (10), a step motor (46) from running the scanner unit, an image sensor (13), a controller (20) for controlling provision of image information and running of the scanner unit, and wheels (21, 22) to which the rotation force of the motor is transmitted. The running assisting plate comprises guides (33a, 33b) engaging with the wheels, a light transmitting area (34), a white area (35) around the light transmitting area, a black area (D) surrounding the white area and the light transmitting area, and timing marks (36, 37) indicative of the position for starting reading.
Abstract:
Line imaging apparatus (10) including at least one elongated, linear array (50) of photosensitive elements (50 a ), said elongated array adapted to traverse an image bearing surface (13) and provide photogenerated output signals representative of both the image formed on said surface as well as the image projected (36) onto said surface.
Abstract:
Apparatus (ll) for generating electronic signals which are representative of a detectable condition on an image-bearing surface (lO). The apparatus includes an elongated (56) array of distinct, thin film, photosensitive elements (64) formed on a common flexible large area substrate (7O). The elongated array of photosensitive elements is fabricated as a large area, photovoltaic structure formed of a plurality of thin film layers (82), including a first layer of thin film, electrically conductive material. The discrete photosensitive elements are defined by patterning of the conductive layer into shaped regions which determine the overall configuration and dimensions of each element. The novel apparatus utilizes a large area linear array of amorphous silicon alloy photosensitive elements and is adapted to provide automatic adjustment for sensor and circuit variables as well as for changes in the intensity of image illumination. The apparatus may include an arm (l8) adapted to move over at least a portion of the surface, the arm having said elongated array of discrete photosensitive elements mounted thereupon. The array of discrete photosensitive elements is formed on a flexible substrate so as to be capable of reading the detectable conditions of a non-planar, image bearing surface (3l4). The imaging apparatus may also include a lensless optical system (4O2) for directing light from each particular surface portion onto a corresponding photosensitive element. Finally, each of said elements may be provided with a filter adapted to limit the photogeneration of charge carriers by each element to specific wavelengths of light.
Abstract:
Systems, apparatuses, and methods for a self-propelled image translation device are described herein. The self-propelled image translation device may include a propulsion module to control propulsion components to autonomously propel the image translation device over an adjacent medium. An input/output module of the self-propelled image translation device may control input/output components to translate an image between the device and an adjacent medium.
Abstract:
A document imaging apparatus (10) for recording document data has an imager body (12) that has an image data transformation apparatus (34) and a paper feed apparatus (36) for urging a document sheet along a paper path from a paper feed input source (14), past the image data transformation apparatus (34), to an output slot (16). The imager body (12) is pivotably coupled to a support pedestal (20) for adjusting the tilt angle of the imager body (12) to one of a plurality of tilt angle positions.
Abstract:
Provided is a self-running type scanner comprising a movable scanner unit (1′) and a running guiding and assisting plate (23) mounting the scanner unit for guiding running of the scanner unit. The movable scanner unit comprises an illuminating light source (10), a step motor (46) from running the scanner unit, an image sensor (13), a controller (20) for controlling provision of image information and running of the scanner unit, and wheels (21, 22) to which the rotation force of the motor is transmitted. The running assisting plate comprises guides (33a, 33b) engaging with the wheels, a light transmitting area (34), a white area (35) around the light transmitting area, a black area (D) surrounding the white area and the light transmitting area, and timing marks (36, 37) indicative of the position for starting reading.
Abstract:
An image reading apparatus includes a drive unit that is mounted on a carriage having an image reading sensor, which is moved with respect to an original, mounted thereon and moves the carriage. The drive unit includes: a motor; a gear train for transmitting rotation of the motor so as to move the carriage; an encoder sensor for reading a code wheel fixed to a rotary shaft of the motor; and a support member for holding the motor. The encoder sensor is urged against a part of the support member by a resilient member, to be thus fixed to the support member.
Abstract:
A document imaging apparatus (10) for recording document data has an imager body (12) that has an image data transformation apparatus (34) and a paper feed apparatus (36) for urging a document sheet along a paper path from a paper feed input source (14), past the image data transformation apparatus (34), to an output slot (16). The imager body (12) is pivotably coupled to a support pedestal (20) for adjusting the tilt angle of the imager body (12) to one of a plurality of tilt angle positions.
Abstract:
A scanning apparatus includes a housing with a scan flatbed. A loading glass is installed at the scan flatbed of the housing for loading a to-be-scanned document. A photoelectric sensing device senses the light corresponding to the to-be-scanned document to generate electric signals. The electric signals are transmitted through a flat cable to a motherboard. The flat cable is designed to include a line peak so that the surface friction between the flat cable and the loading glass can be reduced to line friction. The flat cable can also be shifted near the sidewall of the housing and is inclined to the center of the housing so that the friction traces remained on the loading glass is outside the scan flatbed. Thus, the abrasion on the loading glass can be reduced and the quality of the scanning images can be improved.