Abstract:
The invention provides an image reading apparatus that scans an image from an original document including: a light source that irradiates a light to the original document; a photoelectric conversion element; a driving mechanism that relatively moves either one of the photoelectric conversion element or the original document in a predetermined direction with respect to the other; a detection sensor that detects a vector amount of movement of either one of the photoelectric conversion element or the original document in the predetermined direction with respect to the other so as to output a detection signal for each vector amount of movement that corresponds to a minimum unit of a reading area of the image; and a control unit that executes one cycle of operations each time when the detection signal is outputted from the detection sensor.
Abstract:
An image reading apparatus which performs shading correction using black reference data, wherein in the process of obtaining the black reference data, the image reading apparatus includes a reading control section that outputs a shift pulse which is the start timing of charge accumulation corresponding to each RGB color and controls the process of lighting of the light source of a predetermined color for a predetermined period after a predetermined period having elapsed since the output of each shift pulse, and a data processing section that does not obtain the data output from the image sensor as the black reference data according to the shift pulse and obtains the data output from the image sensor as the black reference data during a period that at least overlaps with the lighting period.
Abstract:
An image reading apparatus which performs shading correction using black reference data, wherein in the process of obtaining the black reference data, the image reading apparatus includes a reading control section that outputs a shift pulse which is the start timing of charge accumulation corresponding to each RGB color and controls the process of lighting of the light source of a predetermined color for a predetermined period after a predetermined period having elapsed since the output of each shift pulse, and a data processing section that does not obtain the data output from the image sensor as the black reference data according to the shift pulse and obtains the data output from the image sensor as the black reference data during a period that at least overlaps with the lighting period.
Abstract:
There is provided an image input device in which a carriage mounted with an image sensor and three types of light source is moved in a sub-scanning direction of a document by a motor and the document is read in a line sequential manner. The image input device includes a controller controlling a driving of the motor, an operation of the image sensor, and lighting and extinguishing operations of the light source; and a detecting unit outputting an edge signal to the controller when detecting a movement of the carriage corresponding to one sub-scanning line. The controller is configured to sequentially light and extinguish the three types of light source whenever receiving the edge signal from the detecting unit so as to sequentially read out electric charge stored in the image sensor during the lighting period of the respective light source; and discard the electric charge stored in the image sensor during an intervening period before receiving a subsequent edge signal.
Abstract:
An image reading apparatus which performs a shading correction by using white reference data, includes an image sensor which transfers accumulated charge to a shift register by a shift pulse; a motor for moving a carriage; an encoder; and a shift pulse control unit, wherein in a white reference data acquisition process, the shift pulse control unit outputs a shift pulse which is a start timing of the charge accumulation corresponding to a predetermined reference color in a case in which an output result of the encoder is in a predetermined state, outputs a shift pulse which is a start timing of the charge accumulation corresponding to each color other than the predetermined reference color in a case in which a predetermined time for each color other than the predetermined reference color has elapsed from the start timing of the charge accumulation corresponding to the predetermined reference color as a reference.
Abstract:
The invention provides an image reading apparatus that scans an image from an original document including: a light source that irradiates a light to the original document; a photoelectric conversion element; a driving mechanism that relatively moves either one of the photoelectric conversion element or the original document in a predetermined direction with respect to the other; a detection sensor that detects a vector amount of movement of either one of the photoelectric conversion element or the original document in the predetermined direction with respect to the other so as to output a detection signal for each vector amount of movement that corresponds to a minimum unit of a reading area of the image; and a control unit that executes one cycle of operations each time when the detection signal is outputted from the detection sensor.
Abstract:
There is provided an image input device in which a carriage mounted with an image sensor and three types of light source is moved in a sub-scanning direction of a document by a motor and the document is read in a line sequential manner. The image input device includes a controller controlling a driving of the motor, an operation of the image sensor, and lighting and extinguishing operations of the light source; and a detecting unit outputting an edge signal to the controller when detecting a movement of the carriage corresponding to one sub-scanning line. The controller is configured to sequentially light and extinguish the three types of light source whenever receiving the edge signal from the detecting unit so as to sequentially read out electric charge stored in the image sensor during the lighting period of the respective light source; and discard the electric charge stored in the image sensor during an intervening period before receiving a subsequent edge signal.