Abstract:
Disclosed is a magnification device for use by blind and/or low vision individuals. The device includes an X-Y table upon which an item to be magnified can be placed. A stationary camera arm and a pivotal monitor arm are oriented over the X-Y table. The monitor arm includes a video monitor pivotally mounted at its distal end. The camera arm also includes two laterally disposed lighting arms. A series of controls are provided along a lower edge of the monitor via a mounting bracket.
Abstract:
An operability of a user in an image processing apparatus such as a camera scanner is improved. For this purpose, the image processing apparatus has: a pickup image obtaining unit for obtaining a pickup image on a stage through an imaging unit; a distance image obtaining unit for obtaining a distance image on the stage through a solid measuring unit; a detecting unit for detecting the putting of an object on the stage based on the obtained pickup image; a projecting unit for projecting an operation display regarding the reading of the object onto the stage through a projector when the putting of the object is detected; a recognizing unit for recognizing a gesture of the user on the stage based on the obtained distance image; and a reading unit for obtaining a read image of the object in accordance with the gesture to the projected operation display.
Abstract:
An information processing apparatus having first and second cases (13a, 13b) that are openably/closably connected, and includes an imaging section (6) provided in the second case and opposed to the first case where a read target medium is placed, a detection section (1) which detects that the first and second cases have been closed into a predetermined state by plural types of methods, an acquisition section (1) which acquires a photographed image from the imaging section when the detection section detects that the first and second cases have been closed into the predetermined state by the plural types of methods, a correction section (1) which performs distortion correction processing on the photographed image acquired by the acquisition section, based on a closing state between the first and second cases detected by the detection section, and a storing section (3) which stores the photographed image corrected by the correction section.
Abstract:
A method for processing images in an imaging device includes the steps of using real time scalar software (RTSS) for: receiving scalar input data (SID) from video preview application software (VPAS) within a host computer; and performing scaling and cropping operations within the imaging device on raw image frame data to create a scaled down frame (SDF) within the imaging device. As a result, images of high resolution can be transmitted efficiently with significantly reduced amounts of data over the data links, and achieve a high number of frames per second.
Abstract:
A system and method for processing an image of a document is disclosed. The method includes receiving at least one predetermined document parameter of the document. An image of the document is previewed on a display using a camera. The display provides a visual indication of a defect in the image based on the preview. A processor proposes a procedure to minimize the defect in the image. A user adjusts the camera in response to the proposal. The processor processes the image of the document.
Abstract:
A method for operating an electronic device is provided. The method includes detecting a touch of an external input device, determining at least one region associated with the detected touch, receiving scanning data from the external input device, and displaying the scanning data at the determined region.
Abstract:
An image reading apparatus includes a main body, a rotation unit supported on the main body so as to be rotatable around a rotation axis, an imaging unit that is mounted on the rotation unit at an outward position in a radial direction of the rotation axis and images a medium to be read that is placed on a placement surface located under the rotation unit in the vertical direction, and a light source that irradiates the medium to be read with light. The light source and the imaging unit can be arranged with a relative positional relationship capable of suppressing specular reflected light of light that is emitted from the light source and reflected by the medium to be read from being incident on the imaging unit.
Abstract:
A spring compression assembly is configured to apply a load to a stack of electrochemical cells. The assembly includes a ceramic leaf spring, a tensioner configured to apply pressure to a first side of the spring and a bottom plate located on a second side of the spring opposite the first side of the spring. The bottom plate is configured to transfer a load from the spring to the stack of electrochemical cells.
Abstract:
A digital image capture device, comprising an image sensor and an optical system for capturing digital images, and a program memory storing instructions configured to cause a data processing system to implement a method for extracting textual information from a document containing text characters. The method includes capturing plurality of digital images of the document using the image sensor. Each of the captured digital images is automatically analyzed using an optical character recognition process to determine extracted textual data. The extracted textual data for the captured digital images are merged to determine the textual information for the document, wherein differences between the extracted textual data for the captured digital images are analyzed to determine the textual information for the document.
Abstract:
An overhead image reading apparatus includes an image-capturing unit that captures an image of a medium to be read placed on a placement surface from above, a light source capable of irradiating the medium with light, and a brightness controller that gradually alters brightness of the light source at least when the light source is turned on or when the light source is turned off. The overhead image reading apparatus may gradually alter the brightness by duty control on current supplied to the light source. Or, the overhead image reading apparatus may gradually alter the brightness by controlling a current value supplied to the light source. Alternatively, the overhead image reading apparatus may include a variable aperture between the light source and the placement surface to gradually alter the brightness by controlling an opening area of the aperture.