Abstract:
An image writing system includes: a display medium displaying an image rewritably recorded according to an external force and holding the image after the external force is removed, the display medium including a memory externally readably storing capability information on a capability of displaying an image on the display medium; and a writing apparatus applying the external force to the display medium so as to write the image into the display medium, the writing apparatus including: a reading section reading the capability information from the memory; a display-capability presenting section presenting information including the capability information, a list of images to be written, and display attributes of the respective images; an image-selection accepting section accepting a selection of an image to be written into the display medium; and a writing section applying the external force to the display medium so as to write the selected image into the display medium.
Abstract:
In order to facilitate printing of an image drawn on an electronic board while improving security, an MFP includes a portion to generate conference identification information in response to reception of a start instruction from an electronic board, a portion to associate the conference identification information with device identification information for the electronic board, a portion to associate image data received from the electronic board with conference identification information lastly associated with the device identification information for the electronic board, a portion to associate user identification information received from the electronic board with conference identification information lastly associated with the device identification information for the electronic board, a portion to authenticate a user, a portion to extract conference identification information associated with the user identification information for the authenticated user, a portion to extract image data associated with the conference identification information, and a portion to output the image data.
Abstract:
A system for automatically reproducing an image on a large surface, such as the surface of an outdoor or indoor athletic field or athletic court. The system includes a computer, a microcontroller, a mobile robotic platform, a plurality of distance sensors, a plurality of boundary markers, and image reproduction machinery. The computer takes the image input by the user and translates for use by the microcontroller. The distance sensors use the boundary markers to provide positioning information to the microcontroller. The microcontroller is used to control motors and sensors on the mobile robotic platform and image reproduction machinery. The mobile robotic platform propels and steers the system along the surface. The image production machinery comprises a guide rail, a carriage, and a paint head assembly which reproduce the image onto a large surface. The movement of the image production machinery is decoupled from the movement of the mobile robotic platform.
Abstract:
A projection surface on which a predetermined projection image is projected is provided; a writing surface on which an image can be drawn directly in a superimposing manner with a projection image displayed on the projection surface is provided; and a photography part photographing an image drawn on the writing surface by means of an image-pickup part comprising two-dimensionally-disposed pixels is provided.
Abstract:
A system for automatically reproducing an image on a large surface, such as the surface of an outdoor or indoor athletic field or athletic court. The system includes a computer, a microcontroller, a mobile robotic platform, a plurality of distance sensors, a plurality of boundary markers, and image reproduction machinery. The computer takes the image input by the user and translates for use by the microcontroller. The distance sensors use the boundary markers to provide positioning information to the microcontroller. The microcontroller is used to control motors and sensors on the mobile robotic platform and image reproduction machinery. The mobile robotic platform propels and steers the system along the surface. The image production machinery comprises a guide rail, a carriage, and a paint head assembly which reproduce the image onto a large surface. The movement of the image production machinery is decoupled from the movement of the mobile robotic platform.
Abstract:
To improve image capture from a display or a surface, more specifically from a specular reflecting surface, the invention proposes an image capturing apparatus having an image capturing unit and an image fitting surface in which the optical axis of the image capturing unit is disposed at an angle α to a normal of the image fitting surface.
Abstract:
A slip-resistant and portable scanner for scanning a document placed on a document platen includes a housing, a scan window, and a scanning module and a slip-resistant structure. The scan window is mounted on the housing to closely face the document. The scanning module is disposed in the housing to scan the document through the scan window. The slip-resistant structure is disposed on and attached to a surface of the scan window facing the document and in contact with the document or the document platen. Thus, it is possible to prevent the scan window from slipping relatively to the document and enhance the scan quality and convenience.
Abstract:
A scanning system including a scanning module mounted in a body, such that the scanning module scans in a capture zone to capture an archival image of said capture zone as well as one or more non-archival images. One or more image capture modules mounted in the body in fixed relation to the capture zone being operative to capture a stream of the non-archival images in the capture zone.
Abstract:
The present invention provides an image forming device that forms visible images by scanning in a first scan direction and a slow scan direction that is perpendicular to the first scan direction, image data that are arranged in the first scan direction and the slow scan direction. The image data include actual latent image lines formed from actual data, and artificial latent image lines formed using the actual data. The image forming device has a data storage unit that stores the image data so that the total number of scan lines in the image data from one end to the other end in the slow scan direction is an odd number.
Abstract:
An optical scanner may be used either with or without a support stand. When operated without the support stand, the scanner may be used to acquire an image of an object in virtually any location and/or orientation, e.g., an image of a picture hanging on a wall. When used in conjunction with the support stand, the scanner may attach to the support stand such that it is able to pivot with respect to the support stand. An object to be scanned (e.g., a document) may then be placed on a support surface of the support stand and the scanner pivoted to a closed position to allow scanning of the object. In this manner, the scanner may also be used in a manner similar to a conventional flatbed scanner.