Abstract:
A scanner system having an image scanner and a control device for controlling the image scanner. The control device has a scanner driver installed thereinto. The operator can carry out entering for setting a reading size and a direction of an original on the operation screen of the scanner driver. The control device designates a reading area of the original based on the inputs of the reading size and the direction of the original and outputs a scanning execution instruction to the image scanner.
Abstract:
The present invention is a digital printer comprising a marking apparatus adapted to print images, a first electrical interface for connecting to a digital camera, a second electrical interface for connecting to a computer, and a processor for detecting when the digital camera is connected to the first electrical interface, for controlling the marking apparatus to print images provided from the digital camera when the digital camera is connected to the first electrical interface, and for controlling the marking apparatus to print images provided from the computer over the second interface when the digital camera is not connected to the first electrical interface.
Abstract:
A display device comprises a display section, a pattern specifying code input section which receives a pattern specifying code externally, a pattern storage section which stores therein an image of a predetermined pattern, and a pattern display processing section which reads out the image of a pattern specified by the pattern specifying code from the pattern storage section and displays the image on the display section. With this arrangement, the load on a host to display an image can be reduced.
Abstract:
An apparatus for creating a digital photo album is disclosed. Digital photo albums may be created on the storage media by a method that includes the steps of displaying a group of images, receiving instructions to select a subset of those images and save the subset as an album, compressing the files corresponding to those images and saving the compressed files to the storage medium.
Abstract:
An image input section pre-inputs an image. A temporary storage section temporarily stores the image input by the image input section. An attribute control section controls at least attribute information of the input information temporarily stored in the temporary storage section. A selection section permits a user at the origin of image request to select a desired one of already stored images stored in the temporary storage section in accordance with the attribute information controlled by the attribute control section. An image transfer section reads out the desired image selected by the selection section from the temporary storage section at the time of the request by origin of the image request and transfers the desired image to the origin of the image request via a network.
Abstract:
A printing system is disclosed herein. One embodiment of the printing system may include a control device having a plurality of states. At least one digital imaging device may be connectable to the control device. In addition, a plurality of printers may be connectable to the control device. The control device being in a first state causes at least one of the digital imaging device to generate first image data and transmit the first image data to a first printer.
Abstract:
A digital imaging apparatus and a method for selecting a data transfer mode thereof is disclosed. The digital imaging apparatus comprises a main storage unit for storing a firmware for at least two data transfer modes for transmitting image data acquired through a camera to an external device in different manners, respectively, and also storing a descriptor including information for identifying the firmware, a mode selection unit for outputting a mode selection signal for a certain transfer mode for the at least two data transfer modes, a transmitting module for connecting to the external device to transmit the image data to the external device, the transmitting module sending the image data in different data transfer manners for each data transfer mode, and a controlling unit which controls the transmitting module so as to set the transfer type corresponding to the selected certain transfer mode if the mode selection signal is received from the mode selection unit, and reads out descriptor of firmware corresponding to the selected transfer mode from the main storage unit and provides the descriptor to the transmitting module if the transmitting module is connected to the external device. Therefore, the digital imaging apparatus can efficiently perform communications with the external device by selecting a mode for execution before being connected to the external device.
Abstract:
A photographic and video image system for transforming an image on a frame of a photographic film includes a structure in the overall form of a photographic printer having an image transformation element that transforms an optical image from the film into a video signal, a frame position indicator, which can be a hole or an optical or magnetic signal, is recorded on the film along with aspect information relating to the size of the frame exposed on the film. The frame position indicator and aspect information are detected and used to control a film feeding operation and the optical image to video signal transformation operation. The user of the system can record order information on the film that is used to specify the aspect of the resultant photographic print, as well as the quantity of prints to be made. Such order information can be superimposed as a menu on a displayed video signal at the time the video signal is reviewed prior to producing a photographic print.
Abstract:
A camera for creating a manipulated image. The camera has an image capture device, an input device, an image manipulator, an output device and a display device. The image capture device is designed to capture a captured image. The input device is designed to receive an input image. The image manipulator is designed to receive the input image from the input device and to manipulate the input image to form a manipulated image. The output device is designed to receive the manipulated image from the image manipulator and to output the manipulated image. The display device is designed to receive the manipulated image from the image manipulator and to display the manipulated image. The image manipulator is designed to manipulate the input image by combining at least part of the input image with at least part of the captured image to form the manipulated image.
Abstract:
A method for adding text to an image applied to an image scanner including at least the following steps: first, pre-scan a document and acquire a source image accordingly; next, input the content of the text to be added to the source image such that the source image becomes a pre-set image; last, perform document-scanning according to the pre-set image to acquire a scanned image. Of which, the text content can be located at any position of the pre-set image, whereas the source image and the pre-set image can be displayed via a display interface. In practice, the display interface can be a display window.