Abstract:
PURPOSE: A method and a device for displaying image on moving device are provided to enable a moving device to be efficiently interacted with an Internet for efficiently and successively displaying images by generating a new request when the key of the moving device corresponding to the sub-area of a degenerated image is operated and successively displaying images having a dimension larger than that of a screen when the new request is dispatched. CONSTITUTION: The numeric keys of a telephone key pad are arranged into 3 times;3 matrix and the respective keys are designed so as to operate the sub-area of a displayed image when they are operated. A degenerated image(504) is peculiarly divided into hot or sensitive areas(1-9) and the respective sensitive areas coded as areas(1-9) are provided by hyper link with the other image. Then, details are requested until providing the original image. The original image is hierarchically displayed from each of image resolution for each block on a small screen(502) of the moving device while ignoring the dimension.
Abstract:
PURPOSE: A method for correcting a line length error in a facsimile system is to correct a line length error by changing a rotation speed of a step motor, thereby obtaining a facsimile image stably. CONSTITUTION: A facsimile system comprises a step motor for feeding a facsimile document at a predetermined speed. A protocol between a calling facsimile system and a called facsimile system is exchanged(S3) and the called facsimile system's design unit and resolution are checked(S4). A rotation speed of the step motor is calculated using the checked design unit and resolution(S5). The step motor is driven at the calculated rotation speed and the facsimile document is scanned(S6). The scanned facsimile data is transmitted to the called facsimile system(S7). The called facsimile system receives and prints the received facsimile data.
Abstract:
1. 청구범위에 기재된 발명이 속한 기술분야 화상처리시스템 2. 발명이 해결하려고 하는 기술적 과제 원고의 해상도를 자동으로 조절하여 전송 또는 복사하도록 하는 해상도 자동 제어방법을 제공함에 있다. 3. 발명의 해결방법의 요지 한 페이지내에서도 세밀한 화상부분은 화인모드로, 보통 화상부분은 표준모드처럼 전송하여 화질은 최대한 보존하면서 전송시간을 단축시킬 수 있는 해상도의 자동모드를 설정 및 구현한다. 상기 자동모드에서는 윗 라인(기준 라인)과 비교하여 상이한 도트 수가 설정치 보다 크지 않을 경우에는 미리 협약된 최소 코딩 데이타를 전송하여 전송시간을 단축하는 한편, 세밀 화상에서는 동일한 기존 코딩방식을 채용하여 화질의 열화를 최대한 줄임을 특징으로 한다. 4. 발명의 중요한 용도 해상도를 자동으로 제어하는데 사용한다.
Abstract:
The object of the present invention is to provide a digital camera system capable of transmitting image information suitable for the purpose of image usage in a peripheral. Special information in connection with an application program used in the peripheral is output to a digital camera, an image data processed in the digital camera on the basis of the special information is output to the peripheral, and the peripheral executes the application program by inputting the processed image data into the application program. The special information is the size of a character, the number of colors, resolution, and the like used in the application program.
Abstract:
A controlling device (30) for controlling a scan performing unit (20) may determine a specific optical resolution from among a plurality of optical resolutions by utilizing specific information given from a user, cause the scan performing unit (20) to perform a scan of a document in accordance with the specific optical resolution, perform an analysis of scan data obtained by the scan of the document, determine an output resolution based on a result of the analysis of the scan data, converting the scan data indicating the specific optical resolution into image data indicating the output resolution in a case where the output resolution is not identical to the specific optical resolution, and create a file including the image data indicating the output resolution.
Abstract:
There is provided a method of determining an optimal image transmission method when image data is transmitted from an image supplying device 1 and 1' to an image display device 2 and 2', the method including: before the image data is transmitted after a transmission path from the image supplying device 1 and 1' to the image display device 2 and 2' is established, determining the image transmission method on the basis of correspondence table, which is previously prepared, such that the optimal image transmission method according to at least one of transmission path information and capability of the image display device 2 and 2' acquired by the image supplying device 1 and 1' is derived.
Abstract:
A device management system is provided for processing client requests. When a client request is received, the device management system selects a particular network device from a plurality of available network devices to process the request. The selection is based upon user preference data and network device attribute data. The user preference data indicates one or more attributes that a user associated with the client request would like a network device that processes the request to have. The user preference data may also indicate a relative priority of desired network device attributes. The network device attribute data indicates one or more attributes of the plurality of available network devices. Examples of the attributes indicated by the user preference data and device attributes include performance attnbutes, such as resolution, speed and finishing options, as well as other device attributes, such as location.
Abstract:
A data transmission system where an image providing device and a printer are directly connected by a 1394 serial bus, a command is sent from the image providing device to the printer, then a response to the command is returned from the printer to the image providing device. Image data is sent from the image providing device to the printer based on information included in the response. The printer converts the image data outputted from the image providing device into print data. Thus, printing can be performed without a host computer by directly connecting the image providing device and the printer by the 1394 serial bus or the like.
Abstract:
An image processing apparatus (1001) includes an input unit (302) configured to input image data, a vectorization unit (308) configured to convert the image data input by the input unit (302) into vectorized data by vectorizing at least one portion of the image data, a receiving unit (303) configured to receive a setting for outputting by an external image output apparatus an image based on the image data input by the input unit (302), and a sending unit configured to send to the external image output apparatus one of the image data input by the input unit (302) or the vectorized data obtained by the vectorization unit (308) based on the setting received by the receiving unit (303).