Abstract:
An electronic file corresponding to a scanned original image is specified on the basis of the original image. If the electronic file corresponding to the original image cannot be specified, the original image is converted into vector data. The vector data is converted into image data. The first image data of the original image is compared with the second image data generated by the second conversion unit. On the basis of the comparison result, the first image data or vector data is selected as the electronic file corresponding to the original image.
Abstract:
An image processing apparatus includes a processing unit for processing an image signal into which an original document, after being exposed to light, is photoelectrically converted, a compression module for compressing image information processed through the processing unit, a memory for storing image data compressed by the compression module, a control unit for setting a diversity of image processing modes, and a predicting module for predicting an image compression rate used by the compression module. The predicting module predicts the image compression rate of an image after being processed according to the image processing mode set by the control unit.
Abstract:
This invention relates to a die bonding method used for adhering the die of a semiconductor device to a die pad of lead frame. Adhesive paste is applied in spots on the surface of the die pad by means of plural nozzles arranged radially, pressing a die thereon to spread the adhesive paste widely, and adhere the die to the die pad by hardening the adhesive paste. When the plural nozzles are arranged radially in this manner, the adhesive paste applied in spots on the die pad surface is also radial. Accordingly, when the die pad is pressed on, the adhesive paste spreads widely along the back surface of the die while forcing out air, thereby preventing voids from staying inside the adhesive paste. As a result, the die adhesion strength is increased, and the thermal and electrical conductivity are improved.
Abstract:
If an instruction of a predetermined function is given at a device A in a network, the device A issues a notification request for inquiring whether or not it is possible to execute the function to devices B, C and D in a list of devices capable of cooperating with the device A. The device B receives the request and if the device B can not execute the function, then the device B issues a notification request including the search path of the device B to devices E, F and G included in a list of the device B. If the device B receives a response including a search path through the device E that can execute the function, from the device E, then the search path of the device B is added to the response and the response is sent to the device A.
Abstract:
If data to be transferred is received, a transferring condition for the received data is acquired based on specifying information for specifying an apparatus to which the transferring condition has been registered, and the transferring of the received data is controlled based on the acquired transferring condition. Thus, it is possible to determine a transferring destination of the received data according to the transferring condition held by another apparatus, and it is thus possible by the another apparatus to control the transferring destination of the received data.
Abstract:
Device B requests a network service of device A, and devices B and A are set in a client mode and server mode, respectively. Further, a mode is set in which the console unit of device A is controlled from that of device B, and image data scanned and created by the scanner of device B is processed as image data scanned by that of device A. In response to process start designation input from the console unit of device B, device A designates device B to scan an image using the scanner of device B. In response to the designation, device B transmits image data scanned by the scanner of device B to device A. Device A executes a process corresponding to setting information for the image data.
Abstract:
An electronic file corresponding to a scanned original image is specified on the basis of the original image. If the electronic file corresponding to the original image cannot be specified, the original image is converted into vector data. The vector data is converted into image data. The first image data of the original image is compared with the second image data generated by the second conversion unit. On the basis of the comparison result, the first image data or vector data is selected as the electronic file corresponding to the original image.
Abstract:
An image processing apparatus includes: a reading unit adapted to read an image and to generate image data representing the image; a separating unit adapted to separate the image data obtained by the reading unit into a plurality of objects corresponding to attributes; a selecting unit adapted to select a predetermined attribute of the image; a vectorization unit adapted to perform a vector conversion process for the image data separated by the separating unit in accordance with the predetermined attribute selected by the selecting unit; and an output unit adapted to output the image data processed by the vectorization unit.
Abstract:
A data processing method is provided for use with an information processing apparatus capable of sending data of a sending job to an external destination and capable of selectively utilizing a plurality of types of destination specification methods as a method for specifying a destination of the data of the sending job. When a predetermined instruction is input via a user interface unit, a prespecified destination specification method among the plurality of types of destination specification methods can be automatically utilized. A user is enabled to select a destination of the data of the sending job via the user interface unit by using the prespecified destination specification method. The information processing apparatus is enabled to send the data of the sending job to the destination selected by the user via the user interface unit by using the prespecified destination specification method among the plurality of types of destination specification methods.
Abstract:
Input raster image data is divided into objects of each attribute. The division results, and charge information representing a consideration accrued from a vectorized process for the division results are displayed. It is designated whether to execute the vectorized process for the displayed division results. The vectorized process of converting the raster image data into vector data is executed on the basis of the contents of the designation.