Abstract:
In a camera cellular phone 1, selection of the movie editing mode will display a movie conversion menu which includes the edit items such as "CLIPPING", "COMBINE" and "CONVERSION INTO E-MAIL ATTACHMENT" (Step S30). Here, if "CLIPPING" is selected, a movie is only clipped for the amount of desired playback time from the original movie file (Steps S32, S34). If "COMBINE" is selected, a plurality of original movie files are combined and converted into one movie (Steps S36, S38). If "CONVERSION INTO E-MAIL ATTACHMENT" is selected, an original movie file is converted into a movie file size which can be attached to an E-mail (Steps S40, S42).
Abstract translation:在相机手机1中,电影编辑模式的选择将显示包括诸如“CLIPPING”,“COMBINE”和“CONVERSION INTO E-MAIL ATTACHMENT”等编辑项目的电影转换菜单(步骤S30)。 这里,如果选择了“CLIPPING”,则仅从原始电影文件剪切所需播放时间的数量(步骤S32,S34)。 如果选择了“COMBINE”,则将多个原始电影文件组合并转换为一部电影(步骤S36,S38)。 如果选择了“转换为电子邮件附件”,则将原始电影文件转换为可附加到电子邮件的电影文件大小(步骤S40,S42)。
Abstract:
In a camera cellular phone 1, selection of the movie editing mode will display a movie conversion menu which includes the edit items such as "CLIPPING", "COMBINE" and "CONVERSION INTO E-MAIL ATTACHMENT". Here, if "CLIPPING" is selected, a movie is only clipped for the amount of desired playback time from the original movie file. If "COMBINE" is selected, a plurality of original movie files are combined and converted into one movie. If "CONVERSION INTO E-MAIL ATTACHMENT" is selected, an original movie file is converted into a movie file size which can be attached to an E-mail.
Abstract:
PROBLEM TO BE SOLVED: To provide an imaging apparatus for reducing a processing burden on image correction. SOLUTION: An imaging apparatus 100 includes: an image correcting section 6a for correcting image information outputted from an electronic imaging section 2 in the case that a zoom adjusting lens 1a is located at a specific position in accordance with a lens type associated with the distortion of an optical image based on the movement of the zoom adjusting lens; a magnification processing section 6b for performing magnification processing in a predetermined ratio on image information outputted from the electronic imaging section in the case that the zoom adjusting lens is located at the specific position in accordance with the lens type; and an image processing section 6 for outputting, as a processed image, image information to which at least either the correction by the image correcting section or the magnification processing by the magnification processing section has been applied. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To obtain a still image of a desired focusing state with a simple operation. SOLUTION: This device has an analog signal processing section 13 which calculates an evaluation value to evaluate the degree of focusing of the incident light images on a CCD 12 through an optical lens system 11, an HPF 15 and an integrator 16 and a microcomputer 17 which stores the drive position of the lens optical system 11 and the evaluation value (integral value) of the focusing obtained by the integrator 16 in correspondence to this position and has the plural images including the image when the evaluation value is maximum photographed by varying the drive position of the lens optical system 11 by the storage contents thereof.
Abstract:
PROBLEM TO BE SOLVED: To provide an electronic camera and a method for attaching information to image data by which a user can easily attach attached information other than photographing information acquired at photographing to a photographed image. SOLUTION: Photographing information is acquired (S1), the information is converted into image data (S2), a fixed file name stored in advance in a digital camera is extracted, a memory card 51 is retrieved (S3) and attached information having been written in the fixed file is converted into image data (S4, S5). Then a Y component of the photographed image is extracted (S6), the photographing information converted into image data is converted into watermark data, which are synthesized with the Y component (S7), the attached information converted into image data is converted into watermark data, which are synthesized with the Y component (S8) to replace the Y component with the Y component of the photographed image (S9). Thus, the photographing information and the attached information are attached to the image as watermark data.
Abstract:
PROBLEM TO BE SOLVED: To maintain the quality of reproduced image at all times by suppressing the fluctcution in the generated code volume. SOLUTION: A code volume calculator calualator 201 calculates the target code volume of a processing unit to be next encoded in accordance with the residual capacity of a buffer memory 106 and the actual generated code volume of each processing unit. A QP predictor 202 calculated and index value QP, by which the target code volume of the processing unit calculated by the code volume calculator 201 will be able to be obtained, in accordance with generated code volume characteristics of plural preliminarily prepared quantization tables. A table generator 203 generates a quantization table corresponding to the index value QP sent from the QP predictor 202. This generated quantization table is sent to a quantizar through a memory 24 and the QP predictor 202. The quantizer uses the quantization table sent from the QP predictor 202 of code volume control part 107 to encode the next processing unit.
Abstract:
PROBLEM TO BE SOLVED: To reduce a storage capacity required for storing a code book while maintaining the picture quality of reproducing pictures. SOLUTION: A classification part 101 analyzes an input vector X, discriminates to which class it belongs and decides conversion contents to be performed to the representative vector of the discriminated class. The results are outputted to a distortion computing part 103 as discrimination information ij and conversion information (a). The distortion computing part 103 searches the representative vector closest to the input vector X' normalized and outputted by a normalization part 102 from a classified code book memory 104 and outputs the index Iij . In the meantime, a decoding part 106 on a decoding side reads an output vector corresponding to the index Iij , received through a transmission line 105 and performs the conversion of the conversion contents specified by the conversion information (a) to the output vector.
Abstract:
PURPOSE: To properly process an intra-component in the nonblock orthogonal transformation encoding/decoding device which orthogonally transforms input data without division to blocks. CONSTITUTION: In the encoding device, an intra-area detector 103 detects an intra-area in accordance with input picture data 101 from a buffer memory 102 and a predictive picture from a predictor 111; and in this case, intra-block position data 115 is outputted to connect a switch 112 to the side of a terminal S2. A filter operator 113 subjects input data in the intra-area and a prescribed area around it to such filtering processing that the change of the spatial frequency of input data from the area around the intra-area to the intra-area is smoothed. The result is subtracted from input picture data 101 by a subtractor 104, and the output is subjected to encoding processing.
Abstract:
PROBLEM TO BE SOLVED: To enable a user to quickly confirm on a map the building and even the floor number of that building where the user is currently in when a map is displayed based on the current location. SOLUTION: When a user operates a portable phone 3, the portable phone 3 detects the latitude, longitude and height of the current location, and sends the latitude and longitude to a map information providing service server 200. Upon reception of the latitude and longitude from the portable phone 3, the map information providing service server 200 retrieves the altitude data corresponding to the latitude and longitude from an altitude database 26b and generates an map image centered on the latitude and longitude. The map information providing service server 200 sends the altitude data and the map image to the portable phone 3. The portable phone 3 calculates the floor number from the detected height, floor height and altitude data to display the floor number along with the map image. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an optical communication device which enables a user to easily recognize a positioning state in preparation for communication connection and its positioning method. SOLUTION: A transmissible range 42 is displayed on a screen 41 of the liquid crystal display of a digital camera, it is decided that transmission is ready when a through-image 200' of an opposite side device (digital camera 200) is positioned therein, and infrared-ray data transmission is performed. Figure (a) shows that the through image 200' of the digital camera 200 is not in the transmissible range 42 and the transmission can not be performed in this case. Figure (b) also shows that the entire through-image 200' is not in the transmissible range 41, so that the transmission can not yet be performed either. Figure (c) shows that the entire through-image 200' is in the transmissible range 41, so that the transmission can be performed.