Abstract:
A thermally expandable material includes microcapsules and a binder having a conducting property, each microcapsule including a shell having an insulating property, and a thermally expandable component contained in the shell and having a property of expanding by heating, the shell deforming due to expansion of the thermally expandable component to come in contact with another capsule and have an insulating state with the other capsule.
Abstract:
An image processing apparatus including a CPU which is operable to function as units comprising a processing unit which sets, as a first area, an area that is not a peripheral edge area in a captured image acquired by an imaging unit, sets an area including the peripheral edge area as a second area, and performs predetermined processing on one of the first area and the second area, and a specification unit which specifies whether the first area is subjected to the predetermined processing or the second area is subjected to the predetermined processing, based on orientation information of the imaging unit when the captured image is acquired.
Abstract:
A CPU determines whether a specific operation is being performed in a system section. If the CPU determines that a specific operation is being performed, a USB charging control section temporarily stops charging of a battery, regulates the current supplied to the system section via a USB cable to be a prescribed constant current, and then supplies current lacking in the system section due to load variation from the battery.
Abstract:
In a setting apparatus including a control unit, the control unit is configured to: set, by a user operation, an irradiation condition of a laser beam for a thermally expandable sheet, a surface of the thermally expandable sheet being heated and expanded by being irradiated with the laser beam; and control an output and a scanning speed of the laser beam in accordance with the set irradiation condition, and in the setting, (i) a surface state of the thermally expandable sheet after expansion is selectable from a plurality of mutually different surface states, and (ii) the irradiation condition is set by the user operation according to the surface state selected from among the plurality of surface states.
Abstract:
There is provided a computer readable storage medium storing a program executable by a computer, and the program causes the computer to execute functions including: forming a first image in accordance with an electronic circuit diagram, in which a resistance value of a wiring portion is defined, to form the wiring portion by printing with a conductive ink; and correcting the first image in accordance with a second image, which is formed with a photothermal conversion material, when the first image is formed at least partially overlapping the second image, wherein the second image is an image for expanding a thermally expandable layer that thermally expands with heat and, when the image is irradiated with light, expanding the thermally expandable layer by converting the light into heat with the photothermal conversion material.
Abstract:
When a continuous imaging mode is set, a screen is displayed for allowing input of a number of images to shoot and the imaging parameters for each of the images, a determination is made as to whether the number of images to shoot and the imaging parameters for each of the images have been input by the user. When the number of images to shoot and the imaging parameters for each of the images have been input, the input number of images and the imaging parameters are stored, and a direct image display is started. Moreover, when there is an imaging instruction, a continuous imaging process is started in which still imaging is performed continuously based on the stored number of images and the imaging parameters. When the continuous imaging process has been completed, the plurality of still image data, obtained with differing imaging parameters, is recorded.
Abstract:
A microcapsule includes a shell including a conducting component, and a thermally expandable component contained in the shell and having a property of expanding by heating. The shell is deformable in accordance with expansion of the thermally expandable component when the thermally expandable component is heated.
Abstract:
To present a measurement result on the motion of a subject more easily, a processor 3 of an analysis system S includes an image acquisition unit 357, a sensor information acquisition unit 356, an analysis unit 358, and an image creation unit 359. The image acquisition unit 357 acquires a taken image of the subject. The sensor information acquisition unit 356 acquires a measurement result of the motion of the subject measured with a sensor. The analysis unit 358 creates an index indicating the motion of the subject based on the measurement result acquired by the sensor information acquisition unit 356. The image creation unit 359 makes an output unit 319 display an image acquired by the image acquisition unit 357 and an index created by the analysis unit 358 together.
Abstract:
The purpose of the present invention is to enable the determination of whether to obtain a special-effect image to be controlled easily. A main body device 20 determines, based on information related to the optical axis directions of two imaging devices 10, whether the relative positional relationship of the respective imaging devices 10 is a predetermined positional relationship. When the relative positional relationship is the predetermined positional relationship, the main body device 20 targets, for synthesis processing, respective images captured by the respective imaging devices 10 in the positional relationship and sets the synthetic format, while when the relative positional relationship is not the predetermined positional relationship, the main body device 20 performs control to set the respective images captured by the respective imaging devices 10 in the positional relationship not to be synthesized without being targeted for the synthesis processing.
Abstract:
An imaging apparatus includes an image acquiring unit, an image setting unit, an image selecting unit, and an image generating unit. The image acquiring unit acquires a plurality of images belonging to different groups. The image setting unit determines the number of images to be used for generation of a new image. The image selecting unit selects images of the number determined by the image setting unit from the plurality of images based on supplementary information of a plurality of images belonging to each of the different groups acquired by the image acquiring unit. The image generating unit generates a new image from the images selected by the image selecting unit.