Abstract:
An object of the present invention is to make it possible to easily display user's desired images.An imaging apparatus includes a frame rate acquiring unit, a measuring unit and a reproduction control unit. The frame rate acquiring unit acquires the imaging frame rate of a video to be reproduced. The measuring unit measures the operation speed of a user's touch operation on a touch panel while the touch operation is performed. The reproduction control unit controls reproduction of the video which is displayed on the display panel, based on the acquired imaging frame rate and the subsequently measured operation speed.
Abstract:
A master camera sets temporary conditions at the time of executing photographing by a plurality of cameras, determines whether photographing by the plurality of cameras can be executed under the temporary conditions, sets actual conditions at the time of executing photographing by the plurality of cameras in accordance with this determination result, and executes control such that photographing by the plurality of cameras is executed under the actual conditions.
Abstract:
A moving image processing apparatus includes: a block processing unit that processes moving image data in a block unit; a switching unit that switches the moving image data processed by the block processing unit in the block unit; and a switching control unit that, according to a predetermined state of a plurality of moving image data sets that is a target for switching by the switching unit, changes an order of switching the plurality of moving image data sets by the switching unit.
Abstract:
FIG. 2C depicts a live view screen when a movement is made in a direction of approaching the camera position at the time of pre-photographing (frontward direction) and also in the right direction in the drawing. When the camera position is changed, the display state of a provisional subject image in the live view screen is changed according to the change. In this case, the display size of the provisional subject image is changed according to the movement distance of the camera position in the frontward direction and the display position of the provisional subject image is changed in the left direction according to the movement distance in the right direction.
Abstract:
The present invention can easily acquire images having a uniform aspect ratio. In an imaging device of the invention, a control section detects the movement amount and the movement direction of the imaging device based on output from an acceleration sensor. Then, when the movement direction of the imaging device in its initial movement started at the beginning of imaging is substantially linear and a substantially horizontal or vertical direction, the control section calculates a reference movement amount by which a composite image having a predetermined aspect ratio can be generated, based on the movement amount of the imaging device, and controls the display section to display imaging area information (guide) indicating the final imaging area having the predetermined aspect ratio based on the reference movement amount.
Abstract:
A control section of an imaging apparatus sets a specific scene in advance, sequentially stores images continuously captured by an imaging section in a storage section, specifies images corresponding to the set specific scene from among the plurality of images stored in the storage section when a predetermined motion of the user is detected during the storing operation, and displays the specified images on a display section while continuing the storing operation.
Abstract:
A camera is provided with an imaging element, and detects a timing of blinking of light which blinks periodically at a reference timing, based on a timing of variation in luminance of an image obtained by the imaging element, wherein the image is taken by the imaging element under a condition that the light blinks periodically at the reference timing. Further, the timing of exposure of the imaging element is adjusted based on the detected timing of the blinking light, thereby synchronizing shooting operations of plural cameras with each other.
Abstract:
Plural image pickup apparatuses can take images in accurate synchronization. An image pickup apparatus is provided with an image pickup unit for obtaining image data, a communication unit for communicating with another image pickup apparatus in synchronization, a synchronous signal generating unit for generating a synchronous signal having a predetermined cycle and synchronized with a timing of a synchronous operation by the communication unit, an image-pickup synchronous signal generating unit for generating an image-pickup synchronous signal having a predetermined cycle and synchronized with the synchronous signal generated by the synchronous signal generating unit, and an image-pickup controlling unit for determining in accordance with the image-pickup synchronous signal generated by the image-pickup synchronous signal generating unit, image-pickup timings at which the image pickup unit obtains image data.
Abstract:
A display apparatus includes a number-of-touches detecting unit, a first touch-area detecting unit and a first switching control unit. The number-of-touches detecting unit detects the number of touch operations when a user performs a plurality of touch operations on a touch panel. The first touch-area detecting unit detects areas, including touch positions of the plurality of touch operations, from a plurality of areas into which the touch panel is partitioned. The first switching control unit controls switching display, based on the number of detected touch operations and the detected areas.
Abstract:
An image capture apparatus including a timing generator that generates a frame synchronization signal with a constant cycle receives a reference signal generated at a predetermined interval based on a predetermined reference cycle, compares generation timing of the reference signal received with generation timing of the frame synchronization signal generated by the timing generator, and adjusts a generation cycle of the frame synchronization signal generated by the timing generator based on a result of the comparison.