Abstract:
A camera body includes a mount, a solid-state imaging element, a body control unit, a diopter value detection unit, a number-of-configurations storage unit, a rear display unit, and a finder unit. An interchangeable lens is attached to the mount. The body control unit counts the number of configurations by the diopter adjustment dial for each diopter value of the finder unit configured by the diopter adjustment dial and stores the number of configurations in the number-of-configurations storage unit. In a case where the diopter value of the finder unit has been configured by the diopter adjustment dial, the body control unit changes a configuration screen to be displayed on the rear display unit according to the number of configurations stored in the number-of-configurations storage unit.
Abstract:
The digital camera includes a first display unit which is a variable-angle display device disposed on a rear surface of a camera main body and a second display unit disposed on an upper surface of the camera main body. A display controller displays the live view image and first camera information items on the first display unit, and displays second camera information items on the second display unit. In a case where the first display unit and the second display unit have a posture relationship with which display screens thereof are simultaneously visible, the display controller removes at least overlapped information items among the first camera information items displayed on the first display unit which are overlapped with the second camera information items displayed on the second display unit from the first display unit through first animation and second animation indicating a removing process.
Abstract:
There are provided a setting device and a camera that allow a user to easily grasp settable conditions with a compact structure. A display section is provided on the upper surface of a sensitivity dial. Sensitivities are switched according to the rotation of the sensitivity dial. A display on the display section is switched according to the switching of sensitivities. A currently selected sensitivity is displayed on the display section at a set value-display position Po. The maximum value of a settable sensitivity is displayed at a maximum value-display position Pmax, and the minimum value thereof is displayed at a minimum value-display position Pmin.
Abstract:
There is provided a camera of which operability is good regardless of the brightness of the surrounding environment. The brightness of the surrounding environment is detected by a brightness detection unit provided in a camera. The contents of settings of the camera are displayed on a sub-display 18 in a situation in which the surrounding environment is bright. The contents of settings of the camera and an image representing the set state of a shutter speed dial 33 are displayed on the sub-display 18 in a case in which the surrounding environment is dark.
Abstract:
Disclosed are a distance image acquisition apparatus and a distance image acquisition method capable of acquiring a distance image with satisfactory accuracy based on a first pattern projected from a host apparatus even in a case where patterns of structured light having the same shape are projected simultaneously from the host apparatus and another apparatus. A distance image acquisition apparatus (10) includes a projection unit (12) which projects a pattern of structured light, a light modulation unit (22) which modulates a switching timing of projection and non-projection of the pattern with a code, an imaging unit (14) which is provided in parallel with and apart from the projection unit (12) by a baseline length, performs imaging in synchronization with a projection period and a non-projection period of the pattern, and generates a first captured image captured in the projection period of the pattern and a second captured image captured in the non-projection period of the pattern, a differential image generation unit (20D) which generates a differential image of the first captured image and the second captured image, a pattern extraction unit (20A) which extracts the pattern from the differential image, and a distance image acquisition unit (20B) which acquires a distance image indicating a distance of a subject within a distance measurement region based on the pattern extracted by the pattern extraction unit (20A).
Abstract:
A live view control device according to an aspect of the present invention includes a display control unit that displays each of a plurality of live view images received from a plurality of imaging devices in each of a plurality of areas of a display screen, a priority setting unit that sets a priority of the plurality of live view images, a transfer condition setting unit that sets transfer conditions including at least one of a frame rate of transfer and an image size of the transfer of the plurality of live view images on the basis of the priority of the plurality of live view images, and a communication control unit that transmits a transfer instruction for a live view image according to the set transfer conditions to the plurality of imaging devices via the wireless communication unit.
Abstract:
An image enlargement processing portion 16 of the image processing device includes a data acquisition section 70 which judges whether or not photographing condition data is included in the image photographing data, and for acquiring content of the photographing condition data in a case where it is judged that the photographing condition data is included in the input image photographing data, and an enlargement process determination section 72 which determines a process parameter for an enlargement process for generating enlarged image data from the imaging data, in which the photographing condition data includes information regarding presence or absence of an optical low-pass filter during creation of the imaging data or information regarding an array of color filters of an imaging portion used to create the imaging data.
Abstract:
A power supply management method for electronic devices includes: an electric power transmission step of wirelessly transmitting electric power to each of electronic devices 50, 60 placed on a table 10 from a power supplying device 20 contained in the top plate of the table 10; a step of receiving electric power transmitted from the power supplying device 20 by each of the electronic devices 50, 60; and a step of activating the system of each of the electronic devices by the electronic devices 50, 60 when the electric power is received from the power supplying device 20 and an amount of the received electric power is equal to or larger than a threshold value for system activation.
Abstract:
An imaging apparatus includes: a solid-state imaging device having pairs of phase-difference pixels for detecting a phase difference; a position control section which changes the relative position of an imaging optical system and the solid-state imaging device; a control section which causes the solid-state imaging device to perform plural provisional imagings while changing the relative position; and a regular-imaging position determination section which determines one of the relative positions that are obtained when the provisional imagings are performed, as a relative position in regular imaging, on the basis of, among plural captured image signals which are obtained in the provisional imagings, output signals which correspond to a part or all of the pairs included in the solid-state imaging device, and which are obtained from pixels in areas including the pairs.