Abstract:
The invention provides an image processing device, an imaging device, an image processing method, and a non-transitory computer readable recording medium recorded with an image processing program that can instantaneously correct shading characteristics. A correction unit calculates a shading characteristic correction coefficient based on a first comparison result and a second comparison result and corrects the shading characteristics of a subsequent frame based on the calculated coefficient. The first comparison result indicates the result of the comparison between a phase difference image and a normal image included in a preceding frame acquired first a pair of frames acquired at different times. The second comparison result indicates the result of the comparison between a phase difference image and a normal image included in the subsequent frame. A control unit directs a display device to continuously display the subsequent frame, of which the shading characteristics have been corrected, as a moving image.
Abstract:
An imaging device includes an imaging lens, a generation device, a display device, a generation control device, and a display control device configured to control the display device to display the first display image generated by the generation device and display the second display image generated by the generation device in a display region of the first display image, and to display the second display image in a position corresponding to the main object image in the first display image when the main object image is detected by the detection device, wherein the detection device can detect an eye position in the main object image, and when the eye position is detected by the detection device, the generation control device controls the generation device to generate a division image that divides the main object image with the eye position as a boundary from the first and second images.
Abstract:
In the stereoscopic imaging device including a single imaging optical system, lens information (focal length, F-stop range) is acquired (step S18), and a parallax priority program diagram (F-stop is fixed) which uses a lens F-stop and a focal length within a range capable of obtaining a minimum parallax amount or more is set (step S20). In a first mode, exposure conditions including the F-stop capable of carrying out the stereoscopic imaging with a parallax amount equal to more than the minimum parallax amount is calculated using the set parallax priority program diagram to set exposure during main imaging (steps S26 and S28). In a second mode, it is determined whether or not the focal length and the F-stop which are set by a user are within a range equal to or more than the minimum parallax amount, and a user is notified of the determination result (steps S38 to S42).
Abstract:
Provided are a lens system, an accessory, a communication method, and a non-transitory recording medium readable by a computer for recording a program capable of accurately specifying an accessory without providing dedicated terminals for an interchangeable lens and the accessory. The lens system is a lens system including an interchangeable lens 100 and an accessory 300, the interchangeable lens includes a lens control unit that performs bidirectional data communication with the accessory necessary for acquisition of at least identification information of the accessory before starting data communication with the camera body, and the accessory includes an accessory control unit to which a power supply terminal and an input and output terminal among a plurality of signal lines are connected, and that replies with identification information of the accessory when the accessory control unit receives a request for acquisition of the identification information of the accessory from the interchangeable lens.
Abstract:
Provided are an image processing device, an imaging device, an image processing method, and an image processing program which can instantly switch display between a chromatic image indicating an in-focus state and an achromatic image indicating an out-of-focus state. A control unit performs control such that a chromatic split image, which is obtained by giving a chromatic color included in a normal image to an achromatic split image, is displayed in a case in which the result of comparison between an output value of a first image signal and an output value of a second image signal is less than a threshold value. In addition, the control unit performs control such that an achromatic split image, which is obtained based on a left eye image and a right eye image, is displayed in a case in which the comparison result is equal to or greater than the threshold value.
Abstract:
Provided are an image processing device, an imaging device, an image processing method, and an image processing program which can instantly switch display between a chromatic image indicating an in-focus state and an achromatic image indicating an out-of-focus state. A control unit performs control such that a chromatic split image, which is obtained by giving a chromatic color included in a normal image to an achromatic split image, is displayed in a case in which the result of comparison between an output value of a first image signal and an output value of a second image signal is less than a threshold value. In addition, the control unit performs control such that an achromatic split image, which is obtained based on a left eye image and a right eye image, is displayed in a case in which the comparison result is equal to or greater than the threshold value.
Abstract:
Provided are an image processing device, an imaging device, and an image processing method which can perform focusing control using an intuitive operation. First and second images based on image signals that are output from an imaging element including first and second pixel groups on which an object image that passes through first and second regions of an imaging lens and is pupil-divided is formed are combined and displayed on a display unit having a touch panel. It is detected whether an operation of selecting the first or the second image on the display image is performed. It is detected whether a moving operation in a direction intersecting a division direction is performed. When the selection operation and the moving operation are sequentially detected, control is performed such that a focus lens is moved in an optical axis direction of the focus lens in response to the moving operation.
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 image capture element includes phase difference pixel groups (first and second pixel groups) corresponding to first and second images with a phase difference according to a focus shift, includes a third pixel group corresponding to a normal third image, outputs a first image and a second image with Bayer arrays from the first and second pixel groups, and outputs a third image with the same color array as a RAW image from the third pixel group. A color split image is generated based on the first and second images acquired from the image capture element, a color image for display is generated based on the third image, and the color split image is synthesized with part of the generated color image for display to thereby display a live-view image in which the split image is synthesized.