Abstract:
A method for image data print control includes: obtaining subject image data which is obtained by capturing an image of a subject formed through a photographic optical system and output by an image-capturing element having a plurality of pixels; obtaining a distance to the subject; obtaining a number of pixels provided at the image-capturing element; obtaining a pixel pitch at the image-capturing element; obtaining a focal length of the photographic optical system; and calculating a printing resolution so as to print the image of the subject in a size equal to a size of the subject by using the subject image data, based upon the distance to the subject, the number of pixels at the image-capturing element, the pixel pitch at the image-capturing element and the focal length of the photographic optical system.
Abstract:
When initializing a recording medium, an ordinary folder and a lock folder are created. Photographic information files of photographed images are stored into the ordinary folder. Files the erasure of which is disabled among the photographic information files are stored into the lock folder. After a photographing operation, any image file set for a lock is erased from the ordinary folder and stored into the lock folder.
Abstract:
A portable electronic device includes a display component and a device aperture component which are mounted on separate segments of the electronic device. Each segment can be rotated with respect to the other, thus permitting a user to photograph an object while adjusting the display to a desired viewing condition.
Abstract:
There is provided a roller thrust bearing providing reduced differential slip, free of significant friction and wear, and providing increased longevity against flaking. The present invention provides a thrust bearing in the form of a roller thrust bearing including at least two radially arranged rows of rollers and a cage holding the rollers, the rollers including at least one roller crowned.
Abstract:
An electronic camera includes: a substantially rectangular parallelepiped image-capturing unit main body provided with an image-capturing device for generating an image signal by capturing an optical image formed by a photographic lens unit; a substantially rectangular parallelepiped display unit main body provided with an external display device for displaying an image based upon the image signal generated by the image-capturing device; and a linking portion that links the image-capturing unit main body and the display unit main body in a manner that the image-capturing unit main body and the display unit main body can rotate relative to each other. And, at the display unit main body, a shutter release button is provided and a grip portion is provided near an end surface furthest away from the image-capturing unit main body; and at the image-capturing unit main body, an optical viewfinder unit is provided beside the photographic lens unit.
Abstract:
A camera data recording device having an indication means comprising solid-state illuminating element on the back plate of the camera, connected to a control device provided outside the camera by means of a connector, in which various data are selected and set by the control device.
Abstract:
A thrust bearing component is formed of cold-reduced steel sheets and strip having surface roughness of Rmax≦2 μm and provided by cold rolling a high-carbon steel containing 0.9 wt % to 1.2 wt % of carbon, 1.2 wt % to 1.7 wt % of chrome, 0.1 wt % to 0.5 wt % of manganese, and 0.15 wt % to 0.35 wt % of silicon.
Abstract:
A thrust bearing component is formed of cold-reduced steel sheets and strip having surface roughness of Rmax≦2 μm and provided by cold rolling a high-carbon steel containing 0.9 wt % to 1.2 wt % of carbon, 1.2 wt % to 1.7 wt % of chrome, 0.1 wt % to 0.5 wt % of manganese, and 0.15 wt % to 0.35 wt % of silicon.
Abstract:
An electronic camera includes: an image-capturing unit including an image-capturing device and an image-capturing optical system; a blur detecting unit; a moving unit moving part or all of the image-capturing unit to eliminate the blur according to the detection result; a reading unit reading the image from the image-capturing device; a viewfinder displaying unit continuously displaying the image read; an operating unit accepting a user instruction; and a controlling unit performing, when the start of photographing is not instructed, electronic blur correction by controlling the reading unit to continuously change an image-capturing range of the image-capturing device or continuously changing a range of the image read to be displayed on the viewfinder displaying unit, and ends, when it is instructed, the electronic blur correction and performs optical blur correction by controlling the moving unit. Accordingly, appropriate blur correction is feasible with an increase in power consumption suppressed.
Abstract:
An electronic camera of the present invention includes: an imaging unit capturing a subject to generate an original image; a derivative image generating unit reducing resolution or color of the original image to generate a derivative image for transfer; a recording unit recording the original image and the derivative image thereon such that the original image and the derivative image get associated with each other; and a transfer unit transferring the derivative image recorded on the recording unit to an external transfer destination. In this configuration, the recording unit finds the derivative image (original image) by referring to the association with the original image (or derivative image), thereby collectively managing the original image and the derivative image. This makes it possible to prevent a user from being confused at image management due to the original image and the derivative image being the same image.