Abstract:
An electronic device includes a casing having an opening; a circuit board having a plurality of electrodes, which is provided inside the casing; a contact member having a plurality of contact points corresponding to the electrodes, which is provided so as to seal the opening; and a key unit (press-key unit) having a key operation unit corresponding to the contact points, which is provided to the opening. The key unit (press-key unit) is attached to the opening detachably.
Abstract:
A printing device includes a first ejector that ejects a recording medium to an exterior, a second ejector that enhances a rigidity of the recording medium more than by the first ejector, and ejects the recording medium to the exterior, and an ejector selector that selects either the first ejector or the second ejector.
Abstract:
A printing device includes a recording-medium-type reader that reads a type of a recording medium, a fixing-unit attachment that selectively attaches any one of a plurality of fixing units, the plurality of fixing units being different types from one another, and a conformity determiner that determines whether or not the type of the fixing unit attached in the fixing-unit attachment is conformed to the type of the recording medium read by the recording-medium-type reader.
Abstract:
An image used for alignment of an image to be thermally transferred to a transfer target medium is transferred and fixed to a release sheet. Subsequently, the release sheet is sent to a two-sided printing conveyance unit and the front and back sides of the release sheet are reversed. Then, a mirror image of the image to be thermally transferred to the transfer target medium and a thermoplastic resin image overlaid on the mirror image are transferred and fixed to the release sheet. As a result, a thermal transfer print sheet including the release sheet, an alignment image layer, a mirror image layer, and a transfer base material layer is created.
Abstract:
An image capture apparatus includes the image capture unit 16, the focus information acquisition unit 53, the frequency distribution calculation unit 54, and the photographing position determination unit 55. The focus information acquisition unit 53 calculates a subject focus position for each of a plurality of regions into which a photographed screen of a captured image captured by the image capture unit 16 is divided. The frequency distribution calculation unit 54 counts the number of regions that corresponds to each of the subject focus positions acquired by way of measuring. The photographing position determination unit 55 determines the focus position for photographing according to the number of regions that corresponds to each of the subject focus positions calculated by the focus information acquisition unit 53.
Abstract:
An image processing device of the present invention acquires the positional information of a boundary line for a case where a first image is segmented into a foreground and a background by a segmentation processing that segments an image into a foreground and a background, and controls the segmentation processing to segment a second image having a predetermined relationship with the first image by use of the positional information of the acquired boundary line.
Abstract:
First extracting means of a processing unit, based on a brightness component and a color information component of a captured image separated by separating means, extract a candidate region using a first morphology processing based on the brightness component, and second extracting means of the processing unit extract a likelihood of a region from a color space composed of the brightness component and the color information component and perform a second morphology processing to generate a region-extracted image, which is displayed on the display device. In this case, the morphology processing including the smoothing filter processing is performed on an extracted candidate region and an extracted likelihood of the region.
Abstract:
In an image capture apparatus comprising an image capture unit including an image sensor and a control unit including a CPU, the control unit detects a facial portion of a person within an image captured by the image capture unit and performs image processing unique to a person on the facial portion, and, in a case in which it is possible to estimate that a person is a target for photographing in a method different from a detection of a face of the person, the control unit controls to perform the image processing unique to a person on a skin color portion detected within the image.
Abstract:
A radio-controlled timepiece, including: a radio wave reception unit that receives satellite waves and extracts an incoming code sequence formatted in a prescribed format from the received satellite waves; and a processor that generates in advance an expected code sequence that is expected to be part of the incoming code sequence and detects the expected code sequence within the incoming code sequence by sequentially comparing the expected code sequence with the incoming code sequence, the processor determining a present date/time, as indicated by the satellite waves, in accordance with a timing at which the detected code sequence occurs within the incoming code sequence as measured by time kept by the timepiece, wherein the expected code sequence includes codes that change with a transmission period during which time-related information that includes satellite date/time contained in the satellite waves, which is formatted in the prescribed format, is transmitted.
Abstract:
A biological information measuring device includes: a biological information measuring unit for measuring biological information of a user; a motion signal output unit for outputting a motion signal corresponding to motion of the user; and a control unit.The control unit causes the biological information measuring unit to measure the biological information when amplitude of the motion signal is smaller than a first setting value during a first period and causes the biological information measuring unit to stop measurement when the amplitude is greater than the first setting value during a second period and there is a period where the amplitude is greater than a second setting value, which is greater than the first setting value, in the second period.