Abstract:
An image file recorded on a non-transitory computer readable recording medium is presented. The image file is readable by a transmitting device in communication with a plurality of transceiving devices. The image file includes electronic image data, and tag information including transmission route information for transmitting the image file to at least one of the plurality of transceiving devices.
Abstract:
An imaging apparatus includes: an imaging optical system having a variable power lens and a focus lens; an imaging element that generates image data via the imaging optical system; a movable frame that holds the focus lens and is movable along an optical axis of the imaging optical system; a first driving unit that causes the movable frame to move toward an in-focus position along the optical axis direction; a focus sensitivity determination unit that, based on a zoom position of the variable power lens, determines whether a focus sensitivity indicating a ratio of a change amount of the in-focus position to a movement amount of the focus lens is equal to or smaller than a specified value; and a driving controller that drives the first driving unit to move the movable frame to the in-focus position if the focus sensitivity is larger than the specified value.
Abstract:
An image file recorded on a non-transitory computer readable recording medium is presented. The image file is readable by a transmitting device in communication with a plurality of transceiving devices. The image file includes electronic image data, and tag information including transmission route information for transmitting the image file to at least one of the plurality of transceiving devices.
Abstract:
A vibrating device includes a dust-screening member and a vibrating member. The dust-screening member is disposed in front of an image surface of an image forming element having the image surface in which an optical image is generated. The dust-screening member has a box shape with about the same small plate thickness as a whole, and includes, in a bottom surface portion of the box shape, a transparent part which spreads from the center of the bottom surface portion. The vibrating member is disposed outside the transparent part of the dust-screening member. The vibrating member is configured to generate, in the bottom surface portion of the dust-screening member, vibration having a vibrational amplitude which is vertical to the bottom surface portion thereof.
Abstract:
An image pickup apparatus that allows for short-distance photographing comprising: a photographing lens portion including a focus lens and a variable power lens; a lens driving portion; an image pickup portion; a recording portion that records images obtained by the image pickup portion; a driving control portion that moves the variable power lens so as to have a same magnifying power of images on the image pickup portion at a plurality of focused positions; a control portion that causes the image pickup portion to continuously pick up a plurality of images at a same magnification at the plurality of focused positions and causes the recording portion to store the plurality of; and an image combining portion that cuts out an image area having a predetermined contrast from each of the plurality of images and generates on composite image.
Abstract:
An image pickup apparatus that allows for short-distance photographing comprising: a photographing lens portion including a focus lens and a variable power lens; a lens driving portion; an image pickup portion; a recording portion that records images obtained by the image pickup portion; a driving control portion that moves the variable power lens so as to have a same magnifying power of images on the image pickup portion at a plurality of focused positions; a control portion that causes the image pickup portion to continuously pick up a plurality of images at a same magnification at the plurality of focused positions and causes the recording portion to store the plurality of; and an image combining portion that cuts out an image area having a predetermined contrast from each of the plurality of images and generates on composite image.
Abstract:
A vibrating device includes a transducer including a plate-like dust-proof member and a vibration-applying member configured to vibrate the dust-proof member, a holder arranged a predetermined space apart from the dust-proof member, a sealing member configured to seal a space between the dust-proof member and the holder, and a pressing supporting member having formed therein pressing sections configured to press the dust-proof member, supporting sections for maintaining supporting of the dust-proof member or the vibration-applying member when an external force is applied to the dust-proof member, and fixing sections with respect to the holder. The pressing sections are respectively provided in positions symmetrical to each other across an imaginary axis passing a center of gravity of the transducer. Rigidity of the supporting sections is set higher than rigidity of the pressing sections.
Abstract:
A touch operation device includes a piezoelectric element, a touch detection unit, and a piezoelectric body control circuit. The piezoelectric element has a piezoelectric property and flexibility. The touch detection unit is disposed to correspond to the piezoelectric element and detects a touch operation. The piezoelectric body control circuit selectively applies a signal to a part of the piezoelectric element corresponding to the touch operation detected by the touch detection unit and then bends the part of the piezoelectric element.
Abstract:
A vibration apparatus includes a plate-shaped dust prevention member, a vibration application member, and an electrode. The vibration application member includes a flexible thin plate-shaped piezoelectric member, and vibrates the dust prevention member. The electrode formed of a conductive thin plate or film, disposed to part or entire holding the piezoelectric member, and partly extends outward relative to the dust prevention member.
Abstract:
A touch operation device includes a piezoelectric element, a touch detection unit, and a piezoelectric body control circuit. The piezoelectric element has a piezoelectric property and flexibility. The touch detection unit is disposed to correspond to the piezoelectric element and detects a touch operation. The piezoelectric body control circuit selectively applies a signal to a part of the piezoelectric element corresponding to the touch operation detected by the touch detection unit and then bends the part of the piezoelectric element.