Abstract:
A driving device includes: a power source circuit that converts inputted power to a constant voltage or constant current power, and outputs this converted power; a driver circuit that supplies the power outputted by the power source circuit to a load; and a control unit that receives the voltage or current of the power outputted by the power source circuit, calculates a value by multiplying a control gain by a difference of the detected value and a constant target value, and outputs a feedback signal based on this calculated value to the power source circuit, thereby performing feedback control on the power source circuit, the control unit raising the control gain when the voltage or current of the power outputted by the driver circuit is changed.
Abstract:
Provided is a data processor for generating three-dimensional image data from two-dimensional original image data, the three-dimensional image data including depth value, the apparatus comprising: a first clustering processor for dividing the two-dimensional original image data into a first plurality of clusters based on brightness; a three-dimensional data generating unit for setting a predetermined direction as a brighter-to-darker direction, and for generating information, as first depth information, such that depth value for a first cluster among the plurality of clusters is set to be larger than depth value for a second cluster which neighbors the first cluster and is located nearer to a starting point of the brighter-to-darker direction than the first cluster where the brightness of the first cluster is darker than the brightness of the second cluster.
Abstract:
A light source unit includes a red light source, a first blue-light source, a fluorescent material, a second blue light source and an optical system. The red light source emits light in red wavelength range. The first blue-light source emits light in a first blue-wavelength range. The fluorescent material receives the light in the first blue-wavelength range and emits light in a green wavelength range. The second blue-light source emits light in a second blue-wavelength range whose wavelengths are longer than those in the first blue-wavelength range. An optical system guides the light emitted from the red light source, the light emitted from the second blue-light source, and the light emitted from the fluorescent material, along a unique optical path.
Abstract:
An advertisement delivery system of the present invention includes a store terminal, a management device connected to the store terminal via a communication network, and a mobile terminal connected to the management device via the communication network. The store terminal transmits a delivery instruction to the management device in response to an operation giving an instruction to deliver advertisement data. When the delivery instruction transmitted from the store terminal is received, the management device push-delivers the advertisement data of the store that has given the delivery instruction to the mobile terminal. Then, when the advertisement data of the store push-delivered from the management device is received, the mobile terminal judges whether or not the distance from the store to its current position is within a predetermined range, and outputs the advertisement data on a condition that the distance is within the predetermined range.
Abstract:
A CPU sets an exposure value to conform to the entire imaging range acquired by an imaging section, and acquires an entire range image captured with this exposure value, at first acquisition timing for an entire-range-image movie. Also, the CPU sets an exposure value for a frame to conform to a main subject image or a predetermined area in the entire range image acquired by the imaging section, and acquires a cut-out image formed by trimming an image area including the main subject image or the predetermined area from an entire range image captured with this exposure value, at second acquisition timing for a partial-range-image movie.
Abstract:
An image capture apparatus including a timing generator that generates a frame synchronization signal with a constant cycle receives a reference signal generated at a predetermined interval based on a predetermined reference cycle, compares generation timing of the reference signal received with generation timing of the frame synchronization signal generated by the timing generator, and adjusts a generation cycle of the frame synchronization signal generated by the timing generator based on a result of the comparison.
Abstract:
An object of the present invention is to obtain an image that is more similar to a real ink-wash painting. An ink-wash painting conversion unit converts data of an original image into data of a painterly image. A characteristic region detection unit detects a characteristic region of the original image from the data of the original image. A conversion unit executes gradation processing of gradating the characteristic region detected by the characteristic region detection unit, and margin setting processing of setting a margin region to be added to the painterly image, as image processing of further converting the data of the painterly image that was converted by the ink-wash painting conversion unit.
Abstract:
A drawing apparatus detects, as base coat information, a contour of a base coat region which is formed on a surface of a drawing object by applying a first ink used for a base coat on the surface of the drawing object with a drawing tool so as to fill in a design region surrounded with a contour of a design image, before the design image is printed on the surface of the drawing object, and adjusts a size of the design image and generates an adjusted design image which has a size sufficient to cover a whole area of the base coat region, based on the detected base coat information.The drawing apparatus then prints, by a print head, the adjusted design image on the base coat region at a position at which the adjusted design image covers the whole area of the base coat region.
Abstract:
The invention provides a method of processing an image in a diagnostic apparatus 100 of diagnosing a disease using a captured image of an affected area, comprising: a memorizing step of memorizing the captured image (Step S12), and a processing step of processing the captured image memorized (Step S13), wherein in the processing step a region to be diagnosed is subjected to a highlighting process with a specified color thereof maintained.
Abstract:
A processing device includes: a plurality of processing units that perform processes in accordance with data items read from a memory; a bus that connects the memory to the plurality of processing units; and a traffic monitor that monitors traffic on the bus with respect to the plurality of processing units, and when the traffic for one of the processing units that has been assigned access rights to the memory exceeds or reaches a prescribed upper limit, outputs a signal to the one of the processing units so as to reduce or suspend the traffic for the one of the processing units.