Abstract:
A driving unit successively selects one drive line from among a plurality of drive lines of a touch inputting device and applies a driving voltage to the selected drive line. A voltage detection unit successively selects one sensing line from among a plurality of sensing lines and detects an output voltage of the selected sensing line. An arithmetic operation unit determines a resistance value of a pressure-sensitive resistive element provided at the location at which the selected drive line and the selected sensing line cross with each other based on the driving voltage and the output voltage. The driving unit applies 0 volts or a bias voltage equal to or lower than the driving voltage to the other drive lines than the selected drive line.
Abstract:
A low dynamic range (LDR) image data storage stores LDR image sets each of which includes a plurality of LDR segmented images captured with a camera panned. Here each LDR image set is of a different exposure level, respectively. A high-dynamic-range (HDR) synthesizing unit combines and merges a plurality of LDR segmented images of different exposure levels so as to generate an HDR segmented image set including a plurality of HDR segmented images of different pan angles or tilt angles. A panoramic image synthesizing unit generates an HDR panoramic image by stitching together adjacent HDR segmented images.
Abstract:
A sampling unit acquires a sample data series of a signal indicating a touch state quantity detected in a touch panel. A discrete Fourier transformation unit transforms the sample data series into the frequency domain. The frequency spectral analysis unit determines a frequency spectral distribution in accordance with the sample data transformed into the frequency domain. A peak detection unit detects a peak in a frequency band of a pulse in the frequency spectral distribution and finds the frequency of the detected peak so as to determine the pulse.
Abstract:
A control point detector detects controls points, with which moving images are associated with a region of a panoramic image, by detecting feature points between the panoramic image and a frame of part of the moving images. An alignment processing unit adjusts the alignment of the moving images relative to the panoramic image, based on the control points. A mapping processing unit maps the panoramic image and a still image frame of the moving images the alignment of which adjusted by the alignment processing unit, onto a three-dimensional (3D) panoramic space as textures. A 3D image generator generates a 3D panoramic image, when the three-dimensional panoramic image is viewed in a specified line of sight. When a moving image reproduction unit receives instructions to reproduce the moving images in the 3D panoramic image, the moving image reproduction unit reproduces the moving images.