Abstract:
PURPOSE: A video recording device, a recording method of the same, and a computer readable recording medium of the same are provided to capture a wide movement area from a sub screen, thereby improving user convenience. CONSTITUTION: An image decimation unit generates low-frame rate video data with a reduced frame rate by frame decimating the video data. A data delay unit delays the video data. A video synthesis unit generates synthetic video data which synthesizes the low frame rate video data and the delayed video data. A recording unit records the synthetic image data to a memory card(3).
Abstract:
The time data processing appts. comprises a time-keeping memory for storing time data, a time-keeping cct. for renewing the time data read out from the time-keeping memory, ! repeatedly at predeted. regular intervals, and a CPU being accessible to the time data in the time-keeping memory while the time-keeping cct. does not make the time-keeping memory accessed. Pref. the time-keeping memory has a memory for storing current time data , one for storing present time data and another for storing flag data representing coincidence or non-coincidence between time data.
Abstract:
An electronic timepiece circuit is composed of an oscillator(11), a frequency demultiplier(12) which makes a signal of a second by demultiplying the output reference signal from the oscillator, and a counter which counts the signal of a second from the frequency demultiplier thereby making hours, minutes and seconds. The timepiece data stored in RAM are read to the shift register ebery fixed time interval for arithmetic operations and renewal of the timepiece data. The present data and time adtd are written into RAM l by key operations on the key input device of the main body.
Abstract:
One aspect of the present disclosure relates to a machine learning method for training a learning model, comprising: transforming, by at least one processor, a first audio type of audio data into a first image type of image data, wherein a first audio component and a second audio component are mixed in the first audio type of audio data, and the first image type of image data corresponds to the first audio type of audio data and has one axis of multiple axes as a logarithmic frequency axis; transforming, by at least one processor, a second audio type of audio data into a second image type of image data, wherein the second audio type of audio data includes the first audio component without mixture of the second audio component, and the second image type of image data corresponds to the second audio type of audio data and has one axis of multiple axes as a logarithmic frequency axis; and performing, by at least one processor, machine learning on the learning model with training data including sets of the first image type of image data and the second image type of image data, wherein the performing the machine learning on the learning model comprises training the learning model to generate second image data from first image data, and the first image data is image data that is of a same type as the first image type and different from the first image type of image data and is not included in the training data, and the second image data is of a same type as the second image type and different from the second image type of image data and is not included in the training data.
Abstract:
A tape cassette(5), including: a printing medium(M): a film(F) which has adhesive(FP) on one surface thereof; and an intervening member(57) which is arranged in an area where a printing surface(MP) of the printing medium and the adhesive on the one surface of the film are located facing each other, and which intervenes between a printing device, and the printing medium and the film to transmit a pressing force to the printing medium when pressure bonding is performed by applying the pressing force from outside of the tape cassette so as to press one of the printing medium and the film on the other.
Abstract:
A digital-to-analog conversion device which performs integration processing for integrating a difference between an input signal and a first return signal generated based on the input signal, and outputting an integration result, first quantization processing for quantizing the integration result, and outputting a first quantization signal, first return signal output processing for outputting the first return signal by adding to the first quantization signal a correction value delay signal acquired by a correction value signal outputted based on the integration result being delayed, and output processing for outputting output signals including a signal whose pulse width is asymmetrical to center of a processing period, based on the first quantization signal, in which the correction value signal includes a signal indicating a correction value for correcting a difference between a center of the pulse width asymmetrical to the center of the processing period and the center of the processing period.
Abstract:
When a user touches positions on a touch panel display unit which correspond to a plurality of characteristic points of a user's desired figure (S1, S3, S22), the user moves the touched positions in accordance with a shape of the figure (S4, S23) and leaves his or her touches from the touched positions and touches an additional touch position (S10, S11, S15), characteristic conditions of different figures (a circle, parallel lines, an equilateral triangle, a triangle, a square, a rectangle, a quadrangle, a straight line, a concentric circle, an ellipse, etc.) are determined in accordance with the touched positions, a locus of the movement of the touched positions and the additional touch position (S5, S7, S12, S15, S16, S18, S24) and a type of the figure and a drawing-position thereof are determined. Thus, in accordance with the determined type and drawing-position, a basic figure of a corresponding type is read out of a drawing figure database and drawn and displayed in the drawing-position with its size adjusted.
Abstract:
A content playback control device (100) comprises acquisition means (106, 107, 108) for acquiring an attribute of a listener that is the target of providing content; determination means (112) for determining a language when playing back the content, based on the attribute of the listener acquired by the acquisition means; and playback control means (112) for playing back the content through audio in the determined language determined by the determination means.
Abstract:
A pixel driving device for drive control of pixels, has a image data conversion circuit(123) for generating an original gradation signal by converting an image data, based on a preset conversion property, a signal correction circuit(16) for outputting a corrected gradation signal by adding a correction value acquired based on an electric property parameter of a pixel to the original gradation signal, and a drive signal impressing circuit(118) for impressing a voltage signal corresponding to the corrected gradation signal on one end of a signal line(Ld). The original gradation signal has a value that corresponds to a gradation value of the image data and the maximum value of the original gradation signal is set to a value equal to or smaller than a value acquired by subtracting a value corresponding to the correction value from a maximum value in an input range of the drive signal impressing circuit.
Abstract:
A display device includes a display panel having a display area in which a plurality of display pixels are two-dimensionally arranged along a plurality of rows and a plurality of columns, to display image information based on display data, a power supply driving section applying, to each of the display pixels in the display area, one of a first power supply voltage having a voltage value at which the display pixel is set to a non-display-operation state and a second power supply voltage having a voltage value at which the display pixel is set to a display operation state, and a control section controlling the power supply driving section to set a area-ratio of an first area in the display area in which the display pixels to which the first power supply voltage is applied are arranged to an second area in which the display pixels to which the second power supply voltage is applied are arranged.