Abstract:
An electronic device and a method for controlling the electronic device, the method including receiving an input of a command to reproduce music contents, determining audio characteristics information on the music contents and situation information on an environment where the music contents are being reproduced; and displaying a visualization effect of visualizing the music contents using the audio characteristics information and the situation information, and reproducing the music contents.
Abstract:
The object is to provide a display system of mobile audio devices which enables comparative display between frequency range of audio source read externally and memorize by the main body of the mobile audio devices and frequency range replayed by the main body of the mobile audio devices.The display system of audio devices comprises the audio source file 18 memorizing outer audio source data, the replay unit 14 of audio source data of the audio source file 18, the device data memory 16 of data of replay devices, the controller 15 controlling among circuits, the sampling rate output 21 of audio source data of said audio source file 18, the replay sampling rate output 23 outputting said replay sampling rates, the audio source output display part 12 displaying said sampling rate output 21, and the replay output display part 13 displaying said replay sampling rate output 23.
Abstract:
An electronic device and a method for controlling the electronic device, the method including receiving an input of a command to reproduce music contents, determining audio characteristics information on the music contents and situation information on an environment where the music contents are being reproduced; and displaying a visualization effect of visualizing the music contents using the audio characteristics information and the situation information, and reproducing the music contents.
Abstract:
The present invention provides an LED lighting device and a wireless speaker system. The LED lighting device includes an LED power supply circuit configured to power the LED lighting device; an LED light source module configured to emit light, the LED light source being connected to the power supply circuit; a DLNA wireless communication module configured to receive and process audio signals and commands transmitted from a smart terminal, and control the LED lighting device based on the commands received from the smart terminal; an audio power amplifier unit configured to receive processed audio signals from the wireless communication module; and a speaker unit configured to play audio signals received from the audio power amplifier unit, the audio amplifier unit driving the speaker unit based on the signals received from the wireless communication module.
Abstract:
An audio speaker includes a glass, a light emitting device, a filter device, and a vibration device. The glass includes light scattering patterns and guides incoming light onto the light scattering patterns. The light emission device includes light emitting members and a control member. The filter device translates an audio signal to a control signal taking account of a plurality of different frequency bands, and transmits the control signals to the vibration device and the light emission device. The vibration device translates the control signals to controlled current applied to the light emitting members. The light intensities of the light emitting member relate to the controlled current and correspond to a height of illumination of the light scattering patterns.
Abstract:
A computing device includes an audio signal processing unit, a light module, and driving circuits. The audio signal processing unit decompresses digital audio data into an audio signal. The driving circuit drives the light module to light according to the audio signal, in such a manner that the intensity/brightness of the light module corresponds to amplitude of the audio signal in real-time.
Abstract:
Provided are a light emitting control device, computer readable memory device, and method to control a light emitter associated with a pad capable of being struck to produce a sound. In response to detecting a striking of the pad, a tone associated with the pad is produced. A level of the tone produced is determined and a level meter brightness is determined based on the determined level of the tone. An output brightness for the light emitter is calculated associated with the struck pad using the determined level meter brightness and a brightness change pattern. The light emitter associated with the pad is controlled according to the determined output brightness.
Abstract:
A wind-water ultrasonic humidifier includes a housing, a hollow connecting portion, a water circulation system, and a power control box. The water circulation system includes an electric base, a rubber cork plugged into the top of the water circulation system and having a baffle inserted into a concave hole, a circular threaded pipe including a nebulizer and a water pump, two arc-shaped bridging support stands provided for connecting both sides of the electric base in an arc shape, a latch structure disposed at a lower end of the support stand, latches disposed on both sides of the electric base, and a water dripping device installed at an upper end of the bridging support stand.
Abstract:
An embodiment of the present invention is directed to a method and system for electronic sensing of string instrument input. The method includes receiving a first signal from a peak detection circuit. The peak detection circuit is operable to sense string activation. A second signal is received from one or more capacitive sensors. The second signal may include finger placement information. The method further includes processing the first and the second signals to generate an audio signal and outputting the audio signal.
Abstract:
A system that varies the brilliance of light bulbs in accordance with modulated audio signals. The audio signals are first compressed and then passed through a comparator. The comparator has two inputs, one of which is the aforesaid compressed audio signals. The other input is a control input which receives a second voltage in the form of a series of impulses. The compressed audio signals pass through the comparator if and when their voltage is higher than that of said second voltage.