Patent classifications
G10D9/06
Electronic Mute for Musical Instrument
Methods for using at least one musical instrument mute for electronic modification of sound emitted from a musical instrument. A mute body is positionable within a bell or horn of the musical instrument, and the body has a proximal end portion and is configured to at least partially occlude the bell or horn. A microphone is positioned at the proximal end portion of the mute body and is configured to transduce a sound produced by the musical instrument. A speaker is positioned in the mute body as well. A microcontroller is configured to receive a signal from the microphone and to electronically modify the sound of the instrument when emitted through the speaker. Some mutes also provide a communication transceiver, sensors, and input devices to remotely control and manipulate sound produced by the mute.
Electronic mute for musical instrument
A musical instrument mute, a mute body, a microphone, a speaker, and a microcontroller for electronic modification of sound emitted from a musical instrument. A mute body is positionable within a bell or horn of the musical instrument, and the body has a proximal end portion and is configured to at least partially occlude the bell or horn. A microphone is positioned at the proximal end portion of the mute body and is configured to transduce a sound produced by the musical instrument. A speaker is positioned in the mute body as well. A microcontroller is configured to receive a signal from the microphone and to electronically modify the sound of the instrument when emitted through the speaker. Some mutes also provide a communication transceiver, sensors, and input devices to control and manipulate sound produced by the mute.
Electronic mute for musical instrument
A musical instrument mute, a mute body, a microphone, a speaker, and a microcontroller for electronic modification of sound emitted from a musical instrument. A mute body is positionable within a bell or horn of the musical instrument, and the body has a proximal end portion and is configured to at least partially occlude the bell or horn. A microphone is positioned at the proximal end portion of the mute body and is configured to transduce a sound produced by the musical instrument. A speaker is positioned in the mute body as well. A microcontroller is configured to receive a signal from the microphone and to electronically modify the sound of the instrument when emitted through the speaker. Some mutes also provide a communication transceiver, sensors, and input devices to control and manipulate sound produced by the mute.
Silencer for wind instrument
A silencer for a wind instrument includes a hollow pipe whose one end is closed and serves as a closed end. The pipe includes an outer wall having at least one of at least one recessed portion and at least one protruding portion on a portion of the outer wall near the closed end.
Silencer for wind instrument
A silencer for a wind instrument includes a hollow pipe whose one end is closed and serves as a closed end. The pipe includes an outer wall having at least one of at least one recessed portion and at least one protruding portion on a portion of the outer wall near the closed end.
Sensor Device, Mute Device for Wind Instrument, and Method for Computing Radiated Sound Waveform
A sensor device includes a source and a first sensor arrangement. The source generates a wave traveling within a tube of a wind instrument. The first sensor arrangement includes a plurality of sensors that sense the wave. The source and the first sensor arrangement are arranged within the tube such that the plurality of sensors are each positioned at a distance from one another in the longitudinal direction of the tube.
Sensor Device, Mute Device for Wind Instrument, and Method for Computing Radiated Sound Waveform
A sensor device includes a source and a first sensor arrangement. The source generates a wave traveling within a tube of a wind instrument. The first sensor arrangement includes a plurality of sensors that sense the wave. The source and the first sensor arrangement are arranged within the tube such that the plurality of sensors are each positioned at a distance from one another in the longitudinal direction of the tube.