FACEPIECE WITH NOISE REDUCTION FOR COMMUNICATION
A respirator system includes a facepiece, a communication system and a control system in operative connection with the communication system. The control system is adapted to control voice transmittal via the communication system based at least in part upon measurement of a variable other than sound. The variable is related to speech of a user of the facepiece. The variable may, for example, be related to respiration of the user.
1 . A respirator system, comprising:
a facepiece;
a communication system comprising a voice transmission system; and
a control system in operative connection with the voice transmission system, the control system controls voice transmittal via the voice transmission system based at least in part upon measurement of a variable other than sound, the variable other than sound being related to speech of a user of the facepiece.
2 . The respiration system of claim 1 wherein the variable other than sound is related to respiration of the user.
3 . The system of claim 2 wherein the control system controls the voice transmission system at least in part on the basis of a stage of respiration.
4 . The system of claim 3 wherein the voice transmission system comprises a microphone, and the control system controls output from the voice transmission system at least during inhalation to decrease noise associated with inhalation.
5 . The system of claim 4 wherein the control system comprises a sensor system to detect a stage of respiration of the user.
6 . The system of claim 5 wherein the sensor system comprises a pressure sensor, a proximity sensor, a motion sensor, a position sensor, a flow sensor, a temperature sensor or a gas sensor.
7 . The system of claim 4 further comprising a regulator, wherein the facepiece comprises an interface to which the regulator is removably attachable, the regulator comprising the sensor system to detect the stage of respiration of the user.
8 . The system of claim 7 wherein the regulator comprises a housing and the sensor system comprises a pressure sensor, a proximity sensor a position sensor, a motion sensor, a flow sensor, a temperature sensor or a gas sensor within the housing.
9 . The system of claim 7 wherein the regulator comprises a valve assembly comprising an inlet for connection to a source of breathing gas, an outlet for connection to the facepiece to provide breathing gas to a user, an actuating mechanism for controlling flow of breathing gas between the inlet and the outlet and a flexible elastomeric diaphragm in operative connection with the actuating mechanism, the diaphragm being in fluid connection with ambient environment on a first side thereof and in fluid connection with an interior of the facepiece on a second side thereof, the sensor system comprising a proximity sensor, a position sensor or a motion sensor in operative connection with a moving component of the actuating mechanism or the diaphragm of the regulator or a pressure sensor or a flow sensor in fluid connection with a volume of the regulator on the second side of the diaphragm.
10 . The system of claim 9 wherein the microphone is attached to the regulator.
11 . A pressure regulator for use in connection with a facepiece, comprising a valve assembly including an inlet for connection to a source of breathing gas, an outlet for connection to the facepiece to provide breathing gas to a user, an actuating mechanism for controlling flow of breathing gas between the inlet and the outlet, a flexible elastomeric diaphragm in operative connection with the actuating mechanism, the diaphragm being in fluid connection with ambient environment on a first side thereof and in fluid connection with an interior of the facepiece on a second side thereof, and a sensor system adapted to be placed in operative connection with a communication system comprising a voice transmission system, the sensor system providing a signal to control the voice transmission system based at least in part upon measurement of a variable other than sound, the variable other than sound being related to speech of a user of the facepiece.
12 . The regulator of claim 11 wherein the variable is related to respiration of the user.
13 . The regulator of claim 12 wherein the sensor system provides a signal to control the voice transmission system at least in part on the basis of a stage or respiration.
14 . The regulator of claim 13 wherein the voice transmission system comprises a microphone, and the control system controls output from the voice transmission system during at least inhalation to decrease noise associated with inhalation.
15 . The regulator of claim 14 wherein the microphone is attached to the regulator.
16 . The regulator of claim 13 wherein the sensor system detects inhalation by the user.
17 . The regulator of claim 13 wherein the sensor system comprises a proximity sensor, a position sensor or a motion sensor in operative connection with a moving component of the actuating mechanism or the diaphragm of the regulator or a pressure sensor or a flow sensor in fluid connection with a volume of the regulator on the second side of the diaphragm.
18 . A facepiece system for use in a respiration system, comprising a facepiece and a pressure regulator in fluid connection with the facepiece, the pressure regulator comprising a valve assembly including an inlet for connection to a source of breathing gas, an outlet for connection to the facepiece to provide breathing gas to a user, an actuating mechanism for controlling flow of breathing gas between the inlet and the outlet and a flexible elastomeric diaphragm in operative connection with the actuating mechanism, the diaphragm being in fluid connection with ambient environment on a first side thereof and in fluid connection with an interior of the facepiece on a second side thereof, and a sensor system adapted to be placed in operative connection with a voice transmission system of a communication system, the sensor system providing a signal to control the voice transmission system based at least in part upon measurement of a variable other than sound, the variable other than sound being related to speech of a user of the facepiece.
19 . A method of controlling voice transmission of a user of a respiration system, comprising: controlling voice transmission based at least in part upon measurement of a variable other than sound, the variable being related to speech of a user of the facepiece.
20 . The method of claim 19 wherein the variable is related to respiration of the user and controlling voice transmission comprises controlling output from a voice transmission system at least in part on the basis of a stage of respiration of the user.