Breathing apparatus
An inhalation opening 6 and an exhalation-opening 4 are formed in the facepiece 2 of a breathing apparatus 1 and the openings can be closed with an inhalation valve 8 and exhalation valve 7 , respectively. If a person wearing the breathing apparatus 1 inhales, the inhalation valve 8 is open and the exhalation valve 7 is closed. A photointerrupter 11 senses the closing operation of the exhalation valve 7 and supplies electric power to a motor 9 to drive a blower 16.
1. A breathing apparatus, comprising:
a facepiece with an inhalation opening and an exhalation opening formed therein;
an inhalation valve disposed adjacent to said inhalation opening so as to be open during inhalation and closed during exhalation;
an exhalation valve disposed adjacent to said exhalation opening so as to be closed during inhalation and open during exhalation;
a blower driven by a motor for blowing the outside air into said facepiece through said inhalation opening; and
a sensor which is responsive to the opening or closing operation of said exhalation valve or inhalation valve to produce control signals,
wherein a power supply to said motor is controlled based on the signals from said sensor.
2. The breathing apparatus according to claim 1 , wherein said sensor comprises a photointerrupter disposed in the vicinity of said exhalation valve or inhalation valve for sensing the position of said exhalation valve or inhalation valve.
3. A breathing apparatus, comprising:
a facepiece with an inhalation opening and an exhalation opening formed therein;
an inhalation valve disposed adjacent to said inhalation opening so as to be open during inhalation and closed during exhalation;
an exhalation valve disposed adjacent to said exhalation opening so as to be closed during inhalation and open during exhalation;
a blower driven by a motor for blowing the outside air into said facepiece through said inhalation opening; and
a sensor which is sensitive to the opening or closing operation of said exhalation valve or inhalation valve,
wherein power supply to said motor is controlled based on the signals from said sensor; and
wherein said sensor comprises said exhalation valve or inhalation valve formed from an electrically conductive material and a valve seat formed from an electrically conductive material secured to the facepiece and detects that said exhalation valve or inhalation valve has been closed by sensing the electric current from said exhalation valve or inhalation valve to the valve seat.