Respirator devices with source control mechanisms and associated systems and methods
The present technology relates to respirator devices including source control features. In some embodiments, a source control mask device can include a shield that substantially covers the mouth and nose of a user and a mechanism that can actively extract air as it is exhaled by the user. The extracted exhaled air can then be sanitized before the mask device discharges it into the atmosphere. The mask device may selectively form a seal to the user's face dependent on air flow conditions.
1. A respirator device, comprising:
a mask section comprising a shield and defining a breathing chamber, wherein the mask section is configured to fit at least partially over a user's face with a periphery of the mask section aligned with the user's mouth and/or nose and spaced apart from the user's mouth and/or nose by a gap;
an intake section coupled to the mask section and configured to sanitize air entering the breathing chamber from an external environment;
a source control member extending at least partly around the mask section and configured to extend across the gap between the periphery of the mask section and the user's face when the respirator device is worn by the user, the source control member being further configured to remove SARS-CoV-2 from air exiting from the breathing chamber to the external environment via the gap; and
a fan unit configured to maintain a positive pressure relative to the external environment within the breathing chamber and an air flow path through the breathing chamber, the air flow path including (i) an air inflow entering the breathing chamber via the intake section and (ii) an air outflow exiting the breathing chamber via the gap and the source control member.
2. The respirator device of claim 1 wherein the source control member is configured to remove SARS-CoV-2 from the air exiting the breathing chamber by filtering droplets containing SARS-CoV-2 from the air exiting the breathing chamber.
3. The respirator device of claim 1 wherein the source control member includes a filtering material configured to seal against the user's face.
4. The respirator device of claim 1 wherein the source control member is removably coupled to the mask section.
5. The respirator device of claim 1 wherein the intake section includes an inlet filter and the source control member includes an outlet filter.
6. The respirator device of claim 5 wherein the outlet filter has different properties than the inlet filter.
7. The respirator device of claim 6 wherein the outlet filter has a greater pore size than the inlet filter.
8. The respirator device of claim 1 wherein the source control member includes an active sanitization mechanism.
9. The respirator device of claim 8 wherein the active sanitization mechanism is configured to use one or more of the following: ozone, electric discharge, electrostatic attraction, electrostatic precipitation, magnetic attraction, chemical inactivation, or temperature inactivation.
10. A respirator device, comprising:
a mask section comprising a shield and defining a breathing chamber, wherein the mask section is configured to fit at least partially over a user's face with a periphery of the mask section aligned with the user's mouth and/or nose and spaced apart from the user's mouth and/or nose by a gap;
an intake region fluidly coupled to the breathing chamber;
a source control mechanism fluidly coupled to the breathing chamber and configured to extend across the gap between the periphery of the mask section and the user's face when the respirator device is worn by the user, the source control member being further configured to remove SARS-CoV-2 from air exiting from the breathing chamber to an external environment via the gap; and
at least one fan unit configured to maintain an air flow path through the breathing chamber, the air flow path including (i) an air inflow entering the breathing chamber via the intake region and (ii) an air outflow exiting the breathing chamber via the gap and the source control mechanism.
11. The respirator device of claim 10 wherein the at least one fan unit is configured to maintain a negative pressure relative to the external environment within the breathing chamber.
12. The respirator device of claim 10 wherein the at least one fan unit is configured to maintain a positive pressure relative to the external environment within the breathing chamber.
13. The respirator device of claim 10 wherein at least 95% of the air exiting from the breathing chamber passes through the source control mechanism.
14. The respirator device of claim 10 wherein the source control mechanism comprises a filter.
15. The respirator device of claim 10 wherein the source control mechanism comprises an active sanitation mechanism configured to use one or more of the following: ozone, electric discharge, electrostatic attraction, electrostatic precipitation, magnetic attraction, chemical inactivation, or temperature inactivation.
16. The respirator device of claim 10 wherein the source control mechanism includes the at least one fan unit.
17. The respirator device of claim 10 wherein the intake region includes a filter configured to sanitize air entering the breathing chamber from the external environment.
18. The respirator device of claim 10 , further comprising an adjustable region included in or coupled to the mask section, wherein the adjustable region is adapted to change in configuration based on a pressure level within the mask section.
19. The respirator device of claim 10 , further comprising at least one sensor, wherein an air outflow rate produced by the at least one fan unit is variable based on data generated by the sensor.
20. A respirator device, comprising:
a mask section comprising a shield and defining a breathing chamber, wherein the mask section is configured to fit at least partially over a user's face with a periphery of the mask section aligned with the user's mouth and/or nose and spaced apart from the user's mouth and/or nose by a gap;
an intake region fluidly coupled to the breathing chamber;
a source control mechanism fluidly coupled to the breathing chamber and configured to extend across the gap between the periphery of the mask section and the user's face when the respirator device is worn by the user, the source control member being further configured to sanitize air exiting from the breathing chamber to an external environment via the gap; and
at least one fan unit configured to maintain an air flow path through the breathing chamber, the air flow path including (i) an air inflow entering the breathing chamber via the intake region and (ii) an air outflow exiting the breathing chamber via the gap and the source control mechanism.
21. The respirator device of claim 20 wherein the source control mechanism comprises a filter.
22. The respirator device of claim 20 wherein the source control mechanism comprises an active sanitation mechanism configured to use one or more of the following: ozone, electric discharge, electrostatic attraction, electrostatic precipitation, magnetic attraction, chemical inactivation, or temperature inactivation.
23. The respirator device of claim 20 wherein the air inflow is a first air inflow positioned on a first side of the breathing chamber, the air flow path further including a second air inflow positioned on a second side of the breathing chamber.