CO
A wearable CO 2 monitor and stale air dosimeter comprising a power supply with rechargeable battery and battery charger, an accurate CO 2 sensor, a fast-reacting CO 2 sensor, programmable control circuitry, and a user interface for presenting results and indications. The accurate CO 2 sensor provides CO 2 levels which are used to compute staleness levels and further accumulated as a staleness dose. The fast-reacting CO 2 sensor alerts the user to changes in CO 2 levels and allows the accurate CO 2 sensor to be powered down during periods when CO 2 levels are stable.
1 . A battery-powered carbon dioxide (CO 2 ) sensor comprising:
a first sensor configured to provide CO 2 measurements to generate a CO 2 level;
a second sensor configured to provide an indicator of changes in the CO 2 level, wherein the second sensor is faster than the first sensor in responding to a CO 2 concentration change, and wherein the first sensor is configured to provide a higher accuracy CO 2 concentration value than the second sensor; and
a user interface configured to present a combined sensor result of the first sensor and the second sensor.
2 . The CO 2 sensor of claim 1 , wherein a calibration offset value modifies an output of the second sensor such that an output of the first sensor and the output of the second sensor give similar results when the output of the first sensor and the output of the second sensor have stable values.
3 . The CO 2 sensor of claim 1 , wherein the first sensor comprises a non-dispersive infrared (NDIR) sensor or a photoacoustic sensor.
4 . The CO 2 sensor of claim 3 , wherein the second sensor comprises a metal oxide (MOX) sensor.
5 . The CO 2 sensor of claim 1 , wherein the user interface comprises a display, and the combined sensor result is displayed on the display.
6 . The CO 2 sensor of claim 1 , wherein the first sensor, the second sensor, and the user interface are mounted on a printed circuit board (PCB).
7 . The CO 2 sensor of claim 6 , further comprising a battery and a microcontroller mounted on the PCB.
8 . The CO 2 sensor of claim 6 , wherein the first sensor, the second sensor, and the user interface are packaged in a housing, the housing comprises a vent hole that at least partially provides a fluidic pathway between the first sensor and an outside environment.
9 . The CO 2 sensor of claim 8 , wherein at least a portion of the housing being transparent such that the user interface is visible through the portion of the housing.
10 . The CO 2 sensor of claim 9 , further comprising a connector for electrical connection between the CO 2 sensor and an external system.