IP Library › Granted Patent US 12,017,098
Granted Patent B2
US 12,017,098 · App. 18/309,211 · Granted Jun 25, 2024

Method of controlling a powered air purifying respirator

Inventors: Keith K. Mclaughlin (Eagan, MN); Douglas D. Jensen (Woodbury, MN); Sean R. Kilmer (Lino Lakes, MN); Andrew Murphy (Binchester Moor, GB)
Assignee: 3M Innovative Properties Company
A62B7/10A62B7/00A62B18/006A62B18/045F16K31/02H01M10/425H01M10/482H01M2010/4271H01M2220/10H01M2220/30
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Quick Facts
Patent No.
US 12,017,098
App. No.
18/309,211
Granted
Jun 25, 2024
Kind
B2
Abstract

There is provided a method of controlling a powered air purifying respirator blower system to deliver a substantially uniform volumetric airflow to a user, the system comprising a fan powered by a battery in communication with a variable speed electric motor, the variable speed electric motor is controlled by an electronic control unit for delivering a forced flow of air through at least one filter to a user, comprising the steps of: (a) determining an estimated system run time by summing a battery run time remaining and a system run time; and (b) altering a speed of the variable speed electric motor when the estimated system run time is equal to or less than a desired system run time.

Claims (23)

1. A method of controlling a powered air purifying respirator blower system to deliver a substantially uniform volumetric airflow to a user, the system comprising a fan powered by a battery in communication with a variable speed electric motor, the variable speed electric motor is controlled by an electronic control unit for delivering a forced flow of air through at least one filter to a user, comprising the steps of:

(a) determining an estimated system run time by summing a battery run time remaining and a system run time; and

(b) altering a speed of the variable speed electric motor when the estimated system run time is equal to or less than a desired system run time; and,

wherein the substantially uniform volumetric airflow comprises airflow between −15 to +15 liters per minute around a desired airflow.

2. The method of claim 1 , wherein altering the speed of the variable speed electric motor is decreasing the speed of the variable speed electric motor.

3. The method of claim 2 , wherein the decreasing of the speed of the variable speed electric motor increases the battery run time remaining.

4. The method of claim 1 , further comprising, before step (a), determining a speed of the variable speed electric motor and establishing an electrical characteristic applied by the electronic control unit to the variable speed electric motor.

5. The method of claim 1 , further comprising step (c) altering the speed of the variable speed electric motor to a speed lower than the speed established in step (b) by establishing and applying a new electrical characteristic to the variable speed electric motor.

6. The method of claim 5 , wherein the substantially uniform volumetric airflow from the fan is varied based on the speed of the electric motor.

7. The method of claim 5 , wherein the substantially uniform volumetric airflow from the fan is variable and chosen from any one of a number of pre-selected airflow values.

8. A powered air purifying respirator blower system, the system comprising a fan powered by a battery in communication with a variable speed electric motor, the variable speed electric motor controlled by an electronic control unit for delivering a forced flow of air through at least one filter to deliver a substantially uniform volumetric airflow to a user, the system configured to perform the steps of:

(a) determining an estimated system run time by summing a battery run time remaining and a system run time; and

(b) altering a speed of the variable speed electric motor when the estimated system run time is equal to or less than a desired system run time; and,

wherein the substantially uniform volumetric airflow comprises airflow between −15 to +15 liters per minute around a desired airflow.

9. The powered air purifying respirator blower system of claim 8 , wherein altering the speed of the variable speed electric motor is decreasing the speed of the variable speed electric motor.

10. The powered air purifying respirator blower system of claim 9 , wherein the decreasing of the speed of the variable speed electric motor increases the battery run time remaining.

11. The powered air purifying respirator blower system of claim 8 , further comprising, before step (a), determining a speed of the variable speed electric motor and establishing an electrical characteristic applied by the electronic control unit to the variable speed electric motor.

12. The powered air purifying respirator blower system of claim 8 , further comprising step (c) altering the speed of the variable speed electric motor to a speed lower than the speed established in step (b) by establishing and applying a new electrical characteristic to the variable speed electric motor.

13. The powered air purifying respirator blower system of claim 12 , wherein altering the speed of the variable speed electric motor comprises decreasing the speed of the variable speed electric motor.

14. The powered air purifying respirator blower system of claim 12 , wherein the decreasing of the speed of the variable speed electric motor increases the battery run time remaining.

15. The powered air purifying respirator blower system of claim 12 , further comprising, before step (a), determining a speed of the variable speed electric motor and establishing an electrical characteristic applied by the electronic control unit to the variable speed electric motor.

16. The powered air purifying respirator blower system of claim 12 , wherein the substantially uniform volumetric airflow from the fan is varied based on the speed of the electric motor.

17. The powered air purifying respirator blower system of claim 12 , wherein the substantially uniform volumetric airflow from the fan is variable and chosen from any one of a number of pre-selected airflow values.

Continuity (4)
Continuation 17650921 · Feb 14, 2022
Continuation 16092488
Provisional Application 62321246 · Apr 12, 2016
Related Publication 20230285778A1 · Sep 14, 2023