IP Library Granted Patent US 11,607,099
Granted Patent B2
US 11,607,099 · App. 16/926,348 · Granted Mar 21, 2023

Robotic vacuum cleaner and docking station for a robotic vacuum cleaner

Inventor: Wayne Ernest Conrad (Hampton, CA)
Assignee: Omachron Intellectual Property Inc.
A47L11/4025A47L9/102A47L9/106A47L9/149A47L9/2873A47L11/4011A47L11/4027A47L11/4091A47L11/4097B01D46/0032B01D46/0043A47L2201/024B01D2273/30B01D2279/55
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Quick Facts
Patent No.
US 11,607,099
App. No.
16/926,348
Granted
Mar 21, 2023
Kind
B2
Abstract

A docking station for a robotic vacuum cleaner has a pneumatic transfer mechanism that is used to direct air to the robotic vacuum cleaner to thereby transfer dirt from the robotic vacuum cleaner to a docking station.

Claims (35)

1. An apparatus comprising a docking station having a dirt receptacle and a robotic vacuum cleaner, wherein the robotic vacuum cleaner comprises:

(a) a primary air flow path extending from a dirty air inlet to a clean air outlet:

(b) a primary suction motor positioned in the primary air flow path; and

(c) an air treatment unit positioned in the primary air flow path, the air treatment unit comprising a dirt collection region and a dirt outlet;

wherein the apparatus comprises a pneumatic dirt transfer mechanism comprising a secondary air flow path and a secondary suction motor provided in the secondary air flow path, and

wherein the secondary air flow path extends between a downstream end of the secondary suction motor and a secondary air inlet port of the dirt collection region of the robotic vacuum cleaner whereby in a dirt emptying mode the secondary suction motor directs air into the robotic vacuum cleaner through the secondary air inlet port of the dirt collection region of the robotic vacuum cleaner so as to transfer dirt that has collected in the dirt collection region through the dirt outlet of the dirt collection region of the robotic vacuum cleaner to the dirt receptacle, and

wherein a portion of the pneumatic dirt transfer mechanism is provided in the docking station, and

wherein, when the robotic vacuum cleaner is docked with the docking station, the robotic vacuum cleaner has a first end that faces the docking station and a second end that is opposed to the first end, a robotic vacuum cleaner axis extends between the first and second ends and the dirt outlet of the dirt collection region is axially spaced towards the first end from the secondary air inlet port of the dirt collection region.

2. The apparatus of claim 1 wherein the secondary suction motor is provided in the docking station.

3. The apparatus of claim 1 wherein the secondary suction motor is provided in the robotic vacuum cleaner.

4. The apparatus of claim 1 wherein the docking station has a secondary air flow path air outlet port and the robotic vacuum cleaner a secondary air inlet port which mates with the secondary air flow path air outlet port of the docking station when the robotic vacuum cleaner docks at the docking station.

5. The apparatus of claim 1 wherein the secondary suction motor draws from the dirt collection region.

6. The apparatus of claim 1 wherein, when the robotic vacuum cleaner is positioned on a floor, the dirt collection region has an upper side, a lower side, a first end having a first side positioned between the upper and lower sides and a second end having a second side positioned between the upper and lower sides, the second side is spaced apart from the first side in a first direction, the first side has a dirt collection region air inlet port and the second side has a dirt outlet and wherein, in the dirt emptying mode, the secondary suction motor produces an air flow that enters the dirt collection region through the dirt collection region air inlet port and exits through the dirt outlet.

7. The apparatus of claim 1 wherein the dirt collection region has an air outlet and a portion of the primary air flow path extends from the air outlet of the dirt collection region to the clean air outlet and, in the dirt emptying mode the portion of the primary air flow path is closed.

8. The apparatus of claim 1 wherein the dirt collection region has a dirt inlet and a first portion of the primary air flow path extends from the dirty air inlet to the dirt inlet of the dirt collection region and, in the dirt emptying mode the portion of the primary air flow path is closed.

9. The apparatus of claim 8 wherein the dirt collection region has an air outlet and a second portion of the primary air flow path extends from the air outlet of the dirt collection region to the clean air outlet and, in the dirt emptying mode the second portion of the primary air flow path is closed.

10. An apparatus comprising a docking station having a dirt receptacle and a robotic vacuum cleaner, wherein the robotic vacuum cleaner comprises:

(a) a primary air flow path extending from a dirty air inlet to a clean air outlet:

(b) a primary suction motor positioned in the primary air flow path; and

(c) an air treatment unit positioned in the primary air flow path, the air treatment unit comprising a dirt collection region wherein, when the robotic vacuum cleaner is positioned on a floor, the dirt collection region has an upper side, a lower side, a first end having a first side positioned between the upper and lower sides and a second end having a second side positioned between the upper and lower sides, the second side is spaced apart from the first side in a first direction, the first side has a dirt collection region air inlet port and the second side has a dirt outlet, and

wherein the apparatus comprises a pneumatic dirt transfer mechanism comprising a secondary air flow path, and the secondary air flow path comprises a portion that extends in a downstream direction from the docking station to the dirt collection region, and

wherein, in the dirt emptying mode, air travels through the secondary air flow path and enters the dirt collection region through the dirt collection region air inlet port and exits through the dirt outlet.

11. The apparatus of claim 10 further comprising a secondary suction motor.

12. The apparatus of claim 11 wherein the secondary suction motor is provided in the docking station.

13. The apparatus of claim 10 wherein the dirt collection region has an air outlet and a portion of the primary air flow path extends from the air outlet of the dirt collection region to the clean air outlet and, in the dirt emptying mode the portion of the primary air flow path is closed.

14. The apparatus of claim 10 wherein the dirt collection region has a dirt inlet and a first portion of the primary air flow path extends from the dirty air inlet to the dirt inlet of the dirt collection region and, in the dirt emptying mode the portion of the primary air flow path is closed.

15. The apparatus of claim 14 wherein the dirt collection region has an air outlet and a second portion of the primary air flow path extends from the air outlet of the dirt collection region to the clean air outlet and, in the dirt emptying mode the second portion of the primary air flow path is closed.

16. An apparatus comprising a docking station having a dirt receptacle and a robotic vacuum cleaner, wherein the robotic vacuum cleaner comprises:

(a) a primary air flow path extending from a dirty air inlet to a clean air outlet:

(b) a suction motor positioned in the primary air flow path; and

(c) an air treatment unit positioned in the primary air flow path, the air treatment unit comprising a dirt collection region, the dirt collection region has an upper side, a lower side, a first end having a first side positioned between the upper and lower sides and a second end having a second side positioned between the upper and lower sides, the second side is spaced apart from the first side in a first direction, the second side has a dirt outlet and a dirt collection region air inlet port is spaced from the second side in the first direction,

wherein the apparatus comprises a pneumatic dirt transfer mechanism comprising a secondary air flow path that comprises a first portion that extends between the dirt receptacle and the suction motor and a second portion that extends between the suction motor and the dirt collection region of the robotic vacuum cleaner whereby in a dirt emptying mode the suction motor draws air from the dirt receptacle to the suction motor and directs air into the dirt collection region of the robotic vacuum cleaner whereby dirt that has collected in the dirt collection region moved axially through the dirt collection region to the second side and is then transferred from the dirt collection region to the dirt receptacle.

17. The apparatus of claim 16 wherein the dirt collection region has an air outlet and a portion of the primary air flow path extends from the air outlet of the dirt collection region to the clean air outlet and, in the dirt emptying mode the portion of the primary air flow path is closed.

18. The apparatus of claim 16 wherein the dirt collection region has a dirt inlet and a first portion of the primary air flow path extends from the dirty air inlet to the dirt inlet of the dirt collection region and, in the dirt emptying mode the portion of the primary air flow path is closed.

19. The apparatus of claim 18 wherein the dirt collection region has an air outlet and a second portion of the primary air flow path extends from the air outlet of the dirt collection region to the clean air outlet and, in the dirt emptying mode the second portion of the primary air flow path is closed.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2020
From: CONRAD, WAYNE ERNEST
To: OMACHRON INTELLECTUAL PROPERTY INC.
Reel/Frame 053178/0443 →
Continuity (2)
Provisional Application 63013781 · Apr 22, 2020
Related Publication 20210330168A1 · Oct 28, 2021
Cited By (1)
US 12,653,362