Vacuum cleaner
A vacuum cleaner includes a body, a suction source disposed in the body, a separator, and a post-motor filter. The body extends along a longitudinal axis between a front end and a rear end. A fluid flow path extends from a suction inlet to an air outlet. The suction source is configured to draw air and debris through the suction inlet along the fluid flow path. The suction source has a suction source inlet and a suction source outlet. The post-motor filter is disposed in the fluid flow path between the suction source outlet and the air outlet. The post-motor filter forms an aperture extending along the longitudinal axis. The post-motor filter is forward of the suction source. A first passageway extends from the separator to the suction source inlet. The first passageway extends through the aperture of the post-motor filter.
1 . A vacuum cleaner comprising:
a body having a front end and a rear end and a longitudinal axis extending between the front end and the rear end, the longitudinal axis defining forward and rearward directions;
a suction inlet adjacent the front end, the suction inlet forms an inlet axis extending generally along the longitudinal axis in the forward and rearward directions;
a fluid flow path extending from the suction inlet to an air outlet;
a suction source disposed in the body and operable to generate an airflow along the fluid flow path, the suction source configured to draw air and debris through the suction inlet, the suction source having a suction source inlet and a suction source outlet, the suction source further including a motor and an impeller, the motor operable to rotate the impeller about a suction source axis, the suction source axis extending in the forward and rearward directions partially along the longitudinal axis, and the suction source has a first end, a second end, and the suction source axis extends between the first end and the second end, the suction source inlet is disposed on the first end;
a separator disposed in the fluid flow path between the suction inlet and the suction source inlet, the separator configured to separate debris from the air drawn through the suction inlet, the separator including a cyclonic separator having a separator axis about which the airflow rotates, the separator axis extending in the forward and rearward directions along the longitudinal axis, the separator includes a cover door for emptying the separator, the cover door is movable between a closed position and an open position when the separator is both attached to the body and in fluid communication with the suction inlet;
a post-motor filter disposed in the fluid flow path between the suction source outlet and the air outlet, wherein the post-motor filter includes a filter media that is forward of the first end and the suction source inlet and the filter media is between the suction source and the separator in a direction along the longitudinal axis; and
a first passageway extending from the separator to the suction source inlet, the first passageway extending through an aperture of the post-motor filter.
2 . The vacuum cleaner of claim 1 , wherein the body includes a housing surrounding the suction source, the housing having a housing outlet aperture along the fluid flow path in fluid communication with the air outlet, and wherein a second passageway is formed between the suction source and the housing, between the suction source outlet and the housing outlet aperture.
3 . The vacuum cleaner of claim 2 , further comprising:
wherein the housing is divided into a first chamber and a second chamber connected by a chamber outlet;
wherein the suction source outlet is disposed in the housing and is configured to direct air in the second passageway in a first airflow path and a second airflow path;
wherein the first airflow path extends circumferentially in a first direction around the suction source to the chamber outlet, and the second airflow path extends circumferentially in a second direction around the suction source to the chamber outlet;
wherein the suction source outlet and the chamber outlet are disposed such that a length of the first airflow path is different than a length of the second airflow path; and
wherein the first airflow path and the second airflow path converge at the chamber outlet.
4 . The vacuum cleaner of claim 3 , wherein the length of the first airflow path is measured from a center of the suction source outlet to a center of the chamber outlet along the first airflow path, and wherein the length of the second airflow path is measured from the center of the suction source outlet to the center of the chamber outlet along the second airflow path.
5 . The vacuum cleaner according to claim 3 , wherein the first airflow path has a first circumferential component extending circumferentially around the suction source in the first direction.
6 . The vacuum cleaner according to claim 5 , wherein the second airflow path has a second circumferential component extending circumferentially around the suction source in the second direction, wherein the first circumferential component extends between 80 and 175 degrees in the first direction around the suction source, and wherein the second circumferential component extends between 185 and 280 degrees in the second direction around the suction source.
7 . The vacuum cleaner according to claim 6 , wherein the first circumferential component and the second circumferential component together extend between 330 and 360 degrees around the suction source.
8 . The vacuum cleaner according to claim 3 , wherein the first airflow path includes a first axial component that extends axially through the chamber outlet.
9 . The vacuum cleaner according to claim 3 , wherein the second airflow path has a second circumferential component extending circumferentially around the suction source in the second direction.
10 . The vacuum cleaner according to claim 3 , wherein the second airflow path includes a second axial component that extends axially through the chamber outlet.
11 . The vacuum cleaner according to claim 3 , wherein the second direction is opposite the first direction.
12 . The vacuum cleaner according to claim 3 , wherein the length of the first airflow path and the length of the second airflow path are selected to reduce audible noise caused by a predetermined harmonic frequency.
13 . The vacuum cleaner according to claim 3 , wherein the difference between the length of the second airflow path and the length of the first airflow path is between 40% and 60% of a wavelength of a harmonic frequency of the motor.
14 . The vacuum cleaner according to claim 13 , wherein the harmonic frequency of the motor is one selected from the group consisting of: a first harmonic; a second harmonic; and a third harmonic.
15 . The vacuum cleaner according to claim 3 , wherein a difference between the length of the second airflow path and the length of the first airflow path is half of a wavelength of a harmonic frequency of the motor.
16 . The vacuum cleaner according to claim 3 , wherein the length of the second airflow path is equal to half of a sum of half a wavelength and a circumference.
17 . The vacuum cleaner according to claim 2 , wherein the housing outlet aperture is adjacent the first end of the suction source.
18 . The vacuum cleaner according to claim 2 , wherein the suction source is coaxial with the housing.
19 . The vacuum cleaner according to claim 2 , wherein the fluid flow path extends through the housing outlet aperture in the forward direction.
20 . The vacuum cleaner according to claim 2 , wherein the suction source outlet is rearward of the housing outlet aperture.
21 . The vacuum cleaner according to claim 2 , wherein the fluid flow path extends through the housing outlet aperture parallel to the suction source axis.
22 . The vacuum cleaner according to claim 2 , wherein the second passageway extends axially from the suction source outlet to the housing outlet aperture.
23 . The vacuum cleaner according to claim 2 , further comprising a third passageway extending from the housing outlet aperture to the air outlet.
24 . The vacuum cleaner according to claim 23 , wherein the housing includes a post-motor filter housing for removably receiving the post-motor filter, wherein the first passageway forms a boundary of the third passageway within the post-motor filter housing.
25 . The vacuum cleaner according to claim 23 , wherein the fluid flow path extends radially outwardly through the third passageway.
26 . The vacuum cleaner according to claim 23 , wherein the third passageway is annular, and the fluid flow path extends radially outward through the air outlet.
27 . The vacuum cleaner according to claim 2 , wherein the housing includes a rearward surface including a user interface.
28 . The vacuum cleaner according to claim 1 , wherein the suction source outlet is adjacent the second end.
29 . The vacuum cleaner according to claim 1 , wherein the suction source axis is generally parallel to the longitudinal axis.
30 . The vacuum cleaner according to claim 1 , wherein the fluid flow path extends through the suction source outlet generally radially.
31 . The vacuum cleaner according to claim 1 , wherein the suction source outlet is a single aperture.
32 . The vacuum cleaner according to claim 1 , wherein the suction source outlet includes a plurality of apertures.
33 . The vacuum cleaner according to claim 1 , wherein the body includes a housing, the vacuum cleaner further comprising a diverter positioned in the housing adjacent the suction source outlet, wherein the fluid flow path through the suction source outlet impinges on the diverter.
34 . The vacuum cleaner according to claim 1 , wherein the body includes a housing, and wherein the housing includes a post-motor filter housing for removably receiving the post-motor filter.
35 . The vacuum cleaner according to claim 34 , wherein the post-motor filter housing includes the air outlet.
36 . The vacuum cleaner according to claim 1 , wherein the post-motor filter is annular, and the aperture extends through a center of the post-motor filter.
37 . The vacuum cleaner according to claim 1 , wherein the fluid flow path extends radially outward through the post-motor filter.
38 . The vacuum cleaner according to claim 1 , wherein the fluid flow path extends through the first passageway in the rearward direction.
39 . The vacuum cleaner according to claim 1 , wherein the separator includes a second cyclonic separator and a debris storage chamber.
40 . The vacuum cleaner according to claim 39 , wherein the separator includes a pre-motor filter disposed in a pre-motor filter chamber, wherein the pre-motor filter chamber includes an upstream portion in communication with the separator and a downstream portion in communication with the first passageway.
41 . The vacuum cleaner according to claim 40 , wherein the downstream portion of the pre-motor filter chamber forms a cover releasably coupled to the separator.
42 . The vacuum cleaner according to claim 41 , wherein the pre-motor filter is removable from the pre-motor filter chamber when the cover is uncoupled from the separator.
43 . The vacuum cleaner according to claim 41 , wherein the cover forms a forward boundary of a third passageway.
44 . The vacuum cleaner according to claim 41 , wherein the cover is removable from the body with the separator.
45 . The vacuum cleaner according to claim 41 , wherein the cover remains coupled to the body when the separator is uncoupled from the body.
46 . The vacuum cleaner according to claim 41 , wherein the cover is connected to the pre-motor filter when the separator is coupled to the body.
47 . The vacuum cleaner according to claim 41 , wherein the body includes a housing, and wherein the housing includes a post-motor filter housing for removably receiving the post-motor filter, wherein the cover releasably closes the pre-motor filter chamber and releasably closes the post-motor filter housing when the separator is coupled to the body.
48 . The vacuum cleaner according to claim 1 , wherein the body includes a housing, and wherein the housing includes a post-motor filter housing for removably receiving the post-motor filter, wherein the separator is releasably coupled to the body, and wherein the post-motor filter is removable from the post-motor filter housing when the separator is uncoupled from the body.
49 . The vacuum cleaner according to claim 1 , wherein the separator axis is offset from the inlet axis.
50 . The vacuum cleaner according to claim 1 , further comprising a handle extending along a handle axis between a first end and a second end, the handle including a grip portion defined between the first end and the second end.
51 . The vacuum cleaner according to claim 50 , wherein the handle axis does not intersect the suction source.
52 . The vacuum cleaner according to claim 50 , wherein the inlet axis does not intersect the handle.
53 . The vacuum cleaner according to claim 50 , wherein the handle axis extends through the post-motor filter.
54 . The vacuum cleaner according to claim 50 , wherein the handle is a pistol-grip style handle.
55 . The vacuum cleaner according to claim 50 , wherein the suction source is rearward of the handle axis.
56 . The vacuum cleaner according to claim 1 , further comprising a battery operatively connected to provide power to the suction source.
57 . The vacuum cleaner according to claim 56 , further comprising a handle extending along a handle axis between a first end and a second end, the handle including a grip portion defined between the first end and the second end, wherein the first end of the handle is coupled to the body and the second end is adjacent the battery.
58 . The vacuum cleaner according to claim 57 , wherein the handle axis extends through the battery.
59 . The vacuum cleaner according to claim 1 , wherein the suction source axis is transverse to the separator axis.
60 . The vacuum cleaner according to claim 1 , wherein the suction source axis forms an acute angle to the separator axis.
61 . The vacuum cleaner according to claim 60 , wherein the acute angle is less than 15 degrees.
62 . The vacuum cleaner according to claim 1 , wherein the body includes a housing surrounding the suction source, the vacuum cleaner further comprising a post-motor filter housing for removably receiving the post-motor filter, wherein the post-motor filter housing and the post-motor filter are coupled together and removable from the housing as a unit, and wherein the post-motor filter housing includes an annular wall that forms the first passageway and the annular wall is removable with the post-motor filter housing from the housing.