Handle for a water flosser
US-D754330-S · Apr 19, 2016 · US
US11213376B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11213376-B2 |
| Application number | US-201715415750-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 25, 2017 |
| Priority date | Jan 25, 2016 |
| Publication date | Jan 4, 2022 |
| Grant date | Jan 4, 2022 |
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An oral irrigator has a removable reservoir defining a reservoir cavity, a base unit housing a motor and a pump, and a handle for directing fluid flow from the pump removably connected to the base unit and fluidly coupled to the pump by a hose. The handle has a housing defining a slot formed in an outer wall of the housing. The slot is bounded by two opposing walls spaced apart from each other and a transverse wall at a terminal interior end of the opposing walls. The outer wall of the housing is open to the slot at lateral sides of the two opposing walls and at a base end of the opposing walls opposite the transverse wall.
Opening claim text (preview).
What is claimed is: 1. An oral irrigator comprising a removable reservoir having a plurality of reservoir walls defining a reservoir cavity; a base unit housing a motor and a pump; and a handle for directing fluid flow from the pump removably connected to the base unit and fluidly coupled to the pump by a hose, the handle further comprising: a housing having a first end and a second end, the housing comprising: a front housing half; a rear housing half; and a slot defined by the rear housing half, wherein the slot is formed in an outer wall of the rear housing half and bounded by two opposing walls spaced apart from each other and a transverse wall at a terminal interior end of the opposing walls such that the outer wall is open to the slot at lateral sides of the two opposing walls and at a base end of the opposing walls opposite the transverse wall; a tip coupled to the first end of the housing; wherein the slot is positioned adjacent to a center of mass of the handle; the slot is configured to receive a portion of a wall of the plurality of reservoir walls; and in a connected position, the handle is coupled to the wall of the plurality of reservoir walls such that the tip and a first portion of the housing extend upwards above a top end of the wall and are angled towards the reservoir cavity and a second portion of the housing extends below the top end of the wall and is spaced apart from the wall to allow a user to grasp the second portion. 2. The oral irrigator of claim 1 , wherein the two opposing walls are planar. 3. The oral irrigator of claim 1 , wherein the two opposing walls are parallel. 4. The oral irrigator of claim 3 , wherein the two opposing walls are planar. 5. The oral irrigator of claim 1 , wherein the handle extends from a first end to a second end in a generally elongate form along a longitudinal axis and the opposing walls defining the slot extend at an angle with respect to the longitudinal axis. 6. The oral irrigator of claim 1 , wherein the slot is positioned such that a length of the slot is centered between a length of the handle from a base end to a top end where a fluid tip attaches to the handle. 7. The oral irrigator of claim 1 , wherein the slot is defined in the rear housing half. 8. An oral irrigator comprising a removable reservoir defining a reservoir cavity; a base unit housing a motor and a pump, the base unit comprising: a bottom surface that defines a bottom of the base unit; a top surface positioned opposite of the bottom surface that defines a top of the base unit; a front wall that defines a front of the base unit; a back wall that defines a back of the base unit; and a cavity defined in the bottom surface and the back wall; and a power assembly in selective communication with the motor; wherein in a first configuration the reservoir is coupled to the top surface of the base unit, the reservoir cavity is fluidly coupled to the pump, and the power assembly is electrically connected to the motor; and in a second configuration, the base unit is fluidly decoupled from the reservoir cavity, the base unit is positioned within the reservoir cavity, and the power assembly is mechanically and electrically disconnected from the motor and is received within the cavity defined in the base unit and is substantially flush with the bottom surface and the back wall. 9. The oral irrigator of claim 8 , wherein in the first configuration the power assembly is removed from the cavity in the base unit. 10. The oral irrigator of claim 8 , wherein the base unit further comprises a base magnetic material; the power assembly comprises a retaining magnetic material; and the base magnetic material and the retaining magnetic material are aligned opposite to each other when the oral irrigator is in the second configuration and attract each other to thereby secure the power assembly within the base unit. 11. An oral irrigator comprising a base unit encased by a housing covering a motor and a drive system positioned in a first, dry compartment formed in the housing and a pump positioned in a second, wet compartment formed in the housing, the wet compartment positioned laterally adjacent to the dry compartment, wherein the drive system comprises a connecting rod; a piston connected at a first end to the connecting rod and connected at a second end to the pump; a removable reservoir defining a reservoir cavity configured to mechanically couple to a top surface of the base unit and fluidly couple the reservoir cavity to the pump; and a diaphragm seal positioned between the dry compartment and the wet compartment, wherein the connecting rod passes through the diaphragm seal to extend between the wet compartment and the dry compartment, wherein the diaphragm seal further comprises a frame of a rigid material defining a center aperture and having a dry face oriented toward the dry compartment and a wet face oriented toward the wet compartment, wherein the connecting rod extends past the wet face into the wet compartment and extends past the dry face into the dry compartment; a first elastomeric bead seal formed at least partially along and adjacent to at least a portion of a perimeter edge of the dry face; a second elastomeric bead seal formed at least partially along and adjacent to at least a portion of a perimeter edge of the wet face; an elastomeric bellows sealing against and extending across the center aperture, the bellows further defining a center opening configured to receive and seal about the connecting rod. 12. The oral irrigator of claim 11 , wherein the first elastomeric bead seal, the second elastomeric bead seal, and the bellows are formed as a single, monolithic unit that is both mechanically and adhesively attached to the frame. 13. The oral irrigator of claim 11 , further comprising a U-shaped channel bounding an opening defined in a wall of the base unit housing between the dry compartment and the wet compartment, wherein the first elastomeric bead seal and the second elastomeric bead seal seat against opposing walls of the U-shaped channel to form a fluid-tight seal between the wet compartment and the dry compartment. 14. The oral irrigator of claim 13 , wherein the frame further comprises a top edge that is joined to a top wall of the base unit housing via a first weld joint; and terminal edges of the opposing walls of the U-shaped channel are joined to a top wall of the base unit housing via a second weld joint. 15. An oral irrigator comprising a base unit housing a motor and a pump; a removable reservoir defining a reservoir cavity configured to mechanically couple to a top surface of the base unit and fluidly couple the reservoir cavity to the pump; a handle for directing fluid flow from the pump removably connected to the base unit and fluidly coupled to the pump by a hose; a removable connector attached to the hose and releasably attached to a port in the base unit in fluid communication with the pump, the removable connector comprising: a connector body including a prong extending therefrom, wherein the hose is coupled to the connector body; and a first valve received within the connector body and positioned adjacent to and contacting a first end of the prong, wherein the first valve opens an aperture in fluid communication with the hose due to fluid pumped by the pump exerting a fluid pressure against the first valve to allow fluid to flow through the hose to the handle and that closes the aperture in the absence of fluid under pressure received from the pump; and a second valve positioned in the port and aligned with the pr
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