Pump facility for a hearing device and method of inflating and deflating an earmold member
View Patent ↗A pump facility for an earmold of a hearing device communicates by way of a channel facility with a variable-volume element of the earmold. A medium can flow through the channel facility to the variable-volume element and away from the variable-volume element. A filling mechanism is embodied for pumping the medium through the channel facility to the variable-volume element. In addition a drainage mechanism is embodied for actively pumping and conveys the medium away from the variable-volume element through the channel facility.
1. A pump facility for an earmold of a hearing device, which comprises:
a channel facility fluidically connectable with a variable-volume element of the earmold, enabling a medium to flow through said channel facility to and from the variable-volume element when the variable-volume element is fluidically connected to said channel facility;
a filling mechanism configured for pumping and conveying the medium to the variable-volume element through said channel facility;
a drainage mechanism embodied for pumping and conveying the medium away from the variable-volume element through said channel facility;
a first valve assembly configured to control or enable an inflow of the medium from said filling mechanism to the variable-volume element; and
a second valve assembly configured to control or enable an out-flow of the medium from the variable-volume element to an outlet,
wherein each of said first valve assembly and said second valve assembly is controlled and/or enabled separately from one another.
2. A pump facility for an earmold of a hearing device, which comprises:
a channel facility fluidically connectable with a variable-volume element of the earmold, enabling a medium to flow through said channel facility to and from the variable-volume element when the variable-volume element is fluidically connected to said channel facility;
a filling mechanism configured for pumping and conveying the medium to the variable-volume element through said channel facility;
a drainage mechanism embodied for pumping and conveying the medium away from the variable-volume element through said channel facility;
a first valve assembly configured to control or enable an inflow of the medium from said filling mechanism to the variable-volume element and a second valve assembly configured to control or enable an out-flow of the medium from the variable-volume element to an outlet,
wherein one or both of said filling mechanism or said drainage mechanism have a pump membrane in contact, by way of a connecting element, with one of said first or second valve assemblies.
3. The pump facility according to claim 2 , wherein a valve is integrated into said pump membrane.
4. A pump facility for an earmold of a hearing device, which comprises:
a channel facility fluidically connectable with a variable-volume element of the earmold, enabling a medium to flow through said channel facility to and from the variable-volume element when the variable-volume element is fluidically connected to said channel facility;
a filling mechanism configured for pumping and conveying the medium to the variable-volume element through said channel facility;
a drainage mechanism embodied for pumping and conveying the medium away from the variable-volume element through said channel facility;
a first valve assembly configured to control or enable an inflow of the medium from said filling mechanism to the variable-volume element; and
a second valve assembly configured to control or enable an out-flow of the medium from the variable-volume element to an outlet,
wherein at least one of said first or second valve assemblies is a passively controlled or enabled assembly.
5. A pump facility for an earmold of a hearing device, which comprises:
a channel facility fluidically connectable with a variable-volume element of the earmold, enabling a medium to flow through said channel facility to and from the variable-volume element when the variable-volume element is fluidically connected to said channel facility;
a filling mechanism configured for pumping and conveying the medium to the variable-volume element through said channel facility;
a drainage mechanism embodied for pumping and conveying the medium away from the variable-volume element through said channel facility;
a first valve assembly configured to control or enable an inflow of the medium from said filling mechanism to the variable-volume element and a second valve assembly configured to control or enable an out-flow of the medium from the variable-volume element to an outlet,
wherein at least one of said first or second valve assemblies is a magnetically controlled assembly.
6. A pump facility for an earmold of a hearing device, which comprises:
a channel facility fluidically connectable with a variable-volume element of the earmold, enabling a medium to flow through said channel facility to and from the variable-volume element when the variable-volume element is fluidically connected to said channel facility;
a filling mechanism configured for pumping and conveying the medium to the variable-volume element through said channel facility;
a drainage mechanism embodied for pumping and conveying the medium away from the variable-volume element through said channel facility;
a first valve assembly configured to control or enable an inflow of the medium from said filling mechanism to the variable-volume element;
a second valve assembly configured to control or enable an out-flow of the medium from the variable-volume element to an outlet; and
a trapeze drive configured to control at least one of said first or second valve assemblies.
7. The pump facility according to claim 1 , wherein the medium is air.
8. A hearing device, comprising a pump facility according to claim 1 and an earmold with an inflatable balloon member fluidically connected to said pump facility.
9. A hearing device, comprising a pump facility according to claim 2 and an earmold with an inflatable balloon member fluidically connected to said pump facility.