The present invention relates to mounting of a sound tube inside a shell of a hearing aid.
Behind-the-ear hearing aids in which a sound tube conducts sound generated by the receiver of the hearing aid into the ear canal are well known in the art. In order to position the sound tube securely and comfortably in the ear canal, a shell is provided for insertion into the ear canal of the user. Typically, the shell is individually adapted to the human anatomy of the ear of the user.
So-called “open” shells are generally preferred in order to affect the ear canal as little as possible by avoiding blockage of the ear canal, i.e. the occlusion effect. This also assists in maintaining the natural hearing capacity of the user.
It is desirable to provide a shell that facilitates attachment of the sound tube to the shell and that also has a vent for at least partially reducing the occlusion effect. Further, the vent assists in maintaining the natural hearing capacity of the user.
According to a first aspect of the invention, a sound tube adaptor is provided that may be attached to a sound tube at one end and inserted into a hole in a shell at the other end. After insertion, the adaptor and the sound tube extend inside the shell from the hole towards the entrance of an ear canal of a user when the shell is positioned in the ear canal.
After insertion, the adaptor and the hole may co-operate to provide at least one vent.
According to a second aspect of the invention, a shell is provided having a hole for receiving and holding a sound tube adaptor with a sound tube. The adaptor and the hole may co-operate to provide at least one vent when the adaptor is inserted in the shell hole.
According to a third aspect of the invention, a method of attaching a sound tube to a shell is provided comprising the steps of attaching one end of the sound tube to the above-mentioned adaptor, inserting the other end of the sound tube into a hole in the shell from the outside of the shell, passing the sound tube through the hole, and mounting the adaptor in the hole whereby the sound tube is attached to the shell.
According to a fourth aspect of the invention, a tool is provided for insertion of the adaptor into the hole of the shell.
The tool may have a first protrusion that is adapted for insertion into an output opening of the adaptor, and a second protrusion wherein the space between the first and second protrusions is adapted to accommodate a wall of the adaptor.
The tool may further have a center hole for checking that the adaptor may be used with a particular shell, the center hole having a diameter so that the cross-section of the end of the particular shell with the hole can cover the center hole when the shell has a sufficient size for accommodating an adaptor.
Still further an end of the tool may be dimensioned so that the end can enter the shell hole when the shell has a sufficient size for accommodation of an adaptor.
The sound tube adaptor may have a first end of a generally cylindrical shape extending along a longitudinal axis. Preferably, a bead is provided at the first end for insertion into the sound tube for secure attachment by resilience of the sound tube.
The sound tube adaptor may have a second end for attachment to the shell with a generally cylindrical shape, or a generally tapered cylindrical shape with a cross-section that increases or decreases along the longitudinal axis of the adaptor. In one embodiment, the cross-section of the adaptor at the second end has a cross-section that is less than the corresponding cross-section of the shell hole, so that an area of the hole, after insertion of the adaptor, may function as at least one vent. The at least one vent may constitute a single opening in the shell with the attached adaptor, or, the at least one vent may constitute a plurality of separate openings in the shell with the attached adaptor.
Further, the sound tube adaptor may have at least one first flange at the second end for abutment with the outer surface of the shell after insertion of the adaptor in the shell hole.
At least one second flange may be positioned at a distance from the at least one first flange along the longitudinal axis. The distance may be approximately equal to the thickness of the shell hole so that the at least first flange abuts the outer surface of the shell and the at least second flange abuts the inner surface of the shell after insertion of the adaptor in the shell hole.
Further, the at least second flange may be tapered along the longitudinal axis towards the first end whereby the adaptor may be fixed in the shell hole by a snap fit coupling.
In a preferred embodiment, the at least second flange is adapted to engage with protrusions provided in the shell at the hole for prevention of rotational movement of the adaptor in the hole.
The sound tube adaptor may further comprise an end plate at the second end having a vent hole.
In a preferred embodiment, a sound tube adaptor further contains weakenings at the second end allowing removal of part of the adaptor for obstruction of a smaller part of the hole in the shell after insertion of the adaptor.
Preferably, the hole and the sound adaptor are designed so that the sound adaptor fits in the hole in two different positions mutually angularly separated 180°. This adds flexibility to the system in that the shell may not be able to accommodate the adaptor and the sound tube in one of the positions, however in embodiments with an additional second position, this position may then be used.
In still another embodiment, the adaptor and the hole are designed so that the adaptor may be fitted into the hole in any arbitrary angular position further facilitating accommodation of the sound tube and the adaptor in the shell.
The shell may further comprise an end plate containing the hole. According to this embodiment, an appropriate shell may be individually produced for the user or, an appropriate standard size may be selected, and the dispenser may select an end plate with an appropriately sized and shaped hole. The end plate is fitted to the shell geometry and fixed to the shell in a way well known in the art of assembling CIC- and ITE-shells with a faceplate.
The adaptor and the sound tube may be integrated into one component for ease of manufacture and assembly.
In an embodiment with a separate adaptor and sound tube, individual adjustment of the distance from the adaptor to a first bend of the sound tube is facilitated. The sound tube may be cut at the desired length before attachment to the adaptor.
Although a shell for a behind-the-ear hearing aid has been mentioned above, it should be understood that the invention covers any shells requiring mounting of a sound tube, such as shells for completely-in-the-canal (CIC) hearing aids, for in-the-canal (ITE) hearing aids, for behind-the-ear (BTE) hearing aids, for earplugs for protection against noise with two-way communication means, for audio equipment, etc.
Below, the invention will be further described and illustrated with reference to the accompanying drawings in which:
The sound tube adaptor 10 has a second end 18 for attachment to the shell with a generally cylindrical shape. A first flange 20 is provided at the second end 18 for abutment with the outer surface of the shell after insertion of the adaptor 10 in the shell hole. Further, at least one second flange 22 is positioned at a distance from the at least one first flange 20 along the longitudinal axis 14. The distance is approximately equal to the thickness of the shell hole so that the first flange 20 abuts the outer surface of the shell and each of the at least second flanges 22 abuts the inner surface of the shell after insertion of the adaptor 10 in the shell hole.
It should be noted that the cross-section of the adaptor 10 at its second end 18 has a cross-section that is less than the corresponding cross-section of the end-plate hole 28, so that an area 34 of the hole, after insertion of the adaptor 10, functions as a vent 34.
As further illustrated in
The first end 12 of the adaptor 10 with its bead 16 is inserted into the sound tube 32 for secure attachment by resilience of the sound tube 32.
It should also be noted that the at least second flange 22 are tapered along the longitudinal axis 14 of the adaptor 10 towards the first end 12 whereby the adaptor 10 is inserted into the end-plate hole 28 by a snap fit coupling.
In the embodiment shown in
During insertion with the tool 46, the adaptor 10 with the sound tube is removably attached to the tool 46 by insertion of the round protrusion 54 into the adaptor opening 21 and accommodation of the cut side 19 of the adaptor between the protrusions 54, 56. The sound tube 32 is then inserted into the end-plate hole 28 until the tool 46 abuts the end plate 26. As shown in
Number | Date | Country | Kind |
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PA 2003 00230 | Feb 2003 | DK | national |