Abstract:
A battery compartment door for an electronic device, said door being operable between open and closed conditions of use with respect to the device, including a cradle shaped to at least partially receive a terminal of a battery, wherein the cradle is adapted to electrically couple the terminal to an electric circuit of the device when the door is arranged in the closed condition of use.
Abstract:
A method and hearing aid mold are provided for a hearing device with a first segment for insertion into the auditory canal of the user, a second segment, which projects into the concha of the user when inserted, and a vent, which runs from the first segment into the second segment. A vent opening, which may be enclosed by a titanium ring, is directed in the second segment toward the outer ear of the user, so that an exchange of air can be achieved between the auditory canal and the rear of the outer ear through an opening in the outer ear. Ventilation of the auditory canal from the rear of the outer ear reduces the risk of feedback.
Abstract:
The invention relates to a securing system for a receiver tube in a hearing device. The object of the invention is to provide a securing system for the receiver tube in a hearing device, which reliably prevents the occurrence of disruptive acoustic feedback and does not require adhesive to secure the receiver tube. This object of the invention is achieved with a hearing device, in particular a BTE hearing device, in which a receiver facility is disposed, wherein the hearing device has a connector piece, which is connected to the receiver facility by way of a receiver tube, in order to conduct an acoustic signal or acoustic signals generated by the receiver facility to an acoustic output of the hearing device, with the receiver tube being provided with a connecting element, which connects the receiver tube and the connector piece to each other in an essentially acoustically sealed manner.
Abstract:
An ear hook is to be able to be tightly attached to a hearing device housing in a simple fashion. To this end, provision is made for it to be possible to clip the ear hook onto the hearing device housing. One of the two parts; hearing device housing and ear hook has a sound outlet tube, which can be inserted into a corresponding opening in the other part. The two parts are detachably fastened to one another in an axial direction in respect of the sound outlet tube by means of a magnetic connection. The magnetic connection ensures that the two components are fitted tightly onto one another, though it enables said two components to rotate in respect of each other.
Abstract:
A hearing apparatus is to be provided, with which the battery can be exchanged in an almost wear-free fashion. Provision is thus made to magnetically attach a battery compartment or a battery holding device in the housing of the hearing apparatus or hearing device. The battery holding device is inserted into an opening in the housing. A detachable magnetic connection realized by magnetic elements thus exists between the housing and the battery holding device, the principle force component of which runs in the insertion direction. It is thus possible to dispense with plug or snap connections for instance.
Abstract:
An ear hook is to be able to be tightly attached to a hearing device housing in a simple fashion. To this end, provision is made for it to be possible to clip the ear hook onto the hearing device housing. One of the two parts; hearing device housing and ear hook has a sound outlet tube, which can be inserted into a corresponding opening in the other part. The two parts are detachably fastened to one another in an axial direction in respect of the sound outlet tube by means of a magnetic connection. The magnetic connection ensures that the two components are fitted tightly onto one another, though it enables said two components to rotate in respect of each other.
Abstract:
A hearing device, in particular a hearing system, is designed more acoustically stable with regard to feedback as well as more mechanically stable with regard to external influences by a sound emission tube for direct connection to an output nozzle of an earpiece of a hearing device. The sound emission tube has an outer sheath made from a first plastic and an inner wall made from a second plastic that is more elastic than the first plastic. The outer sheath and the inner wall are produced by 2-component injection molding. The inner wall damps vibrations from the earpiece outward or shocks from the outside to the earpiece. Conversely, the outer sheath provides for the mechanical stability and the sufficiently rigid mounting of the earpiece.
Abstract:
A wearing hook is provided for the behind-the-ear hearing device to improve acoustic stability. The wearing hook being composed of a metal part and a plastic part. The wearing hook is split substantially at a right angle to the sound channel, which runs along the inside of a wearing hook, into a first section and a second section. The first section, via which the wearing hook is mountable on the behind-the-ear hearing device, is substantially composed of a plastic. On the other hand the second section is substantially composed of a metal. The additional mass of the metal reduces the vibrations at the point of the wearing hook so that acoustic stability is improved.
Abstract:
The invention relates to a securing system for a receiver tube in a hearing device. The object of the invention is to provide a securing system for the receiver tube in a hearing device, which reliably prevents the occurrence of disruptive acoustic feedback and does not require adhesive to secure the receiver tube. This object of the invention is achieved with a hearing device, in particular a BTE hearing device, in which a receiver facility is disposed, wherein the hearing device has a connector piece, which is connected to the receiver facility by way of a receiver tube, in order to conduct an acoustic signal or acoustic signals generated by the receiver facility to an acoustic output of the hearing device, with the receiver tube being provided with a connecting element, which connects the receiver tube and the connector piece to each other in an essentially acoustically sealed manner.
Abstract:
A receiver for a hearing aid device that converts input electric signals, generated by a solenoid located adjacent a proximate region of a casing of the receiver, to acoustic waves which are emitted from an output of the casing remote from the proximate region, wherein the receiver is adapted to allow the input signals to be fed into the casing at a location spaced from the solenoid and towards the output of the receiver.