Hearing aid
The rotating engagement design of the battery cover and insert locked by magnets solves the problems of inappropriate magnetic field strength and locking mechanism wear in hearing aids, achieving secure fixation and stable connection, ensuring user safety and device stability.
Patent Information
- Application Number
- CN202510484107.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2019-11-18
- Filing Date
- 2020-11-18
- Publication Date
- 2025-09-05
AI Technical Summary
When existing hearing aids use a magnetic locking mechanism, there are problems such as inappropriate magnetic field strength leading to safety hazards and wear of the locking mechanism, affecting user safety and device stability.
The battery cover and insert are designed with magnet locking, which ensures the stability of the battery system through magnetic connection, and is securely fixed through the rotational engagement and bayonet connection between the insert and the first part. The magnet module is replaceable to adjust the magnetic field strength.
It achieves safe fixation and stable connection of the hearing aid, avoids harm to the user from the magnetic field, ensures user safety through adjustable magnetic field strength, and extends the service life of the locking mechanism.
Smart Images

Figure CN120602875A_ABST
Abstract
Description
[0001] This application is a divisional application of Chinese patent application 202011300525.9, filed on November 18, 2020, with the invention name “A hearing aid”. Technical Field
[0002] The present invention relates to a hearing aid, in particular to a sound processor for a hearing device configured to be attached to a user's head. The present invention particularly relates to a concept for attaching a sound processor to a user's head via interchangeable magnets. Background Art
[0003] To attach a hearing aid's sound processor to the user's head via a magnetic solution, different magnetic field strengths need to be provided. Patients using hearing devices may have varying skin thicknesses. Therefore, the magnetic field strength required to attach the sound processor to the patient's head is a compromise between maintaining the sound processor in place and maintaining patient safety. Using a magnetic field that is too strong could affect blood flow or harm the patient.
[0004] Therefore, there is a need for a solution that prevents the patient from being harmed by the strength of the magnetic field while keeping the sound processor securely attached to the user's head.
[0005] Furthermore, when the hearing aid is used (for example when the hearing aid battery is changed), the locking mechanism is used many times and thus wears out, which results in a noticeable play (play) in the locking mechanism. Summary of the Invention
[0006] Locking the battery cover with magnets prevents any activity in the battery system. The battery cover can always be closed without any activity.
[0007] According to one aspect, a hearing aid for placement on a user's head is provided. The hearing aid includes a first portion comprising an acoustic input transducer adapted to convert ambient sound picked up at the user's ear into an electrical signal, a signal processor adapted to process the electrical signal into a processed electrical signal according to the user's specifications, and an output transducer adapted to convert the processed electrical signal into a transmission signal. Furthermore, the hearing aid includes a second portion magnetically connectable to the first portion, the second portion comprising a receiver adapted to receive the transmission signal and convert the transmission signal into an output signal perceivable as sound by the user.
[0008] The first part of the hearing aid includes a receptacle adapted to receive an insert, wherein the insert includes at least one protrusion configured to engage with a recess of the first part by rotating the insert relative to the first part. By rotating the insert relative to the first part of the hearing aid, the insert is secured by engaging the protrusion of the insert with the recess of the first part.
[0009] According to another aspect, the output transducer includes a transmitting coil configured to inductively transmit the transmission signal to a receiving coil in the receiver of the second portion, the receptacle being disposed in the first portion such that the transmitting coil surrounds the insert.
[0010] According to yet another aspect, the insert has a cylindrical shape, and the receptacle of the first portion has a cylindrical shape corresponding to the cylindrical shape of the insert.
[0011] By ensuring that the shape of the insert corresponds to the shape of the first part, it is guaranteed that the insert fits perfectly in the receptacle of the first part.
[0012] According to another aspect, the insert comprises a flat plate extending radially beyond the cylindrical surface of the insert on the first axial end face, wherein the flat plate is arranged flush with the head contact surface of the first portion.
[0013] According to yet another aspect, the insert and the first portion comprise protrusions and recesses to form a bayonet connection.
[0014] According to another aspect, at least one protrusion of the insert is provided on the second axial end face of the insert and projects axially away from the insert to form a bayonet claw.
[0015] According to a further aspect, more than one protrusion is provided on the insert, the protrusions being equidistantly spaced from each other in the circumferential direction.
[0016] According to another aspect, the insert and the first part may be connected by means of an external / internal thread which is screwed together.
[0017] According to yet another aspect, the connection between the insert and the first portion includes at least one groove extending axially along an outer peripheral surface of the insert or the first portion. The first portion or the insert includes at least one resilient rib disposed on the outer peripheral surface, the at least one resilient rib being configured to engage with the at least one groove when the insert is positioned within the receptacle of the first portion, wherein the resilient rib is adapted to be pushed out of the groove upon rotation of the insert. The resilient rib may be adapted to be pushed out of the groove upon rotation of the insert to a second position different from the first position (wherein the resilient rib is disposed within the groove).
[0018] According to another aspect, the rotation of the insert is locked by inserting the elastic rib into one of the at least one groove.
[0019] According to a further aspect, the insert is introduced into the receptacle from the head side of the first part.
[0020] According to a further aspect, the insert is a magnet module comprising a magnet carrier, preferably made of plastic, a sealing ring and a magnet.
[0021] By using the insert as the magnet module, the magnet module becomes an interchangeable part. By using a sealing ring, it is ensured that no dust can enter the magnet module from the skin side of the hearing aid.
[0022] According to yet another aspect, the magnet is cylindrical.
[0023] According to another aspect, the outer shape of the magnet is equal to the inner shape of the magnet holder, wherein the magnet is glued into the magnet holder.
[0024] The magnet is guided in the hearing aid by using a magnet profile that matches the inner profile of the magnet carrier. The magnet is also secured in the hearing aid by gluing it to the magnet carrier.
[0025] According to a further aspect, the magnet is solid or has an inner bore extending in the axial direction of the cylinder, wherein the diameter of the inner bore is selected to set the overall magnetic field strength.
[0026] Varying the diameter of the magnet's inner bore allows the overall magnetic field strength of the insert to be varied, thereby ensuring the safety of the hearing aid user. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Various aspects of the present invention will be best understood from the following detailed description in conjunction with the accompanying drawings. For clarity, the drawings are schematic and simplified, showing only the details necessary for understanding the present invention and omitting other details. Throughout the specification, the same reference numerals are used for identical or corresponding parts. The various features of each aspect may be combined with any or all features of the other aspects. These and other aspects, features, and / or technical effects will be apparent from and elucidated in conjunction with the following figures, in which:
[0028] Figure 1A is a top view of a first portion of a hearing aid according to an embodiment of the present invention;
[0029] Figure 1B is a bottom view of a first portion of a hearing aid with an installed insert according to an embodiment;
[0030] Figure 1C is a perspective view of a first portion of a hearing aid according to an embodiment;
[0031] Figure 2 is a perspective view of an insert including a magnet having a first size according to an embodiment;
[0032] Figure 3A is a bottom view of a first portion of a hearing aid having a socket and an uninserted insert according to an embodiment;
[0033] Figure 3B is a bottom view of a first portion of a hearing aid with an inserted insert according to an embodiment, wherein the insert is unlocked;
[0034] Figure 3C is a bottom view of a first part of a hearing aid according to an embodiment with an inserted insert, wherein the insert is locked to the first part by means of a repair tool;
[0035] Figures 4A-4F is a cross-sectional view of an insert having different magnet sizes;
[0036] Figures 5A-5F An embodiment of an insert with different magnets of varying inner diameters is shown;
[0037] Figure 6A shows a view of a socket of a first part of a hearing aid according to an embodiment;
[0038] Figure 6B is a perspective view of an insert according to an embodiment;
[0039] Figure 7 shows a first portion of a hearing aid according to another embodiment of the present invention with its battery cover closed;
[0040] Figure 8 A first portion of a hearing aid according to another embodiment is shown with its battery cover opened and the battery cover is shown;
[0041] Figure 9 A first portion of a hearing aid is shown, shown in cross-section in the area of the battery cover;
[0042] Figure 10 An exploded view of a first part of a hearing aid with a battery cover is shown. DETAILED DESCRIPTION
[0043] The detailed description presented below in conjunction with the accompanying drawings serves as a description of a variety of different configurations. The detailed description includes specific details for providing a thorough understanding of a plurality of different concepts. However, it will be apparent to those skilled in the art that these concepts can be implemented without these specific details. Several aspects of the apparatus and method are described by a plurality of different blocks, functional units, modules, components, circuits, steps, processes, algorithms, etc. (collectively referred to as "elements"). Depending on the specific application, design limitations or other reasons, these elements may be implemented using electronic hardware, computer programs or any combination thereof.
[0044] The electronic hardware may include microprocessors, microcontrollers, digital signal processors (DSPs), field programmable gate arrays (FPGAs), programmable logic devices (PLDs), gating logic, discrete hardware circuits, and other appropriate hardware configured to perform the many different functions described in this specification. A computer program should be broadly construed as instructions, an instruction set, code, a code segment, program code, a program, a subroutine, a software module, an application, a software application, a software package, a routine, a subroutine, an object, an executable, an execution thread, a program, a function, etc., whether referred to as software, firmware, middleware, microcode, a hardware description language, or otherwise.
[0045] Hearing devices may include hearing aids, which are adapted to improve or enhance a user's hearing ability by receiving acoustic signals from the user's environment, generating corresponding audio signals, possibly modifying the audio signals, and providing the possibly modified audio signals as audible signals to at least one ear of the user. "Hearing device" may also refer to a device, such as an earphone or headphones, adapted to electronically receive an audio signal, possibly modify the audio signal, and provide the possibly modified audio signal as an audible signal to at least one ear of a user. The audible signals may be provided in the form of acoustic signals radiated into the user's outer ear, acoustic signals transmitted to the user's inner ear as mechanical vibrations through the bony structure of the user's head and / or through portions of the middle ear, and electrical signals transmitted directly or indirectly to the user's cochlear nerve and / or auditory cortex.
[0046] The hearing device is adapted to be worn in any known manner. This may include: i) arranging the hearing device unit behind the ear (with a tube directing airborne acoustic signals into the ear canal or with a receiver / speaker arranged close to or in the ear canal), such as a behind-the-ear hearing aid; and / or ii) arranging the hearing device wholly or partially in the pinna and / or ear canal of the user, such as an in-the-ear hearing aid or an in-the-canal / deep-in-the-canal hearing aid; or iii) arranging the hearing device unit to be connected to a fixture implanted in the skull, such as a bone-anchored hearing aid or a cochlear implant; or iv) arranging the hearing device unit as a wholly or partially implanted unit, such as a bone-anchored hearing aid or a cochlear implant.
[0047] A "hearing system" refers to a system that includes one or two hearing devices. A "binaural hearing system" refers to a system that includes two hearing devices, wherein the hearing devices are adapted to cooperatively provide audible signals to both ears of a user. A hearing system or binaural hearing system may also include an auxiliary device that communicates with at least one hearing device, wherein the auxiliary device affects the operation of the hearing device and / or benefits from the functionality of the hearing device. A wired or wireless communication link is established between the at least one hearing device and the auxiliary device to enable information (such as control and status signals, and possibly audio signals) to be exchanged therebetween. The auxiliary device may include at least one of the following: a remote control, a remote microphone, an audio gateway device, a mobile phone, a broadcast system, a car audio system, a music player, or a combination thereof. The audio gateway device is adapted to receive multiple audio signals, such as from an entertainment device such as a TV or music player, from a telephone device such as a mobile phone, or from a computer such as a PC. The audio gateway device is further adapted to select and / or combine appropriate signals from the received audio signals (or signal combinations) for transmission to the at least one hearing device. The remote control is adapted to control the functions and operation of the at least one hearing device. The functionality of the remote control may be implemented in a smartphone or another electronic device, which may be running an application for controlling the functionality of the at least one hearing device.
[0048] Generally, a hearing device includes i) an input unit, such as a microphone, for receiving acoustic signals from the user's surroundings and providing a corresponding input audio signal; and / or ii) a receiving unit for electronically receiving the input audio signal. The hearing device also includes a signal processing unit for processing the input audio signal and an output unit for providing an audible signal to the user based on the processed audio signal.
[0049] The input unit may comprise a plurality of input microphones, for example for providing direction-dependent audio signal processing. The aforementioned directional microphone system is suitable for enhancing a target sound source among a plurality of sound sources in the user's environment. In one aspect, the directional system is suitable for detecting (e.g., adaptively detecting) from which direction a particular portion of the microphone signal originates. This can be achieved using conventionally known methods. The signal processing unit may comprise an amplifier adapted to apply a frequency-dependent gain to the input audio signal. The signal processing unit may also be adapted to provide other suitable functions such as compression, noise reduction, etc. The output unit may comprise an output transducer such as a loudspeaker / receiver for providing an air-borne acoustic signal to the skull percutaneously or transcutaneously, or a vibrator for providing a structure-borne or liquid-borne acoustic signal. In some hearing devices, the output unit may comprise one or more output electrodes for providing an electrical signal, for example in a cochlear implant.
[0050] Now refer to Figure 1A, which shows a top view of the first part 1 of a hearing aid according to one aspect of the present invention. The illustrated shape of the first part 1 of the hearing aid is merely an example; other shapes are possible. In an embodiment, the first part 1 has a flat droplet shape, having a round upper portion and a thinner, tapered lower portion. The two portions are seamlessly integrated with each other. In addition, a top cover is provided in the middle of the round upper portion, which, for example, covers the circuitry of the first part. Furthermore, the top cover is configured to be flush with the remaining upper portion of the first part 1. The first part 1 of the hearing aid, which, for example, is a sound processor, is attached to the head of the hearing aid user. The first part includes an acoustic input transducer (not shown) that converts sound into an electrical signal. The sound is picked up at the user's ear. Furthermore, the first part 1 includes a signal processor (not shown) that processes the electrical signal into a processed signal according to the user's specifications. Furthermore, the first part 1 includes an output transducer (not shown) that converts the processed electrical signal into a transmission signal. The transmission signal is then transmitted to the second part of the hearing aid (not shown). The second part (such as the internal processor of the hearing aid) is implanted in the user's head, wherein the second part includes a receiver that receives the transmission signal from the first part 1 of the hearing aid. In addition, the second part converts the received transmission signal into an output signal, which can be perceived by the user as sound.
[0051] The output transducer of the first part 1 comprises a transmitting coil configured to inductively transmit a transmission signal to a receiving coil in a receiver of the second part.
[0052] Figure 1B A bottom view of the first part 1 of a hearing aid according to an embodiment is shown, with the insert 2 installed into a receptacle 11 (e.g., available space) of the first part 1. Receptacle 11 is arranged in the first part 1 of the hearing aid such that the transmitting coil of the first part surrounds the insert 2. The illustrated surface of the first part 1 faces the head (skin) of the user. In other words, the insert 2 is introduced into the receptacle 11 from the head side of the first part 1. Figure 1C is a perspective view of a first part 1 of a hearing aid according to an embodiment.
[0053] Figure 2 FIG2 shows a perspective view of an insert 2 according to an embodiment. The insert 2 has a cylindrical shape and includes three protrusions 21 (hereinafter collectively referred to as protrusions 21). Each protrusion 21 is configured to engage with a recess 12 (see FIG2 ) of the first part 1 of the hearing aid by rotating the insert 2 relative to the first part 1. Figure 6A) engage. In addition, a protrusion 21 is provided on the (upper) axial end face of the insert 2 and protrudes axially away from the insert 2. In addition, one or more protrusions 21 can be provided on the insert 2, wherein the protrusions 21 are equidistantly spaced from each other in the circumferential direction. In addition, each protrusion 21 can form a bayonet claw. In an embodiment, the insert 2 is a magnet module consisting of a magnet bracket 22 (preferably made of plastic), a sealing ring 27 (such as an O-ring) and a magnet 23. The sealing ring 27 prevents dust from entering the skin side of the first part 1. The outer shape of the magnet 23 is equal to the inner shape of the magnet bracket 22. In addition, the magnet 23 is glued to the magnet bracket 22. Using the inner shape of the magnet bracket 22 (which is equal to the outer shape of the magnet 23) enables the magnet 23 to be guided and fixed in the magnet bracket 22. In addition, gluing the magnet 23 to the magnet bracket 22 can even enhance safety. In addition, the insert 2 of this embodiment includes two grooves 24a, 24b extending axially along the outer circumferential surface of the insert 2. Furthermore, the insert 2 includes a flat tab 25 on its other (lower) axial end face. The tab 25 extends radially beyond the cylindrical surface of the insert 2. The tab 25 is thus configured to lie flush with the head-contacting surface of the first part 1 of the hearing aid. Together, the cylindrical wall and the tab 25 form the cup-like shape of the insert 2. Furthermore, the tab 25 has a notch 26 on its outer edge. The notch enables the insert 2 to be locked into the receptacle 11 using the repair tool 3.
[0054] Figure 3A The first part 1 of the hearing aid according to an embodiment is shown in a bottom view, which has a socket 11 and an uninserted insert 2. The insert 2 is inserted into the socket 11 from the head side of the first part 1. After insertion, the insert 2 initially remains unlocked in the first part 1 of the hearing aid ( Figure 3B ). In this position, the groove 24a engages with the elastic rib 13, and the elastic rib 13 will be combined Figure 6A Provide a description.
[0055] Thereafter, by using the repair tool 3, the insert 2 is rotated (eg by inserting the repair tool into the notch) and thus fixed into the first part 1 of the hearing aid ( Figure 3C ). After the rotation, the other groove 24b engages with the elastic rib 13.
[0056] In order to change the total magnetic field strength of the insert 2, the shape of the magnets 23 assembled in the magnet bracket 22 can be varied. According to an embodiment, the magnets 23 are designed as rings, except for the strongest (largest) magnet, which is a disk (solid magnet) that fills the entire space of the insertion hole 11 of the magnet bracket 22 to provide the maximum possible magnetic field strength. The larger the inner diameter of the ring (such as the hole in the magnet), the smaller the residual magnetic field strength. Figures 4A-4F In FIG. 1 , a cross-sectional view of six examples of inserts 2 with different magnet sizes is shown, wherein Figure 4AA solid magnet (a magnet with maximum magnetic field strength) is shown. Figures 4A-4F In the order of the total magnetic field strength decreases, because the inner diameter of the ring increases. In this embodiment, each magnet 23 can be cylindrical.
[0057] However, other magnet sizes may be selected in which a solid magnet is maintained with the maximum possible magnetic field strength. Other possible magnet sizes can be obtained by adjusting the inner diameter of the magnet 23, which does not interfere with the assembly, so that the process of assembling such a new magnet remains the same.
[0058] Figures 5A-5F An embodiment of an insert 2 with different magnets 23 of varying inner diameter is shown, wherein the strength of the magnets decreases with increasing inner diameter. Figures 5A-5F Shown Figures 4A-4F Another view of an example of Insert 2.
[0059] Figure 6A A view of the receptacle 11 of the first part 1 of a hearing aid according to an embodiment is shown. The first part 1 of the hearing aid includes the receptacle 11, wherein the receptacle 11 has a cylindrical shape corresponding to the cylindrical shape of the insert 2. This makes it easy to insert the insert 2 into the receptacle 11 of the first part 1 and ensures that the resulting surfaces are flush. Furthermore, the shape and size of the receptacle 11 substantially correspond to the shape and size of the transmitting coil of the first part 1.
[0060] Figure 6B 2 is a perspective view of the insert 2 according to the embodiment. In the following, an example in which the insert 2 is assembled into the first part 1 is described.
[0061] According to an embodiment, the insert 2 slides into the first part 1 using the elastic rib 13 (e.g., a snap-fit member) in the first part 1 as a guide. In other words, the insert 2 is inserted into the receptacle 11 while the groove 24a engages with the elastic rib 13. The insert 2 is inserted until the flat tab 25 is located on the edge of the receptacle 11, i.e., flush with the head contact surface 14 of the first part 1. By rotating the insert 2 relative to the first part 1, the recess 12 of the first part 1 engages with the protrusion 21, thereby forming a bayonet connection. After the bayonet connection is established, the elastic rib 13 returns to its initial position by entering the second groove 24b. To enable the insert 2 to be rotated relative to the first part 1, the elastic rib 13 is resilient, i.e., it is arranged so that it can retract radially. The rotation of the insert 2 is thus locked by inserting (pushing) the elastic rib into the other groove 24b.
[0062] Since the rotation requires a certain torque to push out the elastic rib 13, Figure 3CThe repair tool 3 can be used to facilitate the rotation of the insert 2. When the groove 24b is designed with radially extending side walls, an irreversible locking of the rotational position of the insert 2 can be provided. Figure 6B In the groove 24b shown in FIG, the side walls of the grooves 24a, 24b are inclined, which enables releasable locking.
[0063] As an alternative, the insert 2 and the first part 1 can also be connected by means of an external / internal thread which is screwed together. In this case, the locking function can also be used.
[0064] In the reverse arrangement, the connection between the insert 2 and the first part 1 may include at least one groove extending axially along the outer peripheral surface of the insert 2 or the first part 1. The first part 1 or the insert 2 may include at least one elastic rib 13 arranged on the outer peripheral surface. In addition, the at least one elastic rib 13 is configured to engage with the at least one groove 24a, 24b when the insert 2 is located in the receptacle 11 of the first part 1. In addition, the elastic rib 13 is suitable for being pushed out of the grooves 24a, 24b when the insert 2 is rotated towards the final position of the insert 2. In other words, the insert 2 and / or the first part 1 may have complementary elastic ribs, grooves, protrusions and / or recesses. In short, the same functionality described above can be obtained by this reverse arrangement.
[0065] Regarding battery replacement, this embodiment includes a magnetically secured battery cover to close the battery compartment. For this purpose, a hearing aid comprising a first portion 1 (e.g., a sound processor) with or without a battery jack 11 can be used. The sound processor 1 has a battery jack 9 and a battery cover 4 for closing the jack, wherein at least one of the sound processor 1 and the battery cover 4 is provided with at least one magnet 5, 6 to secure the battery cover 4 in a closed position.
[0066] The sound processor 1 has a recess for receiving a magnet therein, which recess is closed by a magnet cap 7 .
[0067] Additionally, the battery cover 4 may be magnetically attracted and adapted to slide over the battery receptacle 9 and be held in a closed position by the magnetic force of magnets in the sound processor 1 .
[0068] Furthermore, the battery cover 4 has a recess for receiving a magnet 6 , which is arranged opposite the magnet 5 when the battery cover 4 is in the closed position.
[0069] The magnets 5, 6 may be located in either one of the battery cover 4 and the sound processor 1, with the other having a magnetically attractable portion.
[0070] Figure 7 A first part 1 of a hearing aid according to another embodiment of the present invention is shown with its battery cover 4 closed. Figure 8, the first part 1 of the hearing aid is shown with its battery cover 4 open. The battery cover 4 is designed so that it forms a smooth surface with the rest of the first part 1. The first part 1 includes a battery receptacle 9, which has a curved shape and converges closer to the radial outer end. A recess is provided in front of the battery receptacle, which is configured to receive a magnet 5 or a magnetically attractable part (such as a metal sheet). The center axis of the recess extends substantially perpendicular to the main axis of the battery compartment. The recess including the magnet 5 can be closed by a magnet cap 7 made of non-magnetic material such as plastic. The battery cover 4 may also include a magnet 6, which can be attracted by the magnet 5. The magnet 6 can be a magnet itself or be of ferromagnetic material.
[0071] If the first portion 1 does not include the magnet 5, only the battery cover 4 may include the magnet 6. However, it is also possible that each of the first portion 1 and the battery cover 4 includes a magnet. In addition, in another embodiment, the battery cover 4 includes a magnetically attractable portion, and the first portion 1 includes the magnet 5.
[0072] Figure 9 The first part 1 of the hearing aid is shown, with a cross-section through the battery cover area. The battery cover 4 is magnetically attracted and slides over the battery access port 9 to close it. When the battery access port 9 is closed, the magnet 6 is positioned opposite the magnet 5 of the first part 1, with the magnet cap 7 positioned between them. The battery cover 4 is held in the closed position by the magnetic force of the magnet 5 in the first part 1.
[0073] Figure 10 An exploded view of the first part 1 of the hearing aid with the battery cover 4 is shown, which illustrates the order in which the magnet 5 , the magnet cap 7 and the battery cover 4 with the magnet 6 appear.
[0074] The structural features of the apparatus described above, described in detail in the "Detailed Description of the Invention" and defined in the claims may be combined with the steps of the method of the present invention when appropriately replaced by corresponding processes.
[0075] Unless expressly stated otherwise, the singular forms "a", "the" and "the" used herein include the plural form (i.e., having the meaning of "at least one"). It should be further understood that the terms "having", "including" and / or "comprising" used in the specification indicate the presence of the described features, integers, steps, operations, elements and / or parts, but do not exclude the presence or addition of one or more other features, integers, steps, operations, elements, parts and / or combinations thereof. It should be understood that, unless expressly stated otherwise, when an element is referred to as being "connected" or "coupled" to another element, it may be directly connected or coupled to the other element, or there may be an intermediate intervening element. The term "and / or" as used herein includes any and all combinations of one or more listed related items. Unless expressly stated otherwise, the steps of any method disclosed herein do not have to be performed in the exact order disclosed.
[0076] It should be understood that references in this specification to "an embodiment," "an embodiment," "an aspect," or features that "may" include, mean that the specific features, structures, or characteristics described in conjunction with that embodiment are included in at least one embodiment of the present invention. Furthermore, the specific features, structures, or characteristics may be combined as appropriate in one or more embodiments of the present invention. The foregoing description is provided to enable those skilled in the art to practice the various aspects described herein. Various modifications will be readily apparent to those skilled in the art, and the general principles defined herein may be applied to other aspects.
[0077] The claims are not limited to the aspects shown herein, but rather have the full scope consistent with the claim language in which, unless expressly stated otherwise, elements referred to in the singular do not mean "one and only one" but rather "one or more." Unless expressly stated otherwise, the term "some" means one or more.
[0078] Therefore, the scope of the present invention should be judged based on the claims.
Claims
1. A hearing aid intended to be placed on the user's head, comprising: The first part includes: an acoustic input transducer adapted to convert ambient sound picked up at the user's ear into an electrical signal; a signal processor adapted to process the electrical signal into a processed electrical signal according to a user's specifications; an output transducer adapted to convert the processed electrical signal into a transmission signal and inductively transmit said transmission signal; battery socket; and a battery cover for closing the battery jack; At least one of the first portion and the battery cover is provided with at least one magnet to secure the battery cover in a closed position.
2. The hearing aid according to claim 1, wherein The first portion has a recess for receiving a magnet therein, the recess being closed by a magnet cap.
3. The hearing aid according to claim 1, wherein The battery cover may be magnetically attracted and adapted to slide over the battery receptacle and be held in a closed position by the magnetic force of a magnet in the first portion.
4. The hearing aid according to claim 1, wherein The battery cover has a recess for receiving a second magnet, the second magnet being positioned opposite the magnet when the battery cover is in the closed position.
5. The hearing aid according to claim 1, wherein The magnet is located in any one of the battery cover and the first portion, while the other of the battery cover and the first portion has a magnetically attractable portion.
6. The hearing aid according to claim 1, wherein The first part also includes: a receptacle adapted to receive an insert, the receptacle being arranged in the first portion such that the transmitting coil surrounds the insert, the insert comprising at least one protrusion configured to engage with a corresponding recess of the first portion by rotating the insert relative to the first portion, the insert being a magnet module comprising a magnet bracket.
7. The hearing aid according to claim 6, wherein the insert comprises a flat plate extending radially beyond the cylindrical surface of the insert on the first axial end face, wherein the flat plate is configured to be flush with the head contact surface of the first portion.
8. The hearing aid of claim 6, wherein the insert has a cylindrical shape, and the receptacle of the first portion has a cylindrical shape corresponding to the cylindrical shape of the insert.
9. The hearing aid of claim 6, wherein the insert comprises a recess and the first portion comprises a protrusion, the recesses and protrusions of the insert and the first portion being configured to form a bayonet connection.
10. The hearing aid according to any one of claims 6 to 9, wherein the at least one protrusion of the insert is provided on the second axial end surface of the insert and protrudes axially away from the insert to form a bayonet claw.
11. The hearing aid according to claim 10, wherein more than one protrusion is provided on the insert, the more than one protrusion being equidistantly spaced from each other in the circumferential direction.
12. The hearing aid of claim 6, wherein the first portion comprises a head side facing towards the user's skin during use, wherein the insert is introduced into the receptacle from the head side of the first portion.
13. The hearing aid of claim 6, wherein the magnet is cylindrical.
14. The hearing aid of claim 6, wherein the outer shape of the magnet is equal to the inner shape of the magnet holder, and wherein the magnet is glued into the magnet holder.
15. The hearing aid according to claim 13 or 14, wherein the magnet is solid or has an inner bore extending in the axial direction of the cylinder, wherein the diameter of the inner bore is selected to set the total magnetic field strength.