Acoustic feedback event monitoring system for hearing assistance device
5 claims: 5 independent, 0 dependent
- 1Høreapparat (20, 100), der omfatter:en mikrofon (110), der er tilpasset til at modtage lyd og omdanne den til et indgangssignal;en modtager (180), der er tilpasset til at afspille udgangslyd baseret på et udgangssignal;en digital signalprocessor (120-160), der er tilpasset til at behandle indgangssignalet og generere udgangssignalet, hvilken digital signalprocessor endvidere er tilpasset til at køre en akustisk feedback-sporingsalgoritme på høreapparatet for overvågning af informationer om akustiske feedback-hændelser, der indtræffer over en længere periode med anvendelse af høreapparatet, kendetegnet ved, at den digitale signalprocessor endvidere er tilpasset til at foretage annullering af akustisk multibånd eller underbånds-feedback for at reducere den akustiske feedback mellem modtageren og mikrofonen på en frekvens-bånd-for-bånd-basis, og informationerne indbefatter indsamling pr. frekvensbånd af de akustiske feedback-hændelser, der indtræffer over den længere anvendelsesperiode;hvor informationerne er tilgængelige for analyse for at bestemme aspekter af den akustiske feedback, der opleves af høreapparatet over den længere anvendelsesperiode, hvilken længere anvendelsesperiode indbefatter forskellige akustiske miljøer, der opleves af en bruger af høreapparatet under anvendelse af høreapparatet;og hvor høreapparatet kan konfigureres således, at feedback-sporingsalgoritmen køres kontinuerligt, eller aktiveres under en overvågningsperiode, eller aktiveres efter særlige programmerbare hændelsers forekomst. A hearing aid (20, 100) comprising: a microphone (110) adapted to receive sound and converting it into an input signal;a receiver (180) adapted to play output sound based on an output signal;a digital signal processor (120-160) adapted to process the input signal and generate the output signal, which digital signal processor is further adapted to run an acoustic feedback tracking algorithm on the hearing aid for monitoring information on acoustic feedback events occurring over a longer period of use of the hearing aid, characterized in that the digital signal processor is further adapted to cancel acoustic multiband or subband feedback to reduce the acoustic feedback between the receiver and the microphone on a frequency-band-by-band basis;and the information includes collection per. frequency bands of the acoustic feedback events occurring over the longer period of use;wherein the information is available for analysis to determine aspects of the acoustic feedback experienced by the hearing aid over the longer period of use, which longer application period includes various acoustic environments experienced by a user of the hearing aid using the hearing aid;and where the hearing aid can be configured so that the feedback tracking algorithm is run continuously, or activated during a monitoring period, or activated according to the occurrence of particular programmable events. wherein the information is available for analysis to determine aspects of the acoustic feedback experienced by the hearing aid over the longer period of use, which longer period of use includes various acoustic environments experienced by a user of the hearing aid using the hearing aid;and where the hearing aid can be configured so that the feedback tracking algorithm is run continuously, or activated during a monitoring period, or activated according to the occurrence of particular programmable events. wherein the information is available for analysis to determine aspects of the acoustic feedback experienced by the hearing aid over the longer period of use, which longer period of use includes various acoustic environments experienced by a user of the hearing aid using the hearing aid;and where the hearing aid can be configured so that the feedback tracking algorithm is run continuously, or activated during a monitoring period, or activated according to the occurrence of particular programmable events.
- 2Anordning ifølge krav 1, hvor den digitale signalprocessor (120-160) er tilpasset til at lagre de overvågede informationer i en hukommelse uden for høreapparatet. 3. Anordning ifølge krav 1 eller krav 2, hvor den digitale signalprocessor (120-160) er tilpasset til at lagre de overvågede informationer, der indbefatter én eller flere af et samlet antal forekomster af en feedback-hændelse, og et antal feedback-hændelser pr. tidsenhed. 4. Anordning ifølge et hvilket som helst af de foregående krav, hvor den digitale signalprocessor (120-160) er tilpasset til at lagre statistiske informationer om akustiske feedback-hændelser. The device of claim 1, wherein the digital signal processor (120-160) is adapted to store the monitored information in a memory outside the hearing aid. The device of claim 1 or claim 2, wherein the digital signal processor (120-160) is adapted to store the monitored information including one or more of a total number of occurrences of a feedback event and a number of feedback events. per. unit of time. A device according to any one of the preceding claims, wherein the digital signal processor (120-160) is adapted to store acoustic feedback event statistical information.
- 35. Anordning ifølge et hvilket som helst af de foregående krav, hvor mikrofonen (110) og den digitale signalprocessor (120-160) er placeret i et hus, der er tilpasset til at blive båret på eller bag en brugers øre, og modtageren (180) er forbundet med huset via ledninger. 6. Anordning ifølge et hvilket som helst af kravene 1 til 4, hvor mikrofonen (110), den digitale signalprocessor (120-160) og modtageren (180) er placeret i et hus, der er tilpasset til at passe i en brugers øre. 7. Anordning ifølge et hvilket som helst af kravene 1 til 4, hvor mikrofonen (110), den digitale signalprocessor (120-160) og modtageren (180) er placeret i et hus, der er tilpasset til at passe bag en brugers øre. 8. Anordning ifølge et hvilket som helst af de foregående krav, der endvidere omfatter trådløs elektronik, der er tilpasset til at foretage trådløs kommunikation af overvågede informationer. 9. Fremgangsmåde til overvågning af et høreapparats ydelse ifølge et hvilket som helst af de foregående krav, kendetegnet ved, at den omfatter:kontinuerlig kørsel af den akustiske feedback-sporingsalgoritme eller aktivering heraf i en overvågningsperiode eller aktivering heraf efter særlige programmerbare hændelsers forekomst, til sporing af informationer om en flerhed af akustiske feedback-hændelser i løbet af det længere tidsinterval for anvendelse af høreapparatet til overvågning af ydelsen af enheden til annullering af akustisk feedback, der foretager annullering af akustisk feedback på en frekvens-bånd-for-bånd-basis, i forskellige akustiske miljøer, som opleves afbæreren af høreapparatet, hvor sporing af informationerne indbefatter indsamling pr. frekvensbånd af flerheden af akustiske feedback-hændelser, der indtræffer i løbet af det længere anvendelsestidsinterval;og lagring af informationerne med henblik på analyse. The device of any preceding claim, wherein the microphone (110) and the digital signal processor (120-160) are located in a housing adapted to be carried on or behind a user's ear and the receiver ( 180) is connected to the housing via wires. The device of any one of claims 1 to 4, wherein the microphone (110), the digital signal processor (120-160) and the receiver (180) are located in a housing adapted to fit in a user's ear. The device of any one of claims 1 to 4, wherein the microphone (110), the digital signal processor (120-160) and the receiver (180) are located in a housing adapted to fit behind a user's ear. Device according to any of the preceding claims, further comprising wireless electronics, adapted for wireless communication of monitored information. A hearing aid performance monitoring method according to any one of the preceding claims, characterized in that it comprises: continuous running of the acoustic feedback tracking algorithm or activation thereof during a monitoring period or activation thereof by the presence of particular programmable events, tracking information on a plurality of acoustic feedback events over the longer time interval for use of the hearing aid to monitor the performance of the acoustic feedback canceling device that cancels acoustic feedback on a frequency-band-by-band basis , in various acoustic environments experienced by the wearer of the hearing aid, where the tracking of the information includes collection per person. frequency bands of the plurality of acoustic feedback events occurring during the longer application time interval;and storing the information for analysis.
- 410. Fremgangsmåde ifølge krav 9, der omfatter aktivering af sporingen efter forekomsten af forudbestemte hændelser. The method of claim 9, comprising activating the tracking after the occurrence of predetermined events.
- 511. Fremgangsmåde ifølge krav 9 eller krav 10, hvor lagringen sker i høreapparatet. 12. Fremgangsmåde ifølge krav 9 eller krav 10, hvor lagringen sker i et datalager væk fra høreapparatet. 13. Fremgangsmåde ifølge krav 9, 10 eller 12, hvor lagringen sker ved anvendelse af intemettet. 14. Fremgangsmåde ifølge et hvilket som helst af kravene 9 til 13, hvor informationerne indbefatter én eller flere af:et samlet antal forekomster af en feedback-hændelse og et antal feedback-hændelser pr. tidsenhed. A method according to claim 9 or claim 10, wherein the storage takes place in the hearing aid. A method according to claim 9 or claim 10, wherein the storage takes place in a data store away from the hearing aid. A method according to claim 9, 10 or 12, wherein the storage is by use of the intemet. The method of any one of claims 9 to 13, wherein the information includes one or more of: a total number of occurrences of a feedback event and a number of feedback events per. unit of time.
Independent claims5
31 paragraphs in 6 sections, as filed
DESCRIPTION
FIELD OF THE INVENTION
[0001] The present subject matter relates generally to hearing assistance devices, including, but not limited to hearing aids, and in particular to an acoustic feedback event monitoring system for hearing assistance devices.
BACKGROUND
[0002] Modem hearing assistance devices typically include digital electronics to enhance the wearer's experience. In the specific case of hearing aids, current designs employ digital signal processors rich in features. Modem hearing aids include acoustic feedback cancellation functions. Acoustic feedback cancellation provides very rapid correction of the response of the hearing aid to avoid acoustic feedback. It is difficult to adjust settings of an acoustic feedback cancellation system because they are not limited to electronic or software aspects. These settings are also a function of the acoustics of the environment experienced by the wearer of the device and the fit of the device for the particular wearer.
[0003] With the increase of the use of open fit configuration hearing assistance devices, such as receiver-in-the-canal (RIC) or receiver-in-the-ear (RITE) hearing aids, there is an increasing need for higher gain solutions and thus more attention is placed squarely on the acoustic feedback cancellation function. It is important to obtain as much information about the acoustic feedback experienced by the wearer and the operation of the acoustic feedback canceller to provide the desired higher gains with reduced feedback problems for hearing aid wearers.
[0004] Audiologists have struggled with lack of information regarding feedback problems that the wearer experienced in use of the hearing aids. Information such as the band at which feedback happens or the severity of the problem is not easy to get from the hearing aid wearer. This may lead to unnecessary reduction in gain at places where feedback is not of a problem resulting in reduced audibility and an unhappy customer: [0005] The options available currently in the market for audiologists are limited. Information that is currently available for an audiologist is typically limited to patient's feedback condition while in the audiologist office. This information is limited and time consuming to acquire.
[0006] What is needed in the art is a system for improved monitoring of acoustic feedback events for hearing assistance devices. The system should provide robust and easily accessible information to allow for improved adjustment of hearing assistance devices.
[0007] EP 1835784A discloses an apparatus for storing information relating to acoustic feedback events of a hearing assistance device, comprising: a microphone to receive sound and convert it to an input signal; a receiver adapted to play output sound based on an output signal; a digital signal processor adapted to process the input signal and generate the output signal, the digital signal processor adapted to perform a process to reduce acoustic feedback between the receiver and the microphone, the digital signal processor further adapted to store information relating to the acoustic feedback events over an extended period of use of the hearing assistance device, wherein the information is accessible for analysis to determine aspects of the acoustic feedback experienced by the hearing assistance device over the extended period of use, the extended period of use including different acoustic environments experienced by a wearer of the hearing assistance device during use of the hearing assistance device.
[0008] The invention is defined by the features of the device of Claim 1 and the method of Claim 9.
[0009] Disclosed herein, among other things, are methods and apparatus for hearing assistance devices, including, but not limited to hearing aids, and in particular to an acoustic feedback event monitoring system for hearing assistance devices.
[0010] The present disclosure relates to tracking of acoustic feedback events of a hearing assistance device, such as a hearing aid. Information about the acoustic feedback events is stored for analysis. Such information is useful for programming acoustic feedback cancellers and other parameters of a hearing assistance device.
[0011] In various embodiments, the present subject matter provides apparatus for storing information relating to acoustic feedback events of a hearing assistance device, including a microphone; a receiver; a digital signal processor adapted to process an input signal and generate an output signal, the digital signal processor adapted to perform a process to reduce acoustic feedback between the receiver and the microphone, the digital signal processor further adapted to store information relating to the acoustic feedback events over an extended period of use of the hearing assistance device, wherein the information is accessible for analysis to determine aspects of the acoustic feedback experienced by the hearing assistance device over the extended period of use, the extended period of use including different acoustic environments experienced by a wearer of the hearing assistance device during use of the hearing assistance device. Various embodiments provide multiband or subband approaches. Various embodiments provide storage on the hearing assistance device and remote from the hearing assistance device. Various embodiments store information including one or more of a total number of occurrences of a feedback event, a severity of a feedback event, or a number of feedback events per unit time. Various embodiments include but are not limited to different types of hearing aids, such as behind-the-ear, in-the-ear, and receiver-in-the-canal hearing aids. In various embodiments, wireless communications are provided to perform storage and/or transfer of the information.
[0012] Various embodiments provide methods for monitoring performance of a hearing assistance device having an acoustic feedback canceller, the methods including tracking information about a plurality of acoustic feedback events over an extended time interval of use of the hearing assistance device to monitor performance of the acoustic feedback canceller in different acoustic environments experienced by a wearer of the hearing assistance device; and storing the information for analysis. Various embodiments provide multiband or subband approaches. Various embodiments provide storage on the hearing assistance device and remote from the hearing assistance device. Various embodiments store information including one or more of a total number of occurrences of a feedback event, a severity of a feedback event, or a number of feedback events per unit time. Various embodiments include but are not limited to different types of hearing aids, such as behind-the-ear, in-the-ear, and receiver-in-the-canal hearing aids. In various embodiments, wireless communications are provided to perform storage and/or transfer of the information.
[0013] This Summary is an overview of some of the teachings of the present application and not intended to be an exclusive or exhaustive treatment of the present subject matter. Further details about the present subject matter are found in the detailed description and appended claims. The scope of the present invention is defined by the appended claims.
BRIEF DESCRIPTION OF THE DRAWINGS
[0014] FIG. 1 is a block diagram showing hearing assistance devices and programming equipment, according to one embodiment of the present subject matter. FIG. 2 demonstrates one type of output possible with the present system, according to one embodiment of the present subject matter. FIG. 3 shows a functional block diagram of a hearing assistance system according to one embodiment of the present invention and a representation of an acoustic feedback path.
DETAILED DESCRIPTION
[0015] The following detailed description of the present subject matter refers to subject matter in the accompanying drawings which show, by way of illustration, specific aspects and embodiments in which the present subject matter may be practiced. These embodiments are described in sufficient detail to enable those skilled in the art to practice the present subject matter. References to "an", "one", or "various" embodiments in this disclosure are not necessarily to the same embodiment, and such references contemplate more than one embodiment. The following detailed description is demonstrative and not to be taken in a limiting sense. The scope of the present subject matter is defined by the appended claims, along with the full scope of legal equivalents to which such claims are entitled.
[0016] The present subject matter relates generally to hearing assistance devices, including, but not limited to hearing aids, and in particular to an acoustic feedback event monitoring system for hearing assistance devices.
[0017] FIG. 1 is a block diagram of a system 11 showing a pair of hearing assistance devices and programming equipment, according to one embodiment of the present subject matter. FIG. 1 shows a host computer 10 in communication with the hearing assistance devices 20. In one application, the hearing assistance devices 20 are hearing aids. Other hearing assistance devices and types of hearing aids are possible without departing from the scope of the present subject matter. In various embodiments a programmer 30 is used to communicate with the hearing assistance devices 20; however, it is understood that the programmer functions may be embodied in the host computer 10 and/or in the hearing assistance devices 20 (e.g., hearing aids), in various embodiments. Programmer 30 thus functions to at least facilitate communications between the host computer 10 and the hearing assistance devices 20 (e.g., hearing aids), and may contain additional functionality and programming in various embodiments.
[0018] The present subject matter provides a means for tracking acoustic feedback events over an extended period of time. The tracking algorithm executes on each hearing aid to be monitored. In various embodiments, the tracking algorithm is performed by the digital signal processor to save acoustic feedback events for analysis. In various embodiments, it is possible that the tracking algorithm can operate at least in part on another device, including, but not limited to, the host computer 10, the programmer 30, another hearing aid 20, or on combinations of the foregoing. It is possible that the tracking algorithm can be executed on another device provided it accesses or obtains information about the feedback event experienced and/or operation of the feedback canceller as it operates on the hearing assistance device.
[0019] A good feedback detector in a multiband device can detect accurately the occurrence of feedback in a particular band. A hearing aid that has stored these feedback events is a good source of information for audiologists during follow up visits from hearing aid users. It is understood that such follow ups need not be in person and that using remote access technology, the feedback event data can be reviewed and processed remotely. Device parameters can be adjusted remotely as well. Upon reviewing the feedback event information, the audiologist can set the gain in the hearing aid to suit audibility needs while making the most educated guess to avoid potential feedback problems. In various embodiments, this can be based on the wearer's hearing loss and any preliminary calculation of maximum stable gain of the hearing aid. The hearing aid wearer is asked to come back for a follow up visit at a later time, such as one or two weeks. Other times may be used without departing from the scope of the present subject matter. During this time a feedback tracking algorithm can be run on the hearing aid, or aids, to be monitored. In various embodiments, the tracking algorithm is continually run on the hearing aid. In various embodiments, the tracking algorithm is activated during the 1 to 2 week monitoring period, depending on the preference of the audiologist. In various embodiments, the tracking algorithm is activated upon certain programmable events, such as an acoustic environment change, occurrence of multiple acoustic feedback events, or other programmable events. In various embodiments, there are means in the fitting software to disable or reset the feedback tracking algorithm.
[0020] In some embodiments, the feedback tracking algorithm constantly monitors information including, but not limited to, the total number of occurrences of feedback, severity of the feedback, and/or a number of feedback occurrences per unit time until the next follow up. If needed to avoid false alarms, the feedback tracking algorithm can be disabled for a few seconds after power up so that feedback due to insertion of hearing aid into ear is not taken into consideration. The data is collected over an interval of time until the follow up session.
[0021] When the hearing aid user comes back to the audiologist office (or in the case of a remote visit, when the data is provided to the audiologist), the fitting software will display the information that would help the audiologist to fine tune the prescribed gain to minimize feedback problems. This allows gain to be reduced in bands of high feedback problems and increase gain (if needed) in bands with no feedback problems. Higher the probability of feedback in a band, more gain reduction can be prescribed in that band. This will ensure that the hearing aid performance is maximized to provide increased audibility while reducing risks of feedback in a convenient, straightforward manner.
[0022] FIG. 2 demonstrates one type of output possible with the present system, according to the present subject matter. The data representing feedback occurrences at particular frequencies is statistically collected and provided as a histogram in this example. This type of output tells the audiologist the likelihood of feedback as a function of frequency for a relatively large sample space as opposed to a limited amount of information found during a patient visit. There are different ways that the fitting software can display the information on feedback. Thus, the present discussion is demonstrative and not intended to be an exhaustive or exclusive depiction of the system and its operation.
[0023] In various embodiments, the feedback tracking algorithm is adapted to run on the digital signal processor of the hearing assistance device. In some embodiments, the data is statistically collected and stored in memory resident in the hearing aid. In various embodiments, the data is transferred to another storage device. Such devices include data storage accessible over the INTERNET or other network, a personal data storage, such as a personal digital assistant, iPod, cellular phone, or other digital storage device. Such transfer may be performed in a wired or wireless approach, or via a recharging step where the data is downloaded. The wireless approaches including, but are not limited to radio frequency transmission or magnetic coupling transmission. In some embodiments, the data is logged for later processing, such as set forth in U.S. patent application serial no. 11/276,795 filed March 14, 2006, which is also published as U.S. Patent Application Publication No. 2007/0217620 on Sep. 20, 2007, titled: "SYSTEM FOR EVALUATING HEARING ASSISTANCE DEVICE SETTINGS USING DETECTED SOUND ENVIRONMENT,".
[0024] FIG. 3 shows a functional block diagram of a hearing assistance system according to the present invention and a representation of an acoustic feedback path. The hearing assistance system 100 includes a microphone 110, which receives input sound 108 and provides a signal 112 to an analog-to-digital converter 120. A digital representation 122 of the signal 112 is provided to the summer 130. The summer 130, sound processor 140 and acoustic feedback estimator with adaptive bulk delay 160 are configured in a negative feedback configuration to provide a cancellation of the acoustic feedback 190. In FIG. 3, the input sound 108 is desired signal and conceptually separate from acoustic feedback 190. In providing the cancellation, signal 124 represents a form of error signal to assist in producing the acoustic feedback estimate 126 from acoustic feedback estimator with adaptive bulk delay 160. Sound processor 140 can be implemented to provide a number of signal processing tasks, at least some of which are found in hearing assistance systems. The resulting processed digital output 144 is received by driver 150 and used to drive receiver 180. In one embodiment, driver 150 is a digital to analog converter and amplifier combination to drive receiver 180. In one embodiment, driver 150 is a direct drive. In one embodiment, driver 150 is a pulse width modulator. In one embodiment, driver 150 is a pulse density modulator. Receiver 180 also can vary. In one embodiment, receiver 180 is a speaker. In on embodiment, receiver 180 is a transducer. Other drivers and receivers may be used without departing from the scope of the present subject matter.
[0025] Digital output 144 is provided to the acoustic feedback estimator with adaptive bulk delay 160 to create the acoustic feedback estimate 126. Summer 130 subtracts acoustic feedback estimate 126 from digital representation 122 to create error signal 124.
[0026] It is understood that various amplifier stages, filtering stages, and other signal processing stages are combinable with the present teachings without departing from the scope of the present subject matter.
[0027] The sound cancellation is necessary since acoustic output from the receiver 180 invariably couples with the microphone 110 through a variety of possible signal paths. Some example acoustic feedback paths may include air paths between the receiver 180 and microphone 110, sound conduction paths via the enclosure of hearing assistance system 100, and sound conduction paths within the enclosure of hearing assistance system 100. Such coupling paths are collectively shown as acoustic feedback 190.
[0028] If properly implemented the feedback system of FIG. 3 will produce an acoustic feedback estimate 126 which is closely modeled after acoustic feedback 190. Summer 130 will subtract the acoustic feedback estimate 126 from signal 122, thereby cancelling the effect of acoustic feedback 190 in signal 124. As the cancellation becomes ideal signal 124 approaches signal 122, which is a digital representation of input sound 108. It is noted that signal 124 is called an error signal only because it represents error to the closed loop system (that is when it departs from signal 122 that is error). When working properly, the information on error signal 124 is the desired sound information from input sound 108. Thus, the "error" nomenclature does not mean that the signal is purely error, but rather that its departure from the desired signal indicates error in the closed loop feedback system.
[0029] The acoustic feedback cancellation is performed using the digital signal processor (DSP) in digital embodiments. The DSP is used to perform the feedback event tracking function of the present subject matter. Multiband or subband implementations involve acoustic feedback cancellation that is performed on a band-by-band basis. Therefore collection of acoustic feedback events per band is relatively straightforward.
[0030] The present subject matter can be used for a variety of hearing assistance devices, including but not limited to, cochlear implant type hearing devices, hearing aids, such as behind-the-ear (BTE), in-the-ear (ITE), in-the-canal (ITC), or completely-in-the-canal (CIC) type hearing aids. It is understood that behind-the-ear type hearing aids may include devices that reside substantially behind the ear or over the ear. Such devices may include hearing aids with receivers associated with the electronics portion of the behind-the-ear device, or hearing aids of the type having receivers in the ear canal of the user. Such devices are also known as receiver-in-the-canal (RIC) or receiver-in-the-ear (RITE) hearing instruments. It is understood that other hearing assistance devices not expressly stated herein may fall within the scope of the present subject matter.
REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only. It does not form part of the European patent document. Even though great care has been taken in compiling the references, errors or omissions cannot be excluded and the EPO disclaims all liability in this regard.
Patent documents cited in the description • EP1835784A [00071 • US27679506A [0023] • US20070217620A [0023]
Contents6
3 sheets
Sheet 1 Sheet 2 Sheet 3
10 members in 3 offices
Priority claims4
| Document | Office | Kind | Date |
|---|---|---|---|
| 64493209 | United States of America | A | |
| 64493209 | United States of America | A | |
| 644932 | – | – | – |
| US20090644932 | – | – | – |
Members10
| Document | Office | Kind | |
|---|---|---|---|
| US2011150231A1 | United States of America | A1 | |
| EP2339870A2 | European Patent Office (EPO) | A2 | |
| EP2339870A3 | European Patent Office (EPO) | A3 | |
| US9729976B2 | United States of America | B2 | |
| US2018027341A1 | United States of America | A1 | |
| EP2339870B1 | European Patent Office (EPO) | B1 | |
| DK2339870T3This record | Denmark | T3 | |
| US10924870B2 | United States of America | B2 | |
| US2021243534A1 | United States of America | A1 | |
| US11818544B2 | United States of America | B2 |
Numbers
- Publication
- 2339870
- Publication, DOCDB
- 2339870
- Publication, EPODOC
- DK2339870T
- Application
- 102521093
- Application, DOCDB
- 10252109
- Application, EPODOC
- DK20100252109T
Titles2
- Danish
- System til akustisk feedback-hændelsesovervågning til høreapparat
- English
- Acoustic feedback event monitoring system for hearing aid
Classification
- CPC, 5
- H04R25/453
- H04R25/305
- H04R25/558
- H04R2225/39
- H04R2225/41
- IPC, 1
- H04R25 00
