The present invention refers to a hearing device set and to a method for testing a hearing device e.g. with the aid of a hearing device set.
Specifically the present invention refers to a hearing device set for testing hearing devices of the kind having an input acoustical/electrical converter, an output electrical/acoustical converter and a computing unit operationally connecting input to output converter. Such a hearing device may be an in-the-ear device or an outside-the-ear device and thereby a hearing aid device for therapeutical appliances for hearing impaired individuals or may be a consumer hearing device as for headsets, earpieces, earphones, active anti-noise devices, etc.
Whenever proper functioning of such hearing devices is to be tested, customarily the device is installed within a unechoical surrounding and testing is performed making use of an external acoustical/electrical converter as well as of an external electrical/acoustical converter. There is further provided a signal generator and a analysing unit to stimulate on one hand the external acoustical/electrical converter and to analyse on the other hand the result acoustical signal from the external electrical/acoustical converter.
This testing thus necessitates a laboratory-type testing equipment and surrounding. Such testing may only be performed at well equipped locations and by well trained staff
From the DE 100 46 098 a method is known for testing the above mentioned hearing devices which is considerably simpler, as concerns testing equipment required, as well as education of testing staff.
Thereby the internal electrical/acoustical output converter of the device is exploited to stimulate the internal acoustical/electrical input converter of the device. The signal transfer path between output of the input converter and input of the output converter is interrupted. A well defined acoustical transmission line is thereby applied between the output of the output converter and the input of the input converter. Very similarly the US 2003/0007647 proposes to apply as such well defined acoustical transmission line a compartment with hard walls, so that the large part of the generated acoustic signal is received by the input transducer.
It is an object of the present invention to further simplify such a testing procedure. This is achieved according to the present invention by a hearing device set according to claim 1.
The inventive hearing device set comprising at least one hearing device with at least one acoustical/electrical input converter, at least one electrical/acoustical output converter, at least one communication link tap at the outer surface of said device for wirebound, optical, wireless or electromagnetic communication to the external.
The acoustical coupler may be a separate part within said packaging box, preferably held within said packaging box. As alternative the acoustical coupler may be formed by an acoustically substantially sealable or closable receiving space within said packaging box for receiving and holding the said hearing device.
According to a possible design the packaging box may comprise a holding member for holding said device in a predetermined position such that acoustical coupler within said packaging acoustically interconnects said acoustical output and said acoustical input of said hearing device, as said hearing device is held in said packaging box. The set further comprises at said packaging box and adjacent said holding member at least one electrical or optical tap connected to said at least one communication link tap of said device, as said device is residing within said holding member and being connected to the at least one electrical or optical tap.
The inventive set may further comprise at least one electrical signal generating device, the signal being representative for an acoustical signal, the signal generating device being in connection with the acoustic output of said hearing device. The set further comprises at least one electric signal receiving unit being in connection with the acoustic input of said hearing device. Further, at least one computing, analyzing and/or testing unit respectively may be arranged for comparing the signal of the electrical signal generating device with the electrical signal, received by the electric signal receiving unit.
According to one possible design of the present invention the electrical signal generating device, the electrical signal receiving unit and possibly the computing, analyzing and/or test device respectively being arranged within said packaging box and being accessible from the surface of said packaging box for operational reason. Further, on the surface of said packaging box a control/monitoring display may be arranged including at least means for indicating, whether the analyzing and/or test device respectively is in operation and whether the result of the analyzing and test procedure is positive or negative.
According to an alternative design of the present invention the electric signal generating device, the electrical signal receiving unit and possibly the computing, analyzing and/or test device respectively or parts thereof being arranged outside of said packaging box and the signal generating device and the signal receiving unit being connectable to corresponding contact portions at the surface of said packaging box, the contact portions being in connection with the electrical or optical tap arranged within said packaging box and being connected to the said at least one communication link tap of said hearing device, the hearing device being arranged within the packaging box. The communication or connection respectively between the contact portions and the electric signal generating device, the electric signal receiving unit and possibly the computing, analyzing and/or test device respectively may be wire-bound, optical, wireless or electromagnetic.
Further, a method for testing a hearing device according to the wording of claim 12 is proposed. Specifically a method for testing a hearing device with an input acoustical/electrical converter with an acoustical input, an output electrical/acoustical converter with an acoustical input is proposed, by placing said hearing device in a packaging box for the device specifically conceived for holding the hearing device therein such that the acoustical output and the acoustical input of said hearing device being acoustically coupled. The method further comprises the steps of
Further, said tapped off electrical signal and the said electric drive signal are compared within a computing, analyzing and/or testing unit for testing the performance of the hearing device.
According to one aspect of the invention it may be intended that a testing procedure is effected automatically each time the hearing aid device is placed within the packaging box and the box is closed.
According to a further aspect it may be planned that the testing procedure is effected in a certain rhythm, like e.g. each month, in which case of course a timer unit has to be combined with the inventive device set.
According to a further aspect the testing procedure may be effected after a certain predetermined amount of opening or closing procedures, as users of the hearing aid device usually remove the device in the morning and place the device back into the box in the evening, so that the testing procedure may be repeated after 30, 60, 120, etc. of mentioned removing and placing back procedures.
The present invention shall now be described more in details and by way of examples with the help of figures. These figures show:
According to the invention it is proposed that the e.g. conventional storing and transporting box 1 is including additionally a testing arrangement, for the testing purpose of the hearing aid device 3. This testing arrangement or set respectively may comprise an acoustic coupler 5, which is arranged adjacent to the hearing aid device 3 for acoustically coupling an acoustic output of the hearing aid device with an acoustical input such as e.g. a microphone of the hearing aid device 3. This coupler may be a tube-like or pipe-like device with open ends directed to the acoustical output of the hearing aid device and to the acoustical input.
Furthermore, at the outside surface of the hearing aid device at least one communication link tap 10 is provided for communication to the external of a signal computing unit enclosed within the hearing aid device, which computing unit is arranged between the acoustical/electrical input converter and the electrical/acoustical output converter of the hearing aid device. This communication to the external via the communication link tap 10 may be a wirebound, an optical, a wireless or electromagnetic communication.
The communication link tap might be connected to a connector device 11, which is such arranged that the hearing aid device placed within the receiving space 2 of the packaging box is preferably automatically connected with the communication link tap 10 to the connector device 11. The connector device 11 itself is interconnected with an acoustical/electrical testing arrangement 15, which is described later on in details. For operational reasons such as controlling and monitoring the testing arrangement 15 is connected to a display arrangement 17, provided in one side wall of the packaging box 1.
In
A signal computing unit, arranged within the hearing aid device 3 for interconnecting the microphone 7 with the acoustical output 9 is connected to the communication link tap 10 for communication to the external, which means for being connected to a connecting device 11, which in turn is in connection to the communication link tap 10. The connector device 11 itself is connected to the testing arrangement 15 e.g. via at least two wire connections 13′ and 13″, which testing arrangement 15 again is connected to the outside surface of the packaging box with a corresponding operation/controlling and/or monitoring display 17.
With the aid of the schematically shown view of the arrangement in
If the operation of a hearing aid device 3 has to be tested, the device 3 may be placed within a hollow receptacle space 2 of a packaging box 1, which might be the original packaging box of the hearing aid device for storing and transporting the hearing aid device. Or the box 1 can be a specifically used box for testing purpose. Especially in case that no specific acoustic coupler device 5 is arranged within the hollow space 2 the cover 6 of the packaging box has to be closed. In case of an acoustic coupler device 5 the cover 6 may be opened.
The testing operation shall be initiated by e.g. manually starting the operation by pushing a corresponding button 18 on the display 17. Within the testing arrangement 15 an electrical signal generating device shall generate an electrical signal, which is representative for an acoustical signal, This electrical signal shall be transported via a wire connection 13′ to the connector 11 and from there via the communication link tap 10 to the signal computing unit within the hearing aid device 3, so that a corresponding acoustical signal is initiated and produced at the acoustical output 9 of the hearing aid device. The acoustical signal shall be transported via the acoustical coupler device 5 or through the hollow space 2 to the microphone 7 of the hearing aid device 3, where it is received and again converted to an electrical signal. This electrical signal again is transferred via the communication link tap 10, the connector device 11 and the wire 13″ to the testing arrangement 15, where it is transferred to an electrical signal receiving unit within the arrangement 15. In a final step the initially generated electrical signal, generated by the electrical signal generating device and the received electrical signal, received by the electrical signal receiving unit, shall be compared and analyzed in a respective analyzing unit. According to the analyses it can be judged, whether the hearing aid device is well functioning or whether the hearing aid device does have a defect.
The result of the testing procedure may be displayed on the monitoring display 17, where e.g. a green and a red Liquid Crystal Display may be arranged. If the hearing aid device operates perfectly, the green light 22 is illuminated, if the result is negative, the red light 24 is illuminated.
In case that the testing procedure has to be executed according to a predetermined rhythm, like e.g. after certain time periods or after certain cycles of use, the testing and analyzing set has to be connected to a timer or counter unit, which initiates a testing and analyzing procedure after certain time periods, such as e.g. each month, or after certain cycles of use, which means e.g. after 100, 200, etc. opening and closing procedures of the packaging box.
The function of the electrical signal generating device, the electrical signal receiving unit and the analyzing unit shall not be described in details, as this is well-known out of the state of the art. References to test controlling devices for hearing aid devices are indicated e.g. within the description.
In
Again within a packaging box 1 a hollow space 2 is arranged specifically conceived for holding a hearing aid device 3 therein. Again adjacent to the hearing aid device 3 an acoustic coupler 5 may be arranged for interconnecting an acoustical output with an acoustical input of the hearing aid device 3. Again equivalent to the design of
The advantage of the embodiment according to
The various embodiments shown in
| Number | Name | Date | Kind |
|---|---|---|---|
| 6603860 | Taenzer et al. | Aug 2003 | B1 |
| 6671643 | Kachler et al. | Dec 2003 | B1 |
| 20020082794 | Kachler et al. | Jun 2002 | A1 |
| 20030007647 | Jensen et al. | Jan 2003 | A1 |
| Number | Date | Country |
|---|---|---|
| 97 19573 | May 1997 | WO |
| Number | Date | Country | |
|---|---|---|---|
| 20040196997 A1 | Oct 2004 | US |