[0001] This invention relates to a hearing aid in which acoustic feedback is controlled.
[0002] Acoustic feedback, a common problem in both in-the-ear and behind- the-ear hearing
aids, can be eliminated in some users by placement of a capacitor in parallel with
the hearing aid amplifier output. However, this does not allow adjustments at the
time of fitting the hearing aid and therefore, feedback cannot be eliminated in all
users.
[0003] A high frequency cutoff circuit can be used to eliminate feedback, but it also entirely
eliminates the high frequency response of the hearing aid.
[0004] Accurate ear impressions coupled with precise duplication at the laboratory can provide
a precise fit for the hearing aid which is helpful in reducing feedback. However,
often the hearing aid must be returned to the laboratory for minor corrections due
to inaccuracies in the original impressions or in the duplications.
SUMMARY OF THE INVENTION
[0005] In general, the invention features, in one aspect, a hearing aid having receiving
means for receiving sound, amplifying means, connected to the receiving means, for
amplifying sound, and a resonant peak control connected oetween the receiving and
amplifying means, for reducing feedback by varying the amplifying means frequency
response.
[0006] In a particular embodiment, the resonant peak control of the hearing aid allows the
frequency response to be tailored to reduce feedback without substantial reduction
in high frequency amplification by the amplifying means; the resonant peak control
is an R-C circuit; the R-C circuit is a series R-C circuit having a variable resistor
and a capacitor.
[0007] In another particular embodiment, the hearing aid has an adjustable vent which can
be used to reduce feedback; the adjustable vent and the resonant peak control are
coordinated to reduce feedback.
[0008] In another aspect, the invention features a method of reducing feedback in a hearing
aid, having the steps of adjusting the volume of the hearing aid to the most comfortable
level and tailoring the frequency response of the hearing aid output to reduce feedback.
[0009] In a particular embodiment, the tailoring of the frequency response is accomplished
by tuning a series R-C circuit in parallel with a hearing aid output.
[0010] This invention is a very significant step in the elimination of acoustic feedback
in hearing aids because it allows the hearing aid to be adjusted for the elimination
of feedback at the time of fitting.
[0011] On the spot adjustments, obtained by varying the resonant peak control, allow the
hearing aid to be customized to an individual user without the necessity of returning
the aid to the factory or laboratory for adjustments or modifications. This allows
accomo- dation of individual characteristics of a user's ear canal in obtaining the
most comfortable level for that particular user. Adjustment of the resonant peak control
flattens out the frequency response ano shifts the frequency response curve to a lower
frequency range, resulting in almost no loss in high frequency amplification and only
a minimal change in saturation levels.
[0012] Therefore, this hearing aid provides the advantage of being adjustable at the time
of fitting without any significant sacrifice in operational characteristics.
[0013] Other features and advantages of the invention will be apparent from the following
detailed description, and from the claims.
[0014] For a full understanding of the present invention, reference should now be made to
the following detailed description and to the accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWINGS
[0015]
Fig. 1 is a diagrammatic view of the hearing aid circuitry.
Fig. 2 shows the boundaries of the frequency response curve due to adjustment of the
resonant peak control.
Fig. 3 shows the boundaries of the saturation sound pressure level curve due to adjustment
of the resonant peak control.
DETAILED DESCRIPTION
[0016] Referring to the drawings, an embodiment of the invention will now be described in
detail.
[0017] Hearing aid 10, designed to be mounted in the user's ear, has microphone 12 for picking
up external sounds, integrated circuit 14, typically an LTI 505 integrated circuit,
for amplifying external souna, and receiver 16, typically a Knowles Electronics 1913
receiver for imparting the amplified sound to the user.
[0018] Micropnone 12, is connected to integrated circuit 14 by gain control 18, wnicn can
be a potentiometer in series with capacitor 20, for adjusting the gain of the microphone.
[0019] Volume control 22, which can also be a potentiometer, allows variable aajustment
of the amplified audio output of integrated circuit 14.
[0020] Receiver 16, connected in parallel with integrated circuit 14, is also connected
in parallel with a series R-C circuit which includes capacitor 24 and resonant peak
control (RPC) 26.
[0021] The resonant peak control is a variable potentiometer which when adjusted acts in
conjunction with capacitor 24 and the inductance of receiver 16 to tailor the frequency
response of the amplifier (integrated circuit 14) to reduce instability due to feedback.
[0022] Referring to Fig. 2, frequency response curves A and B show the two extreme conditions
between which the frequency response can be tailored by adjusting the resonant peak
control.
[0023] The aojustment of the resonant peak control varies its electrical output which tunes
or tailors the frequency response resulting in shifting and flattening of the peaks
of the frequency response curve which reduces feedback with only a slight reduction
in high frequency amplification and only a minimal change in the saturation curve.
[0024] Referring to Fig. 3, curves C and D show the limits of the change in the saturation
curve due to adjustment of the resonant peak control.
[0025] In actual use the slight reduction in high frequency amplification is not detectable
because the improved flatness of the frequency response permits a higher gain to be
utilized.
[0026] In actual operation the hearing aid is inserted in the user's ear anc volume control
22, is adjusted to the most comfortable level for the particular user. In the event
feedback occurs prior to reaching the most comfortable level, resonant peak control
26 is adjusted until feedback is eliminated. Then, if required volume control 22 can
be further increaseo to again reach the most comfortable level.
[0027] The sequence of maximizing the volume control to the most comfortable level followed
by adjustment of the resonant peak control is repeated until the most comfortable
level for the user is attained without the existence of an) feedback.
[0028] Siemens Custom In-The-Ear Hearing Aid 007, sold by Siemens Hearing Instruments, Inc.,
685 Liberty Avenue, Union, New Jersey, incorporates the inventive concept described
in this application.
[0029] In an alternative embodiment the size of the hearing aid vent opening can be changed
to effect a change in amplifier instability (integrated circuit 14) due to feedback.
[0030] This modification of the opening is especially useful when a maximum resonant peak
control adjustment is reached and feedback still occurs.
[0031] There has thus been shown and described a novel method and apparatus for reducing
acoustical feedback in hearing aids which fulfills all the objects anc advantages
sought therefor. Many changes, modifications, variations and other uses and application
of the subject will, however, become apparent to those skilled in the art after considering
the specification and the accompanying drawings which disclose embodiments tnereof.
All such changes, mooifications, variations and other uses and applications which
do not cepart from the spirit and scope of the invention are deemed to be covered
by the invention which is limited only by the claims which follow.
1. A hearing aid, comprising:
a) receiving means for receiving sound;
b) amplifying means, connected to said receiving means, for amplifying said sound;
and
c) a resonant peak control connected between said receiving and said amplifying means,
for reducing feedback by varying said amplifying means frequency response.
2. The hearing aid of claim 1, wherein said resonant peak control allows said frequency
response to be tailored to reduce feedback without substantial reduction in high frequency
amplification by said amplifying means.
3. The hearing aid in claim 1, wherein said resonant peak control comprises an R-C
circuit.
4. The hearing aid of claim 3, wherein said R-C circuit is a series R-C circuit comprising
a variable resistor and a capacitor.
5. The hearing aid of claim 1, wherein an adjustable vent can be used to reduce feedback.
6. The hearing aio of claim 5, wherein said adjustable vent and saio resonant peak
control are coordinated to reduce feedback.
7. The method of reducing feedback in a hearing aid, comprising the steps of:
a) adjusting the volume of said hearing aid to a most comfortable level; and
b) tailoring the frequency response of said hearing aid output to reduce feedback.
8. The method of claim 7, wherein said tailoring is accomplished by tuning a series
R-C circuit in parallel with said hearing aid output.