Completely-in-canal hearing instrument with robust feedback stability
View Patent ↗A CIC hearing instrument and appertaining method are provided that improve feedback stability. Accordingly, the microphone inlet is located on the faceplate of the instrument at a position of least vibration. Furthermore, the receiver is located in the device such that its vibrating membrane is parallel to a plane calculated to include a line of minimal vibration on the faceplate and a center of gravity for the instrument.
1. A hearing instrument for insertion into the ear canal of a user, comprising
a center of gravity of the hearing instrument;
a shell, the shell comprising an interior;
a generally-planar faceplate attached to the shell and comprising an approximately elliptical shape comprising major and minor axes;
a plane of minimal vibration of the hearing instrument comprising the major axis of the faceplate and the center of gravity of the hearing instrument;
a receiver positioned in the interior of the shell, the receiver comprising a vibrating armature and a generally-planar diaphragm responsive to the armature, the diaphragm lying in a plane
normal to a plane defined by the motion of the vibrating armature, where the plane defined by the motion of the vibrating armature intersects the faceplate; and
parallel to the plane of minimal vibration;
a microphone positioned in the interior of the shell; and
a microphone inlet for the microphone located on the major axis.
2. A method for positioning a microphone inlet on the faceplate of a hearing instrument for insertion into the ear canal of a user, the hearing instrument comprising
a shell, the shell comprising an interior;
a generally-planar faceplate attached to the shell and comprising an approximately elliptical shape comprising major and minor axes;
a receiver positioned in the interior of the shell, the receiver comprising a vibrating armature and a generally-planar diaphragm responsive to the armature and lying in a plane normal to a plane defined by the motion of the vibrating armature, where the plane defined by the motion of the vibrating armature intersects the faceplate; and
a microphone positioned in the interior of the shell,
the method comprising:
determining the location of the center of gravity of the hearing instrument;
establishing a plane of minimal vibration of the hearing instrument comprising the major axis of the faceplate and the center of gravity;
orienting the receiver such that the plane of the diaphragm is parallel to the plane of minimal vibration; and
placing a microphone inlet for the microphone on the major axis.