BATTERY COATING FOR RECHARGABLE HEARING SYSTEMS
Embodiments of the invention include a method of preventing ferrite migration in a hearing aid including an antenna stack and a battery stack wherein the antenna stack sits on the battery stack, the method comprising the steps of: conformally coating the top and sides of the antenna stack using a conformal coating material; and separately coating all the surfaces of the battery stack using a separate material.
1 . A hearing aid device comprising:
an antenna stack having a top, sides and a bottom, the antenna stack comprising:
a coil antenna having a first and second side, the first side of the coil antenna forming the top of the antenna stack;
a backing iron having a first and second side, the first side of the backing iron being attached to the second side of the coil antenna; and
a spacer having a first and second side, the first side of the spacer being attached to the second side of the backing coil and the second side of the spacer forming the bottom of the antenna stack;
a battery stack, the battery stack comprising:
a rechargeable battery having a first and second side, the first side of the rechargeable battery being attached to the second side of the spacer;
a printed circuit board attached to the rechargeable battery;
a conformal coating material covering the top and sides of the antenna stack sealing the top and sides of the antenna stack from moisture ingress;
a second coating material covering the top and sides of the battery and the printed circuit board, sealing the battery stack from moisture ingress.
2 . A hearing aid device according to claim 1 wherein the conformal coating material comprises an organic coating material.
3 . A hearing aid device according to claim 2 wherein the conformal coating material comprises Hysol.
4 . A hearing aid device according to claim 1 , wherein the second coating material comprises Parylene.
5 . A method of preventing ferrite migration in a hearing aid including an antenna stack and a battery stack wherein the antenna stack sits on the battery stack, the method comprising the steps of:
conformally coating the top and sides of the antenna stack using a conformal coating material; and
separately coating all the surfaces of the battery stack using a separate material.