Nova Patents
EP1519625A2

External ear canal voice detection

Abstract

Ear-level full duplex audio communication systems each include one or two ear attachment devices, such as in-the-ear (ITE) or behind-the-ear (BTE) devices, that wirelessly communicates to a remote device such as a computer, a personal digital assistant (PDA), a cellular phone, a walkie talkie, or a language translator. When used as a hearing aid, such a system allows a hearing impaired individual to communicate with or through the remote device, such as to talk to another person through a cellular phone. When being used as an ear piece wirelessly extended from the remote device, such system allows an individual with normal hearing to privately communicate with or through the remote device without the need of holding the device or wearing any device wired to the remote device. Each ear attachment device includes a voice operated exchange (VOX), housed within the device, to preserve energy and hence, maximize the period between battery replacement or recharges. The VOX also gates various sounds detected by the system to control possible echoes and ringing.

EP1519625A2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 13 September 2024, 2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

38 claims: 17 independent, 21 dependent

  1. 1
    A system adapted for use in at least one of a first ear having a first ear canal and a second ear having a second ear canal, comprising:a first ear-level device including: a first microphone adapted for use in one of the first ear canal and the second ear canal, the first microphone receiving an occluded sound from about the one of the first ear canal and the second ear canal;a first processor, connected to the first microphone, to process the occluded sound;a wireless transmitter, connected to the first processor, to receive the processed occluded sound from the first processor and transmit a first wireless signal representing the occluded sound;and a first earmold housing at least the first microphone, at least a portion of the first earmold configured for placement in the one of the first ear canal and the second ear canal.
  2. 4
    The system according to any of the preceding claims, further comprising a voice operated exchange (VOX) circuit connected to the first processor.
  3. 8
    The system according to any of claims 6 and 7, further comprising a second microphone connected to the first processor, the second microphone adapted to receive an ambient sound from outside the one of the first ear canal and the second ear canal, and wherein:the first processor further processes the ambient sound;and the speaker is configured to transmit the processed remote and ambient sounds to the one of the first ear canal and the second ear canal.
  4. 11
    The system according to any of claims 9 and 10, wherein the VOX circuit comprises a remote sound gating module, coupled to the wireless transceiver, to blank or substantially attenuate the remote sound.
  5. 12
    The system according to any of claims 9 -11, wherein the VOX circuit comprises an ambient sound gating module, coupled to the first microphone, to blank or substantially attenuate the ambient sound.
  6. 13
    The system according to any of the preceding claims, wherein the first processor comprises a speech recognition module.
  7. 14
    The system according to any of claims 6 -13, wherein the first earmold houses the first microphone, the first processor, the wireless transmitter, the wireless receiver, and the speaker, and wherein the first carmold is configured for use as an in-the-ear (ITE) device.
  8. 17
    The system according to any of claims 6 - 13, wherein the first ear level device comprises an ITE module including the first microphone and the speaker and a behind-the-ear (BTE) module attached to the ITE module and including the second microphone, the first processor, the wireless transmitter, and the wireless receiver.
  9. 20
    The system according to any of claims 6 - 19, further comprising a remote device communicatively coupled to the wireless transmitter and the wireless receiver via a telemetry link providing for simultaneous bi-directional communication between the first ear-level device and the remote device.
  10. 24
    The system according to any of claims 22 and 23, wherein the first ear-level device further comprises a first voice operated exchange (VOX) circuit connected to the first processor, and the second ear-level device further comprises a second VOX circuit connected to the second processor,
  11. 25
    The system according to any of claims 22 - 24, wherein the first processor and the second processor each comprise a speech recognition module.
  12. 26
    The system according to any of claims 22 - 25, wherein the first and second ear-level devices are each an behind-the-ear (BTE) device.
  13. 27
    The system according to any of claims 22 - 25, wherein the first and second ear-level devices are each an in-the-ear (ITE) device.
  14. 30
    The system according to any of claims 22 - 29, further comprising a remote device communicatively coupled to the first and second ear-level devices.
  15. 32
    A method, comprising:detecting an occluded sound using a first microphone adapted for use in an ear canal;detecting an incoming radio signal representing a remote sound from the remote device;starting a voice operated exchange (VOX) housed within an ear-level communication device when at least one of the occluded sound and the incoming radio Signal is detected if the VOX is not already on, the ear-level communication device being one of an in-the-ear (ITE) device and a behind-the-ear (BTB) device;gating the occluded sound on, and gating the remote sound off, when the occluded sound is detected while the incoming radio signal is not detected;and gating the remote sound on, and gating the occluded sound off, when the incoming radio signal is detected while the occluded sound is not detected.
  16. 34
    The method according to any of claims 32 and 33, wherein detecting the incoming radio signal comprises comparing an amplitude of the remote sound to a remote sound threshold, wherein the incoming radio signal is detected when the amplitude of the remote sound exceeds the remote sound threshold.
  17. 35
    The method according to any of claims 32 - 34, further comprising detecting an ambient sound using a second microphone, and wherein starting the VOX comprises starting the VOX when at least one of the occluded sound, the incoming radio signal, and the ambient sound is detected if the VOX is not already on.
Independent claims17