Nova Patents
EP1828833A2

Wireless interactive headset

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 18 November 2025, 0.8 years ago.

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

139 claims: 10 independent, 129 dependent

  1. 1
    Claims of equivalent WO 2006055884 A2 WHAT IS CLAIMED IS:1. A wearable wireless audio device, comprising: a support comprising a first ear stem and an orbital, the support configured to support at least one lens in a wearer's field of view;a support arm, the support arm comprising a first end, a second end, a first moveable joint coupled to the first end and the first ear stem, and a second moveable joint coupled to the second end, wherein the first moveable joint provides rotation about a first rotation axis and the second moveable joint provides rotation about a second rotation axis, wherein said first rotation axis and said second rotation axis are substantially perpendicular to one another;and an electronics circuit supported by the support and configured to receive at least one digital audio file and generate an audio signal indicative of the at least one digital audio file.
  2. 2
    A wearable wireless audio device as in Claim 1, wherein the electronics circuit is further configured to process the digital audio file prior to generating the audio signal.
  3. 3
    A wearable wireless audio device as in Claim 1, further comprising a first speaker supported by the support, directed toward at least one of the wearer's ears, and configured to convert the audio signal into sound.
  4. 4
    A wearable wireless audio device as in Claim 3, wherein the speaker comprises a speaker face, and wherein the speaker is configured to rotate from a first position in which the speaker face is substantially parallel to a yz-plane to a second position in which the speaker is substantially parallel to an xz-plane.
  5. 5
    A wearable wireless audio device as in Claim 3, wherein the speaker comprises a speaker face, and wherein the speaker is configured to rotate from a first position in which the speaker face is substantially parallel to a yz-plane to a second position in which the speaker inclined at an angle with respect to the yz-plane.
  6. 6
    A wearable wireless audio device as in Claim 5, wherein the angle is between about 30° and about 90°.
  7. 7
    A wearable wireless audio device as in Claim 3, wherein the speaker comprises a speaker face, and wherein the speaker is configured to rotate along an arcuate path about an axis substantially parallel to an x-axis from a first position in which the speaker face is substantially parallel to a yz-plane to a second position in which the speaker remains substantially parallel to the yz-plane, and wherein the speaker is configured to move an adjustment distance in a direction substantially parallel to a z-axis as a result of said rotation.
  8. 8
    A wearable wireless audio device as in Claim 7, wherein the adjustment distance is about 3 cm.
  9. 9
    A wearable wireless audio device as in Claim 3, wherein the speaker comprises a speaker face, wherein the speaker is coupled to the support with a speaker pivot, and wherein the speaker is configured to rotate about the speaker pivot while maintaining the speaker face substantially parallel to a yz-plane.
  10. 10
    A wearable wireless audio device as in Claim 3, wherein the speaker is configured to move along an axis substantially parallel to a z-axis with respect to the support.
  11. 11
    1 1. A wearable wireless audio device as in Claim 1 , wherein the digital audio file is compressed.
  12. 12
    A wearable wireless audio device as in Claim 11 , wherein the digital audio file is an MP3 formatted file.
  13. 13
    A wearable wireless audio device as in Claim 1, wherein the support further comprises a channel and a conductor, wherein the channel extends along at least a portion of the ear stem, and wherein the conductor is located at least partially within the channel.
  14. 14
    A wearable wireless audio device as in Claim 1, further comprising a second ear stem, wherein the electronics circuit comprises a memory circuit and a processor, and wherein the memory circuit is carried by the first ear stem, and the memory circuit is carried by the second ear stem.
  15. 15
    A wearable wireless audio device as in Claim 1, further comprising a second ear stem, wherein the electronics circuit comprises a battery and a processor, and wherein the battery is carried by the first ear stem, and the memory circuit is carried by the second ear stem.
  16. 16
    A wearable wireless audio device as in Claim 1, further comprising a second ear stem, wherein the electronics components are distributed between the first and second ear stems.
  17. 17
    A wearable wireless audio device as in Claim 1, further comprising a nose bridge, wherein digital signals generated by the electronics circuit are transmitted across the nose bridge.
  18. 18
    A wearable wireless audio device as in Claim 1, further comprising a data port, wherein the data port is earned by the ear stem.
  19. 19
    A wearable wireless audio device as in Claim IS, wherein the data port is selected from the group comprising:a mini-USB connector, a FIREWIRE connector, an IEEE 1394 cable connector, an RS232 connector, a JTAB connector, an antenna, a wireless receiver, a radio, an RF receiver, and a BLUETOOTH receiver.
  20. 20
    A wearable wireless audio device as in Claim 1, wherein said wearable wireless audio device is removably connectable to a computing device.
  21. 21
    The wearable wireless audio device of Claim 20, wherein said wearable wireless audio device is removably connectable to a computing device with a data port, wherein said data port is mounted to said wearable wireless audio device.
  22. 22
    The wearable wireless audio device of Claim 21, wherein said data port is selected from the group consisting of:a mini-USB connector, a USB connector, a FIREWIRE connector, an IEEE 1394 cable connector, an RS232 connector, a JTAB connector, an antenna, a wireless receiver, a radio, an RF receiver, and a BLUETOOTH receiver.
  23. 23
    The wearable wireless audio device of Claim 21, further comprising a protective door, wherein said protective door protects said data port from a contaminant when said wearable wireless audio device is disconnected from said computing device.
  24. 24
    A wearable wireless audio device as in Claim 1, wherein the electronics circuit is further configured to decompress the audio file.
  25. 25
    A wearable wireless audio device as in Claim 1, wherein the electronics circuit is configured to receive at least one digital audio file at a data transfer rate.
  26. 26
    The wearable wireless audio device of Claim 25, wherein said data transfer rate is selected from the group consisting of:about 1.5 Mbps, about 12 Mbps, about 100 Mbps, about 200 Mbps, about 400Mbps, about 480 Mbps, greater than about 100 Mbps, greater than about 200 Mbps, greater than about 400 Mbps, greater than about 1000 Mbps, less than about 100 Mbps, and less than about 50 Mbps.
  27. 27
    The wearable wireless audio device of Claim 1, wherein the at least one digital audio file has been encoded at a data encoding rate.
  28. 28
    The wearable wireless audio device of Claim 27, wherein said data encoding rate is selected from the group consisting of:128 kbps, 160 kbps, 192 kbps, 256 kbps, less than about 128 kbps, less than about 160 kbps, less than about 192 kbps, less than about 256 kbps, and more than about 256 kbps.
  29. 29
    The wearable wireless audio device of Claim 1 , wherein the at least one digital audio file is compressed according to a compression format.
  30. 30
    The wearable wireless audio device of Claim 29, wherein said compression format is selected from the group consisting of:PCM, DPCM, ADPCM, AAC, RAW, DM, RIFF, WAV, BWF, AIFF, AU, SND, CDA, MPEG, MPEG-I, MPEG- 2, MPEG-2.5, MPEG-4, MPEG-J, MPEG 2-ACC, MP3, MP3Pro, ACE, MACE, MACE- 3, MACE-6, AC-3, ATRAC, ATRAC3, EPAC, Twin VQ, VQF, WMA, WMA with DRM, DTS, DVD Audio, SACD, TAC, SHN, OGG, Ogg Vorbis, Ogg Tarkin, Ogg Theora, ASF, LQT, QDMC, A2b, .ra, .rm, and Real Audio G2, RMX formats, Fairplay, Quicktime, SWF, and PCA.
  31. 31
    A wearable wireless audio device, comprising:a support comprising a first ear stem and an orbital, the support configured to support at least one lens in a wearer's field of view;an electronics circuit supported by the support and configured to receive at least one digital audio file and generate an audio signal indicative of the at least one digital audio file;and a first speaker supported by the support, directed toward at least one of the wearer's ears, and configured to convert the audio signal into sound, wherein the speaker comprises a speaker face, and wherein the speaker is configured to rotate from a first position in which the speaker face is substantially parallel to a yz- plane to a second position in which the speaker is inclined at an angle with respect to the yz-plane, wherein the speaker is coupled to the support with a speaker pivot, and wherein the speaker is configured to rotate about the speaker pivot while maintaining the speaker face substantially parallel to a yz-plane, and wherein the speaker is configured to move along an axis substantially parallel to a z-axis with respect to the support.
  32. 32
    A wearable wireless audio device as in Claim 31, wherein the electronics circuit is further configured to process the digital audio file prior to generating the audio signal.
  33. 33
    A wearable wireless audio device as in Claim 31, wherein the speaker is configured to rotate from a first position in which the speaker face is substantially parallel to the yz-plane to a second position in which the speaker is substantially parallel to an xz- plane.
  34. 34
    A wearable wireless audio device as in Claim 31, wherein the angle is between about 30° and about 90°.
  35. 35
    A wearable wireless audio device as in Claim 31, wherein the speaker is configured to rotate along an arcuate path about an axis substantially parallel to an x-axis from a first position in which the speaker face is substantially parallel to a yz-plane to a second position in which the speaker remains substantially parallel to the yz-plane, and wherein the speaker is configured to move an adjustment distance in a direction substantially parallel to a z-axis as a result of said rotation.
  36. 36
    A wearable wireless audio device as in Claim 35, wherein the adjustment distance is about 3 cm.
  37. 37
    A wearable wireless audio device as in Claim 31, wherein the digital audio file is compressed.
  38. 38
    A wearable wireless audio device as in Claim 37, wherein the digital audio file is an MP3 formatted file.
  39. 39
    A wearable wireless audio device as in Claim 31, wherein the support further comprises a channel and a conductor, wherein the channel extends along at least a portion of the ear stem, and wherein the conductor is located at least partially within the channel.
  40. 40
    A wearable wireless audio device as in Claim 31, further comprising a second ear stem, wherein the electronics circuit comprises a memory circuit and a processor, and wherein the memoiy circuit is caπied by the first ear stem, and the memory circuit is earned by the second ear stem.
  41. 41
    A wearable wireless audio device as in Claim 31, further comprising a second ear stem, wherein the electronics circuit comprises a battery and a processor, and wherein the battery is carried by the first ear stem, and the memory circuit is carried by the second ear stem.
  42. 42
    A wearable wireless audio device as in Claim 31, further comprising a second ear stem, wherein the electronics components are distributed between the first and second ear stems.
  43. 43
    A wearable wireless audio device as in Claim 31, further comprising a nose bridge, wherein digital signals generated by the electronics circuit are transmitted across the nose bridge.
  44. 44
    A wearable wireless audio device as in Claim 31, further comprising a data port, wherein the data port is carried by the ear stem.
  45. 45
    A wearable wireless audio device as in Claim 44, wherein the data port is selected from the group comprising:a mini-USB connector, a FIREWIRE connector, an IEEE 1394 cable connector, an RS232 connector, a JTAB connector, an antenna, a wireless receiver, a radio, an RF receiver, and a BLUETOOTH receiver.
  46. 46
    A wearable wireless audio device as in Claim 31, wherein said wearable wireless audio device is removably connectable to a computing device.
  47. 47
    The wearable wireless audio device of Claim 46, wherein said wearable wireless audio device is removably connectable to a computing device with a data port, wherein said data port is mounted to said wearable wireless audio device.
  48. 48
    The wearable wireless audio device of Claim 47, wherein said data port is selected from the group consisting of:a mini-USB connector, a USB connector, a FIREWIRE connector, an IEEE 1394 cable connector, an RS232 connector, a JTAB connector, an antenna, a wireless receiver, a radio, an RF receiver, and a BLUETOOTH receiver.
  49. 49
    The wearable wireless audio device of Claim 47, further comprising a protective door, wherein said protective door protects said data port from a contaminant when said wearable wireless audio device is disconnected from said computing device.
  50. 50
    A wearable wireless audio device as in Claim 31, wherein the electronics circuit is further configured to decompress the audio file.
  51. 51
    A wearable wireless audio device as in Claim 31, wherein the electronics circuit is configured to receive at least one digital audio file at a data transfer rate.
  52. 52
    The wearable wireless audio device of Claim 51 , wherein said data transfer rate is selected from the group consisting of:about 1.5 Mbps, about 12 Mbps, about 100 Mbps, about 200 Mbps, about 400Mbps, about 480 Mbps, greater than about 100 Mbps, greater than about 200 Mbps, greater than about 400 Mbps, greater than about 1000 Mbps, less than about 100 Mbps, and less than about 50 Mbps.
  53. 53
    The wearable wireless audio device of Claim 31, wherein the at least one digital audio file has been encoded at a data encoding rate.
  54. 54
    The wearable wireless audio device of Claim 53, wherein said data encoding rate is selected from the group consisting of:128 kbps, 160 kbps, 192 kbps, 256 kbps, less than about 128 kbps, less than about 160 kbps, less than about 192 kbps, less than about 256 kbps, and more than about 256 kbps.
  55. 55
    The wearable wireless audio device of Claim 31, wherein the at least one digital audio file is compressed according to a compression format.
  56. 56
    The wearable wireless audio device of Claim 55, wherein said compression format is selected from the group consisting of:PCM, DPCM, ADPCM, AAC, RAW, DM, RIFF, WAV, BWF, AIFF, AU, SND 5 CDA, MPEG, MPEG-I, MPEG- 2, MPEG-2.5, MPEG-4, MPEG-J, MPEG 2-ACC, MP3, MP3Pro, ACE, MACE, MACE- 3, MACE-6, AC-3, ATRAC, ATRAC3, EPAC, Twin VQ, VQF, WMA, WMA with DRM, DTS, DVD Audio, SACD, TAC, SHN, OGG, Ogg Vorbis, Ogg Tarkin, Ogg Theora, ASF, LQT, QDMC, A2b, .ra, .rm, and Real Audio G2, RMX formats, Fairplay, Quicktime, SWF, and PCA.
  57. 57
    A method of processing audio with a wearable wireless audio device, comprising:supporting at least one lens in a wearer's field of view with a first ear stem and an orbital;receiving at least one digital audio file within the first ear stem or the orbital;generating an audio signal indicative of the at least one digital audio file within the first ear stem or the orbital;supporting a first speaker with the first ear stem;and directing said first speaker toward at least one of the wearer's ears, wherein the speaker comprises a speaker face, and wherein the speaker is configured to rotate from a first position in which the speaker face is substantially parallel to a yz-plane to a second position in which the speaker is inclined at an angle with respect to the yz-plane, wherein the speaker is coupled to the support with a speaker pivot, and wherein the speaker is configured to rotate about the speaker pivot while maintaining the speaker face substantially parallel to a yz-plane, and wherein the speaker is configured to move along an axis substantially parallel to a z-axis with respect to the support.
  58. 58
    A method of processing audio data with a wearable wireless audio device as in Claim 57, further comprising processing the digital audio file prior to generating the audio signal.
  59. 59
    A method of processing audio data with a wearable wireless audio device as in Claim 57, wherein the speaker is configured to rotate from a first position in which the speaker face is substantially parallel to the yz-plane to a second position in which the speaker is substantially parallel to an xz-plane.
  60. 60
    A method of processing audio data with a wearable wireless audio device as in Claim 57, wherein the angle is between about 30° and about 90°.
  61. 61
    A method of processing audio data with a wearable wireless audio device as in Claim 57, wherein the speaker is configured to rotate along an arcuate path about an axis substantially parallel to an x-axis from a first position in which the speaker face is substantially parallel to a yz-plane to a second position in which the speaker remains substantially parallel to the yz-plane, and wherein the speaker is configured to move an adjustment distance in a direction substantially parallel to a z-axis as a result of said rotation.
  62. 62
    A method of processing audio data with a wearable wireless audio device as in Claim 61, wherein the adjustment distance is about 3 cm.
  63. 63
    A method of processing audio data with a wearable wireless audio device as in Claim 57, wherein the digital audio file is compressed.
  64. 64
    A method of processing audio data with a wearable wireless audio device as in Claim 63, wherein the digital audio file is an MP3 formatted file.
  65. 65
    A method of processing audio data with a wearable wireless audio device as in Claim 57, further comprising providing a channel and a conductor, wherein the channel extends along at least a portion of the ear stem, and wherein the conductor is located at least partially within the channel.
  66. 66
    A method of processing audio data with a wearable wireless audio device as in Claim 57, further comprising providing a second ear stem, wherein the electronics circuit comprises a memory circuit and a processor, and wherein the memory circuit is carried by the first ear stem, and the memory circuit is carried by the second ear stem.
  67. 67
    A method of processing audio data with a wearable wireless audio device as in Claim 57, further comprising providing a second ear stem, wherein the electronics circuit comprises a battery and a processor, and wherein the battery is earned by the first ear stem, and the memory circuit is carried by the second ear stem.
  68. 68
    A method of processing audio data with a wearable wireless audio device as in Claim 57, further comprising providing a second ear stem, wherein the electronics components are distributed between the first and second ear stems.
  69. 69
    A method of processing audio data with a wearable wireless audio device as in Claim 57, further comprising providing a nose bridge, wherein digital signals generated by the electronics circuit are transmitted across the nose bridge.
  70. 70
    A method of processing audio data with a wearable wireless audio device as in Claim 57, further comprising providing a data port, wherein the data port is carried by the ear stem.
  71. 71
    A method of processing audio data with a wearable wireless audio device as in Claim 70, wherein the data port is selected from the group comprising:a mini-USB connector, a FIREWIRE connector, an IEEE 1394 cable connector, an RS232 connector, a JTAB connector, an antenna, a wireless receiver, a radio, an RF receiver, and a BLUETOOTH receiver.
  72. 72
    A method of processing audio data with a wearable wireless audio device as in Claim 57, wherein said wearable wireless audio device is removably connectable to a computing device.
  73. 73
    A method of processing audio data with a wearable wireless audio device as in Claim 57, wherein said wearable wireless audio device is removably connectable to a computing device with a data port, wherein said data port is mounted to said wearable wireless audio device.
  74. 74
    A method of processing audio data with a wearable wireless audio device as in Claim 57, wherein said data port is selected from the group consisting of:a mini- USB connector, a USB connector, a FIREWIRE connector, an IEEE 1394 cable connector, an RS232 connector, a JTAB connector, an antenna, a wireless receiver, a radio, an RF receiver, and a BLUETOOTH receiver.
  75. 75
    A method of processing audio data with a wearable wireless audio device as in Claim 74, further comprising providing a protective door, wherein said protective door protects said data port from a contaminant when said wearable wireless audio device is disconnected from said computing device.
  76. 76
    A method of processing audio data with a wearable wireless audio device as in Claim 57, further comprising decompressing the audio file.
  77. 77
    A method of processing audio data with a wearable wireless audio device as in Claim 57, wherein the receiving is performed at a data transfer rate.
  78. 78
    A method of processing audio data with a wearable wireless audio device as in Claim 77, wherein said data transfer rate is selected from the group consisting of:about 1.5 Mbps, about 12 Mbps, about 100 Mbps, about 200 Mbps, about 400Mbps, about 480 Mbps, greater than about 100 Mbps, greater than about 200 Mbps, greater than about 400 Mbps, greater than about 1000 Mbps, less than about 100 Mbps, and less than about 50 Mbps.
  79. 79
    A method of processing audio data with a wearable wireless audio device as in Claim 57, wherein the at least one digital audio file has been encoded at a data encoding rate.
  80. 80
    A method of processing audio data with a wearable wireless audio device as in Claim 79, wherein said data encoding rate is selected from the group consisting of:128 kbps, 160 kbps, 192 kbps, 256 kbps, less than about 128 kbps, less than about 160 kbps, less than about 192 kbps, less than about 256 kbps, and more than about 256 kbps.
  81. 81
    A method of processing audio data with a wearable wireless audio device as in Claim 57, wherein the at least one digital audio file is compressed according to a compression format.
  82. 82
    A method of processing audio data with a wearable wireless audio device as in Claim 81 , wherein said compression format is selected from the group consisting of:PCM, DPCM, ADPCM, AAC, RAW, DM, RIFF, WAV, BWF, AIFF, AU, SND, CDA, MPEG, MPEG-I, MPEG-2, MPEG-2.5, MPEG-4, MPEG-J, MPEG 2-ACC, MP3, MP3Pro, ACE, MACE, MACE-3, MACE-6, AC-3, ATRAC, ATRAC3, EPAC, Twin VQ, VQF, WMA, WMA with DRM, DTS, DVD Audio, SACD, TAC, SHN, OGG, Ogg Vorbis, Ogg Tarkin, Ogg Theora, ASF, LQT, QDMC, A2b, .ra, .rm, and Real Audio G2, RMX formats, Fairplay, Quicktime, SWF, and PCA.
  83. 83
    A method of processing audio with a wearable wireless audio device, the method comprising:supporting at least one lens in a wearer's field of view with a first ear stem and an orbital;providing a support arm, the support arm comprising a first end, a second end, a first moveable joint coupled to the first end and the first ear stem, and a second moveable joint coupled to the second end, wherein the first moveable joint provides rotation about a first rotation axis and the second moveable joint provides rotation about a second rotation axis, wherein said first rotation axis and said second rotation axis are substantially perpendicular to one another;and receiving at least one digital audio file within the first ear stem or the orbital;and generating an audio signal indicative of the at least one digital audio file within the first ear stem or the orbital.
  84. 84
    A method of processing audio with a wearable wireless audio device as in Claim 83, further comprising processing the digital audio file prior to generating the audio signal.
  85. 85
    A method of processing audio with a wearable wireless audio device as in Claim 83, further comprising supporting a first speaker with the support, wherein the first speaker is configured to be directed toward at least one of the wearer's ears, and wherein the first speaker is configured to convert the audio signal into sound.
  86. 86
    A method of processing audio with a wearable wireless audio device as in Claim 85, wherein the speaker comprises a speaker face, and wherein the speaker is configured to rotate from a first position in which the speaker face is substantially parallel to a yz-plane to a second position in which the speaker is substantially parallel to an xz- plane.
  87. 87
    A method of processing audio with a wearable wireless audio device as in Claim 85, wherein the speaker comprises a speaker face, and wherein the speaker is configured to rotate from a first position in which the speaker face is substantially parallel to a yz-plane to a second position in which the speaker inclined at an angle with respect to the yz-plane.
  88. 88
    A method of processing audio with a wearable wireless audio device as in Claim 87, wherein the angle is between about 30° and about 90°.
  89. 89
    A method of processing audio with a wearable wireless audio device as in Claim 85, wherein the speaker comprises a speaker face, and wherein the speaker is configured to rotate along an arcuate path about an axis substantially parallel to an x-axis from a first position in which the speaker face is substantially parallel to a yz-plane to a second position in which the speaker remains substantially parallel to the yz-plane, and wherein the speaker is configured to move an adjustment distance in a direction substantially parallel to a z-axis as a result of said rotation.
  90. 90
    A method of processing audio with a wearable wireless audio device as in Claim 89, wherein the adjustment distance is about 3 cm.
  91. 91
    A method of processing audio with a wearable wireless audio device as in Claim 85, wherein the speaker comprises a speaker face, wherein the speaker is coupled to the support with a speaker pivot, and wherein the speaker is configured to rotate about the speaker pivot while maintaining the speaker face substantially parallel to a yz-plane.
  92. 92
    A method of processing audio with a wearable wireless audio device as in Claim 85, wherein the speaker is configured to move along an axis substantially parallel to a z-axis with respect to the support.
  93. 93
    A method of processing audio with a wearable wireless audio device as in Claim 83, wherein the digital audio file is compressed.
  94. 94
    A method of processing audio with a wearable wireless audio device as in Claim 93, wherein the digital audio file is an MP3 foπnatted file.
  95. 95
    A method of processing audio with a wearable wireless audio device as in Claim 83, further comprising providing a channel and a conductor, wherein the channel extends along at least a portion of the ear stem, and wherein the conductor is located at least partially within the channel.
  96. 96
    A method of processing audio with a wearable wireless audio device as in Claim 83, further comprising providing a second ear stem, wherein the electronics circuit comprises a memory circuit and a processor, and wherein the memory circuit is carried by the first ear stem, and the memory circuit is carried by the second ear stem.
  97. 97
    A method of processing audio with a wearable wireless audio device as in Claim 83, further comprising providing a second ear stem, wherein the electronics circuit comprises a battery and a processor, and wherein the battery is carried by the first ear stem, and the memory circuit is carried by the second ear stem.
  98. 98
    A method of processing audio with a wearable wireless audio device as in Claim 83, further comprising providing a second ear stem, wherein the electronics components are distributed between the first and second ear stems.
  99. 99
    A method of processing audio with a wearable wireless audio device as in Claim 83, further comprising providing a nose bridge, wherein digital signals generated by the electronics circuit are transmitted across the nose bridge.
  100. 100
    A method of processing audio with a wearable wireless audio device as in Claim 83, further comprising providing a data port, wherein the data port is carried by the ear stem.
  101. 101
    A method of processing audio with a wearable wireless audio device as in Claim 100, wherein the data port is selected from the group comprising:a mini-USB connector, a FIREWIRE connector, an IEEE 1394 cable connector, an RS232 connector, a JTAB connector, an antenna, a wireless receiver, a radio, an RF receiver, and a BLUETOOTH receiver.
  102. 102
    A method of processing audio data with a wearable wireless audio device as in Claim 83, wherein said wearable wireless audio device is removably connectable to a computing device.
  103. 103
    A method of processing audio data with a wearable wireless audio device as in Claim 102, wherein said wearable wireless audio device is removably connectable to a computing device with a data port, wherein said data port is mounted to said wearable wireless audio device.
  104. 104
    A method of processing audio data with a wearable wireless audio device as in Claim 103, wherein said data port is selected from the group consisting of:a mini- USB connector, a USB connector, a FIREWIRE connector, an IEEE 1394 cable connector, an RS232 connector, a JTAB connector, an antenna, a wireless receiver, a radio, an RF receiver, and a BLUETOOTH receiver.
  105. 105
    A method of processing audio data with a wearable wireless audio device as in Claim 103, further comprising a protective door, wherein said protective door protects said data port from a contaminant when said wearable wireless audio device is disconnected from said computing device.
  106. 106
    A method of processing audio data with a wearable wireless audio device as in Claim 83, further comprising decompressing the audio file.
  107. 107
    A method of processing audio data with a wearable wireless audio device as in Claim 83, wherein the receiving is performed at a data transfer rate.
  108. 108
    A method of processing audio data with a wearable wireless audio device as in Claim 107, wherein said data transfer rate is selected from the group consisting of:about 1.5 Mbps, about 12 Mbps, about 100 Mbps, about 200 Mbps, about 400Mbps, about 480 Mbps, greater than about 100 Mbps, greater than about 200 Mbps, greater than about 400 Mbps, greater than about 1000 Mbps, less than about 100 Mbps, and less than about 50 Mbps.
  109. 109
    A method of processing audio data with a wearable wireless audio device as in Claim 83, wherein the at least one digital audio file has been encoded at a data encoding rate.
  110. 110
    1 10. A method of processing audio data with a wearable wireless audio device as in Claim 109, wherein said data encoding rate is selected from the group consisting of:128 kbps, 160 kbps, 192 kbps, 256 kbps, less than about 128 kbps, less than about 160 kbps, less than about 192 kbps, less than about 256 kbps, and more than about 256 kbps.
  111. 111
    1 1 1. A method of processing audio data with a wearable wireless audio device as in Claim 83, wherein the at least one digital audio file is compressed according to a compression format.
  112. 112
    A method of processing audio data with a wearable wireless audio device as in Claim 1 11, wherein said compression format is selected from the group consisting of:PCM, DPCM, ADPCM, AAC, RAW, DM, RIFF, WAV, BWF, AIFF, AU, SND, CDA 5 MPEG, MPEG-I, MPEG-2, MPEG-2.5, MPEG-4, MPEG-J, MPEG 2-ACC, MP3, MP3Pro, ACE, MACE, MACE-3, MACE-6, AC-3, ATRAC, ATRAC3, EPAC, Twin VQ, VQF, WMA, WMA with DRM, DTS, DVD Audio, SACD, TAC, SHN, OGG, Ogg Vorbis, Ogg Tarkin, Ogg Theora, ASF, LQT, QDMC, A2b, .ra, .rm, and Real Audio G2, RMX formats, Fairplay, Quicktime, SWF, and PCA.
  113. 113
    A wearable wireless audio device, comprising:means for supporting at least one lens in a wearer's field of view with a first ear stem and an orbital;means for providing a support arm, the support arm comprising a first end, a second end, a first moveable joint coupled to the first end and the first ear stem, and a second moveable joint coupled to the second end, wherein the first moveable joint provides rotation about a first rotation axis and the second moveable joint provides rotation about a second rotation axis, wherein said first rotation axis and said second rotation axis are substantially perpendicular to one another;and means for receiving at least one digital audio file within the first ear stem or the orbital;and means for generating an audio signal indicative of the at least one digital audio file within the first ear stem or the orbital.
  114. 114
    1 14. A wearable wireless audio device as in Claim 1 13, wherein said wearable wireless audio device is removably connectable to a computing device.
  115. 115
    1 15. A wearable wireless audio device as in Claim 1 13, further comprising means for decompressing the audio file.
  116. 116
    A wearable wireless audio device as in Claim 113, wherein the means for receiving at least one digital audio file is configured to receive the at least one digital audio file at a data transfer rate.
  117. 117
    1 17. A wearable wireless audio device as in Claim 1 13, wherein the at least one digital audio file has been encoded at a data encoding rate.
  118. 118
    A wearable wireless audio device as in Claim 113, wherein the at least one digital audio file is compressed according to a compression format.
  119. 119
    1 19. A speaker support system, comprising:a support frame, adapted to be earned by a head of a wearer;at least one speaker earned by the support frame, the speaker having a sound propagation axis and a transverse axis, wherein the transverse axis is substantially perpendicular to the sound propagation axis and lies substantially within a speaker plane of the at least one speaker;wherein the support frame holds the at least one speaker substantially adjacent an ear of the wearer such that the transverse axis is inclined at an orientation angle with respect to a tragus-tragus line, wherein the orientation angle is within the range of from about 15 degrees to about 85 degrees.
  120. 120
    The speaker support system of Claim 119, wherein the orientation angle is about 25 degrees.
  121. 121
    A wearable electronically enabled interface system for providing audio and or video input to the wearer from at least two sources, comprising:a λvearable support, for carrying at least a portion of the interface;at least one data port carried by the support, for receiving data from at least a first and a second source;and a selector, enabling the wearer to direct data from a desired one of the first and second sources to the interface.
  122. 122
    A wearable electronically enabled interface system as in Claim 121, wherein the wearable support comprises an eyeglass frame.
  123. 123
    A wearable electronically enabled interface system as in Claim 121 , wherein the data port comprises a radio frequency receiver.
  124. 124
    A wearable electronically enabled interface system as in Claim 121, wherein the interface comprises at least one speaker.
  125. 125
    A wearable electronically enabled interface system as in Claim 121, wherein the interface comprises two speakers.
  126. 126
    A wearable electronically enabled interface system as in Claim 121 , wherein the interface comprises at least one microphone.
  127. 127
    A wearable electronically enabled interface system as in Claim 121 , wherein the interface comprises a video display. 12S. A wearable electronically enabled interface system as in Claim 121, wherein the selector comprises a wearer actuatable control.
  128. 128
    129. A wearable electronically enabled interface system as in Claim 121, further comprising a second data port.
  129. 129
    130. A wearable cell phone and music system, comprising:a wearable support;a cell phone in communication with the support;a music source in communication with the support;an electronic interface earned by the support;and a selector for regulating the transmission of data from at least one of the cell phone and the music source to the interface.
  130. 130
    131. A wearable cell phone and music system as in Claim 130, further comprising radio frequency electronics for wireless communication between the cell phone and the support.
  131. 131
    132. A wearable cell phone and music system as in Claim 131, further comprising radio frequency electronics for wireless communication between the music source and the support.
  132. 132
    133. A wearable cell phone and music system as in Claim 131, wherein the music source is carried by the support.
  133. 133
    134. A wearable cell phone and music system as in Claim 133, wherein the music source comprises an MP3 player.
  134. 134
    135. A wearable cell phone and music system as in Claim 121, wherein the music source comprises an MP3 player.
  135. 135
    136. A method of managing multiple signal sources configured to provide signals to a single wearable interface, comprising the steps of:enabling data from a first source to reach a wearer through the interface;providing the wearer with a signal indicative of data available from the second source;and enabling data from the second source to reach the wearer through the interface in response to activation of a control by the wearer.
  136. 136
    137. A method of managing multiple signal sources as in Claim 136, wherein the first source comprises a source of music.
  137. 137
    138. A method of managing multiple signal sources as in Claim 137, wherein the second source comprises a telephone.
  138. 138
    139. A method of managing multiple signal sources as in Claim 136, wherein data from the first source is no longer provided to the interface in response to activation of the control.
  139. 139
    140. A method of managing multiple signal sources as in Claim 139, wherein transmission of data from the first source to the interface is resumed in response to interruption of transmission of data from the second source to the interface.
Independent claims139