IP Library › Patent Application 13920296
Patent Application
App. No. 13/920,296

Portable Electronic Device Directed Audio Targeted User System and Method

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Quick Facts
Patent No.
US None
App. No.
13/920,296
Abstract

A computationally implemented system and method that is designed to, but is not limited to: electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters through one or more modulated acoustic ultrasonic signals; and electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location. In addition to the foregoing, other method aspects are described in the claims, drawings, and text forming a part of the present disclosure.

Claims (129)

1 . A computationally-implemented method comprising:

electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals; and

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location.

2 - 11 . (canceled)

12 . The computationally-implemented method of claim 1 , wherein the electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals comprises:

electronically conditioning one or more information signals the accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals through one or more monitor alarm system portions of said portable electronic device.

13 . (canceled)

14 . The computationally-implemented method of claim 1 , wherein the electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals comprises:

electronically conditioning the one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals including instrumental music.

15 . (canceled)

16 . The computationally-implemented method of claim 1 , wherein the electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals comprises:

the electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals including one or more ultrasonic transducer portions of said portable electronic device.

17 - 23 . (canceled)

24 . The computationally-implemented method of claim 1 , wherein the electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals comprises:

electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters the of said portable electronic device through one or more modulated acoustic ultrasonic signals as one or more electronic personal data assistant (PDA) systems.

25 . (canceled)

26 . The computationally-implemented method of claim 1 , wherein the electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals comprises:

electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters the of said portable electronic device through one or more modulated acoustic ultrasonic signals as one or more electronic security personnel systems.

27 . (canceled)

28 . The computationally-implemented method of claim 1 , wherein the electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals comprises:

electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters the of said portable electronic device through one or more modulated acoustic ultrasonic signals as one or more electronic wearable media systems.

29 . (canceled)

30 . The computationally-implemented method of claim 1 , wherein the electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals comprises:

electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters the of said portable electronic device through one or more modulated acoustic ultrasonic signals as one or more electronic two-way radio systems.

31 . The computationally-implemented method of claim 1 , wherein the electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals comprises:

electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device the to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals as through one or more collections of ultrasonic transducers arranged to output one or more beams of acoustic ultrasonic signals.

32 . (canceled)

33 . The computationally-implemented method of claim 1 , wherein the electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals comprises:

electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device the to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals by phased array steering of one or more acoustic ultrasonic signals.

34 . (canceled)

35 . The computationally-implemented method of claim 1 , wherein the electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals comprises:

electronically conditioning one or more information signals the accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals in accordance with absolute position of said portable electronic device.

36 . (canceled)

37 . The computationally-implemented method of claim 1 , wherein the electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals comprises:

electronically conditioning one or more information signals the accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals in accordance with quality characterization information sensed at said portable electronic device regarding acoustic audio signals down converted at one or more target locations.

38 . (canceled)

39 . The computationally-implemented method of claim 1 , wherein the electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals comprises:

electronically conditioning one or more information signals the accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals in accordance with one or more narrow audio bandwidth microphones sensing one or more reference signals.

40 . (canceled)

41 . (canceled)

42 . The computationally-implemented method of claim 1 , wherein the electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals comprises:

electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device the through one or more modulated acoustic ultrasonic signals including one or more beams of acoustic ultrasonic signals configured to interact non-linearly with air to output desired acoustic audio signals.

43 . (canceled)

44 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing the for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location including steering one or more acoustic ultrasonic signals according to at least in part thermal imaging of one or more target listeners.

45 - 49 . (canceled)

50 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing the for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location including embedding one or more digitally coded acoustic audio signals in one or more acoustic ultrasonic signals.

51 . (canceled)

52 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing the for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location including adjusting acoustic ultrasonic signal amplitude based on visual tracking of one or more target listeners.

53 . (canceled)

54 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing the for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location including adjusting location of greatest intensity of down converted acoustic audio signals based on visual tracking of one or more target listeners.

55 - 61 . (canceled)

62 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams the of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location including one or more ultrasonic signals having frequencies with a range of between 60 to 200 kHz.

63 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams the of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location including vectoring of two or more beams of acoustic ultrasonic signals to down convert to one or more acoustic audio signals.

64 . (canceled)

65 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams the of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location including outputting one or more acoustic ultrasonic signals to produce one or more acoustic audio signals through non-linear human tissue interaction.

66 . (canceled)

67 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device the for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location via one or more arrays of transducers to focus one or more beams of acoustic ultrasonic signals at one or more target locations.

68 . (canceled)

69 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device the for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location via nonlinear atmospheric interaction of one or more acoustic ultrasonic signals.

70 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device the for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location via nonlinear human tissue interaction of one or more acoustic ultrasonic signals.

71 . (canceled)

72 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device the for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location via nonlinear personal ornament interaction of one or more acoustic ultrasonic signals.

73 . (canceled)

74 . (canceled)

75 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals the into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location including one or more acoustic audio signals tailored according to a sensed acoustic environment.

76 . (canceled)

77 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals the into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location including one or more binaural acoustic audio signals.

78 . (canceled)

79 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals the into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location including one or more monophonic acoustic audio signals directed to a location of one ear of a target listener.

80 . (canceled)

81 . (canceled)

82 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals the into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location including one or more acoustic audio signals being emitted at greater than 150 decibels.

83 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals the containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location including audio output information designated to be transmitted to a first location of a first user without being transmitted to a second location of a second user.

84 . (canceled)

85 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals the containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location including audio output information that is psychologically influential.

86 . (canceled)

87 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals the containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location including audio output information containing one or more music selections.

88 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals the at a first location spaced away from said portable electronic device and spaced away from a second location including a first location away from a first listener and a second location toward a second listener.

89 . (canceled)

90 . (canceled)

91 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals the at a first location spaced away from said portable electronic device and spaced away from a second location including a first location near one or more first individuals but not a second location near one or more second individuals.

92 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals the at a first location spaced away from said portable electronic device and spaced away from a second location including a first location near a passive receiver such as an ear ring.

93 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals the at a first location spaced away from said portable electronic device and spaced away from a second location including a first location receiving said one or more acoustic ultrasonic signals from said portable electronic device being affixed to a moving member.

94 . (canceled)

95 . (canceled)

96 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location the spaced away from said portable electronic device and spaced away from a second location including being spaced less than six feet.

97 . (canceled)

98 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location the spaced away from said portable electronic device and spaced away from a second location including being spaced less than three feet.

99 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters the of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location as a tablet portable electronic device.

100 - 103 . (canceled)

104 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters the of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location as a smart phone portable electronic device.

105 . (canceled)

106 . The computationally-implemented method of claim 1 , wherein the electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location comprises:

electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters the of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location as a sports equipment portable electronic device.

107 - 121 . (canceled)

122 . A computationally-implemented system comprising:

means for electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals; and

means for electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location.

123 . (canceled)

124 . A computationally-implemented system comprising:

an electronically conditioning electrical circuitry arrangement operable for electronically conditioning one or more information signals accessed at least in part through one or more portions of a portable electronic device to be transmitted from one or more portable electronic device emitters of said portable electronic device through one or more modulated acoustic ultrasonic signals; and

an electronically governing electrical circuitry arrangement operable for electronically governing for output of one or more beams of said one or more modulated acoustic ultrasonic signals from said one or more portable electronic device emitters of said portable electronic device for demodulation of said one or more modulated acoustic ultrasonic signals into one or more acoustic audio signals containing said one or more information signals at a first location spaced away from said portable electronic device and spaced away from a second location.

125 . (canceled)

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2013
From: BAYM, MICHAEL H.; DUNCAN, WILLIAM DAVID; HYDE, RODERICK A.; JUNG, EDWARD K.Y.; LORD, ROBERT W.; LORD, RICHARD T.; MYHRVOLD, NATHAN P.; WOOD, LOWELL L., JR.
To: ELWHA LLC
Reel/Frame 031280/0175 →