Claims
- 1. An audio device, comprising:
an audio interface circuit generating an output signal that includes both a transmit signal and a receive signal; and a digital circuit for isolating the transmit signal from the receive signal.
- 2. An audio device according to claim 1 wherein the audio interface circuit includes a transducer that converts the receive signal into an audio output signal and also converts an audio input signal into the transmit signal.
- 3. An audio device according to claim 2 wherein the audio interface circuit feeds the receive signal into the transducer and outputs a combined receive signal and transmit signal to the digital circuit.
- 4. An audio device according to claim 1 including analog to digital converters for converting analog transmit signals and receive signals into digital transmit and digital receive signals.
- 5. An audio device according to claim 2 wherein the digital circuit combines the digital receive signal with a combined digital receive and digital transmit signal.
- 6. An audio device according to claim 1 wherein the digital circuit is a digital signal processor that controls how the receive signal and the transmit signal are separated according to a software program.
- 7. An audio device according to claim 1 wherein the digital circuit receives a digital receive signal, shifts phase of the digital receive signal, and sums the phase shifted receive signal with a combined digital transmit and digital receive signal.
- 8. An audio device according to claim 1 wherein the receive signal contains digital transmit signal components, the digital circuit adjusting a phase of the isolated transmit signal and summing the phase adjusted transmit signal with the receive signal containing the digital transmit signal components.
- 9. An audio device according to claim 1 wherein the audio interface circuit includes:
a transducer; a first amplifier having a first input coupled to a first terminal of the transducer, a second input coupled to the receive signal, and an output coupled to the digital circuit; and a second amplifier having a first input coupled to ground, a second input coupled to the receive signal and an output coupled to the digital circuit.
- 10. A full-duplex audio headset, comprising:
a hybrid analog and digital circuit that converts input audio signals into analog transmit signals and converts analog receive signals into output audio signals, the hybrid circuit converting both the analog transmit signals and the analog receive signals into digital signals and processing the digital signals to isolate the transmit signals from the receive signals.
- 11. The full-duplex audio headset according to claim 10 including an earpiece that contains the hybrid analog and digital circuit.
- 12. The full-duplex audio headset according to claim 10 wherein the hybrid analog and digital circuit includes a single transducer that converts the input audio signals into the analog transmit signals and converts the analog receive signals into the output audio signals.
- 13. The full-duplex audio headset according to claim 12 wherein the hybrid analog and digital circuit includes a digital signal processor.
- 14. The full-duplex audio headset according to claim 10 including an analog amplifier circuit including a first amplifier that outputs a combined analog transmit and receive signal and a second amplifier that outputs an analog receive signal.
- 15. The full-duplex audio headset according to claim 14 including a digital circuit that converts the combined analog transmit and receive signal and the analog receive signal both into digital signals and combines the digital signals to reduce the receive signal in the combined transmit and receive signal.
- 16. The full-duplex audio headset according to claim 15 wherein the digital circuit adjusts phase of the digital receive signal and applies the phase adjusted receive signal to the combined digital transmit and receive signal.
- 17. A method for providing full-duplex communications in a earpiece, comprising:
converting audio inputs into an analog transmit signal in the earpiece; converting analog receive signals into an audio output in the earpiece; converting the analog transmit signal into a digital transmit signal and converting the analog receive signal into a digital receive signal in the earpiece; and processing the digital transmit signal and digital receive signal in the earpiece.
- 18. A method according to claim 17 including locating a digital signal processor in the earpiece to process the digital transmit signal and digital receive signal.
- 19. A method according to claim 17 including using a same transducer to convert the audio inputs into the analog transmit signal and convert the analog receive signals into the audio output.
- 20. A method according to claim 17 including phase compensating the digital receive signal and applying the phase compensated receive signal to a combined digital receive and digital transmit signal.
- 21. A method according to claim 17 including locating a digital circuit in the earpiece that reduces the receive signal in a combined digital receive and transmit signal.
- 22. An audio device, comprising:
a full-duplex transmit and receive circuit; and first and second transducers coupled in opposite polarities to the transmit and receive circuit.
- 23. An audio device according to claim 22 wherein the full-duplex transmit and receive circuit outputs a first receive and transmit signal out of phase with a second receive and transmit signal.
- 24. An audio device according to claim 23 wherein the full-duplex transmit and receive circuit combines the first and second receive and transmit signal.
- 25. An audio device according to claim 24 wherein the full-duplex transmit and receive circuit substantially cancels the receive signal in the combined first and second receive and transmit signals and increases the transmit signal in the combined first and second receive and transmit signals.
- 26. An audio device according to claim 22 including a first earpiece containing the first transducer and a second earpiece containing the second transducer.
- 27. An audio device according to claim 22 wherein the full-duplex transmit and receive circuit includes a level control circuit maintaining a receive signal at a substantially constant level.
- 28. An audio device according to claim 27 wherein the level control circuit includes:
an op-amp including an input that monitors a voltage level of the receive signal; a transistor circuit activated by the op-amp when the receive voltage rises above a preselected value, the transistor circuit when activated pulling down the voltage level to the preselected value.
- 29. An audio device according to claim 27 wherein the level control circuit includes a manually adjustable resistor circuit.
- 30. An audio device according to claim 22 wherein the transmit and receive circuit includes:
a first amplifier having a first input coupled to a positive terminal of the first transducer and an output coupled to a transmit signal output; and a second amplifier having a first input coupled to a negative terminal of the second transducer and an output coupled to the transmit signal output.
- 31. An audio device according to claim 30 including a third amplifier coupled between the outputs of the first and second amplifier and the transmit signal output.
- 32. An audio device according to claim 22 including a switching circuit for switching the full-duplex transmit and receive circuit and the transducers into operating as a one-way speaker device.
- 33. An audio device according to claim 32 wherein the switching circuit switches the first transducer between operating as a speaker and a microphone.
- 34. A method for operating an audio headset, comprising:
configuring transducers in the headset to operate as both microphones and speakers; and configuring the transducers so that transmit signals output by the transducers are substantially out of phase.
- 35. A method according to claim 34 including combining receive signals and transmit signals generated by the transducers so that the combined receive signals have reduced gain and the combined transmit signals have increased gain.
- 36. A method according to claim 34 including automatically adjusting the receive signal to remain at a substantially constant value when fed into the transducers.
Parent Case Info
[0001] This application claims priority from International Application No. PCT/US01/22121, filed Jul. 13, 2001, which claims priority from the following U.S. cases:
[0002] U.S. Ser. No. 09/615,168, filed Jul. 13, 2000;
[0003] U.S. Provisional Application Serial No. 60/223,291, filed Aug. 3, 2000;
[0004] U.S. Provisional Application Serial No. 60/228,129, filed Aug. 25, 2000;
[0005] U.S. Provisional Application Serial No. 60/230,217, filed Sep. 5, 2000;
[0006] U.S. Provisional Application Serial No. 60/265,988, filed Feb. 2, 2001; and
[0007] U.S. Ser. No. 09/878,151, filed Jun. 7, 2001.