Nova Patents
EP1514367A2

Optical transceiver

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 4 June 2023, 3.3 years ago.

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

57 claims: 9 independent, 48 dependent

  1. 1
    Claims of equivalent WO 03103190 A2 WHAT IS CLAIMED IS:1. An optical fransceiver for detecting an incoming light beam along a light beam axis and for transmitting an outgoing light beam along the light beam axis, the optical transceiver comprising: an optical detector positioned along the light beam axis for receiving the incoming light beam and for detecting a first wavelength and/or range of wavelengths;and an optical transmitter positioned along the light beam axis for transmitting the outgoing light beam, wherein the outgoing light beam includes a second wavelength and/or range of wavelengths.
  2. 18
    An apparatus, comprising:a light transmitting medium;a first transceiver, the first transceiver having an optical transmitter for providing a first light beam having a first wavelength and/or range of wavelengths and an optical detector for detecting a second light beam having a second wavelength and/or range of wavelengths, the first light beam being fransmitted through the light transmitting medium and the second light beam being received through the light transmitting medium;a second transceiver, the second transceiver having an optical transmitter for providing the second light beam to the light transmitting medium and an optical detector for detecting the first wavelength and/or range of wavelengths of the first light beam, the optical transmitter and the optical detector of the second transceiver being located along a common optical axis;and wherein the optical detector of the second transceiver supplies power to the optical fransmitter of the second fransceiver.
  3. 32
    A catheter, comprising:a catheter shaft having a proximal end, a distal end, and a lumen extending at least partially therethrough;an optical fiber extending within the lumen of the catheter shaft, the optical fiber having a proximal end and a distal end;a first transceiver positioned adjacent the proximal end of the optical fiber, the first transceiver having an optical transmitter for providing a first light beam having a first wavelength and/or range of wavelengths and an optical detector for detecting a second wavelength and/or range of wavelengths of a second light beam, the first light beam being transmitted to the proximal end of the optical fiber and the second light beam being received from the proximal end of the optical fiber;a second transceiver positioned adjacent the distal end of the optical fiber, the second transceiver having an optical transmitter for providing the second light beam to distal end of the optical fiber and an optical detector for detecting the first wavelength and/or range of wavelengths of the first light beam received through the optical fiber, the optical fransmitter and the optical detector of the second transceiver being located along a common optical axis;and wherein the optical detector of the second transceiver supplies power to the optical transmitter of the second transceiver.
  4. 37
    A method for providing power to a remote transceiver, wherein the remote transceiver provides an optical signal, the method comprising:providing a first light beam having a first beam intensity through an optical fiber to the remote transceiver, the first light beam having a first wavelength and/or range of wavelengths;transmitting a second light beam from the remote transceiver through the optical fiber, the second light beam having a second beam intensity and a second wavelength and/or range of wavelengths;detecting the first wavelength and/or range of wavelengths of the first beam at the remote transceiver and extracting power therefrom;using at least some of the power from the first beam to transmit the second light beam from the remote transceiver;modulating the second light beam to provide the optical signal in the second light beam.
  5. 38
    A method for providing power to a remote transceiver, wherein the remote transceiver provides an optical signal, the method comprising:providing a first light beam having a first beam intensity through an optical fiber to the remote transceiver, the first light beam having a first wavelength and/or range of wavelengths;transmitting a second light beam from the remote transceiver through the optical fiber, the second light beam having a second beam intensity and a second wavelength and/or range of wavelengths;detecting the first wavelength and/or range of wavelengths of the first beam at the remote transceiver and extracting power therefrom;using at least some of the power from the first beam to transmit the second light beam from the remote transceiver;increasing the first beam intensity of the first light beam until the second beam intensity of the second light beam reaches a predetermined level;and modulating the second light beam to provide the optical signal in the second light beam.
  6. 41
    A sensor for sensing at least one environmental characteristic, comprising:an optical emitter, the optical emitter for producing an output emission, wherein the output emission is dependent on the at least one environmental characteristic;and determining means for determining a measure of the at least one environmental characteristic based on the output emission of the optical emitter.
  7. 48
    A sensor for sensing at least one environmental characteristic, comprising:an optical emitter for providing an output emission;a detector;a filter for receiving the output emission of the optical emitter, and for allowing a portion of the output emission to pass to the detector, wherein the portion of the output emission that is allowed to pass to the detector is dependent on the at least one environmental characteristic;and determining means coupled to the detector for determining a measure of the at least one environmental characteristic based on the portion of the output emission that is allowed to pass to the detector.
  8. 52
    A sensor for sensing at least one environmental characteristic, comprising:an optical emitter for providing an output emission;a detector;a filter for receiving the output emission of the optical emitter, and for providing a return optical signal to the detector, the return optical signal being dependent on the at least one environmental characteristic;and determining means coupled to the detector for determining a measure of the at least one environmental characteristic based on the return optical signal.
  9. 54
    55. An apparatus, comprising:a VCSEL;power storage means;an optical emitter, the optical emitter for providing an optical power signal to the VCSEL during a first period of time, the VCSEL in turn, providing cunent to the power storage means;the power storage means delivering signal to the VCSEL during a subsequent period of time, wherein the VCSEL generates an output emission;and an optical detector for detecting the output emission of the VCSEL.