Claims
- 1. An optical communication terminal, comprising:
- a first electro-optical transmitter, transmitting an optical signal at a first optical wavelength,
- a second electro-optical transmitter, transmitting an optical signal at a second optical wavelength,
- an electro-optical receiver, receiving at both of said first and second optical wavelengths,
- a single fiber cable,
- a first coupler, coupled to said receiver and to said single fiber cable, and including
- first and second filter means, and
- means, connected to said first and second filter means, for switchably inserting one of said filter means in an optical path between said receiver and said single fiber cable,
- a second coupler, coupled to each of said transmitters, for coupling optical signals from said transmitters to said first coupler, and
- control means, coupled to said first coupler, for controlling said first coupler,
- wherein said first coupler couples a selected one of said transmitted optical signals of said first and second wavelengths to said single fiber cable for transmission thereover, while coupling optical signals of the other of said first and second wavelengths received after transmission to said terminal over said single fiber cable to said receiver, and wherein selection of optical signal wavelength for transmission and reception is controlled by said control means.
- 2. An optical communication terminal according to claim 1, wherein said first coupler further comprises:
- a first graded index rod lens, coupled to said single fiber cable and said second coupler at one end and to said inserting means at its other end, and
- a second graded index rod lens, coupled to said receiver at one end and to said inserting means at its other end.
- 3. An optical communication terminal according to claim 1, wherein each of said filter means comprises a dichroic filter.
- 4. An optical communication terminal according to claim 1, wherein each of said electro-optical transmitters comprises a light emitting diode.
- 5. An optical communication terminal according to claim 1, wherein said control means comprises a microprocessor.
- 6. An optical communication terminal according to claim 1, wherein said electro-optical receiver comprises a PIN-FET hybrid detector.
- 7. An optical communication terminal according to claim 6, wherein said electro-optical receiver further comprises:
- a video amplifier, coupled to the output of said hybrid detector, and
- an output stage, coupled to said video amplifier, to provide a received output traffic signal.
Government Interests
The Government has rights in this invention pursuant to Contract No. F30602-84-C-0010 awarded by the Air Force Systems Command, Rome Air Development Center.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
4551829 |
Dragoo et al. |
Nov 1983 |
|
Foreign Referenced Citations (2)
Number |
Date |
Country |
55-120241 |
Sep 1980 |
JPX |
2011611 |
Jul 1979 |
GBX |
Non-Patent Literature Citations (1)
Entry |
Owen-"Pin-GaAs FET Optical Receiver"-Electronics Letters-Jul. 8, 1982, vol. 18, #14, pp. 626-627. |