Claims
- 1. A communication system for providing high speed data services to a subscriber using optical fibers, the communication system comprising:a first optical interface unit (OIU) in a network node element, the first OIU comprising a first electrical-to-optical (E/O) circuit, a first optical-to-electrical (O/E) circuit, a first diplexer device, and a first modem, the first E/O circuit being operative to receive first electrical signals, convert the first electrical signals to first optical signals of a first wavelength, and transmit downstream on an optical fiber the first optical signals, the first O/E circuit being operative to receive second optical signals from the optical fiber, convert the second optical signals to second electrical signals, and to transmit the second electrical signals upstream, the first diplexer device being coupled between the optical fiber and the first E/O circuit and being coupled between the optical fiber and the first O/E circuit, the first modem being coupled between the first O/E circuit and a high speed data source and between the first E/O circuit and the high speed data source for providing a high speed data path in the OIU; a second optical interface unit (OIU) in an optical node device, the second OIU comprising a second E/O circuit, a second O/E circuit, a third O/E circuit, a first triplexer device, and a second modem, the second E/O circuit being operative to receive third electrical signals, convert the third electrical signals to the second optical signals of a second wavelength, and transmit upstream on the optical fiber the second optical signals, the second O/E circuit being operative to receive third optical signals of a third wavelength from the optical fiber, convert the third optical signals to fourth electrical signals, and to transmit the fourth electrical signals downstream to a subscriber, the third O/E circuit being operative to receive the first optical signals from the optical fiber, convert the first optical signals to fifth electrical signals, and to transmit the fifth electrical signals downstream to a subscriber, the first triplexer device being coupled between the optical fiber and the second E/O circuit, the first triplexer device being coupled between the optical fiber and the second O/E circuit, and the first triplexer device also being coupled between the optical fiber and the third O/E circuit, the second modem being coupled between the third O/E circuit and a high speed data subscriber and between the second E/O circuit and the high speed data subscriber for providing a high speed data path in the second OIU; and the optical fiber being used for transporting the first, second, and third optical signals between the network node element and the optical node device.
- 2. The system of claim 1 wherein the first electrical signals comprise downstream POTS signals, downstream high bandwidth data, and downstream subcarrier modulated data.
- 3. The system of claim 2 wherein the second electrical signals comprise upstream POTS signals, upstream high bandwidth data, upstream RF return data, and upstream subcarrier modulated data.
- 4. The system of claim 3 wherein the upstream POTS signals are in a frequency range of about 0-7.5 MHz, the upstream high bandwidth data is in a frequency range of about 70-90 MHz, the upstream RF return data is in a frequency range of about 9-65 MHz, and the downstream subcarrier modulated data is in a frequency range of about 500-870 Mhz.
- 5. The system of claim 2 wherein the downstream POTS signals are in a frequency range of about 0-7.5 MHz, the downstream high bandwidth data is in a frequency range of about 90-110 MHz, and the downstream subcarrier modulated data is in a frequency range of about 500-870 Mhz.
- 6. The system of claim 1 wherein the first electrical signals comprise downstream subcarrier modulated data.
- 7. The system of claim 6 wherein the second electrical signals comprise upstream subcarrier modulated data.
- 8. The system of claim 1 wherein the first electrical signals comprise downstream high bandwidth data.
- 9. The system of claim 8 wherein the second electrical signals comprise upstream high bandwidth data.
- 10. The system of claim 1 wherein the network node comprises a host digital terminal (HDT).
- 11. The system of claim 10 wherein the HDT is located at a central office (CO).
- 12. The system of claim 1 further comprising a multi-diplexer in the first OIU, the multi-diplexer being coupled between the modem, a return path combiner cross-connect (RCX), the first O/E circuit, and the first E/O circuit.
- 13. The system of claim 12 further comprising a diplexer/combiner in the second OIU, the diplexer/combiner being coupled between the second O/E circuit, the third O/E circuit, the second E/O circuit, the second modem, and an RF path to a subscriber.
- 14. The system of claim 1 wherein the optical node device comprises an optical network unit (ONU).
- 15. The system of claim 1 wherein the first wavelength is in the 1310 nano-meter (nm) window, the second wavelength is in the 1310 nm window, and the third wavelength is in the 1550 nm window.
- 16. The system of claim 1 wherein the first wavelength is in the 1550 nm window, the second wavelength is in the 1550 nm window, and the third wavelength is in the 1550 nm window.
- 17. The system of claim 1 wherein the first wavelength is in the 1310 nano-meter (nm) window, the second wavelength is in the 1310 nm window, and the third wavelength is in the 1310 nm window.
- 18. The system of claim 1 wherein the first wavelength is in the 1550 nm window, and the second wavelength is in the 1550 nm window, and the third wavelength is in the 1310 nm window.
- 19. The system of claim 1 wherein the communication system comprises a fiber-to-the-curb (FTTC) system.
- 20. The system of claim 1 wherein the network node comprises a point-of-presence (POP) in a central office (CO).
- 21. A communication system for providing high speed data services to a subscriber using optical fibers, the communication system comprising:a first optical interface unit (OIU) comprising a first electrical-to-optical (E/O) circuit for receiving first electrical signals from an electrical communication path and transmitting optical representations of the first electrical signals downstream on a first optical fiber as first optical signals, and comprising a first optical-to-electrical (O/E) circuit for receiving second optical signals from the first optical fiber and transmitting electrical representations of the second optical signals upstream on the electrical communication path; and a second optical interface unit (OIU) comprising a second E/O circuit for receiving second electrical signals from a subscriber and transmitting optical representations of the second electrical signals upstream on the first optical fiber as the second optical signals, and comprising a second O/E circuit for receiving the first optical signals from the first optical fiber and transmitting electrical representations of the first optical signals downstream to the subscriber, and further comprising a third O/E circuit for receiving third optical signals from the first optical fiber and transmitting electrical representations of the third optical signals to the subscriber; wherein the third optical signals were derived from fourth optical signals received from a second optical fiber.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application claims priority from and is related to U.S. Provisional Application No. 60/306,906 entitled “DFHFC With High Speed Data and VOD,” which was filed on Jul. 20, 2001. The entire disclosure of U.S. Provisional Application No. 60/306,906 is hereby incorporated into the present application by reference.
US Referenced Citations (2)
Number |
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6606430 |
Bartur et al. |
Aug 2003 |
B2 |
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B1 |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/306906 |
Jul 2001 |
US |