Claims
- 1. A fiber-optic access system for subscriber optical communication adopting star type topology in an optical fiber network, said fiber-optic access system comprising:
- a central office;
- a plurality of optical network units connected with said central office by optical fibers;
- an optical interface provided in said central office, said optical interface including an array optical transmission module having a plurality of channels through which data signals are transmitted to said plurality of optical network units through said optical fibers, and an array optical reception module having a plurality of channels through which data signals are received from said plurality of optical network units through said optical fibers; and
- a circuit provided to each channel of said array optical reception module and which extracts a clock signal for each data signal to synchronize said each data signal with a corresponding channel.
- 2. A fiber-optic access system according to claim 1, said system providing communication between said optical network units and homes, said fiber-optic access system further comprises a plurality of subscriber-line optical interfaces provided in said optical network units and each of which includes an array optical transmission module and an array optical reception module having configurations that are the same as those of said array optical transmission module and said optical reception module in said central office.
- 3. The fiber-optic access system according to claim 1, in which said array optical reception module comprises a core fiber ribbon, an array optical sensor, an array pre-amplifier IC, and a signal clock extraction IC, said ribbon, sensor, and IC's being coupled in series.
- 4. The fiber-optic access system according to claim 1, in which said array optical transmission module comprises a core fiber ribbon, an array semiconductor laser, and an array laser driver IC, said ribbon, laser, and driver IC being coupled in series.
- 5. A fiber-optic access system for subscriber optical communication adopting star type topology in an optical fiber network, said fiber-optic access system comprising:
- a central office;
- a plurality of optical network units located in homes and connected with said central office by optical fibers;
- a plurality of optical interfaces provided in said central office, each of said plurality of optical interfaces, including an array optical transmission module having a plurality of channels through which data signals are transmitted to a sub-set of optical network units through a first corresponding sub-set of said optical fibers and an array optical reception module having a plurality of channels through which data signals are received from said sub-set of optical network units through a second corresponding sub-set of optical fibers; and
- a circuit provided for each channel of said array optical reception module and which extracts a clock signal for each data signal received in said each channel to synchronize said each data signal with a corresponding channel.
Priority Claims (1)
Number |
Date |
Country |
Kind |
6-153196 |
Jul 1994 |
JPX |
|
Parent Case Info
This is a Continuation of application Ser. No. 08/803,327, filed on Feb. 21, 1997, now abandoned; which is a Continuation of application Ser. No. 08/659,622; filed on Jun. 6, 1996, now abandoned; which is a Continuation of application Ser. No. 08/498,197, filed on Jul. 5, 1995, now abandoned.
US Referenced Citations (4)
Non-Patent Literature Citations (2)
Entry |
Bar-Chaim et al, "Integrated Optoelectronics", IEEE Spectrum, May 1982, pp. 38-44. |
I. Kobayashi, "The Dawn of Fiber-Optic Access Networks", Fiber-Optic Subscriber Loops, Special Edition, IEEE Communications Magazine, Feb. 1994, vol. 32, No. 2, pp. 33-86. |
Continuations (3)
|
Number |
Date |
Country |
Parent |
803327 |
Feb 1997 |
|
Parent |
659622 |
Jun 1996 |
|
Parent |
498197 |
Jul 1995 |
|