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| United States Patent | 5,440,416 |
| Cohen ,   et al. | August 8, 1995 |
An optical communication network includes a novel, passive optical component. This component combines the function of a splitter with the function of a wavelength-division multiplexer. These functions are performed in distinct wavelength bands. In one embodiment, the inventive component is made using silicon optical bench technology.
| Inventors: | Cohen; Leonard G. (Berkeley Heights, NJ); Henry; Charles H. (Skillman, NJ); Kazarinov; Rudolf F. (Martinsville, NJ); Yaffe; Henry H. (Fanwood, NJ) |
| Assignee: | AT&T Corp. (Murray Hill, NJ) |
| Appl. No.: | 021698 |
| Filed: | February 24, 1993 |
| Current U.S. Class: | 398/82; 385/24; 385/37; 398/70; 398/87 |
| Intern'l Class: | H04J 014/02 |
| Field of Search: | 359/114,115,117,124,125,127,129,130,131 385/24,27,37,46,50 |
| 4902086 | Feb., 1990 | Henry et al. | 350/96. |
| 4923271 | May., 1990 | Henry et al. | 385/37. |
| 5026131 | Jun., 1991 | Jannson et al. | 385/37. |
| 5136671 | Aug., 1992 | Dragone | 385/46. |
| 5243672 | Sep., 1993 | Dragone | 385/37. |
C. Dragone et al., "Efficient Multichannel Integrated Optics Star Coupler on Silicon", IEEE Photon. Technol. Lett. 1, 1989, 241-243. C. Dragone et al., "Integrated Optics N X N Multiplexer on Silicon", IEEE Photon. Technol. Lett. 3, 1991, 896-899. C. Dragone, "Efficient N X N Star Couplers Using Fourier Optics", IEEE J. Lightwave Technol. 7, 1989, 479-489. R. Adar et al., "Wide-Band Bragg Reflectors made with Silica on Silicon Waveguides", Appl. Phys. Lett. 60, 1992, 1924-1926. T. L. Koch et al., "Continuously Tunable 1.5 um Multiple-Quantum-Well AlInAs/GaInAsP Distributed-Bragg-Reflector Lasers", Eelct. Lett. 24, 1988, 1431-1432. U. Koren, et al. "High Power Laser-Amplifier Photonic Integrated Circuit for 1.48 um Wavelength Operation", Appl. Phys. Lett. 59, 1991, 2351-2353. U.S. patent application Ser. No. 07/806,561, "Optical Fiber Communication System", filed by L. G. Cohen et al. Dec. 12, 1991. |
TABLE 1
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LOSS BUDGET
(1X16 PON with SiOB WDM coupler bypass circuit)
FIG. 1 NETWORK FIG. 3 NETWORK
BROADCAST
WDM BYPASS
BROADCAST
WDM BYPASS
COMPONENT (dB) (dB) (dB) (dB)
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SiOB Coarse 2-ch WDM
0.6 0.6 0.6 0.6
(coupler input bypass)
SiOB Dense 16-ch WDM
-- 2.5 -- 3.5
SiOB Coarse 2-ch WDM
0.6 0.6 -- --
(coupler output bypass)
SiOB Waveguide Cross-overs
1.5 1.5 -- --
(worst case = 15)
16 .times. 16 Star Coupler
15.0 -- 18.0 --
Fiber Loss - Outside Plant
4.0 4.0 4.0 4.0
(.lambda. = 1430-1460 nm)
Splice Loss - Outside Plant
5.6 5.6 5.6 5.6
TOTAL LOSS (dB)
27.3 14.8 28.2 13.7
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