An optical test apparatus includes an optical time domain reflectometer for
launching light pulses into a test fibre. An optical amplifier is provided
in the light path between the optical time domain reflectometer and the
test fibre or amplifying the light pulses. An optical switch is positioned
in the light path between the amplifier and the test fibre for preventing
light reaching the test fibre between the light pulses launched by the
OTDR. Timing structure is provided for synchronising the operation of the
optical switch so as to open the switch as a light pulse reaches the
switch and close the switch as a light pulse leaves the switch.
Other References
Photonics, Fiber Optic Trends, "Fiber Lasers: New Interest in an Old
Technology:" by Chris Emslie, Apr. 1989, pp. 103-104 106-108.
Electronics Letters, "250 km Nonrepeated Transmission Experiment at 1.8
Gb/s Using LD Pumped Er.sup.3+ Doped Fibre Amplifiers in IM/Direct
Detection System", May 11, 1989, vol. 25, No. 10, pp. 662-664.
Tamura et al, "Fiber Raman Amplifier Module with Semiconductor Laser Pump
SOurce", OKI Electric Industry Co., Ltd. Optical Transmission Systems Eng.
Dept. 4-10-16 Shibaura, Minato-ku, Tokyo, pp. 62-65, 1987.
Spirit et al "Raman-Assisted Long-Distance Optical Time Domain
Reflectometry", Electronics Letters, Dec. 7, 1989, vol. 25 No. 25, pp.
1687-1688.
Patent abs. of Japan, vol. 10, No. 215 (P-481)(2271), Jul. 26, 1986,
JP,A,6154421 (Nippon T&T corp) Mar. 18, 1986. (Suzuki).
Patent abs of Japan, vol. 7, No. 90, (R191)(1235) Apr. 14, 1983, JP,A,
5818138) Fujitsu K.K.) Feb. 2, 1983.
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