Claims
- 1. A modular optical amplifier assembly, comprising:
at least one, first module, said first module being an Optical Power Supply module, said first module comprising an optical circuit including (i) at least two optical ports, (ii) at least a one light source having a first wavelength known to cause amplification in rare earth doped optical fiber located between said optical ports; (iii) at least one bidirectional light combiner/separator optically coupled to said light source, and (iv) at least one position for a directional optical attenuator, located between said two optical ports; at least one, second module, said second module being an amplification module, comprising an optical circuit including (i) at least two optical ports, and (ii) at least one amplification medium; and said first and second modules being optically connected to one another.
- 2. An optical amplifier assembly according to claim 1, wherein said a bidirectional light combiner/separator is a wavelength division multiplexer (WDM).
- 3. An optical amplifier assembly according to claim 1, wherein said amplification medium is optical fiber.
- 4. An optical amplifier assembly according to claim 1, wherein said amplification medium is erbium doped optical fiber.
- 5. An optical amplifier assembly according to claim 1, wherein the first and second modules are mounted to each other with mechanical connections.
- 6. An optical amplifier assembly according to claim 1, wherein the first and second modules are mounted to a common support structure.
- 7. An optical amplifier assembly according to claim 1, wherein the first and second modules are mounted to a common support structure containing a heat transfer device structured to route excess thermal energy from said modules.
- 8. An optical amplifier assembly according to claim 1, wherein the first and second modules are mounted independently within a network sub-system.
- 9. The optical amplifier assembly of claim 1, wherein said first module includes at least one of said light sources capable of operating at approximately 980 nm.
- 10. The optical amplifier assembly of claim 1, wherein said first module includes at least one of said light sources capable of operating at approximately 1480 nm.
- 11. The optical amplifier assembly of claim 1, wherein said first module includes at least one of said light sources capable of operating at approximately 980 nm and at least one of said light sources capable of operating at approximately 1480 nm.
- 12. The optical amplifier assembly of claim 1, wherein said first module includes at least two of said light sources capable of operating at a similar wavelength.
- 13. The optical amplifier assembly of claim 1, wherein said first module includes at least two of said light sources capable of operating at similar wavelengths and at least one additional of said light sources capable of operating at a different wavelength.
- 14. An optical amplifier assembly according to claim 1, wherein said first module includes at least one directional optical attenuator located in said position.
- 15. An optical amplifier assembly according to claim 14, wherein said bidirectional light combiner/separator is a wavelength division multiplexer (WDM).
- 16. An optical amplifier assembly according to claim 14, wherein said directional optical attenuator is an optical isolator.
- 17. The optical amplifier assembly of claim 1, wherein said first module includes a plurality of bidirectional light combiner/separators and a plurality of directional optical attenuators.
- 18. An optical amplifier assembly according to claim 17, wherein said bidirectional light combiner/separators are wavelength division multiplexers (WDMs).
- 19. An optical amplifier assembly according to claim 17, wherein said directional optical attenuators are optical isolators.
- 20. A modular optical amplifier assembly according to claim 1 further comprising at least one, third module, said third module being an optical monitoring and access module, said third module including an optical circuit comprising (i) at least two optical ports, (ii) at least one, first optical tap, (iii) at least one optical sensor optically coupled to said first optical tap; and (iv) at least one position for at least one additional optical component, which when placed in said position, would be connected to said first optical tap.
- 21. An optical amplifier assembly according to claim 20, further including: a plurality of positions, each position designated for one additional optical component, which when placed in said position, would be connected to said first optical tap.
- 22. An optical amplifier assembly according to claim 20, wherein said first optical tap is an optical coupler.
- 23. An optical amplifier assembly according to claim 20 wherein said optical sensor is a photodiode.
- 24. An optical amplifier assembly according to claim 23 wherein said optical sensor is a photodiode with further electronic signal modification.
- 25. An optical amplifier assembly according to claim 20 wherein said third module includes said additional optical component and said additional optical component of said third module is a bidirectional light combiner/separator.
- 26. An optical amplifier assembly according to claim 25 wherein said bidirectional light combiner/separator is a wavelength division multiplexer.
- 27. An optical amplifier assembly according to claim 20 wherein said third module includes said additional optical component and said additional optical component of said third module is a second optical tap.
- 28. An optical amplifier assembly according to claim 27 wherein said second optical tap is an optical tap coupler.
- 29. An optical amplifier assembly according to claim 20 wherein said third module includes said additional optical component and said additional optical component of said third module is a directional optical attenuator.
- 30. An optical amplifier assembly according to claim 29 wherein said directional optical attenuator is an optical isolator.
- 31. An optical amplifier assembly according to claim 20, wherein said first, second, and third modules are optically connected so as to complete the desired total optical amplifier circuit.
- 32. An optical amplifier assembly according to claim 20, wherein the first, second, and third modules are mounted to each other with mechanical connections.
- 33. An optical amplifier assembly according to claim 32, wherein the first, second, and third modules are mounted to a common support structure.
- 34. An optical amplifier assembly according to claim 32, wherein the first, second, and third modules are mounted independently within a network sub-system.
- 35. An optical amplifier assembly according to claim 1 further comprising at least one fourth module, said fourth module being an optical processing module, said fourth module including an optical circuit comprising (i) at least two optical ports, (ii) at least one light filter situated between said two ports, and (iii) at least one position for at least one additional optical component, which when placed in said position, would be connected to said at least one light filter.
- 36. An optical amplifier assembly according to claim 35 wherein said light filter of said fourth module is a wavelength dependent filter.
- 37. An optical amplifier assembly according to claim 36 wherein said light filter is passive and fixed.
- 38. An optical amplifier assembly according to claim 37 wherein said light filter is a gain flattening filter.
- 39. An optical amplifier assembly according to claim 36 wherein said light filter is passive but settable.
- 40. An optical amplifier assembly according to claim 39 wherein said light filter is a dynamic gain flattening filter.
- 41. An optical amplifier assembly according to claim 36 wherein said light filter is actively modulated.
- 42. An optical amplifier assembly according to claim 41 wherein said light filter is a dynamic gain flattening filter.
- 43. An optical amplifier assembly according to claim 35 wherein said light filter of said fourth module is a wavelength independent filter.
- 44. An optical amplifier assembly according to claim 43 wherein said light filter is passive and fixed.
- 45. An optical amplifier assembly according to claim 44 wherein said light filter is an optical coupler.
- 46. An optical amplifier assembly according to claim 43 wherein said light filter is passive and settable.
- 47. An optical amplifier assembly according to claim 46 wherein said light filter is a variable optical attenuator.
- 48. An optical amplifier assembly according to claim 43 wherein said light filter is actively modulated.
- 49. An optical amplifier assembly according to claim 48 wherein said light filter is a variable optical attenuator.
- 50. An optical amplifier assembly according to claim 35 wherein said light filter of said fourth module has a defined attenuation slope dL(λ)/dλ, where L(λ) is the attenuation as a function of wavelength and λ is the signal wavelength.
- 51. An optical amplifier assembly according to claim 50 wherein said light filter is passive and fixed.
- 52. An optical amplifier assembly according to claim 51 wherein said light filter is a passive slope adjusted filter.
- 53. An optical amplifier assembly according to claim 52 wherein said light filter is passive and the slope of the filter is settable.
- 54. An optical amplifier assembly according to claim 53 wherein said light filter is a variable slope adjusted filter.
- 55. An optical amplifier assembly according to claim 50 wherein said light filter is actively modulated.
- 56. An optical amplifier assembly according to claim 55 wherein said light filter is a dynamically modulated slope adjusted filter.
- 57. An optical amplifier assembly according to claim 35 wherein said location with the capacity to include at least one additional optical function connected to the filter contains at least one directional optical attenuator.
- 58. An optical amplifier assembly according to claim 57 wherein said directional optical attenuator is an optical isolator.
- 59. An optical amplifier assembly according to claim 35 wherein said position includes at least one additional optical component, said component being an optical tap.
- 60. An optical amplifier assembly according to claim 59, further including, in said fourth module, an optical sensor, said optical sensor being connected to said optical tap.
- 61. An optical amplifier assembly according to claim 60 wherein said optical tap is an optical coupler.
- 62. An optical amplifier assembly according to claim 60 wherein said optical sensor is a photodiode.
- 63. An optical amplifier assembly according to claim 60 wherein said optical sensor is a photodiode with further electronic signal modification.
- 64. An optical amplifier assembly according to claim 35 wherein said module includes at least two optical filters.
- 65. The optical amplifier assembly according to claim 1 further comprising at least one optical processing module, said optical processing module including an optical circuit comprising (i) at least two optical ports, (ii) at least one light filter situated between said two ports, and (iii) at least one position for at least one additional optical component, which when placed in said position, would be connected to said at least one light filter, wherein said first, said second and said optical processing modules are optically connected so as to complete the total optical amplifier circuit.
- 66. An optical amplifier assembly according to claim 65, wherein the first, second and fourth modules are mounted to each other with mechanical connections.
- 67. An optical amplifier assembly according to claim 65, wherein the first, second and fourth modules are mounted to a common support structure.
- 68. An optical amplifier assembly according to claim 65, wherein the first, second and fourth modules are mounted independently within a network sub-system.
- 69. An optical amplifier assembly according to claim 19, further comprising: at least one fourth module, said fourth module being an optical processing module, said optical processing module including an optical circuit comprising (i) at least two optical ports, (ii) at least one light filter situated between said two ports, and (iii) at least one position for at least one additional optical component, which when placed in said position, would be connected to said at least one light filter, wherein said first, second, third and fourth modules are optically connected so as to complete the total optical amplifier circuit.
- 70. An optical amplifier assembly according to claim 69, wherein the first, second, third and fourth modules are mounted to each other with mechanical connections.
- 71. An optical amplifier assembly according to claim 69, wherein the first, second, third and fourth modules are mounted to a common support structure.
- 72. An optical amplifier assembly according to claim 69, wherein the first, second, third and fourth modules are mounted independently within a network sub-system.
- 73. An optical amplifier assembly according to claim 35 further comprising at least one additional fourth module, said additional fourth module being an additional optical processing module, said additional fourth module including an optical circuit comprising (i) at least two optical ports, (ii) at least one light filter, and (iii) at least one, first optical tap with an associated one optical sensor, and (iv) at least one position for at least one additional optical component, which when placed in said position, would be connected to said at least one light filter.
- 74. An optical amplifier assembly according to claim 1 further comprising at least one telemetry add/drop module, said telemetry add/drop module including an optical circuit comprising (i) at least two optical ports, and (ii) at least two bidirectional light combiner/separators.
- 75. An optical amplifier assembly according to claim 74 wherein at least one of said at least two bidirectional light combiner/separators of said telemetry add/drop module is a wavelength division multiplexer.
- 76. An optical amplifier assembly according to claim 74 wherein said at least two bidirectional light combiner/separators of said telemetry add/drop module are wavelength division multiplexers.
- 77. An optical amplifier assembly according to claim 20, further comprising at least one, telemetry add/drop module, said telemetry add/drop module including an optical circuit comprising (i) at least two optical ports, and (ii) at least two bidirectional light combiner/separators.
- 78. An optical amplifier assembly according to claim 77 wherein at least one of said at least two bidirectional light combiner/separators of said telemetry add/drop module is a wavelength division multiplexer.
- 79. An optical amplifier assembly according to claim 77 wherein said at least two bidirectional light combiner/separators of said telemetry add/drop module are wavelength division multiplexers.
- 80. An optical amplifier assembly according to claim 20 further comprising:
(a) at least one fourth module, said fourth module being an optical processing module, said fourth module including an optical circuit comprising (i) at least two optical ports, (ii) at least one light filter situated between said two ports, and (iii) at least one position for at least one additional optical component, which when placed in said position, would be connected to said at least one light filter; and (b) at least one, fifth module, said fifth module being a telemetry add/drop module, said fifth module including an optical circuit comprising (i) at least two optical ports, and (ii) at least two bidirectional light combiner/separators.
- 81. An optical amplifier assembly according to claim 80 wherein at least one of said at least two bidirectional light combiner/separators of said fifth module is a wavelength division multiplexer.
- 82. An optical amplifier assembly according to claim 80, wherein said at least two bidirectional light combiner/separators of said fifth module are wavelength division multiplexers.
- 83. An optical amplifier assembly according to claim 80 wherein said telemetry add/drop module is optically connected to at least one other module, so as to complete the desired total optical amplifier circuit.
- 84. An optical amplifier assembly according to claim 80, wherein said add/drop module and said other module are mounted to each other with mechanical connections.
- 85. An optical amplifier assembly according to claim 80, wherein said add/drop module and said other module are mounted to a common support structure.
- 86. An optical amplifier assembly according to claim 105, wherein said add/drop module and said other module are mounted independently within a network sub-system.
- 87. The optical amplifier assembly of claim 1, where said optical amplifier assembly further includes at least one controller module, said controller module communicating electronically with the electrical and opto-electronic devices present within the modules comprising the amplifier assembly, so as to provide necessary command, control, alarming, and communication within the optical amplifier assembly.
- 88. The optical amplifier assembly of claim 1, where said optical amplifier further includes at least one controller module, said controller module communicating electronically with the electrical and opto-electronic devices present within the modules comprising the amplifier, so as to provide necessary command, control, alarming, and communication within a network system.
- 89. The optical amplifier assembly of claim 1, wherein said modules are optically connected via a plurality of optical waveguides.
- 90. The optical amplifier assembly of claim 89, wherein said optical waveguides are connected via a fusion splice.
- 91. The optical amplifier assembly of claim 89, wherein said optical waveguides are connected via a mechanical splice connector.
- 92. The optical amplifier assembly of claim 89, wherein said optical waveguides are connected via optical waveguide jumpers, said optical waveguide jumpers being optically connected at either end to the optical circuits of the optically communicating modules via mechanical splice connectors.
- 93. The optical amplifier assembly of claim 89, wherein said optical waveguides are terminated with focusing lenses and fixed relative to each other so as to allow said modules to optically communicate without physical contact.
- 94. The optical amplifier assembly of claim 89, wherein said optical waveguides are terminated with polished ends that are substantially perpendicular to the propagation of the light, and fixed relative to each other so as to allow said modules to optically communicate without physical contact.
- 95. The optical amplifier assembly of claim 89, wherein said optical waveguides are terminated and with focusing lenses in intimate contact with each other.
- 96. The optical amplifier assembly of claim 89, wherein said optical waveguides are optical fibers.
- 97. The optical amplifier assembly of claim 89, wherein said optical waveguides are planar waveguides.
- 98. The optical amplifier assembly of claim 89, wherein the optical path of the desired resultant amplifier does not utilize a portion of the optical circuit within at least one module, said module being optically bypassed.
- 99. The optical amplifier assembly of claim 89, wherein the optical circuit of the amplifier assembly does not utilize at least one optical circuit within at least one module, and the optical connection is made directly between the otherwise adjacent modules within the amplifier optical circuit.
- 100. The optical amplifier assembly according to claim 1, wherein said optical power supply module includes a plurality of optical circuits, each of said optical circuits including (i) at least two optical ports, (ii) at least a one light source having a first wavelength known to cause amplification in rare earth doped optical fiber; (iii) at least one position for a directional optical attenuator, and (iv) at least one position for a bidirectional light combiner/separator.
- 101. The optical amplifier assembly according to claim 1 wherein said second module comprises: (i) a plurality of amplification mediums and (ii) two optical ports associated with each of said amplification mediums.
- 102. The optical amplifier assembly according to claim 1 wherein said second module comprises: (i) a plurality of pairs of amplification media co-joined to an optical isolator; and (ii) two optical ports associated with each pair of said amplification media co-joined to an optical isolator.
- 103. The optical amplifier assembly according to claim 20 wherein said third module includes a plurality of optical monitoring and access circuits, each of said optical monitoring and access circuits comprising: (i) at least two optical ports, (ii) at least one, first optical tap, (iii) at least one optical sensor, and (iv) at least one position for at least one additional optical component connected to the first optical tap.
- 104. The optical amplifier assembly according to claim 35 wherein said fourth module includes a plurality of optical processing circuits, each of said optical processing circuits comprising (i) at least two optical ports, (ii) at least one light filter, and (iii) at least one position for at least one additional optical component connected to the light filter.
- 105. The optical amplifier assembly according to claim 80 wherein said fourth module includes a plurality of optical processing circuits comprising (i) at least two optical ports, (ii) at least one light filter, and (iii) at least one, first optical tap with an associated one optical sensor, and (iv)) at least one position for at least one additional optical tap with an associated optical sensor, such that said optical tap, after being placed in said position, will be connected to the light filter.
- 106. The optical amplifier assembly according to claim 80 wherein said fifth module includes a plurality of telemetry add/drop optical circuits comprising (i) at least two optical ports, and (ii) at least one bidirectional light combiner/separator.
- 107. The optical amplifier assembly according to claim 106 wherein said fifth module includes a plurality of telemetry add/drop optical circuits comprising (i) at least two optical ports, and (ii) at least two bidirectional light combiner/separators.
- 108. The optical amplifier assembly according to claim 106 wherein said bidirectional light combiner/separator is a wavelength division multiplexer.
- 109. The optical amplifier assembly according to claim 100 wherein at least two of said plurality of optical circuits share a common optical element.
- 110. The optical amplifier assembly according to claim 1, wherein said second module includes a plurality of optical circuits and wherein at least two of said plurality of optical circuits share a common optical element.
- 111. The optical amplifier assembly according to claim 103 wherein at least two of said optical monitoring and access circuits share a common optical element.
- 112. The optical amplifier assembly according to claim 104 wherein at least two of said optical processing circuits share a common optical element.
- 113. The optical amplifier assembly according to claim 105 wherein at least two of the optical processing circuits share a common optical element.
- 114. The optical amplifier assembly according to claim 106 wherein at least two of said telemetry add/drop optical circuits share a common optical element.
- 115. The optical amplifier assembly of claim 1, wherein at least one module comprising the amplifier assembly includes at least one temperature sensor.
- 116. The optical amplifier assembly of claim 115, where said temperature sensor is a thermistor.
- 117. The optical amplifier assembly of claim 115, wherein at least one module comprising the amplifier includes at least one passive heat transfer device.
- 118. The optical amplifier assembly of claim 117, wherein said passive heat transfer device includes convection cooling fins.
- 119. The optical amplifier assembly of claim 117, wherein said passive heat transfer device includes convection cooling fins augmented by heat pipes.
- 120. The optical amplifier assembly of claim 115, wherein at least one module comprising the amplifier includes at least one electrically driven heat transfer device.
- 121. The optical amplifier assembly of claim 120, wherein said electrically driven heat transfer device includes a thermo-electric cooler.
- 122. The optical amplifier assembly of claim 120, wherein said electrically driven heat transfer device includes a resistive heating coil.
- 123. The optical amplifier assembly of claim 20, wherein at least one module comprising the amplifier assembly includes at least one temperature sensor.
- 124. The optical amplifier assembly of claim 123, where said temperature sensor is a thermistor.
- 125. The optical amplifier assembly of claim 123, wherein at least one module comprising the amplifier includes at least one passive heat transfer device.
- 126. The optical amplifier assembly of claim 125, where said passive heat transfer device includes convection cooling fins.
- 127. The optical amplifier assembly of claim 125, wherein said passive heat transfer device includes convection cooling fins augmented by heat pipes.
- 128. The optical amplifier assembly of claim 123, wherein at least one module comprising the amplifier includes at least one electrically driven heat transfer device.
- 129. The optical amplifier assembly of claim 128, where said electrically driven heat transfer device is a thermoelectric cooler.
- 130. The optical amplifier assembly of claim 128, where said electrically driven heat transfer device is a resistive heating coil.
- 131. The optical amplifier assembly of claim 35, wherein at least one module comprising the amplifier assembly includes at least one temperature sensor.
- 132. The optical amplifier assembly of claim 131, where said temperature sensor is a thermistor.
- 133. The optical amplifier assembly of claim 131, wherein at least one module comprising the amplifier includes at least one passive heat transfer device.
- 134. The optical amplifier assembly of claim 133, where said passive heat transfer device includes convection cooling fins.
- 135. The optical amplifier assembly of claim 133, wherein said passive heat transfer device includes convection cooling fins augmented by heat pipes.
- 136. The optical amplifier assembly of claim 131, wherein at least one module comprising the amplifier includes at least one electrically driven heat transfer device.
- 137. The optical amplifier assembly of claim 136, where said electrically driven heat transfer device is a thermoelectric cooler.
- 138. The optical amplifier assembly of claim 136, where said electrically driven heat transfer device is a resistive heating coil.
- 139. The optical amplifier assembly of claim 60, wherein at least one module comprising the amplifier assembly includes at least one temperature sensor.
- 140. The optical amplifier assembly of claim 139, where said temperature sensor is a thermistor.
- 141. The optical amplifier assembly of claim 139, wherein at least one module comprising the amplifier includes at least one passive heat transfer device.
- 142. The optical amplifier assembly of claim 141, where said passive heat transfer device includes convection cooling fins.
- 143. The optical amplifier assembly of claim 141, wherein said passive heat transfer device includes convection cooling fins augmented by heat pipes.
- 144. The optical amplifier assembly of claim 139, wherein at least one module comprising the amplifier includes at least one electrically driven heat transfer device.
- 145. The optical amplifier assembly of claim 144, where said electrically driven heat transfer device includes a thermo-electric cooler.
- 146. The optical amplifier assembly of claim 144, where said electrically driven heat transfer device includes a resistive heating coil.
- 147. The optical amplifier assembly of claim 1, wherein at least one module comprising the amplifier includes electrical connections to communicate electrically with power sources and controllers.
- 148. The optical amplifier assembly of claim 1, wherein said second module comprising an optical circuit including: (i) at least two optical ports, (ii) at least one amplification medium, and at least one additional optical component connected between the amplification medium and one of said optical ports.
- 149. An optical amplifier assembly according to claim 148, wherein said amplification medium is optical fiber.
- 150. An optical amplifier assembly according to claim 149, wherein said amplification medium is erbium doped optical fiber.
- 151. An optical amplifier assembly according to claim 148, wherein said additional optical component connected between the amplification medium and one optical port is a bidirectional light combiner/separator.
- 152. An optical amplifier assembly according to claim 148, wherein said additional optical component connected between the amplification medium and one optical port is a light filter.
- 153. An optical amplifier assembly according to claim 148, wherein said additional optical components connected between the amplification medium and one optical port includes a light filter and a bidirectional light combiner/separator.
- 154. The optical amplifier assembly of claim 101, wherein said second module includes a plurality of amplification optical circuits, with at least one of the optical circuits including: (i) at least two optical ports, (ii) at least one amplification medium, and at least one additional optical component between the amplification medium and one optical port.
- 155. An optical amplifier assembly according to claim 154, wherein said additional optical component connected between the amplification medium and one optical port is a light filter.
- 156. An optical amplifier assembly according to claim 154, wherein said additional optical component connected between a first amplification medium and one optical port includes a light filter and a bidirectional light combiner/separator, said additional optical component connected between a second amplification medium and one optical port includes a bidirectional light combiner/separator.
- 157. The optical amplifier assembly of claim 1, wherein said second module includes a plurality of amplification optical circuits, with at least one of the optical circuits including: (i) at least two optical ports, (ii) at least one amplification medium, and at least one additional optical component connected between the amplification medium and one optical port.
- 158. An optical amplifier assembly according to claim 157, wherein said additional optical component connected between the amplification medium and one optical port is a light filter.
- 159. An optical amplifier assembly according to claim 157, wherein said additional optical component connected between a first amplification medium and one optical port includes a light filter and a bidirectional light combiner/separator, said additional optical component connected between a second amplification medium and one optical port includes a bidirectional light combiner/separator.
- 160. An optical amplifier assembly comprising a plurality of optical amplifier modules, wherein at least two of said modules are interconnected with interlocking mechanical features.
- 161. The optical amplifier assembly according to claim 160, wherein said interlocking mechanical features are press-fit compression fittings.
- 162. The optical amplifier assembly according to claim 160, wherein said interlocking mechanical features are spring-loaded compression fittings.
- 163. An optical amplifier assembly according to claim 161, wherein said press-fit compression fittings include electronic connections.
- 164. An optical amplifier assembly according to claim 162, wherein said spring-loaded compression fittings include electronic connections.
- 165. An optical amplifier assembly according to claim 160, wherein said interlocking mechanical features are snap-fit mechanical connectors
- 166. An optical amplifier assembly according to claim 160, wherein said interlocking mechanical features are mating guides and rails.
- 167. An optical amplifier assembly according to claim 160, wherein said interlocking mechanical features are mating pins and apertures.
- 168. An optical amplifier assembly according to claim 160, wherein said interlocking mechanical features are mating non-planar surfaces.
- 169. An optical amplifier assembly according to claim 1, wherein at least two of said modules are interconnected with interlocking mechanical features.
- 170. An optical amplifier assembly according to claim 169, wherein said interlocking mechanical features are press-fit compression fittings.
- 171. An optical amplifier assembly according to claim 169, wherein said interlocking mechanical features are spring-loaded compression fittings.
- 172. An optical amplifier assembly according to claim 170, wherein said press-fit compression fittings include electronic connections.
- 173. An optical amplifier assembly according to claim 171, wherein said spring-loaded compression fittings include electronic connections.
- 174. An optical amplifier assembly according to claim 169, wherein said interlocking mechanical features are snap-fit mechanical connectors.
- 175. An optical amplifier assembly according to claim 169, wherein said interlocking mechanical features are mating guides and rails.
- 176. An optical amplifier assembly according to claim 169 wherein said interlocking mechanical features are mating pins and apertures.
- 177. An optical amplifier assembly according to claim 169, wherein said interlocking mechanical features are mating non-planar surfaces.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Patent Application No. 60/368,460, filed Mar. 27, 2002, which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60368460 |
Mar 2002 |
US |