Patents by Inventor Pierre D. Wall
Pierre D. Wall has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 8391709Abstract: A wavelength selective switch (WSS) based on an array of MEMS mirrors tiltable in 1-dimension about only one axis exhibits “hitting” or unwanted port connections during switching. Two WSS's can be cascaded to create M×N switching functionality in a hitless manner by the inclusion of block ports at specified positions in one or both of the WSS's. Greater use efficiency of ports can be achieved if quasi-hitless performance is acceptable.Type: GrantFiled: June 18, 2012Date of Patent: March 5, 2013Assignee: JDS Uniphase CorporationInventors: Paul Colbourne, Sheldon McLaughlin, Stephen Robert de Hennin, Pierre D. Wall
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Publication number: 20120257853Abstract: A wavelength selective switch (WSS) based on an array of MEMS mirrors tiltable in 1-dimension about only one axis exhibits “hitting” or unwanted port connections during switching. Two WSS's can be cascaded to create M×N switching functionality in a hitless manner by the inclusion of block ports at specified positions in one or both of the WSS's. Greater use efficiency of ports can be achieved if quasi-hitless performance is acceptable.Type: ApplicationFiled: June 18, 2012Publication date: October 11, 2012Applicant: JDS Uniphase CorporationInventors: Paul Colbourne, Sheldon McLaughlin, Stephen Robert de Hennin, Pierre D. Wall
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Patent number: 8233794Abstract: A wavelength selective switch (WSS) based on an array of MEMS mirrors tiltable in 1-dimension about only one axis exhibits “hitting” or unwanted port connections during switching. Two WSS's can be cascaded to create M×N switching functionality in a hitless manner by the inclusion of block ports at specified positions in one or both of the WSS's. Greater use efficiency of ports can be achieved if quasi-hitless performance is acceptable.Type: GrantFiled: September 9, 2009Date of Patent: July 31, 2012Inventors: Paul Colbourne, Sheldon McLaughlin, Stephen Robert de Hennin, Pierre D. Wall
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Patent number: 8121483Abstract: A hermetically packaged, MEMS array-based ROADM module is disclosed. The enclosure sidewalls and a top lid are made of Kovar, and the base is made of alumina ceramic AuSn-soldered to the enclosure sidewalls. The MEMS array is attached to the ceramic base. The optics are passively pre-aligned using a removable template and epoxied to an optical bench. The optical bench is actively aligned as a whole and attached to the ceramic base. A plurality of electrical feedthrough contact pins extend from the bottom of the ceramic base for connecting the MEMS to a connector on a printed circuit board. In one embodiment of the invention, the ceramic base extends beyond the footprint of the sidewalls of the enclosure of the module, for mounting additional electronic components, for example MEMS driver circuitry chips, directly to the ceramic base of the enclosure.Type: GrantFiled: December 5, 2008Date of Patent: February 21, 2012Inventors: Nenad Duricic, Pierre D. Wall
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Patent number: 8036502Abstract: An optical bench in a wavelength selective switch (WSS) is mounted using a combination of fixed mounts and stress-free mounts. The WSS is packaged in an enclosure including a base, a sidewall, and a lid. The optical switching engine is attached directly to the base. The optical bench is attached to the base and the optical components supported thereon are aligned with the array of switching elements of the switching engine. The optical bench is attached to the base with at plurality of mounts, which include at least one movable mount supporting movement of the optical bench in a plane parallel to the optical bench and at least one fixed mount maintaining optical alignment between the dispersive element and the array of switching elements.Type: GrantFiled: April 17, 2009Date of Patent: October 11, 2011Assignee: JDS Uniphase CorporationInventors: Nenad Duricic, Sheldon McLaughlin, Pierre D. Wall
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Patent number: 7725027Abstract: The multi-unit wavelength switch enables multiple independent wavelength switching of a plurality of incoming multiplexed optical beams simultaneously on the same optical platform. The different units can have similar functionality or provide disparate functionality, e.g. any one or more of switching, dynamic gain equalization, wavelength blocking, and power monitoring.Type: GrantFiled: April 4, 2007Date of Patent: May 25, 2010Assignee: JDS Uniphase CorporationInventors: Barrie Keyworth, Pierre D. Wall, Paul Colbourne
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Publication number: 20100061727Abstract: A wavelength selective switch (WSS) based on an array of MEMS mirrors tiltable in 1-dimension about only one axis exhibits “hitting” or unwanted port connections during switching. Two WSS's can be cascaded to create M×N switching functionality in a hitless manner by the inclusion of block ports at specified positions in one or both of the WSS's. Greater use efficiency of ports can be achieved if quasi-hitless performance is acceptable.Type: ApplicationFiled: September 9, 2009Publication date: March 11, 2010Inventors: Paul Colbourne, Sheldon McLaughlin, Stephen Robert de Hennin, Pierre D. Wall
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Patent number: 7676126Abstract: The invention relates to multiport routing devices for routing optical signals which also provide beam attenuation by imparting a controllable offset between an optical beam and a selected optical port. A multiport optical routing device of the present invention has a plurality of non-equally spaced optical ports disposed in a row to enable beam offset for attenuation without substantially increasing optical crosstalk between adjacent ports in a compact port arrangement.Type: GrantFiled: December 11, 2008Date of Patent: March 9, 2010Assignee: JDS Uniphase CorporationInventors: Sheldon McLaughlin, Pierre D. Wall
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Publication number: 20090263080Abstract: An optical bench in a wavelength selective switch (WSS) is mounted using a combination of fixed mounts and stress-free mounts. The WSS is packaged in an enclosure including a base, a sidewall, and a lid. The optical switching engine is attached directly to the base. The optical bench is attached to the base and the optical components supported thereon are aligned with the array of switching elements of the switching engine. The optical bench is attached to the base with at plurality of mounts, which include at least one movable mount supporting movement of the optical bench in a plane parallel to the optical bench and at least one fixed mount maintaining optical alignment between the dispersive element and the array of switching elements.Type: ApplicationFiled: April 17, 2009Publication date: October 22, 2009Inventors: Nenad DURICIC, Sheldon Mclaughlin, Pierre D. Wall
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Publication number: 20090214207Abstract: A hermetically packaged, MEMS array-based ROADM module is disclosed. The enclosure sidewalls and a top lid are made of Kovar, and the base is made of alumina ceramic AuSn-soldered to the enclosure sidewalls. The MEMS array is attached to the ceramic base. The optics are passively pre-aligned using a removable template and epoxied to an optical bench. The optical bench is actively aligned as a whole and attached to the ceramic base. A plurality of electrical feedthrough contact pins extend from the bottom of the ceramic base for connecting the MEMS to a connector on a printed circuit board. In one embodiment of the invention, the ceramic base extends beyond the footprint of the sidewalls of the enclosure of the module, for mounting additional electronic components, for example MEMS driver circuitry chips, directly to the ceramic base of the enclosure.Type: ApplicationFiled: December 5, 2008Publication date: August 27, 2009Inventors: Nenad DURICIC, Pierre D. WALL
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Publication number: 20090154874Abstract: The invention relates to multiport routing devices for routing optical signals which also provide beam attenuation by imparting a controllable offset between an optical beam and a selected optical port. A multiport optical routing device of the present invention has a plurality of non-equally spaced optical ports disposed in a row to enable beam offset for attenuation without substantially increasing optical crosstalk between adjacent ports in a compact port arrangement.Type: ApplicationFiled: December 11, 2008Publication date: June 18, 2009Inventors: Sheldon McLaughlin, Pierre D. Wall
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Publication number: 20070242953Abstract: The multi-unit wavelength switch enables multiple independent wavelength switching of a plurality of incoming multiplexed optical beams simultaneously on the same optical platform. The different units can have similar functionality or provide disparate functionality, e.g. any one or more of switching, dynamic gain equalization, wavelength blocking, and power monitoring.Type: ApplicationFiled: April 4, 2007Publication date: October 18, 2007Inventors: Barrie Keyworth, Pierre D. Wall, Paul Colbourne
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Patent number: 7167613Abstract: A micro-electro-mechanical (MEMS) mirror device for use in an optical switch is disclosed. A “piano”-style MEMs device includes an elongated platform pivotally mounted proximate the middle thereof by a torsional hinge. The middle portion of the platform and the torsional hinge have a combined width less than the width of the rest of the platform, whereby several of these “piano” MEMs devices can be positioned adjacent each other pivotally mounted about the same axis with only a relatively small air gap therebetween. In a preferred embodiment of the present invention the spacing between electrodes is increased without effecting the fill factor of the mirrors by interlacing two sets of tilting platforms, whereby the reflecting portions of both sets of tilting platforms are adjacent one another, while the non-reflecting portions of adjacent platforms are remote from each other.Type: GrantFiled: March 10, 2005Date of Patent: January 23, 2007Assignee: JDS Uniphase Inc.Inventors: John M. Miller, Wenlin Jin, Barrie Keyworth, Pierre D. Wall
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Patent number: 7081996Abstract: An isolated polarization beam splitter or combiner, for joining light from different inputs into one common port, and for dividing a beam of light into orthogonal polarizations. In both modes of operation, the splitter/combiner provides isolation preventing transmission of light in a reverse direction. As a splitter, a beam of light is separated through a birefringent material into sub-beams of orthogonal polarization components, and each sub-beam is passed through a non-reciprocal polarization rotator to rotate the polarization so that a reflected beam, or other counter-transmitted light cannot return on the same path through the birefringent material to the source. As a combiner, two separate beams of light are launched with known orthogonal polarizations into a first birefringent material, passed through a non-reciprocal polarization rotator and then combined as orthogonal polarizations into a single output port.Type: GrantFiled: July 11, 2001Date of Patent: July 25, 2006Assignees: JDS Uniphase Corporation, JDS Uniphase, Inc.Inventors: Gonzalo Wills, Pierre D. Wall, Kok-Wai Chang, Fahong Jin, Xinglong Wang
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Patent number: 6956697Abstract: The invention relates to an optical circulator for use as a front end for an optical device platform, which requires a pair of like-polarized sub-beams as input. A combined beam of light comprising a plurality of wavelength channels is input the optical circulator at an input port, and the pair of like-polarized sub-beams is launched via a pair of input/output ports into the optical device platform, wherein the sub-beams are modified. Within the optical device platform the combined beam of light is separated into individual channels, and one or more of the channels can be dropped or attenuated before the remaining channels are recombined into to modified sub-beams for output. The two modified sub-beams are launched back into the optical circulator, which directs the modified sub-beams to an output port remote from the input port. Any light reentering the optical circulator with the wrong polarization will neither exit the input nor the output port.Type: GrantFiled: December 16, 2003Date of Patent: October 18, 2005Assignee: JDS Uniphase Inc.Inventors: Pierre D. Wall, Jeffrey F. Wheeldon
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Publication number: 20040252375Abstract: The invention relates to an optical circulator for use as a front end for an optical device platform, which requires a pair of like-polarized sub-beams as input. A combined beam of light comprising a plurality of wavelength channels is input the optical circulator at an input port, and the pair of like-polarized sub-beams is launched via a pair of input/output ports into the optical device platform, wherein the sub-beams are modified. Within the optical device platform the combined beam of light is separated into individual channels, and one or more of the channels can be dropped or attenuated before the remaining channels are recombined into to modified sub-beams for output. The two modified sub-beams are launched back into the optical circulator, which directs the modified sub-beams to an output port remote from the input port. Any light reentering the optical circulator with the wrong polarization will neither exit the input nor the output port.Type: ApplicationFiled: December 16, 2003Publication date: December 16, 2004Inventors: Pierre D. Wall, Jeffrey F. Wheeldon
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Patent number: 6711311Abstract: This invention relates to elements such as birefringent crystals, which are used to separate a non-collimated input beam into two orthogonally polarized sub-beams or to combine two orthogonally polarized beams into a single beam. The optical device lessens or obviates the optical path length difference encountered in prior art devices and provides a polarization beam splitter/combiner that has substantially same optical path lengths for two split or combined beams propagating therethrough. Alternatively, the device is designed to provide a selected path length difference to compensate for polarization mode dispersion in other optical devices.Type: GrantFiled: April 18, 2001Date of Patent: March 23, 2004Assignee: JDS Uniphase Inc.Inventors: Vincent Delisle, Gonzalo Wills, Pierre D. Wall, Alan J. P. Hnatiw, Yihao Cheng, Dean Sheldon Spicer, Sheldon McLaughlin
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Publication number: 20020012167Abstract: The present invention relates to an isolated polarization beam splitter or combiner, for joining light from different inputs into one common port, and for dividing a beam of light into orthogonal polarizations. In both modes of operation, the splitter/combiner provides isolation preventing transmission of light in a reverse direction. As a splitter, a beam of light is separated through a birefringent material into sub-beams of orthogonal polarization components, and each sub-beam is passed through a non-reciprocal polarization rotator to rotate the polarization so that a reflected beam, or other counter-transmitted light cannot return on the same path through the birefringent material to the source. As a combiner, two separate beams of light are launched with known orthogonal polarizations into a first birefringent material, passed through a non-reciprocal polarization rotator and then combined as orthogonal polarizations into a single output port.Type: ApplicationFiled: July 11, 2001Publication date: January 31, 2002Applicant: JDS Uniphase, Inc. & JDS Uniphase CorporationInventors: Gonzalo Wills, Pierre D. Wall, Kok-Wai Chang, Fahong Jin, Xinglong Wang
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Publication number: 20020005987Abstract: This invention relates to elements such as birefringent crystals, which are used to separate an input beam into two orthogonally polarized sub-beams or to combine two orthogonally polarized beams into a single beam. The optical device lessens or obviates the optical path length difference encountered in prior art devices and provides a polarization beam splitter/combiner that has substantially same optical path lengths for two split or combined beams propagating therethrough. Furthermore, the device can be operated such that it provides isolation in a reverse direction of operation.Type: ApplicationFiled: December 8, 2000Publication date: January 17, 2002Inventors: Gonzalo Wills, Pierre D. Wall
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Publication number: 20010036330Abstract: This invention relates to elements such as birefringent crystals, which are used to separate a non-collimated input beam into two orthogonally polarized sub-beams or to combine two orthogonally polarized beams into a single beam. The optical device lessens or obviates the optical path length difference encountered in prior art devices and provides a polarization beam splitter/combiner that has substantially same optical path lengths for two split or combined beams propagating therethrough. Alternatively, the device is designed to provide a selected path length difference to compensate for polarization mode dispersion in other optical devices.Type: ApplicationFiled: April 18, 2001Publication date: November 1, 2001Inventors: Vincent Delisle, Gonzalo Wills, Pierre D. Wall, Alan J.P. Hnatiw, Yihao Cheng, Dean Sheldon Spicer, Sheldon McLaughlin