Systems, devices, and/or methods for manufacturing castings
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
B29C-070/34
C08L-063/00
B22C-009/04
B23P-015/24
B29C-033/30
B29C-033/38
C08L-083/04
A61B-006/00
출원번호
US-0121086
(2009-09-24)
등록번호
US-9315663
(2016-04-19)
국제출원번호
PCT/US2009/058220
(2009-09-24)
§371/§102 date
20110425
(20110425)
국제공개번호
WO2010/036801
(2010-04-01)
발명자
/ 주소
Appleby, Michael
Fraser, Iain
Paulus, John
출원인 / 주소
Mikro Systems, Inc.
대리인 / 주소
Michael Haynes PLC
인용정보
피인용 횟수 :
98인용 특허 :
320
초록▼
Certain exemplary embodiments can provide a composition, system, machine, device, manufacture, circuit, and/or user interface adapted for, and/or a method and/or machine-readable medium comprising machine-implementable instructions for, activities that can comprise, after removing a cast device from
Certain exemplary embodiments can provide a composition, system, machine, device, manufacture, circuit, and/or user interface adapted for, and/or a method and/or machine-readable medium comprising machine-implementable instructions for, activities that can comprise, after removing a cast device from a stack-lamination-derived mold, said cast device formed from a molding composition, applying a desired shape to said cast device to form a shaped cast device, said molding composition comprising: a ceramic composition comprising silica; an cycloaliphatic epoxy binder composition, said cycloaliphatic epoxy binder composition present in said molding composition in an amount up to 30% by weight of said molding composition; a silicone composition comprising a siloxane resin, said silicone composition present in said molding composition in an amount up to 30% by weight of said molding composition; and a solvent composition adapted to dissolve said cycloaliphatic epoxy binder composition and said silicone composition.
대표청구항▼
1. A method comprising: after removing a cast device from a stack-lamination-derived mold, said cast device formed from a molding composition, applying a desired shape to said cast device to form a shaped cast device, said molding composition comprising: a ceramic composition comprising a plurality
1. A method comprising: after removing a cast device from a stack-lamination-derived mold, said cast device formed from a molding composition, applying a desired shape to said cast device to form a shaped cast device, said molding composition comprising: a ceramic composition comprising a plurality of crystalline forms of silica, a first crystalline form of silica from the plurality of crystalline forms of silica being cristobalite in an amount greater than 2.5% and less than 10% by weight of the molding composition;an cycloaliphatic epoxy binder composition, said cycloaliphatic epoxy binder composition present in said molding composition in an amount up to 30% by weight of said molding composition;a silicone composition comprising a siloxane resin, said silicone composition present in said molding composition in an amount up to 30% by weight of said molding composition; anda solvent composition adapted to dissolve said cycloaliphatic epoxy binder composition and said silicone compositionwherein: said molding composition, responsive to being cross-linked at a predetermined cross-link temperature, is configured to allow said shaped cast device to be substantially re-shaped upon exposing said shaped cast device to a temperature above said predetermined cross-link temperature; andsaid shaped cast device is configured to be substantially carbon-free after sintering; andsaid shaped cast device having a post-sintering measured apparent porosity of 15 to 35 percent and a predetermined surface characteristic. 2. A method comprising: after removing a cast device from a stack-lamination-derived mold, said cast device comprising a reduced solvent version of a molding composition, applying a desired shape to said cast device to form a shaped cast device, said molding composition comprising:a ceramic composition comprising a plurality of crystalline forms of silica, a first crystalline form of silica from the plurality of crystalline forms of silica being cristobalite in an amount greater than 2.5% and less than 10% by weight of the molding composition;an cycloaliphatic epoxy binder composition, said cycloaliphatic epoxy binder composition present in said molding composition in an amount up to 30% by weight of said molding composition;a silicone composition comprising a siloxane resin, said silicone composition present in said molding composition in an amount up to 30% by weight of said molding composition; anda solvent composition configured to dissolve said cycloaliphatic epoxy binder composition and said silicone composition;wherein: said shaped cast device is configured to be substantially carbon-free after sintering; andsaid shaped cast device having a post-sintering measured apparent porosity of 15 to 35 percent and a predetermined surface characteristic. 3. The method of claim 2, further comprising: firing said shaped cast device. 4. The method of claim 2, further comprising: sintering particles of said ceramic composition in said shaped cast device. 5. The method of claim 2, further comprising: coupling said cast device to a part. 6. The method of claim 2, further comprising: coupling said shaped cast device to a part. 7. The method of claim 2, further comprising: casting investment material around said shaped cast device. 8. The method of claim 2, wherein: said cast device defines a plurality of wall surfaces, a wall surface from said plurality of wall surfaces comprising a plurality of 3-dimensional micro-features that substantially spatially invertedly replicate an ancestor mold surface defined by a plurality of layers of a metallic foil stack lamination ancestor mold, said plurality of 3-dimensional micro-features comprising at least one protruding undercut, said plurality of wall surfaces defining a periphery of a layer-less volume. 9. The method of claim 2, wherein: said shaped cast device defines a plurality of wall surfaces, a wall surface from said plurality of wall surfaces comprising a plurality of 3-dimensional micro-features that substantially spatially invertedly replicate an ancestor mold surface defined by a plurality of layers of a metallic foil stack lamination ancestor mold, said plurality of 3-dimensional micro-features comprising at least one protruding undercut, said plurality of wall surfaces defining a periphery of a layer-less volume. 10. The method of claim 2, further comprising: casting investment material around said shaped cast device to form an investment cast part. 11. The method of claim 2, further comprising: after casting investment material around said shaped cast device to form an investment cast part, removing said shaped cast device from said investment cast part. 12. The method of claim 2, further comprising: casting investment material around said shaped cast device to form an investment cast part, said investment cast part defining a plurality of wall surfaces, a wall surface from said plurality of wall surfaces comprising a plurality of 3-dimensional micro-features that substantially spatially invertedly replicate an ancestor mold surface defined by a plurality of layers of a metallic foil stack lamination ancestor mold, said plurality of 3-dimensional micro-features comprising at least one protruding undercut, said plurality of wall surfaces defining a periphery of a layer-less volume.
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Jang Justin ; Huang Wen C. ; Jang Bor Z., 3-D color model making apparatus and process.
Pellegrino Anthony J. (New Fairfield CT) Lyke Daniel N. (New Milford CT) Lieb David P. (Lexington MA) Buturlia Joseph A. (West Boxford MA) Appleby Michael P. (Charlottesville VA), Air cross grids for mammography and methods for their manufacture and use.
Pellegrino Anthony J. ; Lyke Daniel N. ; Lieb David P. ; Buturlia Joseph A. ; Appleby Michael P., Air cross grids for mammography and methods for their manufacture and use.
Pellegrino Anthony J. ; Lyke Daniel N. ; Lieb David P. ; Buturlia Joseph A. ; Appleby Michael P., Air cross grids for mammography and methods for their manufacture and use.
Tata Kamesh (Schaumburg IL) Bagchi Amit (Seneca SC) Aziz Nadim M. (Clemson SC), Apparatus and method for layered modeling of intended objects represented in STL format and adaptive slicing thereof.
Hull Charles W. (Santa Clarita) Jacobs Paul F. (La Crescenta) Schmidt Kris A. (Granada Hills) Smalley Dennis R. (Baldwin Park) Vinson Wayne A. (Valencia CA), Apparatus for building three-dimensional objects with sheets.
Daniel J. Rader ; John R. Torczynski ; Karl Wally ; John E. Brockmann, Apparatus to collect, classify, concentrate, and characterize gas-borne particles.
Prinz Fritz B. (5801 Northumberland St. Pittsburgh PA 15217) Weiss Lee E. (6558 Darlington Rd. Pittsburgh PA 15217), Automated system for forming objects by incremental buildup of layers.
Stoub Everett W. ; Vogt Reinout F., Collimator and scintillation camera system for use in carrying out attenuation-corrected spect studies of small body or.
Turnbull G. Keith (Pittsburgh PA) Peretic Eileen M. (Murrysville PA) Rogan George T. (New Kensington PA) Powers John H. (Lower Burrell PA) Fugger Scot R. (Monroeville PA) Sullivan ; Jr. Daniel A. (Up, Computer controlled flexible manufacturing of aluminum articles.
Seppi Edward J. (Portola Valley CA) Shapiro Edward G. (Mountain View CA) Anderson Robert L. (Palo Alto CA), Computer tomography apparatus using image intensifier detector.
Harvey Andrew C. ; Jens Stephen C. ; Kingsford Howard A. ; Neumann J. Scott ; Formato Richard M., Continuous molding of fastener products and the like and products produced thereby.
Starkey Donn R. (2507 CR 60 Auburn IN 46706), Epoxy based balancing compound and method for balancing a rotor utilizing an ultraviolet-curable epoxy resin composition.
Morales Alfredo Martin ; Zhang Z. John ; Chinn Douglas, Fabrication of ceramic microstructures from polymer compositions containing ceramic nanoparticles.
Alfredo M. Morales ; Michael R. Winter ; Linda A. Domeier ; Shawn M. Allan ; Dawn M. Skala, Fabrication of metallic microstructures by micromolding nanoparticles.
Haake John M. ; Dhuler Vijayakumar R. ; Wood Robert L., Fiber optic connector having a microelectromechanical positioning apparatus and an associated fabrication method.
Guckel Henry (Madison WI) Christenson Todd R. (Madison WI) Skrobis Kenneth (Madison WI), Formation of microstructures using a preformed photoresist sheet.
Guckel Henry (Madison WI) Christenson Todd R. (Madison WI) Skrobis Kenneth (Madison WI), Formation of microstructures using a preformed photoresist sheet.
Taylor Charles S. (San Francisco CA) Tiffany William B. (Palo Alto CA) Cherkas Paul (Saratoga CA) Frantzen John J. (San Jose CA) Hampton Hilary J. (Santa Clara CA) Nanis Leonard (Palo Alto CA) Shah B, Formation of three dimensional objects and assemblies.
Jens Stephen C. ; Harvey Andrew C. ; Fryklund Gilbert G. ; Filion Scott M. ; Pollard Samuel W. ; Buzzell Keith G. ; Banker Shawn C., Forming mold cavities.
Jens Stephen C. ; Harvey Andrew C. ; Fryklund Gilbert G. ; Filion Scott M. ; Pollard Samuel W. ; Buzzell Keith G. ; Banker Shawn C. ; Kingsford Howard ; Parshley Joseph K. ; Dowd Clinton ; Gallant Ch, Forming mold cavities.
Harald Windel DE; Junming Zhang DE, Ink printer head composed of individual ink printer modules, with an adapter plate for achieving high printing density.
Flesch Aime FR, Integrated connector backings for matrix array transducers, matrix array transducers employing such backings and methods of making the same.
Tadashi Kimura JP; Fumiaki Ueno JP, Manufacturing method for metallic stamper and metallic stamper and, manufacturing method for optical disk substrate with the use of the stamper and optical disk fabricated by the manufacturing method.
Feierabend, Patrick Edward; Martin, Richard Thomas; Summers, Jeffery Frank; Wallis, Andrew Dexter; Rubel, Paul J.; Foster, John Stuart; Stocker, John W, Method and apparatus for assembling an array of micro-devices.
Feierabend,Patrick E.; Foster,John S.; Martin,Richard T.; Rubel,Paul J.; Stocker,John W.; Summers,Jeffery F.; Wallis,Andrew D., Method and apparatus for assembling an array of micro-devices.
Marcus Harris L. (Austin TX) Tompkins James V. (Austin TX) Birmingham Britton R. (Austin TX) Lin Shyh-Nung (Santa Clarita CA) Zong Guisheng (Austin TX), Method and apparatus for direct use of low pressure vapor from liquid or solid precursors for selected area laser deposi.
Weiss Lee E. (6558 Darlington Rd. Pittsburgh PA 15217) Prinz Fritz R. (5801 Northumberland St. Pittsburgh PA 15217) Gursoz E. Levent (4232 Saline St. Pittsburgh PA 15217), Method and apparatus for fabrication of three-dimensional articles by thermal spray deposition.
Prinz Fritz B. (5801 Northumberland St. Pittsburgh PA 15217) Weiss Lee E. (6558 Darlington Rd. Pittsburgh PA 15217), Method and apparatus for fabrication of three-dimensional metal articles by weld deposition.
Michelle D. Guertin ; Charles W. Hull ; Hop D. Nguyen, Method and apparatus for stereolithographically forming three dimensional objects with reduced distortion.
Prinz Fritz (6558 Darlington Rd. Pittsburgh PA 15217) Weiss Lee (5801 Northumberland St. Pittsburgh PA 15217), Method and support structures for creation of objects by layer deposition.
Howe Roger T. (Lafayette CA) Lang Jeffrey H. (Waltham MA) Schlecht Martin F. (Lexington MA) Schmidt Martin A. (Newton Highlands MA) Senturia Stephen D. (Boston MA) Mehregany Mehran (Shaker Heights OH, Method for fabricating side drive electrostatic micromotor.
Prinz Fritz B. (5801 Northumberland St. Pittsburgh) Weiss Lee R. (6558 Darlington Rd. Pittsburgh PA 15217) Adams Duane A. (2325 N. Richmond St. Arlington VA 22207), Method for fabrication of three-dimensional articles by thermal spray deposition using masks as support structures.
Holzrichter John F. (Berkeley CA) Siekhaus Wigbert J. (Berkeley CA), Method for identifying biochemical and chemical reactions and micromechanical processes using nanomechanical and electro.
Wessells Forrest A. (Deltona FL) Murphy Edward T. (Douglasville GA) Tambornini Steven A. (Atlanta GA), Method for preparing relief image printing plates.
Barlier, Claude, Method for producing mechanical parts from an assembly of layers which are turned over during machining, and the elemental laminations and assembled parts produced.
Nguyen Hop D. ; Smalley Dennis R., Method of and apparatus for deriving data intermediate to cross-sectional data descriptive of a three-dimensional object.
Nguyen Hop D. ; Partanen Jouni P., Method of and apparatus for making partially solidified three-dimensional objects on a layer-by-layer basis from a solid.
Hull Charles W. (Santa Clarita CA) Jacobs Paul F. (La Crescenta CA) Schmidt Kris A. (Granada Hills CA) Smalley Dennis R. (Baldwin Park CA) Vinson Wayne A. (Valencia CA), Method of building three dimensional objects with sheets.
deAngelis Alfredo O. (241 Freeman St. #1 Brookline MA 02146), Method of three-dimensional rapid prototyping through controlled layerwise deposition/extraction and apparatus therefor.
Safari Ahmad ; Janas Victor F. ; Bandyopadhyay Amit ; Panda Rajesh K. ; Agarwala Mukesh ; Danforth Stephen C., Methods for producing novel ceramic composites.
Smalley,Dennis R., Methods of and apparatus for electrochemically fabricating structures via interlaced layers or via selective etching and filling of voids.
Ing-Ruey Liaw TW, Methods of manufacture of crown or stack capacitor with a monolithic fin structure made with a different oxide etching rate in hydrogen fluoride vapor.
Bernhard H. Weigl ; Paul Yager ; James P. Brody ; Mark R. Holl ; Fred K. Forster ; Eric Altendorf ; Paul C. Galambos ; Margaret Kenny ; David Schutte ; Gregory Hixson ; Diane Zebert ; Andr, Microfabricated devices and methods.
Alan H. Epstein ; Stephen D. Senturia ; Ian A. Waitz ; Jeffrey H. Lang ; Stuart A. Jacobson ; Fredric F. Ehrich ; Martin A. Schmidt ; G. K. Ananthasuresh ; Mark S. Spearing ; Kenneth S. Breu, Microturbomachinery.
Epstein Alan H. ; Senturia Stephen D. ; Waitz Ian A. ; Lang Jeffrey H. ; Jacobson Stuart A. ; Ehrich Fredric F. ; Schmidt Martin A. ; Ananthasuresh G. K. ; Spearing Mark S. ; Breuer Kenneth S. ; Nagl, Microturbomachinery.
Robert G. Carroll ; Robin A. Wise, Jr., Minimally invasive surgical instrument for tissue identification, dislodgment and retrieval and methods of use.
Provost George A. ; Dowd Clinton ; Van Stumpf James ; Lacey Thomas G. ; Condon Mark Joseph ; Pollard Samuel White ; Jens Stephen C. ; Grulke Peter E., Molding methods, molds and products.
Lacey Thomas G. ; Provost George A. ; Filion Scott M. ; Kaparis Evangelos ; Dowd Clinton ; Van Stumpf James ; Condon Mark Joseph ; Pollard Samuel White ; Jens Stephen C. ; Grulke Peter E., Molding of fastening hooks and other devices.
Carozza Eugene J. (Wilton CT) Frank Gregory R. (Muskegon MI) Caccavale Charles F. (Wharton NJ) Robb Ronald R. (Randolph NJ), Multiple part cores for investment casting.
Musha Toru,JPX ; Yoshizawa Akihiko,JPX ; Imabayashi Hiroyuki,JPX ; Miyajima Hiroshi,JPX, Optical pick-up head and integrated type optical unit for use in optical pick-up head.
Christopher L. Chua ; Eric Peeters ; Koenraad F. Van Schuylenbergh ; Donald L. Smith, Photolithographically-patterned variable capacitor structures and method of making.
Slocum John (Germantown TN) Kiproff Peter N. (Germantown TN) Gibson Daryl (Memphis TN) Merritt Will (Collierville TN), Polymer concrete electrical insulator and method and apparatus for making.
Lanner, David Arthur; Hsieh, Yen-Ping Chin; Zimmerman, Stephen Paul; Teras, Lee Michael; Jones, Charles Edward; Herring, John Russell; Groves, Russell William; Fiteny, Mark Joseph, Process for making tortilla chips with controlled surface bubbling.
Hell Jean-Louis (Gouvieux FRX) Andr Jean-Claude (Nancy FRX) Schaeffer Philippe (Nancy FRX), Process of and apparatus for making three-dimensional objects.
Shaikh Furgan Zafar ; Brogley Martin Andrew ; Burch Craig Edward ; Grab Gerry A. ; Grenkowitz Robert Walter ; Novak Robert Francis ; Rigley Michael Raymond, Rapidly making a contoured part.
Lehmann Volker,DEX ; Keller Wolfgang,DEX, Scattered-ray grid, particularly for a medical X-ray device, and a method of determining the position of the absorption elements of a scattered-ray grid.
Leyden Richard N. ; Thayer Jeffrey S. ; Bedal Bryan J. L. ; Almquist Thomas A. ; Hull Charles W. ; Earl Jocelyn M.,GBX ; Kerekes Thomas A. ; Merot Christian M. ; Fedchenko Richard P. ; Lockard Michae, Selective deposition modeling method and apparatus for forming three-dimensional objects and supports.
Leyden Richard N. ; Thayer Jeffrey S. ; Bedal Bryan J. L. ; Almquist Thomas A. ; Hull Charles W. ; Earl Jocelyn M.,GBX ; Kerekes Thomas A. ; Smalley Dennis R. ; Merot Christian M. ; Fedchenko Richard, Selective deposition modeling method and apparatus for forming three-dimensional objects and supports.
Leyden, Richard N.; Thayer, Jeffrey S.; Bedal, Bryan J. L.; Almquist, Thomas A.; Hull, Charles W.; Earl, Jocelyn M.; Kerekes, Thomas A.; Smalley, Dennis R.; Merot, Christian M.; Fedchenko, Richard P., Selective deposition modeling method and apparatus for forming three-dimensional objects and supports.
Leyden, Richard N.; Thayer, Jeffrey S.; Bedal, Bryan J. L.; Almquist, Thomas A.; Hull, Charles W.; Earl, Jocelyn M.; Kerekes, Thomas A.; Smalley, Dennis R.; Merot, Christian M.; Fedchenko, Richard P., Selective deposition modeling method and apparatus for forming three-dimensional objects and supports.
Lingren Clinton L. ; Friesenhahn Stanley J. ; Butler Jack F. ; Doty F. Patrick ; Ashburn William L. ; Augustine Frank L. ; Apotovsky Boris, Semiconductor gamma-ray camera and medical imaging system.
Stampfl Jurgen ; Cooper Alexander ; Leitgeb Rudolf ; Cheng Yih-Lin ; Prinz Friedrich, Shape deposition manufacturing of microscopic ceramic and metallic parts using silicon molds.
Kruger Theodore R. ; Manners Chris R. ; Nguyen Hop D., Simplified stereolithographic object formation methods of overcoming minimum recoating depth limitations.
Kruger Theodore R. ; Manners Chris R. ; Nguyen Hop D., Simplified stereolithographic object formation methods of overcoming minimum recoating depth limitations.
Chang Wei (Iowa City IA) Kirchner Peter (Iowa City IA) Rezai Karim (Iowa City IA), Single photon emission computed tomograph using focused modular collimators.
Challoner A. Dorian (Manhattan Beach CA) Poeschel Robert L. (Thousand Oak CA), Spacecraft with modulated thrust electrostatic ion thruster and associated method.
Chris R. Manners ; Michelle D. Guertin ; Hop D. Nguyen ; Jouni P. Partanen ; Nansheng Tang ; Michael A. Everett, Stereolithographic method and apparatus for production of three dimensional objects using multiple beams of different diameters.
Everett Michael A. ; Beers Ross D., Stereolithographic method and apparatus with enhanced control of prescribed stimulation production and application.
Danet Bernard (Toulouse FRX) Gantet Pierre (Ramonville Saint Agne FRX) Aragon Bernard (Auzeville FRX) Guiraud Robert (Toulouse FRX), Tomography machine with gamma-ray detection.
Seppi Edward J. (320 Dedalera Dr. Portola Valley CA 94028) Pavkovich John M. (2945 Alexis Dr. Palo Alto CA 94304) Shapiro Edward G. (252 Andsbury Ave. Mountain View CA 94043), X-ray scanner with a source emitting plurality of fan beams.
Henry, Paul Shala; Willis, III, Thomas M.; Barzegar, Farhad; Bennett, Robert; Gerszberg, Irwin; Barnickel, Donald J., Antenna system having structural configurations for assembly.
Henry, Paul Shala; Taylor, William Scott; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J; Willis, III, Thomas M., Antenna system with dielectric array and methods for use therewith.
Henry, Paul Shala; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J.; Willis, III, Thomas M., Apparatus and method for launching electromagnetic waves and for modifying radial dimensions of the propagating electromagnetic waves.
Johnson, Shikik; Henry, Paul Shala; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Willis, III, Thomas M.; Barnickel, Donald J., Apparatus and methods for communicating utilizing an antenna array.
Barzegar, Farhad; Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Willis, III, Thomas M.; Barnickel, Donald J.; Johnson, Shikik, Apparatus and methods for communicating utilizing an antenna array and multiple communication paths.
Henry, Paul Shala; Johnson, Shikik; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Willis, III, Thomas M.; Barnickel, Donald J., Apparatus and methods for generating an electromagnetic wave along a transmission medium.
Vannucci, Giovanni; Wolniansky, Peter; Henry, Paul Shala; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J.; Willis, III, Thomas M., Apparatus and methods for launching electromagnetic waves having a certain electric field structure.
Bennett, Robert; Henry, Paul Shala; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J.; Willis, III, Thomas M., Apparatus and methods for sensing rainfall.
Gerszberg, Irwin; Barzegar, Farhad; Henry, Paul Shala; Bennett, Robert; Barnickel, Donald J; Willis, III, Thomas M., Apparatus for controlling operations of a communication device and methods thereof.
Henry, Paul Shala; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J; Willis, III, Thomas M., At least one transmission medium having a dielectric surface that is covered at least in part by a second dielectric.
Henry, Paul Shala; Barnickel, Donald J.; Barzegar, Farhad; Bennett, Robert; Gerszberg, Irwin; Willis, III, Thomas M., Beam adaptive multi-feed dielectric antenna system and methods for use therewith.
Barnickel, Donald J; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Henry, Paul Shala; Kafka, Henry; Willis, III, Thomas M., Communication system, guided wave switch and methods for use therewith.
Henry, Paul Shala; Taylor, William Scott; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J; Willis, III, Thomas M., Dielectric transmission medium connector and methods for use therewith.
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Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Directional coupling device and methods for use therewith.
Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Guided wave coupler, coupling module and methods for use therewith.
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Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J.; Willis, III, Thomas M., Guided-wave transmission device and methods for use therewith.
Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J.; Willis, III, Thomas M., Guided-wave transmission device with non-fundamental mode propagation and methods for use therewith.
Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Guided-wave transmission device with non-fundamental mode propagation and methods for use therewith.
Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Guided-wave transmission device with non-fundamental mode propagation and methods for use therewith.
Bennett, Robert; Henry, Paul Shala; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Host node device and methods for use therewith.
Bennett, Robert; Henry, Paul Shala; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Host node device and methods for use therewith.
Bennett, Robert; Henry, Paul Shala; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Host node device and methods for use therewith.
Bennett, Robert; Henry, Paul Shala; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Magnetic coupling device and methods for use therewith.
Henry, Paul Shala; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J; Willis, III, Thomas M., Method and apparatus for adjusting a field of a signal to mitigate interference.
Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Method and apparatus for adjusting a mode of communication in a communication network.
Henry, Paul Shala; Barnickel, Donald J; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Willis, III, Thomas M., Method and apparatus for arranging communication sessions in a communication system.
Barnickel, Donald J.; Henry, Paul Shala; Gerszberg, Irwin; Barzegar, Farhad; Willis, III, Thomas M.; Bennett, Robert, Method and apparatus for assessing network coverage.
Gross, David; Lackey, Joshua; Levy, Donald E.; Piqueras Jover, Roger; Ramachandran, Jayaraman; Serban, Cristina, Method and apparatus for authentication and identity management of communicating devices.
Gross, David; Lackey, Joshua; Levy, Donald E.; Piqueras Jover, Roger; Ramachandran, Jayaraman; Serban, Cristina, Method and apparatus for authentication and identity management of communicating devices.
Bogdan, Pamela A. M.; Blandino, George; Liu, Ken; Lubranski, Leon; Myburgh, Eric; Van Brakle, Tracy, Method and apparatus for broadcast communication via guided waves.
Gross, David; Lackey, Joshua; Levy, Donald E.; Jover, Roger Piqueras; Ramachandran, Jayaraman; Serban, Cristina, Method and apparatus for communicating network management traffic over a network.
Gross, David; Lackey, Joshua; Levy, Donald E.; Piqueras Jover, Roger; Ramachandran, Jayaraman; Serban, Cristina, Method and apparatus for communications management in a neighborhood network.
Barnickel, Donald J.; Beattie, Jr., James Gordon; Liu, Ken; Barzegar, Farhad; Gerszberg, Irwin; Bogdan, Pamela A. M.; Pimm, Brandon; Willis, III, Thomas M.; Britz, David M.; Henry, Paul Shala; Bennett, Robert; Zarsky, Dorothy, Method and apparatus for controlling an unmanned aircraft.
Henry, Paul Shala; Barnickel, Donald J; Barzegar, Farhad; Bennett, Robert; Gerszberg, Irwin; Willis, III, Thomas M., Method and apparatus for coupling an antenna to a device.
Liu, Ken; Barzegar, Farhad; Gerszberg, Irwin; Bogdan, Pamela A. M.; Barnickel, Donald J.; Pimm, Brandon; Willis, III, Thomas M.; Britz, David M.; Henry, Paul Shala; Bennett, Robert; Zarsky, Dorothy; Beattie, Jr., James Gordon, Method and apparatus for deploying equipment of a communication system.
Gross, David; Lackey, Joshua; Levy, Donald E.; Jover, Roger Piqueras; Ramachandran, Jayaraman; Serban, Cristina, Method and apparatus for distributing software.
Gross, David; Lackey, Joshua; Levy, Donald E.; Jover, Roger Piqueras; Ramachandran, Jayaraman; Serban, Cristina, Method and apparatus for encryption of communications over a network.
Bennett, Robert; Henry, Paul Shala; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J; Willis, III, Thomas M., Method and apparatus for exchanging communication signals.
Henry, Paul Shala; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J; Willis, III, Thomas M., Method and apparatus for exchanging communication signals.
Henry, Paul Shala; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J; Willis, III, Thomas M., Method and apparatus for launching a wave mode that mitigates interference.
Bennett, Robert; Henry, Paul Shala; Gerszberg, Irwin; Barzegar, Farhad; Willis, III, Thomas M.; Barnickel, Donald J., Method and apparatus for proximity sensing.
Barnickel, Donald J; Barzegar, Farhad; Bennett, Robert; Gerszberg, Irwin; Henry, Paul Shala; Willis, III, Thomas M., Method and apparatus for reducing attenuation of electromagnetic waves guided by a transmission medium.
Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Method and apparatus for responding to events affecting communications in a communication network.
Liu, Ken; Bogdan, Pamela A. M.; Gerszberg, Irwin; Henry, Paul Shala; Bennett, Robert; Barzegar, Farhad; Barnickel, Donald J.; Willis, III, Thomas M., Method and apparatus for tracking via a radio frequency identification device.
Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Method and apparatus for transmitting electromagnetic waves.
Henry, Paul Shala; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J; Willis, III, Thomas M., Method and apparatus for wireless communications to mitigate interference.
Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, Thomas M., Method and apparatus that provides fault tolerance in a communication network.
Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J.; Willis, III, Thomas M., Method and repeater for broadband distribution.
Henry, Paul Shala; Willis, III, Thomas M.; Barzegar, Farhad; Bennett, Robert; Gerszberg, Irwin; Barnickel, Donald J., Methods and apparatus for adjusting an operational characteristic of an antenna.
Henry, Paul Shala; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J; Willis, III, Thomas M., Methods and apparatus for inducing a fundamental wave mode on a transmission medium.
Henry, Paul Shala; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J.; Willis, III, Thomas M., Methods and apparatus for inducing a non-fundamental wave mode on a transmission medium.
Lubranski, Leon; Van Brakle, Tracy; Blandino, George; Gerszberg, Irwin, Methods, devices, and systems for load balancing between a plurality of waveguides.
Bennett, Robert; Henry, Paul Shala; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Network termination and methods for use therewith.
Bennett, Robert; Henry, Paul Shala; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Network termination and methods for use therewith.
Bennett, Robert; Henry, Paul Shala; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Network termination and methods for use therewith.
Henry, Paul Shala; Gerszberg, Irwin; Bennett, Robert; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Node device, repeater and methods for use therewith.
Henry, Paul Shala; Gerszberg, Irwin; Bennett, Robert; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Node device, repeater and methods for use therewith.
Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Passive electrical coupling device and methods for use therewith.
Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J; Willis, III, Thomas M., Passive electrical coupling device and methods for use therewith.
Henry, Paul Shala; Taylor, William Scott; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J.; Willis, III, Thomas M., Plurality of cables having different cross-sectional shapes which are bundled together to form a transmission medium.
Barzegar, Farhad; Barnickel, Jr., Donald J.; Blandino, George; Gerszberg, Irwin; Henry, Paul Shala; Willis, III, Thomas M., Remote distributed antenna system.
Barzegar, Farhad; Henry, Paul Shala; Blandino, George; Gerszberg, Irwin; Barnickel, Donald J.; Willis, III, Thomas M., Remote distributed antenna system.
Bennett, Robert; Barnickel, Donald J; Barzegar, Farhad; Gerszberg, Irwin; Henry, Paul Shala; Willis, III, Thomas M., Surface-wave communications and methods thereof.
Gerszberg, Irwin; Barzegar, Farhad; Henry, Paul Shala; Bennett, Robert; Barnickel, Donald J; Willis, III, Thomas M., System for generating topology information and methods thereof.
Barzegar, Farhad; Gerszberg, Irwin; Bennett, Robert; Henry, Paul Shala, Transmission device with impairment compensation and methods for use therewith.
Barzegar, Farhad; Gerszberg, Irwin; Bennett, Robert; Henry, Paul Shala, Transmission device with impairment compensation and methods for use therewith.
Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J.; Willis, III, Thomas M., Transmission device with mode division multiplexing and methods for use therewith.
Henry, Paul Shala; Bennett, Robert; Gerszberg, Irwin; Barzegar, Farhad; Barnickel, Donald J.; Willis, III, Thomas M., Transmission device with mode division multiplexing and methods for use therewith.
Bennett, Robert; Henry, Paul Shala; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J; Willis, III, Thomas M., Transmission medium and communication interfaces and methods for use therewith.
Bennett, Robert; Henry, Paul Shala; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J; Willis, III, Thomas M., Transmission medium and method for facilitating propagation of electromagnetic waves via a core.
Barzegar, Farhad; Barnickel, Donald J; Bennett, Robert; Gerszberg, Irwin; Henry, Paul Shala; Willis, III, Thomas M., Transmission medium and methods for use therewith.
Henry, Paul Shala; Taylor, William Scott; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J; Willis, III, Thomas M., Transmission medium having a dielectric core comprised of plural members connected by a ball and socket configuration.
Henry, Paul Shala; Taylor, William Scott; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J; Willis, III, Thomas M., Transmission medium having multiple cores and methods for use therewith.
Henry, Paul Shala; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J.; Willis, III, Thomas M.; Guntin, Ed, Waveguide system for slot radiating first electromagnetic waves that are combined into a non-fundamental wave mode second electromagnetic wave on a transmission medium.
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