Node device, repeater and methods for use therewith
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
H04B-003/58
H04B-010/29
H01P-005/12
H04B-014/02
H04B-003/52
H02J-013/00
H04B-003/54
H04B-003/56
출원번호
US-0095195
(2016-04-11)
등록번호
US-9806818
(2017-10-31)
발명자
/ 주소
Henry, Paul Shala
Gerszberg, Irwin
Bennett, Robert
Barzegar, Farhad
Barnickel, Donald J
Willis, III, Thomas M.
출원인 / 주소
AT&T INTELLECTUAL PROPERTY I, LP
대리인 / 주소
Guntin, Ed
인용정보
피인용 횟수 :
2인용 특허 :
1589
초록▼
Aspects of the subject disclosure may include, for example, a node device includes an interface configured to receive first signals. A plurality of coupling devices are configured to launch the first signals on a transmission medium as a plurality of first guided electromagnetic waves at correspondi
Aspects of the subject disclosure may include, for example, a node device includes an interface configured to receive first signals. A plurality of coupling devices are configured to launch the first signals on a transmission medium as a plurality of first guided electromagnetic waves at corresponding plurality of non-optical carrier frequencies, wherein the plurality of first guided electromagnetic waves are bound to a physical structure of the transmission medium. Other embodiments are disclosed.
대표청구항▼
1. A repeater comprising: a first coupling device configured to receive a proper subset of a plurality of first guided electromagnetic waves, wherein the plurality of first guided electromagnetic waves has a corresponding plurality of non-optical carrier frequencies and is bound to a non-conductive
1. A repeater comprising: a first coupling device configured to receive a proper subset of a plurality of first guided electromagnetic waves, wherein the plurality of first guided electromagnetic waves has a corresponding plurality of non-optical carrier frequencies and is bound to a non-conductive physical structure of a transmission medium that facilitates wireless connectivity to at least one client device via an antenna, wherein at least one of the plurality of first guided electromagnetic waves propagates longitudinally along the transmission medium via a guided wave mode that is absent from at least one other of the plurality of first guided electromagnetic waves;processing circuitry configured to generate repeated signals based on the proper subset of the plurality of first guided electromagnetic waves; anda second coupling device configured to launch the repeated signals as at least one second guided electromagnetic wave that is bound to the non-conductive physical structure of the transmission medium. 2. The repeater of claim 1, wherein a first portion of the plurality of first guided electromagnetic waves propagates within the non-conductive physical structure and a second portion of the plurality of first guided electromagnetic waves propagates outside the non-conductive physical structure. 3. The repeater of claim 1, wherein the plurality of first guided electromagnetic waves propagates along the non-conductive physical structure without an electrical return path. 4. The repeater of claim 1, the first coupling device is further configured to pass ones of the plurality of first guided electromagnetic waves not included in the proper subset. 5. The repeater of claim 1, wherein the transmission medium is non-conductive and the plurality of first guided electromagnetic waves propagates along the transmission medium without an electrical return path. 6. The repeater of claim 1, wherein the first coupling device is further configured to receive third guided electromagnetic waves from at least one remote device that include control signals, and wherein the repeater selects one of a plurality of repeating modes in response to the control signals. 7. The repeater of claim 6, wherein the third guided electromagnetic waves include data indicating at least one of: a first command for the repeater to repeat the proper subset of the plurality of first guided electromagnetic waves, in accordance with one of the plurality of repeating modes; ora second command for the repeater to not repeat at least one of the plurality of first guided electromagnetic waves, in accordance with another of the plurality of repeating modes. 8. The repeater of claim 6 wherein the processing circuitry includes a controller configured to select one of the plurality of repeating modes in response to the third guided electromagnetic waves. 9. A method comprising: receiving a proper subset of a plurality of guided electromagnetic waves, wherein the plurality of guided electromagnetic waves has a corresponding plurality of non-optical carrier frequencies and is bound to a dielectric structure of a transmission medium, wherein at least one of the plurality of guided electromagnetic waves propagates longitudinally along the transmission medium via a guided wave mode that is absent from at least one other of the plurality of guided electromagnetic waves; andpassing ones of the plurality of guided electromagnetic waves not included in the proper subset along the dielectric structure of the transmission medium to facilitate wireless communication with at least one client device via an antenna. 10. The method of claim 9, wherein a first portion of the plurality of guided electromagnetic waves propagates within the dielectric structure and a second portion of the plurality of guided electromagnetic waves propagates outside the dielectric structure. 11. The method of claim 10, wherein the second portion contains more energy than the first portion. 12. The method of claim 9, wherein the transmission medium is non-conductive and the plurality of guided electromagnetic waves propagates along the transmission medium without an electrical return path. 13. The method of claim 9, further comprising receiving a plurality of other guided electromagnetic waves launched by at least one remote device. 14. A repeater comprising: a first coupling device configured to receive a proper subset of a plurality of first guided electromagnetic waves, wherein the plurality of first guided electromagnetic waves has a corresponding plurality of non-optical carrier frequencies and is bound to a non-conductive physical structure of a transmission medium that facilitates wireless connectivity to at least one client device via an antenna wherein the first coupling device is further configured to receive second guided electromagnetic waves from at least one remote device that include control signals;processing circuitry configured to generate repeated signals based on the proper subset of the plurality of first guided electromagnetic waves and wherein the processing circuitry selects one of a plurality of repeating modes in response to the control signals; anda second coupling device configured to launch the repeated signals as at least one third guided electromagnetic wave that is bound to the non-conductive physical structure of the transmission medium. 15. The repeater of claim 14, wherein a first portion of the plurality of first guided electromagnetic waves propagates within the non-conductive physical structure and a second portion of the plurality of first guided electromagnetic waves propagates outside the non-conductive physical structure. 16. The repeater of claim 14, wherein the plurality of first guided electromagnetic waves propagates along the non-conductive physical structure without an electrical return path. 17. The repeater of claim 14, the first coupling device is further configured to pass ones of the plurality of first guided electromagnetic waves not included in the proper subset. 18. The repeater of claim 14, wherein at least one of the plurality of first guided electromagnetic waves propagates longitudinally along the transmission medium via a guided wave mode that is absent from at least one other of the plurality of first guided electromagnetic waves. 19. The repeater of claim 14, wherein the second guided electromagnetic waves include data indicating at least one of: a first command for the repeater to repeat the proper subset of the plurality of first guided electromagnetic waves, in accordance with one of the plurality of repeating modes; ora second command for the repeater to not repeat at least one of the plurality of first guided electromagnetic waves, in accordance with another of the plurality of repeating modes. 20. The repeater of claim 14, wherein the processing circuitry includes a controller configured to select one of the plurality of repeating modes in response to the second guided electromagnetic waves.
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Kopp,Lowell Ellis, Method and system to increase the throughput of a communications system that uses an electrical power distribution system as a communications pathway.
Stern Berkowitz,Janet; Iacono,Ana Lucia; Zangi,Kambiz Casey, Method for identifying pre-candidate cells for a mobile unit operating with a switched beam antenna in a wireless communication system, and corresponding system.
Lee, Hyun, Method of constructing wireless high speed backbone connection that unifies various wired/wireless network clusters by means of employing the smart/adaptive antenna technique and dynamically creating concurrent data pipelines.
Rhodes David L. (Brick NJ) Lu Xiaojia J. (Nutley NJ) Woolard Dwight L. (Neptune NJ), Method of fabricating an air-filled waveguide on a semiconductor body.
Rodgers, Barry Noel; Haun, Andy Allen; Dwulet, Robert Joseph; Kocher, Mark John; Liptak, Julius Michael; Filippenko, Alexander; Brown, Scott Robert; Kuzkin, Gary Myron; Scott, Gary W., Method of facilitating communications across open circuit breaker contacts.
Adams Lowell J. (North Canton OH) Beard ; Jr. William A. (Uniontown OH) Simshauser Steven C. (Akron OH) Weisend ; Jr. Norbert A. (Cuyahoga Falls OH) Wohlwender Thomas E. (Akron OH), Method of manufacturing a planar coil construction.
Michelson, Steven M; Robinson, Jerry Allen; Russell, Larry Arnise, Method of sizing packets for routing over a communication network for VoIP calls on a per call basis.
Prince Eric T. (Fairport NY) Prospero Sebastian F. (Byron NY) Romach Mark M. (Rochester NY), Method to reduce light propagation losses in optical glasses and optical waveguide fabricated by same.
Gauvin, William Joseph; Taranto, Edward James; Zhou, Steve Y., Method to trickle and repair resources scanned using anti-virus technologies on a security gateway.
Zavidniak,Paul M., Methodology for the detection of intrusion into radio frequency (RF) based networks including tactical data links and the tactical internet.
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.
Richardson,John G.; Nickelson,Reva A.; Sloan,Paul A.; Kostelnik,Kevin M., Methods for indication of at least one subsurface barrier characteristic and methods of use.
Arjavalingam Gnanalingam (Yorktown Heights NY) Deutsch Alina (Chappaqua NY) Kopcsay Gerard V. (Yorktown Heights NY) Tam James K. (Shrub Oak NY), Methods for the measurement of the frequency dependent complex propagation matrix, impedance matrix and admittance matri.
Polk, Robert E.; Svoboda, John M.; West, Phillip B.; Heath, Gail L.; Scott, Clark L., Methods, apparatus, and systems for monitoring transmission systems.
Kshirsagar, Madhukar; Joshi, Ajay, Methods, systems and computer program products for authenticating computer processing devices and transferring both encrypted and unencrypted data therebetween.
Doyle,Ronald P.; Hind,John R.; Narten,Thomas; Peters,Marcia L., Methods, systems and computer program products for detecting a spoofed source address in IP datagrams.
Chawla, Deepak; Beckett, III, William R., Methods, systems, and computer program products for providing a virtual private gateway between user devices and various networks.
Norton, Stephen Pancoast; Burchfield, Chris; Frataccia, Rick J.; Gibson, Sr., Gary O; Prince, David, Methods, systems, and products for intrusion detection.
Reyes Adolfo C. (866 W. Saint Andrews Blvd. ; #1084. Chandler AZ 85224), Microwave integrated circuit passive element structure and method for reducing signal propagation losses.
Letavic Theodore James ; Kim Manjin Jerome, Microwave monolithic integrated circuit with coplaner waveguide having silicon-on-insulator composite substrate.
Yap, Daniel; Schaffner, James H.; Sievenpiper, Daniel F.; Geary, Kevin; Ng, Willie W.; Gregoire, Daniel J.; Colburn, Joseph S., Microwave receiver front-end assembly and array.
Brusgard Thomas C. (Riva MD) McCormick Thomas C. (Linthicum MD) Sijgers Hendrik K. (Reston VA) Smith Corbitt T. (Manhattan Beach CA) Winterble William C. (Columbia MD) Schwerdt Christopher B. (Catton, Millimeter wave and infrared sensor in a common receiving aperture.
Jablonski Daniel G. (Silver Spring MD) Krall Albert D. (Rockville MD), Millimeter wavelength dielectric waveguide having increased power output and a method of making same.
Bennett, Robert; Barnickel, Donald J.; Barzegar, Farhad; Gerszberg, Irwin; Henry, Paul Shala; Willis, III, Thomas M., Millimeter-wave surface-wave communications.
Brown, Elliot R.; Evans, John D.; Bang, Christopher A.; Cohen, Adam L.; Lockard, Michael S.; Smalley, Dennis R.; Grosser, Morton, Miniature RF and microwave components and methods for fabricating such components.
Herman Julius (3906 Bel Pre Road Silver Spring MD 20906), Miniaturized tunable antenna for general electromagnetic radiation and sensing with particular application to TV and FM.
Tyhach, Matthew C.; Colomb, Francois Y., Monolithic microwave integrated circuits (MMICs) having conductor-backed coplanar waveguides and method of designing such MMICs.
Jannson Tomasz P. (Torrance CA) Shirk Kevin W. (Redondo Beach CA) Moslehi Behzad M. R. (Redondo Beach CA) Kim Richard C. (Yorba Linda CA), Multiwavelength data communication fiber link.
Petrelis Peter G. (Huntington Beach CA) Alexander John A. (Rancho Palos Verdes CA), N by M planar configuration switch for radio frequency applications.
Kajiwara, Tomohito, Network communication apparatus and method for performing a T.38 communication function using a voice capability of a gateway apparatus.
Wetherall,David J.; Savage,Stefan R.; Anderson,Thomas E., Network traffic regulation including consistency based detection and filtering of packets with spoof source addresses.
Moshir, Sean; Andrew, Christopher A. H.; Hudler, Jack Lee; Li, Leon; Gordon, Jonathan M.; Bacon, Michael; Williams, Noah; Lane, Jonathan; Horton, James J.; Ferguson, Dan, Non-invasive automatic offsite patch fingerprinting and updating system and method.
Lucas Eric W. (Ellicott City MD) Mongilio Michael A. (Columbia MD) Leader Kenneth M. (Glen Burnie MD) Stieneke Charles P. (Cary NC) Cassen John W. (Sykesville MD), Notch radiator elements.
Siles Perez, Jose Vicente; Chattopadhyay, Goutam; Lee, Choonsup; Schlecht, Erich T.; Jung-Kubiak, Cecile D.; Mehdi, Imran, On-chip power-combining for high-power schottky diode based frequency multipliers.
Oates Robert M. (Murrysville PA) Cooper Herbert C. (North Huntingdon PA) Houser Kirk D. (Ross Township ; Allegheny County PA), Optical data distribution network with listen-while-talk capabilities.
Palanisamy, Rajeshkannan; Peters, David R.; Sadowski, Eric M.; Sauer, Michael; Webb, Dale A., Optical fiber-based distributed antenna systems, components, and related methods for calibration thereof.
Camiade,Marc; Domnesque,Denis; Beilenhoff,Klaus, Packaged electronic components for producing a sub-harmonic frequency signal at millimetric frequencies.
Fitzsimmons George W. (Kent WA) Lamberty Bernard J. (Kent WA) Vertatschitsch Edward J. (Bothell WA) Riemer Dietrich E. (Auburn WA) Harvey Donn T. (Issaquah WA), Packaging architecture for phased arrays.
Litchford George B. (Northport NY) Keller John (Huntington NY), Passive secondary surveillance radar using signals of remote SSR and multiple antennas switched in synchronism with rota.
Wong Mon N. (Torrance CA) Patin Robert J. (Hawthorne CA) Trese Brennan J. (Los Angeles CA) Raghavan Krishnan K. (Redondo Beach CA), Patch antenna with polarization uniformity control.
Takano Masataka (Yokohama JPX) Oka Yoji (Yokohama JPX) Takase Akihiko (Tokyo JPX) Takahashi Setsuo (Yokohama JPX), Path changing system and method for use in ATM communication apparatus.
Amitay Noach (Tinton Falls NJ) Gans Michael J. (Monmouth Beach NJ), Phased array antenna employing linear scan for wide-angle arc coverage with polarization matching.
Vail, David Kenyon; Tabor, Frank J.; Blom, Daniel P.; Wilson, Stephen S., Phased array antenna providing enhanced element controller data communication and related methods.
Jelinek Carl O. (Camarillo CA) Drago ; Jr. Daniel W. (Camarillo CA) Dempsey Richard C. (Chatsworth CA), Phased array antenna system using polarization phase shifting.
Heidler, Christian; Hull, Jonathan Richard; Kedziora, Jessica Joy; Sauer, Michael; Schweiker, Wolfgang Gottfried Tobias, Power management for remote antenna units in distributed antenna systems.
Granville J. Michael (9701 Wilshire Blvd. ; #850 Beverly Hills CA 90212) Costa Robert E. (8435 Sale Ave. Canoga Park CA 91304) Chu Sam Y. (23684 Justice St. Canoga Park CA 91304), Power transmission line monitoring system.
Roe, Jr., George Samuel; Price, Jr., Henry Winfield; Matthews, Mylene Farenas, Process for remote grounding, transmission sensing, and temperature monitoring device.
Berlin, Igor; Cune, William Patrick; Greene, Jason Elliott; Heidler, Christian; Register, III, James Arthur; Schweiker, Wolfgang Gottfried Tobias, Providing digital data services as electrical signals and radio-frequency (RF) communications over optical fiber in distributed communications systems, and related components and methods.
Herbsommer, Juan Alejandro; Payne, Robert Floyd; Schuppener, Gerd; Haroun, Baher, Radiating sub-terahertz signal from tapered metallic waveguide into dielectric waveguide.
Brady Michael John ; Duan Dah-Weih ; Kodukula Venkata S. R. ; Martinez Rene D. ; Moskowitz Paul Andrew ; Murphy Philip, Radio frequency identification transponder having a high gain antenna configuration.
Saban, Ofer; Shapira, Isaac, Radio-frequency integrated circuit (RFIC) chip(s) for providing distributed antenna system functionalities, and related components, systems, and methods.
Sheen David M. (1917 Hood Richland WA 99352) Collins H. Dale (1751 Duluth Richland WA 99352) Hall Thomas E. (8301 W. Entiat Pl. Kennewick WA 99336) McMakin Douglas L. (2173 Shasta Ave. Richland WA 99, Real-time wideband holographic surveillance system.
Bresciani, Daniele; Legay, Hervé; Caille, Gérard; Labiole, Eric, Reflector array antenna with crossed polarization compensation and method for producing such an antenna.
Rakib, Selim Shlomo, Remote control for wireless control of system including home gateway and headend, either or both of which have digital video recording functionality.
Mosebrook Donald R. ; Houggy David E. ; Palmer ; Jr. Robert G. ; Spira Joel S., Repeater for transmission system for controlling and determining the status of electrical devices from remote locations.
Judd, Mano D.; Lovinggood, Breck W.; Tennant, David T.; Maca, Gregory A.; Kuiper, William P.; Alford, James L.; Thomas, Michael D.; Veihl, Jonathon C., Repeaters for wireless communication systems.
Kajitani, Yuki; Abe, Hiroaki; Arai, Toshimasa; Harada, Asuro; Yamaguchi, Yasuhiro; Jimbo, Kazuya, Rerouting method for a PVC route on an ATM network and a network management system using the rerouting method.
Chiang, Bing A.; Cha, Inhyok; Lynch, Michael J.; Gorsuch, Thomas E., Satellite communication subscriber device with a smart antenna and associated method.
Katar, Srinivas; Yonge, III, Lawrence W.; Newman, Richard E., Secure client authentication and service authorization in a shared communication network.
Britz, David M.; Miller, II, Robert Raymond; Shankaranarayanan, Nemmara K., Secure open-air communication system utilizing multi-channel decoyed transmission.
Sistanizadeh Kamran ; Seazholtz John W. ; Lawrence William F., Shared use video processing systems for distributing program signals from multiplexed digitized information signals.
Prasad, Sunil; Dianda, Janet Ruth, Signal conditioner and method for communicating over a shared transport medium a combined digital signal for wireless service.
Claret, Jorge Vicente Blasco; Moreno, Josa Luis Gonzalez; Soriano, Jose Luis Camps; Molina, Antonio Pairet, Signal repeater and method for matching an output impedance of the signal repeater, which amplifies a signal on an electrical line of an electrical grid, to an impedance of a load.
Jochim, Kenneth J.; Polson, Jerry H., Signal translating repeater for enabling a terrestrial mobile subscriber station to be operable in a non-terrestrial environment.
Jean, Leonard P.; Boisclair, Brian; Argyle, Jared; Biddle, Bob; Laughlin, Edward; Philbrick, Javier, Stringing messenger clamp and methods of using the same.
Tyler, Richard M.; McKenna, Daniel B.; Graziano, James M., Sub-network load management for use in recharging vehicles equipped with electrically powered propulsion systems.
Kushihi, Yuichi, Surface mount antenna, method of manufacturing the surface mount antenna, and radio communication apparatus equipped with the surface mount antenna.
Johnson, Harold W.; Euler, Timothy D., Surface wave communications between a remote antenna and a base station that is co-located with another base station.
Ziegner, Bernhard Alphonso; Sletten, Robert John; Brown, Stephen R.; Cho, May Kyi; Kinayman, Noyan, Surface-mounted millimeter wave signal source with ridged microstrip to waveguide transition.
Bennett, Robert; Barnickel, Donald J; Barzegar, Farhad; Gerszberg, Irwin; Henry, Paul Shala; Willis, III, Thomas M., Surface-wave communications and methods thereof.
Bennett, Robert; Barnickel, Donald J; Barzegar, Farhad; Gerszberg, Irwin; Henry, Paul Shala; Willis, III, Thomas M., Surface-wave communications and methods thereof.
Swanson, David C.; Nicholas, Nicholas C.; Rigsby, David, System and method for detecting, localizing, or classifying a disturbance using a waveguide sensor system.
Truong, Kien Trung; Kwon, Young Hoon; Sartori, Philippe; Al-Shalash, Mazin, System and method for distributed power control in a communications system.
Hendrickson, Keith; Maguy, William; Prehn, Paul; Stamos, Nick; Su, Annie, System and method for measuring wireless device and network usage and performance metrics.
Venkatraman, Shankar; Sheikh, Khurram P., System and method for performance enhancement in heterogeneous wireless access network employing band selective power management.
Venkatraman, Shankar; Sheikh, Khurram P., System and method for performance enhancement in heterogeneous wireless access network employing distributed antenna system.
Wang, Yi-Min; Sun, Qixiang; Simon, Daniel R.; Russell, Wilfred, System and method for protecting privacy and anonymity of parties of network communications.
Addepalli, Sateesh K.; Moghe, Ashok K.; Dai, Lillian Lei; Falaki, Mohammand H., System and method for providing resource sharing, synchronizing, media coordination, transcoding, and traffic management in a vehicular environment.
Bertoncini, Crystal A.; Rudd, Kevin E.; Nousain, Bryan D.; Hinders, Mark K., System and method for radio-frequency fingerprinting as a security layer in RFID devices.
Benitez Pelaez,Mariana; Verma,Kamal K.; Verma,Charu; Halsell,Victoria M., System and method for routing calls in a wireless network using a single point of contact.
Karen L. Kidder ; James M. Haring ; Reid J. Bishop ; James D. Trent ; Lan D. Pham, System for automated workflow in a network management and operations system.
Bhatnagar, Piyush; Reddy, Sridnar, System, design and process for strong authentication using bidirectional OTP and out-of-band multichannel authentication.
King, Graham, System, method, and computer program product for connecting or coupling analog audio tone based communications systems over a packet data network.
Dow, Christopher; Grab, Eric; Klappert, Walt; Theberge, Jim; Stathacopoulos, Paul T., Systems and methods for adaptively transmitting media and advertising content.
Martin, G. Patrick; Minear, Kathleen, Systems and methods for compensating for transmission phasing errors in a communications system using a receive signal.
Haensgen, Gregg James; Banting, John Fredrick; Hoeppner, Bruce; Lucas, Richard William, Systems and methods for energy harvesting and current and voltage measurements.
van der Linden, Rob; Halls, David; Waterhouse, Simon; Benoit, Peter, Systems and methods for establishing a cloud bridge between virtual storage resources.
Kokernak, Michael; Noland, Madeleine; Campbell, Colin; Bechtel, Gordon, Systems and methods for providing a network link between broadcast content and content located on a computer network.
Berlin, Igor; Cune, William P.; Greene, Jason E., Systems, methods, and devices for increasing radio frequency (RF) power in distributed antenna systems.
Kerstens Pieter J. (Beacon NY) Mandeville Jon R. (Redmond WA) Wu Frederick Y. (Cos Cob CT), Tandem linear scanning confocal imaging system with focal volumes at different heights.
Rousselle, Adam Robert; Lepppanen, Vesa Johannes; Brzys, Kevin; Clymer, Hugh Andrew; Smith, Dawn Marie, Thermal powerline rating and clearance analysis using thermal imaging technology.
Leicht John L. (Hawthorn Woods IL) Malone Hugh R. (Phoenix AZ) Mathews Douglas J. (Mesa AZ) Mitzlaff James E. (Arlington Heights IL) Munier Scott D. (Arlington Heights IL) Oehlerking Michele G. (Rive, Three-dimensional microwave circuit carrier and integral waveguide coupler.
Free, M. Benton; Geaghan, Bernard O.; Hauck, Karl P.; Weaver, Billy Lee, Touch location sensing system and method employing sensor data fitting to a predefined curve.
Otsuka,Kanji; Usami,Tamotsu; Ueda,Chihiro; Akiyama,Yutaka; Koyasu,Osamu, Transmission cable structure for GHz frequency band signals and connector used for transmission of GHz frequency band signals.
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.
Fernandes Roosevelt A. (Liverpool NY) Sieron Richard L. (Fairfield CT), Transmission line sensor apparatus operable with near zero current line conditions.
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.
Cohen, Alexander J.; Jung, Edward K. Y.; Levien, Royce A.; Lord, Robert W.; Malamud, Mark A.; Mangione-Smith, William Henry, Transmitting aggregated information arising from appnet information.
Tujino Hiroyuki ; Mine Yoshitaka,JPX ; Sasaki Takuya,JPX, Ultrasound diagnosis apparatus for generating an image based on extracted harmonics component.
Barendregt Albertus J. (Diepenheim NLX) Van Der Kemp Marcellis J. A. (Hengelo NLX), Universal waveguide joint, flexible coupler, and arrangement for a surveillance radar antenna.
Mason, Jr.,Robert T; Borleske,Andrew J; Shuey,Kenneth C, Using a fixed network wireless data collection system to improve utility responsiveness to power outages.
Miller, II, Robert R.; Worstell, Harry R., Using an electric power cable as the vehicle for communicating an information-bearing signal through a barrier.
Lee Jar J. (Irvine CA) Livingston Stan W. (Fullerton CA), Wide band dipole radiating element with a slot line feed having a Klopfenstein impedance taper.
Barnett Larry R. (Manassas VA) Lau Yue-Ying (Silver Spring MD) Chu Kwo R. (Annandale VA) Granatstein Victor L. (Silver Spring MD), Wide-band distributed rf coupler.
Lau Yue-Ying (10612 Edgewood Ave. Silver Spring MD 20906) Chu Kwo R. (4916 Andrea Ave. Annandale VA 22003) Granatstein Victor L. (12816 Bluet Lane Silver Spring MD 20906) Barnett Larry R. (8221 Erika, Wide-band gyrotron traveling-wave amplifier.
Quan, Clifton; Lee, Jar J.; Pierce, Brian M.; Allison, Robert C., Wideband 2-D electronically scanned array with compact CTS feed and MEMS phase shifters.
Le, Kevin; Meyer, Louis J., Wideband dual polarized base station antenna offering optimized horizontal beam radiation patterns and variable vertical beam tilt.
Rawnick James J. ; Stutzman Warren L. ; Nealy J. Randall, Wideband phased array antenna employing increased packaging density laminate structure containing feed network, balun and power divider circuitry.
Takahashi, Kazuaki; Orihashi, Masayuki; Fujita, Suguru, Wireless communication device and method for displaying estimated direction and position of a target for wireless communication.
Iacono,Ana Lucia; Stern Berkowitz,Janet, Wireless communication method and apparatus for selecting and reselecting cells based on measurements performed using directional beams and an omni-directional beam pattern.
Crilly, Jr., William J.; Biba, Ken; Conley, Robert J., Wireless packet switched communication systems and networks using adaptively steered antenna arrays.
Husain, Syed Mohammad Amir; Printz, Randy P.; Mellacheruvu, Rajesh K., Zero client device with integrated serial bandwidth augmentation and support for out-of-band serial communications.
Vannucci, Giovanni; Wolniansky, Peter; Henry, Paul Shala; Bennett, Robert; Barzegar, Farhad; Gerszberg, Irwin; Barnickel, Donald J.; Willis, III, Thomas M., Apparatus and methods for measuring signals.
Henry, Paul Shala; Gerszberg, Irwin; Bennett, Robert; Barzegar, Farhad; Barnickel, Donald J.; Willis, III, Thomas M., Node device, repeater and methods for use therewith.
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