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Combination cable capable of simultaneous transmission of electrical signals in the radio and microwave frequency range 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G02B-006/44
출원번호 US-0646229 (1991-01-28)
발명자 / 주소
  • Kneeland Foster C. (86 Lawrence St. Haverhill MA 01830)
인용정보 피인용 횟수 : 131  인용 특허 : 0

초록

A compact, flexible, communications cable capable of electrical and optical signal propagation simultaneously is provided. The electrical signal is carried by coaxial inner and outer conductors of metal having suitable conductivity which surround and enclose a centrally disposed optical fiber conduc

대표청구항

Means for connecting together two ends of a signal communications cable comprising the combination of a coaxial cable for transmission and reception of electrical signals and an optical fiber for transmission and reception of optical signals, said optical fiber having a predetermined diameter and be

이 특허를 인용한 특허 (131)

  1. Hazani, Ami; Radian, Eytan, Analog distributed antenna systems (DASS) supporting distribution of digital communications signals interfaced from a digital signal source and analog radio frequency (RF) communications signals.
  2. Darby, John Gregory; Becker, Harold L., Apparatus and method for directionally disposing a flexible member in a pressurized conduit.
  3. Darby, John Gregory; Becker, Harold L., Apparatus and method for directionally disposing a flexible member in a pressurized conduit.
  4. Koertel, Andreas H., Apparatus and method for supplying power over an optical link.
  5. Zediker, Mark S.; Land, Mark S.; Rinzler, Charles C.; Faircloth, Brian O.; Koblick, Yeshaya; Moxley, Joel F., Apparatus for advancing a wellbore using high power laser energy.
  6. Hardt,Falk; R��sch,Thorsten; Jegust,Detlef, Cable connecting device.
  7. Hazani, Ami, Cabling connectivity monitoring and verification.
  8. Paul J. Plishner, Combination multi-conductor/optical fiber connector.
  9. Rickenbach, Robert, Communication cable.
  10. Chamberlain, John Charles; Blew, Douglas, Composite communications cables having a fiber optic component located adjacent an outer surface of the central conductor of a coaxial cable component and related methods.
  11. Flack, Albert J., Concentric connector for electric vehicles.
  12. Hazani, Ami, Connection mapping in distributed communication systems.
  13. DeCusatis,Casimer M.; Quick,John H., Connector assembly with integrated electromagnetic shield.
  14. Zediker, Mark S.; Makki, Siamak; Faircloth, Brian O.; DeWitt, Ronald A.; Allen, Erik C.; Underwood, Lance D., Control system for high power laser drilling workover and completion unit.
  15. Sundar,Vikram C.; Bawendi,Moungi G.; Joannopoulos,John D.; Ibanescu,Mihai, Creating photon atoms.
  16. Beranek, Mark, Dematable expanded beam fiber optic connector.
  17. Cune, William Patrick; Greene, Jason Elliott; Toure', Mohamed Lamin, Deployable wireless infrastructures and methods of deploying wireless infrastructures.
  18. Berlin, Igor; Pikula, Dragan; Sauer, Michael; Schmidt, Gerald B., Determining propagation delay of communications in distributed antenna systems, and related components, systems, and methods.
  19. Berlin, Igor; Pikula, Dragan; Sauer, Michael; Schmidt, Gerald B., Determining propagation delay of communications in distributed antenna systems, and related components, systems, and methods.
  20. Berlin, Igor; Pikula, Dragan; Sauer, Michael; Schmidt, Gerald B., Determining propagation delay of communications in distributed antenna systems, and related components, systems, and methods.
  21. Hashimshony, Dan; Cohen, Gil; Geltner, Iddo, Device for forming an effective sensor-to-tissue contact.
  22. Beamon, Hubert B.; Blackwell, Chois A.; Brower, Boyd Grant, Digital data services and/or power distribution in optical fiber-based distributed communications systems providing digital data and radio frequency (RF) communications services, and related components and methods.
  23. Beamon, Hubert Blair; Blackwell, Jr., Chois Alven; Brower, Boyd Grant, Digital data services and/or power distribution in optical fiber-based distributed communications systems providing digital data and radio frequency (RF) communications services, and related components and methods.
  24. Harel, Dror; Mizrahi, Gavriel, Digital interface modules (DIMs) for flexibly distributing digital and/or analog communications signals in wide-area analog distributed antenna systems (DASs).
  25. Harel, Dror; Mizrahi, Gavriel, Digital-analog interface modules (DAIMs) for flexibly distributing digital and/or analog communications signals in wide-area analog distributed antenna systems (DASs).
  26. Cune, William Patrick; Deutsch, Bernhard Arthur Maria; Greene, Jason Elliott; Knuth, Thomas, Distributed antenna system architectures.
  27. Oren, Yair; Berlin, Igor; Saban, Ofer; Shapira, Isaac; Reuven, Rami, Distributed antenna system for MIMO technologies.
  28. Oren, Yair; Berlin, Igor; Saban, Ofer; Shapira, Isaac; Reuven, Rami, Distributed antenna system for MIMO technologies.
  29. Hazani, Ami; Nisan, Ofer, Distribution of time-division multiplexed (TDM) management services in a distributed antenna system, and related components, systems, and methods.
  30. Hazani, Ami; Nisan, Ofer, Distribution of time-division multiplexed (TDM) management services in a distributed antenna system, and related components, systems, and methods.
  31. Kobyakov, Andrey; Sauer, Michael, Dynamic cell bonding (DCB) for radio-over-fiber (RoF)-based networks and communication systems and related methods.
  32. Kobyakov, Andrey; Sauer, Michael, Dynamic cell bonding (DCB) for radio-over-fiber (RoF)-based networks and communication systems and related methods.
  33. Kobyakov, Andrey; Sauer, Michael, Dynamic cell bonding (DCB) for radio-over-fiber (RoF)-based networks and communication systems and related methods.
  34. Ortiz,Jesus Al; Arnold,Rocky R., Electromagnetic interference shielding of electrical cables and connectors.
  35. Ortiz,Jesus Al; Arnold,Rocky R., Electromagnetic interference shielding of electrical cables and connectors.
  36. Becker, Harold L., Electromagnetic wave treatment method and promoter.
  37. Smith, Trevor D.; Lu, Yu, Enclosure for fiber optic/electrical system.
  38. Shapira, Isaac; Shapira, Yair; Zatloukal, Catherine, Extending outdoor location based services and applications into enclosed areas.
  39. Barnette, Jr., Robert Elvin; Tran, Hieu Vinh, Female hardened optical connectors for use with hybrid receptacle.
  40. Kachmar, Wayne M., Fiber optic cable with electrical conductors.
  41. Benjamin, Seldon David; de Jong, Michael; McClure, Randy LaRue; Schwartz, Howard Clark, Fiber optic connectors and ferrules and methods for using the same.
  42. Rich, Brian Gerald; Evenson, William John, Fiber optic security sensor and system with integrated secure data transmission and power cables.
  43. Rafie Saeed ; Lopez Josephine, Fiber optic well logging cable.
  44. Saeed Rafie ; Josephine Lopez, Fiber optic well logging cable.
  45. Norris, Stephen, Fixing element for a cable system.
  46. Berlin, Igor; Cune, William Patrick; Mizrahi, Gavriel, Flexible head-end chassis supporting automatic identification and interconnection of radio interface modules and optical interface modules in an optical fiber-based distributed antenna system (DAS).
  47. Berlin, Igor; Cune, William Patrick; Mizrahi, Gavriel, Flexible head-end chassis supporting automatic identification and interconnection of radio interface modules and optical interface modules in an optical fiber-based distributed antenna system (DAS).
  48. Hiep V. Nguyen ; Steve Bateman ; Jim Kennedy, HDTV camera cable connector.
  49. Deutch, Paul D.; Marshall, Scott A.; Grubb, Daryl L.; De Witt, Ronald A.; Zediker, Mark S.; Faircloth, Brian O., High power laser decomissioning of multistring and damaged wells.
  50. Linyaev, Eugene J.; Marshall, Scott A.; Grubb, Daryl L.; De Witt, Ronald A.; Deutch, Paul D.; Faircloth, Brian O.; Fraze, Jason D.; Zediker, Mark S., High power laser offshore decommissioning tool, system and methods of use.
  51. George, Jacob; Ng'Oma, Anthony; Sambaraju, Rakesh, Hybrid intra-cell / inter-cell remote unit antenna bonding in multiple-input, multiple-output (MIMO) distributed antenna systems (DASs).
  52. Thelen, Dean Michael; George, Jacob; Zenteno, Luis Alberto; Sauer, Michael; Easton, Martyn N., Hybrid wireless/wired RoF transponder and hybrid RoF communication system using same.
  53. Thelen, Dean Michael; George, Jacob; Zenteno, Luis Alberto; Sauer, Michael; Easton, Martyn N., Hybrid wireless/wired RoF transponder and hybrid RoF communication system using same.
  54. Malach, Adi, IOT automation and data collection system.
  55. Harel, Dror, Individualized gain control of remote uplink band paths in a remote unit in a distributed antenna system (DAS), based on combined uplink power level in the remote unit.
  56. Harel, Dror, Individualized gain control of uplink paths in remote units in a distributed antenna system (DAS) based on individual remote unit contribution to combined uplink power.
  57. Zediker, Mark S.; Grubb, Daryl L.; De Witt, Ronald A.; Deutch, Paul D.; Moxley, Joel F.; Marshall, Scott A.; Linyaev, Eugene J.; Schroit, Sam N.; Kolachalam, Sharath K., Laser systems and methods for the removal of structures.
  58. Yeh, Ming-Hau, Low-cost coaxial cable fed inverted-L antenna.
  59. Zediker, Mark S.; Rinzler, Charles C.; Faircloth, Brian O.; Koblick, Yeshaya; Moxley, Joel F., Method and apparatus for delivering high power laser energy over long distances.
  60. Lee, Donald B.; Ward, Brian Edward; Mitchell, Timothy M., Methods and systems for communicatively coupling vehicles and ground systems.
  61. Lee, Donald B.; Ward, Brian Edward; Mitchell, Timothy M., Methods and systems for communicatively coupling vehicles and ground systems.
  62. Lesesky, Alan C.; Lee, David J.; Stegall, Wally V.; Lesesky, Brian M., Modular connector.
  63. Berlin, Igor; Daniel, Liav Moshe; Henia, Yoni; Reuven, Rami; Yakobi, Motti, Monitoring non-supported wireless spectrum within coverage areas of distributed antenna systems (DASs).
  64. Berlin, Igor; Daniel, Liav Moshe; Henia, Yoni; Reuven, Rami; Yakobi, Motti, Monitoring non-supported wireless spectrum within coverage areas of distributed antenna systems (DASs).
  65. Berlin, Igor; Daniel, Liav Moshe; Henia, Yoni; Reuven, Rami; Yakobi, Motti, Monitoring non-supported wireless spectrum within coverage areas of distributed antenna systems (DASs).
  66. Schwartzman, Ronen; Tzur, Yuval, Multi-band monopole planar antennas configured to facilitate improved radio frequency (RF) isolation in multiple-input multiple-output (MIMO) antenna arrangement.
  67. Logan, Eric Raymond, Multi-port accumulator for radio-over-fiber (RoF) wireless picocellular systems.
  68. Francisco J. Avellanet, Multifilament twisted and drawn tubular element and co-axial cable including the same.
  69. Zhang, Han-Ming, Multifunctional electrical connector.
  70. Rosenfelder, Pinhas Yehuda; Shapira, Carmi, Multiplexing two separate optical links with the same wavelength using asymmetric combining and splitting.
  71. Rosenfelder, Pinhas Yehuda; Shapira, Carmi, Multiplexing two separate optical links with the same wavelength using asymmetric combining and splitting.
  72. Harel, Dror, Offsetting unwanted downlink interference signals in an uplink path in a distributed antenna system (DAS).
  73. Pfleger, Franz, Optical connection verification apparatus and method.
  74. Altshuler, Gregory; Gaal, Christopher; Kozlov, Valery, Optical fiber cable connector.
  75. Zediker, Mark S.; Rinzler, Charles C.; Faircloth, Brian O.; Moxley, Joel F., Optical fiber cable for transmission of high power laser energy over great distances.
  76. Zediker, Mark S.; Rinzler, Charles C.; Faircloth, Brian O.; Moxley, Joel F.; Koblick, Yeshaya, Optical fiber cable for transmission of high power laser energy over great distances.
  77. Rinzler, Charles C.; Zediker, Mark S., Optical fiber configurations for transmission of laser energy over great distances.
  78. Rinzler, Charles C.; Zediker, Mark S., Optical fiber configurations for transmission of laser energy over great distances.
  79. Suzuki, Masayuki, Optical fiber fitting.
  80. Palanisamy, Rajeshkannan; Peters, David Robert; Sadowski, Eric Michael; Sauer, Michael; Webb, Dale Alan, Optical fiber-based distributed antenna systems, components, and related methods for calibration thereof.
  81. Palanisamy, Rajeshkannan; Peters, David Robert; Sadowski, Eric Michael; Sauer, Michael; Webb, Dale Alan, Optical fiber-based distributed antenna systems, components, and related methods for calibration thereof.
  82. Palanisamy, Rajeshkannan; Peters, David Robert; Sadowski, Eric Michael; Sauer, Michael; Webb, Dale Alan, Optical fiber-based distributed antenna systems, components, and related methods for calibration thereof.
  83. Palanisamy, Rajeshkannan; Peters, David Robert; Sadowski, Eric Michael; Sauer, Michael; Webb, Dale Alan, Optical fiber-based distributed antenna systems, components, and related methods for calibration thereof.
  84. Casterline, Raymond Allen; Kapp, Steven Casey; Palanisamy, Rajeshkannan; Sadowski, Eric Michael; Webb, Dale Alan; Webb, Michael Brian, Optical fiber-based distributed antenna systems, components, and related methods for monitoring and configuring thereof.
  85. Daikuhara, Osamu, Optical/electrical composite connector and manufacturing method thereof.
  86. Daikuhara, Osamu, Optical/electrical composite connector and manufacturing method thereof.
  87. Malach, Adi, Optimizing remote antenna unit performance using an alternative data channel.
  88. Malach, Adi, Optimizing remote antenna unit performance using an alternative data channel.
  89. Schlehahn, Alexander; Heindel, Tobias; Rodt, Sven; Reitzenstein, Stephan, Optoelectronic device.
  90. Tanaka, Yoshinori; Ohara, Satoshi, Photoelectric composite connector.
  91. 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.
  92. 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.
  93. 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.
  94. Cune, William Patrick; Sauer, Michael; Schweiker, Wolfgang Gottfried Tobias, Providing digital data services in optical fiber-based distributed radio frequency (RF) communication systems, and related components and methods.
  95. Cune, William Patrick; Sauer, Michael; Schweiker, Wolfgang Gottfried Tobias, Providing digital data services in optical fiber-based distributed radio frequency (RF) communications systems, and related components and methods.
  96. George, Jacob; Sauer, Michael; Thelen, Dean Michael, Radio-over-fiber (ROF) system for protocol-independent wired and/or wireless communication.
  97. George, Jacob; Sauer, Michael; Thelen, Dean Michael, Radio-over-fiber (ROF) system for protocol-independent wired and/or wireless communication.
  98. George, Jacob; Sauer, Michael; Thelen, Dean Michael, Radio-over-fiber (ROF) system for protocol-independent wired and/or wireless communication.
  99. George, Jacob; Sauer, Michael, Radio-over-fiber (RoF) optical fiber cable system with transponder diversity and RoF wireless picocellular system using same.
  100. Sauer, Michael; Vodhanel, Richard S.; Easton, Martyn N.; Chamarti, Aravind; Winters, Jack, Radio-over-fiber (RoF) wireless picocellular system with combined picocells.
  101. George, Jacob; Ng'Oma, Anthony; Yang, Hejie, Reducing location-dependent destructive interference in distributed antenna systems (DASS) operating in multiple-input, multiple-output (MIMO) configuration, and related components, systems, and methods.
  102. George, Jacob; Ng'Oma, Anthony; Yang, Hejie, Reducing location-dependent destructive interference in distributed antenna systems (DASS) operating in multiple-input, multiple-output (MIMO) configuration, and related components, systems, and methods.
  103. George, Jacob; Ng'Oma, Anthony; Yang, Hejie, Reducing location-dependent destructive interference in distributed antenna systems (DASS) operating in multiple-input, multiple-output (MIMO) configuration, and related components, systems, and methods.
  104. George, Jacob; Ng'Oma, Anthony; Yang, Hejie, Reducing location-dependent interference in distributed antenna systems operating in multiple-input, multiple-output (MIMO) configuration, and related components, systems, and methods.
  105. George, Jacob; Ng'Oma, Anthony; Yang, Hejie, Reducing location-dependent interference in distributed antenna systems operating in multiple-input, multiple-output (MIMO) configuration, and related components, systems, and methods.
  106. Daniel, Liav Moshe; Ziv, Roi Yosy, Reducing out-of-channel noise in a wireless distribution system (WDS).
  107. Berlin, Igor; Harris, Dan; Sauer, Michael, Remote antenna clusters and related systems, components, and methods supporting digital data signal propagation between remote antenna units.
  108. Berlin, Igor; Harris, Dan; Sauer, Michael, Remote antenna clusters and related systems, components, and methods supporting digital data signal propagation between remote antenna units.
  109. Anolik, Rami; Hazani, Ami, Remote units for distributed communication systems and related installation methods and apparatuses.
  110. Smith, Trevor D.; Lu, Yu, Ruggedized fiber optic/electrical connection system.
  111. Smith, Trevor D.; Lu, Yu, Ruggedized fiber optic/electrical connection system.
  112. Smith, Trevor D.; Lu, Yu, Ruggedized fiber optic/electrical connection system.
  113. Smith, Trevor D.; Lu, Yu, Ruggedized fiber optic/electrical connector.
  114. Berlin, Igor; Cune, William P.; Greene, Jason E.; Sauer, Michael; Schmidt, Gerald B., Sectorization in distributed antenna systems, and related components and methods.
  115. Berlin, Igor; Cune, William Patrick; Greene, Jason Elliot; Sauer, Michael; Schmidt, Gerald Bernhart, Sectorization in distributed antenna systems, and related components and methods.
  116. Ben-Shlomo, Dror, Separation of communication signal sub-bands in distributed antenna systems (DASs) to reduce interference.
  117. Daane, Laurence A.; Smits, Matthijs P., Stepped connector.
  118. Henia, Yoni, System-wide uplink band gain control in a distributed antenna system (DAS), based on per band gain control of remote uplink paths in remote units.
  119. Henia, Yoni, System-wide uplink band gain control in a distributed antenna system (DAS), based on per-band gain control of remote uplink paths in remote units.
  120. Norton, Ryan J.; McKay, Ryan P.; Fraze, Jason D.; Rinzler, Charles C.; Grubb, Daryl L.; Faircloth, Brian O.; Zediker, Mark S., Systems and assemblies for transferring high power laser energy through a rotating junction.
  121. Gutman, Amit, Systems and methods for simultaneous sampling of serial digital data streams from multiple analog-to-digital converters (ADCS), including in distributed antenna systems.
  122. Gutman, Amit, Systems and methods for simultaneous sampling of serial digital data streams from multiple analog-to-digital converters (ADCs), including in distributed antenna systems.
  123. Berlin, Igor; Cune, William P.; Greene, Jason E., Systems, methods, and devices for increasing radio frequency (RF) power in distributed antenna systems.
  124. Berlin, Igor; Cune, William Patrick; Greene, Jason Elliott, Systems, methods, and devices for increasing radio frequency (RF) power in distributed antenna systems.
  125. Berlin, Igor; Cune, William Patrick; Greene, Jason Elliott, Systems, methods, and devices for increasing radio frequency (RF) power in distributed antenna systems.
  126. Darol Chamberlain ; Gang Chen ; Steven B. Dawes ; Peter J. McNeilly ; Mike X. Ouyang ; Laura A. Weller-Brophy, Thermally tunable optical devices.
  127. Ben-Shlomo, Dror; Shapira, Isaac, Time-division duplexing (TDD) in distributed communications systems, including distributed antenna systems (DASs).
  128. Hashimshony, Dan; Cohen, Gil; Geltner, Iddo, Tissue-characterization probe with effective sensor-to-tissue contact.
  129. George, Jacob; Kobyakov, Andrey; Sauer, Michael, Transponder systems and methods for radio-over-fiber (RoF) wireless picocellular systems.
  130. Reuven, Rami, Voltage controlled optical directional coupler.
  131. Rumsey Roger L., Waterproof high voltage connector.
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