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Ultra-wideband receiver 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H04K-001/00
출원번호 US-0044745 (1993-04-12)
발명자 / 주소
  • McEwan Thomas E. (Livermore CA)
출원인 / 주소
  • The Regents of the University of California (Oakland CA 02)
인용정보 피인용 횟수 : 126  인용 특허 : 0

초록

An ultra-wideband (UWB) receiver utilizes a strobed input line with a sampler connected to an amplifier. In a differential configuration, ±UWB inputs are connected to separate antennas or to two halves of a dipole antenna. The two input lines include samplers which are commonly strobed by a gating p

대표청구항

An ultra-wideband (UWB) receiver, comprising: a differencing amplifier having a pair of inputs; an input channel connected to one input of the amplifier; a second input channel connected to the other input of the amplifier; strobing means connected to both input channels to simultaneously strobe bot

이 특허를 인용한 특허 (126)

  1. Kolar Anton J. ; Paese Andrew J. ; Richter-O'Connell David J. ; Tervo Steven M. ; Thomas Carter J. ; Burnett William R. ; Shafer David C. ; Heinzmann Fred Judson, Advanced touchless plumbing systems.
  2. McCorkle,John W., Analog signal separator for UWB versus narrowband signals.
  3. McCorkle,John W., Analog signal separator for UWB versus narrowband signals.
  4. Tupin, Jr., Joe Paul; Tupin, Joe Paul; Murray, Jr., Kenneth Arlan; Tupin, John David, Apparatus and method for continuous noninvasive measurement of respiratory function and events.
  5. Otto, Johanngeorg; Lubcke, Wolfgang, Arrangement for measuring the level of contents in a container.
  6. Wynbeek, John C., Asymmetric wireless communication system using two different radio technologies.
  7. Carpenter Kipley Tad, Automated data storage library with wireless robotic positioning system.
  8. Carpenter, Kipley Tad, Automated data storage library with wireless robotic positioning system.
  9. Jett, Preston; Larson, Lawrence E.; Pollack, Bret A.; Rowe, David A., Baseband signal converter for a wideband impulse radio receiver.
  10. Preston Jett ; Lawrence E. Larson ; Bret A. Pollack ; David A. Rowe, Baseband signal converter for a wideband impulse radio receiver.
  11. Paese Andrew J. ; Tervo Steven M. ; Thomas Carter J. ; Burnett William R. ; Shafer David C. ; Heinzmann Fred Judson, Bathroom fixture using radar detector having leaky transmission line to control fluid flow.
  12. Wiklund, David E.; Krouth, Terrance F.; Broden, David A.; Schumacher, Mark S., Bi-directional differential pressure flow sensor.
  13. McCorkle, John W.; Miller, Timothy R.; Rofheart, Martin, Carrierless ultra wideband wireless signals for conveying application data.
  14. Rofheart, Martin; McCorkle, John W.; Miller, Timothy R., Carrierless ultra wideband wireless signals for conveying data.
  15. Holzrichter,John F.; Ng,Lawrence C., Characterizing, synthesizing, and/or canceling out acoustic signals from sound sources.
  16. McEwan Thomas E., Charge transfer wideband sample-hold circuit.
  17. Michalski, Bernhard, Circuit arrangement.
  18. Laletin, William H., Controller for generating a periodic signal with an adjustable duty cycle.
  19. Laletin, William H., Controller for generating a periodic signal with an adjustable duty cycle.
  20. Naegle, Nathaniel D.; Sprenger, Mark E.; Gwin, Paul J., Determination of mobile display position and orientation using micropower impulse radar.
  21. Hyde, Roderick A.; Sweeney, Elizabeth A.; Wood, Jr., Lowell L., Devices and methods for remote hydration measurement.
  22. Hyde, Roderick A; Sweeney, Elizabeth A.; Wood, Jr., Lowell L., Devices and methods for remote hydration measurement.
  23. Denzin Peter W. ; Merritt Michael J. ; Heinzmann Fred Judson ; Petrich Kyle L.,HKX ; Schlee Jennifer A. ; Larkin John F. ; Lincicum Erik C. ; Sorensen Peter O., Devices and methods for toilet ventilation using a radar sensor.
  24. Subramanya, Balu, Directional speed and distance sensor.
  25. Subramanya, Balu, Directional speed and distance sensor.
  26. Subramanya, Balu, Directional speed and distance sensor.
  27. Subramanya, Balu, Directional speed and distance sensor.
  28. Heger Charles E. ; Long James C. ; Marshall Noel H. C. ; Dodd Paul W., Dual transmitter visual display system.
  29. McCorkle, John W., Electrically small planar UWB antenna apparatus and related system.
  30. Sage William L., Electronic control system and collision avoidance system for an electric cart.
  31. Murray,John C, Electronic multi-depth object locator with self-illuminating optical element warning and detection.
  32. McEwan Thomas E. (Livermore CA), Electronic multi-purpose material level sensor.
  33. Jouas Gary ; Deluca Guy ; Tassicker Phillip G.,AUX ; Streich Herbert K., Electronically-controlled heater.
  34. Tupin, Jr., Joe Paul; Tupin, Joe Paul; Stephansen, IV, Stephan, Fetal monitoring device and methods.
  35. Walker,Michael L.; Rogerson,Gerald D.; Gehring,Stephan W., Flexible method and apparatus for encoding and decoding signals using a time division multiple frequency scheme.
  36. McEwan Thomas E. (Livermore CA), High accuracy electronic material level sensor.
  37. Horan, Douglas F., High dynamic range recording and playback for multilevel storage using differential sampling.
  38. Thomas N. Hilleary, Highway grade crossing vehicle violation detector.
  39. Thomas E. McEwan, Homodyne swept-range radar.
  40. Krouth, Terrance F.; Wiklund, David E.; Habegger, Richard J.; Hineman, Richard R., Hydraulic actuator piston measurement apparatus and method.
  41. Brown, Gregory C., Hydraulic piston position sensor.
  42. Brown, Gregory C.; Richter, Brian E., Hydraulic piston position sensor.
  43. Brown, Gregory C.; Johnson, James A.; Lovegren, Eric R., Hydraulic piston position sensor signal processing.
  44. Laletin,William H., Input filter circuit for an operational amplifier.
  45. Reimelt, Ralf, Level measuring instrument.
  46. McEwan, Thomas E., Loop powered radar rangefinder.
  47. Puglia Kenneth Vincent, Low cost-high resolution radar for commercial and industrial applications.
  48. Walker,Michael L.; Furuno,David S.; Gehring,Stephan W.; Rogerson,Gerald D.; Lin,Susan C., Method and apparatus for adapting multi-band ultra-wideband signaling to interference sources.
  49. Gehring,Stephan W.; Ellis,Jason L.; Lin,Susan C.; Rogerson,Gerald D., Method and apparatus for adapting signaling to maximize the efficiency of spectrum usage for multi-band systems in the presence of interference.
  50. Richards,James L.; Fullerton,Larry W., Method and apparatus for converting RF signals to baseband.
  51. Rogerson, Gerald D.; Ellis, Jason L.; Furuno, David S.; Walker, Michael L.; Gehring, Stephan W., Method and apparatus for data transfer using a time division multiple frequency scheme.
  52. Rogerson, Gerald D.; Furuno, David S.; Gehring, Stephan W.; Walker, Michael L.; Aiello, Roberto, Method and apparatus for data transfer using a time division multiple frequency scheme supplemented with polarity modulation.
  53. Rogerson,Gerald D.; Furuno,David S.; Gehring,Stephan W.; Walker,Michael L.; Aiello,Roberto, Method and apparatus for data transfer using a time division multiple frequency scheme supplemented with polarity modulation.
  54. Rogerson, Gerald D.; Furuno, David S.; Gehring, Stephan W.; Walker, Michael L.; Ellis, Jason L., Method and apparatus for data transfer using a time division multiple frequency scheme with additional modulation.
  55. Rogerson,Gerald D.; Ellis,Jason L.; Furuno,David S.; Walker,Michael L.; Gehring,Stephan W., Method and apparatus for data transfer using wideband bursts.
  56. Chan Danley C. ; Berger Alan D., Method and apparatus for sensing piston position.
  57. Chan Danley C. ; Berger Alan D., Method and apparatus for sensing piston position.
  58. Chan Danley C. ; Berger Alan D., Method and apparatus for sensing piston position using a dipstick assembly.
  59. Chan Danley C. ; Berger Alan D., Method and apparatus for sensing the orientation of a mechanical actuator.
  60. McCorkle, John W., Method and system for performing distance measuring and direction finding using ultrawide bandwidth transmissions.
  61. McCorkle, John W., Method and system for performing distance measuring and direction finding using ultrawide bandwidth transmissions.
  62. McCorkle, John W.; Rofheart, Martin, Method for conveying application data with carrierless ultra wideband wireless signals.
  63. Lehmann,Nikolaus H.; Halmovich,Alexander M., Methods and apparatus for transmitting and receiving randomly inverted wideband signals.
  64. Kavaler, Robert, Micro-radar, micro-radar sensor nodes, networks and systems.
  65. Hayden, Douglas Todd, Narrow-band detections of a received signal.
  66. Joe, Jurianto, PSK transmitter and correlator receiver for UWB communications system.
  67. Perdue Kenneth Lee ; McCarthy William Patrick ; Cummings Donald D. ; Wartmann Gerd, Partial probe mapping.
  68. Perdue Kenneth L. ; McCarthy William Patrick ; Cummings Donald D. ; Wartmann Gerd, Periodic probe mapping.
  69. Likins ; Jr. Garland E. ; Rausche Frank ; Goble George ; Shafer Ned, Pile installation recording system.
  70. Wiklund, David E.; Krouth, Terrance F.; Habegger, Richard J.; Hineman, Richard R., Piston position measuring device.
  71. John W. McCorkle, Planar ultra wide band antenna with integrated electronics.
  72. Taki, Kazunari; Ohashi, Tsuyoshi; Nagai, Takuya, Position detecting system, responder and interrogator, wireless communication system, position detecting method, position detecting program, and information recording medium.
  73. McCarthy, William Patrick; Perdue, Kenneth L.; Cummings, Donald D.; Wartmann, Gerd, Probe mapping diagnostic methods.
  74. Perdue Kenneth Lee ; Swager Richard B., Processor apparatus and method for a process measurement signal.
  75. Frink Bentley D., Pulse radar device and method.
  76. Dress, Jr., William B.; Smith, Stephen F., Pulse transmission receiver with higher-order time derivative pulse generator.
  77. Dress, Jr., William B.; Smith, Stephen F., Pulse transmission transceiver architecture for low power communications.
  78. Dress, Jr., William B.; Smith, Stephen F., Pulse transmission transmitter including a higher order time derivate filter.
  79. Laletin,William H., Pulse width controller circuit for generating a periodic digital output signal.
  80. McEwan, Thomas Edward, RF magnitude sampler for holographic radar.
  81. Andrew J. Paese ; Steven M. Tervo ; Carter J. Thomas ; William R. Burnett ; David C. Shafer ; Fred Judson Heinzmann, Radar devices for low power applications and bathroom fixtures.
  82. Paese Andrew J. ; Tervo Steven M. ; Thomas Carter J. ; Burnett William R. ; Shafer David C. ; Heinzmann Fred Judson, Radar devices for low power applications and bathroom fixtures.
  83. Paese, Andrew J.; Tervo, Steven M.; Thomas, Carter J.; Burnett, William R.; Shafer, David C.; Heinzmann, Fred Judson, Radar devices for low power applications and bathroom fixtures.
  84. Bandhauer, Brian D., Radar echolocater with audio output.
  85. Eriksson,Mikael, Radar level gauge with switch for selecting transmitter or receiver mode.
  86. McDonald Kevin B. ; Barrows Charles R. ; Bigelow Stephen K. ; McCoy Steven J., Range-gated radar motion detector.
  87. Grieger Bernd, Sensor apparatus.
  88. Grieger Bernd D. ; Cummings Donald D., Sensor apparatus for process measurement.
  89. Grieger Bernd D. ; Cummings Donald D., Sensor apparatus for process measurement.
  90. Donald V. Eason, Sensor apparatus for transmitting electrical pulses from a signal line into and out of a vessel to measure a process variable-in order to be more informative.
  91. Fleming Robert Alan ; Kushner Cherie Elaine, Spread spectrum localizers.
  92. Fleming Robert Alan ; Kushner Cherie Elaine, Spread spectrum localizers.
  93. Fleming, Robert Alan; Kushner, Cherie Elaine, Spread spectrum localizers.
  94. Robert Alan Fleming ; Cherie Elaine Kushner, Spread spectrum localizers.
  95. Robert Alan Fleming ; Cherie Elaine Kushner, Spread spectrum localizers.
  96. Heger Charles E., Swept range gate radar system for detection of nearby objects.
  97. Holzrichter, John F.; Burnett, Greg C.; Ng, Lawrence C., System and method for characterizing synthesizing and/or canceling out acoustic signals from inanimate sound sources.
  98. Holzrichter, John F.; Burnett, Greg C.; Ng, Lawrence C., System and method for characterizing, synthesizing, and/or canceling out acoustic signals from inanimate sound sources.
  99. Tupin, Jr., Joe Paul; Van Rooyen, Robert Martinez; Rollins, Richard Jensen, System and method for extracting physiological data using ultra-wideband radar and improved signal processing techniques.
  100. Jesmonth, Richard E., System and method for generating three-dimensional density-based defect map.
  101. Jesmonth,Richard E., System and method for generating three-dimensional density-based defect map.
  102. Tupin, Jr., Joe Paul, System and method for non-invasive instantaneous and continuous measurement of cardiac chamber volume.
  103. Alalusi, Sayf, System and method for sensing distance and/or movement.
  104. Robert E. Cousins ; Steven A. Shaw, System for A multi-purpose portable imaging device and methods for using same.
  105. Schumacher, Mark S.; Krouth, Terrance F.; Wiklund, David E.; Habegger, Richard J.; Hineman, Richard R., System for controlling hydraulic actuator.
  106. Fullerton, Larry W.; Roberts, Mark; Richards, James, Time transfer utilizing ultra wideband signals.
  107. John A. Kielb ; Scott D. Manicor, Two-wire level transmitter.
  108. Dallum, Gregory E.; Pratt, Garth C.; Haugen, Peter C.; Romero, Carlos E., UWB delay and multiply receiver.
  109. McCorkle, John W.; Rofheart, Martin, Ultra wide bandwidth spread-spectrum communications system.
  110. McCorkle, John W.; Rofheart, Martin, Ultra wide bandwidth spread-spectrum communications system.
  111. McCorkle,John W.; Rofheart,Martin, Ultra wide bandwidth spread-spectrum communications system.
  112. McCorkle, John W.; Rofheart, Martin, Ultra wide bandwidth spread-spectrum communications systems.
  113. McCorkle,John W., Ultra wideband communication system, method and device with low noise reception.
  114. McCorkle, John W., Ultra wideband communication system, method, and device with low noise reception.
  115. Larrick, Jr., J. Frederick; Fontana, Robert J., Ultra wideband data transmission system and method.
  116. Harjani, Ramesh; Jung, Byung-Hoo; Oh, Mi Kyung, Ultra wideband receiver.
  117. Pergande, Albert, Ultra wideband signal source.
  118. Tekin, Ibrahim, Ultra wideband waveform generator circuit.
  119. McEwan Thomas E., Ultra-wideband impedance sensor.
  120. Walker,Michael L.; Furuno,David S.; Askar,Naiel K.; Rogerson,Gerald D., Ultra-wideband radar system using sub-band coded pulses.
  121. Fontana, Robert J.; Larrick, Jr., J. Frederick, Ultra-wideband receiver and transmitter.
  122. Heger Charles E., Ultra-wideband swept range gate radar system with variable transmitter delay.
  123. Fedotov,Dmitry; Sudakov,Alexander, Ultra-wideband transceiver.
  124. Larrick ; Jr. J. Frederick ; Fontana Robert J., Waveform adaptive ultra-wideband transmitter.
  125. Knierim, Daniel G.; Lamb, James S.; Bartlett, Josiah A., Wideband balun structure.
  126. Holzrichter, John F.; Rosenbury, Erwin T., Wireless, relative-motion computer input device.
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