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Efficient integrated RF telemetry transmitter for use with implantable device 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61N-001/36
출원번호 US-0189737 (1998-11-10)
발명자 / 주소
  • Griffith Glen A.
출원인 / 주소
  • Advanced Bionics Corporation
대리인 / 주소
    Gold
인용정보 피인용 횟수 : 119  인용 특허 : 15

초록

An efficient RF telemetry transmitter system includes a first stage and a second stage. The transmitter system sends power and data to an implant device using pulse-width modulation of a high fixed frequency clock signal, e.g., a 49 MHz clock signal, within the first stage in order to provide effici

대표청구항

[ What is claimed is:] [18.] A high frequency, highly-efficient, telemetry transmitter circuit for transmitting a modulated carrier signal to a remote receiver circuit, the telemetry transmitter circuit comprising:a fixed frequency oscillator that generates a fixed frequency clock signal; anda telem

이 특허에 인용된 특허 (15)

  1. Baumann Joachim (Munich DEX) Leysieffer Hans (Taufkirchen DEX) Hortmann Guenter (Neckartenzlingen DEX), Charging system for implantable hearing aids and tinnitus maskers.
  2. Crosby Peter A. (Drummoyne AUX) Daly Christopher N. (Biglola Plateau AUX) Money David K. (Pennant Hills AUX) Patrick James F. (Lane Cove AUX) Seligman Peter M. (Essendon AUX) Kuzma Janusz A. (Stanmor, Cochlear implant system for an auditory prosthesis.
  3. Heck Patrice L. (Yorba Linda CA) Allum-Mecklenburg Dianne (Basel CHX) Schulman Joseph H. (Santa Clarita CA), Failure detection in auditory response stimulators.
  4. Schulman Joseph H. (Santa Clarita CA) Gord John C. (Venice CA) Strojnik Primoz (Granada Hills CA) Whitmoyer David I. (Los Angeles CA) Wolfe James H. (Canyon Country CA), Implantable cochlear stimulator having backtelemetry handshake signal.
  5. Franklin, David; Franklin, Joseph; Hughes, Paul, Method and apparatus for sound responsive tactile stimulation of deaf individuals.
  6. Zollner Manfred (Munich DEX) Hoffmann Christian (Munich DEX) Zwicker Eberhard (Icking DEX), Method for the electrical stimulation of the auditory nerve and multichannel hearing prosthesis for carrying out the met.
  7. Galbraith Douglas C. (Stanford CA), Multi-channel implantable neural stimulator.
  8. Schulman Joseph H. ; Gord John C. ; Strojnik Primoz ; Whitmoyer David I. ; Wolfe James H., Multichannel implantable cochlear stimulator.
  9. Forster Ian C. (Hawthorn AUX) Patrick James F. (North Melbourne AUX) Tong Yit C. (Burwood AUX) Black Raymond C. (Carlton AUX) Clark Graeme M. (Eltham AUX), Prosthesis.
  10. Batina William P. (Miami FL) Gipson Lamar H. (Miami FL), Pulse to sinewave telemetry system.
  11. Barreras ; Sr. Francisco Jose ; Jimenez Oscar, RF coupled, implantable medical device with rechargeable back-up power source.
  12. McDermott Hugh J. (Kilda AUX), Receiver/stimulator for hearing prosthesis.
  13. Schulman Joseph H. (Los Angeles CA) Mann Brian M. (Northridge CA) Beane Russell R. (Sepulveda CA), Telemetry means for tissue stimulator system.
  14. Chen James C., Transcutaneous electromagnetic energy transfer.
  15. Wang Xintao (Lake Jackson TX) Munshi Mohammed Zafar Amin (Missouri City TX), Transcutaneous energy transmission circuit for implantable medical device.

이 특허를 인용한 특허 (119)

  1. Armstrong, Randolph K.; Rodriguez, Albert A.; Maschino, Steven E., Alternative operation mode for an implantable medical device based upon lead condition.
  2. Joshi, Himanshu, Antenna shield for an implantable medical device.
  3. Kane, Michael J.; Shuros, Allan Charles; Schmidt, Brian L.; Huelskamp, Paul; Haasl, Benjamin J., Arrhythmia detection and confirmation.
  4. Hussain, Saadat, Battery life estimation based on voltage depletion rate.
  5. Tonietto,Davide; Ghiasi,Ali, Bit stream conditioning circuit having adjustable PLL bandwidth.
  6. Tonietto, Davide; Ghiasi, Ali, Bit stream conditioning circuit having adjustable input sensitivity.
  7. Tonietto,Davide; Ghiasi,Ali, Bit stream conditioning circuit having adjustable input sensitivity.
  8. Carbunaru, Rafael; Ozawa, Robert D.; McGiboney, Kenneth A., Chair pad charging and communication system for a battery-powered microstimulator.
  9. Carbunaru, Rafael; Ozawa, Robert D.; McGiboney, Kenneth A., Charging and communication system for a battery-powered microstimulator.
  10. Denker, Stephen; Bulkes, Cherik; Beutler, Arthur J., Class-E radio frequency amplifier for use with an implantable medical device.
  11. Bulkes, Cherik; Denker, Stephen; Beutler, Arthur J., Class-E radio frequency power amplifier with feedback control.
  12. Maile, Keith R.; Koop, Brendan E.; Schmidt, Brian L.; Kane, Michael J.; Ludwig, Jacob M.; Stahmann, Jeffrey E.; Juffer, Lance E., Communications in a medical device system with link quality assessment.
  13. Ludwig, Jacob M.; Kane, Michael J.; Koop, Brendan E.; Linder, William J.; Maile, Keith R.; Stahmann, Jeffrey E., Communications in a medical device system with temporal optimization.
  14. Kane, Michael J.; Schmidt, Brian L.; Koop, Brendan Early, Conducted communication in a medical device system.
  15. Fort, Andrew; Schindhelm, Adam; Meskens, Werner, Controlling a link for different load conditions.
  16. Colborn, John C., Delivering scheduled and unscheduled therapy without detriment to battery life or accuracy of longevity predictions.
  17. Colborn, John C., Delivering scheduled and unscheduled therapy without detriment to battery life or accuracy of longevity predictions.
  18. Colborn, John C., Device longevity prediction for a device having variable energy consumption.
  19. Colborn, John C., Device longevity prediction for a device having variable energy consumption.
  20. Colborn, John C., Device longevity prediction for a device having variable energy consumption.
  21. Huelskamp, Paul; Kane, Michael J.; Gifford, Douglas J., Devices and methods for adjusting pacing rates in an implantable medical device.
  22. Toy, Alex C.; Olson, David P.; Forsberg, John W., Driver circuitry switchable between energy transfer and telemetry for an implantable medical device.
  23. Ginggen, Alec; Crivelli, Rocco, Dual power supply switching circuitry for use in a closed system.
  24. Armstrong, Randolph K., Dynamic lead condition detection for an implantable medical device.
  25. Colvin, Jr.,Arthur E.; Lynn,Robert W., Electro-optical sensing device with reference channel.
  26. Inman, D. Michael, Electrode assembly with fibers for a medical device.
  27. Inman, D. Michael, Electrode assembly with fibers for a medical device.
  28. Griffith, Glen A.; Hahn, Tae W., Electronic impedance transformer for inductively-coupled load stabilization.
  29. Forsell, Peter, Energy transfer control adapted to a medical device system.
  30. Aghassian, Daniel, External device for communicating with an implantable medical device having data telemetry and charging integrated in a single housing.
  31. Aghassian, Daniel, External device for communicating with an implantable medical device having data telemetry and charging integrated in a single housing.
  32. Single, Peter Scott, External speech processor unit for an auditory prosthesis.
  33. Single, Peter Scott, External speech processor unit for an auditory prosthesis.
  34. Single, Peter Scott, External speech processor unit for an auditory prosthesis.
  35. Single, Peter Scott, External speech processor unit for an auditory prosthesis.
  36. Holcombe,Wayne T.; Pereira,Vitor, Flexible hook switch driver circuit.
  37. Inman, D. Michael; Begnaud, Jason D., Heat dissipation for a lead assembly.
  38. Cowley, Anthony W., Helical electrode for nerve stimulation.
  39. Sivard, Ake, Implantable RF telemetry devices with power saving mode.
  40. Seaver, Chad E.; Killeffer, James A.; Arnott, James C., Implantable bio-pressure transponder.
  41. Shankar,Balakrishnan; Whitlock,Matthew; Kroll,Mark W., Implantable cardiac therapy device with dual chamber can to isolate high-frequency circuitry.
  42. Joshi, Himanshu; Chow, Eric Y.; Warren, Clint, Implantable medical device antenna.
  43. Armstrong, Randolph K.; Armstrong, Scott A., Implantable medical device charge balance assessment.
  44. Almendinger, Allen Dale; Bakx, Martinus A G M, Implantable medical device telemetry processor.
  45. Schmidt, Brian L.; Swackhamer, Bryan J.; Jones, Robert A.; Kubow, Steven A., Implantable medical device with radiopaque ID tag.
  46. Joshi, Himanshu; Fuller, Darrell N., Implantable medical device without antenna feedthrough.
  47. Lesho, Jeffery C., Implanted sensor processing system and method.
  48. Griffith, Glen A, Integrated phase-shift power control transmitter for use with implantable device and method for use of the same.
  49. Griffith, Glen A., Integrated phase-shift power control transmitter for use with implantable device and method for use of the same.
  50. Armstrong, Randolph K., Lead condition assessment for an implantable medical device.
  51. Armstrong, Randolph K., Lead condition assessment for an implantable medical device.
  52. Armstrong, Randolph K., Lead condition assessment for an implantable medical device.
  53. Webb, Erin Kristen; Williams, Thomas Lee; Sachs, Dana; Frankson, Danielle, Leadless device with overmolded components.
  54. Loftin, Scott M.; McClure, Kelly H., Low-power, high-modulation-index amplifier for use in battery-powered device.
  55. Loftin,Scott M; McClure,Kelly H, Low-power, high-modulation-index amplifier for use in battery-powered device.
  56. Loftin,Scott M; McClure,Kelly H, Low-power, high-modulation-index amplifier for use in battery-powered device.
  57. Bulkes,Cherik; Denker,Stephen; Beutler,Arthur J., Magnetic resonance imaging system with a Class-E radio frequency amplifier.
  58. Bulkes,Cherik; Denker,Stephen; Beutler,Arthur J., Magnetic resonance imaging system with a class-E radio frequency amplifier having a feedback circuit.
  59. Stahmann, Jeffrey E.; Kane, Michael J.; Huelskamp, Paul; Maile, Keith R., Medical device with triggered blanking period.
  60. Ghiasi, Ali, Method and system for optimum channel equalization from a SerDes to an optical module.
  61. Parramon, Jordi; Marnfeldt, Goran N., Method for controlling telemetry in an implantable medical device based on power source capacity.
  62. Parramon, Jordi; Marnfeldt, Goran N., Method for controlling telemetry in an implantable medical device based on power source capacity.
  63. Parramon, Jordi; Marnfeldt, Goran N., Method for controlling telemetry in an implantable medical device based on power source capacity.
  64. Parramon, Jordi; Marnfeldt, Goran N., Method for controlling telemetry in an implantable medical device based on power source capacity.
  65. Parramon, Jordi; Marnfeldt, Goran N., Method for controlling telemetry in an implantable medical device based on power source capacity.
  66. Almendinger,Allen Dale; Bakx,Martinus A G M, Method of operating an implantable medical device telemetry processor.
  67. Almendinger, Allen Dale; Bakx, Martinus A G M, Method of processing telemetry signals in an implantable medical device including a telemetry processor.
  68. Smith, Joseph M.; Dujmovic, Jr., Richard Milon, Modular antitachyarrhythmia therapy system.
  69. Smith, Joseph M.; Dujmovic, Jr., Richard Milon, Modular antitachyarrhythmia therapy system.
  70. Smith, Joseph M.; Dujmovic, Jr., Richard Milton, Modular antitachyarrhythmia therapy system.
  71. Smith, Joseph M.; Dujmovic, Jr., Richard Milton, Modular antitachyarrhythmia therapy system.
  72. Andersen, Henning Hougaard; Kilsgaard, Soren; Knudsen, Niels Ole, Monitoring device and method for wireless power transmission in a monitoring device.
  73. Maschino, Steven E.; Byerman, Bryan P., Multi-electrode assembly for an implantable medical device.
  74. Colvin, Jr., Arthur E., Optical-based sensing devices.
  75. Colvin, Jr., Arthur E.; O'Connor, Casey J.; DeHennis, Andrew D., Optical-based sensing devices.
  76. Colvin, Jr.,Arthur E., Optical-based sensing devices.
  77. Colvin, Jr.,Arthur E., Optical-based sensing devices.
  78. Colvin,Arthur E.; O'Connor,Casey J.; DeHennis,Andrew D., Optical-based sensing devices.
  79. Suematsu, Noriharu; Tsutsumi, Kouji; Sogabe, Yasushi; Kamemaru, Toshihisa; Konishi, Yoshihiko; Otsuka, Masataka; Hayashi, Ryoji; Taira, Akinori, Power supply apparatus and power supply method.
  80. Armstrong, Randolph K.; Armstrong, Scott A.; Inman, D. Michael; Scott, Timothy L., Power supply monitoring for an implantable device.
  81. Armstrong, Randolph K.; Armstrong, Scott A.; Inman, D. Michael; Scott, Timothy L., Power supply monitoring for an implantable device.
  82. Armstrong, Randolph K.; Guzman, Albert W.; Nguyen, Huan D., Power supply monitoring for an implantable device.
  83. Armstrong, Randolph; Armstrong, Scott A.; Inman, Dana Michael; Scott, Timothy, Power supply monitoring for an implantable device.
  84. Colvin, Jr., Arthur E.; Gerig, John S.; Zerwekh, Paul Samuel; Lesho, Jeffrey C.; McLeod, Benjamin N., Printed circuit board with integrated antenna and implantable sensor processing system with integrated printed circuit board antenna.
  85. Navarro, Richard Robert; Cole, Christopher Paul; Theken, Randall Raymond, Prosthetic intervertebral spinal disc with integral microprocessor.
  86. Baumgartner, Josef; Rodriguez-Navarro, Jose; Stoffaneller, Martin; Mitterer, Andreas, Pulse width adaptation for inductive links.
  87. Parramon,Jordi; Marnfeldt,Goran N., RF-energy modulation system through dynamic coil detuning.
  88. Ochoco, Jomar G.; Schiller, Peter J., Signal processing for cochlear implants.
  89. Joshi, Himanshu; Thompson, David L.; Floyd, Jared Brandon; Chow, Eric Y.; Rowell, Jonathan D., Slot antenna for an implantable device.
  90. Kane, Michael J.; Linder, William J.; Balczewski, Ron A.; Mi, Bin; Hatlestad, John D.; Huelskamp, Paul; Maile, Keith R., Spatial configuration of a motion sensor in an implantable medical device.
  91. Bobier, Joseph; Khan, Nadeem, Suppressed cycle based carrier modulation using amplitude modulation.
  92. Sjöland, Henrik, Switched mode power amplification.
  93. Moore,William Henry, Switched reactance modulated E-class oscillator.
  94. Moore, William Henry, Switched reactance modulated E-class oscillator design.
  95. Moore, William Henry, Switched reactance modulated E-class oscillator design.
  96. Kane, Michael J.; Shuros, Allan Charles; Schmidt, Brian L.; Maile, Keith R.; Haasl, Benjamin J., System and method for detecting tamponade.
  97. Cowley, Anthony W.; Hussain, Saadat, System and method for estimating battery capacity.
  98. Zilberman, Yitzhak; McHargue, James M.; Glukhovsky, Arkady, System and method for percutaneous delivery of electrical stimulation to a target body tissue.
  99. Dar, Amit; Feldman, Shai; Glukhovsky, Arkady; Springer, Shmuel; Regev, Einan, System for transmitting electrical current to a bodily tissue.
  100. Dar, Amit; Feldman, Shai; Glukhovsky, Arkady; Springer, Shmuel; Regev, Einan, System for transmitting electrical current to a bodily tissue.
  101. Glukhovsky, Arkady; Wilkin, Kevin; Gord, John; Regev, Einan, System for transmitting electrical current to a bodily tissue.
  102. Kane, Michael J.; Linder, William J.; Juffer, Lance Eric; Haasl, Benjamin J.; Schmidt, Brian L.; Huelskamp, Paul; Maile, Keith R., Systems and methods for behaviorally responsive signal detection and therapy delivery.
  103. Park, Rudolph V.; Parramon, Jordi; Klosterman, Daniel; Marnfeldt, Goran N., Systems and methods for communicating with an implantable stimulator.
  104. Park, Rudolph V.; Parramon, Jordi; Klosterman, Daniel; Marnfeldt, Goran N., Systems and methods for communicating with an implantable stimulator.
  105. Park, Rudolph V.; Parramon, Jordi; Klosterman, Daniel; Marnfeldt, Goran N., Systems and methods for communicating with an implantable stimulator.
  106. Schmidt, Brian L.; Juffer, Lance Eric; Maile, Keith R.; Kane, Michael J.; Koop, Brendan Early, Systems and methods for communication between medical devices.
  107. Stahmann, Jeffrey E.; Simms, Jr., Howard D.; Maile, Keith R.; Kane, Michael J.; Linder, William J., Systems and methods for detecting cardiac arrhythmias.
  108. Kane, Michael J.; Shuros, Allan Charles; Schmidt, Brian L.; Maile, Keith R.; Haasl, Benjamin J., Systems and methods for infarct detection.
  109. Parramon,Jordi; Marnfeldt,Goran N.; Carbunaru,Rafael; Ozawa,Robert D., Systems and methods for providing power to a battery in an implantable stimulator.
  110. Huelskamp, Paul; Ludwig, Jacob M.; Juffer, Lance E.; Maile, Keith R., Systems and methods for safe delivery of electrical stimulation therapy.
  111. Koop, Brendan E., Systems and methods for treating cardiac arrhythmias.
  112. Koop, Brendan E., Systems and methods for treating cardiac arrhythmias.
  113. Crivelli, Rocco, Telemetry system employing DC balanced encoding.
  114. Klosterman, Daniel J.; Haller, Matthew I.; Parramon, Jordi; McClure, Kelly H.; Marnfeldt, Goran N.; Park, Rudolph V., Telemetry system for use with microstimulator.
  115. Klosterman, Daniel J.; McClure, Kelly H.; Marnfeldt, Goran N.; Parramon, Jordi; Haller, Matthew I.; Park, Rudolph V., Telemetry system for use with microstimulator.
  116. Klosterman,Daniel J.; McClure,Kelly H.; Marnfeldt,Goran N.; Parramon,Jordi; Haller,Matthew I.; Park,Rudolph V., Telemetry system for use with microstimulator.
  117. Kane, Michael J.; Linder, William J.; Haasl, Benjamin J.; Huelskamp, Paul; Maile, Keith R.; Balczewski, Ron A.; Mi, Bin; Hatlestad, John D.; Shuros, Allan Charles, Temporal configuration of a motion sensor in an implantable medical device.
  118. Haubrich, Gregory J.; Masoud, Javaid; Dudding, Charles H., Variable implantable medical device power characteristics based upon data or device type.
  119. Dudding, Charles H.; Haubrich, Gregory J.; Masoud, Javaid, Variable implantable medical device power characteristics based upon implant depth.
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