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Method and apparatus for low power regulated output in battery powered electrotherapy devices 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61N-001/32
출원번호 US-0148837 (1998-09-04)
발명자 / 주소
  • Sturman Andy
  • Grey Thomas
출원인 / 주소
  • Woodside Biomedical, Inc
대리인 / 주소
    Crockett, Esq
인용정보 피인용 횟수 : 59  인용 특허 : 27

초록

A device for controlling the discharge of a battery supplying an intermittent load, such as a nerve stimulation device. The device includes a controller which operates a switched inductor to feed a capacitor with numerous small pulses from the battery, thereby building up the charge and voltage on t

대표청구항

[ We claim:] [7.] A device for providing a pulsed electrical stimulus to a nerve in the body of a patient, wherein said device is battery operated, said device comprising:an electrode adapted to transmit electrotherapy pulses to the body of a patient in the vicinity of the nerve to be stimulated;a c

이 특허에 인용된 특허 (27)

  1. Yoo Tae Woo,KRX, Acupressure stimulator for a watch.
  2. Adams Theodore P. ; Kroll Mark W., Apparatus for generating biphasic waveforms in an implantable defibrillator.
  3. Arai Youichi,JPX ; Ichikawa Hiroshi,JPX, Battery remaining capacity measuring apparatus.
  4. Renirie Wim C. M. (Berg en Dal MN NLX) Schmidt Craig L. (Eagan MN), Battery state of charge determination with plural periodic measurements to determine its internal impedance and geometri.
  5. Lewis Dave (Torrance CA), Bidirectional current pump for battery charge balancing.
  6. Dufresne Joel R. (St. Paul MN) Dieken Alan P. (St. Paul MN), Biological tissue stimulator with time-shared logic driving output timing and high voltage step-up circuit.
  7. Lane Anthony A. (Northampton GB2), Circuit arrangement comprising MESFET switched spiral inductor.
  8. Menken John ; Monroe Paul, Constant charge time of defibrillation capacitor.
  9. Newman William (Salt Lake City UT), DC powered capacitive pulse charge and pulse discharge battery charger.
  10. Ward Michael A. V. (Arlington MA), DC to DC converter current pump.
  11. Ludden Christopher A. (Fairport NY) Dunsmore Clay A. (Batavia NY), DC-to-DC converter using coupled inductor current sensing and predetermined on time.
  12. Sanders Ira (New York NY), Device for controlling the glottic opening.
  13. Putzke James J. (New Hope MN), Device for non-invasive programming of implanted body stimulators.
  14. Privas Yves (Pompano Beach FL), Electro-stimulation apparatus.
  15. Grey Thomas L. (Sacramento CA) Bertolucci Lawrence E. (Citrus Heights CA), Electrotherapy device.
  16. Thompson David L. ; Sawchuk Robert T. ; Seifried Lynn M., Filtered feedthrough assembly for implantable medical device.
  17. Baker ; Jr. Ross G. ; Gordon Pat L., High energy defibrillator employing current control circuitry.
  18. Kroll Mark W. (Simi Valley CA), Implantable cardioverter defibrillator having a high voltage capacitor.
  19. Kroll Mark W., Implantable cardioverter-defibrillator with apical shock delivery.
  20. Kroll Mark W. ; Brewer James E. ; Pedersen Brad D., Implantable defibrillator system for generating a biphasic waveform with enhanced phase transition.
  21. Thompson David L. (Fridley MN), Method and apparatus for battery depletion monitoring.
  22. Owens Alan R. (Longmont CO), Microprocessor controlled electronic stimulating device having a battery management system and method therefor.
  23. Bertolucci Lawrence E. (Citrus Heights CA), Nausea control device.
  24. Dooley Michael W. ; Maile Keith R. ; Linder William J., Power management system for an implantable device.
  25. Molyneux-Berry Robert B. (Danbury GB2), Power supply arrangements.
  26. Fischell ; Robert E., Rechargeable body tissue stimulator with back-up battery and pulse generator.
  27. Yntema Johannes,NLX ; Heeringa Schelte,NLX ; Ettes Wilhelmus G. M.,NLX, Switched-mode power supply with compensation for varying input voltage.

이 특허를 인용한 특허 (59)

  1. Smith, Kevin W.; Bales, Jr., Thomas O.; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Active braking electrical surgical instrument and method for braking such an instrument.
  2. Smith, Kevin W.; Bales, Jr., Thomas O.; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Active braking electrical surgical instrument and method for braking such an instrument.
  3. Smith, Kevin W.; Bales, Jr., Thomas O.; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Active braking electrical surgical instrument and method for braking such an instrument.
  4. Ahmad, Aftab; Geary, Matthew J.; Hussain, Farhan, Apparatus for transcutaneous electrical stimulation of the tibial nerve.
  5. Honeycutt, James David; Honeycutt, Vickie Lynn, Apparatus to transcutaneously stimulate resonant frequencies of mammals.
  6. Mercier, Sylvain; Chatroux, Daniel; Dauchy, Julien; Fernandez, Eric, Charge equalization system for batteries.
  7. Grey,Thomas L., Device and method for nausea suppression.
  8. Smith, Kevin W.; Bales, Thomas; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Electric surgical instrument with optimized power supply and drive.
  9. Smith, Kevin W.; Bales, Jr., Thomas O.; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Electrical surgical instrument with knife return.
  10. Smith, Kevin W.; Bales, Jr., Thomas O.; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Electrical surgical instrument with one-handed operation.
  11. Smith, Kevin W.; Bales, Jr., Thomas O.; DeVille, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Electrical surgical instrument with optimal tissue compression.
  12. Smith, Kevin W.; Bales, Jr., Thomas O.; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Electrical surgical instrument with optimal tissue compression.
  13. Smith, Kevin W.; Bales, Jr., Thomas O.; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Electrical surgical instrument with optimized power supply and drive.
  14. Smith, Kevin W.; Bales, Jr., Thomas O.; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Electrical surgical instrument with optimized power supply and drive.
  15. Smith, Kevin W.; Bales, Thomas O.; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Electrical surgical instrument with optimized power supply and drive.
  16. Smith, Kevin W.; Bales, Thomas; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Electrical surgical instrument with optimized power supply and drive.
  17. Smith, Kevin W.; Palmer, Matthew A.; Bales, Jr., Thomas O.; Deville, Derek Dee; Riveria, Carlos, Electrical surgical stapling instrument with tissue compressive force control.
  18. Smith, Kevin W.; Bales, Jr., Thomas O.; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Electrically self-powered surgical instrument with cryptographic identification of interchangeable part.
  19. Smith, Kevin W.; Bales, Thomas; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Electrically self-powered surgical instrument with cryptographic identification of interchangeable part.
  20. Smith, Kevin W.; Bales, Jr., Thomas O.; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Electrically self-powered surgical instrument with manual release.
  21. Smith, Kevin W.; Bales, Jr., Thomas O.; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Electrically self-powered surgical instrument with manual release.
  22. Gruzdowich, Gregory J.; Grey, Thomas L.; Duffy, Robert J.; Tait, Hogar; Mann, Thomas L., Electro-acupuncture device with stimulation electrode assembly.
  23. Gruzdowich,Gregory J.; Grey,Thomas L.; Duffy,Robert J.; Tait,Hogar; Mann,Thomas L., Electro-acupuncture device with stimulation electrode assembly.
  24. Escribano, Rafael, Electrokinetic nerve stimulator.
  25. Escribano, Rafael, Electrokinetic nerve stimulator.
  26. Smith, Kevin W., Force switch.
  27. Smith, Kevin W., Force switch.
  28. Smith, Kevin W., Force switch.
  29. Smith, Kevin W., Force switch.
  30. Smith, Kevin W., Force switch.
  31. Smith, Kevin W., Force switch.
  32. Parker, Jon, Implanted pulse generators with reduced power consumption via signal strength/duration characteristics, and associated systems and methods.
  33. Parker, Jon, Implanted pulse generators with reduced power consumption via signal strength/duration characteristics, and associated systems and methods.
  34. Fleenor, Susan H.; Daynes, John C., Indicating the status of an energy storage device of a medical device.
  35. Chen, Gongyin; Drubka, Robert Edward, Method and apparatus for interlaced amplitude pulsing using a hard-tube type pulse generator.
  36. Sturman,Andy; Grey,Thomas, Method and apparatus for low power, regulated output in battery powered electrotherapy devices.
  37. Smith, Kevin W.; Bales, Thomas O.; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Method for operating an electrical surgical instrument with optimal tissue compression.
  38. Smith, Kevin W.; Bales, Thomas; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Method for operating an electrical surgical instrument with optimal tissue compression.
  39. Smith, Kevin W.; Bales, Jr., Thomas O.; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Methods for cryptographic identification of interchangeable parts for surgical instruments.
  40. Sharma, Vivek; Parker, Jon; Chitre, Yougandh; Walker, Andre B., Molded headers for implantable signal generators, and associated systems and methods.
  41. Sharma, Vivek; Parker, Jon; Chitre, Yougandh; Walker, Andre B., Molded headers for implantable signal generators, and associated systems and methods.
  42. Parramon,Jordi; He,Yuping, Multi-compliance voltage generator in a multichannel current stimulator.
  43. Smith, Kevin W.; Bales, Thomas; Deville, Derek Dee; Rivera, Carlos; Palmer, Matthew A., Optimal tissue compression electrical surgical instrument.
  44. Lamont, Robert G.; Parramon, Jordi, Power architecture for an implantable medical device having a non-rechargeable battery.
  45. Lamont, Robert G.; Parramon, Jordi, Power architecture for an implantable medical device having a non-rechargeable battery.
  46. Lamont, Robert G.; Parramon, Jordi, Power architecture for an implantable medical device having a non-rechargeable battery.
  47. Lamont, Robert G.; Parramon, Jordi; Ozawa, Robert D., Power architecture for an implantable medical device having a non-rechargeable battery.
  48. Smith, Kevin W.; Palmer, Matthew A.; Kline, Korey R.; Deville, Derek Dee, Surgical stapling and cutting device.
  49. Smith, Kevin W.; Palmer, Matthew A.; Kline, Korey; Deville, Derek Dee, Surgical stapling and cutting device.
  50. Rogers, Charles R.; Merritt, Donald R.; Schmidt, Craig L.; Jain, Mukul, System and method for monitoring power source longevity of an implantable medical device.
  51. Stroebel, John C.; Pape, Forrest C. M.; Huelskamp, Paul J., System and method for reducing noise in an implantable medical device.
  52. Parker, Jon, Systems and methods for extending the life of an implanted pulse generator battery.
  53. Bradley, Kerry, Systems and methods for selecting low-power, effective signal delivery parameters for an implanted pulse generator.
  54. Bradley, Kerry, Systems and methods for selecting low-power, effective signal delivery parameters for an implanted pulse generator.
  55. Shi, Jess W.; He, Yuping; Doan, Que T.; Peterson, David K. L., Techniques for sensing and adjusting a compliance voltage in an implantable stimulator device.
  56. Shi, Jess W.; He, Yuping; Doan, Que T.; Peterson, David K. L., Techniques for sensing and adjusting a compliance voltage in an implantable stimulator device.
  57. Shi, Jess W.; He, Yuping; Doan, Que; Peterson, David K. L., Techniques for sensing and adjusting a compliance voltage in an implantable stimulator device.
  58. Shi, Jess Weigian; He, Yuping; Doan, Que T.; Peterson, David K. L., Techniques for sensing and adjusting a compliance voltage in an implantable stimulator device.
  59. Shi,Jess Weigian; He,Yuping; Doan,Que T.; Peterson,David K. L., Techniques for sensing and adjusting a compliance voltage in an implantable stimulator device.
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