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Systems and methods for providing power to one or more implantable devices 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61N-001/08
출원번호 US-0341066 (2006-01-27)
등록번호 US-7254449 (2007-08-07)
발명자 / 주소
  • Karunasiri,Rankiri Tissa
출원인 / 주소
  • Karunasiri,Rankiri Tissa
대리인 / 주소
    AdvantEdge Law Group, LLC
인용정보 피인용 횟수 : 21  인용 특허 : 72

초록

Systems and methods for providing a power signal to one or more implantable devices include a number of dynamic range amplifiers each having a multiplicity of output drivers. Each of the output drivers is configured to generate an output signal. The systems and methods further include control circui

대표청구항

What is claimed is: 1. A method comprising: providing an external device that comprises a first dynamic range amplifier and a second dynamic range amplifier, said first and second dynamic range amplifiers each comprising first and second output drivers; implanting a stimulator coupled to one or mor

이 특허에 인용된 특허 (72)

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  72. Tsukamoto Hisashi, Wound battery and method for making it.

이 특허를 인용한 특허 (21)

  1. Karunasiri, Rankiri T., Digitally controlled RF amplifier with wide dynamic range output.
  2. Karunasiri, Rankiri Tissa, Digitally controlled RF amplifier with wide dynamic range output.
  3. Parker, Jon; Chitre, Yougandh; Walker, Andre B., Implantable signal generator.
  4. Parker, Jon; Chitre, Yougandh; Walker, Andre B., Implantable signal generator.
  5. Parker, Jon, Implanted pulse generators with reduced power consumption via signal strength/duration characteristics, and associated systems and methods.
  6. Parker, Jon, Implanted pulse generators with reduced power consumption via signal strength/duration characteristics, and associated systems and methods.
  7. Parker, Jon; Chitre, Yougandh; Walker, Andre B., Medical device communication and charging assemblies for use with implantable signal generators, and associated systems and methods.
  8. Parker, Jon; Chitre, Yougandh; Walker, Andre B., Medical device communication and charging assemblies for use with implantable signal generators, and associated systems and methods.
  9. Karunasiri, Rankiri T., Methods and systems for providing a power signal to an implantable device.
  10. Karunasiri, Rankiri Tissa, Methods and systems for providing a power signal to an implantable device.
  11. Sharma, Vivek; Parker, Jon; Chitre, Yougandh; Walker, Andre B., Molded headers for implantable signal generators, and associated systems and methods.
  12. Sharma, Vivek; Parker, Jon; Chitre, Yougandh; Walker, Andre B., Molded headers for implantable signal generators, and associated systems and methods.
  13. Kallmyer, Todd A., Open-loop recharge for an implantable medical device.
  14. Dziubinski, Marek, Outpatient monitoring systems and methods.
  15. Dziubinski, Marek, Outpatient monitoring systems and methods.
  16. Dziubinski, Marek, Outpatient monitoring systems and methods.
  17. Dziubinski, Marek, Outpatient monitoring systems and methods.
  18. Cowley, Anthony W.; Chilton, Robert J.; Hussain, Saadat; Thompson, David L., Recharging and communication lead for an implantable device.
  19. Parker, Jon, Systems and methods for extending the life of an implanted pulse generator battery.
  20. Bradley, Kerry, Systems and methods for selecting low-power, effective signal delivery parameters for an implanted pulse generator.
  21. Bradley, Kerry, Systems and methods for selecting low-power, effective signal delivery parameters for an implanted pulse generator.
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