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Battery test circuit for a heart pacemaker 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61N-001/00
  • H05G-000/00
  • A61B-005/04
출원번호 US-0908212 (1986-09-17)
우선권정보 DE-3535202 (1985-10-02)
발명자 / 주소
  • Moberg Lennart (Spanga SEX)
출원인 / 주소
  • Siemens Aktiengesellschaft (Berlin and Munich DEX 03)
인용정보 피인용 횟수 : 35  인용 특허 : 5

초록

A battery test circuit for a heart pacemaker has a stimulation pulse counter and input logic which identify the consumed charge from the operating values of the pacemaker, from the number of stimulation pulses emitted, and from a time-dependent base value. The consumed charge identified in each test

대표청구항

A battery test circuit for a heart pacemaker which consumes charge from a battery and thereby changes a charge status of said battery, said pacemaker generating successive stimulation pulses, said battery test circuit comprising: a stimulation pulse counter for generating a signal corresponding to t

이 특허에 인용된 특허 (5)

  1. McDonald Ray S. (St. Paul MN) Thompson David L. (Fridley MN), Battery monitor for digital cardiac pacemaker.
  2. Barreras, Francisco J.; Baker, Ira R., Cardiac pacer with battery consumption monitor circuit.
  3. Fulker ; Mabel H., Heart pacemaker monitor, alarm and auxiliary power supply.
  4. Fischler Henryk (Rehovot ILX) Krupka Yaakov (Rehovot ILX) Behar Salamon (Tel Aviv ILX), Method and apparatus for automatically evaluating the quality of the performance of a cardiac pacing system.
  5. Krupka Yaakov (Rehovot ILX) Feldman Salomon (Givatayim ILX) Yerushalmi Shmuel (Rehovot ILX), Method and apparatus for evaluating pacer battery status and stimulation effectiveness.

이 특허를 인용한 특허 (35)

  1. Gandhi, Rajesh K.; Linder, William J.; Vanderlinde, Scott; Kalgren, James; Propp, Hal M., Abnormal battery depletion detection in an implantable device.
  2. Michael W. Dooley ; Gregory Scott Munson, Apparatus and method for estimating battery condition in implantable cardioverter/defibrillators.
  3. Shahandeh,Reza; Isaac,George I., Battery charge indicator for implantable pacemakers and defibrillators.
  4. Gandhi, Rajesh K.; Root, Michael J., Battery depth of discharge in an implantable device.
  5. Hussain, Saadat, Battery life estimation based on voltage depletion rate.
  6. Crespi, Ann M., Battery longevity estimator that accounts for episodes of high current drain.
  7. Crespi, Ann M., Battery longevity estimator that accounts for episodes of high current drain.
  8. Brown, Timothy R., Battery longevity monitoring.
  9. Colborn, John C., Delivering scheduled and unscheduled therapy without detriment to battery life or accuracy of longevity predictions.
  10. Colborn, John C., Delivering scheduled and unscheduled therapy without detriment to battery life or accuracy of longevity predictions.
  11. Colborn, John C., Device longevity prediction for a device having variable energy consumption.
  12. Colborn, John C., Device longevity prediction for a device having variable energy consumption.
  13. Colborn, John C., Device longevity prediction for a device having variable energy consumption.
  14. Gandhi, Rajesh K.; Linder, William J.; Lyden, Michael J.; Stessman, Nicholas J.; Kelly, Jonathan H.; Kalgren, James, Dynamic battery management in an implantable device.
  15. Gandhi, Rajesh Krishan; Linder, William J.; Lyden, Michael J.; Stessman, Nicholas J.; Kelly, Jonathan H.; Kalgren, James, Dynamic battery management in an implantable device.
  16. Crowley, Tom; Hagen, Jeff, Elective service indicator based on pulse count for implantable device.
  17. Schmidt, Craig L.; Wahlstrand, John D.; Crespi, Ann M.; Younker, Gregory A.; Busacker, James W., Estimating remaining battery service life in an implantable medical device.
  18. Reinaldo Gurewitsch, Implantable cardiac device having precision RRT indication.
  19. Woods,Carla Mann; Thacker,James R; Peterson,David K. L, Implantable system having rechargeable battery indicator.
  20. Doerr, Thomas; Lang, Volker, Maintenance system for maintaining an energy accumulator arrangement.
  21. Saltzstein William E. ; Sabri Mohamed ; Dobaj Anthony P. ; Baumann Eric O., Medical patient vital signs-monitoring apparatus.
  22. Obel, Martin; Sköldengen, Niklas; Lindberg, Jan, Method and circuit for determining the battery status in a medical implant.
  23. Crowley, Thomas Patrick; Hagen, Jeffrey J., Methods and devices for controlling battery life in an implantable pulse generator.
  24. Woods, Carla Mann; Thacker, James R.; Peterson, David K. L., Patient programmer for implantable devices.
  25. Woods, Carla Mann; Thacker, James R.; Peterson, David K. L., Patient programmer for implantable devices.
  26. Armstrong, Randolph K.; Armstrong, Scott A.; Inman, D. Michael; Scott, Timothy L., Power supply monitoring for an implantable device.
  27. Armstrong, Randolph K.; Armstrong, Scott A.; Inman, D. Michael; Scott, Timothy L., Power supply monitoring for an implantable device.
  28. Armstrong, Randolph K.; Guzman, Albert W.; Nguyen, Huan D., Power supply monitoring for an implantable device.
  29. Armstrong, Randolph; Armstrong, Scott A.; Inman, Dana Michael; Scott, Timothy, Power supply monitoring for an implantable device.
  30. Meadows, Paul; Woods, Carla Mann; Peterson, David; Chen, Joey; Payne, David, Rechargeable spinal cord stimulator system.
  31. Koopman Jan (Dieren NLX), System and method for determining indicated pacemaker replacement time based upon battery impedance measurement.
  32. Cowley, Anthony W.; Hussain, Saadat, System and method for estimating battery capacity.
  33. Rondoni, John C.; Jain, Mukul, System and method for monitoring a power source of an implantable medical device.
  34. Saltzstein William E. ; Sabri Mohamed ; Burkhart Scott M. ; Semler Gregory T., Vital signs monitor.
  35. Saltzstein William E. ; Sabri Mohamed ; Burkhart Scott M. ; Semler Gregory T., Vital signs monitoring unit.
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