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    • 5. 发明授权
    • Adaptive rate recharging system
    • 自适应充电系统
    • US09270134B2
    • 2016-02-23
    • US13749481
    • 2013-01-24
    • Medtronic, Inc.
    • Venkat R. GaddamReid K. BornhoftKevin J. KellyDavid P. OlsonTodd V. Smith
    • H02J7/00A61N1/378H02J7/02
    • H02J7/007A61N1/3787H02J7/0093H02J7/025H02J50/10H02J50/80
    • Devices, systems, and techniques for selecting a period for charging an implantable rechargeable power source are disclosed. Implantable medical devices may include a rechargeable power source that can be transcutaneously charged. A system may control a charging module to begin charging the rechargeable power source of the implantable medical device with a high power level. The system may then determine an estimated heat loss based on power initially delivered to the rechargeable power source when beginning the charging. Based on this estimated heat loss during the initial period of recharging, the system may select a boost period that includes a duration of time that the rechargeable power source is charged with the high power level.
    • 公开了用于选择为可植入可再充电电源充电的周期的装置,系统和技术。 植入式医疗装置可以包括可以经皮充电的可充电电源。 系统可以控制充电模块开始以高功率水平对可植入医疗装置的可再充电电源充电。 然后,系统可以基于在开始充电时最初传送到可再充电电源的功率来确定估计的热损失。 基于在充电初始期间的估计的热损失,系统可以选择包括可再充电电源以高功率电平充电的持续时间的升压时段。
    • 7. 发明申请
    • ADAPTIVE RATE RECHARGING SYSTEM
    • 自适应速率补充系统
    • US20130193914A1
    • 2013-08-01
    • US13749481
    • 2013-01-24
    • Medtronic, Inc.
    • Venkat R. GaddamReid K. BornhoftKevin J. KellyDavid P. OlsonTodd V. Smith
    • H02J7/00
    • H02J7/007A61N1/3787H02J7/0093H02J7/025H02J50/10H02J50/80
    • Devices, systems, and techniques for selecting a period for charging an implantable rechargeable power source are disclosed. Implantable medical devices may include a rechargeable power source that can be transcutaneously charged. A system may control a charging module to begin charging the rechargeable power source of the implantable medical device with a high power level. The system may then determine an estimated heat loss based on power initially delivered to the rechargeable power source when beginning the charging. Based on this estimated heat loss during the initial period of recharging, the system may select a boost period that includes a duration of time that the rechargeable power source is charged with the high power level.
    • 公开了用于选择为可植入可再充电电源充电的周期的装置,系统和技术。 植入式医疗装置可以包括可以经皮充电的可充电电源。 系统可以控制充电模块开始以高功率水平对可植入医疗装置的可再充电电源充电。 然后,系统可以基于在开始充电时最初传送到可再充电电源的功率来确定估计的热损失。 基于在充电初始期间的估计的热损失,系统可以选择包括可再充电电源以高功率电平充电的持续时间的升压时段。