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    • 4. 发明申请
    • SYSTEM AND METHOD FOR TRANSCUTANEOUS ENERGY TRANSFER ACHIEVING HIGH EFFICIENCY
    • 运行能量转运高效率的系统与方法
    • WO2005037364A1
    • 2005-04-28
    • PCT/US2004/030200
    • 2004-09-15
    • MEDTRONIC, INC.OLSON, David, P.PHILLIPS, William, C.SCHMELING, Andrew, L.SCHOMMER, Mark, E.
    • OLSON, David, P.PHILLIPS, William, C.SCHMELING, Andrew, L.SCHOMMER, Mark, E.
    • A61N1/00
    • A61N1/3787
    • A system and method for transcutaneous energy transfer and/or charging in a transverse direction. An external power source (48) having a primary coil (54) being driven at a frequency selectable in the range between eight and twelve kiloHertz contained in a housing. An implantable medical device (16) has componentry (28) for providing a therapeutic output and a secondary coil (34) operatively coupled to the componentry (28). The external power source (48) is capable of providing energy to the implantable medical device (16) when the primary coil (54) of the external power source (48) is placed in proximity of the secondary coil (34) of the implantable medical device (16). The external power source (48) has a lateral positional adjustment for the primary coil (54). The frequency of the external power source (48) is frequency adjustable providing a frequency adjustment. The positional adjustment and the frequency adjustment allows, at least in part, the system to attain an efficiency of energy transfer from the external power source (48) to the implantable medical device (16) of at least thirty percent.
    • 用于横向能量转移和/或充电的系统和方法。 具有初级线圈(54)的外部电源(48)以包含在壳体中的8至12千赫兹之间的频率可选择的频率被驱动。 可植入医疗装置(16)具有用于提供治疗输出的组件(28)和可操作地耦合到组件(28)的次级线圈(34)。 当外部电源(48)的初级线圈(54)被放置在可植入医疗的次级线圈(34)附近时,外部电源(48)能够向可植入医疗设备(16)提供能量 装置(16)。 外部电源(48)具有用于初级线圈(54)的横向位置调节。 外部电源(48)的频率是频率可调的,提供频率调节。 位置调整和频率调整允许系统至少部分地实现从外部电源(48)到可植入医疗装置(16)的能量传递效率至少为30%。
    • 6. 发明申请
    • EXTERNAL POWER SOURCE, CHARGER AND SYSTEM FOR AN IMPLANTABLE MEDICAL DEVICE HAVING THERMAL CHARACTERISTICS AND METHOD THEREFORE
    • 具有热特性的可植入医疗器械的外部电源,充电器和系统及其方法
    • WO2005037370A1
    • 2005-04-28
    • PCT/US2004/029830
    • 2004-09-14
    • MEDTRONIC, INC.SCHMELING, Andrew, L.PHILLIPS, William, C.OLSON, David, P.
    • SCHMELING, Andrew, L.PHILLIPS, William, C.OLSON, David, P.
    • A61N1/378
    • A61N1/3787A61M5/14276
    • External power source (48), charger, system and method for transcutaneous energy transfer. An implantable medical device (16) has a first housing (32) having operational componentry (28) for providing the therapeutic output. A secondary housing (68) is mechanically coupled to the first housing (32) having a secondary coil (34) operatively coupled to the componentry (28), the secondary coil (34) capable of receiving energy from the external source. A magnetically shielding material (36) is positioned between the secondary coil (34) and the first housing (32). An external power source (48) has an external housing (52). A primary coil (54) carried in the external housing (52), the primary coil (54) being capable of inductively energizing the secondary coil (34) when the housing is externally placed in proximity of the secondary coil (34) with a first surface (62) of the housing positioned closest to the secondary coil (34), the first surface (62) of the housing being thermally conductive surface. An energy absorptive material carried within the external housing (52).
    • 外部电源(48),充电器,系统和经皮能量转移的方法。 可植入医疗装置(16)具有第一壳体(32),其具有用于提供治疗输出的操作部件(28)。 辅助壳体(68)机械地联接到第一壳体(32),其具有可操作地耦合到组件(28)的次级线圈(34),次级线圈(34)能够从外部源接收能量。 磁屏蔽材料(36)位于次级线圈(34)和第一壳体(32)之间。 外部电源(48)具有外部壳体(52)。 承载在外壳(52)中的初级线圈(54),当壳体被外部放置在次级线圈(34)附近时,初级线圈(54)能够感应地激励次级线圈(34) 壳体的表面(62)最靠近次级线圈(34),壳体的第一表面(62)是导热表面。 承载在外壳(52)内的能量吸收材料。