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    • 1. 发明申请
    • HIGH VOLTAGE DESIGN STRUCTURE FOR HIGH TEMPERATURE SUPERCONDUCTING DEVICE
    • 高温超导器件的高压设计结构
    • WO2007002121A2
    • 2007-01-04
    • PCT/US2006024032
    • 2006-06-22
    • SUPERPOWER INCTEKLETSADIK KASEGN D
    • TEKLETSADIK KASEGN D
    • H01J27/00
    • H01L39/16H01F2006/001Y10S505/85Y10S505/875Y10S505/883Y10S505/885
    • In accordance with the present invention, modular corona shields are employed in a HTS device to reduce the electric field surrounding the HTS device. In a exemplary embodiment a fault current limiter module in the insulation region of a cryogenic cooling system (10) has at least one fault current limiter set (16) which employs a first corona shield (8) disposed along the top portion of the fault current limiter set and is electrically coupled to the fault current limiter set. A second corona shield (8) is disposed along the bottom portion of the fault current limiter set and is electrically coupled to the fault current limiter set. An insulation barrier (120) is disposed within the insulation region along at least one side of the fault current limiter set. The first corona shield and the second corona shield act together to reduce the electric field surrounding the fault limiter set when voltage is applied to the fault limiter set.
    • 根据本发明,在HTS装置中采用模块化电晕屏蔽以减小HTS装置周围的电场。 在示例性实施例中,低温冷却系统(10)的绝缘区域中的故障电流限制器模块具有至少一个故障电流限制器组(16),其使用沿着故障电流的顶部布置的第一电晕屏蔽件(8) 限制器组并且被电耦合到故障电流限制器组。 第二电晕屏蔽(8)沿着故障电流限制器组的底部布置并电耦合到故障电流限制器组。 绝缘屏障(120)沿着故障电流限制器组的至少一侧布置在绝缘区域内。 当电压施加到故障限制器组时,第一电晕屏蔽和第二电晕屏蔽共同作用以减小故障限制器组周围的电场。