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    • 4. 发明授权
    • Cryogenic apparatus of superconducting equipment
    • 超导设备的低温装置
    • US07849704B2
    • 2010-12-14
    • US11794803
    • 2005-11-15
    • Yuuichi AshibeHideki Itoh
    • Yuuichi AshibeHideki Itoh
    • F25D23/12F17C3/08
    • H01R4/68H02G15/34Y02E40/648
    • A cryogenic apparatus of superconducting equipment with excellent assembly workability and a termination structure of a superconducting cable including the cryogenic apparatus are provided. A termination structure of a superconducting cable includes a terminal of the superconducting cable disposed on a low-temperature side, a bushing 10 for communicating power between the low-temperature side and a room-temperature side, a connection part 2 connecting the terminal of the cable and the bushing 10, and a terminal connection box 3 accommodating the connection part 2. The terminal connection box 3 includes a coolant vessel 20 accommodating a terminal of the bushing 10 on the low-temperature side and the connection part 2 and filled with a coolant for cooling the terminal and the connection part 2 and a vacuumed vessel 30 disposed so as to surround the coolant vessel 20. The vacuumed vessel 30 includes a first vacuum part 31 where a vacuum can be maintained irrespective of the presence or absence of the bushing 10.
    • 提供了具有优异的组装操作性的超导设备的低温装置和包括低温装置的超导电缆的端接结构。 超导电缆的端接结构包括设置在低温侧的超导电缆的端子,用于在低温侧和室温侧之间通电的衬套10,连接部件2, 电缆和衬套10以及容纳连接部件2的端子接线盒3.端子接线盒3包括容纳低温侧的衬套10的端子和连接部2的冷却剂容器20, 用于冷却端子和连接部件2的冷却剂以及围绕冷却剂容器20设置的抽真空容器30.抽真空容器30包括第一真空部分31,其中可以保持真空,而不管衬套的存在或不存在 10。
    • 6. 发明授权
    • Sealing-end structure for superconducting cable
    • 超导电缆密封端结构
    • US07989702B2
    • 2011-08-02
    • US11794806
    • 2005-11-04
    • Yuuichi AshibeHideki Itoh
    • Yuuichi AshibeHideki Itoh
    • H01B12/00
    • H02G15/34H01R4/68Y02E40/648
    • The present invention offers a sealing-end structure for a superconducting cable. The structure performs, through a bushing, the outputting and inputting of electric power between a normal-temperature side and a cryogenic-temperature side, where an end portion of a superconducting cable is placed. The sealing-end structure is provided with a coolant vessel at the cryogenic-temperature side for cooling the bushing. The coolant vessel has a liquid-coolant region filled with a liquid coolant and a gaseous-coolant region filled with a gaseous coolant. The coolant vessel is provided with a contraction-absorbing portion for absorbing the contraction of the coolant vessel when it thermally contracts by the effect of the coolant. The sealing-end structure for a superconducting cable suppresses the deterioration of the sealing performance of sealing members placed at the boundary between the normal-temperature side and the cryogenic-temperature side over a long period of use.
    • 本发明提供了一种用于超导电缆的密封端结构。 该结构通过衬套执行在超导电缆的端部放置的常温侧和低温侧之间的电力的输出和输入。 密封端结构在低温温度侧设置有用于冷却衬套的冷却剂容器。 冷却剂容器具有填充有液体冷却剂的液体冷却剂区域和填充有气态冷却剂的气态冷却剂区域。 冷却剂容器设置有收缩吸收部分,用于在冷却剂的热收缩时吸收冷却剂容器的收缩。 用于超导电缆的密封端结构可以长期使用,抑制放置在常温侧和低温侧之间的边界处的密封构件的密封性能的劣化。
    • 8. 发明授权
    • Nand-type semiconductor memory device
    • Nand型半导体存储器件
    • US6044016A
    • 2000-03-28
    • US71770
    • 1998-05-04
    • Hideki Itoh
    • Hideki Itoh
    • H01L27/112H01L21/8246H01L21/8247H01L27/115G11C16/04H01L29/788
    • H01L27/115
    • In a NAND-type memory device, an area required to form a memory array thereof can be reduced. In one NAND-type memory device 30, a bit line 32A and another bit line 32B are extended in parallel to each other. These bit lines 32A and 32B are connected via bit contacts 36A and 36B to a first memory cell 34A, and a second memory cell located adjacent to the first memory cell 34A along a word line direction. A bit contact 36A and another bit contact 36B are arranged along a diagonal line direction while intersecting the respective first and second memory cells, respectively. The bit contact 36A is employed so as to connect a drain region of the first memory cell 34A to the bit line 32A. The bit contact 36B is employed in order to connect a drain region of the second memory cell to the bit line 32B. On the opposite side of the bit contact 36A by sandwiching the first memory cell 34A, a source contact 38A for connecting a source diffusion layer to a source line is provided adjacent to the bit contact 36B. A source line 40 is formed between a control gate 42 and the bit line 32, and then is connected via another source contact 38B to a diffusion layer 44.
    • 在NAND型存储器件中,可以减少形成其存储器阵列所需的面积。 在一个NAND型存储装置30中,位线32A和另一位线32B彼此并联延伸。 这些位线32A和32B经由位触点36A和36B连接到第一存储器单元34A,以及沿字线方向位于第一存储单元34A附近的第二存储单元。 位触点36A和另一个位触点36B分别沿着对角线方向排列,同时与相应的第一和第二存储单元相交。 采用位触点36A以将第一存储单元34A的漏极区域连接到位线32A。 采用位触点36B以将第二存储单元的漏极区域连接到位线32B。 在位触点36A的相对侧夹着第一存储单元34A,在位触点36B附近设置用于将源极扩散层连接到源极线的源极触点38A。 源极线40形成在控制栅极42和位线32之间,然后经由另一个源极触点38B连接到扩散层44。
    • 9. 发明申请
    • Cryogenic Apparatus of Superconducting Equipment
    • 超导设备的低温设备
    • US20080119362A1
    • 2008-05-22
    • US11794803
    • 2005-11-15
    • Yuuichi AshibeHideki Itoh
    • Yuuichi AshibeHideki Itoh
    • H01B12/02
    • H01R4/68H02G15/34Y02E40/648
    • A cryogenic apparatus of superconducting equipment with excellent assembly workability and a termination structure of a superconducting cable including the cryogenic apparatus are provided. A termination structure of a superconducting cable includes a terminal of the superconducting cable disposed on a low-temperature side, a bushing 10 for communicating power between the low-temperature side and a room-temperature side, a connection part 2 connecting the terminal of the cable and the bushing 10, and a terminal connection box 3 accommodating the connection part 2. The terminal connection box 3 includes a coolant vessel 20 accommodating a terminal of the bushing 10 on the low-temperature side and the connection part 2 and filled with a coolant for cooling the terminal and the connection part 2 and a vacuumed vessel 30 disposed so as to surround the coolant vessel 20. The vacuumed vessel 30 includes a first vacuum part 31 where a vacuum can be maintained irrespective of the presence or absence of the bushing 10.
    • 提供了具有优异的组装操作性的超导设备的低温装置和包括低温装置的超导电缆的端接结构。 超导电缆的端接结构包括设置在低温侧的超导电缆的端子,用于在低温侧和室温侧之间通电的衬套10,连接部件2, 电缆和衬套10以及容纳连接部2的端子接线盒3。 端子接线盒3包括容纳低温侧的衬套10的端子的冷却剂容器20和连接部2,并且填充有用于冷却端子的冷却剂和连接部2以及设置为 以围绕冷却剂容器20。 抽真空容器30包括第一真空部分31,其中可以维持真空,而不管衬套10的存在或不存在。
    • 10. 发明申请
    • Sealing-End Structure for Superconducting Cable
    • 超导电缆密封端结构
    • US20080017399A1
    • 2008-01-24
    • US11794806
    • 2005-11-04
    • Yuuichi AshibeHideki Itoh
    • Yuuichi AshibeHideki Itoh
    • H02G15/04
    • H02G15/34H01R4/68Y02E40/648
    • The present invention offers a sealing-end structure for a superconducting cable. The structure performs, through a bushing, the outputting and inputting of electric power between a normal-temperature side and a cryogenic-temperature side, where an end portion of a superconducting cable is placed. The sealing-end structure is provided with a coolant vessel at the cryogenic-temperature side for cooling the bushing. The coolant vessel has a liquid-coolant region filled with a liquid coolant and a gaseous-coolant region filled with a gaseous coolant. The coolant vessel is provided with a contraction-absorbing portion for absorbing the contraction of the coolant vessel when it thermally contracts by the effect of the coolant. The sealing-end structure for a superconducting cable suppresses the deterioration of the sealing performance of sealing members placed at the boundary between the normal-temperature side and the cryogenic-temperature side over a long period of use.
    • 本发明提供了一种用于超导电缆的密封端结构。 该结构通过衬套执行在超导电缆的端部放置的常温侧和低温侧之间的电力的输出和输入。 密封端结构在低温温度侧设置有用于冷却衬套的冷却剂容器。 冷却剂容器具有填充有液体冷却剂的液体冷却剂区域和填充有气态冷却剂的气态冷却剂区域。 冷却剂容器设置有收缩吸收部分,用于在冷却剂的热收缩时吸收冷却剂容器的收缩。 用于超导电缆的密封端结构可以长期使用,抑制放置在常温侧和低温侧之间的边界处的密封构件的密封性能的劣化。