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    • 118. 发明授权
    • Switch for fine adjustment of persistent current loops in
superconductive circuits
    • 切换超导电路中持续电流回路的微调
    • US4528532A
    • 1985-07-09
    • US553212
    • 1983-11-18
    • Thomas A. Keim
    • Thomas A. Keim
    • H01R39/20H01F6/00H01L39/10H01L39/16H01L39/20H01F7/22
    • H01L39/20H01F6/006Y10S505/851
    • A small portion of a lead for a superconducting coil is made to function as a controllable resistor with a low resistance value and fast thermal response so as to be capable of rapidly being switched between the superconducting and resistive states. The device is thus capable of fine adjustment of the current flowing in a superconducting loop. The switch includes lengths of parallel conductor so that the resulting section of superconductive material is cryostable. The superconducting oil lead is disposed on a substrate so as to permit ready access for helium or other cryogenic coolant to most lead surfaces. The small mass and close contact with the coolant produce rapid turn-on and turn-off response characteristics. Furthermore, the low overall resistance causes the coil current to decay slowly, thus preventing precise control of the superconducting current.
    • 使超导线圈的引线的一小部分用作具有低电阻值和快速热响应的可控电阻器,以便能够在超导和电阻状态之间快速切换。 因此,器件能够精细调节在超导环路中流动的电流。 该开关包括平行导体的长度,使得所得到的超导材料部分是可低温的。 超导油引线设置在基板上,以允许氦气或其他低温冷却剂容易接近大多数引线表面。 与冷却液的小质量和紧密接触产生快速的开启和关闭响应特性。 此外,低的总电阻使得线圈电流缓慢衰减,从而阻止对超导电流的精确控制。
    • 120. 发明授权
    • Electrical signal interconnection coupler
    • 电信号互联耦合器
    • US4275376A
    • 1981-06-23
    • US144755
    • 1980-04-28
    • William C. AlexanderRichard L. KirkKenneth A. Thomsen
    • William C. AlexanderRichard L. KirkKenneth A. Thomsen
    • H01R39/08B60C23/04B64D45/00H01R39/20B60C23/00
    • B60C23/0467F16C17/24
    • A signal communicator for transmitting an electrical signal from one member rotating relative to another member is in the configuration of a journal bearing and comprises at least one conically shaped annular graphite ring supported by inner and outer electrically conductive races. While one race is insulatively mounted on the rotating member and electrically connected to a condition sensor, the other race is insulatively mounted on the relatively stationary member and electrically connected to a signal detector, and the graphite ring is an electrical conductor interconnecting the sensor and detector via the two races. Alternatively, two opposing and contacting graphite rings are mounted in nonconducting carriers, one of the carriers keyed for rotation with the sensor while the other is mounted on the relatively stationary member. Electrical connections are made directly from the sensor to one of the graphite rings and from the detector to the other of the graphite rings and the rings therefore function as the electrical interconnection between the rotating sensor and the relatively stationary detector.
    • 用于从相对于另一构件旋转的构件传输电信号的信号通信器处于轴颈轴承的构造中,并且包括由内部和外部导电种族支撑的至少一个锥形环形石墨环。 当一个赛跑绝对地安装在旋转部件上并与状态传感器电连接时,另一个赛道绝对地安装在相对固定的部件上并与电信号检测器电连接,而石墨环是将传感器和检测器 通过两场比赛。 或者,两个相对和接触的石墨环安装在非导电载体中,其中一个载体用于与传感器一起旋转,而另一个载体安装在相对静止的构件上。 电连接由传感器直接从石墨环之一和从检测器到另一个石墨环形成,因此这些环用作旋转传感器和相对固定的检测器之间的电气互连。