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    • 3. 发明授权
    • IC card connector and IC card reader/writer
    • IC卡连接器和IC卡读写器
    • US5752841A
    • 1998-05-19
    • US632335
    • 1996-04-11
    • Hirokazu Hori
    • Hirokazu Hori
    • G06K17/00G06K5/00G06K7/00H01R4/66
    • G06K7/0021H01R12/714
    • An IC card connector 10 comprises a grounding contact 13, which touches the surface of an IC card first, and a plurality of data-passing contacts 12, which connect with the surface contacts of the IC card after the grounding contact 13 has touched the surface of the IC card. This contact of the grounding contact 13 prior to the connection of the data-passing contacts 12 is made possible by forming the grounding contact 13 higher than the data-passing contacts 12. In an IC card reader/writer equipped with this IC card connector 10, an IC card inserted into the IC card reader/writer is lowered from above the IC card connector 10, so that the grounding contact 13 touches the lower surface of the IC card first. Through this contact of the grounding contact 13 to the IC card, static electricity over the IC card is discharged before the data-passing contacts 12 connect with the surface contacts of the IC card. In this way, an IC card connector and an IC card reader/writer are realized with capability of removing static electricity from the IC card just before the data-passing contacts of the IC card connector connect with the surface contacts of the IC card.
    • IC卡连接器10包括接地触点13,其接触IC卡的表面,以及多个数据通过触点12,它们在接地触点13已经接触表面之后与IC卡的表面触点相连 的IC卡。 通过将数据通过触点12的接地触点13形成为高于数据通过触点12的连接,接地触头13的这种触点成为可能。在配备该IC卡连接器10的IC卡读写器中, 插入IC卡读写器的IC卡从IC卡连接器10的上方降下,使得接地触点13首先接触IC卡的下表面。 通过接地触点13与IC卡的接触,在数据通过触点12与IC卡的表面触点连接之前,IC卡上的静电被放电。 以这种方式,IC卡连接器和IC卡读/写器能够在IC卡连接器的数据通过触点连接到IC卡的表面触点之前从IC卡中去除静电。
    • 6. 发明授权
    • Method for controlling movement of neutral atom and apparatus for
carrying out the same
    • 用于控制中性原子的运动的方法及其执行装置
    • US5337324A
    • 1994-08-09
    • US22519
    • 1993-02-25
    • Motoichi OhtsuHirokazu Hori
    • Motoichi OhtsuHirokazu Hori
    • B01J19/12G01Q60/18G02B21/32G21K1/00H01L21/20H01S3/00H05H3/04H01S3/13
    • H05H3/04Y10S372/701
    • In order to control the movement of a single neutral atom or a small number of neutral atoms to trap the neutral atom or atoms at a distal end of an optical fiber probe, a laser light having a frequency which is slightly lower than a resonance frequency of the atom is made incident upon a proximal end of the optical fiber probe, and an evanescent light is generated from a sharpened distal end of the optical fiber probe whose tip is sharpened such that its radius of curvature is smaller than one wavelength of the laser light. The distal end of the optical fiber probe is brought close to the neutral atom or atoms to trap the neutral atom or atoms within an existing volume of the evanescent light. When the light frequency is changed to a value slightly higher than the resonance frequency of the atom, the trapped neutral atom or atoms are pushed out of the existing volume of the evanescent light. The crystal growth can be performed with a single atom level.
    • 为了控制单个中性原子或少量中性原子的移动以将中性原子或原子捕获在光纤探针的远端,具有稍低于共振频率的频率的激光 原子入射到光纤探针的近端,并且从尖端尖锐的光纤探针的尖锐的远端产生ev逝的光,使得其曲率半径小于激光的一个波长 。 光纤探头的远端靠近中性原子或原子,以将中性原子或原子捕获在消逝光的现有体积内。 当光频率变为略高于原子的共振频率的值时,被俘获的中性原子或原子被推出现在的瞬逝光的体积。 晶体生长可以用单个原子水平进行。