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    • 7. 发明授权
    • Display control program executed in game machine
    • 显示控制程序在游戏机中执行
    • US07948449B2
    • 2011-05-24
    • US11904738
    • 2007-09-28
    • Takumi YoshinagaKouji TsuchiyaTakenao SataKeiichi Noda
    • Takumi YoshinagaKouji TsuchiyaTakenao SataKeiichi Noda
    • G09G5/00
    • A63F13/26A63F13/10A63F13/573A63F2300/1075A63F2300/301A63F2300/64A63F2300/646G06F3/1423Y10S345/901
    • In a game machine, image display not giving the player a feeling of oddness or disadvantage during game progress even if a non-display at a physical distance is present between different display screen areas. The game machine executes program for controlling image display of first and second display screens on both sides of a non-display area. To move an object from the first to the second display screen and display it there. The movement angle and movement speed are calculated at the display coordinate position of the object displayed on the first display screen, and the movement distance which the object moves through the non-display area from the movement angle is determined. Further, a preset additional distance corresponding to the object to the movement distance is added to use it as a virtual movement distance. The object on the second display screen is displayed when the time required for the object to move the virtual movement distance has elapsed.
    • 在游戏机中,即使在不同的显示屏幕区域之间存在物理距离的不显示,图像显示在游戏过程中也不给予玩家奇怪或不利的感觉。 游戏机执行用于控制非显示区域两侧的第一和第二显示屏幕的图像显示的程序。 将物体从第一个显示屏幕移动到第二个显示屏幕,并将其显示在那里。 在显示在第一显示画面上的物体的显示坐标位置处计算移动角度和移动速度,并且确定物体从移动角度通过非显示区域移动的移动距离。 此外,添加对应于对象与移动距离的预设附加距离,以将其用作虚拟移动距离。 当对象移动虚拟移动距离所需的时间过去时,显示第二显示屏幕上的对象。
    • 9. 发明授权
    • Gas sensor with multiple mechanical and thermal shock cushion layers
    • 气体传感器具有多个机械和热冲击缓冲层
    • US06550309B1
    • 2003-04-22
    • US09219823
    • 1998-12-23
    • Keiichi NodaKazuo TaguchiHisaharu NishioKatsuhisa YabutaKoji KanoKoichi ShimamuraMitsuo Kusa
    • Keiichi NodaKazuo TaguchiHisaharu NishioKatsuhisa YabutaKoji KanoKoichi ShimamuraMitsuo Kusa
    • G02N2704
    • G01N27/407
    • A gas sensor 1 includes an outer cylinder 18, a metallic shell 3, and a sensor element 2. The metallic shell 3 is disposed inside the outer cylinder 18. The sensor element 2 is disposed in a through-hole 30 formed in the metallic shell 3 and is adapted to detect a component of a gas to be measured. A sealing material layer 32 is mainly made of glass and is disposed between the inner surface of the metallic shell 3 and the outer surface of the sensor element 2. A cushion layer 34 formed of a porous inorganic substance is disposed in contact with the end of the sealing material layer 32 on the front-end side with respect to the axial direction of the sensor element 2. A cushion layer 33 formed of talc glass is disposed in contact with the end of the sealing material layer 32 on the rear-end side with respect to the axial direction of the sensor element 2. A gas sensor according to the present invention is especially adapted for use in a motorcycle and includes a sensor element having lower susceptibility to mechanical shock or thermal stress induced by different rates of contraction between a sealing material layer and an adjacent component element as well as excellent durability.
    • 气体传感器1包括外筒18,金属壳3和传感器元件2.金属壳3设置在外筒18内。传感器元件2设置在形成在金属壳中的通孔30中 3,适于检测待测气体的成分。 密封材料层32主要由玻璃制成,并且设置在金属壳3的内表面和传感器元件2的外表面之间。由多孔无机物形成的缓冲层34设置成与 密封材料层32相对于传感器元件2的轴向在前端侧。由滑石玻璃形成的缓冲层33设置成与后端侧的密封材料层32的端部接触 相对于传感器元件2的轴向方向。根据本发明的气体传感器特别适用于摩托车,并且包括传感器元件,其对机械冲击的敏感性或由不同的收缩速率 密封材料层和相邻的组分元件以及优异的耐久性。
    • 10. 发明授权
    • Gas sensor
    • 气体传感器
    • US06418777B1
    • 2002-07-16
    • US09219824
    • 1998-12-23
    • Keiichi NodaKazuo TaguchiHisaharu NishioKatsuhisa Yabuta
    • Keiichi NodaKazuo TaguchiHisaharu NishioKatsuhisa Yabuta
    • G01N1910
    • G01N27/4078G01N27/407
    • A gas sensor 1 includes an outer cylinder 18, a metallic shell 3, and a sensor element 2. The metallic shell 3 is disposed inside the outer cylinder 18. The sensor element 2 is disposed in a through-hole 30 formed in the metallic shell 3 and is adapted to detect a component of a gas to be measured. A sealing material layer 32 is mainly made of glass and is disposed between the outer surface of the sensor element 2 and the inner surface of the metallic shell 3 or between the outer surface of the sensor element 2 and the inner surface of an insulator 4 disposed between the metallic shell 3 and the sensor element 2. Cushion layer 33 and 34 are each made of a porous inorganic substance. At least either the cushion layer 33 or 34 is disposed so as to abut one end of the sealing material layer 32. A gas sensor according to the present invention includes a sensor element featuring lower susceptibility to mechanical shock or thermal stress induced by different rates of contraction between a sealing material layer and an adjacent component element, as well as excellent durability.
    • 气体传感器1包括外筒18,金属壳3和传感器元件2.金属壳3设置在外筒18内。传感器元件2设置在形成在金属壳中的通孔30中 3,适于检测待测气体的成分。 密封材料层32主要由玻璃制成,并且设置在传感器元件2的外表面和金属壳3的内表面之间或者设置在传感器元件2的外表面和设置的绝缘体4的内表面之间 在金属壳3和传感器元件2之间。缓冲层33和34各自由多孔无机物质制成。 缓冲层33或34中的至少任一个被设置成邻接密封材料层32的一端。根据本发明的气体传感器包括传感器元件,其特征在于对机械冲击的敏感性或由不同速率 密封材料层和相邻的构成元件之间的收缩,以及优异的耐久性。