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    • 13. 发明申请
    • Display device
    • 显示设备
    • US20060022902A1
    • 2006-02-02
    • US11185972
    • 2005-07-21
    • Yuichi Sakai
    • Yuichi Sakai
    • G09G3/28
    • G09G3/2022G09G3/2927G09G3/294G09G3/2986G09G2310/0216G09G2310/0218G09G2310/0224G09G2320/0209G09G2320/0219G09G2320/0223H01J11/12
    • A display device with which the various drive conditions can be improved in driving a display panel. A driver that drives first row electrode lines disposed at even-numbered locations and second row electrode lines disposed at odd-numbered locations among a plurality of first and second row electrode lines that constitute display lines in a display panel is mounted on one side of the display panel, and a driver that drives first row electrode lines disposed at odd-numbered locations and second row electrode lines disposed at even-numbered locations is mounted on the other side of the display panel. The reset discharge induced in each of the pixel cells belonging to the first and second row electrode lines disposed at odd-numbered locations, and the reset discharge induced in each of the pixel cells belonging to the first and second row electrode lines disposed at even-numbered locations are executed at different times.
    • 可以在驱动显示面板时改善各种驱动条件的显示装置。 驱动布置在偶数位置的第一行电极线和布置在构成显示面板中的显示线的多个第一和第二行电极线中的奇数位置的第二行电极线安装在 显示面板和驱动器,其驱动设置在奇数位置的第一行电极线和设置在偶数位置的第二行电极线安装在显示面板的另一侧。 属于设置在奇数位置的第一和第二行电极线的每个像素单元中感应的复位放电以及属于均匀布置的属于第一和第二行电极线的每个像素单元中感应的复位放电, 编号的位置在不同的时间执行。
    • 16. 发明授权
    • Heat-sensitive type flow rate detecting element and holder therefor
    • 热敏型流量检测元件及其支架
    • US06615655B1
    • 2003-09-09
    • US10031148
    • 2002-01-17
    • Yuichi SakaiAkira YamashitaMotohisa TaguchiTomoya YamakawaMasahiro KawaiKazuhiko Tsutsumi
    • Yuichi SakaiAkira YamashitaMotohisa TaguchiTomoya YamakawaMasahiro KawaiKazuhiko Tsutsumi
    • G01F168
    • G01F1/692G01F1/6845
    • A flow rate detecting element measuring the flow rates of various fluids, particularly the intake air of an internal combustion engine. The flow rate detecting element has a thin film layer including a support film and a protective film on one surface of a flat substrate, a heating resistance section and a comparative resistance section thermosensitive resistor having patterns and located between the support film and the protective film. The flat substrate has a recess which penetrates the flat substrate in the thickness direction thereof and facing the heating resistance section and the comparative resistance section. A fluid flow passage communicates with the recess which faces the comparative resistance section for fluid flow into the recess. Flow rate or velocity of a fluid can be measured accurately using the heating resistance section according to the fluid temperature reported by the comparative resistance section.
    • 流量检测元件,其测量各种流体的流量,特别是内燃机的进气。 流量检测元件具有在平坦基板的一个表面上包括支撑膜和保护膜的薄膜层,具有图案并位于支撑膜和保护膜之间的加热电阻部分和比较电阻部分热敏电阻器。 平面基板具有在其平坦基板的厚度方向上贯通平板状基板的面向加热电阻部和比较电阻部的凹部。 流体流动通道与面向比较电阻部分的凹部连通,以使流体流入凹部。 可以使用根据比较电阻部报告的流体温度的加热电阻部分精确地测量流体的流速或速度。
    • 18. 发明授权
    • Pressure sensor with a thermal pressure detecting element
    • 具有热压检测元件的压力传感器
    • US06393919B1
    • 2002-05-28
    • US09644693
    • 2000-08-24
    • Hiroshi OhjiKazuhiko TsutsumiYuichi SakaiNaoki Yutani
    • Hiroshi OhjiKazuhiko TsutsumiYuichi SakaiNaoki Yutani
    • G01L1904
    • G01L11/002
    • A pressure sensor of the present invention comprises a diaphragm 6 having a first surface which receives pressure and a thermal detecting portion 3 with a heat sensitive portion disposed as to oppose the diaphragm through a spacer, wherein displacement values of the diaphragm owing to variations in pressure are detected at the thermal detecting portion as variation values of thermal equilibrium state. With this arrangement, a surface of the diaphragm which directly receives pressure from measuring fluid does not need to undergo film forming or photolithographic processes whereby main portions of thermal pressure detecting elements might be formed onto a silicon substrate by large quantities in a lump sum through simple manufacturing processes so that it is possible to improve accuracy and reliability of the thermal pressure detecting elements and to obtain a pressure sensor of low cost.
    • 本发明的压力传感器包括具有接收压力的第一表面的隔膜6和具有通过间隔件布置成与隔膜相对设置的热敏部分的热检测部分3,其中由于压力变化导致隔膜的位移值 在热检测部分被检测为热平衡状态的变化值。 通过这种布置,直接从测量流体接收压力的隔膜的表面不需要进行成膜或光刻工艺,其中热压检测元件的主要部分可以通过简单的一次性大量形成在硅基板上 制造工艺,从而可以提高热压检测元件的精度和可靠性,并获得低成本的压力传感器。
    • 19. 发明授权
    • Eyeglasses having improved lens fastening member
    • 具有改进的透镜紧固构件的眼镜
    • US5523806A
    • 1996-06-04
    • US466730
    • 1995-06-06
    • Yuichi Sakai
    • Yuichi Sakai
    • G02C1/02G02C1/08
    • G02C5/10G02C1/02G02C1/08
    • To avoid excessive stressing of lenses and still facilitate the attaching and removing of the lens to the rim, a pair of eyeglasses has an improved rim lock member. The rim lock member has a two-parallel wire arrangement and a metal piece slidably movable thereon. The opposite ends of the loop hole of each rim are connected to the two parallel wire ends, and the space of the loop hole can be controlled by moving the metal piece on the two-parallel wire arrangement. Specifically the loop hole of each rim can be reduced by moving the metal piece toward the rim on the two-parallel wire arrangement until the circumferential length of time rim is shortened to wind tightly around the lens, thereby holding the lens fixedly. The bridge of the front of a pair of rimless eyeglasses has a similar parallel wire-and-metal assembly structure.
    • 为了避免镜片的过度应力,并且仍然有助于将镜片附接和移除到边缘,一对眼镜具有改进的边缘锁定构件。 轮圈锁定构件具有双平行线布置和可滑动地在其上移动的金属片。 每个边缘的环孔的相对端连接到两个平行的线端,并且可以通过将金属片移动到双平行导线装置上来控制环孔的空间。 具体地说,可以通过将金属片移动到双平行布置装置上的边缘上来减小每个边缘的环孔,直到时间周缘的周长被缩短以紧紧地缠绕在透镜周围,从而固定地保持透镜。 一对无框眼镜的前面的桥具有类似的平行的金属丝和金属组件结构。