会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明申请
    • PEDAL DEVICE FOR MOTOR VEHICLE
    • 电动车用踏板装置
    • US20100313698A1
    • 2010-12-16
    • US12789706
    • 2010-05-28
    • Shuichi YoshidaHideki Endo
    • Shuichi YoshidaHideki Endo
    • B60T7/04G05G1/44F16D65/28
    • B60T7/065B60R21/09
    • A pedal device includes a pedal suspended from a supporting shaft penetrating through a pair of lengthwise walls of a pedal bracket, and shaft detachment means configured to allow one end portion of the supporting shaft to be disengaged from a corresponding one of the lengthwise walls at the time of forward collision. A pedal stroke sensor is arranged on the pedal bracket at a distance from the pedal, and the pedal stroke sensor and the pedal are connected to each other by a transmission mechanism. The transmission mechanism includes permission means for permitting the end portion of the supporting shaft to be disengaged from the corresponding lengthwise wall at the time of forward collision.
    • 踏板装置包括从穿过踏板支架的一对纵向壁的支撑轴悬挂的踏板,以及轴拆卸装置,其被构造成允许支撑轴的一个端部与所述纵向壁中的相应的一个纵向壁分离 向前碰撞的时间。 踏板支架上设置有踏板行程传感器,与踏板相距一定距离,踏板行程传感器和踏板通过传动机构相互连接。 传动机构包括许可装置,用于允许在向前碰撞时支撑轴的端部与对应的纵向壁分离。
    • 7. 发明申请
    • Inorganic separation membrane and method for manufacturing the same
    • 无机分离膜及其制造方法
    • US20060266696A1
    • 2006-11-30
    • US11289763
    • 2005-11-29
    • Takao MasudaTeruoki TagoShuichi YoshidaToshihiro TomitaKenji Suzuki
    • Takao MasudaTeruoki TagoShuichi YoshidaToshihiro TomitaKenji Suzuki
    • B01D71/04
    • B01D71/04B01D67/0051B01D69/02B01D69/12B01D2325/04B01D2325/30B01D2325/36
    • The present invention provides an inorganic separation membrane including a silicalite nanocrystalline layer formed on a porous ceramic substrate, and a porous inorganic protective layer is formed on the nanocrystalline layer. The crystal grain diameter of the silicalite nanocrystal is preferably 150 nm or less, and the thickness of the silicalite nanocrystalline layer is preferably 1.0 to 4.0 μm. The separation membrane may be manufactured by: immersing a porous ceramic substrate in a dispersion solution of silicalite nanocrystals; laminating the silicalite nanocrystals on the surface of the porous ceramic substrate by evacuating the insider of the porous ceramic substrate; forming a porous inorganic protective layer on the silicalite nanocrystalline layer by a hydrothermal synthesis by heating after immersing the porous substrate in a zeolite synthesis solution containing a silica source; and removing organic components in the silicalite nanocrystal by liquid phase oxidation.
    • 本发明提供一种无机分离膜,其包括在多孔陶瓷基板上形成的硅沸石纳米晶层,在纳米晶层上形成多孔无机保护层。 硅沸石纳米晶体的晶粒直径优选为150nm以下,并且硅沸石纳米晶层的厚度优选为1.0〜4.0μm。 分离膜可以通过以下步骤制造:将多孔陶瓷基材浸渍在硅沸石纳米晶体的分散溶液中; 通过抽真空多孔陶瓷基板的内部,在多孔陶瓷基板的表面层叠硅沸石纳米晶体; 在将多孔基材浸入含有二氧化硅源的沸石合成溶液中之后通过加热通过水热合成在硅沸石纳米晶层上形成多孔无机保护层; 并通过液相氧化除去硅沸石纳米晶体中的有机成分。
    • 9. 发明授权
    • Optical information recording/reproducing device
    • 光信息记录/再现装置
    • US06434096B1
    • 2002-08-13
    • US09674023
    • 2000-10-24
    • Noritaka AkagiTsutomu KaiShuichi YoshidaKiyoshi MasakiTeruyuki NakaYasuo KashiwagiIsao Takemoto
    • Noritaka AkagiTsutomu KaiShuichi YoshidaKiyoshi MasakiTeruyuki NakaYasuo KashiwagiIsao Takemoto
    • G11B700
    • G11B7/0901G11B7/094G11B7/0941G11B7/0956
    • In order to correct the change in the offset and amplitude of a tracking error signal because of the change in the position of an object lens from the center of an optical pickup, the offset amount and amplitude value of the tracking error signal with respect to the displacement amount of the object lens from the center of the optical pickup are checked beforehand, and the displacement amount of the object lens is estimated on the basis of a tracking correction signal by using an object lens displacement observer. An offset detection section and an amplitude detection section detect the offset amount and amplitude value of the tracking error signal respectively, and the tracking error signal is corrected by an offset correction circuit and an amplitude correction circuit on the basis of the offset amount and amplitude value having been checked beforehand so that the offset amount and the amplitude value of the tracking error signal become identical to those obtained when the displacement amount of the object lens is zero. In addition, the offset of the tilt error signal depending on the movement direction of the optical pickup 2 is detected and recorded beforehand, and the tilt error signal is corrected on the basis of the above-mentioned recorded offset when a rotation direction detection section detects the moving direction of the optical pickup.
    • 为了校正由于物镜的位置从光学拾取器的中心的变化引起的跟踪误差信号的偏移和振幅的变化,跟踪误差信号的偏移量和振幅值相对于 预先检查物镜从光学拾取器的中心的位移量,并且通过使用物镜位移观察器基于跟踪校正信号来估计物镜的位移量。 偏移检测部分和振幅检测部分分别检测跟踪误差信号的偏移量和振幅值,并且基于偏移量和振幅值由偏移校正电路和振幅校正电路校正跟踪误差信号 预先检查,使得跟踪误差信号的偏移量和振幅值变得与当物镜的位移量为零时获得的偏移量和振幅值相同。 此外,预先检测并记录与光学拾取器2的移动方向相对应的倾斜误差信号的偏移,并且当旋转方向检测部检测到时,基于上述记录偏移来校正倾斜误差信号 光学拾取器的移动方向。