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    • 62. 发明申请
    • Moving-state determining device
    • 移动状态判定装置
    • US20080013790A1
    • 2008-01-17
    • US11826265
    • 2007-07-13
    • Toru IharaKeiichi YamamotoTomoaki TeshimaHideo SaitoShinji Ozawa
    • Toru IharaKeiichi YamamotoTomoaki TeshimaHideo SaitoShinji Ozawa
    • G06K9/00
    • G06K9/00791B60W40/109G06K9/32G06K2009/363
    • A moving-state determining device acquires a first overhead image from a bird's-eye image obtained at first image pickup timing and acquires a second overhead image, which can be regarded as the same road surface area as that of the first overhead image, for each of moving directions assumed for the moving body from a bird's-eye image obtained at second image pickup timing different from the first image pickup timing by a predetermined time period. The device compares a degree of similarity between the first overhead image and each of a plurality of second overhead images to acquire the second overhead image with the largest similarity degree as the same road surface area as that of the first overhead image. The device acquires the moving direction and a lateral displacement amount in the moving from a coordinate conversion condition based on which the second overhead image has been obtained.
    • 移动状态决定装置从在第一图像拍摄定时获得的鸟瞰图像中取得第一俯瞰图像,并获取与第一俯仰图像相同的道路面积的第二俯瞰图像 从与第一图像拾取定时不同的第二图像拾取定时获得的鸟瞰图像预测移动体的移动方向预定的时间段。 该装置比较第一开销图像与多个第二开销图像中的每一个之间的相似度,以获得具有最大相似度的第二开销图像作为与第一俯瞰图像相同的路面积。 该装置从获得第二俯瞰图像的坐标转换条件获取移动中的移动方向和横向位移量。
    • 63. 发明授权
    • Hand pattern switch device
    • 手动模式开关装置
    • US07289645B2
    • 2007-10-30
    • US10694430
    • 2003-10-27
    • Keiichi YamamotoHiromitsu SatoHideo SaitoShinji OzawaHiroya Igarashi
    • Keiichi YamamotoHiromitsu SatoHideo SaitoShinji OzawaHiroya Igarashi
    • G06K9/00
    • G06F3/017B60K37/06B60K2350/2013
    • A hand pattern switch device recognizes a hand pattern from an image of a hand in an image pickup zone and detects a hand motion. One of controlled objects is selected based on the recognized hand pattern and/or hand motion. In accordance with the selected object, a mode of detection of operation information based on hand motion is changed. In a moved distance detecting mode, a moved distance of the hand in the zone is detected as operation information, and in a stop time detecting mode, a stop time of the hand at a stop position to which the hand has been moved in the zone is detected as operation information. The image pickup zone is at a location which is located laterally to a steering wheel and to which a driver can extend his/her arm without changing a driving posture.
    • 手形图案开关装置从图像拾取区域中的手的图像识别手形图案,并且检测手动。 基于所识别的手形图案和/或手动运动来选择受控对象之一。 根据所选择的对象,改变基于手动的操作信息的检测模式。 在移动的距离检测模式中,检测到该区域中的手的移动距离作为操作信息,并且在停止时间检测模式中,手在该区域中已经移动到该停止位置的停止时间 被检测为操作信息。 图像拾取区位于方向盘侧向定位的位置,驾驶员可以在不改变驾驶姿势的情况下延伸他/她的手臂。
    • 67. 发明授权
    • Shibori clothes manufacturing method, etc. and shibori clothes made by said manufacturing method
    • Shibori衣服制作方法等,并通过制造方法制作shibori衣服
    • US06523196B1
    • 2003-02-25
    • US09530080
    • 2000-08-03
    • Tsuyoshi KunoHideo Saito
    • Tsuyoshi KunoHideo Saito
    • D06P500
    • D06B11/0073D06C23/04
    • A method of manufacturing shibori clothes of the desired form and hue in a secure and stable manner by application of measures taken to intentionally leave relief-like shapes called “shibo” (crimps) in the clothes and to provide new types of shibori clothes with unique forms, stretchability, handling and draping qualities, comfort when worn, etc. In a shibori clothing manufacturing method[, comprising] that includes at least a “shibori (binding) process,” in which numerous portions of a dyed and sewn cloth are bound partially with a thread, a “setting process,” which has at least a “steam setting process” by which the shibori cloth, obtained by the “shibori (binding) process” is exposed to steam in order to maintain the shibori (bound) shapes, and a “thread removal process,” in which the abovementioned thread is removed after the “setting process”, and shibori clothes made by this method.
    • 通过采取措施有意地将浮雕形状称为“shibo”(卷曲)放在衣服中并以独特的方式提供新型的shibori衣服,以安全稳定的方式制造所需形式和色调的shibori衣服的方法 形式,伸缩性,处理和悬垂质量,穿着时的舒适度等。在包括染色和缝合布的许多部分被束缚的至少包括“shibori(装订)过程”的shibori服装制造方法[包括] 至少有一个“蒸煮设定过程”,通过“蒸煮设定处理”,通过“蒸煮设备处理”将“shibori(装订)过程”获得的沙发布暴露于蒸汽中,以便保持shibori(约束) 形状和“脱线过程”,其中上述线在“设定过程”之后被去除,并且通过该方法制成shibori衣服。
    • 69. 发明授权
    • Apparatus for printing on elongated medium to be printed
    • 用于在要打印的细长介质上打印的装置
    • US6142688A
    • 2000-11-07
    • US249121
    • 1999-02-12
    • Hideo Saito
    • Hideo Saito
    • B41J3/36B26D1/06B26D1/30B26D3/08B26D5/08B26D5/16B26D9/00B41J11/66B41J11/70B41J11/26
    • B41J11/703B26D1/305B26D3/085B26D5/08B26D5/16B26D9/00Y10T83/494
    • An apparatus for printing on an elongated medium to be printed has a printing head for printing based on printing data, transporting device for transporting the medium relative to the printing head, completely cutting edges for completely cutting the medium on a downstream side of the printing head, as seen in a direction of travelling of the medium, and partially cutting edges partially cutting the medium on the downstream side of the printing head. The apparatus is provided with a completely cutting travelling device so constructed and arranged to be automatically started at a complete cutting position of the medium based on a length contained in the printing data to thereby perform complete cutting of the medium. It is also provided with a partially cutting driving device so constructed and arranged to be automatically started, independent of the completely cutting device, at a partial cutting position.
    • 用于在要打印的细长介质上进行打印的装置具有用于基于打印数据进行打印的打印头,用于相对于打印头传送介质的传送装置,完全切割边缘以在打印头的下游侧完全切割介质 如在介质的行进方向上所看到的,以及在打印头的下游侧部分地切割介质的部分切割刃。 该装置设置有完全切割的行进装置,其被构造和布置成基于打印数据中包含的长度在介质的完全切割位置处自动启动,从而完成对介质的切割。 它还设置有部分切割驱动装置,其被构造和布置成在部分切割位置处独立于完全切割装置自动启动。
    • 70. 发明授权
    • Homeotropic sprayed-nematic liquid crystal display device
    • 垂面喷射向列型液晶显示装置
    • US6061116A
    • 2000-05-09
    • US43698
    • 1998-08-19
    • Susumu NishidaHiroki TakahashiHideo SaitoShizuo Murata
    • Susumu NishidaHiroki TakahashiHideo SaitoShizuo Murata
    • G02F1/13363G02F1/137G02F1/139G02F1/1337G02F1/1335C09R19/04
    • G02F1/1393G02F1/133634G02F2001/13712
    • In a liquid crystal display device including (1) a pair of substrates on the surface of which a transparent electrode and an alignment film are formed in turn, and the alignment films are arranged with a gap so that the films face each other, (2) a liquid crystal which fills the gap, (3) two polarizer plates holding the pair of substrates between them, and (4) a driving circuit connected to the transparent electrodes for applying a voltage between both substrates, the improved display device including a vertically arranged splayed nematic liquid crystal wherein a nematic liquid crystal which is substantially free from a chiral liquid crystalline compound and has a negative dielectric anisotropy is used as the liquid crystal; molecules of the liquid crystal between the pair of the substrates are oriented so that their molecular axis are arranged on planes orthogonal to the substrates; liquid crystal molecules, in the vicinity of the surface of the substrates, are oriented vertically or semi-vertically so that the angle between the axis of the molecules and the substrates is in the range of 90 to 45.degree.; and liquid crystal molecules, in other portions, are oriented so that the angle between the axis of the molecules and the substrates becomes gradually smaller as the position of the molecules approaches the center portion of the gap between the substrates, and the axis becomes substantially parallel to the substrates in the center portion of the gap between the substrates.
    • PCT No.PCT / JP96 / 02785 Sec。 371日期1998年8月19日 102(e)1998年8月19日PCT PCT 1996年9月26日PCT公布。 出版物WO97 / 12275 日期:1997年04月3日在液晶显示装置中,包括(1)在其表面上依次形成透明电极和取向膜的一对基板,并且取向膜间隔开排列,使得膜面 (2)填充间隙的液晶,(3)在它们之间保持一对基板的两个偏振片,(4)连接到透明电极的驱动电路,用于在两个基板之间施加电压,改进的 作为液晶,使用具有基本上不含手性液晶化合物并具有负介电各向异性的向列型液晶的垂直布置的向列型液晶的显示装置, 将一对基板之间的液晶分子取向为使其分子轴配置在与基板正交的平面上; 在基板表面附近的液晶分子垂直或半垂直取向,使得分子轴与基板之间的角度在90°至45°的范围内; 并且在其他部分中的液晶分子被定向为使得分子的轴线和基板之间的角度随着分子的位置接近基板之间的间隙的中心部分而逐渐变小,并且轴线基本上平行 到衬底之间的间隙的中心部分的衬底。