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    • 81. 发明授权
    • Motion sensor engagement for a handheld device
    • 手持设备的运动传感器接合
    • US07280096B2
    • 2007-10-09
    • US10807558
    • 2004-03-23
    • David L. MarvitB. Thomas AdlerHitoshi Matsumoto
    • David L. MarvitB. Thomas AdlerHitoshi Matsumoto
    • G09G5/00
    • G06F1/1613G06F1/1686G06F1/1694G06F3/017G06F3/0346G06F2200/1637H04M2250/12
    • A motion controlled handheld device includes a display having a viewable surface and operable to generate an image. The device includes a motion detection module operable to detect motion of the device within three dimensions and to identify components of the motion in relation to the viewable surface. The device also includes a motion response module having a first mode of operation and a second mode of operation. The motion response module is operable in the first mode of operation to monitor the motion of the device, to determine that the motion matches a predetermined mode selection trigger, and, in response to determining that the motion matches the predetermined mode selection trigger, to measure a baseline orientation of the device based on measurements of the components, and to switch to the second mode of operation. The motion response module is operable in the second mode of operation to monitor the motion of the device, to determine movement of the device in relation to the baseline orientation using the components of the motion, and to modify the image in response to the movement.
    • 运动控制的手持设备包括具有可视表面并可操作以产生图像的显示器。 该装置包括运动检测模块,其可操作以检测在三维内的装置的运动并且识别相对于可视表面的运动的部件。 该装置还包括具有第一操作模式和第二操作模式的运动响应模块。 运动响应模块可操作在第一操作模式中以监视装置的运动,以确定运动与预定模式选择触发相匹配,并且响应于确定运动与预定模式选择触发相匹配来测量 基于组件的测量的设备的基准方向,并切换到第二操作模式。 运动响应模块可操作在第二操作模式中,以监视装置的运动,使用运动的分量来确定装置相对于基线方向的移动,并根据运动来修改图像。
    • 82. 发明申请
    • Pedaling correction device for bicycle
    • 自行车踏板矫正装置
    • US20070145709A1
    • 2007-06-28
    • US10561522
    • 2003-06-20
    • Hitoshi Matsumoto
    • Hitoshi Matsumoto
    • B62M1/02
    • B62M1/36A63B69/16A63B2022/0623A63B2220/16A63B2220/56B62H7/00B62M3/06B62M9/08B62M2003/006B62M2009/002
    • A pedaling correction device for a bicycle capable of objectively detecting the state of pedaling and assisting the detection so that the training of pedaling technique can be performed according to an accurate theory. The cranks having pedals mounted at the tips thereof are installed on the center axis of the device so that a crank gear can be rotated according to the rotation of the cranks. The state of the pedaling of a user is monitored and the shape of the crank gear is deformed so that when the cranks reach positions where the user must increase forces applied to the pedals, the vertical diameter of the crank gear can be increased. Also, when the cranks reach positions where the user must release forces applied to the pedals, the vertical diameter of the crank gear can be reduced, whereby the correction of pedaling can be assisted by using such a crank gear.
    • 一种用于自行车的踏板校正装置,其能够客观地检测踏板状态并辅助检测,从而可以根据准确的理论执行踏板技术的训练。 具有安装在其末端的踏板的曲柄安装在装置的中心轴上,使得曲柄齿轮可以根据曲柄的旋转而旋转。 监视用户踏板状态,曲柄齿轮的形状发生变形,使得当曲柄到达用户必须增加施加在踏板上的力的位置时,曲柄齿轮的垂直直径可以增加。 此外,当曲柄到达用户必须释放施加到踏板的力的位置时,曲柄齿轮的垂直直径可以减小,从而可以通过使用这种曲柄齿轮辅助踩踏校正。
    • 83. 发明申请
    • LIQUID CONTAINER
    • 液体容器
    • US20070040874A1
    • 2007-02-22
    • US11465224
    • 2006-08-17
    • Hitoshi Matsumoto
    • Hitoshi Matsumoto
    • B41J2/175
    • B41J2/17513B41J2/17523B41J2/17526B41J2/17546B41J2/17553
    • In an ink cartridge (liquid container) 1 of the invention, an ink delivery port 17 that connects an ink supply needle 15 of a cartridge holder 110 to an ink containing chamber 7 is disposed at an substantially central position in a shorter side direction of a container front surface 3a. Two positioning portions 13 and 14 that fit to positioning pins 11 provided at two places in the cartridge holder 110 so as to position a container main body 3, a pressurized air introduction portion 21 that connects a pressurized air supply path 19 of the cartridge holder 110 to a pressure chamber 5, and a data storage unit 25 that is connected to a connection terminal 23 of the cartridge holder 110 are disposed toward one side in a shorter side direction of the container front surface 3a with respect to the ink delivery port 17.
    • 在本发明的墨盒(液体容器)1中,将墨盒保持器110的供墨针15连接到墨水容纳室7的墨水输送口17设置在基本上位于 集装箱前面3 a。 两个定位部分13和14,其配合到设置在盒保持器110中的两个位置处的定位销11,以便定位容器主体3;加压空气导入部21,其连接盒保持器110的加压空气供应路径19 并且连接到盒保持器110的连接端子23的数据存储单元25相对于墨水输送口17朝向容器前表面3a的短边方向的一侧设置 。
    • 84. 发明授权
    • Gesture identification of controlled devices
    • 控制装置的手势识别
    • US07173604B2
    • 2007-02-06
    • US10807566
    • 2004-03-23
    • David L. MarvitHitoshi Matsumoto
    • David L. MarvitHitoshi Matsumoto
    • G09G5/00
    • H04N21/422G06F3/017G06F3/0346G06F21/31G08C2201/32H04W12/06
    • A handheld device includes a gesture database maintaining a plurality of gestures, each gesture defined by a motion of the device with respect to a first position of the handheld device. The gestures comprise a plurality of remote command gestures and at least one device selection gesture. The device includes a gesture mapping database comprising a plurality of command maps, each of the command maps corresponding to a particular controllable device and mapping at least one of the remote command gestures to a command for controlling operation of the particular controllable device. The device also includes a motion detection module operable to detect motion of the handheld device within three dimensions and a device selection module operable to detect the device selection gesture based on the motion of the handheld device and to select a currently controlled one of the controllable devices in response to the device selection gesture. The device includes a control module operable to select one of the command maps corresponding to the currently controlled controllable device, to track movement of the handheld device using the motion detection module, to compare the tracked movement against the remote command gestures to determine a matching gesture, and to identify, using the selected command map, the command mapped to the matching gesture. The device also includes a wireless interface operable to transmit the identified command to a remote receiver for delivery to the currently controlled controllable device.
    • 手持设备包括保持多个手势的手势数据库,每个姿势由该装置相对于该手持装置的第一位置的运动而定义。 手势包括多个远程命令手势和至少一个设备选择手势。 所述设备包括包括多个命令映射的手势映射数据库,每个命令映射对应于特定的可控设备,并将远程命令手势中的至少一个映射到用于控制特定可控设备的操作的命令。 所述设备还包括运动检测模块,其可操作以检测所述手持设备在三维内的运动;以及设备选择模块,其可操作以基于所述手持设备的运动来检测所述设备选择姿势,并且选择所述可控设备中的当前受控的一个 响应于设备选择手势。 该装置包括控制模块,可操作以选择对应于当前控制的可控设备的命令图中的一个,以跟踪使用运动检测模块的手持设备的移动,以便比较跟踪的移动与远程命令手势,以确定匹配手势 并且使用所选择的命令映射来识别映射到匹配手势的命令。 该设备还包括无线接口,其可操作以将所识别的命令发送到远程接收器以传送到当前受控的可控设备。
    • 85. 发明授权
    • Liquid ejection apparatus
    • 液体喷射装置
    • US07121654B2
    • 2006-10-17
    • US10695446
    • 2003-10-29
    • Hitoshi MatsumotoShinichiro Yoshikawa
    • Hitoshi MatsumotoShinichiro Yoshikawa
    • B41J2/175B41J2/14
    • B41J2/1752B41J2/17513
    • A liquid ejection apparatus including a liquid supply unit having a supply unit case for accommodating a liquid charging portion, and a main body having a supply unit arranging part for arranging the liquid supply unit and a carriage part for moving along the vicinity of the supply unit arranging part, wherein the carriage side of the liquid supply unit arranged in the supply unit arranging part is provided with an information storing unit mounting portion formed to be protruded toward the carriage side, the supply unit arranging part is provided with a through window portion for causing the information storing unit mounting portion to penetrate therethrough, and carriage side information storing unit is formed in a portion corresponding to the through window portion in the carriage part for moving in the vicinity of the through window portion.
    • 一种液体喷射装置,包括:液体供应单元,具有用于容纳液体充填部分的供应单元壳体;以及主体,具有用于布置液体供应单元的供应单元布置部分和用于沿供应单元附近移动的托架部分 布置在供应单元配置部分中的液体供应单元的滑架侧的布置部分设置有形成为朝向滑架侧突出的信息存储单元安装部分,供应单元布置部分设置有用于 使信息存储单元安装部分穿过其中,并且滑架侧信息存储单元形成在与滑架部分中的通孔部分相对应的部分中,用于在通过窗口部分附近移动。
    • 86. 发明申请
    • Process for producing purified anthocyanin and crystalline anthocyanin
    • 生产纯化花青素和结晶花青素的方法
    • US20060166330A1
    • 2006-07-27
    • US11392599
    • 2006-03-30
    • Hitoshi MatsumotoSatoshi HanamuraMasao Hirayama
    • Hitoshi MatsumotoSatoshi HanamuraMasao Hirayama
    • C12P19/58
    • C07H17/00C07H17/065C09B61/00C12P19/14C12P19/44
    • Provided are a process for producing purified anthocyanidin glucoside in which a rhamnose end of anthocyanidin rutinoside is cleaved using rhamnosidase to convert the anthocyanidin rutinoside component into anthocyanidin glucoside, the anthocyanidin glucoside component being then purified and isolated; or a crystalline anthocyanidin glucoside salt obtained by further crystallizing the purified anthocyanidin glucoside and a process for producing the same. Also provided are a process for producing purified anthocyanidin rutinoside in which a glucose end of anthocyanidin glucoside is cleaved using β-glucosidase to degrade and remove the end, the anthocyanidin rutinoside component being then purified and isolated; or a crystalline anthocyanidin rutinoside salt obtained by further crystallizing the purified anthocyanidin rutinoside and a process for producing the same.
    • 提供了使用鼠李糖苷酶将花色素芸香糖苷成分转化为花色素苷葡糖苷的花青素芸香糖苷的鼠李糖末端切割纯化花青素葡糖苷的方法,然后纯化和分离花色素苷苷组分; 或通过进一步结晶纯化的花青素葡糖苷获得的结晶花色素苷糖苷及其制备方法。 还提供了生产纯化的花青素芸香糖苷的方法,其中使用β-葡糖苷酶切割花青素葡糖苷的葡萄糖末端以降解和除去末端,然后纯化和分离花色素芸香糖苷组分; 或通过进一步结晶纯化的花青素芸香苷获得的结晶花色素芸香糖苷盐及其制备方法。
    • 87. 发明申请
    • Liquid container
    • 液体容器
    • US20050243149A1
    • 2005-11-03
    • US11075288
    • 2005-03-08
    • Hitoshi Matsumoto
    • Hitoshi Matsumoto
    • B41J2/175B65D77/06
    • B41J2/17513B41J2/17556
    • A liquid container includes a liquid pack having a flexile pouch holding liquid, the flexible pouch having a bent wall which bends with a consumption of the liquid held in the flexible pouch; a container body containing the liquid pack; and a restricting member to be in contact with the bent wall of the flexible pouch for restricting the bent wall of the flexible pouch from bending outward while the liquid is consumed. The restricting member is in contact with the bent wall over substantially the entire thickness of the flexible pouch of the liquid pack. When the flexible pouch of the liquid pack is compressed to discharge the liquid, the bent wall of the flexible pouch of the liquid pack can be surely prevented from bending outward, without any breakage of the flexible pouch.
    • 液体容器包括具有柔性袋保持液体的液体包装,柔性袋具有弯曲的壁,该弯曲壁随着保持在柔性袋中的液体的消耗而弯曲; 容纳该液体包装的容器主体; 以及与柔性袋的弯曲壁接触的限制构件,用于限制柔性袋的弯曲壁在液体被消耗时向外弯曲。 限制构件在液体包装的柔性袋的基本上整个厚度上与弯曲的壁接触。 当液体包装的柔性袋被压缩以排出液体时,可以可靠地防止液体包装的柔性袋的弯曲壁向外弯曲,而不会破坏柔性袋。
    • 90. 发明授权
    • Method for manufacturing a display device, and display device substrate
    • 显示装置的制造方法以及显示装置用基板
    • US06836140B2
    • 2004-12-28
    • US09983947
    • 2001-10-26
    • Takashi FujikawaYoshiharu KataokaHitoshi Matsumoto
    • Takashi FujikawaYoshiharu KataokaHitoshi Matsumoto
    • G01R3100
    • G02F1/1309G02F1/13452
    • A TEG (Test Element Group) block 1 includes a TFT (Thin Film Transistor) test element and a capacitance test element that are arranged adjacent to each other, and six test terminals. A TEG block 2 includes a resistance test element and a capacitance test element that are arranged adjacent to each other, and six test terminals. In these TEG blocks, the test terminals are arranged with the same pattern. Each of the test elements in each TEG block is connected to at least one of a plurality of test terminals included in that TEG block. The test elements can be efficiently formed on the substrate in view of the space on a display device substrate or the preference of characteristics to be evaluated. Moreover, characteristics of each test element can be conducted with a common probe regardless of the type of display device.
    • TEG(测试元件组)块1包括彼此相邻布置的TFT(薄膜晶体管)测试元件和电容测试元件,以及六个测试端子。 TEG模块2包括彼此相邻布置的电阻测试元件和电容测试元件,以及六个测试端子。 在这些TEG模块中,测试端子以相同的模式排列。 每个TEG块中的每个测试元件连接到包括在该TEG块中的多个测试终端中的至少一个测试元件。考虑到显示设备基板上的空间或者优选地,可以在衬底上有效地形成测试元件 的特征被评估。 此外,无论显示装置的类型如何,都可以使用普通探针来进行每个测试元件的特性。