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    • 2. 发明授权
    • Clutch mechanism
    • 离合器机构
    • US08292363B2
    • 2012-10-23
    • US12248094
    • 2008-10-09
    • Takao YamaguchiAtsuki Sasaki
    • Takao YamaguchiAtsuki Sasaki
    • A47C7/36B60N2/427
    • B60N2/888Y10T74/18696
    • A clutch mechanism for selectively transmitting a force applied thereto may include an operation bracket that is rotatably connected to the vehicle seat via a first pivot shaft and is connected to a force output cable, a rotatable arm that is rotatably connected to the operation bracket via the first pivot shaft and is connected to a force input cable, and a swing arm that is rotatably connected to the operation bracket via a second pivot shaft. The operation bracket includes a curved slot formed therein. The rotatable arm includes an elongated slot that has a toothed portion. The swing arm includes an engagement portion that movably engages both of the curved slot of the operation bracket and the elongated slot of the rotatable arm.
    • 用于选择性地传递施加到其上的力的离合器机构可以包括经由第一枢轴可旋转地连接到车辆座椅的操作支架,并且连接到力输出电缆,可旋转的臂,通过该转动臂可旋转地连接到操作支架 第一枢轴并连接到力输入电缆,以及通过第二枢轴可旋转地连接到操作支架的摆臂。 操作支架包括形成在其中的弯曲槽。 可旋转臂包括具有齿形部分的细长槽。 摆臂包括可操作地接合操作支架的弯曲槽和可旋转臂的细长槽两者的接合部分。
    • 3. 发明申请
    • METHOD FOR PRODUCING REDUCED COENZYME Q10, METHOD FOR STABILIZING SAME, AND COMPOSITION COMPRISING SAME
    • 用于生产降低的聚苯乙烯的方法Q10,其稳定化方法和包含其的组合物
    • US20120201802A1
    • 2012-08-09
    • US13502181
    • 2010-10-14
    • Takao YamaguchiTakaaki JikiharaShiro KitamuraYasuyoshi Ueda
    • Takao YamaguchiTakaaki JikiharaShiro KitamuraYasuyoshi Ueda
    • A61K38/43A61K31/122A23L1/30C07C50/28
    • A61K36/53A23L33/10A23L33/105A23L33/15A23P10/30A23V2002/00A61K9/4875A61K31/09A61K31/122A61K36/15A61K36/736A61K36/82C07C41/26C07C41/46C07C43/23A23V2250/21A23V2250/314
    • The present invention aims to provide a component having not only an ability to reduce oxidized coenzyme Q10 and an ability to stabilize reduced coenzyme Q10, but also nutrient, flavor, broad utility and the like, and a utilization method thereof. The present invention relates to a safe and convenient method of producing reduced coenzyme Q10, including reducing oxidized coenzyme Q10 by using, as a component derived from a naturally-occurring substance, which is safe for the body, any one or more components selected from the group consisting of an acerola extract, a tea extract, a rosemary extract, a pine bark extract and a Vaccinium vitis-idaea extract. In addition, the present invention also relates to a method of stabilizing reduced coenzyme Q10 in the co-presence of a component derived from a naturally-occurring substance, and a stabilized composition. Since the above-mentioned components derived from a naturally-occurring substance can also be expected to function as nutrients, the composition of the present invention is particularly useful as a pharmaceutical product, a supplement, a food with nutrient function claims, a food for specified health use, a nutritional supplement, a nutritional product, an animal drug, a cosmetic, a therapeutic drug and the like, which are required to show various effects.
    • 本发明的目的在于提供一种不仅具有减少氧化型辅酶Q10的能力和稳定还原型辅酶Q10的能力,而且还具有养分,风味,广泛用途等的成分及其利用方法。 本发明涉及一种生产还原型辅酶Q10的安全且方便的方法,其包括使用作为对身体安全的天然存在物质的成分的还原氧化型辅酶Q10,任何一种或多种选自 一组由槭树提取物,茶提取物,迷迭香提取物,松树皮提取物和痘苗提取物组成。 此外,本发明还涉及在衍生自天然存在物质的成分的共存下稳定还原型辅酶Q10的稳定化组合物的方法。 由于上述衍生自天然物质的组分也可以预期作为营养物质使用,所以本发明的组合物特别可用作药物产品,补充剂,具有营养功能要求的食品,特定食品 健康用品,营养补充剂,营养产品,动物药物,化妆品,治疗药物等,需要显示各种效果。
    • 5. 发明授权
    • Target position detection apparatus for robot
    • 机器人目标位置检测装置
    • US08121732B2
    • 2012-02-21
    • US12232441
    • 2008-09-17
    • Yasuhiko HashimotoNobuyasu ShimomuraTakao YamaguchiTetsuya Yoshida
    • Yasuhiko HashimotoNobuyasu ShimomuraTakao YamaguchiTetsuya Yoshida
    • G05B19/00
    • H01L21/67778B25J9/1692G05B2219/37411G05B2219/39013G05B2219/39041G05B2219/39413H01L21/67259H01L21/67766H01L21/68
    • A target position detection apparatus for a robot includes: a robot including an arm configured to be freely moved in at least two directions of X and Y axes, the arm having a wrist axis provided at a distal end of the arm and configured to be freely moved in a horizontal direction, and the wrist axis being provided with an end effector; and a control unit adapted for driving a memory to store a teaching point therein and controlling an operation of the robot such that the end effector will be moved toward the teaching point stored in the memory. The control unit is further adapted for changing a pressing force of the end effector against a target by changing a control loop gain, and bringing the end effector into contact with the target, while setting the control loop gain of the wrist axis lower than a predetermined value at least from a position adjacent to the teaching point at which the target is located, so as to capture a position in a state in which the end effector is in contact with the target, thereby detecting the position of the target.
    • 一种用于机器人的目标位置检测装置,包括:机器人,其包括构造成能够在X轴和Y轴的至少两个方向上自由移动的臂,所述臂具有设置在所述臂的前端的手腕轴, 沿水平方向移动,腕轴设置有端部执行器; 以及控制单元,适于驱动存储器以存储其中的教导点,并且控制机器人的操作,使得末端执行器将朝向存储在存储器中的教学点移动。 控制单元还适于通过改变控制环增益来改变端部执行器对目标的按压力,并且使端部执行器与目标接触,同时将手腕轴的控制环增益设置为低于预定值 至少从与目标所在的教导点相邻的位置获得值,以便捕获末端执行器与目标物接触的状态下的位置,从而检测目标的位置。
    • 7. 发明授权
    • Medium distribution device, medium reception device, medium distribution method, and medium reception method
    • 介质分配装置,介质接收装置,介质分配方法和介质接收方法
    • US08020140B2
    • 2011-09-13
    • US10527054
    • 2004-03-11
    • Daiji IdoTakao YamaguchiJunichi SatoTomoaki Itoh
    • Daiji IdoTakao YamaguchiJunichi SatoTomoaki Itoh
    • G06F9/44
    • H04L65/602H04L29/06027H04N21/222H04N21/23412H04N21/2385H04N21/6131H04N21/64322H04N21/8153H04N21/8543H04W4/06
    • According to the media server 100 and the network control apparatus 200, upon distributing a plurality of media data to the media receiving apparatuses 400 having different transmission rates by broadcasting or multicasting, the distribution precedence is attached by associating the program control information and the media data. The distribution precedence attached to the program control information is set same as or lower than the distribution precedence of all media data included in the program concerned. Then, depending on the distribution precedence, the transmission possible media data and the program only are selectively distributed. The program control information relating to the program that includes the receivable media data by the media receiving terminal apparatus 400 only is selected and received. This way, the receivable media data is distributed depending on the transmission environment of the media receiving apparatus. It is possible to prevent the media receiving apparatus selecting the invalid program.
    • 根据媒体服务器100和网络控制装置200,通过广播或多播将多个媒体数据分发到具有不同传输速率的媒体接收装置400时,通过将节目控制信息和媒体数据相关联来附加分配优先级 。 附加到程序控制信息的分发优先级被设置为与包括在所涉及的程序中的所有媒体数据的分发优先级相同或更低。 然后,根据分配优先级,传输可能的媒体数据和程序只是有选择地分布。 选择并接收与媒体接收终端装置400仅包含可接收媒体数据的节目有关的节目控制信息。 这样,根据媒体接收装置的传输环境来分配可接收媒体数据。 可以防止媒体接收设备选择无效节目。
    • 8. 发明申请
    • BEST PATH SELECTING DEVICE, BEST PATH SELECTING METHOD, AND PROGRAM
    • 最佳路径选择设备,最佳路径选择方法和程序
    • US20110069612A1
    • 2011-03-24
    • US12994287
    • 2010-03-10
    • Takao YamaguchiAtsushi YoshidaTomoki Ishii
    • Takao YamaguchiAtsushi YoshidaTomoki Ishii
    • H04L12/26
    • H04L45/28H04L45/12H04L45/125H04L45/22H04L49/109
    • A best path selecting device in a bus master (300) includes a path information generating unit (302) which generates path information indicating paths from the bus master (300) to the bus master (400), a path malfunction predicting unit (303) which predicts a malfunction on each of the NoC routers, using the number of flows as a scale for occurrence of a malfunction on the NoC router, each of the flows being a sequence of one or more flits to be transmitted from a same transmission source to a same destination by the NoC router which is a candidate for monitoring, at least one of which is determined for each path indicated by the path information, and a bypass path selecting unit (304) configured to select, when the malfunction Is predicted on the at least one NoC router that is the candidate for monitoring on one of the paths, a path that should be used for transmitting the data from the bus master (300) to the bus master (400), from the paths indicated by the path information except the path including the NoC router on which the malfunction is predicted.
    • 总线主机(300)中的最佳路径选择装置包括路径信息生成单元(302),其生成表示从总线主机(300)到总线主机(400)的路径的路径信息,路径故障预测单元(303) 其预测每个NoC路由器上的故障,使用流数作为在NoC路由器上出现故障的比例,每个流是从同一个传输源发送到一个或多个猝发的序列, 由作为用于监视的候选者的NoC路由器的相同目的地,对由路径信息指示的每个路径确定其中的至少一个;以及旁路路径选择单元(304),被配置为当在 至少一个NoC路由器是用于在路径信息中指示的路径中的一条路径上的监视候选者,该路径应当用于将数据从总线主站(300)发送到总线主站(400) 除 包括预测故障的NoC路由器的路径。
    • 10. 发明授权
    • Relay transmission device and relay transmission method
    • 中继传输装置和中继传输方式
    • US07852764B2
    • 2010-12-14
    • US12095577
    • 2007-09-12
    • Takao YamaguchiKatsuji AokiAtsushi Yoshida
    • Takao YamaguchiKatsuji AokiAtsushi Yoshida
    • G01R31/08G06F11/00G06F13/36G08C15/00H04J1/16H04J3/14H04L1/00H04L12/26
    • H04L1/0001H04B7/15592H04L47/10H04L47/11H04L47/12H04L47/14H04L2001/0097H04W28/10
    • A relay transmission device can achieve high-quality transmission by suppressing congestion in an ad hoc network, even when a network environment changes or performance of a relay device to be communicated with changes. The relay transmission device includes: an optimization coefficient storage unit (1608) that stores, for each cooperative relay device, a self-optimization coefficient for weighting an amount of data determined by a self-optimization flow control unit (1603) and a total optimization coefficient for weighting an amount of data determined by a total optimization flow control unit (1604); and a balance adjustment unit (1605) that compares, for each cooperative relay device, an influence of congestion caused by transmission bandwidth allocation contention on the relay transmission device and an influence of congestion caused by transmission bandwidth allocation contention on the cooperative relay device, and adjusts the self-optimization coefficient and the total optimization coefficient based on a result of the comparison.
    • 中继传输设备即使在网络环境改变或者继续传送设备的性能改变时,也可以通过抑制自组织网络中的拥塞来实现高质量的传输。 中继传输装置包括:优化系数存储单元,其针对每个协作中继设备存储用于对由自优化流控制单元确定的数据量进行加权的自优化系数(1603)和总优化 用于对由总优化流控制单元(1604)确定的数据量进行加权的系数; 以及平衡调整单元(1605),对于每个协作中继装置,对由所述中继发送装置发送带宽分配争用引起的拥塞的影响以及由所述协作中继装置发送的带宽分配争用引起的拥塞的影响进行比较,以及 根据比较结果调整自优化系数和总优化系数。