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    • 2. 发明申请
    • LOAD DETECTOR AND LOAD DETECTION SYSTEM
    • 负载检测器和负载检测系统
    • WO2016199414A1
    • 2016-12-15
    • PCT/JP2016/002779
    • 2016-06-08
    • MINEBEA CO., LTD.
    • SATO, KunihikoHATCHO, Jun
    • G01G3/14G01G19/44G01G21/14
    • G01G3/1412G01G19/445G01G21/14
    • There is provided a load detector which detects a load successfully while reducing the influence of a position deviation error. The load detector (100) includes: a first beam type load cell (21) which is supported on a first support base (11b) in a cantilever manner to have a free end (21sf); a second beam type load cell (22) which is disposed to face the first beam type load cell (21) and which is supported on a second support base (12b) in a cantilever manner to have a free end (22sf); and a mounting part (3) on which an object is to be placed, which includes a first connection part (32) connected to the first beam type load cell and a second connection part (33) connected to the second beam type load cell, and which is disposed between the first beam type load cell and the second beam type load cell. The free end of the first beam type load cell and the free end of the second beam type load cell face opposite directions to each other in an extending direction of the first beam type load cell. The first connection part of the mounting part is connected to the first beam type load cell on a side of the free end of the first beam type load cell and the second connection part of the mounting part is connected to the second beam type load cell on a side of the free end of the second beam type load cell.
    • 提供了一种负载检测器,其在减少位置偏差误差的影响的同时成功地检测负载。 负载检测器(100)包括:以悬臂方式支撑在第一支撑基座(11b)上以具有自由端(21sf)的第一梁式称重传感器(21); 第二梁式称重传感器(22),其设置成面对第一梁式称重传感器(21)并且以悬臂方式支撑在第二支撑基座(12b)上以具有自由端(22sf); 和安装部件(3),其上放置有物体,其包括连接到第一光束型测力传感器的第一连接部分(32)和连接到第二光束式称重传感器的第二连接部分(33) 并且其设置在第一光束型称重传感器和第二光束型称重传感器之间。 第一光束型测力传感器的自由端和第二光束型测力传感器的自由端在第一光束型测力传感器的延伸方向上彼此相反的方向。 安装部的第一连接部在第一梁型称重传感器的自由端的一侧与第一梁型称重传感器连接,安装部的第二连接部与第二梁型称重传感器连接 第二束型称重传感器的自由端的一侧。
    • 6. 发明申请
    • LIQUID CONSUMING APPARATUS
    • 液体消耗装置
    • WO2016117331A1
    • 2016-07-28
    • PCT/JP2016/000253
    • 2016-01-19
    • BROTHER KOGYO KABUSHIKI KAISHA
    • OSAKABE, Yoshinori
    • B41J2/175
    • B41J2/1754B41J2/175B41J2/17509B41J2/1752B41J2/17536B41J29/13
    • There is provided a liquid consuming apparatus including: a liquid consuming section; a tank having a liquid storage chamber and an inlet port; a cap; and a casing having a cover movable with respect to the tank between a closed position and an open positon. The cover has an inner surface and a projection projected from the inner surface toward the tank. The projection of the cover is provided with a pressing portion facing the outer surface of the cap at a predetermined spacing distance, under a condition that the liquid consuming apparatus is in a normal state in which the cover is in the closed position and that the cap is installed in the inlet port, and the pressing portion abuts firstly against the outer surface, under a condition that the cap is moved in the insertion direction for allowing the cap to be removed from the inlet port.
    • 提供了一种液体消耗装置,包括:液体消耗部; 具有液体储存室和入口的罐; 一顶帽子; 以及具有可在关闭位置和打开位置之间相对于罐移动的盖的壳体。 盖具有内表面和从内表面朝向罐突出的突起。 在液体消耗装置处于处于关闭位置的正常状态的情况下,盖的突出部设置有以预定的间隔距离面向罩的外表面的按压部,并且帽 安装在入口端口,并且压盖部分首先抵靠外表面,在帽沿插入方向移动以允许帽从入口移除的条件下抵靠外表面。
    • 10. 发明申请
    • PROFILE MEASURING APPARATUS, STRUCTURE MANUFACTURING SYSTEM, METHOD FOR MEASURING PROFILE, METHOD FOR MANUFACTURING STRUCTURE, PROGRAM, AND NON-TRANSITORY COMPUTER READABLE MEDIUM
    • 配置文件的测量装置,结构制造系统,测量配置文件的方法,制造结构的方法,程序和非终端计算机可读介质
    • WO2013065862A1
    • 2013-05-10
    • PCT/JP2012/078558
    • 2012-10-30
    • NIKON CORPORATION
    • YAMADA, Tomoaki
    • G01B11/25G01B21/04
    • G01B11/25B25J11/00G01B21/045
    • A profile measuring apparatus includes: a light source device from which a projection light, which has a light amount changing with lapse of time in a first period and which has a predetermined spatial distribution, is irradiated to an object; an imaging element which takes an image of the object to which the projection light is irradiated; a second period setting section which sets a second period including at least a part of the first period; and a profile information obtaining section which obtains an information with respect to the profile of the object based on an image data taken by the imaging element in the second period. The second period setting section sets the second period based on a light amount of a light which comes into the imaging element at the time of an imaging performed before the imaging performed in the second period; and a light amount change pattern of the projection light changing with lapse of time in the first period.
    • 轮廓测量装置包括:光源装置,其具有在第一时间段内具有随时间流逝而变化且具有预定空间分布的光量的投影光照射到物体; 拍摄投影光被照射的物体的图像的摄像元件; 第二期间设定部,其设定包含所述第一期间的至少一部分的第二期间; 以及简档信息获取部,其基于在第二时段中由成像元件拍摄的图像数据,获得关于对象的轮廓的信息。 第二期间设定部基于在第二期间内进行摄像之前进行摄像时的入射到成像元件的光的光量来设定第二期间; 以及投影光在第一时段中随时间变化的光量变化图案。