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    • 21. 发明专利
    • Plasma treatment device
    • 等离子体处理装置
    • JP2010029830A
    • 2010-02-12
    • JP2008197515
    • 2008-07-31
    • Nakamura Sangyo Gakuen学校法人 中村産業学園
    • KOGA KEIKO
    • B01J19/08H05H1/24
    • PROBLEM TO BE SOLVED: To provide a plasma treatment device for uniformly subjecting a small to large amount of a powder to glow plasma treatment at atmospheric pressure to impart a useful functional group to the surface of the power. SOLUTION: The plasma treatment device includes a discharge container 1 having a center electrode 2 and a cylindrical peripheral electrode 3 arranged through a predetermined gap 5 with respect to the center electrode 2, a dielectric 4 provided to at least one of the surface of the central electrode 2 and the surface of the peripheral electrode 3, a fluid injection means provided on one end of the discharge container 1 and constituted so as to inject a fluid into the gap 5, a fluid discharge means provided in the other end of the discharge container 1 and constituted so as to discharge the fluid from the gap 5, and a rotary means for rotating the discharge container 1 centering around the central electrode 2 in a state that AC or pulse voltage is applied across the central electrode 2 and the peripheral electrode 3. COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:提供一种等离子体处理装置,用于均匀地对大量的粉末进行大气压发光等离子体处理,以在功率表面赋予有用的官能团。 解决方案:等离子体处理装置包括:排出容器1,具有中心电极2和圆周周边电极3,其相对于中心电极2通过预定的间隙5布置;电介质4,设置在至少一个表面 中心电极2和周边电极3的表面的流体喷射装置,设置在排出容器1的一端并构成为将流体注入到间隙5中的流体喷射装置, 排出容器1并且构成为从间隙5排出流体;以及旋转装置,用于在AC或脉冲电压施加在中心电极2两端的状态下使围绕中心电极2居中的放电容器1旋转, 外围电极3.版权所有(C)2010,JPO&INPIT
    • 22. 发明专利
    • Motor speed control device
    • 电机速度控制装置
    • JP2006081347A
    • 2006-03-23
    • JP2004264271
    • 2004-09-10
    • Nakamura Sangyo GakuenYaskawa Electric Corp学校法人 中村産業学園株式会社安川電機
    • TSURUTA KAZUHIROSAKAKI TAISUKEFUJIMOTO TAKASHI
    • H02P29/00
    • PROBLEM TO BE SOLVED: To provide a motor speed control device which will not cause any speed error even in a steady state, without containing errors in the estimated speed due to the adverse effects of external disturbance such as friction, when a speed feedback signal is compensated for by estimation and used, in order to implement a high-speed and high-precision response. SOLUTION: The speed feedback signal, used in an integrator 14 within a speed controller, is taken as a value Vfb calculated from the difference between a detected position value at a current time and a detected position value before 1 sampling, and a speed feedback signal used in a proportioner 16 is taken as a weighing moving average CVfb of an estimated speed signal. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供即使在稳定状态下也不会引起任何速度误差的电动机速度控制装置,而不会由于外部干扰(例如摩擦)的不利影响而在估计速度中不存在误差,当速度 通过估计和使用来补偿反馈信号,以实现高速和高精度响应。 解决方案:将速度控制器内的积分器14中使用的速度反馈信号作为从当前时间的检测位置值与1次采样前的检测位置值之间的差计算出的值Vfb, 在比例调制器16中使用的速度反馈信号被作为估计速度信号的称重移动平均值CVfb。 版权所有(C)2006,JPO&NCIPI
    • 23. 发明专利
    • 蛍光色素
    • JP2021038336A
    • 2021-03-11
    • JP2019161457
    • 2019-09-04
    • 学校法人 中村産業学園
    • 礒部 信一郎又賀 駿太郎松岡 洋平
    • C09B23/14C09K11/06G01N33/58C09B57/00
    • 【課題】より高い蛍光強度を有する蛍光色素を提供すること。 【解決手段】本発明の蛍光色素は、一般式(I)で表されるトリアゾール縮合環化合物からなる。一般式(I)中、R 1 、R 2 は、それぞれ独立に、それぞれ独立に、置換または非置換のアリール基あるいは置換または非置換のヘテロアリール基を示し、A 1 は、−(CH=CR a ) n −(nは1〜6の整数)、−(CH 2 ) n −(nは1〜6の整数)、−(AO) n −(AOは炭素数2〜6のアルキレンオキサイドで、nは1〜10の整数)、−NHCOO−、−CONH−、−CONH(R b )−、−COO−、−SO 2 NH−、−HN−C(=NH)−NH−、−O−、−S−、−NR b −、−Ar−(Arはアリール基またはヘテロアリール基)、−CO−Ar−NR b −、からなる群から選択された1種以上の官能基を示し、R a は水素原子または炭素数1〜4のアルキル基、R b は炭素数1〜4のアルキル基であり、B 1 は、アルキルエステル基、アルキルエーテル基、アルキルアミド基、またはそれらのアルキレンオキサイド(炭素数2〜6)付加体、またはA 1 との連結基を有してもよい生体分子との反応性基を示す。 【選択図】なし
    • 29. 发明专利
    • Dorsal arch height measuring method and foot shape measuring instrument using the same
    • 使用相同方向的背部高度测量方法和脚形测量仪器
    • JP2013064657A
    • 2013-04-11
    • JP2011203902
    • 2011-09-19
    • Asahi Corp株式会社アサヒコーポレーションNakamura Sangyo Gakuen学校法人 中村産業学園
    • MATSUNAGA KATSUYAGOSHI KAZUAKIHAYASHI MASAKIHIRAKAWA KAZUOIZUMI TAKAHIRO
    • G01B11/24
    • PROBLEM TO BE SOLVED: To provide a foot shape measuring instrument capable of solving such a difficulty that the height of a dorsal part cannot be accurately measured because a distance between imaging means and a foot cannot be accurately measured when imaging the lateral of the foot by the imaging means and capable of performing accurate measurement of dorsal arch height.SOLUTION: On a sole image acquired by the imaging means of the foot shape measuring instrument, a distance between the imaging means and the foot can be specified by measuring a distance between each point on a line connecting a tip of a second toe to the final end of a heel and an optical center of the imaging means. By previously finding a transformation from relation between a measurement value in each pixel of an object with known height on various distances from the imaging means and the actual dimensions of the object, the dorsal arch height in each pixel found from the lateral image of the foot can be transformed into the actual dimensions. By the procedure, the foot shape measuring instrument including measurement of the dorsal arch height can be provided.
    • 要解决的问题:为了提供一种能够解决难以准确地测量背部高度的脚形测量仪器,因为当成像装置和脚部的侧面成像时不能准确地测量成像装置和脚部之间的距离 通过成像装置的脚,并且能够执行背弓高度的精确测量。 解决方案:在通过脚形测量仪的成像装置获取的唯一图像上,可以通过测量连接第二脚趾末端的线上的每个点之间的距离来指定成像装置和脚之间的距离 到成像装置的跟部和光学中心的最终端。 通过先前从成像装置的不同距离处的已知高度的物体的每个像素中的测量值与物体的实际尺寸之间的关系发现变换,从脚的侧面图像中发现的每个像素中的背拱高度 可以转化为实际尺寸。 通过该程序,可以提供包括背弓高度的测量的脚形测量仪器。 版权所有(C)2013,JPO&INPIT
    • 30. 发明专利
    • Fish gathering device
    • FISH GATHERING DEVICE
    • JP2012016318A
    • 2012-01-26
    • JP2010156131
    • 2010-07-08
    • Kagoshima UnivKowa Denki Sangyo KkNakamura Sangyo Gakuen交和電気産業株式会社国立大学法人 鹿児島大学学校法人 中村産業学園
    • FUJII SATOSHIMIZUTA KEIANRAKU KAZUHIKOTANAKA KOICHIRO
    • A01K79/00
    • PROBLEM TO BE SOLVED: To provide a fish gathering device capable of effectively gathering and turning fish away while corresponding to a situation of the actual sea surface and inside the sea in real time.SOLUTION: The fish gathering device 1 includes: a mounting substrate 3; a plurality of light-emitting elements 4 irradiating at least one part of a sea surface and an inside the sea 11; a detecting part 8 for detecting information of the sea surface indicating the situation of at least one part of the sea surface 10 and the inside the sea 11; and a control part 6 for controlling an emission pattern of the plurality of light-emitting elements 4 based on the information of the sea surface. The fish gathering device 1 can irradiate the sea surface and the inside the sea with light in the emission pattern optimized for the situation of the actual fishery field.
    • 要解决的问题:提供一种能够在对应于实际海面和海洋内部实时的情况下有效地收集和转动鱼的鱼类收集装置。 鱼采集装置1包括:安装基板3; 多个发光元件4,其照射海面的至少一部分和海中的内部11; 用于检测海面的信息的检测部分8,其指示海面10的至少一部分和海中的内部11的状态; 以及用于基于海面的信息来控制多个发光元件4的发射图案的控制部分6。 鱼类收集装置1可以对实际渔场情况优化的排放图案中的光照射海面和海内。 版权所有(C)2012,JPO&INPIT