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    • 33. 发明授权
    • Drawing processing apparatus
    • 绘图处理设备
    • US6067097A
    • 2000-05-23
    • US66709
    • 1998-04-27
    • Masao MoritaKazuto Hayashi
    • Masao MoritaKazuto Hayashi
    • G06F3/153G06F9/50G06T1/20G06T11/20G06F15/80
    • G06F9/505G06T1/20
    • To equally assign processing to a plurality of processing units which perform drawing processing in parallel. The drawing data generating unit generates vectors from drawing data. The load estimated value calculating means obtains existence frequency of the vectors on each scan line as a load estimated value, and the processing responsibility range assignment unit assigns a drawing processing area within a page to each of the drawing processing units, on the basis of load estimated values and a reference value. The drawing data storage control unit transfers a vector required for drawing processing in a drawing processing area assigned to each of the drawing processing units to a corresponding drawing processing unit. Each of the drawing processing units performs drawing processing using the transferred vector. The processing result storage control unit synthesizes and outputs the results of drawing processing in the drawing processing unit.
    • 为了对多个并行执行绘图处理的处理单元分配处理。 绘制数据生成单元从绘制数据生成向量。 负载估计值计算装置将每个扫描线上的矢量的存在频率作为负载估计值,并且处理责任范围分配单元基于负载向每个绘图处理单元分配页面内的绘图处理区域 估计值和参考值。 绘图数据存储控制单元将分配给每个绘图处理单元的绘制处理区域中的绘图处理所需的矢量传送到相应的绘制处理单元。 每个绘图处理单元使用传送的矢量执行绘图处理。 处理结果存储控制单元在绘图处理单元中合成并输出绘图处理的结果。
    • 34. 发明授权
    • Electrochemical detection method and apparatus therefor
    • 电化学检测方法及其设备
    • US5389215A
    • 1995-02-14
    • US53635
    • 1993-04-27
    • Tsutomu HoriuchiOsamu NiwaHisao TabeiMasao Morita
    • Tsutomu HoriuchiOsamu NiwaHisao TabeiMasao Morita
    • G01N27/42G01N27/26
    • G01N27/42
    • In an electrochemical detection method using an apparatus including a first vessel and a second vessel, a reference electrolytic solution in the second vessel, first and second closely spaced working electrodes immersed in a sample solution for measurement in the first vessel, a stripping electrode immersed in the reference electrolytic solution, and an ionic conductor arranged between the first vessel and the second vessel, the reference electrolytic solution contains an electrolyte which can be deposited and dissolved by an electrochemical reaction by applying a potential to the stripping electrode. In a first stage, a pre-electrolysis potential is applied to the first working electrode with the stripping electrode being connected to the second working electrode to deposit the electrolyte in the reference electrolytic solution on the stripping electrode. In a second stage, after the second working electrode is disconnected from the stripping electrode, the potential of the stripping electrode is swept to measure a current generated when the electrolyte deposited on the stripping electrode in the first stage is dissolved from the stripping electrode, and the concentration of an analyte exiting in the sample solution for measurement is determined from the measured stripping current.
    • 在使用包括第一容器和第二容器的装置的电化学检测方法中,第二容器中的参考电解液,浸没在用于在第一容器中测量的样品溶液中的第一和第二紧密间隔的工作电极,浸没在 所述参考电解液和布置在所述第一容器和所述第二容器之间的离子导体,所述参考电解液包含可通过向所述剥离电极施加电势而通过电化学反应沉积和溶解的电解质。 在第一阶段中,将预电解电位施加到第一工作电极,剥离电极连接到第二工作电极,以将电解质沉积在剥离电极上的参考电解液中。 在第二阶段中,在第二工作电极从剥离电极断开之后,剥离电极的电位被扫描以测量当第一阶段中剥离电极上沉积的电解质从剥离电极溶解时产生的电流, 从测量的剥离电流确定在待测样品溶液中排出的分析物的浓度。
    • 36. 发明授权
    • Marine cable burying method and device therefor
    • 船用电缆埋设法及其装置
    • US4537530A
    • 1985-08-27
    • US585631
    • 1984-03-07
    • Kazuomi YamamuraHideo IshiharaYoshinao IwamotoHifumi SakaguchiMasao MoritaToshio Izawa
    • Kazuomi YamamuraHideo IshiharaYoshinao IwamotoHifumi SakaguchiMasao MoritaToshio Izawa
    • E02F5/10E02F9/20H02G1/10F16L1/04
    • E02F5/107E02F5/105E02F9/2045H02G1/10
    • The present invention aims at providing a method and a device therefor which can effectively as well as accurately bury a cable under marine beds not only when a cable is newly laid and buried but also when a cable has to be reburied. The method and the device according to the present invention are characterized in that a burying device is guided to approach the cable by using a travelling member provided on said burying device, a travelling control mechanism thereof being controlled by a receiving output from a transmitter which is mounted on the cable in advance by a receiver provided on the burying device, that the cable is caught and held by a cable engaging member of said burying device while the burying device is detecting the buried cable track and travelling therealong, and that at the same time an excavation member of said burying device digs and forms a groove while the burying device guides and buries the cable within the excavated groove. The method according to the present invention is further characterized in that the burying device is provided with a travelling device which is controlled by the output from a receiver which receives the output from a transmitter on the cable, that said device body is provided at the middle portion thereof with a cable engaging member having a cable engaging mechanism as well as a buried cable route detection mechanism and an excavation member.
    • 本发明的目的在于提供一种方法和装置,其可以有效地并且准确地将电缆埋在海床下,不仅当电缆被新建和埋设时,而且还必须在电缆必须被重新加固时。 根据本发明的方法和装置的特征在于,通过使用设置在所述掩埋装置上的行进构件将埋入装置引导以接近电缆,其行进控制机构由发射器的接收输出控制,发射器的接收输出 预先通过设置在掩埋装置上的接收器安装在电缆上,该电缆由所述掩埋装置的电缆接合构件抓住并保持,同时该掩埋装置正在检测埋置的电缆轨道并在其上行进 所述埋藏装置的挖掘构件挖掘并形成凹槽,同时埋设装置引导并将挖掘的沟槽内的电缆埋入其中。 根据本发明的方法的特征还在于,埋入装置设置有由接收器的输出控制的行进装置,该接收器从电缆上的发射器接收输出,所述装置主体设置在中间 其部分具有具有电缆接合机构的电缆接合构件以及埋地电缆路径检测机构和挖掘构件。
    • 37. 发明授权
    • Mechanically and electrically integrated module
    • 机械和电气集成模块
    • US09337706B2
    • 2016-05-10
    • US14240619
    • 2012-08-10
    • Yoshihiro MiyamaMasao Morita
    • Yoshihiro MiyamaMasao Morita
    • H02K11/00H02K9/22H02K5/20H02M7/00
    • H02K9/22H02K5/20H02K11/33H02M7/003
    • An inverter apparatus is incorporated integrally into a non-load-side of a motor such that an inverter cooler is interposed, and a non-load-side end frame of the motor includes: a flat base portion; a cylindrical non-load-side bearing portion that is disposed so as to protrude axially from near a center of a front surface of the base portion that faces a rotor, and that houses and holds a non-load-side bearing into which a non-load-side end portion of a rotating shaft of the rotor is mounted; and an annular first flange portion that is disposed so as to protrude axially from an outer circumferential edge portion of the front surface of the base portion so as to contact a non-load-side end surface of a cylindrical portion and a cylindrical member.
    • 逆变器装置整体地结合在电动机的非负载侧,从而插入逆变器冷却器,电动机的非负载侧端框包括:平坦的基部; 圆柱形非负载侧轴承部,其从基部的与转子的前表面的中心附近轴向突出设置,并且容纳并保持非负载侧轴承, 安装转子的转轴的负载侧端部; 以及环状的第一凸缘部,其设置成从所述基部的前表面的外周缘部轴向突出,以与所述圆筒部的非负载侧端面和圆筒状部件接触。
    • 39. 发明授权
    • Coding apparatus, decoding apparatus, coding method, decoding method, computer readable medium and computer data signal
    • 编码装置,解码装置,编码方法,解码方法,计算机可读介质和计算机数据信号
    • US07382294B2
    • 2008-06-03
    • US11519947
    • 2006-09-13
    • Taro YokoseMasao MoritaTomoki Taniguchi
    • Taro YokoseMasao MoritaTomoki Taniguchi
    • H03M7/32H04N7/42
    • G06T9/004
    • A coding apparatus includes a predicting unit, an intermediate-code generating unit, a first coding unit and a second coding unit. The predicting unit generates a piece of prediction data based on each piece of pixel data constituting a color image. The intermediate-code generating unit compares each piece of prediction data with the corresponding piece of pixel data, to generate an intermediate code in accordance with whether or not a difference between each piece of prediction data and the corresponding piece of pixel data is in a predetermined range. The first coding unit performs entropy coding on the generated intermediate code. The second coding unit performs entropy coding on the generated intermediate code. The intermediate-code generating unit assigns each generated intermediate code to either of the first and second coding units according to whether or not the difference is in the predetermined range.
    • 编码装置包括预测单元,中间码产生单元,第一编码单元和第二编码单元。 预测单元基于构成彩色图像的每个像素数据产生一条预测数据。 中间码产生单元将每条预测数据与对应的像素数据进行比较,以根据每条预测数据和对应的像素数据之间的差是否处于预定的方式来生成中间码 范围。 第一编码单元对生成的中间码进行熵编码。 第二编码单元对生成的中间码进行熵编码。 中间码产生单元根据该差是否在预定范围内,将所生成的中间码分配给第一编码单元和第二编码单元。