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    • 4. 发明授权
    • Method and apparatus for priority based data processing
    • 用于优先级数据处理的方法和装置
    • US07734456B2
    • 2010-06-08
    • US10594590
    • 2005-03-14
    • Osamu Fujita
    • Osamu Fujita
    • G06F17/50G06F19/00
    • G06F7/24
    • An important component selection device is provided for selecting a component having a higher importance in a simulation calculation, so that the component having a higher priority is calculated firstly by a calculation device and the importance of the updated component is re-evaluated so as to be reflected in the calculation thereafter. When a high speed is required, the ranking of the important components are realized by hardware. Moreover, when a storage device has a plurality of candidate value data for each of the component data and the calculation device updates the candidate values one by one, the magnitude of variety of the candidate values is used as the importance of the component data and the component having this value which is large is calculated with a higher priority so that the calculation of the component having a small change is omitted, thereby increasing the simulation speed.
    • 提供了一种重要的部件选择装置,用于在模拟计算中选择具有较高重要性的部件,使得由计算装置首先计算具有较高优先级的部件,并重新评估更新的部件的重要性,以便 反映在此后的计算中。 当需要高速度时,重要部件的排名由硬件实现。 此外,当存储装置具有用于每个分量数据的多个候选值数据并且计算装置逐一更新候选值时,将候选值的种类的大小用作分量数据的重要性,并且 以较高优先级计算具有该值大的分量,从而省略具有小变化的分量的计算,从而增加模拟速度。
    • 5. 发明申请
    • POSITION DETECTOR, POSITION DETECTING METHOD, DATA DETERMINATION APPARATUS, DATA DETERMINATION METHOD, COMPUTER PROGRAM, AND STORAGE MEDIUM
    • 位置检测器,位置检测方法,数据确定装置,数据确定方法,计算机程序和存储介质
    • US20100019962A1
    • 2010-01-28
    • US12523986
    • 2008-01-21
    • Osamu Fujita
    • Osamu Fujita
    • G01S5/02G01P21/00
    • G01S19/14G01S19/42
    • A controller of a cell phone serving as the position detector reads time-sequentially anteroposterior positional information Pi−1, Pi+1, together with interest positional information Pi that is an object of determination (S103), and calculates, for example, vectors V1 and V2 showing a shift from Pi−1, to Pi and a shift from Pi to Pi+1, respectively (S104, S105), in order to calculate an amplitude of fluctuation representing a direction of change. The amplitude of fluctuation representing a direction of change is expressed by a value of dot product of the calculated vectors V1 and V2 (S106). When the value of dot product is lower than a predetermined value (S107: YES), a position is shown to greatly deviate in the vicinity of the interest positional information Pi. Therefore, the amplitude of fluctuation representing a direction of change is judged to be large, and the positional information is determined to be error (S108).
    • 用作位置检测器的手机的控制器与作为确定对象的感兴趣位置信息Pi一起读取时间顺序的前后位置信息Pi-1,Pi + 1,并且计算例如向量V1 V2表示从Pi-1到Pi的移位,以及从Pi到Pi + 1的移位(S104,S105),以计算表示变化方向的波动幅度。 表示变化方向的波动幅度由计算出的矢量V1和V2的点乘积的值表示(S106)。 当点积的值低于预定值时(S107:是),显示在兴趣位置信息Pi附近极大偏离的位置。 因此,表示变化方向的波动的幅度被判断为大,并且位置信息被确定为错误(S108)。
    • 6. 发明授权
    • Method for manufacturing semiconductor device
    • 制造半导体器件的方法
    • US07510981B2
    • 2009-03-31
    • US11542219
    • 2006-10-04
    • Akira MitsuikiTomoo NakayamaOsamu Fujita
    • Akira MitsuikiTomoo NakayamaOsamu Fujita
    • H01L21/302
    • H01L21/76224
    • A semiconductor device includes an element isolation film, which exhibits less variations in the height dimension from the surface of the substrate and has a desired height dimension from the surface of the substrate. A process for manufacturing a semiconductor device includes: providing a predetermined pattern of a silicon nitride film and a protective film which covers the silicon nitride film, on a semiconductor substrate; selectively etching the semiconductor substrate using the protective film as a mask to form a trenched portion; removing the protective film to expose the silicon nitride film; depositing an element isolation film, so as to fill the trenched portion therewith and cover the silicon nitride film; removing the element isolation film formed on the silicon nitride film by polishing thereof until the silicon nitride film is exposed; and removing the silicon nitride film.
    • 半导体器件包括元件隔离膜,该元件隔离膜在与衬底表面的高度尺寸上的变化较小,并且具有从衬底表面所需的高度尺寸。 一种制造半导体器件的方法包括:在半导体衬底上提供氮化硅膜的预定图案和覆盖氮化硅膜的保护膜; 使用保护膜作为掩模选择性地蚀刻半导体衬底以形成沟槽部分; 去除保护膜以暴露氮化硅膜; 沉积元件隔离膜,以便用其填充沟槽部分并覆盖氮化硅膜; 通过研磨除去在氮化硅膜上形成的元件隔离膜,直到氮化硅膜露出为止; 并除去氮化硅膜。
    • 7. 发明授权
    • Valve timing control device of internal combustion engine
    • 内燃机气门正时控制装置
    • US08863708B2
    • 2014-10-21
    • US13614256
    • 2012-09-13
    • Atsushi WatanabeYasuhide TakadaOsamu FujitaTetsuya Shibukawa
    • Atsushi WatanabeYasuhide TakadaOsamu FujitaTetsuya Shibukawa
    • F01L1/34
    • F01L1/3442F01L2001/34423F01L2001/3443F01L2001/34459F01L2001/34466
    • Even if an internal combustion engine is stopped having a lock pin of a vane rotor kept disengaged from a lock recess, subsequent engine starting can instantly move the vane rotor to a desired angular position where the lock member an be engaged with the lock recess. The vane rotor has therein two passage control mechanisms each having a hydraulically actuated valve body. When the valve body is moved to a given position, retarding and advancing hydraulic holes become communicated to each other through an annular groove of the valve body. Due to this ON communication, retarding and advancing operation chambers become communicated, so that reciprocative swing movement of the vane rotor induced by an alternating torque produced at the starting of the engine is effectively made and thus the vane rotor can be quickly turned to the desired angular position for ease of engine starting.
    • 即使停止具有叶片转子的锁定销与锁定凹部脱离的内燃机,随后的发动机起动可以将叶片转子立即移动到锁定构件与锁定凹部接合的期望角度位置。 叶片转子具有两个通道控制机构,每个具有液压致动阀体。 当阀体移动到给定位置时,延迟和前进的液压孔通过阀体的环形槽相互连通。 由于这种ON通信,延迟和前进操作室变得通信,从而有效地在发动机启动时产生的交替转矩引起的叶片转子的往复摆动运动,从而可以将叶片转子快速转向所需的 角位置,便于发动机起动。
    • 9. 发明授权
    • B-Class complementary circuit
    • B级互补电路
    • US4451799A
    • 1984-05-29
    • US286714
    • 1981-07-24
    • Osamu Fujita
    • Osamu Fujita
    • H03F1/30H03F3/20H03F3/30H03K4/69H03F3/45H03F3/26
    • H03F3/3088H03F1/307H03K4/693
    • The present invention purports to provide a novel B-class complementary circuit of direct-coupling type having good characteristics of low dispersions of voltage gain and low temperature dependency. The apparatus of the present invention can perform the above-mentioned excellent characteristics by utilizing several current-mirror circuits in a direct coupled circuit which comprisesan output stage driving circuit,a B-class complementary connected output stage, anda bias-stabilization circuit, formed as a differential amplifier working as a pre-drive stage for driving the output stage driving circuit; andby utilizing further current-mirror circuits for constant current feeding to a load circuit of the driving circuit and for the bias stabilizing circuit.
    • 本发明旨在提供一种具有良好的电压增益分散和低温依赖性的良好特性的直接耦合型的B级互补电路。 本发明的装置可以通过在包括输出级驱动电路,B级互补输出级和偏置稳定电路的直流耦合电路中利用几个电流镜电路来执行上述优异特性, 形成为作为用于驱动输出级驱动电路的预驱动级的差分放大器; 并且通过利用另外的电流镜电路来恒定电流馈送到驱动电路的负载电路和偏置稳定电路。