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    • 21. 发明授权
    • Method of estimating information on projection conditions by a projection machine and a device thereof
    • 通过投影机及其装置估计投影条件的信息的方法
    • US08219367B2
    • 2012-07-10
    • US12086762
    • 2006-12-20
    • Kyoichi IwataHiroyasu Makino
    • Kyoichi IwataHiroyasu Makino
    • G06G7/48
    • B24C5/06B24C1/00
    • A method of estimating information on the projection states of projection elements (P) by using an analysis model in which discharged projection elements (P) repeatedly collided with rotation blades (13) in a projection machine having rotating blades (13). The method includes the steps of determining initial conditions including information on the size and rotation of blades (13), discharging information on the projection elements(P), and information on projection elements with respect to the blades (13) the step of storing the initial conditions, a computing step of computing the position of each projection element (P), and its velocity and direction after collision with a blade(13) based on the initial conditions, and the step of estimating information on projection state based on computation results.
    • 通过使用分散模型来估计关于投影元素(P)的投影状态的信息的方法,其中在具有旋转叶片(13)的投影机中,排出的投影元素(P)与旋转叶片(13)重复碰撞。 该方法包括确定初始条件的步骤,包括关于刀片(13)的尺寸和旋转,关于投影元件(P)的放电信息以及关于刀片(13)的投影元件的信息的信息,存储步骤 初始条件,基于初始条件计算每个投影元素(P)的位置的计算步骤及其与刀片(13)碰撞之后的速度和方向,以及基于计算结果估计投影状态信息的步骤 。
    • 22. 发明申请
    • PLASMA DISPLAY PANEL DRIVING METHOD AND PLASMA DISPLAY DEVICE
    • 等离子显示面板驱动方法和等离子体显示装置
    • US20110141072A1
    • 2011-06-16
    • US13058976
    • 2010-06-02
    • Hiroyasu MakinoToshikazu WakabayashiSatoshi KominamiYasuhiro AraiMasumi IzuchiJunko Matsushita
    • Hiroyasu MakinoToshikazu WakabayashiSatoshi KominamiYasuhiro AraiMasumi IzuchiJunko Matsushita
    • G09G5/00
    • G09G3/2927G09G3/2022G09G3/2942G09G3/2944G09G3/2948G09G3/2965G09G2310/0216G09G2310/0218G09G2320/0228
    • The present invention provides a plasma display panel driving method and a plasma display device, each of which is capable of securing image quality and realizing an improvement of a drive margin and a reduction in power consumption even in the case of an ultra high definition panel. The present invention divides a plurality of display electrode pairs into a plurality of display electrode pair groups. For each of the display electrode pair groups, the present invention divides one field period into a plurality of sub-fields, each including an address period and a sustain period, such that the address periods with respect to the display electrode pair groups do not overlap one another, the address period being a period in which an address process of causing address discharge in the discharge cell which should emit light is carried out, the sustain period being a period in which first and second sustain pulses are applied to a scan electrode and a sustain electrode. The present invention provides the sub-field in which the cycle of each of the first and second sustain pulses is longer than 5.5 μs within such a range that a time of the sustain period does not exceed Tw×(N−1)/N, where N denotes the number of display electrode pair groups, and Tw denotes a time necessary for carrying out the address process with respect to the discharge cells corresponding to all the display electrode pairs.
    • 本发明提供等离子体显示面板驱动方法和等离子体显示装置,即使在超高清晰度面板的情况下,也能够确保图像质量并实现驱动余量的提高和功率消耗的降低。 本发明将多个显示电极对划分为多个显示电极对组。 对于每个显示电极对组,本发明将一个场周期分成多个子场,每个子场包括寻址周期和维持周期,使得相对于显示电极对组的寻址周期不重叠 另一方面,寻址期间是执行使放电单元中发出光的寻址放电的地址处理的期间,维持期间是向扫描电极施加第一和第二维持脉冲的期间, 维持电极。 本发明提供了在维持周期的时间不超过Tw×(N-1)/ N的范围内,第一和第二维持脉冲中的每一个的周期长于5.5μs的子场, 其中N表示显示电极对组的数量,Tw表示对与所有显示电极对相对应的放电单元进行地址处理所需的时间。
    • 26. 发明申请
    • Control System for a Lifting Device
    • 起重设备控制系统
    • US20100017013A1
    • 2010-01-21
    • US12227633
    • 2007-05-22
    • Kazuhiko TerashimaTakanori MiyoshiHiroyasu Makino
    • Kazuhiko TerashimaTakanori MiyoshiHiroyasu Makino
    • B66D1/48G05B11/36G05B5/01G06F19/00B66D1/12B66D1/40
    • B66C13/22B66D3/18
    • This invention is aimed to provide a control system for a lifting device that can lift a load that enables the operator to have a good judgment for handling the load, so that an operator can simultaneously hold and control the load.The control system of the lifting device of this invention controls the rotation of a servo motor 1 so that an operator can move a load in a direction and at a speed that he or she desires by applying a force for controlling to the load. The load is hoisted up or down or maintains its position by means of a rope 2. The rope is wound up or down by the rotation of the servo motor in the forward or the reverse direction. The system comprises a means 3 for measuring a force, a first controller means, a second controller means, and a switching means. The means for measuring measures the total force that is applied at the lower part of the rope caused by a force for controlling of the operator, the mass of the load, and the acceleration of the load. In the first controller means, based on the force that is measured by the means for measuring, the arithmetic part computes the direction and the speed of the servo motor, and outputs a signal to the servo motor to have it operate. The second controller means determines a stable condition using Popov's stability criterion. Under this condition, when the load touches the ground, the input and output signals of the servo motor rotating in the forward and the reverse direction are stable. The switching means replaces the first controller means with the second controller means, at the right time, namely, when the value that is measured by the means for measuring becomes less than the threshold.
    • 本发明的目的在于提供一种用于提升装置的控制系统,其能够提升负载,使得操作者能够对处理负载进行良好的判断,从而操作者可以同时保持和控制负载。 本发明的提升装置的控制系统控制伺服电动机1的旋转,使得操作者可以通过向负载施加用于控制的力而沿着他或她期望的方向和速度移动负载。 负载被提升或下降或通过绳索2保持其位置。绳索通过伺服电动机沿正向或相反方向的旋转被卷起或下降。 该系统包括用于测量力的装置3,第一控制装置,第二控制装置和切换装置。 用于测量的装置测量由用于控制操作者的力,负载质量和负载的加速度引起的在绳索下部施加的总的力。 在第一控制器装置中,基于由测量装置测量的力,运算部分计算伺服电动机的方向和速度,并将信号输出到伺服电动机以使其工作。 第二控制器意味着使用Popov的稳定性标准来确定稳定状态。 在这种情况下,当负载接地时,伺服电机在正反方向旋转的输入和输出信号是稳定的。 切换装置在正确的时间,即当通过测量装置测量的值变得小于阈值时,用第二控制器装置代替第一控制器装置。
    • 27. 发明申请
    • Pouring method, device, and cast in vacuum molding process
    • 浇注方法,装置和铸造在真空成型过程中
    • US20090114362A1
    • 2009-05-07
    • US12318098
    • 2008-12-22
    • Hiroyasu MakinoTaketoshi TomitaTakafumi ObaHiroaki SuzukiKenji MizunoToshiaki AndoYoshinobu EnomotoTakao InoueShizuo Takeda
    • Hiroyasu MakinoTaketoshi TomitaTakafumi ObaHiroaki SuzukiKenji MizunoToshiaki AndoYoshinobu EnomotoTakao InoueShizuo Takeda
    • B22D18/08B22D2/00
    • B22D18/04B22C9/03B22C21/01B22D23/06
    • A pouring method and a device in a vacuum sealed process to produce a thin-wall cast by using a mold framing for the a vacuum sealed process, and a as-cast product using the pouring method are provided. The pouring method comprises the steps of: sealingly covering the surface of a pattern plate by a shielding member; placing a mold framing on the shielding member and then putting a fill that does not include any binder in the mold framing; sealingly covering an upper surface of the fill and then evacuating an inside of the mold framing to suck the shielding member to the fill to shape the shielding member; removing the pattern plate from the shielding member, thereby forming a mold half that has a molding surface; forming another mold half in a similar way and mating the mold halves to define a molding cavity; pouring molten metal in the molding cavity; and releasing the negative pressure in the mold framing to take out a as-cast product, and further comprises the step of decompressing the molding cavity before pouring molten metal in the mated mold.
    • 提供了一种通过使用用于真空密封工艺的模架来生产薄壁铸造的真空密封工艺中的浇注方法和装置,以及使用浇注方法的铸造产品。 浇注方法包括以下步骤:通过屏蔽构件密封地覆盖图案板的表面; 将模具框架放置在屏蔽构件上,然后将不包括任何粘合剂的填充物放入模制框架中; 密封地覆盖填充物的上表面,然后抽空模具框架的内部以将屏蔽构件吸入填充物以使屏蔽构件成形; 从屏蔽部件移除图案板,从而形成具有模制表面的半模; 以类似的方式形成另一个半模并且配合半模以限定模制腔; 将熔融金属浇注在模腔中; 并释放模具框架中的负压以取出铸塑产品,并且还包括在将熔融金属浇注在配合模具中之前对模制空腔进行减压的步骤。