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    • 1. 发明授权
    • Process for producing fat composition
    • 生产脂肪成分的方法
    • US06495189B1
    • 2002-12-17
    • US09744941
    • 2001-01-31
    • Yasuharu NoshoKazuhiro UeshimaToshinori IkeharaShinichi HashimotoMasakazu Kato
    • Yasuharu NoshoKazuhiro UeshimaToshinori IkeharaShinichi HashimotoMasakazu Kato
    • A23D900
    • C11B15/00A23D7/04A23D7/05A23D9/04
    • Disclosed is a method of producing a fat and oil composition comprising the steps of melting a fat and oil, or emulsion comprising fat and oil, and crystallizing the above-mentioned fat and oil by cooling to produce a fat and oil composition in paste form or plastic form. The molten fat and oil, or emulsion comprising fat and oil, is pressurized under force at a pressure of 10 to 150 MPa during the above-mentioned crystallization in the production of fat and oil compositions such as fat and oil processed foods, etc. As a result the crystallization speed of the fat and oil is markedly increased and post-crystallization can be prevented. Thus, improvement in quality of the fat and oil processed food and improved efficiency of the production process in terms of time and energy is achieved.
    • 公开了一种生产油脂组合物的方法,其包括以下步骤:使脂肪和油或包含油脂的乳液熔化,并通过冷却使上述脂肪和油结晶,从而生成糊状的脂肪和油组合物 塑料形式。 在脂肪和油组合物如脂肪和油加工食品等的生产中,在上述结晶期间,将熔融的脂肪和油或包含脂肪和油的乳液在10至150MPa的压力下在压力下加压。 结果,脂肪和油的结晶速度显着增加,并且可以防止后结晶。 因此,实现了油脂加工食品的质量提高,并且在时间和能量方面提高了生产过程的效率。
    • 6. 发明申请
    • ORGANIC ELECTROLUMINESCENT LIGHT EMITTING UNIT DRIVING METHOD
    • 有机电致发光单元驱动方法
    • US20100118017A1
    • 2010-05-13
    • US12613126
    • 2009-11-05
    • Junichi YamashitaMasakazu KatoKatsuhide Uchino
    • Junichi YamashitaMasakazu KatoKatsuhide Uchino
    • G09G5/00H05B37/02G09G3/30
    • G09G3/3233G09G3/2018G09G2300/0861G09G2300/0866G09G2310/0251G09G2320/046H05B33/0896
    • An organic electroluminescent light emitting unit driving method includes a process (a) to execute preprocessing, a process (b) to execute threshold voltage cancellation processing, a process (c) to execute writing processing, a process (d) to set a first node to a floating state, and a process (e) to execute a series of processes at least once wherein after driving an organic electroluminescent light emitting unit, a reverse voltage is applied between the anode and cathode electrodes of the organic electroluminescent light emitting unit, with a series of processes (a) through (e) being repeated, with an auxiliary driving process being provided wherein a forward voltage is applied between the anode and cathode electrodes of the organic electroluminescent light emitting unit over a certain period, and with a period between the termination of the auxiliary driving process and the termination of the next process (b) being suppressed to 1 millisecond or less.
    • 有机电致发光单元驱动方法包括执行预处理的处理(a),执行阈值电压消除处理的处理(b),执行写入处理的处理(c),设置第一节点 以及至少一次执行一系列处理的处理(e),其中在驱动有机电致发光单元之后,在有机电致发光单元的阳极和阴极之间施加反向电压,与 通过提供辅助驱动方法来重复一系列方法(a)至(e),其中在一段时间内在有机电致发光单元的阳极和阴极之间施加正向电压,并且在 辅助驾驶过程的终止和下一个处理(b)的终止被抑制到1毫秒或更少。
    • 8. 发明授权
    • Quadrature demodulator
    • 正交解调器
    • US07619466B2
    • 2009-11-17
    • US11881876
    • 2007-07-30
    • Sadatoshi OishiNobuo MurofushiMasakazu Kato
    • Sadatoshi OishiNobuo MurofushiMasakazu Kato
    • H04L27/22
    • H04L27/06H04L27/233
    • A quadrature demodulator includes a reception section which receives a signal transmitted by an RFID tag and containing a specific pattern and data following the specific pattern and multiplies the reception signal by a local signal to generate an I-signal, while multiplying the reception signal by the local signal shifted in phase by 90 degrees to generate a Q-signal, a first demodulating circuit which squares the I- and Q-signals and adding the resulting I- and Q-signals together to generate data on the basis of the addition result, a second demodulating circuit which detects the specific pattern in the I- and Q-signals to decode the data following one of the detected specific patterns, and a control section which selects one of the first and second demodulating circuits in accordance with a gain determined by the result of the addition between the values of the squared I- and Q-signals.
    • 正交解调器包括接收部分,其接收由RFID标签发送的信号,并且包含特定模式和跟随特定模式的数据,并将接收信号乘以本地信号以产生I信号,同时将接收信号乘以 本地信号相移90度以产生Q信号,第一解调电路对I和Q信号进行平方并将所产生的I和Q信号相加在一起,以基于相加结果生成数据, 第二解调电路,其检测所述I和Q信号中的特定模式以解码所述检测到的特定模式之一之后的数据;以及控制部分,其根据由所述第一和第二解调电路确定的增益来选择所述第一和第二解调电路中的一个, 在I和Q信号的平方的值之间相加的结果。
    • 10. 发明申请
    • Display Device and Driving Method of Display Device
    • 显示装置的显示装置和驱动方法
    • US20080284695A1
    • 2008-11-20
    • US11569294
    • 2005-05-10
    • Masakazu KatoHiroyuki SakuraiKohichi Ohmura
    • Masakazu KatoHiroyuki SakuraiKohichi Ohmura
    • G09G3/36
    • G09G3/3614G09G3/3674G09G2320/0209G09G2320/0233
    • A IF inversion driving method writes signal voltage of the same polarity to a signal line over a 1F period, and therefore cannot prevent occurrence of crosstalk caused by coupling. Also, shading is caused. In an active matrix type liquid crystal display device including a pixel array unit 11 formed by two-dimensionally arranging pixels 20 in a form of a matrix, the pixel array unit 11 is divided into a plurality of areas (two areas 11A and 11B in a present example) in a vertical direction, while the plurality of areas being vertically scanned in order (alternately in the present example) in a unit of a row, pixels of the plurality of areas are selected in a unit of a row, and a video signal Vsig reversed in polarity in each H is written to the pixels of the selected row.
    • IF反相驱动方法在1F周期内向信号线写入相同极性的信号电压,因此不能防止由耦合引起的串扰的发生。 另外,造成阴影。 在包括由矩阵二维排列像素20形成的像素阵列单元11的有源矩阵型液晶显示装置中,像素阵列单元11被分成多个区域(两个区域11A和11B 在本实施例中)沿着垂直方向,在多个区域以行为单位依次垂直扫描(在本例中为交替的方式)的情况下,以行为单位选择多个区域的像素,并且 将每个H中的极性反转的视频信号Vsig写入所选行的像素。