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    • 83. 发明授权
    • Voltage hold circuit and clock synchronization circuit
    • 电压保持电路和时钟同步电路
    • US07332940B2
    • 2008-02-19
    • US11392663
    • 2006-03-30
    • Kazuhiko Watanabe
    • Kazuhiko Watanabe
    • G11C27/02
    • H03L7/148
    • A voltage hold circuit which holds an input signal voltage includes a voltage comparator unit configured to output a result of comparison between a voltage of an externally inputted control signal and a voltage of an outputted analog hold signal, a digital value hold unit configured to increase or decrease a hold value which is a digital value it holds, based on the comparison result, and to output a digital hold signal which is a digital value generated based on the hold value, and a D/A converter unit configured to convert the digital hold signal to an analog value for output as the analog hold signal.
    • 保持输入信号电压的电压保持电路包括:电压比较器单元,被配置为输出外部输入的控制信号的电压与输出的模拟保持信号的电压之间的比较结果;数字值保持单元,被配置为增加或 基于比较结果减小其保持的数字值的保持值,并输出作为基于保持值生成的数字值的数字保持信号,以及D / A转换器单元,被配置为转换数字保持 信号为模拟值作为模拟保持信号输出。
    • 85. 发明授权
    • Expansion valve
    • 膨胀阀
    • US07222502B2
    • 2007-05-29
    • US11044270
    • 2005-01-28
    • Kazuto KobayashiKazuhiko WatanabeMakoto Sudo
    • Kazuto KobayashiKazuhiko WatanabeMakoto Sudo
    • F25B41/06
    • F25B41/062F25B2341/0683F25B2500/01F25B2500/21
    • The invention provides an improved structure for assembling components in an expansion valve used in air conditioners. An expansion valve body 30 has a valve chamber 35 and a passage 32 through which refrigerant from a compressor enters. The refrigerant passing through a flow path between a valve means 32b and an orifice 32a is sent through a passage 321 toward an evaporator. The refrigerant returning from the evaporator passes through a passage 34 and flows toward the compressor. A power element 36 operates the valve means 32b in response to the thermal load of the evaporator and controls the flow rate of refrigerant. The lower end of a spring 32d disposed within the valve chamber 35 and biasing the valve means 32b toward the orifice 32a is supported by a sealing member 150 that is inserted to an opening 35a of the valve chamber and fixed to position via a crimping portion K1.
    • 本发明提供一种用于组装在空调器中使用的膨胀阀中的部件的改进结构。 膨胀阀体30具有阀室35和来自压缩机的制冷剂通过的通道32。 通过阀装置32b和孔口32a之间的流动通道的制冷剂通过通道321被传送到蒸发器。 从蒸发器返回的制冷剂通过通道34并流向压缩机。 功率元件36响应于蒸发器的热负载而操作阀装置32b并控制制冷剂的流量。 设置在阀室35内并将阀装置32b朝向孔口32a偏压的弹簧32d的下端由插入阀室的开口部分3a并被固定到位置的密封件150支撑 压接部分K 1< 1>。
    • 86. 发明申请
    • MULTI-BODY PROBLEM COMPUTING APPARATUS AND METHOD
    • 多体问题计算机和方法
    • US20070118302A1
    • 2007-05-24
    • US11562845
    • 2006-11-22
    • Kazuhiko Watanabe
    • Kazuhiko Watanabe
    • G06F19/00
    • G16C10/00
    • A force/virial calculator selects one of a plurality of miniature cells divided from a basic cell having a periodic boundary condition, sequentially selects a particle included in the miniature cell, and calculates a force exerted by the particle on a particle intended for calculation. A sum total calculator accumulates the value of the force exerted on the particle intended for calculation by each of the particles included in the miniature cell, derived in the force/virial calculator, to derive the sum total of the forces, and supplies the sum total of the forces to the force/virial calculator. The force/virial calculator multiplies the sum total of forces by a constant value previously determined for the miniature cell, thereby deriving a virial exerted by the miniature cell on the particle intended for calculation.
    • 力/维里计算器选择从具有周期性边界条件的基本单元划分的多个微型单元中的一个,依次选择微型单元中包含的粒子,并计算由粒子施加在用于计算的粒子上的力。 总和计算器累积施加在用于计算的颗粒的力的值,该颗粒由力/维里计算器中导出的微型单元中包含的每个颗粒计算,以得出力的总和,并将总和 的力/力量计算器。 力/维里计算器将力的总和乘以先前为微型电池确定的常数值,从而导出由微型电池施加在用于计算的颗粒上的维里。
    • 87. 发明授权
    • Expansion valve
    • 膨胀阀
    • US07185826B2
    • 2007-03-06
    • US11001053
    • 2004-12-02
    • Akinori NanbuSatoshi FukudaKazuhiko Watanabe
    • Akinori NanbuSatoshi FukudaKazuhiko Watanabe
    • G05D23/12
    • F25B41/062F25B2341/0683F25B2500/01F25B2500/221
    • The invention provides an expansion valve maintaining the functions of the prior art expansion valve and at the same time realizing a simple arrangement with less components and less required number of assembly steps, and enabling to cut down assembly costs. A first passage 11 through which refrigerant flowing toward an evaporator 2 travels and a second passage 12 through which refrigerant flowing from the evaporator 2 toward a compressor 3 travels are formed within a valve body 10. In response to the temperature of the refrigerant traveling in the second passage 12, a valve actuating member 40′ actuates a valve means 20 disposed in the valve body 10 to control the flow of the refrigerant entering the evaporator 2. A seal member 50 sealing the area between the first and second passages 11 and 12 is disposed between the valve body 10 and the valve actuating member 40′. A stopper portion 44 of the seal member 50 is integrally formed in advance to the valve actuating member 40′.
    • 本发明提供了一种保持现有技术的膨胀阀的功能的膨胀阀,同时实现具有较少部件和较少需要的组装步骤的简单布置,并且能够降低组装成本。 在蒸发器2内流动的制冷剂的第一通道11和从蒸发器2流向压缩机3的制冷剂流过的第二通道12形成在阀体10内。 响应于在第二通道12中行进的制冷剂的温度,阀致动构件40'致动设置在阀体10中的阀装置20,以控制进入蒸发器2的制冷剂的流动。 密封第一和第二通道11和12之间的区域的密封构件50设置在阀体10和阀致动构件40'之间。 密封构件50的止动部分44预先一体地形成到阀致动构件40'。
    • 89. 发明申请
    • Cleaner, and process cartridge and image forming apparatus using the cleaner
    • 清洁剂,以及使用清洁剂的处理盒和成像装置
    • US20050254868A1
    • 2005-11-17
    • US11126233
    • 2005-05-11
    • Osamu NaruseHidetoshi YanoMasahiko ShakutoKazuhiko Watanabe
    • Osamu NaruseHidetoshi YanoMasahiko ShakutoKazuhiko Watanabe
    • G03G15/16G03G21/00
    • G03G15/161G03G21/0017G03G2215/1661G03G2221/0005
    • A cleaner for cleaning a surface of a rotating material, including an elastic blade arranged to counter the rotating material while a tip of the elastic blade is contacted with the surface of the rotating material to clean the surface of the rotating material, wherein the elastic blade has a first surface facing the rotating material, and a second surface opposite to the first surface thereof, and wherein the elastic blade has a recessed portion, which has a bottom surface and a wall, in a rear portion of the second surface; and a support plate configured to support the elastic blade, wherein the support plate has a first surface facing the rotating material, a second surface opposite to the first surface and a tip surface, wherein the elastic blade is connected with the support plate in such a manner that the bottom surface and the wall of the recessed portion of the blade are contacted with the first surface and the tip surface of the support plate, respectively.
    • 一种用于清洁旋转材料的表面的清洁器,包括弹性刮板,其布置成与旋转材料相对,同时弹性刀片的尖端与旋转材料的表面接触以清洁旋转材料的表面,其中弹性片 具有面向旋转材料的第一表面和与其第一表面相对的第二表面,并且其中所述弹性刮板在所述第二表面的后部具有凹部,所述凹部具有底面和壁; 以及支撑板,其构造成支撑所述弹性叶片,其中所述支撑板具有面向所述旋转材料的第一表面,与所述第一表面相对的第二表面和末端表面,其中所述弹性刮板与所述支撑板连接, 使得叶片的凹陷部分的底表面和壁分别与支撑板的第一表面和末端表面接触。