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    • 1. 发明授权
    • Hermetic compressor
    • 气密压缩机
    • US08235683B2
    • 2012-08-07
    • US12743093
    • 2008-11-20
    • Kenji KinjoAkira NakanoTakahide Nagao
    • Kenji KinjoAkira NakanoTakahide Nagao
    • F04B39/00
    • F04B39/0055F04B39/0061Y10S181/403
    • A Inlet pipe (151) communicating the space inside the hermetic enclosure with sound absorbing space (147) of inlet muffler (145) is provided so as to be inclined downward from inlet-pipe inlet (155) toward inlet-pipe outlet (157). Outlet pipe (153) communicating sound absorbing space (147) with an inlet valve includes outlet-pipe inlet (161) and outlet-pipe outlet (163). Inlet-pipe inlet (155) and outlet-pipe inlet (161) are formed at substantially same height. Herewith, introducing a refrigerant gas to outlet-pipe inlet (161) making efficient use of potential energy of the refrigerant improves the compression efficiency and stabilizes the performance of the compressor.
    • 将密闭容器内的空间与入口消音器(145)的吸音空间(147)连通的入口管(151)设置成从入口管入口(155)向入口管出口(157)向下倾斜, 。 将吸音空间(147)与入口阀连通的出口管(153)包括出口管入口(161)和出口管出口(163)。 入口管入口(155)和出口管入口(161)以基本相同的高度形成。 由此,能够有效地利用制冷剂的能量的出口管入口(161)引入制冷剂气体,能够提高压缩效率,稳定压缩机的性能。
    • 2. 发明申请
    • HERMETIC COMPRESSOR
    • HERMETIC压缩机
    • US20100239438A1
    • 2010-09-23
    • US12743093
    • 2008-11-20
    • Kenji KinjoAkira NakanoTakahide Nagao
    • Kenji KinjoAkira NakanoTakahide Nagao
    • F04B39/00F04B35/04
    • F04B39/0055F04B39/0061Y10S181/403
    • A Inlet pipe (151) communicating the space inside the hermetic enclosure with sound absorbing space (147) of inlet muffler (145) is provided so as to be inclined downward from inlet-pipe inlet (155) toward inlet-pipe outlet (157). Outlet pipe (153) communicating sound absorbing space (147) with an inlet valve includes outlet-pipe inlet (161) and outlet-pipe outlet (163). Inlet-pipe inlet (155) and outlet-pipe inlet (161) are formed at substantially same height. Herewith, introducing a refrigerant gas to outlet-pipe inlet (161) making efficient use of potential energy of the refrigerant improves the compression efficiency and stabilizes the performance of the compressor.
    • 将密闭容器内的空间与入口消音器(145)的吸音空间(147)连通的入口管(151)设置成从入口管入口(155)向入口管出口(157)向下倾斜, 。 将吸音空间(147)与入口阀连通的出口管(153)包括出口管入口(161)和出口管出口(163)。 入口管入口(155)和出口管入口(161)以基本相同的高度形成。 由此,能够有效地利用制冷剂的能量的出口管入口(161)引入制冷剂气体,能够提高压缩效率,稳定压缩机的性能。
    • 4. 发明授权
    • Imaging device and method of obtaining image
    • 成像装置及获取图像的方法
    • US09019387B2
    • 2015-04-28
    • US13413946
    • 2012-03-07
    • Akira Nakano
    • Akira Nakano
    • H04N5/232G06T5/50
    • H04N5/23277G06T5/50G06T2207/10024G06T2207/20008G06T2207/20221G06T2207/30201H04N5/23219H04N5/23254
    • An imaging device including an image sensor, includes an image obtaining control unit that obtains plural continuous images of an object taken by the image sensor; a size determining unit that determines an image size of reduced images based on photographing information of at least one of the images, and generates reduced images from the images obtained by the image obtaining control unit based on the determined image size; a motion vector detection unit that detects a motion vector of the reduced images; and an image synthesis unit that synthesizes the images obtained by the image obtaining control unit based on the motion vector detected by the motion vector detection unit to obtain a synthesized image.
    • 一种包括图像传感器的成像装置,包括图像获取控制单元,其获得由图像传感器拍摄的对象的多个连续图像; 尺寸确定单元,其基于至少一个图像的拍摄信息确定缩小图像的图像尺寸,并且基于所确定的图像大小从由图像获取控制单元获得的图像生成缩小图像; 运动矢量检测单元,其检测所述缩小图像的运动矢量; 以及图像合成单元,其基于由运动矢量检测单元检测到的运动矢量来合成由图像获取控制单元获得的图像,以获得合成图像。
    • 6. 发明授权
    • Insulated box body, refrigerator having the box body, and method of recycling materials for insulated box body
    • 绝缘箱体,带箱体的冰箱,以及隔热箱体回收材料的方法
    • US07316125B2
    • 2008-01-08
    • US10479208
    • 2002-05-31
    • Kazutaka UekadoMasato SasakiAkira NakanoYoshiki Ohashi
    • Kazutaka UekadoMasato SasakiAkira NakanoYoshiki Ohashi
    • F25D11/02
    • F25D23/062F25D2201/126F25D2201/14F25D2400/04
    • An insulation box unit and a refrigerator of the present invention employs i) rigid urethane foam with a 8.0 MPa-or-greater bending modulus, and a 60 kg/m3-or-lower density, and ii) a vacuum insulation material. The proper bending modulus provides the insulation box unit with a substantial strength, even in the case that the coverage of the vacuum insulation material with respect to the surface of the outer box exceeds 40%. The proper density prevents the insulation box unit from poor insulation efficiency due to undesired solid thermal conductivity. Despite of an extended use of the vacuum insulation material, the insulation box unit offers an excellent insulation efficiency and therefore accelerates energy saving. According to the recycling method of the present invention, rigid urethane foam formed of tolylene di-isocyanate composition, which was separated from refrigerator wastes, is recycled as a material of rigid urethane foam.
    • 本发明的绝缘箱单元和冰箱采用i)具有8.0MPa或更大弯曲模量和60kg / m 3以上低密度的硬质聚氨酯泡沫,ii )真空绝缘材料。 即使在真空绝热材料相对于外箱表面的覆盖范围超过40%的情况下,适当的弯曲模量也提供了具有相当强度的绝缘箱单元。 适当的密度防止绝缘箱单元由于不期望的固体导热性而具有差的绝缘效率。 尽管绝缘材料的使用得到了广泛的应用,绝缘箱单元提供了绝佳的绝缘效率,从而加速了节能。 根据本发明的再循环方法,将与冰箱废物分离的甲苯二异氰酸酯组合物形成的硬质聚氨酯泡沫作为刚性聚氨酯泡沫材料进行再循环。
    • 8. 发明授权
    • Plasma processing apparatus including a plurality of plasma processing units having reduced variation
    • 等离子体处理装置包括具有减小的变化的多个等离子体处理单元
    • US07225754B2
    • 2007-06-05
    • US10811034
    • 2004-08-27
    • Akira NakanoTadahiro Ohmi
    • Akira NakanoTadahiro Ohmi
    • C23C16/00
    • H01L22/20C23C16/5096C23C16/54H01J37/32082H01L2924/0002H01L2924/014H01L2924/00
    • A plasma processing apparatus comprising a plurality of plasma processing units is provided. Each of the plasma processing units has a matching circuit connected between a radiofrequency generator and a plasma excitation electrode. Among these plasma processing units, a variation between the maximum and minimum values of input-terminal-side AC resistances RA of the matching circuits defined by =(RAmax−RAmin)/(RAmax+RAmin) is adjusted to be less than 0.5. A variation between the maximum and minimum values of output-terminal-side AC resistances RB of the matching circuits defined by =(RBmax−RBmin)/(RBmax+RBmin) is also adjusted to be less than 0.5. The plasma processing units can be adjusted to achieve substantially uniform plasma results in a shorter period of time.
    • 提供了包括多个等离子体处理单元的等离子体处理装置。 每个等离子体处理单元具有连接在射频发生器和等离子体激励电极之间的匹配电路。 在这些等离子体处理单元中,由&lt; RA&gt; -RA&lt; SUB&gt;定义的匹配电路的输入端侧AC电阻RA的最大值和最小值之间的变化值RA > min )/(RA最大 + RA )被调整为小于0.5。 匹配电路的输出端侧AC电阻RB的最大值和最小值之间的变化由 =(RB> max <-R> SUB> / RB + RB )也被调整为小于0.5。 可以调节等离子体处理单元以在更短的时间内实现基本均匀的等离子体结果。
    • 10. 发明申请
    • Hermetic compressor
    • 气密压缩机
    • US20060039803A1
    • 2006-02-23
    • US10525262
    • 2004-07-27
    • Akira NakanoKo InagakiYoshinori IshidaShuhei Sugimoto
    • Akira NakanoKo InagakiYoshinori IshidaShuhei Sugimoto
    • F04B39/00F04B35/04
    • F04B39/0055
    • A compressing unit of a hermetic compressor includes a suction valve placed at an opening of a compressing room and a suction muffler. The muffler includes a suction muffler body which forms a sound-deadening space, a first communicating path which communicates with the suction valve and with the sound-deadening space, and a second communicating path which communicates with a hermetic container and with the sound-deadening space. An opening, situated in the sound-deadening space, of the first communicating path, and an opening, situated in the sound-deadening space, of the second communicating path are both open in the same direction. In addition, a sound-insulating wall is disposed on the wall of the muffler body at a place at least confronting both of the openings. This structure achieves low noise and high efficiency.
    • 封闭式压缩机的压缩单元包括放置在压缩室的开口处的吸入阀和吸入消声器。 消声器包括形成消音空间的吸入消声器本体,与吸气阀连通的第一连通路径和消音空间,以及与密封容器连通并具有消音功能的第二连通路径 空间。 位于第一连通路径的消音空间的开口以及位于第二连通路径的消音空间中的开口都沿同一方向打开。 此外,隔音壁设置在至少面对两个开口的位置处的消音器主体的壁上。 该结构实现低噪音,高效率。