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    • 51. 发明授权
    • Cleaning method
    • 清洗方法
    • US09129797B2
    • 2015-09-08
    • US13518583
    • 2010-12-21
    • Hiroto TokoshimaHiroshi Morita
    • Hiroto TokoshimaHiroshi Morita
    • H01L21/02H01L21/67
    • H01L21/0206H01L21/02052H01L21/67051
    • Disclosed is a low-cost and resource-saving cleaning method wherein high cleaning effects are obtained by high-pressure jet cleaning or two-fluid cleaning using a gas-dissolved water. In the high-pressure jet cleaning method or the two-fluid cleaning method, a cleaning liquid or a mixed fluid of the cleaning liquid and a gas is jetted from a cleaning fluid jetting nozzle toward a subject to be cleaned, and the subject is cleaned. The cleaning liquid introduced into the cleaning fluid jetting nozzle contains the dissolved gas in a quantity equal to or more than the saturation solubility at the liquid temperature of the cleaning liquid.
    • 公开了一种低成本且节省资源的清洗方法,其中通过高压喷射清洗或使用溶解气体的水进行双流体清洗获得高清洗效果。 在高压喷射清洗方法或双液清洗方法中,将清洗液和气体的清洗液或清洗液喷射到被清洗对象物上,从而清洗被检体 。 引入清洗流体喷射喷嘴的清洗液含有等于或大于在清洗液体的液体温度下的饱和溶解度的溶解气体。
    • 52. 发明申请
    • ANTIMICROBIAL AGENT AND METHOD FOR PRODUCING THE SAME
    • 抗微生物剂及其生产方法
    • US20140134153A1
    • 2014-05-15
    • US14232472
    • 2012-07-13
    • Masayoshi IwaharaHiroshi MoritaKazuyuki Miyata
    • Masayoshi IwaharaHiroshi MoritaKazuyuki Miyata
    • A01N63/02A61K36/185
    • A01N63/02A01N63/00A61K36/07A61K36/074A61K36/185A61K36/88A61K2236/19C12N1/14C12P1/02A01N2300/00A61K2300/00A01N65/00A01N65/40
    • [Problem] To provide: an antimicrobial agent which utilizes an antimicrobial activity and a pharmacological activity of a plant belonging to the family Juncaceae, comprises a material produced by seeding a seed culture of mushroom mycelia to a plant belonging to the family Juncaceae, culturing the mycelium while adding a nutrient source to thereby proliferate the mycelium and then drying the proliferated mycelium, can exhibit an excellent antimicrobial activity even when used in a small amount, can be added to a food, can be sprayed onto an agricultural crop or soil, and can be used as a therapeutic agent for athlete's foot; and a method for producing the antimicrobial agent. [Solution] A plant belonging to the family Juncaceae which is cut into a predetermined length or which is cut into a predetermined length and then milled is mixed with a nutrient source for a seed culture of mushroom mycelia, and the seed culture of mycelia is inoculated to the mixture of the plant belonging to the family Juncaceae and the nutrient source and then cultured at a growth temperature for the seed culture of mycelia for a predetermined time period.
    • [问题]提供:利用属于Jun科的植物的抗微生物活性和药理活性的抗微生物剂,包括通过将蘑菇菌丝体的种子培养物接种到属于芸苔科的植物而生产的材料,培养 菌丝体同时添加营养源从而使菌丝体增殖,然后干燥增殖菌丝体,甚至在少量使用时也能表现出优异的抗微生物活性,可以加入到食物中,可以喷洒到农作物或土壤上,以及 可用作运动员脚的治疗剂; 和抗微生物剂的制造方法。 [解决方案]将切割成预定长度或切割成预定长度然后研磨的属于Jun科的植物与用于蘑菇菌丝体种子培养的营养源混合,接种菌丝体的种子培养物 到属于芸苔科的植物和营养源的混合物,然后在生长温度下培养菌丝体的种子培养一段预定时间。
    • 53. 发明授权
    • Magnetic gear
    • 磁齿轮
    • US08575804B2
    • 2013-11-05
    • US13353345
    • 2012-01-19
    • Junnosuke NakatsugawaYuji EnomotoHirooki TokoiHiroshi MoritaNorihisa Iwasaki
    • Junnosuke NakatsugawaYuji EnomotoHirooki TokoiHiroshi MoritaNorihisa Iwasaki
    • H02K49/00
    • H02K49/102
    • A magnetic gear comprises a first permanent magnet field having a plurality of permanent magnet magnetic poles, a second permanent magnet field having a plurality of permanent magnet magnetic poles, number of poles of which magnet is different from that of the first permanent magnet field, and a modulating magnetic pole arranged between the first permanent magnet field and the second permanent magnet field and having a plurality of pole pieces to modulate the number of poles of the first and second permanent magnet fields. Non-magnetic bars are provided between the plurality of pole pieces. One ends of the non-magnetic bars are fixed to a first non-magnetic end holding member and the other ends of the non-magnetic bars are electrically insulated from and fixed to a second non-magnetic end holding member.
    • 磁齿轮包括具有多个永磁体磁极的第一永久磁场,具有多个永磁体磁极的第二永久磁场,磁体的数量与第一永久磁场的极数不同,以及 调制磁极,布置在第一永久磁场和第二永久磁场之间,并且具有多个极片以调制第一和第二永久磁场的极数。 非磁性棒设置在多个极片之间。 非磁性棒的一端被固定到第一非磁性端部保持构件,非磁性棒的另一端与第二非磁性端部保持构件电绝缘并固定到第二非磁性端部保持构件。
    • 58. 发明申请
    • Optical receiver and optical transmission system
    • 光接收机和光传输系统
    • US20110311232A1
    • 2011-12-22
    • US13064981
    • 2011-04-29
    • Hiroshi MoritaHideyuki SuzukiKatsushi HanaokaKenya Kondo
    • Hiroshi MoritaHideyuki SuzukiKatsushi HanaokaKenya Kondo
    • H04B10/12H04B10/06
    • H04B10/6973
    • Disclosed herein is an optical receiver including: a light receiving element configured to have an anode and a cathode and generate a photocurrent dependent on received signal light; a current-voltage conversion circuit configured to be connected to the anode of the light receiving element and convert the photocurrent to a voltage signal; and a capacitive passive element configured to have a first electrode and a second electrode. The cathode of the light receiving element is connected to the first electrode of the capacitive passive element, and the second electrode of the capacitive passive element is connected to a reference potential of the current-voltage conversion circuit and the second electrode is not coupled to objects other than a reference potential terminal of the current-voltage conversion circuit.
    • 本发明公开了一种光接收器,包括:光接收元件,被配置为具有阳极和阴极并根据接收信号光产生光电流; 电流电压转换电路,被配置为连接到所述光接收元件的阳极并将所述光电流转换为电压信号; 以及被配置为具有第一电极和第二电极的电容无源元件。 光接收元件的阴极连接到电容无源元件的第一电极,并且电容无源元件的第二电极连接到电流 - 电压转换电路的参考电位,并且第二电极不耦合到物体 而不是电流 - 电压转换电路的参考电位端子。
    • 59. 发明授权
    • Air-fuel ratio control apparatus
    • 空燃比控制装置
    • US08015967B2
    • 2011-09-13
    • US12318116
    • 2008-12-22
    • Hiroshi MoritaKazuto Ikeda
    • Hiroshi MoritaKazuto Ikeda
    • F02D41/14F01L1/34
    • F01L13/0015F01L1/185F01L2001/0537F01L2105/00F01L2800/00F01N2560/025F01N2560/14F02D13/023F02D41/0002F02D41/1454F02D41/2454F02D41/2464F02D2041/001Y02T10/18Y02T10/42
    • An air-fuel ratio control apparatus is applied to an internal combustion engine including a variable lift mechanism which changes a lift amount of an intake valve. An oxygen sensor, which outputs a signal indicating an oxygen concentration in exhaust gas, is provided downstream of an exhaust gas purification catalyst in an exhaust passage of the internal combustion engine. Air-fuel ratio control is performed to correct the fuel injection amount command value using the correction amount that is set based on the value output from the oxygen sensor. The relationship among the deviation of the correction amount from its reference value, the learned small lift value, the learned medium lift value, and the lift amount is learned. The learned deviation value is calculated based on the lift amount, using the learned relationship. Then, the fuel injection amount command value is corrected by the correction amount including the calculated learned deviation value.
    • 空燃比控制装置被应用于包括改变进气门的升程量的可变升程机构的内燃机。 输出表示排气中的氧浓度的信号的氧传感器设置在内燃机的排气通路内的废气净化催化剂的下游。 执行空燃比控制,以使用基于从氧传感器输出的值设定的校正量来校正燃料喷射量指令值。 了解校正量与参考值的偏差,学习小升程值,学习介质升程值和提升量之间的关系。 使用学习关系,根据提升量计算学习偏差值。 然后,通过包括计算出的学习偏差值的校正量校正燃料喷射量指令值。