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    • 152. 发明授权
    • Semiconductor integrated circuit switch matrix
    • 半导体集成电路开关矩阵
    • US07667276B2
    • 2010-02-23
    • US11182026
    • 2005-07-15
    • Tadahiro OhmiKoji KotaniKazuyuki MaruoTakahiro Yamaguchi
    • Tadahiro OhmiKoji KotaniKazuyuki MaruoTakahiro Yamaguchi
    • H01L29/76H01L29/94H01L31/062H01L31/113H01L31/119
    • H01L27/12H01L21/8221H01L27/0688Y10S257/903
    • There is provided a small-type semiconductor integrated circuit whose circuit area is small and whose wiring length is short. The semiconductor integrated circuit is constructed in a multi-layer structure and is provided with a first semiconductor layer, a first semiconductor layer transistor formed in the first semiconductor layer, a wiring layer which is deposited on the first semiconductor layer and in which metal wires are formed, a second semiconductor layer deposited on the wiring layer and a second semiconductor layer transistor formed in the second semiconductor layer. It is noted that insulation of a gate insulating film of the first semiconductor layer transistor is almost equal with that of a gate insulating film of the second semiconductor layer transistor and the gate insulating film of the second semiconductor layer transistor is formed by means of radical oxidation or radical nitridation.
    • 提供电路面积小,布线长度短的小型半导体集成电路。 半导体集成电路构造为多层结构,并且设置有第一半导体层,形成在第一半导体层中的第一半导体层晶体管,布置在第一半导体层上并且其中金属线为 形成,沉积在布线层上的第二半导体层和形成在第二半导体层中的第二半导体层晶体管。 注意,第一半导体层晶体管的栅极绝缘膜的绝缘几乎等于第二半导体层晶体管的栅极绝缘膜的绝缘,并且通过自由基氧化形成第二半导体层晶体管的栅极绝缘膜 或自由基氮化。
    • 154. 发明授权
    • Hot water supply system
    • 热水供应系统
    • US07640763B2
    • 2010-01-05
    • US11630617
    • 2005-07-01
    • Tadafumi NishimuraTakahiro Yamaguchi
    • Tadafumi NishimuraTakahiro Yamaguchi
    • F25B27/00
    • F25B30/06F24D17/02F24F5/0096F24F2221/183F25B7/00F25B13/00F25B2309/061F25B2313/003
    • A hot water supply system (10) is provided which includes a first refrigerant circuit (20), an intermediate temperature water circuit (40), a second refrigerant circuit (60), and a high temperature water circuit (80). The first refrigerant circuit (20) constitutes a heat pump which uses the outdoor air as a heat source, and heats heat transfer water in the intermediate temperature water circuit (40). In the intermediate temperature water circuit (40), the heat transfer water is circulated between a radiator (45) for floor heating and a first heat exchanger (30) and between a second heat exchanger (50) and the first heat exchanger (30). The second refrigerant circuit (60) constitutes a heat pump which uses the heat transfer water in the intermediate temperature water circuit (40) as a heat source, and heats water for hot water supply in the high temperature water circuit (80).
    • 提供一种热水供应系统(10),其包括第一制冷剂回路(20),中温水回路(40),第二制冷剂回路(60)和高温水回路(80)。 第一制冷剂回路(20)构成使用室外空气作为热源的热泵,并加热中间温度水回路(40)中的传热水。 在中间温度水回路(40)中,传热水在用于地板加热的散热器(45)和第一热交换器(30)之间以及在第二热交换器(50)和第一热交换器(30)之间循环, 。 第二制冷剂回路(60)构成使用中温水回路(40)中的传热水作为热源的热泵,并在高温水回路(80)中加热水供热水供给。
    • 156. 发明授权
    • Building board
    • 建筑板
    • US07534485B2
    • 2009-05-19
    • US11902015
    • 2007-09-18
    • Takahiro YamaguchiToshio Imai
    • Takahiro YamaguchiToshio Imai
    • B32B25/02
    • A01N25/34A01N25/08E04C2/06Y10T428/24942Y10T428/249939
    • Provided is a functional building board having an antimicrobial function, which retains anti-algal and antifungal agents for a long period of time in a coat on an external wall material by using several kinds of antimicrobial composite materials, and is provided with stain-proofing function to wash away stains on the external wall material, and in which the design is not largely restricted by the color of the anti-algal or antifungal paint or by the state of the coat and the design is not influenced by the coating step in the final step.The building board according to the present invention has a coat formed on the surface, and is characterized in that antimicrobial composite materials are included on the surface of the coat and a coat layer containing colloidal silica as a main component is formed, said antimicrobial composite materials being characterized in that they control generation of algae and fungi and said building board being a fiber reinforced cement board.
    • 提供了具有抗菌功能的功能性建筑板,其通过使用多种抗微生物复合材料在外壁材料的外皮上长时间保留抗藻类和抗真菌剂,并且具有防污功能 洗去外墙材料上的污渍,其中设计不受防藻或抗真菌油漆的颜色或涂层状态的极大限制,设计不受最终涂布步骤的影响 步。 根据本发明的建筑板具有在表面上形成的涂层,其特征在于,在所述涂层的表面上包含抗微生物复合材料,形成以胶体二氧化硅为主要成分的涂层,所述抗菌复合材料 其特征在于它们控制藻类和真菌的产生,并且所述建筑板是纤维增强水泥板。
    • 158. 发明授权
    • Apparatus for measuring jitter and method of measuring jitter
    • 用于测量抖动的装置和测量抖动的方法
    • US07496137B2
    • 2009-02-24
    • US11137786
    • 2005-05-25
    • Kiyotaka IchiyamaMasahiro IshidaTakahiro YamaguchiMani Soma
    • Kiyotaka IchiyamaMasahiro IshidaTakahiro YamaguchiMani Soma
    • H04B3/46
    • G01R31/31709
    • There is provided a jitter measuring apparatus for measuring jitter in a signal-under-measurement, including a pulse generating section having first pulse generating means for detecting edges of the data-signal-under-measurement to output a first pulse signal having a pulse width set in advance corresponding to the edge and second pulse generating means for detecting boundaries of data sections where data values do not change in the data-signal-under-measurement to output a second pulse signal having a pulse width set in advance over the edge timings of the boundaries of the detected data sections and a jitter calculating section for calculating timing jitter in the data-signal-under-measurement based on the first and second pulse signals.
    • 提供了一种用于测量测量信号中的抖动的抖动测量装置,包括:脉冲发生部分,具有用于检测数据信号低于测量值的边缘的第一脉冲发生装置,以输出具有脉冲宽度的第一脉冲信号 对于边缘进行预先设定的第二脉冲发生装置,用于检测在数据信号不足测量中数据值不变化的数据部分的边界,以输出预先设定在边缘定时上的脉冲宽度的第二脉冲信号 检测数据部分的边界和抖动计算部分,用于基于第一和第二脉冲信号计算测量数据信号中的定时抖动。
    • 159. 发明申请
    • Refrigerant Quantity Determining System of Air Conditioner
    • 空调制冷剂数量确定系统
    • US20090025406A1
    • 2009-01-29
    • US11887935
    • 2006-04-06
    • Manabu YoshimiTakahiro YamaguchiTadafumi NishimuraShinichi Kasahara
    • Manabu YoshimiTakahiro YamaguchiTadafumi NishimuraShinichi Kasahara
    • F25B49/00
    • F25B49/005F24F11/83F25B13/00F25B2313/02741F25B2500/222F25B2600/07F25B2600/21F25B2700/04
    • In a multi-type air conditioner, the adequacy of the refrigerant quantity charged in the air conditioner can be accurately determined, even when the refrigerant quantity charged on site is inconsistent, or even when a reference value of the operation state quantity, which is used for determining the adequacy of the refrigerant quantity, fluctuates depending on the pipe length of the refrigerant communication pipe, combination of utilization units, and the difference in the installation height among each unit. In an air conditioner (1) including a refrigerant circuit (10) configured by the interconnection of a heat source unit (2) and utilization units (4, 5) via refrigerant communication pipes (6, 7), a refrigerant quantity determining system determines the adequacy of the refrigerant quantity and includes a state quantity storing means and a refrigerant quantity determining means. The state quantity storing means stores the operation state quantity of constituent equipment or the refrigerant flowing in the refrigerant circuit (10) in which refrigerant is charged up to an initial refrigerant quantity by on-site refrigerant charging. The refrigerant quantity determining means compares the operation state quantity during test operation as a reference value with a current value of the operation state quantity, and thereby determines the adequacy of the refrigerant quantity.
    • 在多式空调机中,即使在现场充电的制冷剂量不一致的情况下,即使使用了使用的运转状态量的基准值,也能够准确地确定在空调机中充填的制冷剂量的充分性 为了确定制冷剂量的充足性,根据制冷剂连通配管的管长,利用单元的组合以及各单元之间的安装高度的差异而波动。 在包括通过热源单元(2)与利用单元(4,5)的互连构成的制冷剂回路(10)的制冷剂回路(1)中,制冷剂量确定系统确定 制冷剂量足够,并且包括状态量存储装置和制冷剂量确定装置。 状态量存储装置将通过现场制冷剂充注将制冷剂充入的制冷剂回路(10)中流动的制冷剂的运转状态量存储到初始制冷剂量。 制冷剂量确定装置将测试操作期间的操作状态量作为参考值与操作状态量的当前值进行比较,从而确定制冷剂量的适当性。