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    • 63. 发明申请
    • HOT AIR HEATER
    • 热空气加热器
    • US20110057047A1
    • 2011-03-10
    • US12876573
    • 2010-09-07
    • Hideki WatanabeShigeru SuzukiKeiichi Ito
    • Hideki WatanabeShigeru SuzukiKeiichi Ito
    • F24B7/00F28F7/00
    • F24H3/087F24D19/0082F28F1/12F28F1/24F28F9/0131F28F2215/08
    • A hot air heater has a housing having formed therein an inlet port for sucking room air and an outlet port. A circulation fan, a burner, and a heat exchanger which causes to flow combustion gas from the burner through an inside of the heat exchanger are housed in the housing. The room air sucked by operation of the circulation fan into the inlet port is heated by the heat exchanger for blowing forward as hot air out of the outlet port. A supporting plate is disposed to support the heat exchanger inside the housing. In order to limit the temperature increase in the housing by heat transmission through the supporting plate, and in order to improve the thermal efficiency, the supporting plate is provided with radiating fins. Preferably, the radiating fins are made up of cut-and-raised pieces formed in the supporting plate.
    • 热风加热器具有形成有用于吸入室内空气的入口和出口的壳体。 使来自燃烧器的燃烧气体通过热交换器的内部流动的循环风扇,燃烧器和热交换器容纳在壳体中。 通过循环风扇进入吸入口吸入的室内空气被热交换器加热,作为热空气从出口排出。 设置支撑板以将壳体内的热交换器支撑。 为了通过支撑板的热传递来限制壳体的温度升高,并且为了提高热效率,支撑板设置有散热片。 优选地,散热片由形成在支撑板上的切起的片形成。
    • 64. 发明授权
    • Parameter adjustment device
    • 参数调整装置
    • US07636706B2
    • 2009-12-22
    • US10584350
    • 2004-12-22
    • Masahiro MurakawaKeiichi Ito
    • Masahiro MurakawaKeiichi Ito
    • G06F17/30G06G7/00G06F15/16
    • G06N3/126Y10S707/99932Y10S707/99933Y10S707/99934Y10S707/99935Y10S707/99936
    • A parameter adjusting device configured to adjust a great number of parameters of a physical model by a genetic algorithm using multiple processing units within a short time. A parameter adjusting device comprises a processing assignment means wherein a part of a multiple processing means is assigned to search processing by a local search method, and assigns the processing of the local search to a low-performance processor. Also, the parameter adjusting device collects an interim result of the search by a genetic algorithm, and uses it for the search processing by the local search method. Through parallelization and efficiency of an adjusting processing by effectively utilizing the resource in the system, the parameter adjusting device can determine the group of the most appropriate parameters within a short time.
    • 参数调整装置,被配置为通过在短时间内使用多个处理单元的遗传算法来调整物理模型的大量参数。 参数调整装置包括处理分配装置,其中通过本地搜索方法将多个处理装置的一部分分配给搜索处理,并且将本地搜索的处理分配给低性能处理器。 此外,参数调整装置通过遗传算法收集搜索的中期结果,并将其用于通过本地搜索方法的搜索处理。 通过有效利用系统中的资源,通过调整处理的并行化和效率,参数调整装置可以在短时间内确定最适合的参数组。
    • 65. 发明申请
    • Parameter adjusting device and parameter adjusting means
    • 参数调整装置和参数调整装置
    • US20070198103A1
    • 2007-08-23
    • US10594842
    • 2005-03-29
    • Masahiro MurakawaKeiichi ItoMichiko Miura
    • Masahiro MurakawaKeiichi ItoMichiko Miura
    • G05B13/02
    • G06N3/126G06F17/5045G06F2217/08
    • A parameter adjusting device and a parameter adjusting method configured to adjust a great number of parameters used for a circuit design model of a semiconductor element such as a transistor within a short time. A parameter adjusting device adapts a circuit design model wherein a formula for analysis is derived based on a surface potential such as, for example, the HiSIM, as the circuit design model of a semiconductor element; defines a chromosome wherein a respective great number of parameters of the model are genes; and optimizes the parameter based on property measured data of a tested element, using a genetic algorithm. Parameter adjustment comprises a first step adjusting the parameters which determine the structure of the semiconductor element based on the property measured data of a long channel group; and a second step adjusting nonadjusted parameters based on the property measured data of various lengths of channels with reference to a result of the first step. Adjustment of the optimum parameters within a short time and with a high degree of accuracy, which was conventionally difficult, can be performed.
    • 参数调整装置和参数调整方法,其被配置为在短时间内调整用于诸如晶体管的半导体元件的电路设计模型的大量参数。 参数调整装置适应电路设计模型,其中基于诸如例如HiSIM的表面电位导出用于分析的公式作为半导体元件的电路设计模型; 定义了染色体,其中模型的相应大量参数是基因; 并使用遗传算法优化基于测试元素的属性测量数据的参数。 参数调整包括:第一步骤,基于长通道组的特性测量数据调整确定半导体元件的结构的参数; 以及参照第一步骤的结果,基于各种信道长度的属性测量数据来调整非调整参数的第二步骤。 可以在短时间内以高精度调节最佳参数,这在传统上是困难的。
    • 67. 发明授权
    • Hybrid hotair heater
    • 混合式暖气加热器
    • US06907192B2
    • 2005-06-14
    • US10726683
    • 2003-12-04
    • Keiichi ItoToshiyuki NomuraYoshinori FujisawaYukihiko ShimonomaYoshimune Yamada
    • Keiichi ItoToshiyuki NomuraYoshinori FujisawaYukihiko ShimonomaYoshimune Yamada
    • F24H3/02F24H3/04F24H3/06F24D13/00
    • F24H3/04F24H3/06
    • If both the electric heaters and combustion heaters constitute a hybrid type hot-air heater wherein both heaters are equipped with inlets adjacent to each other and are also housed within a frame and separated such that the air blowing systems of each heater are independent of each other, air leakage will occur in only the combustion heater during the heating operation in a direction opposite to the air blowing passage of the electric heater thereby resulting in dust adhering to the electric heater. If the electric heater is operated in this state, the dust will be heated and then burn causing a foul odor to occur when the heating operation first starts. Therefore, the air blowing fan 43 runs to remove any dust that entered into the air blowing passage before the electric heater 4 runs when the electric heater unit 4, equipped with an electric heater 44, is performing a heating operation.
    • 如果电加热器和燃烧加热器都构成混合型热空气加热器,其中两个加热器都配备有彼此相邻的入口,并且还容纳在框架内并分离,使得每个加热器的吹风系统彼此独立 在与电加热器的吹风通道相反的方向上的加热操作期间,只有燃烧加热器才会发生泄漏,从而导致灰尘附着在电加热器上。 如果在这种状态下操作电加热器,则当加热操作首先开始时,灰尘将被加热然后燃烧,从而产生恶臭。 因此,当装有电加热器44的电加热器单元4正在进行加热操作时,送风风扇43运行以除去在电加热器4运行之前进入送风通道的灰尘。
    • 68. 发明授权
    • Hybrid hot air heater
    • 混合热风加热器
    • US06882796B2
    • 2005-04-19
    • US10676029
    • 2003-10-02
    • Keiichi ItoYoshinori FujisawaYukihiko ShimonomaYoshimune Yamada
    • Keiichi ItoYoshinori FujisawaYukihiko ShimonomaYoshimune Yamada
    • F24H3/04F24H3/12F24D13/00
    • F24H3/04
    • In a configuration of a hybrid hot air heater in which a gas heater unit 2 and an electric heater unit 3 are incorporated into one chassis at the upper part and lower part, respectively, in such a manner that their respective air-blowing systems may be independent of each other, the heater itself is made more compact even with increases in the cross-sectional area of inlets 13a and 13b equipped with anti-dust filters 6a and 6b, respectively. The second inlet 13b of the electric heater unit 3 provided on the chassis 11 is arranged below a gas burner 20 in such a manner as to conserver space and serves as an air inlet passage on the rear side of a housing 211 of a first air-blowing fan 21 that separates the gas heater unit 2 and the electric heater unit 3 from each other.
    • 在混合热风加热器的结构中,其中气体加热器单元2和电加热器单元3分别在上部和下部结合到一个底盘中,使得它们各自的吹气系统可以是 彼此独立,即使分别配备有防尘过滤器6a和6b的入口13a和13b的横截面面积增加,加热器本身也变得更紧凑。 设置在底盘11上的电加热器单元3的第二入口13b布置在气体燃烧器20的下方,以便节省空间,并且用作第一空气的壳体211的后侧上的进气通道 将气体加热器单元2和电加热器单元3彼此分离的风扇21。
    • 70. 发明授权
    • Battery terminal and battery post adaptor
    • 电池端子和电池柱适配器
    • US06830490B2
    • 2004-12-14
    • US09873364
    • 2001-06-05
    • Takao MurakamiMasaru FukudaKeiichi ItoKazuyuki ShirakiMasanori Wakui
    • Takao MurakamiMasaru FukudaKeiichi ItoKazuyuki ShirakiMasanori Wakui
    • H01R430
    • H01R11/282H01R11/283H01R11/287
    • An adapter has a cylindrical body which is screwed onto a battery post, and a flange portion formed on a top portion of the cylindrical body to be clamped by a screwing tool. A terminal body includes a substantially U-shaped adaptor fitting portion which accommodates the adapter therein, and a seat portion on which an electric wire terminal is fixed. A lever includes a cam portion and is supported on the terminal body so as to be pivotable between a first position and a second position. A space in which the flange portion is capable of passing through is secured inside of the adaptor fitting portion when the lever is in the first position. The cam portion is abutted against an outer periphery of the cylindrical body of the adaptor so that the adaptor is retained between the cam portion and an inner face of the adaptor fitting portion, when the lever is in the second position. The flange portion of the adaptor is engaged with a top end face of the adapter fitting portion of the terminal body.
    • 一个适配器具有一个圆筒体,该圆柱体被拧在一个电池柱上,一个凸缘部分形成在圆柱体的顶部上,由一个螺丝刀夹紧。 端子体包括容纳适配器的大致U形的适配器装配部分和固定有电线端子的座部分。 杠杆包括凸轮部分并且被支撑在终端主体上,以便能够在第一位置和第二位置之间枢转。 当杠杆处于第一位置时,凸缘部能够穿过的空间被固定在适配器配合部分的内部。 凸轮部分抵靠适配器的圆筒体的外周,使得当杠杆处于第二位置时,适配器保持在凸轮部分和适配器装配部分的内表面之间。 适配器的凸缘部分与终端主体的适配器装配部分的顶端面接合。