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    • 2. 发明申请
    • INVERTER CONTROL DEVICE AND INVERTER CONTROL METHOD
    • 逆变器控制装置和逆变器控制方法
    • US20130141953A1
    • 2013-06-06
    • US13816377
    • 2011-09-01
    • Toshiyuki NakamuraHiromichi Kawamura
    • Toshiyuki NakamuraHiromichi Kawamura
    • H02M7/42
    • H02M7/42B60L3/0038B60L11/1803B60L15/20B60L2240/421B60L2240/423B60L2240/527H02P21/22Y02T10/643Y02T10/645Y02T10/7005Y02T10/72Y02T10/7275
    • An inverter control device includes a voltage detector, a target value calculation section, an inverter control section, an abnormality detector and a voltage clamp unit. The target value calculation section calculates target value of an alternating current output from the inverter based on a detection voltage detected by the voltage detector. The inverter control section generates a control signal for a switching element of the inverter based on the detection voltage and the target value to control the inverter. The abnormality detector detects an abnormality in the voltage detector. The voltage clamp unit holds the detection voltage for calculating the target value at a first assured voltage determined based on a lower limit area of an assured voltage range that assures an operation of the inverter and holds the detection voltage for generating the control signal at a second (higher) assured voltage upon detecting the abnormality in the voltage detector.
    • 逆变器控制装置包括电压检测器,目标值计算部,逆变器控制部,异常检测器和电压钳单元。 目标值计算部基于由电压检测器检测出的检测电压,计算从逆变器输出的交流电流的目标值。 逆变器控制部基于检测电压和目标值生成逆变器的开关元件的控制信号,控制逆变器。 异常检测器检测电压检测器中的异常。 电压钳单元保持检测电压,用于基于确保逆变器的操作的保证电压范围的下限区域确定的第一确定电压来计算目标值,并且保持用于在第二时间产生控制信号的检测电压 (更高)的电压检测电压检测器中的异常。
    • 4. 发明申请
    • BONDING MEMBER
    • 联系会员
    • US20110111324A1
    • 2011-05-12
    • US12907229
    • 2010-10-19
    • Makoto OHMORIToshiyuki NakamuraTakashi Ryu
    • Makoto OHMORIToshiyuki NakamuraTakashi Ryu
    • B32B3/00
    • H01M8/0297H01M8/0282H01M8/2425
    • Powders of respective metal elements (Mn, Co) constituting a transition metal oxide (MnCo2O4) having a spinel type crystal structure are used as a starting material. A paste containing the mixture of the powders is interposed between an air electrode and an interconnector, and with this state, a sintering is performed, whereby a bonding agent (sintered body) is formed to obtain the bonding member according to the present invention. In the bonding member, a chromia layer including Cr2O3, a first layer including elements of Mn, Co, Fe, Cr, and O, and a second layer including elements of Mn, Co, Fe, and O are provided in this order from the side close to the interconnector at the bonding portion between the bonding agent and the interconnector. The bonding member has sufficiently great bonding strength between the interconnector and the bonding agent.
    • 使用构成具有尖晶石型晶体结构的过渡金属氧化物(MnCo 2 O 4)的各金属元素(Mn,Co)的粉末作为原料。 将包含粉末混合物的糊剂置于空气电极和互连器之间,并且在该状态下进行烧结,由此形成粘合剂(烧结体)以获得本发明的接合部件。 在所述接合部件中,依次设置包括Cr 2 O 3的氧化铬层,包括Mn,Co,Fe,Cr和O的元素的第一层,以及包含Mn,Co,Fe和O的元素的第二层 靠近接合剂和互连器之间的接合部分处的互连器。 接合构件在互连器和接合剂之间具有足够大的接合强度。
    • 6. 发明申请
    • I/O UNIT AND INDUSTRIAL CONTROLLER
    • I / O单元和工业控制器
    • US20100235682A1
    • 2010-09-16
    • US12712869
    • 2010-02-25
    • Katsufumi YOSHIDAToshiyuki Nakamura
    • Katsufumi YOSHIDAToshiyuki Nakamura
    • G06F11/07
    • G05B19/058G05B2219/14012G05B2219/14039G05B2219/14054
    • This invention enables setting of a diagnosis algorithm of a safety device to be easily carried out. A slice I/O unit stores a plurality of diagnosis algorithms each corresponding to a different safety device in an ASIC, and stores specifying information for specifying a diagnosis algorithm to use of the plurality of diagnosis algorithms in a register of the ASIC. The slice I/O unit performs diagnosis of a connected safety device using the diagnosis algorithm specified by the specifying information stored in the register of the plurality of diagnosis algorithms. The diagnosis algorithm to use can be selected by selecting a number, and the like, which is preferable as a setting process at a setting tool device can be facilitated and a human error does not occur.
    • 本发明能够容易地进行安全装置的诊断算法的设定。 切片I / O单元存储多个诊断算法,每个诊断算法各自对应于ASIC中的不同安全设备,并且存储用于指定诊断算法的指定信息以在ASIC的寄存器中使用多种诊断算法。 切片I / O单元使用由存储在多个诊断算法的寄存器中的指定信息指定的诊断算法来执行连接的安全装置的诊断。 可以通过选择数字来选择要使用的诊断算法,并且可以促进作为设置工具装置处的设置处理的优选等,并且不会发生人为错误。
    • 9. 发明授权
    • Scroll compressor
    • 涡旋压缩机
    • US07614860B2
    • 2009-11-10
    • US10594434
    • 2004-12-22
    • Kenji YanoToshiyuki NakamuraMasaaki SugawaKunio TojoFumihiko IshizonoMasayuki KakudaShin SekiyaMasahiro SugiharaToshihide Koda
    • Kenji YanoToshiyuki NakamuraMasaaki SugawaKunio TojoFumihiko IshizonoMasayuki KakudaShin SekiyaMasahiro SugiharaToshihide Koda
    • F04C18/04
    • F04C29/023F04C18/0223F04C18/0253F04C23/008F04C29/028F04C29/12F04C2240/806
    • A scroll compressor is provided which has favorable assembling property, does not require a thrust bearing, has a bearing structure for bearing a compression section at both sides thereof and has a simple structure of a scroll. The scroll compressor includes a compression section 3 constituted of an orbiting scroll 31 which is provided in a closed container 1, and in which volutes are substantially symmetrically formed on both surfaces of an orbiting base plate 31B, and a main shaft 7 is penetrated through and fixed to a center portion thereof, and a pair of fixed scrolls 33 and 34 that have the main shaft penetrated through and are placed on both the surfaces of the orbiting scroll, and have volutes which correspond to the respective volutes to respectively form compression chambers 32, and a motor 2 which is provided in the closed container and drives the main shaft, a suction pipe 5 which is provided in the closed container, and after a suction gas is introduced into the closed container and cools the motor, causes the gas to be sucked into the compression section, and a discharge pipe 8 which is provided in the closed container and discharges the suction gas compressed by the compression section.
    • 提供一种具有良好的组装性能的涡旋式压缩机,不需要推力轴承,具有用于在其两侧承受压缩部的轴承结构,并且具有简单的涡旋结构。 涡旋压缩机包括由设置在密闭容器1中的绕动涡旋件31构成的压缩部3,其中蜗壳基本上对称地形成在旋转基板31B的两个表面上,并且主轴7穿过, 固定在其中心部分上,一对固定涡卷件33和34具有主轴穿过并放置在绕动涡旋盘的两个表面上,并且具有对应于相应蜗壳的蜗壳,以分别形成压缩室32 以及设置在密闭容器中并驱动主轴的电动机2,设置在密闭容器中的吸入管5,在将吸入气体引入密闭容器并冷却电动机之后,使气体 被吸入压缩部,以及排出管8,该排出管8设置在密闭容器中并排出由压缩部压缩的吸入气体。
    • 10. 发明申请
    • SOLID OXIDE FUEL CELL
    • 固体氧化物燃料电池
    • US20090191440A1
    • 2009-07-30
    • US12350323
    • 2009-01-08
    • Makoto OhmoriNatsumi ShimogawaToshiyuki NakamuraTsutomu Nanataki
    • Makoto OhmoriNatsumi ShimogawaToshiyuki NakamuraTsutomu Nanataki
    • H01M8/10
    • H01M8/2432H01M8/0258H01M8/1253H01M8/2404H01M8/2435H01M8/2483Y02E60/521Y02E60/525Y02P70/56
    • A solid oxide fuel cell has a stack structure in which sheet bodies and separators for separating air and fuel gas are stacked in alternating layers. Each of the sheet bodies includes an electrolyte layer, a fuel electrode layer formed on the upper surface of the electrolyte layer, and an air electrode layer formed on the lower surface of the electrolyte layer, wherein these layers are stacked and fired in such a manner that the electrolyte layer is sandwiched between the fuel electrode layer and the air electrode layer. The thickness of the electrolyte layer is 0.3 μm or more and 5 μm or less, and the electrolyte layer is composed of a single particle of YSZ in the thickness direction. Thus, the electrolyte layer is extremely thin, and further, the grain boundary in the thickness direction is small. Accordingly, the IR loss (electric resistance) of the electrolyte layer can remarkably be reduced.
    • 一种固体氧化物燃料电池具有堆叠结构,其中用于分离空气和燃料气体的片体和隔板以交替层叠。 每个片体包括电解质层,形成在电解质层的上表面上的燃料电极层和形成在电解质层的下表面上的空气电极层,其中这些层以这种方式堆叠和烧制 电解质层夹在燃料电极层和空气电极层之间。 电解质层的厚度为0.3μm以上5μm以下,电解质层由YSZ的厚度方向的单一粒子构成。 因此,电解质层极薄,厚度方向的晶界较小。 因此,电解质层的IR损失(电阻)可以显着降低。