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    • 31. 发明授权
    • Semiconductor integrated circuit device
    • 良好的偏压控制电路及方法
    • US06847252B1
    • 2005-01-25
    • US10671477
    • 2003-09-29
    • Goichi OnoMasayuki MiyazakiKoichiro Ishibashi
    • Goichi OnoMasayuki MiyazakiKoichiro Ishibashi
    • H01L21/822G11C11/40H01L21/8238H01L27/04H01L27/092H03K17/30H03K19/003G05F1/46
    • H03K19/00384H03K2217/0018
    • A semiconductor integrated circuit device having a mechanism of compensating not only circuit operational speed but also variations in leakage current, which includes: a main circuit constructed with CMOS device, a delay monitor for simulating a critical path of the main circuit constructed by a CMOS and monitoring a delay of the path, a PN Vt balance compensation circuit for detecting a threshold voltage difference between a PMOS transistor and an NMOS transistor, and a well bias generating circuit for receiving outputs of the delay monitor and the PN Vt balance compensation circuit and applying a well bias to the delay monitor and the main circuit so as to compensate the operation speed of the delay monitor to a desired speed and reduce a threshold voltage difference between the PMOS and NMOS transistors.
    • 一种半导体集成电路器件,其具有不仅补偿电路工作速度而且补偿漏电流的变化的机构,其包括:由CMOS器件构成的主电路,用于模拟由CMOS构成的主电路的关键路径的延迟监视器,以及 监视路径的延迟,用于检测PMOS晶体管和NMOS晶体管之间的阈值电压差的PN Vt平衡补偿电路,以及用于接收延迟监视器和PN Vt平衡补偿电路的输出的阱偏压产生电路,以及应用 延迟监视器和主电路的良好偏置,以便将延迟监视器的操作速度补偿到期望的速度并且减小PMOS和NMOS晶体管之间的阈值电压差。
    • 32. 发明授权
    • Semiconductor integrated circuit device
    • 半导体集成电路器件
    • US06489833B1
    • 2002-12-03
    • US09486057
    • 2000-02-22
    • Masayuki MiyazakiKoichiro IshibashiHiroyuki Mizuno
    • Masayuki MiyazakiKoichiro IshibashiHiroyuki Mizuno
    • H03K301
    • H03K19/00323H03K19/00384H03K19/018585
    • A semiconductor integrated circuit device includes a logic circuit, a digital-to-analog converter generating a substrate bias for controlling a threshold voltage of an MIS transistor of the logic circuit, a voltage control circuit outputting a control signal in accordance with a delay signal, and a delay detector, including a circuit which monitors variations in operating speed of the delay detector. The delay detector receives the clock signal and outputs the delay signal. The voltage control circuit receives the delay signal and outputs the control signal according to a delay indicated by the delay signal. The digital-to-analog converter receives the control signal from the voltage control circuit and generates a voltage according to the control signal. The operating speed of each of the logic circuits and the delay detector is controlled by a voltage supplied from the digital-to-analog converter.
    • 半导体集成电路器件包括逻辑电路,产生用于控制逻辑电路的MIS晶体管的阈值电压的衬底偏置的数模转换器,根据延迟信号输出控制信号的电压控制电路, 以及延迟检测器,包括监视延迟检测器的操作速度变化的电路。 延迟检测器接收时钟信号并输出​​延迟信号。 电压控制电路接收延迟信号,并根据由延迟信号表示的延迟输出控制信号。 数模转换器接收来自电压控制电路的控制信号,并根据控制信号产生电压。 每个逻辑电路和延迟检测器的工作速度由数模转换器提供的电压控制。
    • 34. 发明授权
    • Fuel cell
    • 燃料电池
    • US4943495A
    • 1990-07-24
    • US379227
    • 1989-07-13
    • Tatsunori OkadaMasayuki MiyazakiToshihide TanakaChiaki HatohMasahiro Mukai
    • Tatsunori OkadaMasayuki MiyazakiToshihide TanakaChiaki HatohMasahiro Mukai
    • H01M8/02H01M8/14H01M8/24
    • H01M8/0228H01M8/0254H01M8/244H01M2008/147H01M2300/0051Y02E60/526
    • A fuel cell in which the sealed portions formed at the peripheral edges of gas flow passages of a gas separating plate are turned so that they have a U-shaped cross section in the direction of the lamination so as to provide for elasticity. A filling member is filled in the interior of the sealed portions. This gas separating plate is used to respectively form gas flow passages through which different gas fluids are caused to flow so that they are electrochemically reacted in a pair of electrode reacting portions disposed with an electrolyte layer being interposed therebetween. In consequence, the sealed portions provided at the peripheral edges of the gas flow passages deform in accordance with the creep caused in the electrode reacting portions. This enables a balanced, adequate bearing pressure to be kept applied to the electrode reacting portions and the sealed portions, thereby enabling the fuel cell to be operated in an excellent gas sealed state for a long time.
    • 燃料电池,其中形成在气体分离板的气体流路的周边处的密封部分被转动,使得它们在层压方向上具有U形横截面以提供弹性。 填充构件填充在密封部分的内部。 这种气体分离板用于分别形成气体流动通道,不同的气体流体通过该气体流动通道流动,使得它们在设置有电解质层的一对电极反应部分之间电化学反应。 因此,设置在气体流路的周缘处的密封部分根据电极反应部分中产生的蠕变而变形。 由此,能够使电极反应部和密封部保持均匀,适当的轴承压力,能够使燃料电池长期处于良好的气体密封状态。
    • 37. 发明授权
    • Foot cover and vehicle seat
    • 脚罩和车座
    • US08313149B2
    • 2012-11-20
    • US12675442
    • 2008-08-27
    • Masayuki MiyazakiHiroshi Izawa
    • Masayuki MiyazakiHiroshi Izawa
    • B60N2/44
    • B60N2/0725
    • A foot cover includes a pair of laterally spaced surface sections, first engagement portions on the insides of the lateral surface sections and configured to be engaged with a front side of a leg bracket, a second engagement portion at a rear side of the foot cover and configured to engage a rear side of the leg bracket, and an urging rib that urges the foot cover toward the rear side thereof. The first engagement portions have a fore-and-aft restricting surface that restricts the foot cover from being displaced rearwardly when mounted and a first inclination surface that abuts an associated front end portion of the leg bracket to restrict deformation of the associated lateral surface section into a separating direction of the lateral surface sections.
    • 脚罩包括一对横向间隔开的表面部分,侧表面部分内侧上的第一接合部分,并且构造成与腿托架的前侧接合,在脚套的后侧具有第二接合部分, 构造成接合所述脚托架的后侧;以及推动肋,其朝向其后侧推动所述脚盖。 所述第一接合部分具有前后限制表面,所述前后限制表面限制所述脚盖在安装时向后移位,并且所述第一倾斜表面抵靠所述腿支架的相关联的前端部分以限制所述相关联的侧表面部分的变形 侧表面部分的分离方向。
    • 38. 发明授权
    • Receiver
    • 接收器
    • US08265122B2
    • 2012-09-11
    • US12654659
    • 2009-12-29
    • Tatsuo NakagawaRyosuke FujiwaraMasayuki MiyazakiGoichi Ono
    • Tatsuo NakagawaRyosuke FujiwaraMasayuki MiyazakiGoichi Ono
    • H04B1/69H04B1/713
    • H04B1/71637
    • With the objective of enhancing receiving performance of a receiver with respect to pulse signals spread by spread codes, the receiver comprises an RF front-end section which performs amplification, an AD converter section which AD-converts signals outputted from the RF front-end section, a baseband section which inversely spreads the output of the AD converter section and performs signal detection and demodulation thereon, a reception environment measuring section which measures reception environment using the input signals of the baseband section, and a parameter setting section which sets parameters for respective parts on the basis of signals outputted from the reception environment measuring section. The parameter setting section sets the parameters for the respective parts to the optimum according to the environmental condition measured by the reception environment measuring section.
    • 为了提高接收机相对于由扩展码扩展的脉冲信号的接收性能,接收机包括执行放大的RF前端部分,对从RF前端部分输出的信号进行AD转换的AD转换器部分 基带部分,其对AD转换器部分的输出进行反扩频并对其进行信号检测和解调;接收环境测量部分,其使用基带部分的输入信号测量接收环境;以及参数设置部分,其设置各自的参数 基于从接收环境测量部输出的信号。 参数设定部根据由接收环境测定部测定的环境条件,将各部分的参数设定为最佳。
    • 39. 发明申请
    • Reciever, frequency deviation measuring unit and positioning and ranging system
    • 接收器,频率偏差测量单元和定位和测距系统
    • US20110092223A1
    • 2011-04-21
    • US12926862
    • 2010-12-14
    • Tatsuo NakagawaMasayuki MiyazakiKenichi MizugakiRyosuke Fujiwara
    • Tatsuo NakagawaMasayuki MiyazakiKenichi MizugakiRyosuke Fujiwara
    • H04W24/00H04B7/00
    • G01S5/06H04J3/0682
    • In a system for measuring a time difference of arrival of signals for positioning, an accurate time difference is measured by a receiver which is reduced in power consumption, size, and cost. The system comprises a node (under measurement) for transmitting a positioning signal, a reference station for transmitting a reference signal, and a plurality of access points for receiving the positioning signal and reference signal, and a server connected to the plurality of access points through a network. Each of the plurality of access points measures a time difference between the reception of the positioning signal and the reception of the reference signal, and a frequency deviation from the reference station, using a clock signal and a signal for shifting the clock signal, and the server calculates the position of the node based on the measured time difference and frequency deviation.
    • 在用于测量用于定位的信号的到达时间差的系统中,由功率消耗,尺寸和成本降低的接收器测量准确的时间差。 该系统包括用于发送定位信号的节点(未测量),用于发送参考信号的参考站和用于接收定位信号和参考信号的多个接入点,以及连接到多个接入点的服务器 一个网络。 多个接入点中的每一个都使用时钟信号和用于移位时钟信号的信号来测量定位信号的接收和参考信号的接收之间的时间差以及与参考站的频率偏差,并且 服务器根据测得的时差和频率偏差计算节点的位置。