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    • 92. 发明申请
    • Suspension system for vehicle
    • 车辆悬挂系统
    • US20060116802A1
    • 2006-06-01
    • US11283901
    • 2005-11-22
    • Daisuke YamadaShin MatsumotoShingo UrababaSatoshi Suzuki
    • Daisuke YamadaShin MatsumotoShingo UrababaSatoshi Suzuki
    • B60G17/018
    • B60G21/0553B60G17/0182B60G17/01908B60G2202/42B60G2202/442B60G2204/419B60G2400/104
    • A suspension system for a vehicle includes a roll control device, which includes an actuator, for controlling roll, and a control device including a target control value determining portion determining target control value of the actuator and an operation control portion controlling the actuator on the basis of the target control value. The target control value determining portion determines the target control value on the basis of estimated lateral acceleration when degree of actual lateral acceleration is smaller than a predetermined threshold, and by weighting the estimated lateral acceleration to gradually decrease from one to zero and by weighting the actual lateral acceleration to gradually increase from zero to one when the actual lateral acceleration is greater than the predetermined threshold, the target control value determining portion determines the target control value of the actuator on the basis of the sum of the weighted estimated lateral acceleration and the weighted actual lateral acceleration.
    • 一种用于车辆的悬架系统包括一个滚动控制装置,该滚动控制装置包括用于控制滚动的致动器,以及一个控制装置,该控制装置包括确定致动器的目标控制值的目标控制值确定部分和基于该控制执行器的操作控制部分 的目标控制值。 目标控制值确定部分根据实际横向加速度的程度小于预定阈值,基于所估计的横向加速度来确定目标控制值,并且通过将所估计的横向加速度加权从一个逐渐减小到零并通过对实际的 当实际横向加速度大于预定阈值时,横向加速度从零逐渐增加到1,目标控制值确定部分基于加权估计横向加速度和加权估计横向加速度的和来确定致动器的目标控制值 实际横向加速度。
    • 93. 发明申请
    • Anisotropic, conductive sheet and impedance measuring probe
    • 各向异性,导电片和阻抗测量探头
    • US20060006884A1
    • 2006-01-12
    • US10525024
    • 2003-08-26
    • Daisuke YamadaKiyoshi KimuraNaoshi Yasuda
    • Daisuke YamadaKiyoshi KimuraNaoshi Yasuda
    • G01R27/08G01R31/02
    • G01R3/00G01R1/06772G01R1/0735G01R1/07357H01R4/58H01R11/01H01R11/18H01R13/03H01R13/2414H01R2201/20
    • Disclosed herein are an anisotropically conductive sheet usable in impedance measurement in a high-frequency region of at least 1 GHz, particularly a high-frequency region of at least 10 GHz, and an impedance-measuring probe, which can prevent a board to be measured from being damaged upon impedance measurement and can achieve high reliability on measurement in a high-frequency region of at least 1 GHz, particularly a high-frequency region of at least 10 GHz. The anisotropically conductive sheet of the invention formed by containing conductive particles exhibiting magnetism in a sheet base composed of an elastic polymeric substance in a state dispersed in a plane direction thereof and oriented so as to align in a thickness-wise direction thereof. A thickness of the sheet is 10 to 100 μm, a number average particle diameter of the conductive particles exhibiting magnetism is 5 to 50 μm, a ratio W1/D of the thickness W1 to the number average particle diameter D of the conductive particles exhibiting magnetism is 1.1 to 10, a content of the conductive particles exhibiting magnetism is 10 to 40% in terms of a weight fraction, and the sheet is used for impedance measurement in a high-frequency region. The impedance-measuring probe of the present invention is equipped with the anisotropically conductive sheet described above, and is used in a high-frequency region.
    • 这里公开了可用于至少1GHz的高频区域,特别是至少10GHz的高频区域的阻抗测量中的各向异性导电片和可以防止测量板的阻抗测量探针 在阻抗测量时被损坏,并且可以在至少1GHz的高频区域,特别是至少10GHz的高频区域中实现高测量可靠性。 本发明的各向异性导电片通过在分散在其平面方向上的状态下包含在由弹性聚合物质构成的片状基材中呈现磁性的导电性粒子形成,并且取向成在其厚度方向上排列。 片材的厚度为10〜100μm,显示磁性的导电性粒子的数均粒径为5〜50μm,厚度W 1的比例W 1 / / SUB>相对于显示磁性的导电性粒子的数均粒径D为1.1〜10,显示磁性的导电性粒子的含量按重量分数计为10〜40%,该片材用于阻抗测定 一个高频区域。 本发明的阻抗测定用探针配备有上述各向异性导电片,并且用于高频区域。
    • 94. 发明申请
    • Anisotropic conductive connector and production method therefor and inspectioon unit for circuit device
    • 各向异性导电连接器及其生产方法及电路装置检测单元
    • US20050258850A1
    • 2005-11-24
    • US10525799
    • 2004-01-15
    • Daisuke YamadaKiyoshi Kimura
    • Daisuke YamadaKiyoshi Kimura
    • H01R11/01G01R31/02
    • H01R11/01Y10T29/49117Y10T29/53196
    • Disclosed herein are an anisotropically conductive connector, which inhibits permanent deformation by contact of target electrodes to be connected with pressure and deformation by abrasion from occurring even if the target electrodes to be connected are those projected, achieves stable conductivity over a long period of time even when it is pressed repeatedly, and prevents or inhibits an object of connection from adhering, a production process thereof, and an inspection apparatus for circuit devices equipped with the anisotropically conductive connector. The anisotropically conductive connector of the present invention is the anisotropically conductive connector having an anxisotropically conductive film, in which a plurality of conductive path-forming parts each extending in a thickness-wise direction of the film are arranged in a state mutually insulated by insulating parts. The anisotropically conductive film is formed by an insulating elastic polymeric substance, conductive particles exhibiting magnetism are contained in the conductive path-forming parts, and a reinforcing material formed of insulating mesh or nonwoven fabric is contained in a surface layer portion on one surface side of the anisotropically conductive film.
    • 这里公开的是各向异性导电连接器,即使要连接的目标电极是预定的,也能够通过与压力连接的目标电极和磨损引起的变形而发生永久变形,甚至在长时间内也达到稳定的导电性 当其被反复按压时,防止或禁止连接物体的粘附,其制造过程以及配备有各向异性导电连接器的电路装置的检查装置。 本发明的各向异性导电连接器是具有焦向导电膜的各向异性导电连接器,其中沿薄膜的厚度方向延伸的多个导电路径形成部分被布置成由绝缘部件互相绝缘的状态 。 各向异性导电膜由绝缘性弹性聚合物形成,在导电路径形成部中含有表现出磁性的导电性粒子,在绝缘性网状物或无纺布构成的增强材料中含有表面层部, 各向异性导电膜。
    • 97. 发明授权
    • Receiving apparatus for spectrum spread system
    • 频谱扩展系统接收装置
    • US5822364A
    • 1998-10-13
    • US824833
    • 1997-03-26
    • Daisuke YamadaKeiji Takakusaki
    • Daisuke YamadaKeiji Takakusaki
    • H04B1/707H04B1/7073H04B1/7117H04J13/00
    • H04B1/7085
    • A spectrum spread receiver is provided with a delayed waveform phase determination circuit which determines whether or not a detected delayed waveform is in the phase as the previously-detected delayed waveform, and outputs a delayed waveform switch signal if they are out of phase with each other. If the delayed waveform switch signal is in an ON state, on the basis of the signal despread by a second despreading circuit 7 and the delayed waveform switch signal, a demodulation circuit 9 demodulates the first half and second half of a received signal, as a boundary is a received signal at which a delayed waveform switch signal is turned on, by using the phase estimated from a first known signal and the phase estimated from a second known signal, thereby preventing the received signal from becoming degraded.
    • 频谱扩展接收机设置有延迟波形相位确定电路,其确定检测到的延迟波形是否处于作为先前检测到的延迟波形的相位,并且如果它们彼此异相,则输出延迟波形切换信号 。 如果延迟波形切换信号处于ON状态,则基于由第二解扩电路7解扩的信号和延迟的波形切换信号,解调电路9将接收信号的前半部分和后半部分解调为 边界是通过使用从第一已知信号估计的相位和从第二已知信号估计的相位来接通延迟波形切换信号的接收信号,从而防止接收信号变差。
    • 99. 发明申请
    • BRAKING DEVICE
    • 制动装置
    • US20150144442A1
    • 2015-05-28
    • US14400622
    • 2013-03-11
    • Ryota ShimuraDaisuke Yamada
    • Ryota ShimuraDaisuke Yamada
    • F16D57/00
    • F16D57/002F16D63/002F16D2121/28
    • A braking device capable of effectively causing a shearing stress of a magnetorheological fluid to act on both surfaces of the rotation body is provided. The present invention provides a braking device including a first soft magnetic material 1, a coil 3 attached to the first soft magnetic material 1, a second soft magnetic material 2, a activation chamber 4 formed between the first soft magnetic material 1 and the second soft magnetic material 2, and a rotation body 5 provided inside of the activation chamber 4, and a magnetorheological fluid 6 filling a gap between the rotation body 5 and the first soft magnetic material 1 and a gap between the rotation body 5 and the second soft magnetic material 2, wherein the rotation body 5 includes low magnetoresistive parts 5a, 5b made of a soft magnetic material and a high magnetoresistive part 5c in which a magnetic flux is less likely to flow, and the high magnetoresistive part 5c is provided at a portion of the rotation body 5 facing the coil 3.
    • 提供能够有效地使磁流变流体的剪切应力作用于旋转体的两面的制动装置。 本发明提供一种制动装置,包括第一软磁材料1,安装在第一软磁材料1上的线圈3,第二软磁材料2,形成在第一软磁材料1和第二软磁材料1之间的活化室4 磁性材料2和设置在活化室4内部的旋转体5和填充旋转体5和第一软磁体1之间的间隙的磁流变流体6和旋转体5与第二软磁体之间的间隙 材料2,其中旋转体5包括由软磁性材料制成的低磁阻部分5a,5b和磁阻较不易流动的高磁阻部分5c,高磁阻部分5c设置在 旋转体5面向线圈3。
    • 100. 发明授权
    • Relay apparatus, communication apparatus, communication system, and frame transfer method
    • 中继装置,通信装置,通信系统和帧传送方法
    • US08660051B2
    • 2014-02-25
    • US13096819
    • 2011-04-28
    • Daisuke Yamada
    • Daisuke Yamada
    • H04H20/71
    • H04B7/15557H04W4/18H04W28/22H04W84/047H04W88/181
    • A relay apparatus converts a received multicast frame to a unicast frame, sets a relatively higher communication rate than a specified communication rate, and forwards the converted unicast frame to a communication apparatus at the relatively higher communication rate. The relay apparatus attaches conversion information, which represents execution of the conversion, to the unicast frame. On reception of a unicast frame from the relay apparatus, the communication apparatus determines whether the received unicast frame is the converted unicast frame from the multicast frame, based on the conversion information attached by the relay apparatus. Upon determination that the received unicast frame is the converted unicast frame, the communication apparatus reconverts the received unicast frame to a multicast frame and transfers the reconverted multicast frame to an application installed in the communication apparatus to utilize a multicast frame. This arrangement enables the communication apparatus to effectively utilize a received unicast frame that is a converted unicast frame from a multicast frame.
    • 中继装置将接收的多播帧转换为单播帧,设定比指定通信速率高的通信速率,并以相对较高的通信速率将转换的单播帧转发到通信装置。 中继装置将表示转换的执行的转换信息附加到单播帧。 在从中继装置接收到单播帧时,通信装置根据中继装置附加的转换信息,判断接收到的单播帧是否是来自多播帧的转换单播帧。 在确定所接收的单播帧是转换的单播帧时,通信装置将所接收的单播帧重新转换为多播帧,并将重新转换的多播帧传送到安装在通信装置中的应用以利用多播帧。 这种布置使得通信装置能够从多播帧有效地利用作为转换的单播帧的接收到的单播帧。