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    • 41. 发明申请
    • MOTORCYCLE
    • 摩托车
    • US20120188777A1
    • 2012-07-26
    • US13393065
    • 2010-08-31
    • Akira HamauzuKotaro FujiyamaJun Suzuki
    • Akira HamauzuKotaro FujiyamaJun Suzuki
    • B62J6/04
    • B62J6/04B62J15/00
    • A motorcycle wherein an attachment angle of a tail light bulb is increased to reduce a distance between a seat and a tail light unit, to improve the flexibility of a short tail design around a tail light of a motorcycle. The motorcycle includes a rear cowl attached to a rear part of a vehicle body frame, a seat catch arranged on a rear end portion of the vehicle body frame and configured to lock and to unlock an openable/closable seat, a tail light unit arranged behind the seat catch and attached to the rear cowl, a tail light bulb attached to the tail light unit in a forward-tilted state, and a rear fender covering an upper part of a rear wheel WR. An opening that allows access to the tail light bulb is formed at a portion of the rear fender facing the tail light bulb.
    • 一种摩托车,其中增加了尾灯泡的附着角度以减小座椅和尾灯单元之间的距离,以提高围绕摩托车的尾灯的短尾设计的灵活性。 摩托车包括安装在车身框架的后部的后罩,设置在车体框架的后端部的座扣,其构造为锁定和解锁可开闭的座椅,尾灯单元布置在 座椅卡扣并附接到后整流罩,以向前倾斜状态附接到尾灯单元的尾灯,以及覆盖后轮WR的上部的后挡泥板。 在后挡泥板的面向尾灯泡的一部分处形成允许进入尾灯泡的开口。
    • 43. 发明授权
    • Substrate bonded MEMS sensor
    • 基板结合MEMS传感器
    • US08207586B2
    • 2012-06-26
    • US12560645
    • 2009-09-16
    • Kiyoshi SatoKiyoshi KobayashiYoshitaka UtoKatsuya KikuiriKazuyoshi TakahashiJun SuzukiHideki GochouToru TakahashiHisanobu Ohkawa
    • Kiyoshi SatoKiyoshi KobayashiYoshitaka UtoKatsuya KikuiriKazuyoshi TakahashiJun SuzukiHideki GochouToru TakahashiHisanobu Ohkawa
    • H01L29/84
    • B81B7/007B81B2207/097
    • A MEMS sensor includes a first substrate; a second substrate; a movable electrode portion and a fixed electrode portion which are arranged between the first substrate and the second substrate, wherein: conductive supporting portions of the movable electrode portion and the fixed electrode portion are, respectively, fixedly secured to a surface of the first substrate via a first insulating layer; a second insulating layer, a lead layer buried into the second insulating layer, and connection electrode portions that are electrically connected to the lead layer to be individually connected to the conductive supporting portions are provided on a surface of the second substrate; a metallic connection layer is formed on the surface of one of the respective conductive supporting portions; one of the respective connection electrode portions and the metallic connection layer are bonded together by eutectic bonding or diffusion bonding; and, at least each of the connection electrode portions has a thickness of about 4 μm or smaller.
    • MEMS传感器包括第一基板; 第二基板; 布置在所述第一基板和所述第二基板之间的可移动电极部分和固定电极部分,其中:所述可动电极部分和所述固定电极部分的导电支撑部分分别固定地固定到所述第一基板的表面, 第一绝缘层; 第二绝缘层,埋入第二绝缘层中的引线层和与导电层电连接以连接到导电支撑部分的连接电极部分设置在第二基板的表面上; 在各个导电支撑部分之一的表面上形成金属连接层; 各个连接电极部分和金属连接层中的一个通过共晶接合或扩散接合结合在一起; 并且至少每个连接电极部分具有约4μm或更小的厚度。
    • 45. 发明授权
    • Pickup device and recording medium drive unit
    • 拾取装置和记录介质驱动装置
    • US07924665B2
    • 2011-04-12
    • US11092973
    • 2005-03-30
    • Jun SuzukiYasuhiro Ohira
    • Jun SuzukiYasuhiro Ohira
    • G11B7/00
    • G11B7/0935
    • The pickup device includes: a fixed portion 11, a movable portion 12 movable in a tracking direction and a focus direction; linear resilient members 13A through 13D for connecting the fixed portion 11 and the movable portion 12; a coil 21 provided on the lateral side of the movable portion 12; and a flux providing unit 22 for providing a magnetic flux generating a translational force for driving a portion different from the center of gravity O of the movable portion 12 in the tracking direction in association with the coil 21 and a rotational force for rotating the movable portion 12 in a plane orthogonal to the focus direction, the flux providing unit 22 having an arrangement in which a torque generated by driving the portion different from the center of gravity with the translational force is counteracted by the rotational force.
    • 拾取装置包括:固定部分11,可在跟踪方向和聚焦方向上移动的可移动部分12; 用于连接固定部分11和可移动部分12的线性弹性部件13A至13D; 设置在可动部12的侧面的线圈21; 以及磁通提供单元22,用于提供磁通量,该磁通量产生平移力,用于驱动与线圈21相关的跟踪方向上的可移动部分12的重心O的不同部分,以及用于使可动部分旋转的旋转力 在与焦点方向正交的平面12中,通量提供单元22具有这样的布置,其中通过以平移力驱动与重心不同的部分产生的扭矩被抵抗旋转力。
    • 46. 发明授权
    • FM receiver
    • FM接收机
    • US07860479B2
    • 2010-12-28
    • US12068525
    • 2008-02-07
    • Jun Suzuki
    • Jun Suzuki
    • H04B1/10H04B17/00
    • H04B1/10
    • An FM receiver that is suitable for reducing a transmission bandwidth WF of a bandpass filter to remove adjacent-channel interference, and increasing WF to prevent audio distortion. A detection output signal SOUT is inputted to an HPF 122 when a reception electric field strength signal SM-DC indicates an intermediate or stronger electric field. In a weak electric field, an AC component signal SM-AC, which is extracted from an intermediate signal SIF1 prior to detection and which has fewer high-pass noise components than SOUT, is inputted to the HPF 122. A control circuit 120 detects a case as an adjacent-channel interference state when a large amount of high-pass components passes through the HPF 122, and reduces WF of an IFBPF 70 in order to remove adjacent-channel interference. When a small amount of high-pass components is transmitted, WF is increased in order to minimize audio distortion.
    • 适用于降低带通滤波器的传输带宽WF以消除邻道干扰的FM接收机,并增加WF以防止音频失真。 当接收电场强度信号SM-DC表示中间或更强的电场时,检测输出信号SOUT被输入到HPF 122。 在弱电场中,在检测之前从中间信号SIF1提取并且具有比SOUT少的高通噪声分量的AC分量信号SM-AC被输入到HPF 122.控制电路120检测 当大量高通分量通过HPF 122时,作为相邻信道干扰状态的情况,并且减少IFBPF 70的WF以便去除相邻信道干扰。 当发送少量的高通分量时,增加WF以便最小化音频失真。
    • 47. 发明授权
    • Noise canceller and AM receiving apparatus using the same
    • 噪声消除器和使用其的AM接收装置
    • US07835477B2
    • 2010-11-16
    • US11734760
    • 2007-04-12
    • Jun Suzuki
    • Jun Suzuki
    • H03D3/22H04B1/10
    • H03D1/04H04B15/00
    • A noise canceller that a receiving signal received by a receiving antenna is input to, the noise canceller removing a pulse noise superimposed on the receiving signal to output the signal, the noise canceller comprising: a pulse noise detecting unit that detects the pulse noise superimposed on the receiving signal; a reception level detecting unit that detects the level of the receiving signal; a level hold unit that is triggered by the detection of the pulse noise with the pulse noise detecting unit to hold the level of the receiving signal in a process on the preceding stage of the output; and a level hold period setting unit that sets the level hold period when the level is held in the level hold unit in accordance with the level of the receiving signal detected by the reception level detecting unit.
    • 输入由接收天线接收到的接收信号的噪声消除器,噪声消除器去除叠加在接收信号上的脉冲噪声以输出信号,噪声消除器包括:脉冲噪声检测单元,其检测叠加在 接收信号; 接收电平检测单元,其检测接收信号的电平; 电平保持单元,其通过脉冲噪声检测单元检测脉冲噪声触发,以在输出的前一级的处理中保持接收信号的电平; 以及电平保持期间设定单元,其根据由接收电平检测单元检测到的接收信号的电平,将电平保持在电平保持单元中的电平保持期间设定。
    • 48. 发明申请
    • REFLECTION FILM, REFLECTION FILM LAMINATE, LED, ORGANIC EL DISPLAY, AND ORGANIC EL ILLUMINATING INSTRUMENT
    • 反射膜,反射膜层压板,LED,有机EL显示器和有机EL照明仪器
    • US20100195231A1
    • 2010-08-05
    • US12679633
    • 2008-09-25
    • Jun SuzukiToshiki SatoTakayuki TsubotaShinichi Tanifuji
    • Jun SuzukiToshiki SatoTakayuki TsubotaShinichi Tanifuji
    • G02B7/182B32B15/04B32B17/06B32B5/00
    • G02B5/0858C23C14/14C23C14/165F21S41/37F21V7/22G02B5/0808G02B5/085H01L51/5203H01L51/5271H05B33/26Y10T428/12896Y10T428/265Y10T428/31507Y10T428/31678
    • The present invention provides a reflection film, a reflection film laminate which are less likely to undergo agglomeration or sulfidation of an Ag thin film due to heat, and a LED, an organic EL display, and an organic EL illuminating instrument, each including any of these. The reflection film in accordance with the present invention is a reflection film formed on a substrate, characterized by being an Ag alloy film including Ag as a main component, and Bi in an amount of 0.02 atomic percent or more, and further including one or more of V, Ge, and Zn in a total content of 0.02 atomic percent or more, and satisfying the following expression (1): 7×[A]+13×[Bi]≦8  (1) where [A] (atomic percent) denotes the content of one or more of the V, Ge, and Zn, and [Bi] (atomic percent) denotes the content of Bi. Whereas, a reflection film laminate in accordance with the present invention is a reflection film laminate formed on a substrate, characterized by including: a first film comprising an Ag alloy film including Ag as a main component, and Bi in an amount of 0.02 atomic percent or more, and further including one or more of V, Ge, and Zn in a total content of 0.02 atomic percent or more, and satisfying the expression (1); and a second film including a Si oxide formed on the first film.
    • 本发明提供一种反射膜,由于热而不易发生Ag薄膜的聚集或硫化的反射膜层叠体,以及LED,有机EL显示器和有机EL照明器具,其分别包括 这些。 根据本发明的反射膜是形成在基板上的反射膜,其特征在于包括Ag作为主要成分的Ag合金膜,以及0.02原子%以上的Bi,并且还包括一个或多个 (A)+ 13×[Bi]≦̸ 8(1)其中[A](原子数)为10原子%以上,满足下式(1):V,Ge, 百分比)表示V,Ge和Zn中的一种或多种的含量,[Bi](原子百分比)表示Bi的含量。 而根据本发明的反射膜层叠体是在基板上形成的反射膜层压体,其特征在于,包括:第一膜,包括以Ag为主要成分的Ag合金膜,以及0.02原子%的Bi 以上,进一步包含总量为0.02原子%以上的V,Ge,Zn中的一种以上,满足式(1)。 以及形成在第一膜上的包含Si氧化物的第二膜。
    • 50. 发明申请
    • TITANIUM ELECTRODE MATERIAL
    • 钛电极材料
    • US20100119882A1
    • 2010-05-13
    • US11995937
    • 2006-07-26
    • Jun SuzukiToshiki SatoKasumi YanagisawaTakashi YashikiMasahito Fukuda
    • Jun SuzukiToshiki SatoKasumi YanagisawaTakashi YashikiMasahito Fukuda
    • H01M2/16
    • H01M8/0208C22C14/00C22C21/06C22C29/12C22C32/0021H01M8/0228
    • A titanium material for an electrode comprising a titanium alloy substrate containing at least one noble metal element selected from platinum group elements, Au and Ag; and a layer of a mixture formed on the titanium alloy substrate, said mixture comprising the noble metal element precipitated from the titanium alloy substrate and titanium oxide, and said layer having an average thickness of up to 200 nm; wherein the mixture layer on the surface and the titanium alloy substrate have a conductivity in terms of contact resistance as determined by the following method of up to 12 mΩ·cm2. The contact resistance is determined by placing a carbon cloth having an average thickness of 0.3 mm on opposite surfaces of the titanium alloy substrate having the mixture layer formed thereon; sandwiching the titanium alloy material with a pair of copper electrodes via the carbon cloth, the copper electrodes each having a contact area with the titanium alloy material of 1 cm2; measuring voltage drop between the carbon cloths by using a four terminal ohmmeter while pressing the copper electrodes against the titanium alloy material at a surface pressure of 5 kg/cm2 by using a hydraulic press and applying an electric current of 7.4 mA between the copper electrodes; and calculating the contact resistance from the measured value.
    • 一种用于电极的钛材料,包括含有至少一种选自铂族元素Au和Ag的贵金属元素的钛合金基底; 以及形成在钛合金基板上的混合物层,所述混合物包含从钛合金基板沉淀的贵金属元素和氧化钛,所述层的平均厚度高达200nm; 其中表面上的混合物层和钛合金基底具有通过以下方法测定的接触电阻方面的导电率,其高达12mΩ·cm 2·cm 2。 通过将平均厚度为0.3mm的碳布放置在其上形成有混合层的钛合金基板的相对表面上来确定接触电阻; 通过碳布将钛合金材料与一对铜电极夹住,每个与钛合金材料的接触面积为1cm 2的铜电极; 使用四端欧姆计测量碳布之间的电压降,同时使用液压机在铜电极之间施加7.4mA的电流,将铜电极以5kg / cm2的表面压力压在钛合金材料上; 并根据测量值计算接触电阻。