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    • 41. 发明授权
    • Semiconductor device and manufacturing method of same
    • 半导体器件及其制造方法
    • US09293555B2
    • 2016-03-22
    • US13944316
    • 2013-07-17
    • Masakazu Watanabe
    • Masakazu Watanabe
    • H01L29/51H01L29/739H01L29/06
    • H01L29/511H01L29/063H01L29/7397H01L2924/0002H01L2924/00
    • A semiconductor device includes a semiconductor substrate; an insulating film arranged on the semiconductor substrate; an electrode that contacts a portion of a side surface of the insulating film; a first passivation film that is arranged extending from the electrode to the insulating film, and contacts a surface of the insulating film, and contacts a surface of the electrode; and a second passivation film that is arranged on the first passivation film. A difference between a linear expansion coefficient of the first passivation film and a linear expansion coefficient of the insulating film is smaller than a difference between the linear expansion coefficient of the first passivation film and a linear expansion coefficient of the electrode, and a position where the first passivation film contacts a boundary between the electrode and the insulating film is positioned lower than an upper surface of the insulating film.
    • 半导体器件包括半导体衬底; 布置在所述半导体衬底上的绝缘膜; 与所述绝缘膜的侧面的一部分接触的电极; 第一钝化膜,其从所述电极延伸到所述绝缘膜,并且与所述绝缘膜的表面接触并接触所述电极的表面; 以及布置在第一钝化膜上的第二钝化膜。 第一钝化膜的线膨胀系数与绝缘膜的线膨胀系数之差小于第一钝化膜的线膨胀系数与电极的线膨胀系数之差, 第一钝化膜接触电极和绝缘膜之间的边界位于比绝缘膜的上表面低的位置。
    • 42. 发明授权
    • Display equipment and display program for electronic musical instruments
    • 电子乐器的显示设备和显示程序
    • US07767898B2
    • 2010-08-03
    • US11784775
    • 2007-04-06
    • Masayuki NakayamaMasakazu Watanabe
    • Masayuki NakayamaMasakazu Watanabe
    • G10H7/00
    • G10H1/40G10H2220/005
    • A display system for an electronic musical instrument includes an automatic performance information storage device for storing automatic performance information. The display system also includes a display device for displaying formulated musical notation based on the automatic performance information stored by that automatic performance information storage device. A performance tempo-setting device is provided for setting performance tempo. The length of a graphic corresponding to the length of a musical note displayed on said display device is set according to the performance tempo set by the performance tempo setting device. The display system also includes a scroll device that is adapted to scroll at a set speed regardless of the performance tempo.
    • 电子乐器的显示系统包括用于存储自动演奏信息的自动演奏信息存储装置。 显示系统还包括用于基于由该自动演奏信息存储装置存储的自动演奏信息来显示公开的音乐符号的显示装置。 提供了一种演奏速度设定装置来设定演奏速度。 根据由演奏速度设定装置设定的演奏速度来设定与所述显示装置上显示的音符的长度对应的图形的长度。 该显示系统还包括一个滚动装置,适于以设定的速度滚动,而与性能节奏无关。
    • 43. 发明申请
    • Display equipment and display program for electronic musical instruments
    • 电子乐器的显示设备和显示程序
    • US20080210083A1
    • 2008-09-04
    • US11784775
    • 2007-04-06
    • Masayuki NakayamaMasakazu Watanabe
    • Masayuki NakayamaMasakazu Watanabe
    • G10H1/40
    • G10H1/40G10H2220/005
    • A display system for an electronic musical instrument includes an automatic performance information storage device for storing automatic performance information. The display system also includes a display device for displaying formulated musical notation based on the automatic performance information stored by that automatic performance information storage device. A performance tempo-setting device is provided for setting performance tempo. The length of a graphic corresponding to the length of a musical note displayed on said display device is set according to the performance tempo set by the performance tempo setting device. The display system also includes a scroll device that is adapted to scroll at a set speed regardless of the performance tempo.
    • 电子乐器的显示系统包括用于存储自动演奏信息的自动演奏信息存储装置。 显示系统还包括用于基于由该自动演奏信息存储装置存储的自动演奏信息来显示公开的音乐符号的显示装置。 提供了一种演奏速度设定装置来设定演奏速度。 根据由演奏速度设定装置设定的演奏速度来设定与所述显示装置上显示的音符的长度对应的图形的长度。 该显示系统还包括一个滚动装置,适于以设定的速度滚动,而与性能节奏无关。
    • 45. 发明授权
    • Apparatus and method for assembling optical cable
    • 光缆组装装置及方法
    • US06615571B1
    • 2003-09-09
    • US09541627
    • 2000-04-03
    • Takehiko OkadaShigeru SuemoriMasakazu Watanabe
    • Takehiko OkadaShigeru SuemoriMasakazu Watanabe
    • D02G336
    • G02B6/4491G02B6/449
    • An apparatus for assembling an optical cable comprises a spacer paying-out portion 7, a stationary ribbon supply unit 9, a gathering portion 14 and a taking-up portion 21. The spacer paying-out portion 7 supplies a spacer 2 having a spiral groove in the surface of a long spacer body from a supply reel 1 while revolving around a line axis X-X. The stationary ribbon supply unit 9 supplies a plurality of optical fiber ribbons 11. The gathering portion 14 forms the optical fiber ribbons 11 sent out of the stationary ribbon supply unit 9 into a cable core 15 by holding the optical fiber ribbons 11 within the spiral groove of the spacer 2 sent out of the spacer paying-out portion 7 and running forward while rotating on its center axis. The taking-up portion 21 winds the cable core 15 on a taking-up reel 20 while revolving around the line axis. A winding roller 8 (8′) having an rotational direction identical to an rotational direction of the supply reel 1 of the spacer 2 and used for winding the spacer 2 or the cable core 15 is installed adjacently before and after the gathering portion whereby to revolve the winding roller around the line axis in synchronization with the revolution of the spacer paying-out portion 7. Accordingly, it is possible to prevent a twisting of the spacer in the gathering portion resulting from a winding habit of the spacer during a step of assembling cables.
    • 用于组装光缆的装置包括间隔件支付部分7,静态色带供给单元9,聚集部分14和卷取部分21.间隔物支付部分7提供具有螺旋槽的间隔件2 在沿着线轴线XX旋转的情况下,在供给卷轴1的长间隔体的表面。 固定色带供给单元9提供多个光纤带11.聚集部14通过将光纤带11保持在螺旋槽内而形成从固定色带供给单元9发送到电缆芯15中的光纤带11 的间隔件2从间隔件支付部分7发出并在其中心轴线上旋转的同时向前运动。 卷绕部分21绕线轴线旋转时将电缆芯15卷绕在卷带盘20上。 具有与间隔件2的供带盘1的旋转方向相同并用于卷绕间隔件2或电缆芯15的旋转方向的卷绕辊8(8')相邻地安装在聚集部分之前和之后,从而旋转 卷绕辊绕线轴线与间隔件支付部分7的旋转同步。因此,可以防止在组装步骤期间由间隔件的缠绕习惯引起的聚集部分中的间隔件的扭转 电缆
    • 46. 发明授权
    • Water dispersible resin composition and process for producing the same
    • 水分散性树脂组合物及其制造方法
    • US6054508A
    • 2000-04-25
    • US765049
    • 1997-10-24
    • Masakazu WatanabeHiroshi MiwaTeruaki KuwajimaSatoshi Suzuki
    • Masakazu WatanabeHiroshi MiwaTeruaki KuwajimaSatoshi Suzuki
    • C08F8/44C08K3/20C08L63/02
    • C08F8/44
    • A method for producing a water dispersible resin composition, comprising radically polymerizing, in the presence of a polymerization initiator, a starting mixture comprising (a) 10 to 95% by weight of a water insoluble resin having a solubility in water of not more than 1; and (b) 5 to 90% by weight of a monomer mixture which comprises (1) 2 to 75% by weight of an ethylenically unsaturated monomer having an acid group, and (2) 25 to 98% by weight of an ethylenically unsaturated monomer other than (1); and neutralizing the resulting resin composition containing an acid group by adding a neutralizing agent. A coating composition is provided which is stable and excellent in coating workability and has improved storage stability and solid components content of the coating composition. Since particles excellent in dispersibility improve the uniformity of a coated film, transparency, smoothness, chemical resistance, water resistance and mechanical strength of the coated film are also improved.
    • PCT No.PCT / JP95 / 01351 Sec。 371 1997年10月24日第 102(e)1997年10月24日PCT PCT 1995年7月6日PCT公布。 公开号WO96 / 01860 日本1996年1月25日制造水分散性树脂组合物的方法,包括在聚合引发剂存在下自由基聚合起始混合物,所述起始混合物包含(a)10至95重量%的在水中具有溶解度的水不溶性树脂 不超过1; 和(b)5至90重量%的单体混合物,其包含(1)2至75重量%的具有酸基的烯属不饱和单体,和(2)25至98重量%的烯属不饱和单体 (1)以外; 并通过加入中和剂中和所得含有酸基的树脂组合物。 提供一种涂料组合物,其涂料加工性能稳定且优异,并且具有改善的涂料组合物的储存稳定性和固体组分含量。 由于分散性优异的颗粒提高了涂膜的均匀性,所以也提高了涂膜的透明性,平滑性,耐化学性,耐水性和机械强度。
    • 49. 发明授权
    • Dense silicon carbide microwave absorber for electron linear accelerator
    • 电子线性加速器的密集碳化硅微波吸收体
    • US4760312A
    • 1988-07-26
    • US826463
    • 1986-02-05
    • Masakazu WatanabeAkiyasu Okuno
    • Masakazu WatanabeAkiyasu Okuno
    • H01P1/22H01J23/30H01P1/26H01Q17/00H05H7/00H05K9/00
    • H01J23/30H01P1/26
    • A microwave absorber composed of dense silicon carbide having an electrical resistivity of one ohm-centimeter or more. In an electron linear accelerator, it is necessary to provide a microwave absorber to absorb excess energy used to accelerate electrons and discharge this excess energy in the form of heat in order for the accelerator to operate safely. The important characteristics are high-frequency wave absorption, good heat resistance, good thermal conductivity, and stability in a vacuum. The invention meets these requirements with a microwave absorber composed of dense silicon carbide. In an electron linear accelerator the absorber is attached to the end portion of an accelerator guide or a branch portion of a power divider to absorb unnecessary wave energy. Such a microwave absorber is found to have characteristics rendering it highly suitable for this application as well as others.
    • 由具有1欧姆厘米或更大的电阻率的致密碳化硅构成的微波吸收体。 在电子线性加速器中,需要提供一种微波吸收器,以吸收用于加速电子的过量能量,并且以热的形式排放多余的能量,以使加速器安全地运行。 重要的特点是高频吸波,耐热性好,导热性好,真空稳定性好。 本发明利用由致密碳化硅组成的微波吸收器来满足这些要求。 在电子线性加速器中,吸收器附着到加速器引导件的端部或功率分配器的分支部分以吸收不必要的波能量。 发现这种微波吸收器具有使其非常适合于该应用以及其它应用的特征。