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    • 2. 发明授权
    • Electronic component
    • 电子元器件
    • US08013257B2
    • 2011-09-06
    • US12344011
    • 2008-12-24
    • Akira FuruyaMasahiro MiyazakiHiroshi TakeKeisuke Takasugi
    • Akira FuruyaMasahiro MiyazakiHiroshi TakeKeisuke Takasugi
    • H05K1/16
    • H01G4/33H01G4/224H01G4/228H01G4/236
    • The present invention provides an electronic component which is capable of effectively suppressing the characteristic deterioration of the passive element portion. An electronic component comprises a ceramic substrate, a passive element portion on the substrate, an insulator layer which is provided over the passive element portion and comprises a through-hole, a lead terminal which is fitted in the through-hole of the insulator layer and electrically connected to the passive element portion, and an external connection terminal which is electrically connected to the lead terminal. The insulator layer comprises a first face on the side of the passive element portion, a second face on the side opposite the passive element portion, and a third face which connects the first face and the second face and constitutes the peripheral face of the insulator layer, the external connection terminal is in contact with the lead terminal and the second face and the third face of the insulator layer. In a cross-section of the through-hole in a thickness direction of the substrate, a boundary line between the internal surface of the through-hole and the lead terminal is inclined in a direction moving away from a region of the third face with which the external connection terminal is in contact with an end of the boundary line on the side of the first face being taken as a fixed point.
    • 本发明提供能够有效地抑制无源元件部的特性劣化的电子部件。 电子部件包括陶瓷基板,基板上的无源元件部分,设置在无源元件部分上方并包括通孔的绝缘体层,安装在绝缘体层的通孔中的引线端子和 电连接到无源元件部分,以及电连接到引线端子的外部连接端子。 绝缘体层包括无源元件部分侧的第一面,与无源元件部分相对的一侧上的第二面以及连接第一面和第二面的第三面,并构成绝缘体层的外周面 外部连接端子与引线端子和绝缘体层的第二面和第三面接触。 在贯通孔的基板的厚度方向的截面中,贯通孔的内表面与引线端子之间的边界线沿着从第三面的区域移开的方向倾斜, 外部连接端子与第一面侧的边界线的端部接触,作为固定点。
    • 6. 发明授权
    • Method for evaluating optical information medium and optical information medium
    • 光信息介质和光信息介质评估方法
    • US07338695B2
    • 2008-03-04
    • US11106436
    • 2005-04-15
    • Hidetake ItohKazushi TanakaNaoki HayashidaHiroshi Take
    • Hidetake ItohKazushi TanakaNaoki HayashidaHiroshi Take
    • B32B3/02
    • G11B7/00375G01N13/02G11B7/2467G11B7/2542G11B7/259G11B7/268G11B2007/24312G11B2007/24314G11B2007/24316G11B2007/25708G11B2007/25715
    • A simple method for evaluating an optical information medium by judging quantitatively and reproducibly the surface quality of the optical information medium by the use of an artificial fingerprint liquid as an evaluation dispersion liquid, is provided. An optical information medium having a remarkably excellent anti-staining property of the surface which is on the incident side of recording/reproducing beam is provided. A method for evaluating an optical information medium, comprising: adhering an artificial fingerprint liquid containing a fine-particle-form substance and a dispersion medium capable of dispersing the fine-particle-form substance onto the surface of the optical information medium which is on the incident side of a recording/reproducing beam; observing the state of the artificial fingerprint liquid droplets adhered to the surface; and judging the quality of the medium surface. For example, the quality of the medium surface is judged by: (1) Measurement of the area ratio of the surface occupied with the artificial fingerprint liquid droplets adhered per unit area of the surface; (2) Measurement of the diameter of the artificial fingerprint liquid droplets adhered to the surface; (3) Measurement of the number of the artificial fingerprint liquid droplets adhered per unit area of the surface; or (4) Measurement of the degree of roundness of the artificial fingerprint liquid droplets adhered to the surface.
    • 提供了一种用于通过使用人造指纹液作为评价分散液定量地且可再现地评估光学信息介质的表面质量来评估光学信息介质的简单方法。 提供具有在记录/再现光束的入射侧的表面的非常优异的抗污染性的光学信息介质。 一种用于评估光学信息介质的方法,包括:将含有细颗粒形式物质的人造指纹液和能够将细颗粒形式物质分散的分散介质粘附在光学信息介质的表面上 记录/再现光束的入射侧; 观察附着在表面上的人造指纹液滴的状态; 并判断介质表面的质量。 例如,介质表面的质量通过以下方式判断:(1)测量表面每单位面积附着的人造指纹液滴占据的面积的面积比; (2)测量附着在表面上的人造指纹液滴的直径; (3)每单位面积附着的人造指纹液滴的数量的测定; 或(4)测量附着在表面上的人造指纹液滴的圆度。
    • 8. 发明授权
    • Multilevel optical recording medium with calibration signals
    • 具有校准信号的多级光学记录介质
    • US07167439B2
    • 2007-01-23
    • US10496336
    • 2002-12-04
    • Hiroshi TakeHiroyuki AriokaNarutoshi FukuzawaShuji TsukamotoTakashi HoraiMotohiro Inoue
    • Hiroshi TakeHiroyuki AriokaNarutoshi FukuzawaShuji TsukamotoTakashi HoraiMotohiro Inoue
    • G11B7/24
    • G11B7/00455G11B7/1267G11B7/24088G11B7/26
    • It is an object of the present invention to provide a multilevel optical recording medium in which influence of variation in characteristics of a recording layer in a plane of the recording layer on reproduced data can be correctedThe multilevel optical recording medium according to the present invention includes at least a recording layer 12 and is constituted so that data can be recorded therein in a multilevel manner by controlling a state of the recording layer 12 among multiple stages and the multilevel optical recording medium according to the present invention is characterized in that a plurality of calibration signals are stored in the recording layer 12. According to the thus constituted multilevel optical recording medium, since an optical data recording and reproducing apparatus can detect and correct for the variation in characteristics of the recording layer 12 in the plane thereof, even in the case where variation in characteristics of the recording layer 12 in the plane thereof is present, data recorded in the multilevel optical recording medium in a multilevel manner can be read in a desired manner.
    • 本发明的目的是提供一种多层光学记录介质,其中记录层的记录层的平面中的特性变化对再现数据的影响可以被校正。根据本发明的多级光学记录介质包括 至少记录层12并且被构造成使得可以通过控制多级之间的记录层12的状态以多电平方式记录数据,并且根据本发明的多级光学记录介质的特征在于,多个 校准信号被存储在记录层12中。根据这样构成的多级光学记录介质,由于光学数据记录和再现装置可以检测和校正记录层12在其平面中的特性变化,所以即使在 记录层12在平面内的特性变化的情况 可以以期望的方式读取以多电平方式记录在多级光学记录介质中的数据。
    • 9. 发明申请
    • Optical recording medium
    • 光记录介质
    • US20060024615A1
    • 2006-02-02
    • US11189792
    • 2005-07-27
    • Takashi HoraiHiroshi Take
    • Takashi HoraiHiroshi Take
    • G11B7/24
    • G11B7/249G11B7/24035G11B7/246G11B7/2467G11B7/2472G11B7/2492G11B7/2495G11B7/2531G11B7/2533G11B7/2534G11B7/256G11B7/2575G11B2007/24612
    • An optical recording medium includes a recording layer containing a cyanine dye and a quencher and a light transmittance reducing section for reducing the transmission of ultraviolet rays to the recording layer, and the light transmittance reducing section is composed of at least one of a substrate and a function layer. When the component ratio of the quencher to the total number of moles of the cyanine dye and the quencher is shown by A and the transmittance of ultraviolet rays of the light transmittance reducing section is shown by B, the component ratio A and the transmittance B are defined to satisfy the following mathematical formulas (1) and (2). With this arrangement, the optical recording medium can execute recording at a high linear speed while securing sufficient light stability. 0.3≧A≧−(B+0.075)/1.25  (1) 0.3≧B≧0.05  (2)
    • 光记录介质包括含有花青染料和猝灭剂的记录层和用于减少紫外线向记录层传播的透光率降低部分,并且透光率降低部分由基材和 功能层。 当猝灭剂与氰化染料和猝灭剂的总摩尔数的比例由A表示,透光率降低部分的紫外线的透射率用B表示时,成分比A和透射率B分别为 定义为满足以下数学式(1)和(2)。 利用这种布置,光学记录介质可以以高线速度执行记录,同时确保足够的光稳定性。 <?in-line-formula description =“In-line formula”end =“lead”?> 0.3> = A> = - (B + 0.075)/1.25(1)<?in-line-formula description =“In 线“公式”end =“tail”?> <?in-line-formula description =“In-line formula”end =“lead”?> 0.3> = B> = 0.05(2) description =“内联公式”end =“tail”?>
    • 10. 发明授权
    • Drive system for an active matrix liquid crystal display panel having
divided row electrodes
    • 具有划分行电极的有源矩阵液晶显示面板的驱动系统
    • US4830466A
    • 1989-05-16
    • US839196
    • 1986-03-13
    • Nobuaki MatsuhashiMakoto TakedaHiroshi Take
    • Nobuaki MatsuhashiMakoto TakedaHiroshi Take
    • G02F1/133G09G3/36
    • G09G3/3666
    • In an active matrix liquid crystal display panel, row electrodes are divided into two portions at the approximate center of the display panel, the left row electrode portion belonging to an odd number row electrode group, and the right row electrode portion to an even number row electrode group. One horizontal scanning is conducted for each pair of left and right row electrodes to write data signals in the display picture elements. The width of a pulse applied to each row electrode corresponds to one horizontal scanning period. There is a phase difference of about 1/2 the horizontal scanning period between the pulses for an odd number row electrode and an even number row electrode, thus minimizing the difference in a write period among the display picture elements in the lateral direction of the display panel.
    • 在有源矩阵液晶显示面板中,行电极在显示面板的大致中央分为两部分,左行电极部分属于奇数行电极组,右排电极部分分为偶数行 电极组。 对于每对左右行电极进行一次水平扫描,以将数据信号写入显示图像元素。 施加到每个行电极的脉冲的宽度对应于一个水平扫描周期。 在奇数行电极和偶数行电极的脉冲之间存在大约1/2水平扫描周期的相位差,从而最小化显示器的横向方向上的显示图像元素之间的写入周期的差异 面板。