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    • 1. 发明授权
    • Crystal oscillator
    • 水晶振荡器
    • US07061164B2
    • 2006-06-13
    • US11142100
    • 2005-06-01
    • Takahiko IwasakiShigeru ObaraGenwa KokiMasaaki Nakahara
    • Takahiko IwasakiShigeru ObaraGenwa KokiMasaaki Nakahara
    • H03H9/17H03H9/19H01L41/047
    • H03H9/132H03H9/02094H03H9/131
    • The present invention relates to a crystal oscillator that is provided with a crystal element; a main surface electrode configured of a first underlayer formed on each of two main surfaces of the crystal element and a first surface layer of Au superimposed over the first underlayer; an end surface electrode having a second underlayer formed on the crystal element to extend over the main surface electrode and a second surface layer of Au superimposed to cover the second underlayer; a supporter for holding the crystal element in the horizontal direction, bonded to the end surface electrode by a eutectic alloy comprising at least Au; and a base on which the supporter stands. An intermediate layer is provided between the second underlayer and the second surface layer of the end surface electrode; the intermediate layer protrudes further towards the center over the main surface electrode than the second surface layer; and also the intermediate layer is formed of a metal having the characteristic of increasing the adhesive strength between the underlayer and the second surface layer as well as that of the eutectic alloy. The present invention provides a crystal oscillator in which bonding is done with a eutectic alloy that has a higher bond strength, thus preventing peeling of the electrodes.
    • 本发明涉及一种具有晶体元件的晶体振荡器; 主表面电极由形成在所述晶体元件的两个主表面中的每一个上的第一底层和叠置在所述第一底层上的Au的第一表面层构成; 端面电极,其具有形成在所述晶体元件上以在所述主表面电极上延伸的第二底层和叠加以覆盖所述第二底层的Au的第二表面层; 用于将水晶元件保持在水平方向上的支撑体,通过至少包含Au的共晶合金结合到端面电极; 以及支持者所在的基地。 在第二底层和端面电极的第二表面层之间设置中间层; 中间层比第二表面层更靠近主表面电极的中心突出; 并且中间层由具有增加底层和第二表面层之间的粘合强度以及共晶合金的特性的金属形成。 本发明提供一种晶体振荡器,其中用具有较高结合强度的共晶合金进行接合,从而防止电极剥离。
    • 2. 发明申请
    • Crystal oscillator
    • 水晶振荡器
    • US20050269912A1
    • 2005-12-08
    • US11142100
    • 2005-06-01
    • Takahiko IwasakiShigeru ObaraGenwa KokiMasaaki Nakahara
    • Takahiko IwasakiShigeru ObaraGenwa KokiMasaaki Nakahara
    • H03H9/19H03H3/02H03H9/02H03H9/10H03H9/13H03H9/15H03H9/17H01L41/047
    • H03H9/132H03H9/02094H03H9/131
    • The present invention relates to a crystal oscillator that is provided with a crystal element; a main surface electrode configured of a first underlayer formed on each of two main surfaces of the crystal element and a first surface layer of Au superimposed over the first underlayer; an end surface electrode having a second underlayer formed on the crystal element to extend over the main surface electrode and a second surface layer of Au superimposed to cover the second underlayer; a supporter for holding the crystal element in the horizontal direction, bonded to the end surface electrode by a eutectic alloy comprising at least Au; and a base on which the supporter stands. An intermediate layer is provided between the second underlayer and the second surface layer of the end surface electrode; the intermediate layer protrudes further towards the center over the main surface electrode than the second surface layer; and also the intermediate layer is formed of a metal having the characteristic of increasing the adhesive strength between the underlayer and the second surface layer as well as that of the eutectic alloy. The present invention provides a crystal oscillator in which bonding is done with a eutectic alloy that has a higher bond strength, thus preventing peeling of the electrodes.
    • 本发明涉及一种具有晶体元件的晶体振荡器; 主表面电极由形成在所述晶体元件的两个主表面中的每一个上的第一底层和叠置在所述第一底层上的Au的第一表面层构成; 端面电极,其具有形成在所述晶体元件上以在所述主表面电极上延伸的第二底层和叠加以覆盖所述第二底层的Au的第二表面层; 用于将水晶元件保持在水平方向上的支撑体,通过至少包含Au的共晶合金结合到端面电极; 以及支持者所在的基地。 在第二底层和端面电极的第二表面层之间设置中间层; 中间层比第二表面层更靠近主表面电极的中心突出; 并且中间层由具有增加底层和第二表面层之间的粘合强度以及共晶合金的特性的金属形成。 本发明提供一种晶体振荡器,其中用具有较高结合强度的共晶合金进行接合,从而防止电极剥离。
    • 3. 发明授权
    • IT-cut quartz crystal unit
    • IT切割石英晶体单元
    • US07011887B2
    • 2006-03-14
    • US10652073
    • 2003-09-02
    • Shigeru ObaraGenwa KokiKouichi Hara
    • Shigeru ObaraGenwa KokiKouichi Hara
    • B32B17/00
    • H03H9/19C30B29/18C30B33/00H03H9/02023Y10T117/10
    • An IT-cut quartz crystal unit has a discoidal or a rectangular quartz crystal blank which is cut from a crystal of quartz along a plane perpendicular to the Y-axis of the crystal of the quartz which is rotated over approximately 34° about the X-axis, and further rotated from this rotated position over approximately 19° about the Z-axis. Excitation electrodes are formed on both main surface of the crystal blank, respectively. The crystal blank is held at positions in at least one set of opposing peripheral regions selected from an angular range of 18°±18° from the Z′-axis on the surface of the crystal blank, viewed from the center on the surface of the crystal blank; an angular range of 198°±18° from the Z′-axis; an angular range of 108°±18° from the Z′-axis; and an angular range of 288°±18° from the Z′-axis.
    • IT切割石英晶体单元具有圆形或矩形石英晶体空白,其沿着与石英晶体的Y轴垂直的平面从石英晶体切割,该晶体围绕X轴旋转约34度, 并且从该旋转位置进一步围绕Z轴旋转大约19°。 激发电极分别形成在晶体坯的两个主表面上。 晶体坯料被保持在至少一组相对的周边区域中的位于晶体坯料的表面上的Z'轴的18°±18°的角度范围内的位置处,从 水晶空白; 与Z'轴的角度范围为198°±18°; 与Z'轴的角度范围为108°±18°; 与Z'轴的角度范围为288°±18°。
    • 4. 发明授权
    • Heat resistant quartz-crystal unit
    • 耐热石英晶体单元
    • US06680560B2
    • 2004-01-20
    • US10298623
    • 2002-11-15
    • Genwa KokiMikio SaitoShigeru ObaraMituaki Koyama
    • Genwa KokiMikio SaitoShigeru ObaraMituaki Koyama
    • H01L41053
    • H03H9/0514H03H9/0519Y10T29/42
    • In a crystal unit suitable for use in a thermostat oven, a first and a second excitation electrode are disposed on a first and a second surface of a crystal blank. A first and a second connection are disposed on the second surface as connections formed by applying a fillet of a mixture of a low-melting glass and a metal filler, and melting the fillet by heating. A third connection is disposed on a peripheral edge of the crystal blank to extend over both surfaces. A lead of the first excitation electrode is directly connected to the third connection, while a lead of the second excitation electrode is connected to the first connection through a vapor-deposited metal thin film. The second and third connections are connected to each other through a vapor-deposited metal thin film. The first and second connections are secured to a pair of holding members by brazing.
    • 在适用于恒温炉的晶体单元中,第一和第二激励电极设置在晶体坯的第一和第二表面上。 第一和第二连接件设置在第二表面上,作为通过施加低熔点玻璃和金属填料的混合物的圆角形成的连接,并且通过加热来熔化圆角。 第三连接设置在晶体坯料的周边边缘上以在两个表面上延伸。 第一激励电极的引线直接连接到第三连接,而第二激励电极的引线通过气相沉积的金属薄膜连接到第一连接。 第二和第三连接通过蒸镀金属薄膜彼此连接。 第一和第二连接通过钎焊固定到一对保持构件上。
    • 5. 发明授权
    • Crystal unit
    • 水晶单位
    • US08030827B2
    • 2011-10-04
    • US12367034
    • 2009-02-06
    • Takahiko IwasakiKouichi HaraShigeru Obara
    • Takahiko IwasakiKouichi HaraShigeru Obara
    • H03H9/05
    • H03H9/0509H03H9/0514
    • In a crystal unit, at least two places of an outer circumference of a quartz crystal blank, which are places that correspond to both ends of a stress sensitivity zero axis of the crystal blank, are supported by supporters and fixed to the supporters by conductive adhesives. Each supporter includes; a vertical portion with a surface extending vertically, a slit formed in the vertical portion as extending vertically and with both ends thereof being closed, and a tongue portion projecting from a lower end of the slit. Each conductive adhesive includes; a first portion formed between the tongue portion and a lower surface of the crystal blank, a second portion extending to an end face of the crystal blank from an outer surface of the supporter and through the slit, and a third portion formed between an inner surface of the supporter and an upper surface of the crystal blank.
    • 在晶体单元中,石英晶体坯的外圆周的至少两个位置,其对应于晶体坯的应力灵敏度零轴的两端,由支撑体支撑并通过导电粘合剂固定到支撑体 。 每个支持者包括 具有垂直延伸的表面的垂直部分,形成在垂直部分中的纵向延伸并且其两端封闭的狭缝和从狭缝的下端突出的舌部。 每个导电粘合剂包括: 第一部分,形成在所述舌部和所述晶体坯的下表面之间,第二部分从所述支撑体的外表面延伸到所述晶体坯料的端面并且穿过所述狭缝;以及第三部分,形成在所述晶体坯料的内表面 的支撑体和晶体坯的上表面。
    • 6. 发明申请
    • Crystal unit
    • 水晶单位
    • US20090252983A1
    • 2009-10-08
    • US12383880
    • 2009-03-30
    • Kouichi HaraShigeru Obara
    • Kouichi HaraShigeru Obara
    • B32B3/10
    • H03H9/0514H01L2924/0002Y10T428/12361H01L2924/00
    • A crystal unit includes a unit base in which a metal flange is welded to an outer circumference of a base main body, a crystal element held by supporters on the unit base, and a metal cover that is jointed to the metal flange to cover and hermetically encapsulate the crystal element. The base main body is formed of ceramic. A first metal film, to which the metal flange is joined, is formed on a surface of the outer circumference of the base main body. At least two places of the main body, second metal films are formed on an inner bottom face of the main body, and third metal films are formed on an outer bottom face of the main body. The second metal films and the third metal films are electrically connected to one another through via holes. The supporters are joined to the second metal films.
    • 晶体单元包括单元基座,金属凸缘焊接到基体主体的外周,由支撑体固定在单元基座上的晶体元件以及与金属凸缘接合以覆盖和密封的金属盖 封装晶体元素。 底座主体由陶瓷制成。 金属凸缘接合的第一金属膜形成在基体主体的外周的表面上。 主体的至少两个位置,第二金属膜形成在主体的内底面上,第三金属膜形成在主体的外底面上。 第二金属膜和第三金属膜通过通孔彼此电连接。 支持者连接到第二金属膜。
    • 7. 发明授权
    • Crystal unit
    • 水晶单位
    • US07939768B2
    • 2011-05-10
    • US12383880
    • 2009-03-30
    • Kouichi HaraShigeru Obara
    • Kouichi HaraShigeru Obara
    • H01L23/02H05K5/06
    • H03H9/0514H01L2924/0002Y10T428/12361H01L2924/00
    • A crystal unit includes a unit base in which a metal flange is welded to an outer circumference of a base main body, a crystal element held by supporters on the unit base, and a metal cover that is jointed to the metal flange to cover and hermetically encapsulate the crystal element. The base main body is formed of ceramic. A first metal film, to which the metal flange is joined, is formed on a surface of the outer circumference of the base main body. At least two places of the main body, second metal films are formed on an inner bottom face of the main body, and third metal films are formed on an outer bottom face of the main body. The second metal films and the third metal films are electrically connected to one another through via holes. The supporters are joined to the second metal films.
    • 晶体单元包括单元基座,金属凸缘焊接到基体主体的外周,由支撑体固定在单元基座上的晶体元件以及与金属凸缘接合以覆盖和密封的金属盖 封装晶体元素。 底座主体由陶瓷制成。 金属凸缘接合的第一金属膜形成在基体主体的外周的表面上。 主体的至少两个位置,第二金属膜形成在主体的内底面上,第三金属膜形成在主体的外底面上。 第二金属膜和第三金属膜通过通孔彼此电连接。 支持者连接到第二金属膜。
    • 8. 发明授权
    • Quartz crystal element made of double-rotation Y-cut quartz crystal plate
    • 石英晶体元素由双旋Y切割石英晶体板制成
    • US07863802B2
    • 2011-01-04
    • US12254079
    • 2008-10-20
    • Akio ChibaShigeru Obara
    • Akio ChibaShigeru Obara
    • H01L41/08H01L41/18H03H9/21
    • H03H9/19H03H9/02023H03H9/177
    • A crystal element has a crystal blank which is cut from a crystal of quartz and has a principal plane orthogonal to a Y″-axis, where the Y- and Z-axes are rotated by an angle of α around the X-axis in the crystal to be designated as the Y′- and Z′-axes, and the X- and Y′-axes are rotated by an angle of β around the Z′-axis to be designated as the X′- and Y″-axes. The crystal blank has mutually orthogonal two null stress-sensitivity axes. In the crystal blank, the thickness of the center part at which two null stress-sensitivity axes intersect is increased, and a ridge line portion defining a quadrangular pyramid like shape from the center part toward the outer peripheral part is formed. The sectional thickness of the crystal blank along the base thereof is larger in the central region and becomes gradually smaller toward both ends.
    • 晶体元件具有从石英晶体切割并具有与Y“轴正交的主平面的晶体坯料,其中Y轴和Z轴在X轴方向上围绕X轴旋转角度α 晶体被指定为Y'和Z'轴,并且X和Y'轴旋转角度&bgr; 围绕Z'轴被指定为X'和Y“轴。 晶体坯料具有相互正交的两个零应力敏感轴。 在晶体坯料中,两个零应力 - 敏感性轴相交的中心部分的厚度增加,并且形成从中心部分朝向外周部分限定四边形金字塔形状的脊线部分。 沿其底部的晶体坯料的截面厚度在中心区域较大,并且朝向两端逐渐变小。
    • 9. 发明申请
    • QUARTZ CRYSTAL ELEMENT MADE OF DOUBLE-ROTATION Y-CUT QUARTZ CRYSTAL PLATE
    • 双重旋转Y-CUT QUARTZ水晶板的QUARTZ水晶元件
    • US20090102326A1
    • 2009-04-23
    • US12254079
    • 2008-10-20
    • Akio ChibaShigeru Obara
    • Akio ChibaShigeru Obara
    • H01L41/04
    • H03H9/19H03H9/02023H03H9/177
    • A crystal element has a crystal blank which is cut from a crystal of quartz and has a principal plane orthogonal to a Y″-axis, where the Y- and Z-axes are rotated by an angle of α around the X-axis in the crystal to be designated as the Y′- and Z′-axes, and the X- and Y′-axes are rotated by an angle of β around the Z′-axis to be designated as the X′- and Y″-axes. The crystal blank has mutually orthogonal two null stress-sensitivity axes. In the crystal blank, the thickness of the center part at which two null stress-sensitivity axes intersect is increased, and a ridge line portion defining a quadrangular pyramid like shape from the center part toward the outer peripheral part is formed. The sectional thickness of the crystal blank along the base thereof is larger in the central region and becomes gradually smaller toward both ends.
    • 晶体元件具有从石英晶体切割并具有与Y“轴正交的主平面的晶体坯料,其中Y轴和Z轴以围绕X轴的角度α旋转 被指定为Y'和Z'轴的晶体,并且X和Y'轴围绕Z'轴旋转角度β被指定为X'和Y“ 咬人 晶体坯料具有相互正交的两个零应力敏感轴。 在晶体坯料中,两个零应力 - 敏感性轴相交的中心部分的厚度增加,并且形成从中心部分朝向外周部分限定四边形金字塔形状的脊线部分。 沿其底部的晶体坯料的截面厚度在中心区域较大,并且朝向两端逐渐变小。
    • 10. 发明授权
    • Method and apparatus for parallel processing
    • 并行处理方法和装置
    • US06799151B1
    • 2004-09-28
    • US09544201
    • 2000-04-07
    • So YamadaShinjiro InabataNobuaki MiyakawaHajime TakashimaKunihiro KitamuraShigeru Obara
    • So YamadaShinjiro InabataNobuaki MiyakawaHajime TakashimaKunihiro KitamuraShigeru Obara
    • G06F1750
    • G06F9/5066G06F8/45G06F17/10
    • Matrix element calculation carried out efficiently without the overhead of communication between a host computer and processor elements even in parallel calculation utilizing a low-cost communication device and multiple processor elements having memories of a small capacity. In a method for calculating molecular orbitals, for example, all elements F(I, J) of a Fock matrix are calculated where an outermost loop is a loop associated with combinations (RT) of contracted shell R and contracted shell T which satisfy relationships R≦Nshell and T≦R. A second loop is a loop associated with contracted shell S, and a third loop is a loop associated with contracted shell U. Alternatively, the second loop is a loop associated with the contracted shell U, and the third loop is a loop associated with the contracted shell S. The value of S ranges from 1 to R, and the value of U ranges from 1 to R. Calculation of predetermined electron repulsion integrals and calculation of a predetermined part of Fock matrix elements utilizing the result of the calculation is carried out inside the third loop.
    • 即使在使用低成本通信装置的并行计算和具有小容量的存储器的多个处理器元件的情况下,也可以有效地进行矩阵元素计算,而无需主计算机和处理器元件之间的通信开销。 在用于计算分子轨道的方法中,例如,计算Fock矩阵的所有元素F(I,J),其中最外面的循环是与收缩壳体R和收缩壳体T的组合(RT)相关联的回路,其满足关系R <= Nshell和T <= R。 第二个循环是与收缩壳体S相关联的循环,第三个循环是与收缩的壳体U相关联的循环。或者,第二个循环是与收缩的壳体U相关联的循环,第三个循环是与 S的值范围从1到R,U的值在1到R之间。使用计算结果计算预定的电子斥力积分和计算预定部分的Fock矩阵元素 在第三个循环内。