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    • 21. 发明授权
    • Semiconductor device
    • 半导体器件
    • US07176547B2
    • 2007-02-13
    • US11438068
    • 2006-05-22
    • Akihiro Hasegawa
    • Akihiro Hasegawa
    • H01L31/075H01L31/105H01L31/117
    • H01L31/02024H01L31/105
    • A four-division photodetector where a formation process of an element isolation structure is simplified is provided. On a P-sub layer that is a common anode of PIN photodiodes (PIN-PD) for every partition, a high resistivity epitaxial layer that is an i layer of the PIN-PD is grown. At a boundary of the partitions, ion implantation is applied from a substrate surface to form an isolation region that is a P+ region. When a cathode region formed for every partition and the P-sub layer are reverse-biased to operate the PIN-PD, the isolation region is set at a ground potential together with the P-sub layer to operate as an anode. As a result, in the epitaxial layer at a position sandwiched between the isolation region and the P-sub layer, a potential barrier to electrons is formed. As a result, electrons generated owing to light absorption in the respective partitions can be inhibited from moving to adjacent partitions and element isolation can thus be realized.
    • 提供了一种简化元件隔离结构的形成过程的四分光电检测器。 在作为每个分区的PIN光电二极管(PIN-PD)的公共阳极的P子层上,生长作为PIN-PD的i层的高电阻率外延层。 在隔板的边界处,从衬底表面施加离子注入以形成作为P + +区域的隔离区域。 当为每个分区形成的阴极区域和P子层被反向偏置以操作PIN-PD时,隔离区域与P子层一起设置为接地电位以用作阳极。 结果,在夹在隔离区域和P-sub层之间的位置的外延层中形成电子势垒。 结果,可以抑制由于各分区中的光吸收而产生的电子移动到相邻的分区,从而可以实现元件隔离。
    • 23. 发明申请
    • Substrate storage container
    • 基材储存容器
    • US20050274645A1
    • 2005-12-15
    • US11148147
    • 2005-06-08
    • Akihiro HasegawaHiroshi Mimura
    • Akihiro HasegawaHiroshi Mimura
    • B65D85/86H01L21/00H01L21/673B65D85/30
    • H01L21/67369H01L21/67376H01L21/67383
    • A substrate storage container comprises: a container casing having an aperture through which a plurality of substrates are placed in or taken out; a cover adapted to fit into the aperture of the container casing; a sealing gasket capable of elastic deformation provided between the container casing and the cover, and a retainer, mounted on the cover, capable of retaining the periphery of the substrates. The retainer has: a supporting body mounted on the inside face of the cover; a plurality of elastic pieces provided in elastically deformable fashion on the supporting body; and a block provided on each of the elastic pieces, the block retaining the periphery of one of the substrates. A relation 10.8×w
    • 衬底存储容器包括:具有孔的容器壳体,多个衬底通过所述孔放置或取出; 适于装配到容器壳体的孔中的盖; 能够在容器壳体和盖之间设置弹性变形的密封垫,以及安装在盖上的能够保持基板周边的保持器。 保持器具有:安装在盖的内表面上的支撑体; 在所述支撑体上以可弹性变形的方式设置的多个弹性片; 以及设置在每个弹性片上的块,该块保持一个基板的周边。 当每个弹性片的基板保持力为y [单位:N]时,满足10.8×w
    • 24. 发明申请
    • SEMICONDUCTOR DEVICE
    • 半导体器件
    • US20120049303A1
    • 2012-03-01
    • US13215584
    • 2011-08-23
    • Takashi OgawaHironori TerazawaAkihiro HasegawaTakashi NaruseYuuhei Mouri
    • Takashi OgawaHironori TerazawaAkihiro HasegawaTakashi NaruseYuuhei Mouri
    • H01L43/08
    • G01D3/036
    • A semiconductor device includes a Hall element, which is switched between a first and second mode. In the first mode, connection A between a first and second resistor and connection C between a third and fourth resistor are set to Vcc or GND. Connection D between the first and fourth resistor and connection B between the second and third resistor are set as output terminals. In the second mode, D and B are set to Vcc or GND and A and C are set as output terminals. When a first line placed along the second resistor and connected to A is set at Vcc in the first mode, a second line placed along the fourth resistor and connected to D is set at Vcc in the second mode. When the first line is set at GND in first mode, the second line is set at GND in the second mode.
    • 半导体器件包括在第一和第二模式之间切换的霍尔元件。 在第一模式中,第一和第二电阻之间的连接A与第三和第四电阻之间的连接C被设置为Vcc或GND。 第一和第四电阻之间的连接D和第二和第三电阻之间的连接B被设置为输出端。 在第二模式中,D和B设置为Vcc或GND,A和C设置为输出端。 当在第一模式中沿着第二电阻器放置并连接到A的第一线路被设置为Vcc时,在第二模式中沿着第四电阻器放置并连接到D的第二线路被设置为Vcc。 当在第一模式下将第一行设置为GND时,第二行在第二模式下设置为GND。
    • 27. 发明申请
    • STORAGE CONTAINER
    • 储物容器
    • US20090026109A1
    • 2009-01-29
    • US11817574
    • 2006-03-30
    • Akihiro HasegawaHiroshi Mimura
    • Akihiro HasegawaHiroshi Mimura
    • B65D85/00
    • H01L21/67373Y10S292/11Y10T70/5261Y10T70/5279Y10T70/5327Y10T292/0848Y10T292/0854Y10T292/444
    • To provide a storage container which can inhibit and prevent generation of dust due to the motions of an advancing and retracting element, whose door element can be formed with a reduced space and thickness and which can prevent contamination of the articles accommodated therein, the storage container includes a container body 1 for storing precision substrates, a door element 10 that opens and closes the front of container body 1 and a locking mechanism 20 for locking and unlocking door element 10 that covers container body 1. Locking mechanism 20 is constructed of a rotary plate 21 that is supported by door element 10, a first advancing and retracting plate 26 that, in accordance with the rotation of rotary plate 21, advances toward the peripheral wall of door element 10 when door element 10 is locked and retracts to the reference position inside door element 10 when door element 10 is unlocked; a second advancing and retracting plate 32 which is supported by the front end part of first advancing and retracting plate 26, and projects out from the peripheral wall of door element 10 and fits into an engaging recess 3 of container body 1 when door element 10 is locked and returns from engaging recess 3 of container body 1 toward the door element when door element 10 is unlocked; a guide rib 37 which makes the second advancing and retracting plate 32 incline in the thickness direction of the door element 10 as the plate is being projected.
    • 为了提供一种存储容器,其能够抑制和防止由于前进和后退元件的运动引起的灰尘的产生,其门元件可以形成为具有减小的空间和厚度并且可以防止其中容纳的物品的污染, 包括用于存储精密基板的容器主体1,打开和关闭容器主体1的前部的门元件10和用于锁定和解锁盖体10的门元件10的锁定机构20.锁定机构20由旋转 由门元件10支撑的板21,当门元件10被锁定并且缩回到参考位置时,根据旋转板21的旋转朝向门元件10的周壁前进的第一前进和后退板26 门元件10被解锁时的内门元件10; 第二前进退回板32,其由第一前进退回板26的前端部支撑,并且当门元件10为门元件10时从门元件10的周壁突出并配合到容器主体1的接合凹部3中 当门元件10解锁时,锁定并从容器主体1的接合凹部3返回门元件; 引导肋37,其使得当板被投影时,第二前进和后退板32在门元件10的厚度方向上倾斜。
    • 29. 发明授权
    • Substrate storage container
    • 基材储存容器
    • US07344031B2
    • 2008-03-18
    • US11148147
    • 2005-06-08
    • Akihiro HasegawaHiroshi Mimura
    • Akihiro HasegawaHiroshi Mimura
    • B65D85/48
    • H01L21/67369H01L21/67376H01L21/67383
    • A substrate storage container comprises: a container casing having an aperture through which a plurality of substrates are placed in or taken out; a cover adapted to fit into the aperture of the container casing; a sealing gasket capable of elastic deformation provided between the container casing and the cover; and a retainer, mounted on the cover, capable of retaining the periphery of the substrates. The retainer has: a supporting body mounted on the inside face of the cover; a plurality of elastic pieces provided in elastically deformable fashion on the supporting body; and a block provided on each of the elastic pieces, the block retaining the periphery of one of the substrates. A relation 10.8×w
    • 衬底存储容器包括:具有孔的容器壳体,多个衬底通过所述孔放置或取出; 适于装配到容器壳体的孔中的盖; 能够在容器壳体和盖之间设置弹性变形的密封垫片; 以及安装在盖上的保持器,其能够保持基板的周边。 保持器具有:安装在盖的内表面上的支撑体; 在所述支撑体上以可弹性变形的方式设置的多个弹性片; 以及设置在每个弹性片上的块,该块保持一个基板的周边。 当每个弹性片的衬底保持力为y [单位:N]时,满足10.8×w