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    • 1. 发明授权
    • Semiconductor optical device
    • 半导体光学器件
    • US08809906B2
    • 2014-08-19
    • US13613177
    • 2012-09-13
    • Lei ZhuShigeaki SekiguchiShinsuke TanakaKenichi Kawaguchi
    • Lei ZhuShigeaki SekiguchiShinsuke TanakaKenichi Kawaguchi
    • H01L31/102
    • G02B6/122G02B6/29352G02B2006/121G02F1/025H01L31/105
    • A semiconductor optical device includes a first clad layer, a second clad layer and an optical waveguide layer sandwiched between the first clad layer and the second clad layer, wherein the optical waveguide layer includes a first semiconductor layer, a second semiconductor layer disposed on the first semiconductor layer and extending in one direction, and a third semiconductor layer covering a top surface of the second semiconductor layer, and wherein the first semiconductor layer includes an n-type region disposed on one side of the second semiconductor layer, a p-type region disposed on the other side of the second semiconductor layer, and an i-type region disposed between the n-type region and the p-type region, and wherein the second semiconductor layer has a band gap narrower than band gaps of the first semiconductor layer and the third semiconductor layer.
    • 半导体光学器件包括第一覆盖层,第二覆盖层和夹在第一覆盖层和第二覆盖层之间的光波导层,其中,光波导层包括第一半导体层,第二半导体层,设置在第一覆盖层 半导体层并且沿一个方向延伸,以及覆盖第二半导体层的顶表面的第三半导体层,并且其中第一半导体层包括设置在第二半导体层一侧的n型区域,p型区域 设置在第二半导体层的另一侧,以及设置在n型区域和p型区域之间的i型区域,并且其中第二半导体层具有比第一半导体层的带隙窄的带隙 和第三半导体层。
    • 2. 发明申请
    • SEMICONDUCTOR OPTICAL DEVICE
    • 半导体光学器件
    • US20130126941A1
    • 2013-05-23
    • US13613177
    • 2012-09-13
    • Lei ZhuShigeaki SekiguchiShinsuke TanakaKenichi Kawaguchi
    • Lei ZhuShigeaki SekiguchiShinsuke TanakaKenichi Kawaguchi
    • H01L31/105
    • G02B6/122G02B6/29352G02B2006/121G02F1/025H01L31/105
    • A semiconductor optical device includes a first clad layer, a second clad layer and an optical waveguide layer sandwiched between the first clad layer and the second clad layer, wherein the optical waveguide layer includes a first semiconductor layer, a second semiconductor layer disposed on the first semiconductor layer and extending in one direction, and a third semiconductor layer covering a top surface of the second semiconductor layer, and wherein the first semiconductor layer includes an n-type region disposed on one side of the second semiconductor layer, a p-type region disposed on the other side of the second semiconductor layer, and an i-type region disposed between the n-type region and the p-type region, and wherein the second semiconductor layer has a band gap narrower than band gaps of the first semiconductor layer and the third semiconductor layer.
    • 半导体光学器件包括第一覆盖层,第二覆盖层和夹在第一覆盖层和第二覆盖层之间的光波导层,其中,光波导层包括第一半导体层,第二半导体层,设置在第一覆盖层 半导体层并且沿一个方向延伸,以及覆盖第二半导体层的顶表面的第三半导体层,并且其中第一半导体层包括设置在第二半导体层一侧的n型区域,p型区域 设置在第二半导体层的另一侧,以及设置在n型区域和p型区域之间的i型区域,并且其中第二半导体层具有比第一半导体层的带隙窄的带隙 和第三半导体层。
    • 6. 发明授权
    • Body-insertable apparatus system
    • 身体可插入装置系统
    • US08529433B2
    • 2013-09-10
    • US12730325
    • 2010-03-24
    • Hironao KawanoShinsuke TanakaAkio Uchiyama
    • Hironao KawanoShinsuke TanakaAkio Uchiyama
    • A61B1/00
    • A61B1/041A61B1/00016A61B1/00087A61B1/00158A61B5/061A61B5/073A61B5/1455A61B5/4839A61B10/0233A61B17/3478A61B34/73A61B2034/732
    • A body-insertable apparatus system has a body insertable apparatus that is inserted into a subject and a control apparatus. The body-insertable apparatus includes a magnetic responding unit that is provided within a casing forming the body-insertable apparatus and has a magnetization direction; and a needle that is protruded and retracted with respect to a surface of the casing. The control apparatus includes a magnetic field generator that generates a magnetic field; and a control unit that causes the magnetic field generator to generate a magnetic field for changing an orientation of the magnetic responding unit based on the magnetization direction of the magnetic responding unit in the body-insertable apparatus, a position of the needle in the body-insertable apparatus, and a distal end direction of the needle, thereby changing an orientation of the entire body-insertable apparatus to enable the protruded needle to puncture a puncture target layer.
    • 身体可插入装置系统具有插入被检体和控制装置的被检体内插入装置。 所述被检体内导入装置具有形成所述被检体内导入装置的壳体内的磁化方向的磁响应部, 以及相对于壳体的表面突出和缩回的针。 控制装置包括产生磁场的磁场发生器; 以及控制单元,其使得所述磁场发生器基于所述被检体内导入装置中的所述磁响应单元的磁化方向,生成用于改变所述磁响应单元的取向的磁场,所述针在所述身体可插入装置中的位置, 可插入设备和针的远端方向,由此改变整个被人体插入设备的方向,使得突出的针能刺穿穿刺目标层。
    • 7. 发明授权
    • In-vivo information acquiring apparatus, in-vivo information acquiring system, and in-vivo information acquiring method
    • 体内信息获取装置,体内信息获取系统和体内信息获取方法
    • US08491464B2
    • 2013-07-23
    • US11571510
    • 2006-07-10
    • Takeshi YokoiKatsumi HirakawaAkio UchiyamaShinsuke TanakaHironobu TakizawaManabu Fujita
    • Takeshi YokoiKatsumi HirakawaAkio UchiyamaShinsuke TanakaHironobu TakizawaManabu Fujita
    • A61B1/00
    • A61B1/2736A61B1/00147A61B1/041A61B5/6882A61B2562/162
    • To stably and properly monitor an inside of a body by using an easily operable placement technique, a capsule endoscope 101 to be swallowed from an oral cavity 200 to acquire in-vivo information of a subject 201 and to wirelessly output for a transmission of the in-vivo information to an outside of a body, a string member 103 that is connected to the capsule endoscope 101 for positioning the capsule endoscope 101 at a gastric cardia 202, and a fixing portion 104 that is a portion of the string member 103, is provided on a position with which a length from the capsule endoscope 101 corresponds to a length from the gastric cardia 202 to the inside of an esophageal region 203 for fixing the string member 103 that has located the capsule endoscope 101 at the gastric cardia 202 to the inside of the esophageal region 203 by an endoscopic fixture are included. As a result, the capsule endoscope 101 is placed at a position of the gastric cardia 202 where an entire inside of the stomach is easily inspected, and the capsule endoscope 101 itself can easily be placed inside the esophageal region by using the fixing portion 104.
    • 为了通过使用易于操作的放置技术来稳定且适当地监视身体的内部,可以从口腔200中吞咽的胶囊型内窥镜101获取被检体201的体内信息,并进行无线输出。 体内信息输送到身体的外部,与胶囊型内窥镜101连接以将胶囊型内窥镜101定位在胃贲门202处的绳状构件103和作为绳构件103的一部分的固定部104, 设置在从胶囊型内窥镜101的长度对应于从胃贲门202到食道区域203的长度的位置的位置,用于将位于胃贲门202处的胶囊型内窥镜101的线状部件103固定到 包括内窥镜固定装置在食管区域203内部。 结果,胶囊型内窥镜101配置在容易检查胃内整体的胃贲门202的位置,通过使用固定部104,能够容易地将胶囊型内窥镜101本身放置在食道内。