Semiconductor device and manufacturing method of semiconductor device
    1.
    发明授权
    Semiconductor device and manufacturing method of semiconductor device 有权
    半导体器件及半导体器件的制造方法

    公开(公告)号:US09312385B2

    公开(公告)日:2016-04-12

    申请号:US14239249

    申请日:2012-06-07

    摘要: A technique for improving characteristics of a semiconductor device (DMOSFET) is provided. A semiconductor device is configured so as to include: an n-type source layer (102) disposed on an upper portion of a first surface side of an SiC substrate (106); a p body layer (103) which surrounds the source layer and has a channel region; an n−-type drift layer (107) which is in contact with the p body layer (103); a gate electrode (116) which is disposed on an upper portion of the channel region via a gate insulating film; and a first p+ layer (109) which is disposed in the p body layer (103), extends to a portion below the n+ source layer (102), and serves as a buried semiconductor region having an impurity concentration higher than that of the p body layer (103). In this manner, since the first p+ layer (109) is formed in the middle of the p body layer (103), it is possible to reduce the diffusion resistance of the p body layer (103). Thus, it is possible to make a parasitic bipolar transistor harder to turn on.

    摘要翻译: 提供了一种用于改善半导体器件(DMOSFET)的特性的技术。 半导体器件被配置为包括:设置在SiC衬底(106)的第一表面侧的上部的n型源极层(102); 围绕源层并具有沟道区的p体层(103); 与p体层(103)接触的n型漂移层(107); 栅极电极,其经由栅极绝缘膜设置在所述沟道区域的上部; 并且设置在p体层(103)中的第一p +层(109)延伸到n +源极层(102)下方的部分,并且用作具有高于p的杂质浓度的掩埋半导体区域 身体层(103)。 以这种方式,由于第一p +层(109)形成在p体层(103)的中间,所以可以降低p体层(103)的扩散阻力。 因此,可以使寄生双极晶体管更难以导通。

    Analyzing apparatus
    4.
    发明授权
    Analyzing apparatus 有权
    分析仪器

    公开(公告)号:US08654323B2

    公开(公告)日:2014-02-18

    申请号:US13241960

    申请日:2011-09-23

    IPC分类号: G01J1/00

    摘要: An analyzing apparatus includes a microchip, a detecting unit and an analyzing-measuring unit. The microchip is formed of a light transmissive material formed with a separation fluid channel that is a light measuring part. The detecting unit includes an emitted-light guiding unit that emits light to the separation fluid channel, and a received-light guiding unit that receives light through the separation fluid channel. The emitted-light guiding unit or the received-light guiding unit placed at a position facing a microchip support table via the microchip abuts the microchip, and pushes the microchip in a direction toward the microchip support table. The analyzing-measuring unit includes the detecting unit, the emitted-light guiding unit and the received-light guiding unit, and detects a constituent of a sample filled in the separation fluid channel.

    摘要翻译: 分析装置包括微芯片,检测单元和分析测量单元。 微芯片由形成有作为光测​​量部分的分离流体通道形成的透光材料形成。 检测单元包括向分离流体通道发射光的发射光引导单元和通过分离流体通道接收光的接收光引导单元。 经由微芯片放置在面向微芯片支撑台的位置处的发射光引导单元或接收光引导单元抵靠微芯片,并且朝向微芯片支撑台的方向推动微芯片。 分析测量单元包括检测单元,发射光引导单元和接收光引导单元,并且检测填充在分离流体通道中的样品的成分。

    Liquid ejecting apparatus
    6.
    发明授权
    Liquid ejecting apparatus 有权
    液体喷射装置

    公开(公告)号:US08439479B2

    公开(公告)日:2013-05-14

    申请号:US12940272

    申请日:2010-11-05

    IPC分类号: B41J2/165 B41J2/01

    CPC分类号: B41J11/06 B41J11/0065

    摘要: A liquid ejecting apparatus having a liquid ejecting unit that ejects liquid toward a target ejection medium and a target ejection medium support member that is disposed so as to oppose the liquid ejecting unit and supports the target ejection medium, includes a conductive shielding member that covers a first side of the target ejection medium, which opposes the liquid ejecting unit, at an edge area including an edge perpendicular to a feeding direction of the target ejection medium.

    摘要翻译: 一种具有朝向目标喷射介质喷射液体的液体喷射单元和与液体喷射单元相对配置并支撑目标喷射介质的目标喷射介质支撑构件的液体喷射装置包括:导电屏蔽构件,其覆盖 在与包括垂直于目标喷射介质的进给方向的边缘的边缘区域处的与喷液单元相对的目标喷射介质的第一侧。

    Image forming apparatus and image forming method
    7.
    发明授权
    Image forming apparatus and image forming method 有权
    图像形成装置及图像形成方法

    公开(公告)号:US08170454B2

    公开(公告)日:2012-05-01

    申请号:US12511848

    申请日:2009-07-29

    IPC分类号: G03G15/08

    CPC分类号: G03G15/0813 G03G2215/0619

    摘要: An image forming apparatus includes: a latent image holder that holds on its surface an electrostatic latent image in which an image portion and a non-image portion have different potentials; a toner carrying roller that carries a toner layer including both contact toner which directly contacts a surface of the roller and non-contact toner which contacts the contact toner but does not contact the surface of the roller; and an electric field forming unit that forms an alternating electric field to cause an electric field strength exerted between the non-image portion on the surface of the latent image holder and the surface of the toner carrying roller to be lower than a contact toner fly start electric field strength and higher than a non-contact toner fly start electric field strength, between the latent image holder and the toner carrying roller, as a toner fly electric field.

    摘要翻译: 图像形成装置包括:潜像保持器,其在其表面上保持图像部分和非图像部分具有不同电位的静电潜像; 携带调色剂层的调色剂承载辊,其包括直接接触辊表面的接触调色剂和与接触调色剂接触但不接触辊的表面的非接触式调色剂; 以及电场形成单元,其形成交变电场以使施加在潜像保持器的表面上的非图像部分和调色剂承载辊的表面之间的电场强度低于接触式调色剂起始点 作为调色剂飞电场,在潜像保持器和调色剂承载辊之间,电场强度高于非接触式调色剂起飞电场强度。

    PROPULSION DEVICE OF SHIP
    8.
    发明申请
    PROPULSION DEVICE OF SHIP 审中-公开
    船舶推进装置

    公开(公告)号:US20120071046A1

    公开(公告)日:2012-03-22

    申请号:US13318515

    申请日:2010-02-18

    申请人: Daisuke Matsumoto

    发明人: Daisuke Matsumoto

    IPC分类号: B63H5/08 B63B1/08

    CPC分类号: B63B1/08 B63H5/08 Y02T70/128

    摘要: A propulsion device of a ship is provided with a port side propeller, a starboard side propeller, a port side propeller axis and a starboard side propeller axis. The port side propeller axis extends backwardly from the hull stern and is connected with the port side propeller. The starboard side propeller axis extends backwardly from the hull stern and is connected with the starboard side propeller. When the propeller diameters of the port side propeller and the starboard side propeller are Dp, the distance between a propeller wing tip of the port side propeller and a propeller wing tip of the starboard side propeller is equal to or more than 0 and equal to or smaller than 0.5 Dp.

    摘要翻译: 船舶的推进装置设有端口侧螺旋桨,右舷侧螺旋桨,端口侧螺旋桨轴和右舷侧螺旋桨轴。 端口侧螺旋桨轴从船体尾部向后延伸并与端口侧螺旋桨连接。 右舷侧螺旋桨轴从船体尾部向后延伸并与右舷侧螺旋桨连接。 当端口侧螺旋桨和右舷侧螺旋桨的螺旋桨直径为Dp时,端口侧螺旋桨的螺旋桨翼尖与右舷侧螺旋桨的螺旋桨翼尖之间的距离等于或大于0并且等于或等于 小于0.5 Dp。

    Analysis Apparatus and Analysis Method
    9.
    发明申请
    Analysis Apparatus and Analysis Method 有权
    分析仪器及分析方法

    公开(公告)号:US20120048734A1

    公开(公告)日:2012-03-01

    申请号:US13217790

    申请日:2011-08-25

    IPC分类号: G01N27/447 G01N27/453

    摘要: An analysis apparatus is provided with a storage tank, an injection nozzle, a syringe, a collection nozzle, a test sample tank, a microchip having two or more separation channels, detectors, a waste liquid tank, a controller, and a power supply. The collection nozzle collects a specimen which becomes a test sample from a test sample container housing the specimen, and transfers the specimen to the test sample tank. The separation channels separate characteristic components contained in the test sample. The injection nozzle is distanced from the collection nozzle and injects the test sample from the test sample tank into the separation channels. The detectors detect the separated characteristic components in the separation channels.

    摘要翻译: 分析装置设置有储罐,注射喷嘴,注射器,收集喷嘴,试样罐,具有两个或更多个分离通道的微芯片,检测器,废液罐,控制器和电源。 收集喷嘴从容纳样品的试样容器收集成为试样的样品,并将试样转移到试样罐中。 分离通道分离测试样品中包含的特征成分。 注射喷嘴与收集喷嘴间隔开,并将测试样品从测试样品槽注入分离通道。 检测器检测分离通道中分离的特征成分。