PHOTOELECTRIC CONVERSION DEVICE FABRICATION METHOD AND PHOTOELECTRIC CONVERSION DEVICE
    1.
    发明申请
    PHOTOELECTRIC CONVERSION DEVICE FABRICATION METHOD AND PHOTOELECTRIC CONVERSION DEVICE 审中-公开
    光电转换器件制造方法和光电转换器件

    公开(公告)号:US20110126895A1

    公开(公告)日:2011-06-02

    申请号:US13055297

    申请日:2009-10-02

    摘要: Provided is a method for fabricating a photoelectric conversion device in which current is prevented as much as possible from leaking via an intermediate contact layer separating groove. The method includes: a process of forming a top layer mainly containing amorphous silicon; a process of forming on the top layer an intermediate contact layer electrically and optically connected to the top layer; a process of removing the intermediate contact layer through irradiation with a pulsed laser and forming an intermediate contact layer separating groove that reaches the top layer to separate the intermediate contact layer; and a process of forming, on the intermediate contact layer and in the intermediate contact layer separating groove, a bottom layer that mainly contains microcrystalline silicon and that is electrically and optically connected to the intermediate contact layer. The intermediate contact layer separating groove is terminated in an i-layer of the top layer.

    摘要翻译: 提供了一种制造光电转换装置的方法,其中尽可能防止电流经由中间接触层分离槽泄漏。 该方法包括:形成主要包含非晶硅的顶层的工艺; 在顶层上形成电气和光学连接到顶层的中间接触层的工艺; 通过用脉冲激光照射去除中间接触层并形成到达顶层的中间接触层分离槽以分离中间接触层的过程; 以及在中间接触层和中间接触层分离槽中形成主要包含微晶硅并且电连接和光学连接到中间接触层的底层的工艺。 中间接触层分隔槽终止在顶层的i层中。

    PHOTOELECTRIC CONVERSION DEVICE FABRICATION METHOD AND PHOTOELECTRIC CONVERSION DEVICE
    2.
    发明申请
    PHOTOELECTRIC CONVERSION DEVICE FABRICATION METHOD AND PHOTOELECTRIC CONVERSION DEVICE 有权
    光电转换器件制造方法和光电转换器件

    公开(公告)号:US20110126894A1

    公开(公告)日:2011-06-02

    申请号:US13054858

    申请日:2009-10-02

    IPC分类号: H01L31/06 H01L31/18

    摘要: Provided is a photoelectric conversion device fabrication method in which current leakage from an intermediate contact layer via an intermediate-contact-layer separating groove is prevented as much as possible. Included are a step of film-forming a top layer having amorphous silicon as a main component; a step of film-forming, on the top layer, an intermediate contact layer electrically and optically connected thereto; a step of separating the intermediate contact layer by removing the intermediate contact layer by irradiating it with a pulsed laser, forming an intermediate-contact-layer separating groove that reaches the top layer; and a step of film-forming, on the intermediate contact layer and inside the intermediate-contact-layer separating groove, a bottom layer electrically and optically connected thereto and having microcrystalline silicon as a main component. A pulsed laser having a pulse width of 10 ps to 750 ps, inclusive, is used as the pulsed laser for separating the intermediate contact layer.

    摘要翻译: 提供了尽可能地防止从中间接触层经由中间接触层分离槽的电流泄漏的光电转换器件制造方法。 包括以非晶硅为主要成分的顶层成膜的步骤; 在顶层上形成与其电连接和光学连接的中间接触层的成膜步骤; 通过用脉冲激光照射中间接触层来分离中间接触层的步骤,形成到达顶层的中间接触层分隔槽; 以及在中间接触层和中间接触层分离槽内部成膜的步骤,其电层和光学连接到底层,并以微晶硅为主要成分。 使用脉冲宽度为10ps至750ps(包括端值)的脉冲激光器作为用于分离中间接触层的脉冲激光器。

    Photoelectric conversion device fabrication method and photoelectric conversion device
    3.
    发明授权
    Photoelectric conversion device fabrication method and photoelectric conversion device 有权
    光电转换装置的制造方法和光电转换装置

    公开(公告)号:US08835253B2

    公开(公告)日:2014-09-16

    申请号:US13054858

    申请日:2009-10-02

    摘要: Provided is a photoelectric conversion device fabrication method in which current leakage from an intermediate contact layer via an intermediate-contact-layer separating groove is prevented as much as possible. Included are a step of film-forming a top layer having amorphous silicon as a main component; a step of film-forming, on the top layer, an intermediate contact layer electrically and optically connected thereto; a step of separating the intermediate contact layer by removing the intermediate contact layer by irradiating it with a pulsed laser, forming an intermediate-contact-layer separating groove that reaches the top layer; and a step of film-forming, on the intermediate contact layer and inside the intermediate-contact-layer separating groove, a bottom layer electrically and optically connected thereto and having microcrystalline silicon as a main component. A pulsed laser having a pulse width of 10 ps to 750 ps, inclusive, is used as the pulsed laser for separating the intermediate contact layer.

    摘要翻译: 提供了尽可能地防止从中间接触层经由中间接触层分离槽的电流泄漏的光电转换器件制造方法。 包括以非晶硅为主要成分的顶层成膜的步骤; 在顶层上形成与其电连接和光学连接的中间接触层的成膜步骤; 通过用脉冲激光照射中间接触层来分离中间接触层的步骤,形成到达顶层的中间接触层分隔槽; 以及在中间接触层和中间接触层分离槽内部成膜的步骤,其电层和光学连接到底层,并以微晶硅为主要成分。 使用脉冲宽度为10ps至750ps(包括端值)的脉冲激光器作为用于分离中间接触层的脉冲激光器。

    IMAGE-ACQUISITION APPARATUS AND IMAGE-ACQUISITION METHOD
    6.
    发明申请
    IMAGE-ACQUISITION APPARATUS AND IMAGE-ACQUISITION METHOD 审中-公开
    图像采集设备和图像采集方法

    公开(公告)号:US20120092548A1

    公开(公告)日:2012-04-19

    申请号:US13131055

    申请日:2009-12-18

    IPC分类号: H04N5/222

    摘要: A needless irradiation region in an image-acquisition apparatus is reduced. Provided is a light-transmitting portion that radiates light and a light-receiving portion that receives reflected light, which is the light emitted from the light-transmitting portion being reflected upon reaching a target, and that converts the obtained reflected light to an image signal and outputs the image signal. The light-transmitting portion includes an irradiation scanning section that makes an irradiation region for a field of view smaller than the size of the entire field of view and that irradiates the entire field of view with light by scanning the irradiation region for the field of view.

    摘要翻译: 减少图像采集装置中不必要的照射区域。 本发明提供一种照射光的透光部和受光部,该受光部接收从透光部发射的光在到达目标时被反射,并且将获得的反射光转换为图像信号 并输出图像信号。 透光部分包括照射扫描部分,该照射扫描部分使得视场的照射区域小于整个视场的尺寸,并通过扫描用于视场的照射区域用光照射整个视场 。

    SURVEILLANCE DEVICE AND SURVEILLANCE METHOD
    7.
    发明申请
    SURVEILLANCE DEVICE AND SURVEILLANCE METHOD 有权
    监控设备和监管方法

    公开(公告)号:US20110249273A1

    公开(公告)日:2011-10-13

    申请号:US13130809

    申请日:2009-12-11

    IPC分类号: G01B11/14 G01S17/88

    CPC分类号: G01S17/88

    摘要: A desired search area is efficiently monitored. A surveillance device that is installed in a flying aircraft in the sky and that monitors the situation at the sea surface from the sky, including a light-transmitting portion that is provided with a light source and that radiates a plurality of slit-like beams from the sky toward a search area at the sea surface, a light-receiving portion that receives a plurality of reflected beams that have been reflected at an object at the sea surface, and a processor that determines whether or not the object at the sea surface that has reflected the beams is a target object from information about the reflected beams obtained by the light-receiving portion.

    摘要翻译: 有效地监视期望的搜索区域。 一种监视装置,其安装在天空中的飞行飞行器中,并监视从天空向海面的状况,包括设有光源的透光部分,并从多个狭缝状射束 天空朝向海面的搜索区域,接收已经在海面上的物体反射的多个反射光束的光接收部分,以及处理器,其确定海面上的物体是否为 已经从由光接收部分获得的反射光束的信息反射了光束是目标物体。

    Surveillance device and surveillance method
    8.
    发明授权
    Surveillance device and surveillance method 有权
    监控装置及监控方式

    公开(公告)号:US08477322B2

    公开(公告)日:2013-07-02

    申请号:US13130809

    申请日:2009-12-11

    IPC分类号: G01B11/14 G01N21/55

    CPC分类号: G01S17/88

    摘要: A desired search area is efficiently monitored. A surveillance device that is installed in a flying aircraft in the sky and that monitors the situation at the sea surface from the sky, including a light-transmitting portion that is provided with a light source and that radiates a plurality of slit-like beams from the sky toward a search area at the sea surface, a light-receiving portion that receives a plurality of reflected beams that have been reflected at an object at the sea surface, and a processor that determines whether or not the object at the sea surface that has reflected the beams is a target object from information about the reflected beams obtained by the light-receiving portion.

    摘要翻译: 有效地监视期望的搜索区域。 一种监视装置,其安装在天空中的飞行飞行器中,并监视从天空向海面的状况,包括设有光源的透光部分,并从多个狭缝状射束 天空朝向海面的搜索区域,接收已经在海面上的物体反射的多个反射光束的光接收部分,以及处理器,其确定海面上的物体是否为 已经从由光接收部分获得的反射光束的信息反射了光束是目标物体。

    THIN-FILM INSPECTION APPARATUS AND INSPECTION METHOD
    9.
    发明申请
    THIN-FILM INSPECTION APPARATUS AND INSPECTION METHOD 失效
    薄膜检查装置和检查方法

    公开(公告)号:US20110194113A1

    公开(公告)日:2011-08-11

    申请号:US13120319

    申请日:2009-07-02

    IPC分类号: G01N21/47

    摘要: An object is to reduce the effect of a film thickness variation on the substrate surface of a thin film and improve the measuring accuracy. Provided are a light source that radiates single-wavelength light to an inspection-target substrate (W), which is formed by forming a thin film on a glass substrate from the glass substrate side; a light receiving element that is disposed such that the light receiving axis intersects with the optical axis of illumination light emitted from the light source at a predetermined inclination angle and that receives diffused transmitted light that has been transmitted through the inspection-target substrate W; and a computer (7) that obtains a haze ratio of the thin film on the basis of the intensity of the light received by the light receiving element. The computer (7) has a haze ratio characteristic made by associating the haze ratio and the light intensity of the diffused transmitted light and obtains a haze ratio by using the haze ratio characteristic and the light intensity received by the light receiving element.

    摘要翻译: 目的是减少薄膜的薄膜厚度变化对薄膜的基板表面的影响,提高测量精度。 提供了通过从玻璃基板侧在玻璃基板上形成薄膜而将单波长光照射到检查对象基板(W)的光源, 光接收元件被设置为使得光接收轴线以与预定倾斜角度从光源发射的照明光的光轴相交并且接收已经透射通过检查对象基板W的扩散透射光; 以及基于由光接收元件接收的光的强度来获得薄膜的雾度比的计算机(7)。 计算机(7)具有通过使雾化率和扩散透射光的光强度相关联而获得的雾度比特性,并且通过使用由光接收元件接收的雾度比特性和光强度来获得雾度比。

    Cardiac Magnetic Field Diagnostic Apparatus and Evaluating Method of Three-Dimensional Localization of Myocardial Injury
    10.
    发明申请
    Cardiac Magnetic Field Diagnostic Apparatus and Evaluating Method of Three-Dimensional Localization of Myocardial Injury 审中-公开
    心脏磁场诊断装置及心肌损伤三维定位评估方法

    公开(公告)号:US20080033312A1

    公开(公告)日:2008-02-07

    申请号:US11628159

    申请日:2005-05-31

    IPC分类号: A61B5/05

    摘要: A cardiac magnetic field diagnostic apparatus for evaluating intracardiac three-dimensional localization of a myocardial injury by means of cardiac magnetic field measurement and a three-dimensional localization evaluating method of myocardial injury are disclosed. A magnetic field distribution measuring instrument (1) creates magnetic field distribution data by contactless magnetic field measurement on coordinates on the breast of a subject. An arithmetic operation unit (2) computers intracardiac three-dimensional current density distribution data from the magnetic field distribution data, draws a magnetic field integral cubic diagram as a cardiac contour cubic diagram according to the three-dimensional current density distribution data, creates data to draw the three-dimensional distribution of the QRS difference, the T-wave vector, or the RT dispersion of the same subject according to the three-dimensional current density distribution data, and reconstructs it on the cardiac contour. With this, evaluation of three-dimensional localization of a myocardial injury is possible.

    摘要翻译: 公开了一种用于通过心脏磁场测量和心肌损伤的三维定位评估方法来评价心肌损伤的心内三维定位的心脏磁场诊断装置。 磁场分布测量仪器(1)通过无源磁场测量产生磁场分布数据,用于对象的乳房上的坐标。 算术运算单元(2)根据磁场分布数据计算心室内三维电流密度分布数据,根据三维电流密度分布数据绘制磁场积分立方图作为心脏轮廓立方图,创建数据 根据三维电流密度分布数据绘制QRS差,T波矢量或同一受试者的RT色散的三维分布,并在心脏轮廓上重建。 由此,对心肌损伤的三维定位的评价是可能的。