WAVEFORM ANALYZER
    41.
    发明专利

    公开(公告)号:JPH06265590A

    公开(公告)日:1994-09-22

    申请号:JP8014993

    申请日:1993-03-15

    Applicant: SONY CORP

    Inventor: FUJII MASARU

    Abstract: PURPOSE:To provide a high speed, wide band waveform analyzer comprising a peak detecting circuit having high response from low frequency to high frequency. CONSTITUTION:The waveform analyzer comprises a pinboard 12 coming into contact with an object 11 and picking up signals therefrom, a peak detecting circuit 13 for subjecting the signals thus picked up to high speed, wide band shaping, an A/D converter 14 for subjecting the output from the circuit 13 to A/D conversion, and a microcomputor 15 for taking in digital output from the A/D converter 14 and executing a waveform analysis program.

    DISPLAY MACHINE
    42.
    发明专利

    公开(公告)号:JPH05323884A

    公开(公告)日:1993-12-07

    申请号:JP15599892

    申请日:1992-05-22

    Applicant: SONY CORP

    Abstract: PURPOSE:To obtain an easily visible signal lamp and to enable the simultaneous display of a working state and detail information at one point by forming the display machine as an integral type of the signal lamp and a display and forming the case covering the color lamp emitting element of the signal lamp as opaque case. CONSTITUTION:This display machine 1 has the integrated signal lamp 2 and display 10. The signal lamp 2 has the opaque case and contains the plural LEDs therein. The display 10 is constituted of, for example, a liquid crystal display, etc., and is mounted with the signal lamp 2 at the peak part thereof. The display 10 is supported by a pole 30. Then, the mounting of the signal lamp 2and the display 10, i.e., the display machine 1 is require at one point only and the formation of the display machine to a slim and compact construction is possible. As a result, the signal lamp 2 and the display 10 are visible at one time and the information is obtainable simultaneously from the signal lamp 2 and the display 10. Namely, the working state is known from the signal lamp 2 and the detail content from the display 10.

    REPRODUCING DEVICE
    43.
    发明专利

    公开(公告)号:JPS63273267A

    公开(公告)日:1988-11-10

    申请号:JP10734987

    申请日:1987-04-30

    Applicant: SONY CORP

    Inventor: FUJII MASARU

    Abstract: PURPOSE:To realize the synchronous reproduction of two reproduction means, by setting the waiting state of the reproduction means whose leading time is short out of two incorporated reproduction means after leading and releasing the waiting state according to the leading of the reproduction means whose leading time is long. CONSTITUTION:When a compact disk (CD) player 1 and a video disk (VD) player 2 are driven simultaneously, the driving of the players 1 and 2 are started by operating a synchronizing switch 3, and when the player 1 whose leading time is short is led, it is set at the waiting state by the control of a control circuit 4. Next, when the player 2 is led, the waiting sate of the player 1 is released, and a mode is shifted to a reproduction mode. Therefore, both the players 1 and 2 are set at reproduction states by the completion of the rise of the player 2, then, the synchronous reproduction is started.

    Light-emitting diode package, backlight device, and image display device
    44.
    发明专利
    Light-emitting diode package, backlight device, and image display device 审中-公开
    发光二极管封装,背光装置和图像显示装置

    公开(公告)号:JP2010103265A

    公开(公告)日:2010-05-06

    申请号:JP2008272530

    申请日:2008-10-22

    Abstract: PROBLEM TO BE SOLVED: To provide a light-emitting diode package that has excellent extraction efficiency of light. SOLUTION: The light-emitting diode package 10 comprises a base material 1, a light-emitting diode chip 2 provided on the base material 1, a base part 4 covering the base material 1 and light-emitting diode chip 2, a lens 5 formed on the base part 4 above the light-emitting diode chip 2, and a groove 6 formed in the base part 4 at a periphery of the lens 5. COPYRIGHT: (C)2010,JPO&INPIT

    Abstract translation: 要解决的问题:提供具有优异的光提取效率的发光二极管封装。 解决方案:发光二极管封装10包括基材1,设置在基材1上的发光二极管芯片2,覆盖基材1和发光二极管芯片2的基底部分4, 形成在发光二极管芯片2上方的基座部分4上的透镜5,以及形成在透镜5周边的基部4中的凹槽6.版权所有(C)2010,JPO&INPIT

    Light source module, backlight device, and liquid crystal display
    45.
    发明专利
    Light source module, backlight device, and liquid crystal display 审中-公开
    光源模块,背光装置和液晶显示器

    公开(公告)号:JP2007266590A

    公开(公告)日:2007-10-11

    申请号:JP2007045524

    申请日:2007-02-26

    Abstract: PROBLEM TO BE SOLVED: To provide a light source module, a backlight device, and a liquid crystal display which can equalize the luminance of white light and improve thermal dissipation and so on.
    SOLUTION: The light source module includes LED chips 12R, 12G and 12B of blue, green and red and a wiring board 13 having the LED chips mounted thereon. The LED chips of the respective colors are disposed on the wiring board 13 to be placed on the apexes of a triangle. It is thus possible to reduce the spacing of the LED chips of the respective colors, improve color mixture, and equalize the luminance. Further, by separately providing wiring patterns 14 for the respective colors of the LED chips, the thermal dissipation and withstand voltage characteristics can be improved.
    COPYRIGHT: (C)2008,JPO&INPIT

    Abstract translation: 解决的问题:提供可以使白光的亮度均匀化并且改善散热等的光源模块,背光装置和液晶显示器。 解决方案:光源模块包括蓝色,绿色和红色的LED芯片12R,12G和12B以及其上安装有LED芯片的布线板13。 各种颜色的LED芯片设置在布线板13上以放置在三角形的顶点上。 因此,可以减少各种颜色的LED芯片的间隔,改善混色,并使亮度均匀化。 此外,通过分别提供LED芯片的各种颜色的布线图案14,可以提高散热和耐电压特性。 版权所有(C)2008,JPO&INPIT

    Light source apparatus and display apparatus
    46.
    发明专利
    Light source apparatus and display apparatus 有权
    光源装置和显示装置

    公开(公告)号:JP2007243226A

    公开(公告)日:2007-09-20

    申请号:JP2007162811

    申请日:2007-06-20

    CPC classification number: H01L2224/48091 H01L2924/00014

    Abstract: PROBLEM TO BE SOLVED: To provide a light source apparatus capable of improving light extracting efficiency from a light-emitting device.
    SOLUTION: The light source apparatus 29 consists of a substrate 1 having a pair of electrodes 2, 3, the light-emitting device 4, and a transparent resin 7 for sealing the light-emitting device 4. A white resist layer 6 is formed on the substrate 1 so as to cover one part of the electrodes 2, 3, an opening 6A is provided on the white resist layer 6 on at least the light-emitting device 4 and its vicinity and on terminals of the electrodes 2, 3, and a white member 8 is formed on the white resist layer 6. In this light source apparatus 29, the height of the upper surface of the white resist layer 6 is made to be lower than the light-emitting surface of the light-emitting device 4.
    COPYRIGHT: (C)2007,JPO&INPIT

    Abstract translation: 解决的问题:提供能够提高发光装置的光提取效率的光源装置。 解决方案:光源装置29由具有一对电极2,3的基板1,发光装置4和用于密封发光装置4的透明树脂7组成。白色抗蚀剂层6 形成在基板1上以覆盖电极2,3的一部分,至少在发光器件4及其附近的电极2和端子上的白色抗蚀剂层6上设置有开口6A, 如图3所示,白色抗蚀剂层6上形成白色部件8.在该光源装置29中,使白色抗蚀剂层6的上表面的高度比发光面的发光面低。 发行装置4.版权所有(C)2007,JPO&INPIT

    X-ray tomographic imaging apparatus and x-ray tomographic imaging method
    47.
    发明专利
    X-ray tomographic imaging apparatus and x-ray tomographic imaging method 有权
    X射线图像成像装置和X射线成像方法

    公开(公告)号:JP2007101247A

    公开(公告)日:2007-04-19

    申请号:JP2005288555

    申请日:2005-09-30

    Abstract: PROBLEM TO BE SOLVED: To enhance the magnification ratio of a projection image while suppressing the attenuation of the brightness of the projection image using a two-dimensional detector placed in an apparatus having a limited space. SOLUTION: In a method for reconstituting internal structure data of an inspection target 7 from a projection image imaged at every angle phase using an X-ray source 1, a two-dimensional detection means 2 and a rotary means arranged between the X-ray focus of the X-ray source 1 and the two-dimensional detection means 2 and rotated in the angular displacement set centering around the rotation axis crossing the perpendicular line, which falls to the initial position detection surface of a two-dimensional detection means 7 from the X-ray focus by placing the inspection target 7, at a right angle, the two-dimensional detection means 2 is revolved around the rotation axis parallel to the rotary axis of the inspection target 7 and passing the X-ray focus so that the length of the perpendicular line falling to the detection surface of the two-dimensional detection means 2 from the X-ray focus is made constant and the side end parts of the detection surface are partially overlapped at respective positions. Projection images at respective angle phases are captured at respective imaging positions and re-constitution calculation is performed from the photographed projection images to reconstitute the internal structure data of the inspection target. COPYRIGHT: (C)2007,JPO&INPIT

    Abstract translation: 要解决的问题:使用放置在具有有限空间的装置中的二维检测器来抑制投影图像的亮度的衰减,来提高投影图像的放大率。 解决方案:在使用X射线源1从每个角度相位成像的投影图像重建检查对象7的内部结构数据的方法中,二维检测装置2和布置在X X射线源1和二维检测装置2的射线焦点,并以围绕与垂直线相交的旋转轴线的角位移设置旋转,该垂直线落到二维检测装置的初始位置检测表面 如图7所示,通过放置检查对象7,直角地将二维检测单元2围绕与检查对象7的旋转轴平行的旋转轴旋转,并使X射线聚焦为 使得从X射线焦点落到二维检测装置2的检测表面的垂直线的长度保持恒定,并且检测表面的侧端部分在respec处部分重叠 优先位置 在相应的成像位置拍摄各个角度相位的投影图像,并从拍摄的投影图像中进行重新构造计算,以重构检查对象的内部结构数据。 版权所有(C)2007,JPO&INPIT

    Terminal information setting system, terminal information setting method, and terminal information setting program
    48.
    发明专利
    Terminal information setting system, terminal information setting method, and terminal information setting program 审中-公开
    终端信息设置系统,终端信息设置方法和终端信息设置程序

    公开(公告)号:JP2006285625A

    公开(公告)日:2006-10-19

    申请号:JP2005104490

    申请日:2005-03-31

    CPC classification number: Y02P90/18

    Abstract: PROBLEM TO BE SOLVED: To identify a terminal worker and corresponding to this, to automatically change a terminal program into an optimum setting state in real time for all of a plurality of terminals through a network.
    SOLUTION: When an own worker identification code 11 is inputted by a terminal worker to any one of a plurality of terminals 21 for workers and the worker identification code 11 is transmitted together with the work identification code of a work which is being taken charge by the terminal 21 to an information management computer 2 via a network 1 from the terminal 21 for worker, the information management computer 2 acquires inherent information concerning the terminal worker corresponding to the worker identification code 11 from internal databases 3, 4 and 5 held beforehand, the information about production and the information about quality corresponding to the work identification code 11; decides program setting in the optimum worker terminal 21 based on each piece of acquired information, and transmits setting information 12 to the program of the terminal 21 for worker and indicates program setting.
    COPYRIGHT: (C)2007,JPO&INPIT

    Abstract translation: 要解决的问题:为了识别终端工作人员并且相应于此,通过网络将终端程序自动地对所有多个终端实时地改变为最佳设置状态。

    解决方案:当终端工作人员将自己的工人识别码11输入到工作人员的多个终端21中的任何一个上时,工人识别码11与被采取的工作的工作识别码一起发送 信息管理计算机2通过网络1经由网络1从终端21向终端21充电,信息管理计算机2从保存的内部数据库3,4和5获取与工人识别码11对应的终端工作人员的固有信息 预先提供关于生产的信息和与工作识别码11相对应的质量信息; 基于每条获取的信息,在最佳工作终端21中决定程序设置,并将设置信息12发送给工作人员的终端21的程序,并指示程序设置。 版权所有(C)2007,JPO&INPIT

    Image inputting device
    49.
    发明专利
    Image inputting device 有权
    图像输入设备

    公开(公告)号:JP2006031552A

    公开(公告)日:2006-02-02

    申请号:JP2004212042

    申请日:2004-07-20

    Inventor: FUJII MASARU

    Abstract: PROBLEM TO BE SOLVED: To attain highly precise failure test without increasing the size of a device for an object to be tested.
    SOLUTION: This image inputting device is provided with an image pickup optical system 2 for capturing the two-dimensional image of an object to be tested, an image pickup element 5 having an image pickup face whose area is smaller than an image formation face 9 of the image of an object to be tested formed by the image pickup optical system 2, an image pickup element 5 for converting the image of the object to be tested into an electric signal, moving means 7 and 8 for moving the image pickup face of the image pickup element 5 to horizontal, vertical and rotary directions in the image formation face 9, and for moving it to the whole image of the object to be tested, an image signal processing means for generating image data from the electric signal of the image of the object to be tested converted by the image pickup element 5 according to the stop of the moving means 7 and 8, and an image synthesis means for synthesizing the whole or one part of the image of the object to be tested from the image data at each position generated by the image signal processing means.
    COPYRIGHT: (C)2006,JPO&NCIPI

    Abstract translation: 要解决的问题:为了获得高精度的故障测试而不增加被测物体的尺寸。 解决方案:该图像输入装置设置有用于捕获要测试对象的二维图像的图像拾取光学系统2,具有面积小于图像形成的图像拾取面的图像拾取元件5 由摄像光学系统2形成的要测试对象的图像的面9;用于将待测对象的图像转换为电信号的图像拾取元件5;用于移动图像拾取器的移动装置7和8 图像拾取元件5的图像形成面9中的水平,垂直和旋转方向的面,并将其移动到待测试对象的整个图像;图像信号处理装置,用于从图像拾取元件5的电信号 根据移动装置7和8的停止,由图像拾取元件5转换的待测对象的图像,以及用于合成要被测试对象的图像的整体或一部分的图像合成装置 根据由图像信号处理装置生成的每个位置处的图像数据。 版权所有(C)2006,JPO&NCIPI

    WAVE-FORM JUDGING DEVICE
    50.
    发明专利

    公开(公告)号:JPH0798333A

    公开(公告)日:1995-04-11

    申请号:JP24334293

    申请日:1993-09-29

    Applicant: SONY CORP

    Abstract: PURPOSE:To correctly judge the measured wave-form having a steep change with a small memory capacity by setting standard ranges in the voltage axis direction and the time axis direction for the reference wave-form, and setting the allowable range from the maximum value of the upper limit data and the minimum value of the lower limit data of them. CONSTITUTION:The standard range in the voltage axis direction is set for the reference wave-form (ideal resin injection pressure wave-form), and the upper limit data (b) and the lower limit data (c) at that time are obtained. The standard range in the time axis direction is set for the reference wave-form, and the upper limit data (d) and the lower limit data (e) at that time are obtained. When the relationship between the ideal injection timing and the injection pressure is indicated by a curve La, the reference data at the timing B are stored in a memory. The maximum value within the upper limit values (a), (d) in the voltage axis direction and the time axis direction is obtained as the upper limit allowable value (f) at that timing, and likewise the minimum value within the lower limit values (e), (e) is obtained as the lower limit allowable value (g). When the measured wave-form lies within graphs Lf, Lg of them, it is judged as a satisfactory wave-form.

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