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    • 1. 发明授权
    • Illumination device and liquid crystal display apparatus
    • 照明装置和液晶显示装置
    • US07973877B2
    • 2011-07-05
    • US12087766
    • 2007-01-12
    • Daisuke TakedaTomotoshi SatoAkira Ohnishi
    • Daisuke TakedaTomotoshi SatoAkira Ohnishi
    • G02F1/1335H05B37/00F21V7/04F21V11/00B64F13/18
    • H05B33/0821G02F1/133603G02F2001/133612H01L23/62H01L2924/0002H05B33/0818H01L2924/00
    • An object of the invention is to provide an illumination device that can make it easy to detect a disorder of a light emitting element, and a liquid crystal display apparatus including the illumination device. Each light emitting element array (S) is constituted by light emitting elements (T) which are connected in series. To the light emitting elements (T) are individually connected in parallel current bypass elements (U) that are changed from a disconnected state where no current flows to a connected state where current flows when a predetermined voltage higher than that applied to the light emitting elements in an lighting state is applied thereto. Each power source unit (P) is connected to each light emitting element array (S) in series, and supplies constant current to each light emitting element (T). Terminal units for voltage detection (11) are connected to an anode (A) of each light emitting element (T).
    • 本发明的目的是提供一种能够容易地检测发光元件的障碍的照明装置,以及包括该照明装置的液晶显示装置。 每个发光元件阵列(S)由串联连接的发光元件(T)构成。 发光元件(T)分别连接在并联电流旁路元件(U)中,该电流旁路元件(U)从没有电流流过的断开状态改变为当电流比施加到发光元件的电压高的电流时电流流动的连接状态 处于照明状态。 每个电源单元(P)串联连接到每个发光元件阵列(S),并且向每个发光元件(T)提供恒定电流。 用于电压检测的端子单元(11)连接到每个发光元件(T)的阳极(A)。
    • 2. 发明申请
    • Illumination Device and Liquid Crystal Display Apparatus
    • 照明装置和液晶显示装置
    • US20090219460A1
    • 2009-09-03
    • US12087766
    • 2007-01-12
    • Daisuke TakedaTomotoshi SatoAkira Ohnishi
    • Daisuke TakedaTomotoshi SatoAkira Ohnishi
    • H05B37/02G02F1/133
    • H05B33/0821G02F1/133603G02F2001/133612H01L23/62H01L2924/0002H05B33/0818H01L2924/00
    • An object of the invention is to provide an illumination device that can make it easy to detect a disorder of a light emitting element, and a liquid crystal display apparatus including the illumination device. Each light emitting element array (S) is constituted by light emitting elements (T) which are connected in series. To the light emitting elements (T) are individually connected in parallel current bypass elements (U) that are changed from a disconnected state where no current flows to a connected state where current flows when a predetermined voltage higher than that applied to the light emitting elements in an lighting state is applied thereto. Each power source unit (P) is connected to each light emitting element array (S) in series, and supplies constant current to each light emitting element (T). Terminal units for voltage detection (11) are connected to an anode (A) of each light emitting element (T).
    • 本发明的目的是提供一种能够容易地检测发光元件的障碍的照明装置,以及包括该照明装置的液晶显示装置。 每个发光元件阵列(S)由串联连接的发光元件(T)构成。 发光元件(T)分别连接在并联电流旁路元件(U)中,该电流旁路元件(U)从没有电流流过的断开状态改变为当电流比施加到发光元件的电压高的电流时电流流动的连接状态 处于照明状态。 每个电源单元(P)串联连接到每个发光元件阵列(S),并且向每个发光元件(T)提供恒定电流。 用于电压检测的端子单元(11)连接到每个发光元件(T)的阳极(A)。
    • 3. 发明申请
    • Semiconductor module and method for mounting the same
    • 半导体模块及其安装方法
    • US20050116330A1
    • 2005-06-02
    • US10985848
    • 2004-11-10
    • Rina MurayamaTomotoshi Sato
    • Rina MurayamaTomotoshi Sato
    • H01L25/18H01L23/538H01L25/065H01L25/07H05K1/18H01L23/02H01L21/48
    • H01L23/5385H01L2224/16225H01L2924/3011H05K1/189
    • A semiconductor module that can realize a substantially fixed transmission time of signals transmitted through electric wirings disposed on a board via each semiconductor device mounted on a board and can reduce reflection of high-frequency signals and a method for mounting the same is provided. A plurality of semiconductor devices are mounted on a flexible board, and a semiconductor module is formed by folding the board so that the plurality of semiconductor devices are stacked. In an input signal line electrically and mechanically connected to each of the semiconductor devices and an output signal line electrically and mechanically connected to each of the semiconductor devices which signal lines are formed on the board, the sum of a first line length of the input signal line and a second line length of the output signal line for each of the semiconductor devices is set to a substantially fixed length.
    • 提供一种半导体模块,其可以实现通过安装在板上的每个半导体器件布置在电路板上的电气布线传输的信号的基本上固定的传输时间,并且可以减少高频信号的反射及其安装方法。 多个半导体器件安装在柔性板上,并且通过折叠板来形成半导体模块,使得多个半导体器件堆叠。 在电气和机械连接到每个半导体器件的输入信号线中,以及电和机械地连接到在板上形成信号线的每个半导体器件的输出信号线,输入信号的第一线路长度之和 并且每个半导体器件的输出信号线的第二线长度被设定为基本上固定的长度。
    • 7. 发明申请
    • Boundary scan controller, semiconductor device, method for identifying semiconductor circuit chip of semiconductor device, and method for controlling semiconductor circuit chip of semiconductor device
    • 边界扫描控制器,半导体器件,用于识别半导体器件的半导体电路芯片的方法以及半导体器件的半导体电路芯片的控制方法
    • US20060220672A1
    • 2006-10-05
    • US10545511
    • 2004-02-10
    • Tomotoshi Sato
    • Tomotoshi Sato
    • H03K19/00
    • G01R31/318555H01L24/01H01L2924/14H01L2924/00
    • An object of the invention is to provide a boundary scan controller that allows a boundary scan to be executed and also allows a semiconductor apparatus to be manufactured in such a manner that the same type of semiconductor circuit chips are stacked. When identification data stored in memory means (85) is compared with fixed data held in fixed-data holding means (87) by comparison means (88) and the identification data is coincident with the fixed data, a data derivation section (89) outputs the same data as data which is outputted from an output section (86). In a boundary scan test, a data derivation section (89) of a boundary controller (80) provided for each semiconductor circuit chip is connected to the same bus line. When the identification data is not coincident with the fixed data, the data derivation section (89) can be substantially disconnected from the bus line. In this way, the same type of semiconductor circuit chips for which the boundary controller (80) is provided can be stacked, thereby manufacturing the semiconductor apparatus.
    • 本发明的目的是提供一种边界扫描控制器,其允许执行边界扫描,并且还允许半导体装置以相同类型的半导体电路芯片堆叠的方式制造。 当存储在存储装置(85)中的识别数据与通过比较装置(88)保存在固定数据保持装置(87)中的固定数据进行比较,并且识别数据与固定数据一致时,数据导出部分(89)输出 与从输出部(86)输出的数据相同的数据。 在边界扫描测试中,为每个半导体电路芯片提供的边界控制器(80)的数据推导部分(89)连接到相同的总线。 当识别数据与固定数据不一致时,数据导出部分(89)可以基本上与总线断开连接。 以这种方式,可以堆叠设置边界控制器(80)的相同类型的半导体电路芯片,从而制造半导体装置。
    • 8. 发明申请
    • Opto-electronic integrated circuit device, opto-electronic integrated circuit system and transmission method
    • 光电集成电路器件,光电集成电路系统及传输方式
    • US20050191004A1
    • 2005-09-01
    • US11062663
    • 2005-02-23
    • Masataka HosinoTomotoshi Sato
    • Masataka HosinoTomotoshi Sato
    • G02B6/42G02B6/122H01L31/12H04B10/27H04B10/29H04B10/80H04J14/02H04Q11/00G02B6/12
    • H04Q11/0005H01L2224/16225H04Q2011/0058
    • The opto-electronic integrated circuit device comprises an optical switch 18 provided in an input port 12a of a first input/output port 36a over a substrate 10 and changing over an optical path of an optical signal inputted from the input port 12a and outputting the optical signal through one of a plurality of output terminals 24a-24d; an opto-electric conversion element 26a optically connected to one of the plural output terminals of the optical switch 18, and converting the optical signal outputted from one of the output terminals 24a-24d of the optical switch 18 to an electric signal and inputting the converted electric signal in a semiconductor element 30 mounted over the substrate 10; and an optical waveguide 50 optically connected to another of the plural output terminal 24d of the optical switch 18 and outputting the optical signal outputted from said another output terminal 24d of the optical switch 18 through an output port 32b of a second input/output port 36b over the substrate 10.
    • 光电集成电路装置包括设置在基板10上的第一输入/输出端口36a的输入端口12a中的光开关18,并且改变从输入端口12a输入的光信号的光路, 通过多个输出端子24a--24d中的一个输出光信号; 光电转换元件26,光学连接到光开关18的多个输出端之一,并将从光开关18的输出端子24a至24d之一输出的光信号转换为电信号, 在安装在基板10上的半导体元件30中输入转换后的电信号; 以及与光开关18的多个输出端子24d的另一个光学连接的光波导路50,并通过第二输入/输出端口的输出端口32b输出从光开关18的另一输出端子24d输出的光信号, 输出端口36b。