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    • 92. 发明授权
    • Semiconductor memory device and semiconductor device
    • 半导体存储器件和半导体器件
    • US08134862B1
    • 2012-03-13
    • US11958744
    • 2007-12-18
    • Takayuki IkedaYoshiyuki Kurokawa
    • Takayuki IkedaYoshiyuki Kurokawa
    • G11C11/34
    • H01L27/1266G11C11/412G11C11/413H01L27/1108H01L27/1214H01L27/1218H01L27/13
    • An object is to provide a semiconductor memory device which holds data of an SRAM or a flip-flop circuit and holds data in the SRAM while electric power is not supplied from a reader or electric power is not enough, without changing a battery for driving a power supply corresponding to deterioration of the battery with time, and a semiconductor device provided with the semiconductor memory device. An SRAM cell, a decoder connected to the SRAM cell through a word line, a read/write circuit connected to the SRAM cell through the data line, and a power storage unit connected to the SRAM cell are provided. The power storage unit is charged when data is written to or read from the SRAM cell through the data line.
    • 本发明的目的是提供一种半导体存储器件,其保存SRAM或触发器电路的数据,并且在读取器未提供电力的情况下保持SRAM中的数据,或者电力不足,而不改变用于驱动的​​电池 对应于电池劣化的电源随时间变化,以及设置有半导体存储器件的半导体器件。 提供了通过字线连接到SRAM单元的SRAM单元,通过数据线连接到SRAM单元的读/写电路以及连接到SRAM单元的电力存储单元的解码器。 当通过数据线将数据写入SRAM单元或从SRAM单元读取数据时,对蓄电单元进行充电。
    • 93. 发明授权
    • Clock generation circuit and semiconductor device including the same
    • 时钟生成电路和包括其的半导体器件
    • US08103897B2
    • 2012-01-24
    • US11845391
    • 2007-08-27
    • Masami EndoTakayuki IkedaDaisuke KawaeYoshiyuki Kurokawa
    • Masami EndoTakayuki IkedaDaisuke KawaeYoshiyuki Kurokawa
    • G06F1/04
    • H04L7/0331H03L7/00
    • Objects of the invention are to provide a clock generation circuit, in which, even when different clock signals are used among a plurality of circuits such as a transmitting circuit and a receiving circuit, stabilized communication is possible; and to provide a semiconductor device including the clock generation circuit. The clock generation circuit includes an edge detection circuit, a reference clock generation circuit, a reference clock counter circuit, and a frequency-divider circuit. The reference clock counter circuit is a circuit which outputs a counter value, which is obtained by counting the number of waves of a reference clock signal outputted from the reference clock generation circuit, in a period of time from when the edge detection circuit detects an edge of a signal which is externally inputted to the edge detection circuit to when the edge detection circuit detects the next edge, to the frequency-divider circuit. The frequency-divider circuit is a circuit which frequency-divides the reference clock signal based on the counter value.
    • 本发明的目的是提供一种时钟发生电路,其中即使在诸如发送电路和接收电路的多个电路中使用不同的时钟信号,也可以进行稳定的通信; 并提供包括时钟发生电路的半导体器件。 时钟产生电路包括边缘检测电路,参考时钟产生电路,参考时钟计数器电路和分频器电路。 参考时钟计数器电路是在从边缘检测电路检测到边缘的时间段内输出计数值的电路,该计数值是从基准时钟产生电路输出的基准时钟信号的波数来计算的 将外部输入到边缘检测电路的信号当边缘检测电路检测到下一个边沿时,分配给分频器电路。 分频器电路是基于计数器值对参考时钟信号进行分频的电路。
    • 95. 发明授权
    • Display device and display system using the same
    • 显示设备和显示系统使用相同
    • US07602385B2
    • 2009-10-13
    • US10295848
    • 2002-11-18
    • Yoshiyuki KurokawaTakayuki Ikeda
    • Yoshiyuki KurokawaTakayuki Ikeda
    • G09G5/00
    • G06F1/32
    • A display device enables a reduction in the amount of operation processing of a GPU and power consumption at the time of image refresh, and a display system uses the display device. The display device is constituted by pixels each including storage circuits, an operation processing circuit, and a display processing circuit and circuits each having a function of storing image data in arbitrary storage circuits. The display system is constituted by the display device and an image processing device including the GPU. Image data is formed for each structural component through operation processing in the GPU in the display system. The formed image data is stored in the corresponding storage circuit pixel. The stored image data is subjected to composition processing by the operation processing circuit for each pixel. Then, the image data is converted into an image signal in the display processing circuit
    • 显示装置能够减少图像刷新时的GPU的运算处理量和功耗,显示系统使用显示装置。 显示装置由各自包括存储电路,操作处理电路和显示处理电路的像素构成,并且每个具有将图像数据存储在任意存储电路中的功能的电路构成。 显示系统由显示装置和包括GPU的图像处理装置构成。 通过GPU在显示系统中的操作处理,为每个结构部件形成图像数据。 形成的图像数据被存储在相应的存储电路像素中。 存储的图像数据通过操作处理电路对每个像素进行合成处理。 然后,在显示处理电路中将图像数据转换为图像信号
    • 97. 发明授权
    • Display device and display system using the same
    • 显示设备和显示系统使用相同
    • US07196709B2
    • 2007-03-27
    • US10299796
    • 2002-11-20
    • Yoshiyuki KurokawaTakayuki Ikeda
    • Yoshiyuki KurokawaTakayuki Ikeda
    • G06F13/00
    • G09G3/3648G09G3/3659G09G2300/0809G09G2300/0828G09G2300/0842G09G2300/0857G09G2330/021
    • Provided are a display device with low power consumption which enables reduction of an operation processing amount of a GPU and which does not require a storage device for storing image data corresponding to one screen, and a display system using the display device. The display device is constituted by pixels each including storage circuits, an operation processing circuit, and a display processing circuit and circuits each having a function of storing image data in arbitrary storage circuits. The display system is constituted by the display device and an image processing device including the GPU. Image data is formed for each structural component through operation processing in the GPU in the display system. The formed image data is stored in the corresponding storage circuit for each pixel. The stored image data is subjected to composition processing by the operation processing circuit for each pixel. Then, the image data is converted into an image signal in the display processing circuit.
    • 提供了一种低功耗的显示装置,其能够降低GPU的操作处理量,并且不需要用于存储与一个屏幕相对应的图像数据的存储装置,以及使用该显示装置的显示系统。 显示装置由各自包括存储电路,运算处理电路和显示处理电路的像素构成,各电路具有将图像数据存储在任意存储电路中的功能。 显示系统由显示装置和包括GPU的图像处理装置构成。 通过GPU在显示系统中的操作处理,为每个结构部件形成图像数据。 形成的图像数据被存储在每个像素的对应的存储电路中。 存储的图像数据通过操作处理电路对每个像素进行合成处理。 然后,在显示处理电路中将图像数据转换为图像信号。
    • 100. 发明授权
    • Radial piston pump for low-viscosity fuel
    • 用于低粘度燃料的径向活塞泵
    • US5630708A
    • 1997-05-20
    • US364857
    • 1994-12-27
    • Takeo KushidaFujio AokiTakayuki IkedaKoichiro FutamaseTomoharu SatoHideya KikuchiKen SatoNobuo AokiKatsuhiko Tsukazaki
    • Takeo KushidaFujio AokiTakayuki IkedaKoichiro FutamaseTomoharu SatoHideya KikuchiKen SatoNobuo AokiKatsuhiko Tsukazaki
    • F04B1/053F04B53/10F04B53/22
    • F04B53/1047F04B1/053F04B53/109F04B53/22
    • A radial piston pump for low-viscosity fuel according to a first aspect of the invention comprises a pump housing, which is constituted of as few as two structural bodies (from among a drive-side housing member 2A, a fixed cylinder 81 and a cover 4), and a leaf valve member 82 which is formed with intake valves 87 for opening and closing intake side passages 27 and discharge valves 88 for opening and closing discharge side passages 28 and is sandwiched between two structural bodies (fixed cylinder 81 and cover 4). The first aspect of the invention reduces the number of components constituting the pump housing, enables highly precise overall axial alignment, prevents wobbling of a pump shaft 9 of the pump, increases performance and reliability and reduces cost. A radial piston pump for low-viscosity fuel according to a second aspect of the invention comprises a leaf valve member 205 formed in one and the same plane thereof with overflow ports communicating with an overflow passage 59 in the pump housing, intake valves 87 communicating with intake side passages 27 and discharge valves 88 communicating with discharge side passages 28. The third aspect of the invention provides a method for assembling the radial piston pump for low-viscosity fuel according to the second aspect of the invention.
    • 根据本发明的第一方面的用于低粘度燃料的径向柱塞泵包括泵壳体,其由少至两个结构体(从驱动侧壳体构件2A,固定气缸81和盖子 形成有用于打开和关闭进气侧通道27的进气门87和用于打开和关闭排出侧通道28的排出阀88并且被夹在两个结构体(固定缸81和盖4)之间的叶片阀构件82 )。 本发明的第一方面减少了构成泵壳体的部件的数量,使得能够进行高精度的总体轴向对准,防止泵的泵轴9摆动,提高了性能和可靠性并降低了成本。 根据本发明第二方面的用于低粘度燃料的径向柱塞泵包括在其一个同一平面中形成有与泵壳体中的溢流通道59连通的溢流口的叶片阀件205,进气门87与 进气侧通道27和与排出侧通道28连通的排出阀88.本发明的第三方面提供一种组装根据本发明第二方面的用于低粘度燃料的径向活塞泵的方法。