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    • 73. 发明授权
    • Power-on reset circuit
    • 上电复位电路
    • US08519755B2
    • 2013-08-27
    • US13255704
    • 2010-02-25
    • Hajime SuzukiSatoshi Miura
    • Hajime SuzukiSatoshi Miura
    • H03K7/00
    • G06F1/24H03K17/223
    • When the value of a power supply voltage (VDD) becomes a first threshold value or higher, a first start-up circuit (20) causes a band gap reference circuit (10) to start a stable operation and a first voltage value (VA) is output from the band gap reference circuit (10). When the value of the power supply voltage becomes a second threshold value or higher which is greater than the first threshold, a second start-up circuit (40) turns on a PMOS transistor (MP3) of a voltage dividing circuit (30), and a second voltage value (VB) output from the voltage dividing circuit (30) becomes a value, which is derived by dividing the value of the power supply voltage according to the resistance ratio of resistors (R31, R32). From a voltage comparison circuit (50), a reset level voltage value is output when the second voltage value (VB) is smaller than the first voltage value (VA), and a power-supply voltage level voltage value is output if the second voltage value (VB) becomes the first voltage value (VA) or higher.
    • 当电源电压(VDD)的值成为第一阈值以上时,第一启动电路(20)使带隙基准电路(10)开始稳定动作,第一电压值(VA) 从带隙参考电路(10)输出。 当电源电压值变得大于第一阈值的第二阈值以上时,第二启动电路(40)导通分压电路(30)的PMOS晶体管(MP3),并且 从分压电路(30)输出的第二电压值(VB)成为通过根据电阻器(R31,R32)的电阻比除以电源电压值而导出的值。 从电压比较电路(50),当第二电压值(VB)小于第一电压值(VA)时,输出复位电平电压值,如果第二电压值 值(VB)成为第一电压值(VA)以上。
    • 74. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20130093806A1
    • 2013-04-18
    • US13807753
    • 2011-07-01
    • Satoshi MiuraYukihide Kohtoku
    • Satoshi MiuraYukihide Kohtoku
    • G09G3/36
    • G09G3/3611G02B6/0028G02B6/0038G02F1/13318G02F1/133615G02F2001/133618G02F2001/133626G09G3/3406G09G2320/0626G09G2360/144
    • A light-collecting type liquid crystal display device capable of displaying an image properly is provided. The liquid crystal display device 100 includes a liquid crystal panel 10; an irradiation section 31, a control device 61, and a plate-like member 20 attached to a part (10a) of the liquid crystal panel 10. A light guiding section 40 for collecting natural light 51 and propagating the light is located on a first surface 21 of the plate-like member 20; and the light guiding section 40 is connected to the irradiation section 31. A plurality of optical sensors 46 are provided on the first surface 21 of the plate-like member 20. The irradiation section 31 includes a plurality of LED elements 30. The control device 61 is connected to an LED driving section 63. The control device 61 is connected to the optical sensors 46. The control device 61 is structured to control an amount of light to be emitted from each of the plurality of LED elements 30 by use of the LED driving section 63 based on the amounts of light detected by the optical sensors 46.
    • 提供能够适当地显示图像的集光型液晶显示装置。 液晶显示装置100包括液晶面板10; 照射部31,控制装置61和安装在液晶面板10的一部分(10a)上的板状构件20.用于收集自然光51并传播光的导光部40位于第一 板状构件20的表面21; 导光部40与照射部31连接。多个光传感器46设置在板状部件20的第一面21上。照射部31包括多个LED元件30.控制装置 61连接到LED驱动部分63.控制装置61连接到光学传感器46.控制装置61被构造成通过使用控制装置61来控制从多个LED元件30中的每一个发射的光量 LED驱动部63基于由光传感器46检测出的光量。
    • 75. 发明申请
    • POWER-ON RESET CIRCUIT
    • 上电复位电路
    • US20120032717A1
    • 2012-02-09
    • US13255704
    • 2010-02-25
    • Hajime SuzukiSatoshi Miura
    • Hajime SuzukiSatoshi Miura
    • H03L7/00
    • G06F1/24H03K17/223
    • When the value of a power supply voltage (VDD) becomes a first threshold value or higher, a first start-up circuit (20) causes a band gap reference circuit (10) to start a stable operation and a first voltage value (VA) is output from the band gap reference circuit (10). When the value of the power supply voltage becomes a second threshold value or higher which is greater than the first threshold, a second start-up circuit (40) turns on a PMOS transistor (MP3) of a voltage dividing circuit (30), and a second voltage value (VB) output from the voltage dividing circuit (30) becomes a value, which is derived by dividing the value of the power supply voltage according to the resistance ratio of resistors (R31, R32). From a voltage comparison circuit (50), a reset level voltage value is output when the second voltage value (VB) is smaller than the first voltage value (VA), and a power-supply voltage level voltage value is output if the second voltage value (VB) becomes the first voltage value (VA) or higher.
    • 当电源电压(VDD)的值成为第一阈值以上时,第一启动电路(20)使带隙基准电路(10)开始稳定动作,第一电压值(VA) 从带隙参考电路(10)输出。 当电源电压值变得大于第一阈值的第二阈值以上时,第二启动电路(40)导通分压电路(30)的PMOS晶体管(MP3),并且 从分压电路(30)输出的第二电压值(VB)成为通过根据电阻器(R31,R32)的电阻比除以电源电压值而导出的值。 从电压比较电路(50),当第二电压值(VB)小于第一电压值(VA)时,输出复位电平电压值,如果第二电压值 值(VB)成为第一电压值(VA)以上。
    • 76. 发明授权
    • Exchange-coupling film incorporating stacked antiferromagnetic layer and pinned layer, and magnetoresistive element including the exchange-coupling film
    • 包含堆叠反铁磁层和被钉扎层的交换耦合膜,以及包括交换耦合膜的磁阻元件
    • US07782576B2
    • 2010-08-24
    • US11806823
    • 2007-06-04
    • Takumi UesugiSatoshi Miura
    • Takumi UesugiSatoshi Miura
    • G11B5/33
    • G01R33/093B82Y25/00G11B5/3906H01F10/16H01F10/3272H01L43/08
    • An exchange-coupling film incorporates an antiferromagnetic layer and a pinned layer. The pinned layer includes a first ferromagnetic layer, a second ferromagnetic layer, a third ferromagnetic layer, a nonmagnetic middle layer, and a fourth ferromagnetic layer that are disposed in this order, the first ferromagnetic layer being closest to the antiferromagnetic layer. The first ferromagnetic layer is made of a ferromagnetic material and has a face-centered cubic structure. The second ferromagnetic layer is made of only iron or an alloy containing x atomic % cobalt and (100−x) atomic % iron, wherein x is greater than zero and smaller than or equal to 60. The third ferromagnetic layer is made of an alloy containing y atomic % cobalt and (100−y) atomic % iron, wherein y is within a range of 65 to 80 inclusive. The antiferromagnetic layer and the first ferromagnetic layer are exchange-coupled to each other. The third and fourth ferromagnetic layers are antiferromagnetically coupled to each other.
    • 交换耦合膜包含反铁磁层和钉扎层。 被钉扎层包括第一铁磁层,第二铁磁层,第三铁磁层,非磁性中间层和第四铁磁层,第一铁磁层最靠近反铁磁层。 第一铁磁层由铁磁材料制成并具有面心立方结构。 第二铁磁层仅由铁或含有x原子%钴和(100-x)原子%铁的合金制成,其中x大于零且小于或等于60.第三铁磁层由合金 含有原子%钴和(100-y)原子%铁,其中y在65〜80的范围内。 反铁磁层和第一铁磁层彼此交换耦合。 第三和第四铁磁层彼此反铁磁耦合。
    • 79. 发明申请
    • MAGNETO-RESISTANCE EFFECT ELEMENT INCLUDING FERROMAGNETIC LAYER HAVING GRANULAR STRUCTURE
    • 磁阻效应元件,包括具有颗粒结构的纤维层
    • US20090086384A1
    • 2009-04-02
    • US11865885
    • 2007-10-02
    • Kei HirataSatoshi Miura
    • Kei HirataSatoshi Miura
    • G11B5/33
    • G11B5/3932B82Y25/00G01R33/093H01F10/3227H01F10/325H01F10/3254H01L43/10
    • A magneto-resistance effect element of the present invention comprises: a pair of ferromagnetic layers whose magnetization directions change in accordance with an external magnetic field, each of the pair of ferromagnetic layers having a granular structure in which a large number of magnetic grains are distributed within a nonmagnetic matrix material; a conductive nonmagnetic intermediate layer sandwiched between the pair of ferromagnetic layers; and a bias magnetic field applying layer for exerting magnetic force on the pair of ferromagnetic layers. The matrix material in the pair of ferromagnetic layer contains conductive material. Moreover, another magneto-resistance effect element of the present invention includes: a pair of ferromagnetic layers whose magnetization directions change in accordance with an external magnetic field, each of the pair of ferromagnetic layers having a granular structure in which a large number of magnetic grains are distributed within a nonmagnetic matrix material; an insulating nonmagnetic intermediate layer sandwiched between the pair of ferromagnetic layers; and a bias magnetic field applying layer for exerting magnetic force on the pair of ferromagnetic layers. The matrix material in the pair of ferromagnetic layers contains a metallic oxide, and contains the same material as that of the insulating nonmagnetic intermediate layer.
    • 本发明的磁阻效应元件包括:一对铁磁层,其磁化方向根据外部磁场而变化,所述一对铁磁层中的每一个都具有其中分布有大量磁性颗粒的粒状结构 在非磁性基质材料内; 夹在所述一对铁磁层之间的导电非磁性中间层; 以及用于在所述一对铁磁层上施加磁力的偏置磁场施加层。 一对铁磁层中的基体材料含有导电材料。 此外,本发明的另一个磁阻效应元件包括:一对铁磁层,其磁化方向根据外部磁场而变化,所述一对铁磁层中的每一个具有粒状结构,其中大量的磁性颗粒 分布在非磁性基质材料中; 夹在所述一对铁磁层之间的绝缘非磁性中间层; 以及用于在所述一对铁磁层上施加磁力的偏置磁场施加层。 一对铁磁层中的基体材料含有金属氧化物,并且含有与绝缘非磁性中间层相同的材料。
    • 80. 发明授权
    • Device and method for processing video signals to improve the black contrast
    • 用于处理视频信号以提高黑色对比度的装置和方法
    • US07502077B2
    • 2009-03-10
    • US10517583
    • 2003-06-24
    • Satoshi MiuraTakatomo NagamineYumiko MitoJun Ueshima
    • Satoshi MiuraTakatomo NagamineYumiko MitoJun Ueshima
    • H04N5/14H04N5/16H04N5/57H04N5/68H04N9/77
    • H04N5/20
    • A video signal-processing device that can improve the apparent contrast of the luminance signal at a television receiving set includes a quantity of black expansion computing section for computationally determining the quantity of black expansion when the luminance component of the input video signal is not higher than a first luminance level, a gain controller for regulating the quantity of black expansion as computationally determined by the quantity of black expansion computing section, a quantity of black expansion adding section for generating an output video signal by adding the quantity of black expansion regulated by the gain controller to the luminance component of the input video signal, and a vertical span adding block for integrating the luminance component of the output video signal not higher than a second luminance level for a field. The gain controller regulates the quantity of black expansion according to the luminance component integrated by the vertical span adding block to improve the apparent contrast of the luminance signal at the television receiving set by accurately expanding black.
    • 可以提高电视接收装置的亮度信号的视觉对比度的视频信号处理装置包括黑色扩展计算部分,用于当输入视频信号的亮度分量不高于时,用于计算确定黑色扩展量 第一亮度级,由黑色扩展计算部的数量计算的用于调节黑色扩展量的增益控制器,黑色扩展添加部,用于通过将由黑色扩展计算部调整的黑色扩展量相加生成输出视频信号的量; 对于输入视频信号的亮度分量的增益控制器和用于对不高于场的第二亮度水平的输出视频信号的亮度分量进行积分的垂直量程相加块。 增益控制器根据由垂直量程相加块积分的亮度分量来调节黑色扩展量,以通过精确地扩展黑色来改善电视接收机上的亮度信号的视差对比度。