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    • 142. 发明授权
    • Ionized water production method and production device
    • 离子水生产方法及生产装置
    • US08999120B2
    • 2015-04-07
    • US13509687
    • 2011-11-10
    • Kazunori OsamuraTakao KawajiriYutaka NakamuraNoboru KudoMasae Shimizu
    • Kazunori OsamuraTakao KawajiriYutaka NakamuraNoboru KudoMasae Shimizu
    • C02F1/461C25B9/08
    • C02F1/4618C02F2001/4619C02F2201/003C02F2201/46115C02F2201/4614C02F2301/08Y02E60/366
    • An energy-saving ionized water production device and a production method are provided that are capable of producing strongly alkaline ionized in a short period of time.An ionized water production device 1 is used that is configured such that a first electrolysis cell 20A is arranged in a first electrolysis bath 10A, a second electrolysis cell 20B is arranged in a second electrolysis bath 10B, and alkaline ionized water formed in an electrolysis diaphragm 21 of the first electrolysis cell 20A is quantitatively and continuously transferred to an electrolysis diaphragm of the second electrolysis cell 20B by a transfer pump 50 arranged in a water filling pipe 27A of the first electrolysis cell 20A, and current is applied by setting the current applied to the first electrolysis cell 20A to 5 amperes to 15 amperes and setting the current applied to the second electrolysis cell 20B to 15 amperes to 20 amperes within a range of a total current applied to the first electrolysis cell 20A and the second electrolysis cell 20B of 25 amperes to 30 amperes.
    • 提供了能够在短时间内产生强碱性离子化的节能电离水生产装置和制造方法。 使用电离水生产装置1,其被构造成使得第一电解槽20A布置在第一电解槽10A中,第二电解槽20B布置在第二电解槽10B中,并且在电解膜中形成碱性离子水 21通过布置在第一电解槽20A的充水管27A中的输送泵50定量连续地转移到第二电解槽20B的电解膜,并且通过设定施加的电流施加电流 到第一电解槽20A至5安培至15安培,并且将施加到第二电解槽20A的电流设定为15安培至20安培,在施加到第一电解槽20A和第二电解槽20B的总电流的范围内 25安培至30安培。
    • 143. 发明授权
    • Spin-torque transfer magneto-resistive memory architecture
    • 自旋扭矩传递磁阻存储器架构
    • US08456901B2
    • 2013-06-04
    • US13559672
    • 2012-07-27
    • John K. DeBrosseYutaka Nakamura
    • John K. DeBrosseYutaka Nakamura
    • G11C11/00
    • G11C11/16G11C11/1655G11C11/1659G11C11/1673G11C11/1675G11C11/1693Y10S977/935
    • A system includes a processor and a memory array connected to the processor comprising a first memory cell comprising a first magnetic tunnel junction device having a first terminal connected to a first bit line and a second terminal, and a first field effect transistor having a source terminal connected to a second bit line, a gate terminal connected to a word line, and a drain terminal connected to the second terminal of the first magnetic tunnel junction device, and a second memory cell comprising a second magnetic tunnel junction device having a first terminal connected to a third bit line and a second terminal, and a second field effect transistor having a source terminal connected to the second bit line, a gate terminal connected to the word line, and a drain terminal connected to the second terminal of the second magnetic tunnel junction device.
    • 一种系统包括处理器和连接到处理器的存储器阵列,该存储器阵列包括第一存储器单元,该第一存储器单元包括具有连接到第一位线的第一端子和第二端子的第一磁性隧道结器件,以及具有源极端子的第一场效应晶体管 连接到第二位线,连接到字线的栅极端子和连接到第一磁性隧道结装置的第二端子的漏极端子,以及包括第二磁性隧道结装置的第二存储单元,第二磁性隧道结装置具有第一端子连接 至第三位线和第二端子,以及第二场效应晶体管,其源极端子连接到第二位线,连接到字线的栅极端子和连接到第二磁通道的第二端子的漏极端子 连接装置。
    • 144. 发明申请
    • HIGH-SPEED INTERFACE CONNECTOR
    • 高速接口连接器
    • US20130045635A1
    • 2013-02-21
    • US13574863
    • 2012-02-03
    • Hiroshi SuenagaYutaka NakamuraYukihiro Fukumoto
    • Hiroshi SuenagaYutaka NakamuraYukihiro Fukumoto
    • H01R13/02H01R24/76
    • H01R13/6461H01R12/712
    • A high-speed interface connector is used for connecting a cable or a memory card each having a differential transmission system signal pin arrangement including a pair of differential transmission signaling pins that are adjacent to each other and two stable potential pins provided on both sides of the pair of differential transmission signaling pins, the two stable potential pins having potentials different from each other. The connector includes: a first and a second contact terminals for differential transmission respectively connected to the pair of differential transmission signaling pins; and a third and a fourth contact terminals provided on both sides of the first and the second contact terminal, the third contact terminal adjacent to the first contact terminal being connected to one of the two stable potential pins, and the fourth contact terminal adjacent to the second contact terminal having a potential identical to that of the third contact terminal.
    • 高速接口连接器用于连接电缆或存储卡,每个电缆或存储卡具有差分传输系统信号引脚布置,该差分传输系统信号引脚布置包括彼此相邻的一对差分传输信号引脚和两个稳定的电位引脚, 一对差分传输信号引脚,两个稳定的电位引脚具有彼此不同的电位。 连接器包括:分别连接到该对差分传输信号引脚的用于差分传输的第一和第二接触端子; 以及设置在第一和第二接触端子的两侧的第三和第四接触端子,与第一接触端子相邻的第三接触端子连接到两个稳定电位引脚之一,以及与第二接触端子相邻的第四接触端子 第二接触端子具有与第三接触端子的电位相同的电位。
    • 150. 发明授权
    • Electronic device, display processing method and program
    • 电子设备,显示处理方法和程序
    • US07856313B2
    • 2010-12-21
    • US11526513
    • 2006-09-25
    • Yutaka Nakamura
    • Yutaka Nakamura
    • G08G1/137
    • G01C21/367
    • An electronic device, a display processing method and a program for displaying a direction and distance of a moving body outside of a displayed range of a map, seen from a certain position on the map and a moving direction of the moving body at a time, are provided. A calculation portion calculates a distance from a current position of a portable device 3 to the destination based on the current position information and position information of the destination included in map data; a moving direction specifying portion specifies a current moving direction of the portable device; a display processing portion determines a position, size and direction of an arrow on the map based on the current position information of the portable device, position information of the destination, a distance between the destination and the current position, and the moving direction and generates a map image to be displayed.
    • 一种电子装置,显示处理方法和程序,用于在地图上的某个位置和每次移动体的移动方向上看到从地图的显示范围的外部显示移动体的方向和距离, 被提供。 计算部根据地图数据中包含的目的位置信息和目的地位置信息,计算从便携装置3的当前位置到目的地的距离; 移动方向指定部分指定便携式设备的当前移动方向; 显示处理部分基于便携式设备的当前位置信息,目的地的位置信息,目的地与当前位置之间的距离以及移动方向来确定地图上的箭头的位置,大小和方向,并且生成 要显示的地图图像。