会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Power supply apparatus
    • 电源设备
    • US5705920A
    • 1998-01-06
    • US722510
    • 1996-09-27
    • Yoshiteru WatanabeMotohiro SuginoRyuichi IkedaShuzo MatsumotoKenji KawabataTakashi Okada
    • Yoshiteru WatanabeMotohiro SuginoRyuichi IkedaShuzo MatsumotoKenji KawabataTakashi Okada
    • H05B41/282G05F1/10G05F1/40G05F1/56H02M3/155
    • G05F1/40
    • A power supply apparatus which stabilizes the output by feeding it back is provided which suppresses variations of the output for abrupt variations of the input. The power supply apparatus comprises output sensing means for sensing output current and output voltage, first output control means for controlling the output with the increment or decrement of the value obtained from said output sensing means, second output control means for controlling the output from an absolute value of the input voltage, and selection means for selecting either said first output control means or said second output control means. The power supply apparatus further comprises means for detecting the variation rate of the input voltage, first monitor means for monitoring the difference between the output value of said output sensing means and the reference value, and second monitor means for monitoring both the difference between the output value of said output sensing means and a reference value, and the input voltage variation rate.
    • 提供通过反馈来稳定输出的电源装置,其抑制输入的突变变化的输出的变化。 电源装置包括用于感测输出电流和输出电压的输出感测装置,用于通过从所述输出感测装置获得的值的增加或减少来控制输出的第一输出控制装置,用于控制来自绝对值的输出的第二输出控制装置 输入电压值,以及用于选择所述第一输出控制装置或所述第二输出控制装置的选择装置。 电源装置还包括用于检测输入电压的变化率的装置,用于监视所述输出检测装置的输出值与参考值之间的差的第一监视装置,以及监视输出 所述输出检测装置的值和参考值以及输入电压变化率。
    • 3. 发明申请
    • MAGNETIC RESONANCE IMAGING APPARATUS
    • 磁共振成像装置
    • US20120319689A1
    • 2012-12-20
    • US13584002
    • 2012-08-13
    • Nobuyasu IchinoseYoshiteru Watanabe
    • Nobuyasu IchinoseYoshiteru Watanabe
    • G01R33/341
    • G01R33/56383G01R33/3415G01R33/3664G01R33/5659
    • In a magnetic resonance imaging apparatus according to an embodiment, an array coil is structured by arranging a plurality of coil elements each of which receives a magnetic resonance signal generated from a subject. An acquisition controlling unit acquires the magnetic resonance signals while changing a position to be selected and excited within the subject who has the array coil attached thereon. A large-area image generating unit generates a large-area image of the subject, based on the magnetic resonance signals acquired by the acquisition controlling unit. A position measuring unit measures positions of the coil elements, based on strengths of the magnetic resonance signals used for generating the large-area image and positions of the couchtop corresponding to the times when the magnetic resonance signals were acquired.
    • 在根据实施例的磁共振成像装置中,阵列线圈通过布置多个线圈元件而构成,每个线圈元件接收从被摄体产生的磁共振信号。 获取控制单元在改变在其上安装有阵列线圈的被摄体内被选择和激励的位置的同时获取磁共振信号。 大面积图像生成单元基于由获取控制单元获取的磁共振信号,生成被摄体的大面积图像。 位置测量单元基于用于产生大面积图像的磁共振信号的强度和与获得磁共振信号的时间相对应的沙发顶部的位置来测量线圈元件的位置。
    • 4. 发明申请
    • MRI APPARATUS
    • MRI装置
    • US20080211496A1
    • 2008-09-04
    • US12014117
    • 2008-01-15
    • Kazuya TanoueKatsutoshi KokubunYoshiteru Watanabe
    • Kazuya TanoueKatsutoshi KokubunYoshiteru Watanabe
    • G01R33/48
    • G01R33/54G01R33/3621G01R33/543G01R33/546
    • An MRI apparatus for performing an MRI examination to an object by sequentially applying an imaging method group, which is constituted by time-sequentially arranging a plurality of different imaging methods, to each of the imaging methods, has an imaging method group setting unit, a performing order setting unit and an imaging condition setting unit. The imaging method group setting unit sets the imaging method group. The performing order setting unit sets a performing order as a performing order of the imaging methods constituting the imaging method group. The imaging condition setting unit sets an imaging condition to each of the imaging methods. The workflow setting unit obtains an examination history data corresponding to the imaging method group, the performing order and the imaging condition from the examination history data previously stored to a storage unit, and sets a first workflow relating to the MRI examination by estimating an imaging time of each of the imaging methods in the performing order based on the obtained examination history data.
    • 一种用于对每个成像方法依次应用由时间顺序排列多种不同成像方法构成的成像方法组,对对象进行MRI检查的MRI装置,具有成像方法组设定部, 执行顺序设置单元和成像条件设置单元。 成像方法组设定单元设置成像方法组。 执行顺序设置单元将执行顺序设置为构成成像方法组的成像方法的执行顺序。 成像条件设定单元对每个成像方法设置成像条件。 工作流程设置单元从预先存储到存储单元的检查历史数据中获取与成像方法组对应的检查历史数据,执行顺序和成像条件,并且通过估计成像时间来设置与MRI检查相关的第一工作流程 基于所获得的检查历史数据,按照执行顺序的每个成像方法。
    • 6. 发明授权
    • MRI apparatus
    • MRI装置
    • US07642778B2
    • 2010-01-05
    • US12014117
    • 2008-01-15
    • Kazuya TanoueKatsutoshi KokubunYoshiteru Watanabe
    • Kazuya TanoueKatsutoshi KokubunYoshiteru Watanabe
    • G01V3/00
    • G01R33/54G01R33/3621G01R33/543G01R33/546
    • An MRI apparatus for performing an MRI examination to an object by sequentially applying an imaging method group, which is constituted by time-sequentially arranging a plurality of different imaging methods, to each of the imaging methods, has an imaging method group setting unit, a performing order setting unit and an imaging condition setting unit. The imaging method group setting unit sets the imaging method group. The performing order setting unit sets a performing order as a performing order of the imaging methods constituting the imaging method group. The imaging condition setting unit sets an imaging condition to each of the imaging methods. The workflow setting unit obtains an examination history data corresponding to the imaging method group, the performing order and the imaging condition from the examination history data previously stored to a storage unit, and sets a first workflow relating to the MRI examination by estimating an imaging time of each of the imaging methods in the performing order based on the obtained examination history data.
    • 一种用于对每个成像方法依次应用由时间顺序地排列多种不同成像方法构成的成像方法组对对象进行MRI检查的MRI装置,具有成像方法组设定部, 执行顺序设置单元和成像条件设置单元。 成像方法组设定单元设置成像方法组。 执行顺序设置单元将执行顺序设置为构成成像方法组的成像方法的执行顺序。 成像条件设定单元对每个成像方法设置成像条件。 工作流程设置单元从预先存储到存储单元的检查历史数据中获取与成像方法组对应的检查历史数据,执行顺序和成像条件,并且通过估计成像时间来设置与MRI检查相关的第一工作流程 基于所获得的检查历史数据,按照执行顺序的每个成像方法。
    • 7. 发明授权
    • Power supply and reference voltage circuit for TFT LCD source driver
    • TFT液晶源驱动器的电源和参考电压电路
    • US06963323B2
    • 2005-11-08
    • US10156581
    • 2002-05-24
    • Takaaki SakuraiYoshiteru WatanabeToshiyuki YanaSatoshi Karube
    • Takaaki SakuraiYoshiteru WatanabeToshiyuki YanaSatoshi Karube
    • G02F1/133G09G3/20G09G3/36H02M3/155
    • G09G3/3696G09G2330/02
    • A liquid crystal power supply is provided which generates a high-precision drive power supply voltage supplied to a driver circuit by using a low-precision reference voltage generating circuit. The power supply circuit includes a DC/DC converter which generates a voltage having a size based on an oscillation signal from a power supply voltage and outputs the generated voltage as a drive power supply voltage; a stabilized power supply circuit which generates a highest-level reference potential for generating a gray-scale voltage in a driver circuit; a comparison unit which outputs a difference voltage according to a difference between the drive power supply voltage and the highest-level reference potential; an internal reference voltage generating unit; an error amplifying unit which amplifies a difference between the reference voltage and the difference voltage; and a PWM conversion unit which outputs an oscillation signal in response to the amplified difference.
    • 提供一种液晶电源,其通过使用低精度基准电压产生电路产生提供给驱动电路的高精度驱动电源电压。 电源电路包括DC / DC转换器,其产生具有来自电源电压的振荡信号的尺寸的电压,并将所产生的电压作为驱动电源电压输出; 稳定电源电路,其产生用于在驱动电路中产生灰度电压的最高电平参考电位; 比较单元,其根据驱动电源电压和最高电平参考电位之间的差输出差分电压; 内部参考电压产生单元; 误差放大单元,放大参考电压和差分电压之间的差; 以及PWM转换单元,其响应于放大的差值输出振荡信号。
    • 8. 发明授权
    • Magnetometer direction measuring system requiring no external compass
    • 无需外部罗盘的磁力计方向测量系统
    • US4634978A
    • 1987-01-06
    • US515258
    • 1983-07-19
    • Yoshiteru Watanabe
    • Yoshiteru Watanabe
    • G01C17/30B63H25/04G01C17/28G01C17/38G01P13/04G05D1/00
    • G01C17/28G01C17/38
    • A system for accurately measuring the direction in which a magnetometer is to be set has a simple construction and is little affected by iron structures on a hull. The system has a magnetometer which includes an excitation source, a magnetic core, an excitation AC winding and an output winding which are both wound around the magnetic core. The output winding is composed of two series connected coils which are wound around the magnetic core and have an equal number of turns. The measuring system applies an alternating current to the core having an amplitude large enough to saturate the magnetic core, and obtains an output from the output winding corresponding to the angle formed between the geomagnetic field direction and an imaginary line obtained by interconnecting the point of connection of the two coils and the central point of the magnetic core.
    • 用于精确测量磁力计的方向的系统具有简单的结构,并且几乎不受船体上的铁结构的影响。 该系统具有磁力计,其包括缠绕在磁芯上的激励源,磁芯,激励AC绕组和输出绕组。 输出绕组由缠绕在磁芯上并且具有相同数目的匝数的两个串联的线圈组成。 测量系统向磁芯施加具有足够大的振幅以使磁芯饱和的磁芯的交流电,并且从输出绕组获得对应于通过将连接点互连而获得的地磁场方向与虚线之间形成的角度的输出 的两个线圈和磁芯的中心点。