Vacuum capacitor
    3.
    发明授权
    Vacuum capacitor 有权
    真空电容器

    公开(公告)号:US08749947B2

    公开(公告)日:2014-06-10

    申请号:US13641794

    申请日:2011-03-28

    IPC分类号: H01G5/013

    CPC分类号: H01G5/06 H01G5/013

    摘要: The present invention can easily adjust capacitance of a vacuum capacitor while maintaining a vacuum state in a vacuum chamber of the vacuum capacitor.A fixed electrode 4 is formed by arranging a plurality of flat electrode members 5 in layers at a certain distance in an axial direction of a vacuum chamber 1b. A movable electrode 7 is formed by arranging a plurality of flat electrode members 8 in layers at a certain distance in the axial direction of the vacuum chamber 1b and fixing the electrode members 8 to a movable electrode shaft 9. By rotation of the movable electrode shaft 9, each electrode member 8 is inserted into and extracted from a gap between the electrode members 5 of the fixed electrode 4 in noncontact with the electrode members 5 of the fixed electrode 4. A magnetic flux receiving portion 106b is fixed to a seal member 102 side of a disk member 106a that is provided at the movable electrode shaft 9. A magnetic flux generating unit 104 provided at a capacitance control unit 14 is arranged in a direction parallel to the movable electrode shaft 9 with respect to the magnetic flux receiving portion 106b. By rotating the capacitance control unit 14 also rotating the magnetic flux receiving portion 106b by magnetic attraction of the magnetic flux generating unit 104, an overlap area of the movable electrode 7 with respect to the fixed electrode 4 is changed, capacitance is then adjusted.

    摘要翻译: 本发明可以容易地调节真空电容器的电容,同时保持真空电容器的真空室中的真空状态。 固定电极4通过在真空室1b的轴向上以一定距离布置多层扁平电极构件5而形成。 可动电极7通过在真空室1b的轴向上以一定距离布置多个扁平电极构件8并将电极构件8固定到可动电极轴9上而形成。通过可动电极轴的旋转 如图9所示,每个电极构件8插入固定电极4的电极构件5之间的间隙并且与固定电极4的电极构件5非接触地从其间拔出。磁通量接收部分106b固定到密封构件102 设置在可动电极轴9的盘部件106a的一侧。设置在电容控制单元14的磁通量产生单元104相对于磁通量接收部106b在与可动电极轴9平行的方向上配置 。 通过使通过磁通量产生单元104的磁吸引旋转磁通量接收部分106b的电容控制单元14旋转,可移动电极7相对于固定电极4的重叠区域被改变,然后调整电容。

    Privacy protection device, privacy protection method, and recording medium recorded with privacy protection program
    4.
    发明授权
    Privacy protection device, privacy protection method, and recording medium recorded with privacy protection program 有权
    隐私保护装置,隐私保护方法和记录有隐私保护程序的记录介质

    公开(公告)号:US08191151B2

    公开(公告)日:2012-05-29

    申请号:US12136384

    申请日:2008-06-10

    IPC分类号: G06F7/04 G06F17/30 H04N7/16

    摘要: A privacy protection device acquires provider location information and browser location information indicating the current location of a browser terminal used by a browser who intends to browse the content. The privacy protection device stores determination data for determining whether to mask privacy information included in the content. The privacy protection device determines whether to mask the privacy information by comparing the distance, which is calculated based on the current location of the provider terminal indicated by the provider location information and the current location of the browser terminal indicated by the browser location information, to the determination data stored in the determination data storage part. Finally, the privacy protection device edits the privacy information included in the content so that the privacy information is concealed from the browser when the privacy masking determination part determines to mask the privacy information.

    摘要翻译: 隐私保护装置获取指示浏览器使用的浏览器终端当前位置的提供者位置信息和浏览器位置信息,浏览器终端用于浏览内容。 隐私保护装置存储用于确定是否掩盖包含在内容中的隐私信息的确定数据。 隐私保护装置通过将由提供商位置信息指示的提供者终端的当前位置和由浏览器位置信息指示的浏览器终端的当前位置计算出的距离比较为隐藏隐私信息来确定是否隐藏隐私信息, 确定数据存储在确定数据存储部分中。 最后,隐私保护装置编辑包含在内容中的隐私信息,以便当隐私遮蔽确定部分确定隐藏隐私信息时,从浏览器隐藏隐私信息。

    VACUUM CAPACITOR
    6.
    发明申请
    VACUUM CAPACITOR 有权
    真空电容器

    公开(公告)号:US20110228441A1

    公开(公告)日:2011-09-22

    申请号:US13131468

    申请日:2009-11-19

    IPC分类号: H01G5/06

    CPC分类号: H01G5/06 H01G5/013 H01G5/0136

    摘要: [Object] An object of the present invention is to provide a vacuum capacitor, a vacuum state of a vacuum chamber of which is maintained without bellows etc., and whose capacitance is easily adjustable, and a decrease of life of which is lessened.[Means to solve] A fixed electrode 4 is formed by arranging a plurality of flat electrode members 5 in layers at a certain distance in an axial direction of a vacuum chamber 1b in the vacuum chamber 1b. A movable electrode 7 is an electrode that is formed by arranging a plurality of flat electrode members 8 in layers at a certain distance at a movable electrode shaft 9 in the vacuum casing 1, and by rotation of the movable electrode shaft 9, the each electrode member 8 of the movable electrode 7 is inserted into and extracted from a gap between the electrode members 5 of the fixed electrode 4 and alternately overlaps the electrode member 5 of the fixed electrode 4 with the each electrode member 8 of the movable electrode 7 in noncontact with the electrode members 5 of the fixed electrode 4. A magnetic flux receiving unit 12 is fixed to the movable electrode shaft 9 at a seal member 3 side in the vacuum casing 1, and a capacitance control unit 14 having a magnetic flux generating unit 13 is rotatably supported outside the seal member 3. By rotating the capacitance control unit 14 also rotating the magnetic flux receiving unit 12 by magnetic attraction, an overlap area between the movable electrode 7 and the fixed electrode 4 is changed, then capacitance adjustment is made.

    摘要翻译: 本发明的目的是提供一种真空电容器,其真空室的真空状态保持无波纹管等,并且其电容容易调节,并且其使用寿命减少。 [解决方案]固定电极4通过在真空室1b中的真空室1b的轴向上以一定距离布置多个平板电极构件5而形成。 可动电极7是通过在真空壳体1中的可动电极轴9上以一定距离布置多个平面电极构件8而形成的电极,并且通过可动电极轴9的旋转, 将可动电极7的构件8插入到固定电极4的电极构件5之间的间隙中并从固定电极4的电极构件5之间的间隙中抽出,并且与可动电极7的每个电极构件8以非接触的方式交替重叠 与固定电极4的电极部件5连接。在真空壳体1的密封部件3侧将磁通量接收部12固定在可动电极轴9上,电容控制部14具有磁通发生部13 被可旋转地支撑在密封构件3的外部。通过旋转电容控制单元14,其也通过磁吸引使磁通量接收单元12旋转,movab之间的重叠区域 电极7和固定电极4发生变化,进行电容调整。

    SERIAL BUS TRANSMISSION SYSTEM
    8.
    发明申请
    SERIAL BUS TRANSMISSION SYSTEM 有权
    串行总线传输系统

    公开(公告)号:US20110142066A1

    公开(公告)日:2011-06-16

    申请号:US12988939

    申请日:2009-04-20

    IPC分类号: H04B7/212

    CPC分类号: H04L12/4035

    摘要: A master node (12) sends an identification signal for designating a communication channel in an identification signal time slot. When the own node matches the node in which the communication channel designated by the identification signal sent from the master node (12) is set in the identification signal time slot, the master node (12) and slave nodes (131 to 13n) each perform data transmission via the communication channel, based on the set contents of the communication channel, in the data transmission time slot corresponding to the identification signal time slot in which the identification signal has been sent.

    摘要翻译: 主节点(12)在识别信号时隙中发送用于指定通信信道的识别信号。 当自身节点与在主节点(12)发送的识别信号指定的通信信道被设置在识别信号时隙中的节点匹配时,主节点(12)和从节点(131至13n)各自执行 在与发送识别信号的识别信号时隙对应的数据传输时隙中,基于通信信道的设定内容,经由通信信道的数据传输。

    Signal timing adjustment device, signal timing adjustment system, signal timing adjustment amount setting program, and storage medium storing the program
    9.
    发明授权
    Signal timing adjustment device, signal timing adjustment system, signal timing adjustment amount setting program, and storage medium storing the program 失效
    信号定时调整装置,信号定时调整系统,信号定时调整量设定程序以及存储该程序的存储介质

    公开(公告)号:US07447289B2

    公开(公告)日:2008-11-04

    申请号:US10809374

    申请日:2004-03-26

    IPC分类号: H04L7/00

    CPC分类号: H04L7/0337 H03L7/087

    摘要: Delay time between an input of data to a circuit block and an output of the data from the data block is measured in accordance with a timing at which the data from the circuit block is acquired by a measurement register and a timing at which the data from the circuit block is acquired by a data latch. An LSI tester sets well voltage adjustment values so that delay time of each circuit block is averaged. From voltages generated by the adjustment voltage generating circuit, a selector selects voltages that are in accordance with the well voltage adjustment values. The voltages selected are applied to a well of a CMOS transistor of each clock timing adjustment circuit. Delay time between timings of inputted clocks is thus adjusted.

    摘要翻译: 根据来自电路块的数据通过测量寄存器获取的定时和来自数据块的数据的定时,测量数据到电路块的数据输入与来自数据块的数据的输出之间的延迟时间 电路块由数据锁存器获取。 LSI测试仪设置好的电压调整值,使得每个电路块的延迟时间被平均。 根据由调整电压产生电路产生的电压,选择器选择与电压调节值相一致的电压。 所选择的电压被施加到每个时钟定时调整电路的CMOS晶体管的阱。 因此调整输入时钟的定时之间的延迟时间。