Heat-generating element cooling device
    1.
    发明授权
    Heat-generating element cooling device 失效
    发热元件冷却装置

    公开(公告)号:US06140571A

    公开(公告)日:2000-10-31

    申请号:US685610

    申请日:1996-07-24

    摘要: A cooling device mounts a fan unit above a heat sink. The heat sink is mounted on a heat-generating element or buried therein. The cooling device produces an effective air flow and achieves a uniform cooling action by having the heat sink formed in various shapes. The cooling fan is disposed away from the heat sink or to the side of the sink and is used for effective cooling through an air conduit passage formed by pipes or a cover.

    摘要翻译: 冷却装置将风扇单元安装在散热器上方。 散热器安装在发热元件上或埋在其中。 冷却装置产生有效的空气流,并且通过使散热器形成各种形状来实现均匀的冷却动作。 冷却风扇远离散热器或水槽的一侧设置,用于通过由管道或盖子形成的空气管道通道进行有效的冷却。

    Heat-generating element cooling device
    2.
    发明授权
    Heat-generating element cooling device 失效
    发热元件冷却装置

    公开(公告)号:US5760333A

    公开(公告)日:1998-06-02

    申请号:US685637

    申请日:1996-07-24

    摘要: A cooling device mounting a fan unit above a heat sink mounted on a heat-generating element or buried therein, which produces an effective air flow and achieves a uniform cooling action by having the heat sink shown in various shapes. Further, a cooling fan disposed away from the heat sink or to the side of the same is used for effective cooling through an air conduit passage formed by pipes or a cover.

    摘要翻译: 一种将风扇单元安装在安装在发热元件上或埋在其中的散热器上方的冷却装置,其产生有效的空气流并且通过使散热器具有各种形状来实现均匀的冷却动作。 此外,远离散热器或其一侧设置的冷却风扇用于通过由管道或盖形成的空气管道通道的有效冷却。

    Heat-generating element cooling device
    4.
    发明授权
    Heat-generating element cooling device 失效
    发热元件冷却装置

    公开(公告)号:US6011216A

    公开(公告)日:2000-01-04

    申请号:US685689

    申请日:1996-07-24

    摘要: A cooling device mounts a fan unit above a heat sink. The heat sink is mounted on a heat-generating element or buried therein. The cooling device produces an effective air flow and achieves a uniform cooling action by having the heat sink formed in various shapes. The cooling fan is disposed away from the heat sink or to the side of the same and is used for effective cooling through an air conduit passage formed by pipes or a cover.

    摘要翻译: 冷却装置将风扇单元安装在散热器上方。 散热器安装在发热元件上或埋在其中。 冷却装置产生有效的空气流,并且通过使散热器形成各种形状来实现均匀的冷却动作。 冷却风扇远离散热器或其一侧设置,用于通过由管道或盖形成的空气管道通道有效地冷却。

    Heat-generating element cooling device
    5.
    发明授权
    Heat-generating element cooling device 失效
    发热元件冷却装置

    公开(公告)号:US5583316A

    公开(公告)日:1996-12-10

    申请号:US211241

    申请日:1994-03-29

    摘要: A cooling device mounting a fan unit (3) above a heat sink (2) mounted on a heat-generating element (1) or buried therein, which produces an effective air flow and achieves a uniform cooling action by having the heat sink (2) comprised in various shapes. Further, a cooling fan disposed away from the heat sink (2) or to the side of the same is used for effective cooling through an air conduit passage formed by pipes or a cover.

    摘要翻译: PCT No.PCT / JP93 / 01111 Sec。 371日期:1994年3月29日 102(e)1994年3月29日PCT 1993年8月6日提交PCT冷却装置将安装在发热元件(1)上或埋在其中的散热器(2)上方的风扇单元(3) 有效的空气流动并且通过使散热器(2)具有各种形状来实现均匀的冷却作用。 此外,远离散热器(2)或其一侧设置的冷却风扇用于通过由管道或盖形成的空气管道通道的有效冷却。

    Heat-generating element cooling device
    6.
    发明授权
    Heat-generating element cooling device 失效
    发热元件冷却装置

    公开(公告)号:US6143977A

    公开(公告)日:2000-11-07

    申请号:US30136

    申请日:1998-02-25

    摘要: A cooling device for a heat generating element which includes a heat sink disposed on a top surface of the element mounted on a printed circuit board, a cooling air throttling mechanism supported by a base surface of the heat sink, and a plurality of heat-radiating fins on the base surface around the throttling mechanism. A plate-shaped cover covers a top surface of the heat sink and has an opening formed at a position facing the throttling mechanism. A cooling fan unit is positioned beneath the opening and mounted to be accommodated in the throttling mechanism.

    摘要翻译: 一种用于发热元件的冷却装置,其包括设置在安装在印刷电路板上的元件的顶表面上的散热器,由散热器的基面支撑的冷却空气节流机构,以及多个散热 在节流机构周围的基面上的翅片。 板状盖覆盖散热器的顶表面,并且在面向节流机构的位置处形成有开口。 冷却风扇单元位于开口下方并安装以容纳在节流机构中。

    Heat-generating element cooling device
    7.
    发明授权
    Heat-generating element cooling device 失效
    发热元件冷却装置

    公开(公告)号:US5756931A

    公开(公告)日:1998-05-26

    申请号:US685860

    申请日:1996-07-24

    摘要: A cooling device mounting a fan unit (3) above a heat sink (2) mounted on a heat-generating element (1) or buried therein, which produces an effective air flow and achieves a uniform cooling action by having the heat sink (2) embodied in various shapes. Further, a cooling fan disposed away from the heat sink (2) or to the side of the same is used for effective cooling through an air conduit passage formed by pipes or a cover.

    摘要翻译: 一种将风扇单元(3)安装在安装在发热元件(1)上或埋在其中的散热器(2)上方的冷却装置,其产生有效的空气流并通过使散热器(2)产生均匀的冷却动作 )体现在各种形状。 此外,远离散热器(2)或其一侧设置的冷却风扇用于通过由管道或盖子形成的空气管道通道的有效冷却。

    Multi-carrier communication device, and multi-carrier communication method
    8.
    发明授权
    Multi-carrier communication device, and multi-carrier communication method 失效
    多载波通信设备,多载波通信方式

    公开(公告)号:US07778350B2

    公开(公告)日:2010-08-17

    申请号:US12067801

    申请日:2006-08-31

    IPC分类号: H04L27/00 H04L23/00 H04J11/00

    摘要: Provided is a multi-carrier communication device capable of reducing the deterioration of a reception quality while suppressing the peak power of a multi-carrier signal. In this device, a clipping strain measurement unit (108) calculates the individual average powers (or the clipping strain powers) of peak suppression signals contained in a center area and in end areas. Moreover, the clipping strain measurement unit (108) uses the calculated clipping strain, to calculates the ratios of the signal powers to the clipping strain powers (or the ratios of the signals to the clipping strains) individually for the center area and the end areas, and outputs the calculated ratios of the signals to the clipping strains to a puncture-modulation mode selection unit (109). On the basis of the ratios of the signals to the clipping strains for the individual areas, the puncture-modulation mode selection unit (109) selects the encoding percentage, the modulation mode or the power of the transmission data to be superposed on the individual areas.

    摘要翻译: 提供一种能够抑制多载波信号的峰值功率的同时降低接收质量的劣化的多载波通信装置。 在该装置中,剪切应变测量单元(108)计算包含在中心区域和端部区域中的峰值抑制信号的各个平均功率(或削波应变功率)。 此外,剪切应变测量单元(108)使用所计算的剪切应变来计算针对中心区域和结束区域的信号功率与剪切应变功率(或信号与剪切应变的比率)的比率 ,并将所计算出的信号与剪切应变的比率输出到穿刺调制模式选择单元(109)。 基于各个区域的信号与限幅应变的比例,穿刺调制模式选择单元(109)选择要叠加在各个区域上的传输数据的编码百分比,调制模式或功率 。

    Sponge blasting apparatus and sponge blasting method
    9.
    发明授权
    Sponge blasting apparatus and sponge blasting method 失效
    海绵喷砂器和海绵喷砂法

    公开(公告)号:US07465215B2

    公开(公告)日:2008-12-16

    申请号:US11687700

    申请日:2007-03-19

    摘要: The present invention provides a sponge blasting apparatus comprising: a recovering unit which sucks and recovers a blasting medium jetted out of a nozzle; a sorting unit which sorts the blasting medium sucked and recovered by the recovering unit into a reusable blasting medium and an unreusable blasting medium; a blower which gives a sucking force to the recovering unit via the sorting unit; a dust collector which removes dust from an exhaust air discharged from the sorting unit with a sucking force of the blower; a picking-apart unit which picks apart the reusable blasting medium sorted by the sorting unit; a continuous feeder which, having at least two reservoir tanks into which the reusable blasting medium picked apart by the picking-apart unit is inputted, changes over the two tanks between each other to continuously feed the nozzle with the blasting medium deposited in the tanks; and a carrier which carries to the continuous feeder the reusable blasting medium sorted by the sorting unit.

    摘要翻译: 本发明提供一种海绵喷砂装置,包括:回收单元,其吸收并回收从喷嘴喷出的喷射介质; 分选单元,其将由所述回收单元吸入和回收的喷射介质分类成可再利用的喷射介质和不可使用的喷砂介质; 鼓风机,其通过分拣单元向回收单元提供吸力; 除尘器,其利用鼓风机的吸力除去从分拣单元排出的废气中的灰尘; 拾取单元,其分离由分选单元分选的可重复使用的爆破介质; 连续进料器,其具有至少两个储存罐,其中输入由分选单元拾取的可重复使用的喷砂介质,两个罐之间相互改变,以使沉积在罐中的喷砂介质连续地供给喷嘴; 以及承载器,其携带由分选单元分选的可重复使用的爆破介质的连续进料器。

    Clock monitoring apparatus
    10.
    发明授权
    Clock monitoring apparatus 有权
    时钟监控装置

    公开(公告)号:US06670839B2

    公开(公告)日:2003-12-30

    申请号:US10242415

    申请日:2002-09-13

    申请人: Takashi Kitahara

    发明人: Takashi Kitahara

    IPC分类号: H03K522

    CPC分类号: G06F1/04 H03K5/19

    摘要: A clock monitoring apparatus according to the invention including a main clock monitoring portion including a first counter for counting a main clock, issuing a normal operation confirming flag indicating that a normal operation is being carried out when the first counter is overflowed or reaches a previously determined set value, monitoring the normal operation confirming flag by a sub clock, issuing a first main clock stop flag having an output in correspondence with H (high level)/L (low level) of the normal operation confirming flag and a main clock initializing signal for initializing the main clock when the main clock is determined to stop and resetting the first main clock stop flag when the main clock is recovered by receiving the main clock initializing signal, and a sub clock switching control portion including a second counter for counting a signal output produced by calculating a logical sum of the sub clock and the first main clock stop flag at fall of the sub clock at a time point of generating the first main clock stop flag, switching to a sub clock operation by issuing a sub clock switching signal when the second counter output is overflowed or reaches a previously determined set value and resetting the second counter output when the main clock is recovered and a second main clock stop flag produced by inverting the first main clock stop flag and delaying the sub clock by a predetermined period by a main clock monitoring portion, is reset.

    摘要翻译: 根据本发明的时钟监视装置包括主时钟监视部分,其包括用于对主时钟进行计数的第一计数器,当第一计数器溢出时发出指示正在执行正常操作的正常操作确认标志,或达到预先确定的 设定值,通过子时钟监视正常运行确认标志,发出具有与正常运行确认标志的H(高电平)/ L(低电平)对应的输出的第一主时钟停止标志和主时钟初始化信号 当通过接收主时钟初始化信号恢复主时钟时,当主时钟被确定为停止并复位第一主时钟停止标志时,初始化主时钟,以及子时钟切换控制部分,其包括用于对信号进行计数的第二计数器 通过在子时钟的at at处计算子时钟和第一主时钟停止标志的逻辑和来产生的输出 产生第一主时钟停止标志的第一点,当第二计数器输出溢出时发出子时钟切换信号或达到预先确定的设定值并在主时钟被恢复时复位第二计数器输出,切换到子时钟操作 并且通过将第一主时钟停止标志反相并通过主时钟监视部分将子时钟延迟预定周期而产生的第二主时钟停止标志被复位。