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
    • 3. 发明申请
    • GAS LASER OSCILLATOR AND GAS EXCHANGE METHOD FOR GAS LASER OSCILLATOR
    • 气体激光振荡器和气体激光振荡器的气体交换方法
    • US20130186476A1
    • 2013-07-25
    • US13878911
    • 2011-09-13
    • Naoki MiyamotoMototoshi Kumaoka
    • Naoki MiyamotoMototoshi Kumaoka
    • H01S3/036
    • H01S3/036H01S3/02H01S3/0401H01S3/0407H01S3/2232Y10T137/0396
    • The sealed gas laser oscillator that includes the airtight vessel, the laser gas supply source that supplies a laser gas to the airtight vessel, and the vacuum pump that performs evacuation until a pressure of an inside of the airtight vessel reaches a target reached pressure every predetermined interval between laser gas exchanges and is connected to the airtight vessel, and that performs laser oscillation in a state where the airtight vessel is filled with the laser gas. The gas laser oscillator includes a unit that determines the target reached pressure on the basis of the interval between laser gas exchanges, a leakage rate of an impurity gas from the outside to the airtight vessel after evacuation, and an allowable impurity gas pressure at which the gas laser oscillator is capable of being operated.
    • 包括气密容器的密封气体激光振荡器,向气密容器供应激光气体的激光气体供给源,以及在气密容器内部的压力达到目标之前进行抽真空的真空泵达到每个预定的压力 激光气体交换之间的间隔并连接到气密容器,并且在气密容器填充有激光气体的状态下进行激光振荡。 气体激光振荡器包括基于激光气体交换之间的间隔,排气后从外部到气密容器的杂质气体的泄漏率以及允许的杂质气体压力来确定目标到达压力的单元, 气体激光振荡器能够被操作。
    • 4. 发明授权
    • Gas laser oscillator and gas exchange method for gas laser oscillator
    • 气体激光振荡器和气体激光振荡器的气体交换方法
    • US08576891B2
    • 2013-11-05
    • US13878911
    • 2011-09-13
    • Naoki MiyamotoMototoshi Kumaoka
    • Naoki MiyamotoMototoshi Kumaoka
    • H01S3/20
    • H01S3/036H01S3/02H01S3/0401H01S3/0407H01S3/2232Y10T137/0396
    • The sealed gas laser oscillator that includes the airtight vessel, the laser gas supply source that supplies a laser gas to the airtight vessel, and the vacuum pump that performs evacuation until a pressure of an inside of the airtight vessel reaches a target reached pressure every predetermined interval between laser gas exchanges and is connected to the airtight vessel, and that performs laser oscillation in a state where the airtight vessel is filled with the laser gas. The gas laser oscillator includes a unit that determines the target reached pressure on the basis of the interval between laser gas exchanges, a leakage rate of an impurity gas from the outside to the airtight vessel after evacuation, and an allowable impurity gas pressure at which the gas laser oscillator is capable of being operated.
    • 包括气密容器的密封气体激光振荡器,向气密容器供应激光气体的激光气体供给源,以及在气密容器内部的压力达到目标之前进行抽真空的真空泵达到每个预定的压力 激光气体交换之间的间隔并连接到气密容器,并且在气密容器填充有激光气体的状态下进行激光振荡。 气体激光振荡器包括基于激光气体交换之间的间隔,排气后从外部到气密容器的杂质气体的泄漏率以及允许的杂质气体压力来确定目标到达压力的单元, 气体激光振荡器能够被操作。
    • 6. 发明申请
    • Transfusion Safety Device
    • 输血安全装置
    • US20070265559A1
    • 2007-11-15
    • US11662338
    • 2005-12-19
    • Takahiko KunishigeNaoki Miyamoto
    • Takahiko KunishigeNaoki Miyamoto
    • A61M5/00
    • A61M39/281A61M5/14228A61M5/16831A61M2205/14
    • A first object is to offer a safety device that allows to effectively solve problems regarding transfusion including free-flow issues in the case where the transfusion tube comes off from the transfusion pump, by employing a comparatively simple structure constructed at a low cost. A second object is to offer a safety device that can be newly added to an existing transfusion pump having no safety device. Specifically speaking, the case 100 in a tubular shape having a base, the compression spring 130, and the clamp 10 having the movable body 120 are set in the socket 20 having a cross-sectional shape of a square bracket. When the clamp 10 is set in the socket 20, the through-holes 101 and 121 become open, which allows distribution of fluid in the transfusion tube. On the other hand, when the clamp 10 becomes detached from the socket 20, the tension of the compression spring 130 causes the movable body 120 to slide, and the through-holes 101 and 121 are closed. As a result, the transfusion tube is blocked off, preventing the occurrence of a free flow.
    • 第一个目的是提供一种安全装置,通过采用以较低成本构造的比较简单的结构,能够有效地解决在输血管从输血泵中脱出的情况下的输血问题,包括自由流动问题。 第二个目的是提供一种可以新添加到没有安全装置的现有输液泵中的安全装置。 具体来说,具有底座的管状形状的壳体100,具有可移动体120的压缩弹簧130和夹具10设置在具有正方形支架的横截面形状的插座20中。 当夹具10设置在插座20中时,通孔101和121变得开放,这允许流体在输液管中分配。 另一方面,当夹具10从插座20脱离时,压缩弹簧130的张力使可动体120滑动,并且通孔101和121被关闭。 结果,输血管堵塞,防止自由流动的发生。