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    • 64. 发明申请
    • Apparatus for processing substrate in chamber and maintenance method therefor
    • 用于处理室内基板的装置及其维护方法
    • US20050051102A1
    • 2005-03-10
    • US10931434
    • 2004-09-01
    • Toru SatoJun Watanabe
    • Toru SatoJun Watanabe
    • H01L21/31C23C16/44C23C16/48H01L21/26H01L21/304C23C16/00
    • C23C16/481C23C16/4401
    • A thermal processing apparatus (1) comprises a chamber body (6) having an upper opening (60), a transparent plate attached to the upper opening (60) to close the upper opening (60), a holding part (7) for holding and heating a substrate in the inside of the chamber body (6) and a holding-part moving mechanism (4) for moving the holding part (7) up and down. In performing maintenance of the thermal processing apparatus (1), the transparent plate is removed from the chamber body (6) and then the holding part (7) is moved by the holding-part moving mechanism (4) up to a position where a lower surface (77) of the holding part (7) is higher than an upper surface (69) of an edge of the upper opening (60). This allows maintenance for the inside of the chamber body (6) from a gap (601) between the holding part (7) and the chamber body (6) without removing the holding part (7) from the chamber body (6).
    • 一种热处理装置(1)包括具有上开口(60)的室主体(6),附接到上开口(60)以封闭上开口(60)的透明板,用于保持的保持部(7) 以及加热室主体(6)内部的基板和用于上下移动保持部(7)的保持部移动机构(4)。 在进行热处理装置(1)的维护时,从室主体(6)移除透明板,然后通过保持部移动机构(4)将保持部(7)移动到 保持部(7)的下表面(77)高于上开口(60)的边缘的上表面(69)。 这允许从保持部分(7)和腔室主体(6)之间的间隙(601)维持腔体(6)的内部,而不从腔体(6)移除保持部分(7)。
    • 68. 发明授权
    • Emergency resuscitation apparatus
    • 紧急复苏装置
    • US5392774A
    • 1995-02-28
    • US148912
    • 1993-11-05
    • Toru Sato
    • Toru Sato
    • A61M16/04A61M16/00
    • A61M16/04A61M16/0409A61M16/0456A61M16/0459
    • An emergency resuscitation endoesophageal airway comprises an arch-shaped respiration tube closed at a distal end but opened at a proximal end; a first inflatable balloon of a rubber-like elastic material attached to the respiration tube at a position close to the distal end thereof for closing an esophagus of a patient; a second inflatable balloon of a flexible synthetic resin attached to the respiration tube at a position spaced from the proximal end thereof for closing a pharynx of the patient; and first and second inflating tubes for inflating the first and second inflatable balloons. The respiration tube is provided with air holes between the first and second inflatable balloons but rather near the second inflatable balloon, and the second inflatable balloon is so designed as to expand in both longitudinal and radial directions to an extent much greater than the first inflatable balloon.
    • 紧急复苏内食管气道包括在远端封闭但在近端开口的弓形呼吸管; 在接近其远端的位置处附接到呼吸管的橡胶状弹性材料的第一可充气气囊,用于封闭患者的食道; 柔性合成树脂的第二可膨胀气囊,其在与其近端隔开的位置附接到呼吸管,用于封闭患者的咽; 以及用于使第一和第二可膨胀气球膨胀的第一和第二充气管。 呼吸管在第一和第二可膨胀气囊之间设置有空气孔,但是靠近第二可充气气囊,并且第二可充气气囊被设计成在纵向和径向两个方向上扩展到比第一可充气球囊大得多的程度 。
    • 70. 发明授权
    • Breath-synchronized concentrated-oxygen supplier
    • 呼吸同步浓氧供应商
    • US4681099A
    • 1987-07-21
    • US797654
    • 1985-11-13
    • Toru SatoNaoto OkazakiKatsumasa Fujii
    • Toru SatoNaoto OkazakiKatsumasa Fujii
    • A61M16/00A61M16/06A61M16/10
    • A61M16/00A61M16/0677A61M16/101A61M2016/0021A61M2205/42
    • A breath-synchronized concentrated-oxygen supplier comprising an oxygen concentrator for producing and storing oxygen-enriched gas, and a buffer tank having an inlet connected to the oxygen concentrator and an outlet for temporarily storing the oxygen-enriched gas obtained from the concentrator. A valve is mounted in the outlet of the buffer tank so as to control flow of the oxygen-enriched gas from the buffer tank to the respiratory system of a living body, the valve having a gas flow path that is open to the atmosphere. A sensor, provided for sensing the respiration of the living body, generates an output signal indicative of the inhalation and exhalation phases of the respiration. An input device, on which a ratio between the entire length of the inhalation phase and a specific end portion thereof is set is included as is a regulator responsive to the sensor and input device for detecting the duration of each inhalation phase in succession based on the output signal from the sensor. The regulator also opens the valve at the beginning of each inhalation phase, and maintains the open time of the valve based on a period determined by a combination of averaging the preceding inhalation durations and the ratio set on the input device. Oxygen-enriched gas is supplied to the living body during each inhalation phase except for the specific end portion thereof, and the buffer tank acts to make the initial flow rate of the oxygen-enriched gas higher than the steady flow rate thereof in each inhalation phase.
    • 一种呼吸同步的浓氧供应器,包括用于产生和存储富氧气体的氧浓缩器,以及具有连接到氧浓缩器的入口的缓冲罐和用于暂时存储从浓缩器获得的富氧气体的出口。 阀安装在缓冲罐的出口中,以控制富氧气体从缓冲罐到活体呼吸系统的流动,该阀具有对大气开放的气体流路。 提供用于感测生物体的呼吸的传感器产生指示呼吸的吸入和呼出阶段的输出信号。 包括其中设定吸入相的整个长度与其特定端部之间的比率的输入装置,其中响应于传感器和输入装置的调节器,依次检测每个吸入阶段的持续时间,基于 来自传感器的输出信号。 调节器还在每个吸入阶段开始时打开阀门,并且基于通过对先前吸入持续时间的平均值和输入设备上设定的比率的组合确定的时间段来维持阀门的打开时间。 在每个吸入阶段除了其特定的末端部分之外,在生物体中供给富氧气体,缓冲罐的作用是在每个吸入阶段使富氧气体的初始流量高于其稳定流量 。