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    • 3. 发明申请
    • Electronically Controlled Vacuum Pump
    • 电子控制真空泵
    • US20080267790A1
    • 2008-10-30
    • US12170802
    • 2008-07-10
    • Peter W. GaudetRobert J. LepofskyAlan L. WeeksGerald J. FortierStephen R. MatteMartin SteinSteven C. Rosner
    • Peter W. GaudetRobert J. LepofskyAlan L. WeeksGerald J. FortierStephen R. MatteMartin SteinSteven C. Rosner
    • F04B23/08
    • F04D27/00F04B37/08F04B49/065F04D19/04Y10S417/901
    • A vacuum system comprises, as an integral assembly, a vacuum pump with drive motor, a purge valve, a roughing valve and an electronic control module. A cryogenic vacuum pump and a turbomolecular vacuum pump are disclosed. The control module has a programmed processor for controlling the motor and valves and is user programmable for establishing specific control sequences. The integral electronic control module is removable from the assembly and is connected to the other devices through a common connector assembly. In the turbomolecular pump system proper introduction of a purge gas through the purge valve is detected by detecting the current load on the pump drive or by detecting foreline pressure. To test the purge gas status, the purge valve may be closed and then opened as drive current or pressure is monitored. After power failure, the controller will continue normal drive of the turbomolecular pump so long as the speed of the pump has remained above a threshold value. Otherwise the vent valve will have been opened, and a start-up sequence must be initiated. During shutdown, power to the pump drive motor is discontinued and the vent valve is opened before the roughing valve is closed.
    • 真空系统包括作为整体组件的具有驱动电动机,净化阀,粗抽阀和电子控制模块的真空泵。 公开了一种低温真空泵和涡轮分子真空泵。 控制模块具有用于控制电动机和阀的编程处理器,并且是用户编程的,用于建立特定的控制顺序。 集成电子控制模块可从组件移除,并通过公共连接器组件连接到其他设备。 在涡轮分子泵系统中,通过检测泵驱动器上的当前负载或通过检测前级管路压力来检测净化气体通过净化阀的适当引入。 为了测试吹扫气体状态,可以关闭吹扫阀,然后在监视驱动电流或压力时打开。 停电后,只要泵的速度保持在阈值以上,控制器将继续正常驱动涡轮分子泵。 否则排气阀将被打开,启动顺序必须启动。 在停机期间,停止对泵驱动电机供电,并在排气阀关闭前打开排气阀。
    • 4. 发明授权
    • High capacity cryopump
    • 高容量低温泵
    • US6155059A
    • 2000-12-05
    • US229721
    • 1999-01-13
    • Stephen R. MatteAllen J. Bartlett
    • Stephen R. MatteAllen J. Bartlett
    • F04B37/08B01D8/00
    • F04B37/08
    • A cryopump including a radiation shield having an interior surrounded by at least one wall. The radiation shield has an opening through which gases are cryopumped into the interior. A frontal cryopanel array is positioned near the opening for condensing high boiling point gases. The radiation shield and frontal cryopanel array are cooled to a first temperature. First primary cryopanel surfaces extend near the wall within the interior of the radiation shield and are cooled to a second temperature below the first temperature for condensing low boiling point gases near the wall while leaving a central gas flow pathway from the opening past the first primary cryopanel surfaces. Second primary cryopanel surfaces cooled to about the second temperature are positioned within the interior of the radiation shield and include adsorbent for adsorbing very low boiling point gases. The first primary cryopanel surfaces limit the amount of low boiling point gases condensing on the second primary cryopanel surfaces while leaving open the central gas flow pathway to the second primary cryopanel surfaces.
    • 一种低温泵,其包括具有由至少一个壁围绕的内部的辐射屏蔽。 辐射屏蔽有一个开口,气体通过该开口被低温泵入内部。 前端冷冻板阵列位于开口附近,用于冷凝高沸点气体。 将辐射屏蔽和正面低温板阵列冷却至第一温度。 第一个初级低温板表面在辐射屏蔽内部的壁附近延伸,并被冷却到低于第一温度的第二温度,用于冷凝壁附近的低沸点气体,同时留下从第一主冷冻板开口的中心气体流动路径 表面。 冷却至约第二温度的第二主要冷冻板表面位于辐射屏蔽的内部,并且包括用于吸附极低沸点气体的吸附剂。 第一个初级冷冻板表面限制了冷凝在第二个初级冷冻盘表面上的低沸点气体的量,同时使中心气体流动通道打开到第二个主要低温板表面。