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    • 2. 发明授权
    • Automated electronic vacuum system and method
    • 自动电子真空系统及方法
    • US07356872B2
    • 2008-04-15
    • US10389162
    • 2003-03-14
    • Terry G. JonesJames M. WarrenChristian GerardPhilip LeveridgeHoyet H. Andrews, IIIJeffrey J. Spurgat
    • Terry G. JonesJames M. WarrenChristian GerardPhilip LeveridgeHoyet H. Andrews, IIIJeffrey J. Spurgat
    • A47L5/38
    • A47L7/0047A47L5/38
    • A vacuum device has a housing. The housing forms an inlet opening and an outlet opening. The housing also forms a viewable compartment for retaining refuse vacuumed by the device. A vacuum motor is located in the housing. The vacuum motor has a suction inlet and a vent outlet. The suction inlet is connected to the viewable compartment. The suction inlet is also connected to the inlet opening of the housing. The vent outlet of the vacuum motor is to the outlet opening of the housing. An electric circuit of the device is connected to the vacuum motor. The electric circuit is connected to a sensor and includes a microcontroller. The sensor, for example, an infrared beam and detector, triggers the electric circuit, and programmed control by the microcontroller, when the beam is broken and not detected by the detector. When the beam is broken, the sensor signals the microcontroller and the microcontroller logically powers-on the vacuum motor to suction the refuse into the housing.
    • 真空装置具有壳体。 壳体形成入口开口和出口开口。 外壳还形成一个可视隔间,用于保持设备抽真空的垃圾。 真空马达位于外壳中。 真空马达具有吸入口和通风口。 吸入口连接到可视隔间。 吸入口也连接到壳体的入口。 真空马达的通风口到达外壳的出口。 设备的电路连接到真空电机。 电路连接到传感器并且包括微控制器。 传感器,例如红外光束和检测器,当光束被破坏而不被检测器检测到时,触发电路,由微控制器编程控制。 当光束断开时,传感器向微控制器发出信号,微控制器逻辑上启动真空电机将垃圾吸入壳体。