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Extraction cleaning with optimal cleaning speed

  • US 6,800,140 B2
  • Filed: 01/11/2002
  • Issued: 10/05/2004
  • Est. Priority Date: 06/13/2000
  • Status: Expired due to Fees
First Claim
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1. An extraction surface cleaning apparatus having:

  • a housing;

    at least two wheels mounted to the housing for supporting the housing for movement along a surface to be cleaned;

    a liquid dispensing system mounted to the housing and including;

    a liquid dispensing nozzle for applying a cleaning fluid to the surface to be cleaned;

    a fluid supply chamber for holding a supply of cleaning fluid;

    a fluid supply conduit fluidly connected to the fluid supply chamber and to the dispensing nozzle for supplying cleaning fluid to the dispensing nozzle;

    a fluid recovery system mounted to the housing and including;

    a recovery chamber for holding recovered fluid, a suction nozzle, a working air conduit extending between the recovery chamber and the suction nozzle; and

    a vacuum source in fluid communication with the recovery chamber for generating a flow of working air from the suction nozzle through the working air conduit and through the recovery chamber to thereby draw dirty liquid from the surface to be cleaned through the suction nozzle and the working air conduit, and into the recovery chamber;

    a detector mounted on the housing for sensing the speed of the housing across the surface being cleaned and for generating a speed signal representative thereof;

    an output device mounted on the housing and coupled to the detector for displaying or audibly expressing the relative speed of the housing across the surface being cleaned;

    wherein the detector is aligned with and adjacent to one of the at least two wheels and is adapted to detect the rotational motion of the one of the at least two wheels without physically contacting the wheel; and

    a first disk portion mounted to the one of the at least two wheels for rotation therewith; and

    wherein the detector is aligned with and adjacent to the first disk portion adapted to generate a speed signal representative of the rotation of the first disk portion;

    the improvement comprising;

    wherein the first disk portion has alternating opposite-polarity magnetic segments thereon and the detector is adapted to sense the rotational speed of the first disk portion by detecting changes in the magnetic polarity of a particular segment of the first disk portion.

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