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 Spreader application rate monitoring device

Details
Inventors: Friedenberg, Leonald W.; Baker, James A.;
Assignee: Baker Engineering Enterprises Ltd. (Edmonton, CA)
Primary Examiner: Yasich; Daniel M.
Assistant Examiner:
Attorney, Agent or Firm: Johnson; Ernest Peter

A spreader application monitoring device to determine and display the volume of liquid or granular material applied per unit area of ground by mobile application equipment is described. The device includes a first measuring means which generates an area electrical pulse signal having a frequency proportional to the rate at which the application equipment covers i.e., traverses a unit of area, and a second measuring means which generates a volume electrical pulse signal having a frequency proportional to the rate of application of the material. A frequency multiplying means operates on the electrical pulses of the second measuring means, a pulse counting means being connected to the output of the frequency multiplying means and the first measuring means for accumulating the electrical pulses from the frequency multiplying means for a period of time determined by the first measuring means and corresponding to the time required by said application equipment to cover a unit of area. Display means indicates the above accumulated value of pulses which is a measure of the volume of material applied per unit area.

DETAILED DESCRIPTION The embodiments of the invention in which an exclusive property or privilege is claimed are defined as follows: 1.
Apparatus for monitoring the volume of fluent material applied per unit area by mobile application equipment, including a storage tank (100), dispensing means (111), and conduit means connecting the tank with the dispensing means, comprising (a) first measuring means (1) operatively connected with the mobile application equipment for generating an area electrical pulse signal (5) having a frequency proportional to the rate at which a unit of area is traversed by the application equipment; (b) second measuring means (2) including flow measuring means (110; 118) operatively connected in the conduit means for generating a volume electrical pulse signal having a frequency proportional to the rate at which a unit of volume of the material is applied by the application equipment; (c) electrical circuit means including frequency multiplying means (7) and calibration adjustment means (8) for multiplying said volume electrical pulse signal by a calibration factor that is determined from the size of the unit of volume; (d) pulse counting means (10) for accumulating pulses derived from said frequency multiplying means which are a function of the volume electrical pulse signal (6) for a period of time determined by said first measuring means and corresponding to the time required by said application equipment to cover a unit of area; and (e) display means (4) connected with said pulse counting means for indicating the number of pulses accumulated in said pulse counting means, whereby the resultant accumulated pulse value is proportional to the volume of material applied per unit area.
2.
A device as set forth in claim 1 wherein the first measuring means is attached to a wheel associated with the application equipment.
3.
A device as set forth in claim 1 wherein said pulse counting means accumulates said electrical pulses from said frequency multiplying means for a period of time corresponding to a number of pulses from said first measuring means



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