Weighing apparatus and method having automatic tolerance analysis and calibration
Abstract
A weighing apparatus and a method that features a lifting assembly connected between a calibrated load, having a weight associated therewith, and a frame, to vary an amount of the weight placed on the frame. A load-bearing member is coupled to the frame, and a load sensing system connected to the frame. The load sensing system is connected to sense the variance in the weight of the frame or the load supported by the load-bearing member. The lifting assembly operates to move the calibrated load between first and second positions. In the first position, the calibrated load is positioned spaced-apart from the frame and rests upon a surface to prevent the frame from being subjected to the mass of the calibrated load. Optimally, when placed in the first position, the load sensing system detects no load on the load-bearing member and the frame. In the second position, the calibrated load is positioned proximate to the frame. In this position, the load sensing system would sense a load equal to the amount of change in the mass, or weight, of the frame. The change in mass or weight of the frame is equivalent to the load placed thereon by the positioning of the calibrated load in the second position.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A weighing apparatus, comprising:
a frame; a load-bearing member coupled to said frame; a calibrated load having a weight associated therewith; a load sensing system connected to said frame; and a lifting assembly connected between said calibrated load and said frame, to vary an amount of said weight placed on said frame, defining a variance, with said load sensing system connected to sense said variance.
2 . The apparatus device as recited in claim 1 wherein said lifting assembly includes a pneumatic system having a piston connected between said frame and said calibrated load to move said calibrated load between first and second positions.
3 . The apparatus as recited in claim 1 wherein said calibrated load has an axis of symmetry and said lifting assembly includes a pneumatic system having a piston connected between said frame and said calibrated load to move said calibrated between first and second positions, said piston having a rod coupled to said calibrated load along said axis of symmetry.
4 . The apparatus as recited in claim 1 wherein said load sensing system includes a plurality of load sensors, with said plurality of load sensors being symmetrically disposed about said calibrated load.
5 . The apparatus as recited in claim 1 wherein said frame has a rectangular shape defining four joints and said load sensing system includes a plurality of loads sensors, with each of said four joints having one of said plurality of load sensors connected proximate thereto.
6 . The apparatus as recited in claim 1 wherein said frame has a rectangular shape defining four joints and said load sensing system includes a plurality of load sensors, with each of said four joints having one of said plurality of load sensors connected proximate thereto, said plurality of load sensors lying in a common plane.
7 . The apparatus as recited in claim 1 further including an additional load-bearing member, with both said additional load-bearing member and said load-bearing member defining a plurality of load-bearing members, with each of said plurality of load-bearing members being rotatably connected to said frame.
8 . A weighing apparatus, comprising:
a frame having a mass associated therewith; a load-bearing member coupled to said frame; a calibrated load having a weight associated therewith; load sensing system connected to said frame; and means, connected to said calibrated load and said frame, for selectively varying said mass, defining a variance, with said load sensing system being connected to sense said variance.
9 . The apparatus as recited in claim 8 wherein said means for selectively subjecting said frame to said weight includes a pneumatic system having a piston connected between said frame and said calibrated load to move said calibrated load between a first and a second position.
10 . The apparatus as recited in claim 9 wherein said calibrated load has an axis of symmetry and said piston includes a rod coupled to said calibrated load along said axis of symmetry.
11 . The apparatus as recited in claim 10 wherein said load sensing system include a plurality of load sensors, with said plurality of load sensors being symmetrically disposed about said calibrated load.
12 . The apparatus as recited in claim 11 wherein said frame has a rectangular shape defining four joints, with each of said four joints having one of said plurality of load sensors connected proximate thereto, said plurality of load sensors lying in a common plane.
13 . The apparatus as recited in claim 12 further including an additional load-bearing member, with both said additional load-bearing member and said load-bearing member defining a plurality of load-bearing members, with each of said plurality of load-bearing members being rotatably connected to said frame.
14 . A method of operating a weighing device of said type including a frame, having a mass associated therewith, a load-bearing member coupled to said frame, said method comprising:
subjecting said load-bearing member to a load; sensing said load with said load sensing system, defining a sensed load; verifying operational characteristics of said load sensing system; and calibrating said load sensing system by selectively varying said mass, defining a variance, and sensing said variance with said load sensing system.
15 . The method as recited in claim 14 wherein said load-bearing member is sequentially subjected to multiple loads, with verifying operational characteristics of said load sensing system occurring after said load-bearing member has been subjected to a predetermined number of said multiple loads.
16 . The method as recited in claim 14 wherein verifying operational characteristics of said load sensing system occurs periodically.
17 . The method as recited in claim 16 wherein verifying operational characteristics of said load sensing system occurs after a predetermined amount of time has lapsed
18 . The method as recited in claim 14 wherein said variance is proportional to five hundred pounds.
19 . The method as recited in claim 14 further including a means, connected to said load sensing system, for producing a visual representation of said sensed load.
20 . The method as recited in claim 19 wherein said means for producing a visual representation of said load is selected from the set consisting of a graphical display system, a printing system and a light emitting diode system.Join the waitlist — get patent alerts
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