Claims
- 1. A measurement device comprising,a pair of legs, each leg having a measurement point and a fulcrum end, the fulcrum ends each providing a pivot point for a respective one of said legs so that the measurement points are adapted to arcuately move apart from one another; a transducer assembly connected to at least one of the legs and adapted to measure leg displacement and generate a distance signal; a programmable processing unit adapted to process the distance signal and display a distance measurement on an electronic display; and a control for selecting a scale value so that the programmable processing unit compensates for a scale associated with a measurement taken between the measurement points and displays an unscaled measurement on the display, wherein the scale lacks predetermined scale values, such that the scale value is set, based on said measurement, to any value within a given range.
- 2. The measurement device according to claim 1, wherein the transducer assembly is an optical sensor adapted to sense motion of a wheel, the wheel being actuated by at least one of the legs.
- 3. The measurement device according to claim 2, wherein the wheel has a series of scores, the scores being counted by the optical sensor as the wheel is actuated.
- 4. The measurement device according to claim 1, wherein the programmable processing unit is programmed to compensate for an arcuate path of the measurement points.
- 5. The measurement device according to claim 1, wherein the legs move independently of each other.
- 6. The measurement device according to claim 1, further comprising a gearing assembly connected to each of the legs so that movement of the legs depend on each other.
- 7. The measurement device according to claim 1, wherein the distance signal generated by the transducer is an analog distance signal and an analog to digital converter converts the analog distance signal to a digital distance signal for use by the programmable processing unit.
- 8. The measurement device according to claim 1, further comprising a mode selection button for selecting a measurement output mode.
- 9. The measurement device according to claim 8, wherein the measurement output mode is selected from a set of modes, the set of modes including English measurements, metric measurements and comparative measurements.
- 10. The measurement device according to claim 1, further comprising a calibrate control for calibrating the measurement device to a known distance as measured between the measurement points whereby the scale is automatically set based upon the known distance.
- 11. The measurement device according to claim 1, further comprising an output port for transmitting a distance measurement signal to a peripheral device.
- 12. The measurement device according to claim 1, further comprising an input port for programming the measurement device.
- 13. The measurement device according to claim 1, further comprising a handle, the handle adapted to prevent movement of the legs.
- 14. A measurement device comprising,a pair of legs, each leg having a measurement point and a fulcrum end, the fulcrum ends each providing a pivot point for the respective legs so that the measurement points are adapted to arcuately move apart from one another; a transducer assembly connected to at least one of the legs and adapted to measure leg displacement and generate a distance signal, the transducer assembly being an optical sensor adapted to sense motion of a wheel, the wheel being actuated by at least one of the legs, and the distance signal being an analog distance signal; an analog to digital converter for converting the analog distance signal to a digital distance signal; a programmable processing unit adapted to process the digital distance signal and display a distance measurement on an electronic display; a mode selection control for selecting a measurement output mode; a scale control, the scale control for selecting a scale value so that the programmable processing unit compensates for a scale associated with a measurement taken between the measurement points and displays an unscaled measurement on the display, wherein the scale lacks predetermined scale values, such that the scale value is set, based on said measurement, to any value within a given range; an output port for transmitting a distance measurement signal to a peripheral device; a handle, the handle adapted to prevent movement of the legs; and a housing, the housing for retaining the fulcrum ends and the handle; and the display, the mode selection control, the calibrate control, the scale control, and the output port being mounted on the housing.
- 15. The measurement device according to claim 14, wherein the wheel has a series of scores, the scores being counted by the optical sensor as the wheel is actuated.
- 16. The measurement device according to claim 14, wherein the programmable processing unit is programmed to compensate for an arcuate path of the measurement points.
- 17. The measurement device according to claim 14, wherein the legs move independently of each other.
- 18. The measurement device according to claim 14, further comprising a gearing assembly connected to each of the legs so that movement of the legs depend on each other.
- 19. The measurement device according to claim 14, wherein the measurement output mode is selected from a set of modes, the set of modes including English measurements, metric measurements and comparative measurements.
- 20. A measurement device comprising,a pair of legs, each leg having a measurement point and a fulcrum end, the fulcrum ends each providing a pivot point for a respective one of said legs so that the measurement points are adapted to arcuately move apart from one another; a transducer assembly connected to at least one of the legs and adapted to measure leg displacement and generate a distance signal; a programmable processing unit adapted to process the distance signal and display a distance measurement on an electronic display, wherein a scale value lacks predetermined values so that the scale value can be any value within a given range, such that the programmable processing unit compensates for a scale associated with a measurement taken between the measurement points and displays an unscaled measurement on the display; and a control for calibrating the measurement device to a known distance as measured between the measurement points whereby the scale is automatically adjusted.
Parent Case Info
This application claims the benefit of U.S. Provisional Application No. 60/082,239, filed Apr. 16, 1998.
US Referenced Citations (20)
Non-Patent Literature Citations (1)
Entry |
Precision Technology Devices, Inc. Brochure, AccuTracker, Aug. 11, 1996. |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/082239 |
Apr 1998 |
US |