IP Library Granted Patent US 6,989,662
Granted Patent B2
US 6,989,662 · App. 10/835,654 · Granted Jan 24, 2006

Sensor auto-recalibration

Assignee: Zircon Corporation
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Quick Facts
Patent No.
US 6,989,662
App. No.
10/835,654
Granted
Jan 24, 2006
Kind
B2
Abstract

A sensor and method that detects a mis-calibration and automatically recalibrates itself without operator intervention. If the sensor determines that it was calibrated over an object such as a stud, the sensor may automatically update the calibration value with a new lower value without operator intervention. This process may repeat until the calibration value is set to a value that represents the wall covering alone without hidden objects behind it.

Claims (94)

1. A method of recalibrating a stud sensing device for finding a location of a stud positioned behind a surface, the method comprising the acts of:

holding the stud sensing device at a first location on the surface;

placing the stud sensing device in an calibration mode;

sensing a first density at the first location in the calibration mode;

setting a calibration value based on the first sensed density;

placing the stud sensing device in an operating mode;

moving the stud sensing device to a second location on the surface;

sensing a second density at the second location;

setting a second density value based on the second sensed density;

the stud sensing device determining if it was calibrated over or near a stud; and

the stud sensing device recalibrating itself if it determined that the stud sensing device was calibrated over or near the stud.

2. The method of claim 1 , wherein the act of determining if the stud sensing device was calibrated over or near the stud includes:

comparing the calibration value to the second density value; and

determining that the stud sensing device was calibrated over or near the stud if the second density value is more than a threshold amount less than the calibration value.

3. The method of claim 1 , wherein the act of determining if the stud sensing device was calibrated over or near the stud includes:

comparing the calibration value to the second density value; and

determining that the stud sensing device was calibrated over or near the stud if the second density value is between a first threshold amount under the calibration value and a second threshold amount less than the calibration value.

4. The method of claim 3 , wherein the second threshold amount is an offset value from the calibration value.

5. The method of claim 3 , wherein the second threshold amount is a constant value.

6. The method of claim 1 , wherein the act of recalibrating the stud sensing device includes the stud sensing device resetting the calibration value based on the second density value.

7. The method of claim 6 , wherein the act of resetting the calibration value based on the second density value includes the stud sensing device setting the calibration value equal to the second density value.

8. The method of claim 6 , wherein the act of resetting the calibration value based on the second density value includes the stud sensing device decreasing the calibration value by a fraction of a difference between the calibration value and the second density value.

9. The method of claim 1 , further comprising the acts of:

moving the stud sensing device to a new location on the surface;

sensing a new density at the new location;

resetting the second density value based on the new sensed density;

the stud sensing device determining if it was recalibrated over or near the stud; and

the stud sensing device recalibrating itself if it determined that the stud sensing device was calibrated over or near the stud.

10. The method of claim 1 , further comprising the act of indicating to a user when the stud sensing device is recalibrated.

11. The method of claim 10 , wherein the act of indicating includes providing both an audible and visible indication to the user.

12. A stud sensing device capable of automatically recalibrating if it has erroneously been calibrated at a location over or near a stud, the stud sensing device comprising:

a first memory adapted to hold a calibration value;

a second memory adapted to hold a sensed value;

a sensor adapted to be applied to a surface, thereby determining a density behind the surface and providing the sensed value, wherein the sensor is operationally coupled to the second memory;

a comparator adapted to compare the first memory location to the second memory location, thereby determining if the calibration value represents a value sensed over or near the stud, wherein the comparator is operationally coupled to the first and second memories; and

an updater adapted to update the first memory with an updated calibration value, wherein the updater is operationally coupled to an output of the comparator.

13. The sensor of claim 12 , further comprising a controller adapted to coordinate operation of the sensor, the comparator and the updater.

14. The sensor of claim 12 , further comprising an indicator adapted to indicate to a user when the first memory changes, wherein the indicator is operationally coupled to the output of the comparator.

15. The sensor of claim 12 , wherein the stud sensing device updates the calibration value without operator intervention.

16. The method of claim 1 , wherein the device recalibrates itself by updating a calibration value without user intervention.

17. A method of recalibrating a stud sensing device for finding a location of a stud positioned behind a surface, the method comprising the acts of:

holding the stud sensing device at a first location on the surface;

placing the stud sensing device in an calibration mode;

sensing a first density at the first location in the calibration mode;

setting a calibration value based on the first sensed density;

placing the stud sensing device in an operating mode;

moving the stud sensing device to a second location on the surface;

sensing a second density at the second location;

setting a second density value based on the second sensed density;

determining whether the stud sensing device was calibrated over or near a stud;

recalibrating the stud sensing device if the stud sensing device was calibrated over or near the stud;

wherein the act of determining whether the stud sensory device was calibrated over or near a stud includes:

comparing the calibration value to the second density value; and

determining that the stud sensing device was calibrated over or near the stud if the second density value is more than a threshold amount less than the calibration value.

18. A method of recalibrating a stud sensing device for finding a location of a stud positioned behind a surface, the method comprising the acts of:

holding the stud sensing device at a first location on the surface;

placing the stud sensing device in an calibration mode;

sensing a first density at the first location in the calibration mode;

setting a calibration value based on the first sensed density;

placing the stud sensing device in an operating mode;

moving the stud sensing device to a second location on the surface;

sensing a second density at the second location;

setting a second density value based on the second sensed density;

determining whether the stud sensing device was calibrated over or near a stud;

recalibrating the stud sensing device if the stud sensing device was calibrated over or near the stud;

wherein the act of determining whether the stud sensory device was calibrated over or near a stud includes:

comparing the calibration value to the second density value; and

determining that the stud sensing device was calibrated over or near the stud if the second density value is between a first threshold amount under the calibration value and a second threshold amount less than the calibration value.

19. A method of recalibrating a stud sensing device for finding a location of a stud positioned behind a surface, the method comprising the acts of:

holding the stud sensing device at a first location on the surface;

placing the stud sensing device in an calibration mode;

sensing a first density at the first location in the calibration mode;

setting a calibration value based on the first sensed density;

placing the stud sensing device in an operating mode;

moving the stud sensing device to a second location on the surface;

sensing a second density at the second location;

setting a second density value based on the second sensed density;

determining whether the stud sensing device was calibrated over or near a stud;

recalibrating the stud sensing device if the stud sensing device was calibrated over or near the stud;

wherein the act of recalibrating the stud sensing device includes resetting the calibration value based on the second density value; and

wherein the act of resetting the calibration value based on the second density value includes setting the calibration value equal to the second density value.

20. A method of recalibrating a stud sensing device for finding a location of a stud positioned behind a surface, the method comprising the acts of:

holding the stud sensing device at a first location on the surface;

placing the stud sensing device in an calibration mode;

sensing a first density at the first location in the calibration mode;

setting a calibration value based on the first sensed density;

placing the stud sensing device in an operating mode;

moving the stud sensing device to a second location on the surface;

sensing a second density at the second location;

setting a second density value based on the second sensed density;

determining whether the stud sensing device was calibrated over or near a stud;

recalibrating the stud sensing device if the stud sensing device was calibrated over or near the stud;

wherein the act of recalibrating the stud sensing device includes resetting the calibration value based on the second density value; and

wherein the act of resetting the calibration value based on the second density value includes decreasing the calibration value by a fraction of a difference between the calibration value and the second density value.

Assignments (2)
SECURITY AGREEMENT Recorded Jun 3, 2024
From: ZIRCON CORPORATION
To: FGI WORLDWIDE LLC
Reel/Frame 067606/0099 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2004
From: HEGER, CHARLES E.; MILLER, LAWRENCE F.
To: ZIRCON CORPORATION
Reel/Frame 015287/0446 →
Continuity (1)
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