IP Library Granted Patent US 8,203,343
Granted Patent B1
US 8,203,343 · App. 11/248,539 · Granted Jun 19, 2012

Reconfigurable portable locator employing multiple sensor array having flexible nested orthogonal antennas

Assignee: SeekTech, Inc.
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Quick Facts
Patent No.
US 8,203,343
App. No.
11/248,539
Granted
Jun 19, 2012
Kind
B1
Abstract

A portable locator for detecting a buried object characterized by an electromagnetic (EM) field emission employing three-dimensional (3D) sensor arrays each having three substantially-identical EM field sensors disposed on a flexible annular wall having a radial centroid defining a sensing axis. The flexible annular sensors are retained in substantial concentricity with the corresponding sensing axes disposed in substantial mutual orthogonality. A pair of 3D sensor arrays disposed on a first axis substantially orthogonal to a second axis defied by another pair of EM field sensors each having a sensing axis disposed along the second axis. The locator introduces a user-reconfigurable user interface (UI) employing a “sticky” ratcheting audio UI and a hollow hinge assembly for redisposing the sensor assembly from an operating to a storage disposition.

Claims (40)

1. A human-portable locator apparatus for locating a buried object characterized by an electromagnetic (EM) field emission, comprising:

a housing;

a sensor array connected to the housing including three substantially-identical EM field sensors each having at least one conductive coil with an outer side and an inner side disposed on a deformable annular wall having a radial centroid defining a sensing axis, said three EM field sensors each having a substantially identical longitudinal height dimension, a substantially identical radial thickness dimension, and a substantially identical circumference dimension;

a structure for supporting the three substantially-identical EM field sensors such that the corresponding sensing axes are disposed in substantial mutual orthogonality and the corresponding conductive coils are disposed in substantial concentricity; and

a circuit operatively coupled to the sensor array for detecting and reporting the EM field emission.

2. The locator apparatus of claim 1 and further comprising:

in each EM field sensor, a flexible printed-circuit board (PCB) affixed to the deformable annular wall and including a signal contact pad conductively coupled to the conductive coil.

3. The locator apparatus of claim 2 and further comprising:

in each EM field sensor, an electrostatic (ES) shield including a conductive layer disposed over the outer side of the conductive coil; and

in the respective flexible PCB, a ground contact pad coupled to the ES shield.

4. The locator apparatus of claim 3 and further comprising:

a signal conductor coupled between each of the PCB signal contact pads and the circuit, whereby sensor signals are transmitted from the sensor array to the circuit; and

a ground conductor coupled between each of the PCB ground contact pads and an apparatus electrical ground, whereby the ES shields are maintained at ground potential.

5. The locator apparatus of claim 1 and further comprising:

in each EM field sensor, an electrostatic (ES) shield including a conductive layer disposed over the outer side of the conductive coil.

6. A human-portable locator apparatus for locating a buried object characterized by an electromagnetic (EM) field emission, comprising:

a housing;

a sensor array connected to the housing including three substantially-identical EM field sensors each having at least one conductive coil with an outer side and an inner side disposed on a deformable annular wall defining a sensing axis, and a flexible printed-circuit board (PCB) affixed to the deformable annular wall and including a signal contact pad conductively coupled to the conductive coil;

a structure for supporting the three substantially-identical EM field sensors such that the corresponding sensing axes are disposed in substantial mutual orthogonality and the corresponding conductive coils are disposed in substantial concentricity; and

a circuit operatively coupled to the sensor array for detecting and reporting the EM field emission.

7. The locator apparatus of claim 6 and further comprising:

in each EM field sensor, an electrostatic (ES) shield including a conductive layer disposed over the outer side of the conductive coil; and

in the respective flexible PCB, a ground contact pad coupled to the ES shield.

8. The locator apparatus of claim 7 and further comprising:

a signal conductor coupled between each of the PCB signal contact pads and the circuit, whereby sensor signals are transmitted from the sensor array to the circuit; and

a ground conductor coupled between each of the PCB ground contact pads and an apparatus electrical ground, whereby the ES shields are maintained at ground potential.

9. The locator apparatus of claim 6 and further comprising:

in each EM field sensor, an electrostatic (ES) shield including a conductive layer disposed over the outer side of the conductive coil.

10. A human-portable locator apparatus for locating a buried object characterized by an electromagnetic (EM) field emission, comprising:

a housing;

a sensor array connected to the housing including three substantially-identical EM field sensors each having at least one conductive coil with an outer side and an inner side disposed on a deformable annular wall defining a sensing axis, and in each EM field sensor, an electrostatic (ES) shield including a conductive layer disposed over the outer side of the conductive coil;

a structure for supporting the three substantially-identical EM field sensors such that the corresponding sensing axes are disposed in substantial mutual orthogonality and the corresponding conductive coils are disposed in substantial concentricity; and

a circuit operatively coupled to the sensor array for detecting and reporting the EM field emission.

11. The locator apparatus of claim 10 and further comprising:

in each EM field sensor, a flexible printed-circuit board (PCB) affixed to the deformable annular wall and including a signal contact pad conductively coupled to the conductive coil.

12. The locator apparatus of claim 11 and further comprising:

in the respective flexible PCB, a ground contact pad coupled to the electrostatic (ES) shield.

13. The locator apparatus of claim 11 and further comprising:

a signal conductor coupled between each of the PCB signal contact pads and the circuit, whereby sensor signals are transmitted from the sensor array to the circuit; and

a ground conductor coupled between each of the PCB ground contact pads and an apparatus electrical ground, whereby the electrostatic (ES) shields are maintained at ground potential.

Assignments (2)
CHANGE OF NAME Recorded Apr 25, 2006
From: DEEPSEA POWER & LIGHT, INC.
To: SEEK TECH, INC.
Reel/Frame 017811/0141 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 9, 2006
From: OLSSON, MARK S.; STUART, PAUL G.; COX, DAVID A.; MEREWETHER, RAY; SHAFFER, DAWN E.; LEVIN, RYAN B.; MARTIN, MICHAEL J.
To: DEEPSEA POWER & LIGHT
Reel/Frame 017463/0141 →