IP Library Granted Patent US 12,007,453
Granted Patent B2
US 12,007,453 · App. 16/862,919 · Granted Jun 11, 2024

Magnetic field generator for a magnetic field measurement system

Inventors: Jamu Alford (Simi Valley, CA); Michael Henninger (Austin, TX); Dakota Blue Decker (Culver City, CA); Stephen Garber (Santa Monica, CA); Jeffery Kang Gormley (Chatsworth, CA); Scott Michael Homan (Culver City, CA); Teague Lasser (Los Angeles, CA); Micah Ledbetter (Sunnyvale, CA); Jerry Leung (Marina Del Rey, CA); Hooman Mohseni (Wilmette, IL); Ethan Pratt (Santa Clara, CA); Scott Jeremy Seidman (Glenview, IL); Benjamin Siepser (Los Angeles, CA)
Assignee: HI LLC
G01R33/0082A61B5/0077A61B5/05A61B5/245A61B5/4064A61B5/6802A61B5/6803G01R33/0011G01R33/0017G01R33/0047G01R33/007G01R33/025G01R33/032G01R33/095G01R33/26H01F7/20H01F27/2804H01F27/36H05K1/18H05K9/0071A61B2562/0223A61B2562/04A61B2562/18A61B2562/222A61B2562/227H01F27/2866H05K2201/10151
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Quick Facts
Patent No.
US 12,007,453
App. No.
16/862,919
Granted
Jun 11, 2024
Kind
B2
Abstract

A magnetic field generator includes a plurality of conductive windings comprising a first conductive winding arranged in a first plane and a second conductive winding arranged in a second plane that is substantially parallel to the first plane. The plurality of conductive windings are configured to generate, when supplied with a drive current, a first component of a compensation magnetic field. The first component of the compensation magnetic field is configured to actively shield a magnetic field sensing region located between the first conductive winding and the second conductive winding from ambient background magnetic fields along a first axis that is substantially orthogonal to the first plane and the second plane.

Claims (60)

1. A magnetic field generator comprising:

a plurality of conductive windings comprising:

a first conductive winding arranged in a first plane, and

a second conductive winding arranged in a second plane that is substantially parallel to the first plane,

wherein:

the plurality of conductive windings are configured to generate, when supplied with a drive current, a first component of a compensation magnetic field, the first component of the compensation magnetic field being configured to actively shield a magnetic field sensing region located between the first conductive winding and the second conductive winding from ambient background magnetic fields along a first axis that is substantially orthogonal to the first plane and the second plane;

a winding pattern of the first conductive winding includes a first counter-winding configured to reduce a spatial extent of a first fringe magnetic field generated by the first conductive winding; and

a winding pattern of the second conductive winding includes a second counter-winding configured to reduce a spatial extent of a second fringe magnetic field generated by the second conductive winding.

2. The magnetic field generator of claim 1 , wherein the first component of the compensation magnetic field is configured to actively shield the magnetic field sensing region by reducing or canceling a first component of the ambient background magnetic fields, the first component of the ambient background magnetic fields being along the first axis.

3. The magnetic field generator of claim 2 , wherein the first component of the compensation magnetic field is substantially equal and opposite to the first component of the ambient background magnetic fields.

4. The magnetic field generator of claim 1 , further comprising a planar substrate,

wherein the first conductive winding is arranged on a first surface of the planar substrate and the second conductive winding is arranged on a second surface of the planar substrate.

5. The magnetic field generator of claim 1 , further comprising a first planar substrate and a second planar substrate,

wherein the first conductive winding is arranged on a surface of the first planar substrate and the second conductive winding is arranged on a surface of the second planar substrate.

6. The magnetic field generator of claim 5 , wherein the surface of the first planar substrate and the surface of the second planar substrate both face the magnetic field sensing region.

7. The magnetic field generator of claim 5 , wherein the surface of the first planar substrate and the surface of the second planar substrate both face away from the magnetic field sensing region.

8. The magnetic field generator of claim 5 , wherein each of the first planar substrate and the second planar substrate comprises a printed circuit board.

9. The magnetic field generator of claim 1 , wherein:

the plurality of conductive windings further comprises:

a third conductive winding arranged in a third plane, and

a fourth conductive winding arranged in a fourth plane, and

the third plane and the fourth plane are substantially parallel to the first plane and the second plane.

10. The magnetic field generator of claim 9 , further comprising a first planar substrate and a second planar substrate,

wherein:

the first conductive winding is arranged on a first surface of the first planar substrate, the first surface of the first planar substrate facing away from the magnetic field sensing region,

the second conductive winding is arranged on a first surface of the second planar substrate, the first surface of the second planar substrate facing away from the magnetic field sensing region,

the third conductive winding is arranged on a second surface of the first planar substrate, the second surface of the first planar substrate facing the magnetic field sensing region, and

the fourth conductive winding is arranged on a second surface of the second planar substrate, the second surface of the second planar substrate facing the magnetic field sensing region.

11. The magnetic field generator of claim 10 , wherein winding patterns of the plurality of conductive windings are substantially identical.

12. The magnetic field generator of claim 10 , wherein:

winding patterns of the first conductive winding and the second conductive winding are substantially identical,

winding patterns of the third conductive winding and the fourth conductive winding are substantially identical, and

the winding patterns of the first conductive winding and the second conductive winding are different from the winding patterns of the third conductive winding and the fourth conductive winding.

13. The magnetic field generator of claim 10 , wherein:

a winding pattern of the first conductive winding is different from a winding pattern of the second conductive winding, and

winding patterns of the third conductive winding and the fourth conductive winding are substantially identical.

14. The magnetic field generator of claim 1 , wherein the first conductive winding and the second conductive winding are configured to be supplied with the same drive current.

15. The magnetic field generator of claim 1 , wherein the first conductive winding is configured to be supplied with a first drive current and the second conductive winding is configured to be supplied with a second drive current that is different from the first drive current.

16. The magnetic field generator of claim 15 , wherein the plurality of conductive windings are further configured to generate, when the first conductive winding is supplied with the first drive current and the second conductive winding is supplied with the second drive current, a first gradient component of the compensation magnetic field, the first gradient component of the compensation magnetic field being configured to actively shield the magnetic field sensing region from ambient background magnetic fields that linearly vary along the first axis.

17. The magnetic field generator of claim 1 , further comprising:

a first planar substrate;

a second planar substrate positioned opposite to the first planar substrate and separated from the first planar substrate by a gap, the magnetic field sensing region being located in the gap;

a first wiring set disposed on the first planar substrate;

a second wiring set disposed on the second planar substrate; and

one or more interconnects positioned between the first planar substrate and the second planar substrate and that electrically connect the first wiring set with the second wiring set to form a first continuous electrical path,

wherein the first continuous electrical path forms a third conductive winding configured to generate, when supplied with a first additional drive current, a second component of the compensation magnetic field configured to actively shield the magnetic field sensing region from the ambient background magnetic fields along a second axis that is substantially orthogonal to the first axis.

18. The magnetic field generator of claim 17 , wherein the first conductive winding is arranged on the first planar substrate and the second conductive winding is arranged on the second planar substrate.

19. The magnetic field generator of claim 17 , further comprising a third planar substrate and a fourth planar substrate,

wherein the first conductive winding is arranged on the third planar substrate and the second conductive winding is arranged on the fourth planar substrate.

20. The magnetic field generator of claim 19 , wherein the first planar substrate and the second planar substrate are positioned between the third planar substrate and the fourth planar substrate.

21. The magnetic field generator of claim 17 , further comprising:

a third wiring set disposed on the first planar substrate; and

a fourth wiring set disposed on the second planar substrate;

wherein the one or more interconnects electrically connect the third wiring set with the fourth wiring set to form a second continuous electrical path; and

wherein the additional continuous electrical path forms a fourth conductive winding configured to generate, when supplied with a second additional drive current, a third component of the compensation magnetic field configured to actively shield the magnetic field sensing region from the ambient background magnetic fields along a third axis that is substantially orthogonal to the first axis and the second axis.

22. The magnetic field generator of claim 21 , wherein the first conductive winding is arranged on the first planar substrate and the second conductive winding is arranged on the second planar substrate.

23. The magnetic field generator of claim 21 , further comprising a third planar substrate and a fourth planar substrate,

wherein the first conductive winding is arranged on the third planar substrate and the second conductive winding is arranged on the fourth planar substrate.

24. The magnetic field generator of claim 23 , wherein the first planar substrate and the second planar substrate are positioned between the third planar substrate and the fourth planar substrate.

25. The magnetic field generator of claim 21 , further comprising a plurality of gradient windings configured to generate, when supplied with a plurality of gradient drive currents, one or more gradient components of the compensation magnetic field configured to actively shield the magnetic field sensing region from one or more linearly varying ambient background magnetic fields.

Assignments (2)
SECURITY INTEREST Recorded May 21, 2021
From: HI LLC
To: TRIPLEPOINT PRIVATE VENTURE CREDIT INC.
Reel/Frame 056336/0047 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2020
From: ALFORD, JAMU; HENNINGER, MICHAEL; DECKER, DAKOTA BLUE; GARBER, STEPHEN; GORMLEY, JEFFERY KANG; HOMAN, SCOTT MICHAEL; LASSER, TEAGUE; LEDBETTER, MICAH; LEUNG, JERRY; MOHSENI, HOOMAN; PRATT, ETHAN; SEIDMAN, SCOTT JEREMY; SIEPSER, BENJAMIN
To: HI LLC
Reel/Frame 052638/0922 →
Continuity (17)
Provisional Application 62967787 · Jan 30, 2020
Provisional Application 62967797 · Jan 30, 2020
Provisional Application 62967818 · Jan 30, 2020
Provisional Application 62967803 · Jan 30, 2020
Provisional Application 62967813 · Jan 30, 2020
Provisional Application 62967804 · Jan 30, 2020
Provisional Application 62967823 · Jan 30, 2020
Provisional Application 62933174 · Nov 8, 2019
Provisional Application 62933169 · Nov 8, 2019
Provisional Application 62933287 · Nov 8, 2019
Provisional Application 62933160 · Nov 8, 2019
Provisional Application 62933289 · Nov 8, 2019
Provisional Application 62933170 · Nov 8, 2019
Provisional Application 62933167 · Nov 8, 2019
Provisional Application 62933288 · Nov 8, 2019
Provisional Application 62842818 · May 3, 2019
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