IP Library Granted Patent US 10,505,278
Granted Patent B2
US 10,505,278 · App. 16/037,343 · Granted Dec 10, 2019

Three-axis antenna with improved quality factor

Inventors: Sergio Cobos Reyes (Málaga, ES); Francisco Ezequiel Navarro Pérez (Bobadilla Estación Antequera, ES); Antonio Rojas Cuevas (Málaga, ES)
Assignee: PREMO S.A.
H01Q7/08H01Q1/38H01Q7/06H01F2003/005H01Q1/40
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Quick Facts
Patent No.
US 10,505,278
App. No.
16/037,343
Granted
Dec 10, 2019
Kind
B2
Abstract

Three-axis antenna comprising a magnetic core ( 10 ) including protuberances ( 11 ) on each corner delimiting an X-axis winding channel ( 12 X) and a Y-axis winding channel ( 12 Y); in X-axis coil ( 20 X) within the X-axis winding channel ( 12 X), comprising two separate and adjacent X-axis partial coils ( 21 X); a Y-axis coil ( 20 Y) within the Y-axis winding channel ( 12 Y), comprising two separate and adjacent Y-axis partial coils ( 21 Y); and a Z-axis coil ( 20 Z) surrounding the magnetic core ( 10 ), wherein said magnetic core includes at least one X-axis partition wall ( 14 X) dividing the X-axis winding channel ( 12 X) in two X-axis partial winding channels ( 13 X) wherein the two separate and adjacent Y-axis partial coils ( 21 Y) are housed, and at least one Y-axis partition wall ( 14 Y) dividing the Y-axis winding channel ( 12 Y) in two Y-axis partial winding channels ( 13 Y) wherein the two separate and adjacent Y-axis partial coils ( 21 Y) are housed.

Claims (24)

1. A three-axis antenna with an improved quality factor comprising:

a magnetic core ( 10 ) having a prismatic configuration defining an X-axis (X), a Y-axis (Y), and a Z-axis (Z) orthogonal to one another, said prismatic configuration being a rectangular prismatic configuration having two main faces perpendicular to each of the X-axis (X), Y-axis (Y) and Z-axis (Z), said prismatic configuration including protuberances ( 11 ) protruding on the Z-axis (Z) direction on each corner of the magnetic core ( 10 ), said protuberances ( 11 ) delimiting an X-axis winding channel ( 12 X) and a Y-axis winding channel ( 12 Y) around the magnetic core ( 10 );

an X-axis coil ( 20 X) wound around the X-axis (X) surrounding the magnetic core ( 10 ) within the X-axis winding channel ( 12 X), said X-axis coil ( 20 X) comprising two separate and adjacent X-axis partial coils ( 21 X);

a Y-axis coil ( 20 Y) wound around the Y-axis (Y) surrounding the magnetic core ( 10 ) within the Y-axis winding channel ( 12 Y), said Y-axis coil ( 20 Y) comprising two separate and adjacent Y-axis partial coils ( 21 Y);

a Z-axis coil ( 20 Z) wound around the Z-axis (Z) surrounding the magnetic core ( 10 ),

wherein the X-axis winding channel ( 12 X) intersects the Y-axis winding channel ( 12 Y) on two opposed intersection areas in which the Y-axis winding channel ( 12 Y) is interrupted by the X-axis winding channel ( 12 X) defined at a lower level;

wherein

said protuberances ( 11 ) are also protruding on the X-axis (X) and on the Y-axis (Y) directions defining an outer perimeter around of which there is wind the Z-axis coil ( 20 Z) without interfering with the X-axis coil ( 20 X) and the Y-axis coil ( 20 Y),

said magnetic core ( 10 ) includes:

at least one X-axis partition wall ( 14 X) protruding from the X-axis winding channel ( 12 X) dividing the X-axis winding channel ( 12 X) in two X-axis partial winding channels ( 13 X) wherein the two separate and adjacent X-axis partial coils ( 21 X) are housed, said X-axis protruding wall not interfering with the Y-axis winding channel ( 12 Y); and

at least one Y-axis partition wall ( 14 Y) protruding from the Y-axis winding channel ( 12 Y) dividing the Y-axis winding channel ( 12 Y) in two Y-axis partial winding channels ( 13 Y) wherein the two separate and adjacent Y-axis partial coils ( 21 Y) are housed;

a Z-axis wall ( 14 Z) included in the outer perimeter of the magnetic core ( 10 ) and protruding in the X-axis (X) and/or the Y-axis (Y) directions, providing a magnetic core having an un-moldable geometry easily un-moldable from a two parts cast.

2. The three-axis antenna according to claim 1 , wherein the X-axis partition wall ( 14 X) are protruding on the Y-axis (Y) direction and/or on the Z-axis (Z) direction.

3. The three-axis antenna according to claim 1 , wherein the Y-axis partition wall ( 14 Y) are protruding on the X-axis (X) direction and/or on the Z-axis (Z) direction.

4. The three-axis antenna according to claim 1 , wherein the X-axis partition wall ( 14 X) is a continuous wall which extends around four adjacent faces of the magnetic core ( 10 ).

5. The three-axis antenna according to claim 1 , wherein the Y-axis partition wall ( 14 Y) are two independent and symmetric walls, each extending continuously around three adjacent faces of the prismatic core ( 10 ), being said two independent and symmetric walls spaced apart by the X-axis winding channel ( 12 X).

6. The three-axis antenna according to claim 1 wherein the X-axis partition wall ( 14 X) and/or the Y-axis partition wall ( 14 Y) are equidistant from the protuberances ( 11 ).

7. The three-axis antenna according to claim 1 wherein the Z-axis wall ( 14 Z) is placed on the center of the outer perimeter defining two symmetric Z-axis partial wounding channels ( 13 Z) defining together the Z-axis wounding channel ( 12 Z), and wherein the Z-axis coil ( 20 Z) wound around the Z-axis (Z) comprises two separate and adjacent Z-axis partial coils ( 21 Z) each wound in one different Z-axis partial wounding channels ( 13 Z).

8. The three-axis antenna according to claim 1 wherein the Z-axis wall ( 14 Z) is protruding in a non-centered position of the outer perimeter, being the Z-axis coil ( 20 Z) wound around the Z-axis (Z) on one side of the Z-axis wall ( 14 Z) which define one winding limit for said Z-axis coil ( 20 Z).

9. The three-axis antenna according to claim 8 wherein a Z-axis additional wall ( 15 Z) is protruding in a non-centered position of the outer perimeter, being said Z-axis additional wall ( 15 Z) symmetric to the Z-axis wall ( 14 Z) defining a Z-axis winding channel ( 12 Z) there between, and being the Z-axis coil ( 20 Z) housed on said Z-axis winding channel ( 12 Z).

10. The three-axis antenna according to claim 1 wherein said magnetic core ( 10 ) is made of a material selected among ferromagnetic material, PBM (polymer-bonded soft magnetic material), pressed and sintered metallic powder.

11. The three-axis antenna according to claim 1 wherein between the X-axis, Y-axis and Z-axis coils ( 20 X, 20 Y, 20 Z) and the magnetic core ( 10 ) there is an electric insulant material.

12. The three-axis antenna according to claim 11 wherein said electric insulant material is a chemical vapor deposited polymer.

13. The three-axis antenna according to claim 1 wherein the three-axis antenna is over-molded with an insulant material, said insulant material including metallic connection terminals ( 30 ) embedded therein, being each metallic connection terminals ( 30 ) connected to one end of one wire constitutive of one partial coil ( 21 X, 21 Y, 21 Z), and having each metallic connection terminal ( 30 ) a portion non-covered by the insulant material accessible from the outside of the three-axis antenna cover.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 9, 2024
From: PREMO, S.A.
To: PREMO, S.L.
Reel/Frame 067044/0778 →
CHANGE OF NAME Recorded Oct 31, 2019
From: PREMO S.L.
To: PREMO, S.A.
Reel/Frame 050878/0616 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2018
From: COBOS REYES, SERGIO; NAVARRO PEREZ, FRANCISCO EZEQUIEL; ROJAS CUEVAS, ANTONIO
To: PREMO, SL
Reel/Frame 046946/0544 →
Priority Claims (1)
EP 17382468 · Jul 18, 2017 · regional
Continuity (1)
Related Publication 20190027828A1 · Jan 24, 2019
Cited By (1)
US 12,217,628