IP Library Granted Patent US 8,072,304
Granted Patent B2
US 8,072,304 · App. 12/007,077 · Granted Dec 6, 2011

Noncontact power-transmission coil, portable terminal and terminal charging device, planar coil magnetic layer formation device, and magnetic layer formation method

Assignees: Sony Ericsson Mobile Communications Japan, Inc.; Seiko Epson Corporation
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Quick Facts
Patent No.
US 8,072,304
App. No.
12/007,077
Granted
Dec 6, 2011
Kind
B2
Abstract

A noncontact power-transmission coil is provided. The noncontact power-transmission coil includes a planar coil and a magnetic layer. The planar coil is formed by winding a linear conductor in a spiral shape substantially in a single plane. The magnetic layer is formed by applying a liquid-form magnetic solution in which magnetic particles are mixed with a binder solvent, so as to cover one planar portion of the planar coil and a side-face portion of the planar coil.

Claims (40)

1. A noncontact power-transmission coil, comprising:

a planar coil, formed by winding a linear conductor in a spiral shape substantially in a single plane, the planar coil defining a series of coil turns with sequential ones of the coil turns being in contact with one another to form alternating ones of exterior protrusions and exterior depressions on an exterior side planar portion of the planar coil and alternating ones of interior protrusions and interior depressions on an interior side planar portion of the planar coil; and,

a cured magnetic layer mixture of magnetic particles and a binder solvent, so as to completely cover exterior protrusions and occupy the exterior depressions on the exterior side planar portion of the planar coil while the interior depressions define empty space between sequential ones of the interior protrusions the cured magnetic layer mixture also covering a side face portion of the planar coil.

2. A noncontact power-transmission coil according to claim 1 , wherein

the planar coil is formed by winding the linear conductor, including either single wire or twisted wire, in a spiral shape substantially in the same plane.

3. A noncontact power-transmission coil according to claim 2 , further comprising

a flexible printed-circuit board on which are formed first and second external connection terminal portions, a first contact portion connected to an inner periphery-side end portion of the linear conductor wound into a spiral shape, a second contact portion connected to an outer periphery-side end portion of the linear conductor wound into a spiral shape, a first conductor pattern connecting the first contact portion and the first external connection terminal portion, and a second conductor pattern connecting the second contact portion and the second external connection terminal portion, wherein

the interior protrusions on the interior side planar portion of the planar coil are affixed to the surface of the flexible printed-circuit board.

4. A noncontact power-transmission coil according to claim 1 ,

wherein the planar coil has a plurality of laminated flexible printed-circuit boards, on each of which is formed a spiral-shape conductor pattern, and which are formed into a shape which substantially matches the outer-perimeter shape of the spiral-shape conductor pattern, a first through-hole which electrically connects inner-periphery pattern end portions of the conductor patterns of each layer of the laminated flexible printed-circuit boards, and a second through-hole which electrically connects outer-periphery pattern end portions of the conductor patterns of each layer of the laminated flexible printed-circuit boards, and

wherein one flexible printed-circuit board layer among the layers of the flexible printed-circuit board has first and second external connection terminal portions, a first conductor pattern which electrically connects the first through-hole with the first external connection terminal portion, and a second conductor pattern which electrically connects the second through-hole with the second external connection terminal portion.

5. A noncontact power-transmission coil according to claim 1 , wherein

the planar coil has a central hole in an inner-periphery portion of the linear conductor wound into a spiral shape and has the magnetic layer formed by applying the magnetic solution so as to fill the central hole of the planar coil.

6. A portable terminal, comprising:

a noncontact power-transmission coil, having a rechargeable battery, a planar coil formed by winding a linear conductor in a spiral shape in substantially the same plane, the planar coil defining a series of coil turns with sequential ones of the coil turns being in contact with one another to form alternating ones of exterior protrusions and exterior depressions on an exterior side planar portion of the planar coil and alternating ones of interior protrusions and interior depressions on an interior side planar portion of the planar coil, and a cured magnetic layer mixture of magnetic particles and a binder solvent, so as to completely cover exterior protrusions and occupy the exterior depressions on the exterior side planar portion of the planar coil while the interior depressions define empty space between sequential ones of the interior protrusions the cured magnetic layer mixture also covering a side face portion of the planar coil; and,

a charging control circuit, which executes control to charge the rechargeable battery with power received via the noncontact power-transmission coil.

7. A portable terminal according to claim 6 , wherein

the planar coil of the noncontact power-transmission coil is formed by winding the linear conductor, including a single wire or twisted wire, in a spiral shape in substantially the same plane.

8. A portable terminal according to claim 7 ,

wherein the noncontact power-transmission coil has a flexible printed-circuit board, on which are formed first and second external connection terminal portions, a first contact portion connected to an inner periphery-side end portion of the linear conductor wound into a spiral shape, a second contact portion connected to an outer periphery-side end portion of the linear conductor wound into a spiral shape, a first conductor pattern connecting the first contact portion and the first external connection terminal portion, and a second conductor pattern connecting the second contact portion and the second external connection terminal portion, and

wherein the interior protrusions on the interior side planar portion of the planar coil are affixed to the surface of the flexible printed-circuit board.

9. A portable terminal according to claim 6 ,

wherein the planar coil of the noncontact power-transmission coil has a plurality of laminated flexible printed-circuit boards, on each of which is formed a spiral-shape conductor pattern, and which are formed into a shape which substantially matches the outer-perimeter shape of the spiral-shape conductor pattern, a first through-hole which electrically connects inner-periphery pattern end portions of the conductor patterns of each layer of the laminated flexible printed-circuit boards, and a second through-hole which electrically connects outer-periphery pattern end portions of the conductor patterns of each layer of the laminated flexible printed-circuit boards, and

wherein one flexible printed-circuit board layer among the layers of the flexible printed-circuit board has first and second external connection terminal portions, a first conductor pattern which electrically connects the first through-hole with the first external connection terminal portion, and a second conductor pattern which connects the second through-hole with the second external connection terminal portion.

10. A portable terminal according to claim 6 , wherein

the planar coil of the noncontact power-transmission coil has a central hole in an inner-periphery portion of the linear conductor wound into a spiral shape, and having the magnetic layer formed by applying the magnetic solution so as to fill the central hole of the planar coil.

11. A terminal charging device, comprising:

a terminal mounting base, on which a predetermined portable terminal including a rechargeable battery is mounted;

a noncontact power-transmission coil, having a planar coil, formed by winding a linear conductor in a spiral shape substantially in the same plane, the planar coil defining a series of coil turns with sequential ones of the coil turns being in contact with one another to form alternating ones of exterior protrusions and exterior depressions on an exterior side planar portion of the planar coil and alternating ones of interior protrusions and interior depressions on an interior side planar portion of the planar coil, and a cured magnetic layer mixture of magnetic particles and a binder solvent, so as to completely cover exterior protrusions and occupy the exterior depressions on the exterior side planar portion of the planar coil while the interior depressions define empty space between sequential ones of the interior protrusions with the cured magnetic layer mixture also covering a side face portion of the planar coil, and using electromagnetic induction with a coil installed in the predetermined portable terminal to charge the rechargeable battery of the portable terminal in a noncontact manner; and

a power supply control unit which controls power supply to the noncontact power-transmission coil.

12. A terminal charging device according to claim 11 , wherein

the planar coil of the noncontact power-transmission coil is formed by winding a linear conductor, comprising a single wire or twisted wire, in a spiral shape in substantially the same plane.

13. A terminal charging device according to claim 12 ,

wherein the noncontact power-transmission coil has a flexible printed-circuit board, on which are formed first and second external connection terminal portions, a first contact portion connected to an inner periphery-side end portion of the linear conductor wound into a spiral shape, a second contact portion connected to an outer periphery-side end portion of the linear conductor wound into a spiral shape, a first conductor pattern connecting the first contact portion and the first external connection terminal portion, and a second conductor pattern connecting the second contact portion and the second external connection terminal portion, and

wherein the interior protrusions on the interior side planar portion of the planar coil are affixed to the surface of the flexible printed-circuit board.

14. A terminal charging device according to claim 11 ,

wherein the planar coil of the noncontact power-transmission coil has a plurality of laminated flexible printed-circuit boards, on each of which is formed a spiral-shape conductor pattern, and which are formed into a shape which substantially matches the outer-perimeter shape of the spiral-shape conductor pattern, a first through-hole which electrically connects inner-periphery pattern end portions of the conductor patterns of each layer of the laminated flexible printed-circuit boards, and a second through-hole which electrically connects outer-periphery pattern end portions of the conductor patterns of each layer of the laminated flexible printed-circuit boards, and

wherein one flexible printed-circuit board layer among the layers of the flexible printed-circuit board has first and second external connection terminal portions, a first conductor pattern which electrically connects the first through-hole with the first external connection terminal portion, and a second conductor pattern which connects the second through-hole with the second external connection terminal portion.

15. A terminal charging device according to claim 11 , wherein

the planar coil of the noncontact power-transmission coil has a central hole in an inner-periphery portion of the linear conductor wound into a spiral shape, and having the magnetic layer formed by applying the magnetic solution so as to fill the central hole of the planar coil.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2024
From: SONY CORPORATION; SEIKO EPSON CORPORATION
To: SONY GROUP CORPORATION; SEIKO EPSON CORPORATION
Reel/Frame 069246/0510 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2024
From: SONY GROUP CORPORATION; SEIKO EPSON CORPORATION
To: SEIKO EPSON CORPORATION
Reel/Frame 069246/0677 →
CHANGE OF NAME Recorded Nov 13, 2024
From: SONY ERICSSON MOBILE COMMUNICATIONS JAPAN, INC.
To: SONY MOBILE COMMUNICATIONS JAPAN, INC.
Reel/Frame 069353/0920 →
CHANGE OF NAME Recorded Nov 13, 2024
From: SONY MOBILE COMMUNICATIONS JAPAN, INC.
To: SONY MOBILE COMMUNICATIONS INC.
Reel/Frame 069354/0171 →
CHANGE OF NAME Recorded Nov 13, 2024
From: SONY MOBILE COMMUNICATIONS INC.
To: SONY CORPORATION
Reel/Frame 069832/0007 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 7, 2008
From: KATO, HIROSHI; SUKUKI, KUNIHARU; SUZUKI, KATSUYA; YAMAZAKI, MANABU; KONDO, YOICHIRO; ONISHI, KOTA; YODA, KENTARO; JIN, MIKIMOTO; KAMIJO, TAKAHIRO; SOGABE, HARUHIKO
To: SONY ERICSSON MOBILE COMMUNICATIONS JAPAN, INC.; SEIKO EPSON CORPORATION
Reel/Frame 020384/0131 →
Priority Claims (1)
JP 2007-001642 · Jan 9, 2007 · national
Continuity (1)
Related Publication 20080164844A1 · Jul 10, 2008