Loudspeaker
11218811 ยท 2022-01-04
Assignee
Inventors
- Gilles Milot (Paris, FR)
- Marc-Olivier Chauveau (Saint-Cyr-sur-Loire, FR)
- Ludovic Fournier (Chateau du Loir, FR)
- Guenther Weber (Kelheim, DE)
- Armin Prommersberger (Karlsbad, DE)
Cpc classification
International classification
Abstract
A loudspeaker and method of operating a loudspeaker are provided. The loudspeaker has a motor assembly with at least one planar coil. First and second magnets are magnetized in a magnetized direction perpendicular to a direction of coil movement and perpendicular to a central axis of radiation of the loudspeaker. The central axis of radiation is generally parallel to a direction of coil movement and parallel to the plane of the planar coil. The first and second magnets each have upper and lower large surface faces separated by a narrowest dimension. The first and second magnets are magnetized across the narrowest dimension in first and second magnetized directions being opposite.
Claims
1. A loudspeaker comprising: a motor assembly having at least one planar coil; and first and second magnets magnetized in a magnetized direction perpendicular to a direction of coil movement and perpendicular to a central axis of radiation of the loudspeaker, wherein the first and second magnets each include at least two magnets spaced apart in a height direction by an air gap not containing the planar coil, wherein the height direction is perpendicular to the direction of coil movement and perpendicular to the narrowest magnet dimension; and wherein the central axis of radiation is generally parallel to a direction of coil movement and parallel to the plane of the planar coil.
2. The loudspeaker of claim 1 wherein the first and second magnets each have upper and lower large surface faces separated by a narrowest dimension, wherein the first and second magnets are magnetized across the narrowest dimension in first and second magnetized directions being opposite, wherein the at least one planar coil is arranged in a plane along at least one of the upper and lower large surface faces, wherein a direction of coil movement is parallel to the plane of the coil.
3. The loudspeaker of claim 2, wherein the narrowest dimension is less than five millimeters.
4. The loudspeaker of claim 2, wherein the at least one planar coil comprises first and second planar coils, wherein the first and second planar coils are positioned in a plane parallel to and along the upper and lower large surfaces respectively.
5. The loudspeaker of claim 1, wherein the first and second magnets are arranged in-line between a front grill and a back wall, wherein a depth of the loudspeaker is defined between the front grill and the back wall.
6. A loudspeaker comprising: a first set of magnets magnetized in a first magnetized direction; a second set of magnets positioned adjacent the first set of magnets and magnetized in a second magnetized direction being opposite the first magnetized direction; and first and second coils separated by the narrowest magnet face dimension, wherein the first and second magnetized directions are perpendicular to direction of coil movement and perpendicular to an axis of radiation of the loudspeaker, wherein the axis of radiation is generally parallel to the direction of coil movement.
7. The loudspeaker of claim 6, further comprising a front grill of the loudspeaker enclosing the loudspeaker through which the axis of radiation extends, wherein the first and second magnetized directions are generally parallel to the front grill of the loudspeaker.
8. The loudspeaker of claim 7, wherein the first set of magnets is positioned closer to the grill than the second set of magnets in the direction of coil movement.
9. The loudspeaker of claim 6, wherein the first and second magnetized directions extend across a narrow magnet face having the narrowest magnet face dimension.
10. The loudspeaker of claim 9, wherein the narrowest magnet face dimension is less than five millimeters.
11. The loudspeaker of claim 6, wherein the first and second magnets each have upper and lower large surface faces separated by a narrowest dimension wherein the first coil is positioned along the upper large surfaces and the second coil is positioned along the lower large surfaces.
12. The loudspeaker of claim 6, wherein the second set of magnets are arranged adjacent to the first set of magnets in the direction of coil movement.
13. The loudspeaker of claim 6, wherein the first and second set of magnets each include at least two magnets spaced apart in a height direction by an air gap.
14. The loudspeaker of claim 6, wherein the first set of magnets are arranged in-line with the second set of magnets between a front grill and a back wall, wherein a depth of the loudspeaker is defined between the front grill and the back wall.
15. The loudspeaker of claim 6, further comprising a diaphragm connected to the coil, wherein the diaphragm is positioned closer to the first set of magnets than the second set of magnets.
16. A method of operating a loudspeaker comprising: providing a motor assembly having first and second sets of magnets each having upper and lower large surface faces separated by a narrowest dimension, wherein the first and second sets of magnets are magnetized across the narrowest dimension in first and second magnetized directions being opposite, wherein the first and second sets of magnets each include at least two magnets spaced apart in a height direction by an air gap; positioning a first coil along at least one of the upper and lower large surfaces; energizing the first coil, wherein in response to energizing, the first coil moves in a direction of coil movement being perpendicular to the first and second magnetized directions.
17. The method of claim 16, further comprising arranging the first and second magnets in-line in the direction of coil movement.
18. The method of claim 16, wherein the narrowest dimension is less than five millimeters.
19. The method of claim 16, further comprising: positioning a second coil along at the other of the upper and lower large surfaces; and energizing the first and second coils, wherein in response to energizing, the first and second coils move in the direction of coil movement being perpendicular to the first and second magnetized directions.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(7) As required, detailed embodiments of the present invention are disclosed herein; however, it is to be understood that the disclosed embodiments are merely exemplary of the invention that may be embodied in various and alternative forms. The figures are not necessarily to scale; some features may be exaggerated or minimized to show details of particular components. Therefore, specific structural and functional details disclosed herein are not to be interpreted as limiting, but merely as a representative basis for teaching one skilled in the art to variously employ the present invention.
(8) Loudspeakers generally include a motor having a magnet. The magnet has two poles that produce a magnetic field between the two poles. A moving coil is formed by turns of conductive coil. When current flows through the coil, the coil is subject to magnetic field and force is generated which results in movement of the coil. When current flows through the coil, the coil is subject to magnetic field and force is generated which results in movement of the coil in accordance with the formula F=B.Math.I.Math.L (where B is the intensity of induction or magnetic field, I is the intensity of current and L is the length of the conductor subject to the magnetic field).
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(10) The housing 12 may also have a frame 18 that defines side walls of the loudspeaker 10 and connects the front grill 14 to the back wall 16. As shown in the Figures, the frame 18 may be generally cylindrical and have an elongated oval, or race-track cross section with circular ends connecting elongated sides. In other embodiments, the frame may be elliptical or circular shaped. However, any suitable frame shape may be used.
(11) The loudspeaker 10 includes at least one moving coil 20 connected to a diaphragm 24. The coil 20 moves in direction indicated by arrow A. The direction of movement is generally perpendicular to the front grill 14.
(12) The loudspeaker 10 includes planar magnets that are magnetized in direction being perpendicular to the motion of the coil. As shown in
(13) The loudspeaker 10 may have more than one coil. For example,
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(16) The spaces 36 between the magnets 26, 28 allow for air flow as the coils 20, 22 and diaphragm 24 move. The first magnets 26 are positioned parallel and closer to the diaphragm 24. The second magnets 28 are positioned adjacent to the magnets 26 and closer to the back wall 16.
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(19) The speaker 10 may have coils 20, 22 positioned on each side of the magnets 26, 28. The coils 20, 22 are positioned outboard of the pole pieces 39. In another embodiment, the speaker 10 may only have one coil 20 disposed on one side of the magnets 26, 28. The coils 20, 22 are connected to the diaphragm 24 and move in a direction A. In another embodiment, it is possible to have more than one or multiple coils 20, 22 positioned on one side or both side of the magnet 26, 28.
(20) As shown in
(21) While exemplary embodiments are described above, it is not intended that these embodiments describe all possible forms of the invention. Rather, the words used in the specification are words of description rather than limitation, and it is understood that various changes may be made without departing from the spirit and scope of the invention. Additionally, the features of various implementing embodiments may be combined to form further embodiments of the invention.