SHALLOW PROFILE COMPRESSION DRIVER
20190208313 ยท 2019-07-04
Inventors
Cpc classification
International classification
Abstract
A compression driver includes a phasing plug including a base portion having a first side and an opposed second side, the first side including a central hub portion extending outwardly from the first side, the base portion including one or more apertures that extend therethrough from the first side to the second side. A diaphragm is disposed adjacent the phasing plug second side, and a compression chamber defined between the diaphragm and the phasing plug. In one embodiment, a front plate is attached to the phasing plug first side, the front plate having a central aperture generally aligned with the hub portion and base portion apertures. A horn may be attached to the front plate or directly to the phasing plug first side.
Claims
1-14. (canceled)
15. A horn driver, comprising: a phasing plug including a base portion having a first side and an opposed second side, the first side including a central hub portion extending outwardly from the first side, the base portion having apertures that extend therethrough from the first side to the second side; a diaphragm disposed adjacent the phasing plug second side; a compression chamber defined between the diaphragm and the phasing plug; and a horn directly attached to the phasing plug first side, the horn having an inlet and an outlet, wherein the horn inlet is generally aligned with the hub portion and the base portion apertures.
16. The horn driver of claim 15, wherein the horn includes a flange adjacent the horn inlet for mounting to the phasing plug first side.
17. The horn driver of claim 16, wherein a height of the hub portion does not extend above a height of the flange.
18. The horn driver of claim 15, wherein the diaphragm is configured as an annular ring.
19. The horn driver of claim 15, further comprising a magnet assembly disposed beneath the diaphragm, the magnet assembly including an annular permanent magnet disposed between an annular top plate and a back plate having a centrally disposed pole piece, the magnet assembly providing a magnetic field in a magnetic gap located between the pole piece and an inside surface of the top plate.
20. The horn driver of claim 19, further comprising a voice coil disposed in the magnetic gap and coupled to the diaphragm for producing movement of the diaphragm.
21. The horn driver of claim 19, wherein the phasing plug second side includes a mounting member that depends downwardly therefrom for mounting to the pole piece.
22. The horn driver of claim 15, wherein an outer surface of the hub portion tapers from a first end proximate the base portion to a second end disposed at a distance from the base portion.
23. A horn driver, comprising: a phasing plug including a base portion having a first side and an opposed second side, the first side including a central hub portion extending outwardly from the first side, the base portion having apertures that extend therethrough from the first side to the second side; a diaphragm disposed adjacent the phasing plug second side; a compression chamber defined between the diaphragm and the phasing plug; and a horn directly attached to the phasing plug first side, the horn having an inlet and an outlet, the horn including a flange adjacent the horn inlet for mounting to the phasing plug first side, the flange extending at least partially over the apertures of the phasing plug for directing acoustical signals traveling from the apertures to the horn inlet.
24. The horn driver of claim 23, wherein a height of the hub portion does not extend above a height of the flange.
25. The horn driver of claim 23, wherein the diaphragm is configured as an annular ring.
26. The horn driver of claim 23, further comprising a magnet assembly disposed beneath the diaphragm, the magnet assembly including an annular permanent magnet disposed between an annular top plate and a back plate having a centrally disposed pole piece, the magnet assembly providing a magnetic field in a magnetic gap located between the pole piece and an inside surface of the top plate.
27. The horn driver of claim 26, wherein the phasing plug second side includes a mounting member that depends downwardly therefrom for mounting to the pole piece.
28. The horn driver of claim 23, wherein an outer surface of the hub portion tapers from a first end proximate the base portion to a second end disposed at a distance from the base portion.
29. A horn driver, comprising: a phasing plug including a base portion having a first side and an opposed second side, the first side including a central hub portion extending outwardly from the first side, the base portion having an apertured region including apertures that extend therethrough from the first side to the second side; a diaphragm disposed adjacent the phasing plug second side; a compression chamber defined between the diaphragm and the phasing plug; and a horn directly attached to the phasing plug first side, the horn having an inlet and an outlet, the horn including a flange adjacent the horn inlet for mounting to the phasing plug first side, wherein a diameter of the horn inlet is smaller than a diameter of the apertured region.
30. The horn driver of claim 29, wherein a height of the hub portion does not extend above a height of the flange.
31. The horn driver of claim 29, wherein the diaphragm is configured as an annular ring.
32. The horn driver of claim 29, further comprising a magnet assembly disposed beneath the diaphragm, the magnet assembly including an annular permanent magnet disposed between an annular top plate and a back plate having a centrally disposed pole piece, the magnet assembly providing a magnetic field in a magnetic gap located between the pole piece and an inside surface of the top plate.
33. The horn driver of claim 32, wherein the phasing plug second side includes a mounting member that depends downwardly therefrom for mounting to the pole piece.
34. The horn driver of claim 29, wherein an outer surface of the hub portion tapers from a first end proximate the base portion to a second end disposed at a distance from the base portion.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0020] 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.
[0021] The adapter housing that is used in typical compression drivers equipped with an annular diaphragm is essentially a redundant element, as it only extends the air path to the horn and, due to the requirement for expansion of the cross-section, is connected to the horn when its cross-section is already comparatively large. Accordingly, embodiments of a shallow profile compression driver disclosed herein essentially discard the adapter housing, and horn begins with the area of the entrances to the phasing plug. The area of the compression driver's exit is slightly larger than the area of the entrances to the phasing plug, as shown in
[0022] With reference first to
[0023] As shown in
[0024] With reference to
[0025] The base portion 62 includes a first side 68 (
[0026] The hub portion 64 has a first end 74 disposed proximate to the base portion 62 and a second end 76 disposed at a distance from the base portion 62 along the central axis 32. An outer surface 78 of the hub portion 64 may taper in the direction along the central axis 32 from the first end 74 to the second end 76, such that the radius of the cross-section of the hub portion 64 relative to the central axis 32 decreases in this direction. In some implementations, the outer surface 78 of the hub portion 64 may be characterized as being shaped as a candy kiss. In one embodiment, the hub portion 64 may have a relatively small height above the first side 68 compared to a thickness of the base portion 62 such as, but not limited to, a height between one and two times the thickness of the base portion 62. In the embodiments depicted, the height of the hub portion 64 does not extend above a height of the front plate 66 or the horn flange 39.
[0027] A compression chamber 80 is defined in a space between the diaphragm 52 and the second side 70 of the phasing plug base portion 62. In practice, the height of the compression chamber 80 may be quite small (e.g., approximately 0.5 mm or less) such that the volume of the compression chamber 80 is also small.
[0028] As best shown in
[0029] An illustration of the compression driver 20 with an attached horn 30 is shown in
[0030] With reference to
[0031] A graph depicting the results of the measurement of frequency response at different angles to the axis of the driver is shown in
[0032] Advantages of the disclosed embodiments include, but are not limited to: 1) the lack of a cylindrical long front adapter that increases the output diameter and makes the high frequency response highly dependent on the angle to the axis; 2) the smaller output diameter improves radiation at high frequency and provides wider directivity response; 3) the design is shallow which is an advantage in certain applications; 4) alternative configuration (
[0033] 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.