Dipole speaker headrests
A sound reproduction unit comprises a central, head receiving portion and opposite first and second ends. The first and second ends have opposed front and back surfaces. A first acoustic transducer is mounted within the first end and a second acoustic transducer is mounted within the second end. First, second, third and fourth acoustically substantially transparent pathways are provided between the first transducer and the front surface of the first end, the first transducer and the back surface of the first end, the second transducer and the front surface of the second end, and between the second transducer and the back surface of the second end, respectively.
Latest Harman International Industries, Incorporated Patents:
- APPARATUS AND METHOD FOR TRIGGERING A CENTERING OF A HEAD-TRACKING SYSTEM ON A HEAD-WORN WEARABLE DEVICE
- MULTI-CHANNEL SPEAKER SYSTEM AND METHOD THEREOF
- Universal software communication bus
- MULTI-CHANNEL AUDIO PROCESSING METHOD, SYSTEM AND STEREO APPARATUS
- Electromagnetic compatibility contact between metal castings and printed circuit boards
This invention relates to sound systems. It is disclosed in the context of a loudspeaker mounting for a vehicle, but is believed to be useful in other contexts as well.
In the field of sound systems, numerous proposals have been made to mount system components, for example, loudspeakers in seat headrests. There are, for example, the systems disclosed in the following U.S. Pat. Nos.: 2,452,103; 2,501,993; 2,527,656; 2,908,766; 3,156,500; 3,385,393; 3,512,605; 3,944,020; 3,976,162; 4,027,112; 4,038,499; 4,042,791; 4,310,307; 4,440,443; 4,490,842; 4,565,405; 4,638,884; 4,696,370; 4,797,934; 4,991,222; 5,482,352; D277,630; and, D361,674; and British Patent Specification 827,306. There are also the systems disclosed in the following U.S. Pat. Nos.: 2,710,662; 3,918,551; 4,025,724; 4,289,936; 5,191,177; 5,199,075; and, 5,301,237.
A sound reproduction unit comprises a central, head receiving portion, and opposite first and second ends having opposed front and back surfaces. Means are provided for mounting a first acoustic transducer within the first end. Further means are provided for mounting a second acoustic transducer within the second end. Additional means provide between the first acoustic transducer and the front surface of the first end a first acoustically substantially transparent pathway, between the first acoustic transducer and the back surface of the first end a second acoustically substantially transparent pathway, between the second acoustic transducer and the front surface of the second end a third acoustically substantially transparent pathway, and between the second acoustic transducer and the back surface of the second end a fourth acoustically substantially transparent pathway.
According to an illustrative embodiment, the first transducer comprises a first loudspeaker having opposed first front and second rear radiating surfaces. The first pathway is defined between the first radiating surface and the front of the first end and the second pathway is defined between the second radiating surface and the back of the first end. The second transducer comprises a second loudspeaker having opposed third front and fourth rear radiating surfaces. The third pathway is defined between the third radiating surface and the front of the second end and the fourth pathway is defined between the fourth radiating surface and the back of the second end.
Further according to an illustrative embodiment, the head receiving portion defines a first longitudinal axis and the first end defines a second longitudinal axis, and the first and second axes define between them an angle α greater than 0° and less than or equal to 90°.
Additionally according to an illustrative embodiment, the second end defines a third longitudinal axis, and the first and third axes define between them an angle β greater than 0° and less than or equal to 90°.
According to an illustrative embodiment, the sound reproduction unit further comprises means for mounting the unit on an automotive vehicle seat.
The invention may best be understood by referring to the following detailed description and accompanying drawings which illustrate the invention. In the drawings:
Referring now to
The wings 24, 26 are provided with separate moving coil loudspeakers 40, 42, respectively, which are mounted in appropriate baffles 43 and are coupled to the left and right channels 44, 46, respectively, of the sound system 48 with which the vehicle 18 is equipped by appropriate conductors 50. The covering 52 with which the headrests 20 are upholstered is provided with left and right forward vents 54, 56, respectively, which are acoustically substantially transparent to the program material reproduced by loudspeakers 40, 42, as is conventional in the prior art. In addition, rearwardly facing left and right vents 58, 60 also provided in headrests 20 to vent the rearward sides of loudspeakers 40, 42. Vents 58, 60 are also upholstered with material which is acoustically substantially transparent to the program material being reproduced by loudspeakers 40, 42.
Referring to
In addition, should a passenger 70 be occupying the middle position of the rear seat, passenger 70 will also be directly exposed to the separated, reproduced left loudspeaker 40 and right loudspeaker 42 signals, although these signals will be 180° out of phase with the same signals as heard by the driver 62 and front seat passenger 64. In addition, the signal from the back of the left loudspeaker 40 of the front seat passenger 64's headrest 20 will impinge upon the rear middle seat passenger 70's right ear 68 and the signal from the back of the right loudspeaker 42 of the driver 62's headrest 20 will impinge upon the rear middle seat passenger 70's left ear 66. To summarize then: the driver 62 hears the right signal, R, in his right ear 68 and the left signal L in his left ear 66; the front seat passenger 64 hears the right signal, R, in his right ear 68 and the left signal L in his left ear 66; the left and right rear passengers 69, 71, respectively, hear the negative of the right signal, −R, in their respective right ears 68 and the negative of the left signal, −L, in their respective left ears 66, owing to the 180° phase reversal of the back radiated signals from loudspeakers 40, 42. Finally, the rear middle seat passenger 70 will hear the negative of the right signal, −R, in his left ear 66, and the negative of the left signal, −L, in his right ear 68.
Thus, although there will be phase reversal for the rear seat passengers 69, 70, 71, and the middle rear seat passenger 70 will hear the left program material (−L) in his right ear 68 and the right program material (−R) in his left ear 66, separation between the left and right channels will be substantially maintained for all of listeners 62, 64, 69, 70, 71. And, because of the relatively close, substantially ear-level spacing of the loudspeakers 40, 42 to all of the listeners 62, 64, 69, 70, 71 and particularly to the front seat listeners 62, 64, direct radiated program material will predominate substantially over longer path (echo and the like) program material, and so crosstalk and head related transfer functions should not contribute substantial ambiguity to, or otherwise degrade substantially, the separation and localization of the left and right sound sources by the listeners 62, 64, 69, 70, 71.
Claims
1. A sound reproduction unit comprising a central, head receiving portion, opposite first and second ends, the first end having opposed front and back surfaces, the second end having opposed front and back surfaces, means for mounting within the first end a first acoustic transducer loudspeaker having opposed first front and second rear radiating surfaces, means for mounting within the second end a second acoustic transducer loudspeaker having opposed third front and fourth rear radiating surfaces, a first port connecting the first acoustic transducer loudspeaker and the front surface of the first end to provide a first acoustically substantially transparent pathway between the first front radiating surface and the front surface of the first end, a second port connecting the first acoustic transducer loudspeaker and the back surface of the first end to provide a second acoustically substantially transparent pathway between the second rear radiating surface and the back surface of the first end, a third port connecting the second acoustic transducer loudspeaker and the front surface of the second end to provide a third acoustically substantially transparent pathway between the third front radiating surface and the front surface of the second end, and a fourth port connecting the second acoustic transducer loudspeaker and the back surface of the second end to provide a fourth acoustically substantially transparent pathway between the fourth rear radiating surface and the rear surface of the second end.
2. The apparatus of claim 1 wherein the first transducer comprises a first loudspeaker having opposed first front and second rear radiating surfaces, the front pathway defined between the first radiating surface and the front of the first end and the second pathway defined between the second radiating surface and the back of the first end, the second transducer comprises a second loudspeaker having opposed third front and fourth rear radiating surfaces, the third pathway defined between the third radiating surface and the front of the second end and the fourth pathway defined between the fourth radiating surface and the back of the second end.
3. The apparatus of claim 1 wherein the head receiving portion defines a first longitudinal axis and the first end defines a second longitudinal axis, and the first and second axes define between them a first angle greater than 0° and less than or equal to 90°.
4. The apparatus of claim 3 wherein the second end defines a third longitudinal axis and the first and third axes define between them a second angle greater than 0° and less than or equal to 90°.
5. The apparatus of claim 2 wherein the head receiving portion defines a first longitudinal axis and the first end defines a second longitudinal axis, and the first and second axes define between them a first angle greater than 0° and less than or equal to 90°.
6. The apparatus of claim 5 wherein the second end defines a third longitudinal axis and the first and third axes define between them a second angle greater than 0° and less than or equal to 90°.
7. The apparatus of claim 1 and further comprising means for mounting the unit on an automotive vehicle seat.
8. The apparatus of claim 2 and further comprising means for mounting the unit on an automotive vehicle seat.
9. The apparatus of claim 3 and further comprising means for mounting the unit on an automotive vehicle seat.
10. The apparatus of claim 4 and further comprising means for mounting the unit on an automotive vehicle seat.
11. The apparatus of claim 5 and further comprising means for mounting the unit on an automotive vehicle seat.
12. The apparatus of claim 6 and further comprising means for mounting the unit on an automotive vehicle seat.
2452103 | October 1948 | Conradt et al. |
2501993 | March 1950 | Conradt |
2527656 | October 1950 | Reinsdorf |
2710662 | June 1955 | Camras |
2802906 | August 1957 | Goldenberg et al. |
2908766 | October 1959 | Taylor |
3156500 | November 1964 | Kerr |
3385393 | May 1968 | Gold |
3512605 | May 1970 | McCorkle |
3556088 | January 1971 | Leonardini |
3880152 | April 1975 | Nohmura |
3918551 | November 1975 | Rizo-Patron |
3944020 | March 16, 1976 | Brown |
3976162 | August 24, 1976 | Cummings |
4020284 | April 26, 1977 | Phillips |
4023566 | May 17, 1977 | Martinmaas |
4025724 | May 24, 1977 | Davidson, Jr. et al. |
4027112 | May 31, 1977 | Heppner et al. |
4038499 | July 26, 1977 | Yeaple |
4042791 | August 16, 1977 | Wiseman |
4055170 | October 25, 1977 | Nohmura |
4061877 | December 6, 1977 | Phillips |
4064376 | December 20, 1977 | Yamada |
4075438 | February 21, 1978 | Kappel |
4124249 | November 7, 1978 | Abbeloos |
4156117 | May 22, 1979 | Phillips |
4210784 | July 1, 1980 | Phillips |
4289936 | September 15, 1981 | Civitello |
4310307 | January 12, 1982 | Bellisario |
4354067 | October 12, 1982 | Yamada et al. |
4440443 | April 3, 1984 | Nordskog |
4490842 | December 25, 1984 | Watanabe |
D277630 | February 19, 1985 | Olson et al. |
4565405 | January 21, 1986 | Mayer |
4638884 | January 27, 1987 | Lee |
4641345 | February 3, 1987 | Takahashi |
4696370 | September 29, 1987 | Tokumo et al. |
4758047 | July 19, 1988 | Hennington |
4778027 | October 18, 1988 | Taylor |
4797934 | January 10, 1989 | Hufnagel |
4866776 | September 12, 1989 | Kasai et al. |
4868888 | September 19, 1989 | Dayton |
4877105 | October 31, 1989 | Mugikura |
4979777 | December 25, 1990 | Takada |
4991222 | February 5, 1991 | Nixdorf |
5101810 | April 7, 1992 | Skille et al. |
5113852 | May 19, 1992 | Murtonen |
5143055 | September 1, 1992 | Eakin |
5147109 | September 15, 1992 | Jolly |
5191177 | March 2, 1993 | Chi |
5193118 | March 9, 1993 | Latham-Brown et al. |
5199075 | March 30, 1993 | Fosgate |
5243640 | September 7, 1993 | Hadley et al. |
5301237 | April 5, 1994 | Fosgate |
5314403 | May 24, 1994 | Shaw |
5318340 | June 7, 1994 | Henry |
5387026 | February 7, 1995 | Matsuhashi et al. |
5398992 | March 21, 1995 | Daniels |
D361674 | August 29, 1995 | Carter, Sr. |
5482352 | January 9, 1996 | Leal et al. |
5608806 | March 4, 1997 | Hinojosa |
5687246 | November 11, 1997 | Lancon |
5692058 | November 25, 1997 | Eggers et al. |
5910996 | June 8, 1999 | Eggers et al. |
198 40 444 | May 1999 | DE |
0 993 230 | April 2000 | EP |
827306 | February 1960 | GB |
3132198 | June 1991 | JP |
1995-264689 | October 1995 | JP |
- European Search Report dated Dec. 18, 2002 for Application No. 97 932 565.1-2411, 5 pgs.
- International Search Report dated Aug. 29, 1997 for Application No. 1039-28613, 2 pgs.
Type: Grant
Filed: Apr 27, 2009
Date of Patent: Jun 22, 2010
Assignee: Harman International Industries, Incorporated (Northridge, CA)
Inventor: William Neal House (Falls of Rough, KY)
Primary Examiner: Huyen D Le
Attorney: Brinks Hofer Gilson and Lione
Application Number: 12/430,617
International Classification: H04R 25/00 (20060101);