MOBILE TERMINAL WITH AT LEAST TWO TRANSDUCERS
20180115847 ยท 2018-04-26
Inventors
- Gerard Douhet (Fegersheim, FR)
- Stephane Dufosse (Cormeilles en Parisis, FR)
- Alain Guillotin (Rueil-Malmaison, FR)
Cpc classification
H04R1/26
ELECTRICITY
H04R1/24
ELECTRICITY
International classification
Abstract
The invention concerns a mobile terminal with at least two transducers (LSm, LSs1, LSS2) used simultaneously as loudspeakers for stereophonic effect. According to the invention, one of said transducers is a main transducer (LSm) with a main working frequency band (Bm) corresponding to at least the phone frequency band, while the other transducer is a secondary transducer (LSs1; LSs2) with a secondary working frequency band (Bs1; Bs2) band different from said main frequency band, the lowest frequencies of said secondary working frequency band (Bs1; Bs2) being greater than the lowest frequencies of said main working frequency band.
Claims
1-9. (canceled)
10. A wireless transmit/receive unit (WTRU) comprising: a housing extending in a longitudinal direction, extending in a width direction and extending in a depth direction, the housing having: (1) a first surface extending in at least the longitudinal and width directions and (2) a second surface extending in at least the width and depth directions; a first transducer configured to reproduce a first audio signal that is directed in a first direction; and a second transducer configured to reproduce a second audio signal that directed in a second direction, different from the first direction; wherein: the first transducer and the second transducer are positioned to reproduce the first and second audio signals, as stereophonic sound, the first transducer is centered in the housing with respect to the width direction and is configured to operate as an earphone for handheld communication and as a loudspeaker for hand-free communication, and the second transducer is offset from a center of the housing with respect to the width direction.
11. The WTRU of claim 10, wherein the first surface and second surfaces define a plurality of openings such that the first transducer is positioned adjacent to a first one of the openings associated with the first surface and the second transducer is positioned adjacent to a second one of the openings associated with the second surface.
12. The WTRU of claim 11, wherein the first transducer directs the reproduced first audio signal in the first direction through the first one of the openings and the second transducer directs the reproduced second audio signal in the second direction through the second one of the openings.
13. The WTRU of claim 10, wherein: the first transducer is configured to operate in a first portion of a frequency band; and the second transducer is configured to operate in a second portion of a frequency band that overlaps with the first portion of the frequency band.
14. The WTRU of claim 10, wherein the second transducer is located at one edge within the housing.
15. The WTRU of claim 10, wherein the first transducer and the second transducer are any of: electro-mechanical transducers or piezo transducers.
16. The WTRU of claim 10, wherein: the first transducer is configured to receive the first audio signal, as a first channel of a stereo signal; and the second transducer is configured to receive the second audio signal, as a second channel of the stereo signal.
17. The WTRU of claim 10, further comprising a holding unit disposed in the housing to hold the first transducer, wherein the holding unit and the first transducer define an air tight cavity.
18. A wireless transmit/receive unit (WTRU) comprising: a housing extending in a longitudinal direction, extending in a width direction and extending in a depth direction, the housing having: (1) a first surface extending in at least the longitudinal and width directions and (2) a second surface extending in at least the width and depth directions; a first transducer configured to reproduce a first audio signal and direct sound from the first transducer in a first direction; and a second transducer configured to reproduce a second audio signal and direct sound from the second transducer in a second direction, different from the first direction; wherein: the first transducer is centered in the housing with respect to the width direction and is configured to operate as an earphone for handheld communication and as a loudspeaker for hand-free communication, and the second transducer is offset from a center of the housing with respect to the width direction.
19. The WTRU of claim 18, wherein the first transducer and the second transducer reproduce the first and second audio signals, as stereophonic sound.
20. The WTRU of claim 18, wherein the first surface and second surfaces define a plurality of openings such that the first transducer is positioned adjacent to a first one of the openings associated with the first surface and the second transducer is positioned adjacent to a second one of the openings associated with the second surface.
21. The WTRU of claim 19, wherein the first transducer directs the reproduced first audio signal in the first direction through the first one of the openings and the second transducer directs the reproduced second audio signal in the second direction through the second one of the openings.
22. The WTRU of claim 18, wherein: the first transducer is configured to operate in a first portion of a frequency band; and the second transducer is configured to operate in a second portion of a frequency band that overlaps with the first portion of the frequency band.
23. The WTRU of claim 18, wherein the second transducer is located at one edge within the housing.
24. The WTRU of claim 18, wherein the first transducer and the second transducer are any of: electro-mechanical transducers or piezo transducers.
25. The WTRU of claim 18, wherein: the first transducer is configured to receive the first audio signal, as a first channel of a stereo signal; and the second transducer is configured to receive the second audio signal, as a second channel of the stereo signal.
26. The WTRU of claim 18, further comprising a holding unit disposed in the housing to hold the first transducer, wherein the holding unit and the first transducer define an air tight cavity.
27. A wireless transmit/receive unit (WTRU) comprising: a housing having: (1) a first surface extending in at least a longitudinal direction and a width direction and (2) a second surface extending in at least the width direction and a depth direction; a first transducer configured to reproduce a first audio signal, the first transducer centered in the housing with respect to the width direction and configured to operate as an earphone for handheld communication and as a loudspeaker for hand-free communication, and a second transducer configured to reproduce a second audio signal, the second transducer being offset from a center of the housing with respect to the width direction, wherein the first transducer and the second transducer reproduce the first and second audio signals, as stereophonic sound.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Other features and advantages of the invention become apparent from the following description of two embodiments of the invention given by way of non-limiting examples only and with reference to the accompanying drawings, in which:
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
DETAILED DESCRIPTION
[0018] In relation with
[0019] Tests made by the Applicant with the above embodiment give good results for stereophonic effects, not only for the voice signal, but also for music, since secondary frequency band Bs1 is chosen at the upper part of the frequency spectrum, with higher frequencies which can go up to 20 KHz.
[0020] In addition, it is not necessary to enlarge the size of the secondary transducer since its working frequency band is at high frequencies.
[0021] In order to reinforce the stereophonic effect, main transducer LSm and secondary transducer LSs1 are preferably located as far as possible from each other. As best shown in
[0022] Since main frequency band includes at least the phone frequency band, main transducer LPm can also be used for other classical functions of a phone handset, especially as an earphone and/or an hand-free loudspeaker.
[0023]
[0024] In order to reinforce the stereophonic effect, secondary transducers LSs1 and LSs2 are preferably located as far as possible from each other. As best shown in
[0025] In addition, since main frequency band Bm corresponds substantially to the phone frequency band, main transducer LPm can be the transducer classically used in a phone handset as an earphone and/or an hand-free loudspeaker.
[0026]
[0027] Transducers used as main transducer and secondary transducers can be of any kind, such as electro-mechanical transducers, or piezo transducers.
[0028] In addition to the foregoing features described in relation with