This application claims priority of German Patent Application No. 102008024816.9, filed May 23, 2008, the disclosure of which is herein incorporated by reference in its entirety.
The invention concerns a dynamic electro-acoustic transducer and an earphone.
Particularly in the case of dynamic electro-acoustic transducers, a connection for the wire of the coil has to be provided.
DE 42 43 308 C2 discloses a dynamic electro-acoustic transducer having a diaphragm carrying the moving coil. The transducer also has two feed lines for the moving coil. In that arrangement the feed lines are in the form of an asymmetrical S-shaped meander. The S-shaped meanders of the feed lines are intended to serve to increase the maximum stroke.
Particularly in the case of dynamic transducers of small dimensions the known wiring arrangement of the feed line reaches its limits. For example it is not possible to guarantee the required continuous oscillation loading of the wires without the wires tearing away. In addition, upon a reduction in the size of the transducer and thus the wire deformation zone, it can happen that the low flexibility of the wires has an influence on the overall flexibility of the transducer so that the transducer for example is damped on one side more than on the other side.
The object of the present invention is to provide a dynamic electro-acoustic transducer and an earphone, which have a higher level of transducer efficiency.
The object of the present invention is attained by a dynamic electro-acoustic transducer comprising a moving coil with a coil exit location. The dynamic electro-acoustic transducer further comprises a single tangent at the moving coil, a first and a second feed line each with a first end with a first portion for coupling to the coil exit location, and a second portion and a second end with a third portion. The second portions of the first and second feed lines are each substantially parallel to each other and to the single tangent at the moving coil.
Thus there is provided a dynamic electro-acoustic transducer having a moving coil with a coil exit location and a first and a second feed line. The first and second feed lines have first ends for coupling to the coil exit location, an intermediate portion and second ends. The intermediate portions of the first and second feed lines are substantially parallel to a tangent at the moving coil.
In accordance with an aspect of the invention the first and second feed lines are of such a configuration that they act at least portion-wise as a torsion bar.
In accordance with a further aspect of the present invention the intermediate portions are twisted upon a movement of the moving coil.
In accordance with still a further aspect of the present invention the first ends of the first and second feed lines move relatively little upon movement of the moving coil.
The invention also concerns an earphone with an above-described dynamic electro-acoustic transducer.
Further configurations of the invention are subject-matter of the appendant claims.
Advantages and embodiments by way of example of the invention are described hereinafter with reference to the drawing.
The configuration of the feed lines in the first and second embodiments make it possible to avoid mode formation so that this now does not have any negative influence on the frequency response characteristic of the transducer. The configuration of the feed line also makes it possible to prevent the flexibility of the wires being able to influence the overall flexibility of the transducer. In addition it is possible in that way to achieve a reduction in a single-sided system damping effect.
The service life of the connecting wires of the oscillating line and thus the entire transducer is increased.
The invention concerns the concept that a maximum mechanical loading of wires in relation to a torsional stress is very much higher than in relation to a bending stress. In the transducer in the first and second embodiments an upward and downward movement of the coil provides that a part of the required mechanical deformation work occurs due to the intermediate portions or the horizontal portions of the wire due to a torsional effect in respect of those portions.
Accordingly a critical bending component at the coil exit location and the wire fixing at the outer edge of the diaphragm can be substantially reduced. To increase the length of the torsion bar (the intermediate portion) the wires can be of a suitable configuration.
In addition the wire length between the two clamping locations is increased so that the overall stiffness of the system is reduced and it is thus possible to avoid one-sided damping of the system by one of the feed lines. If the feed lines are of a sharp-edged configuration the wire modes can then be further limited.
Number | Date | Country | Kind |
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10 2008 024 816 | May 2008 | DE | national |
Number | Name | Date | Kind |
---|---|---|---|
7151840 | Lenhard-Backhaus et al. | Dec 2006 | B2 |
7221773 | Takahashi | May 2007 | B2 |
20100183173 | Teske-Fischer et al. | Jul 2010 | A1 |
20100284559 | Scholz et al. | Nov 2010 | A1 |
20110007930 | Grell et al. | Jan 2011 | A1 |
Number | Date | Country |
---|---|---|
3638727 | May 1987 | DE |
4243308 | Jun 1994 | DE |
19928241 | Feb 2006 | DE |
0122559 | Oct 1984 | EP |
0642291 | Mar 1995 | EP |
0702501 | Mar 1996 | EP |
0821540 | Jan 1998 | EP |
776280 | May 1954 | GB |
WO 03011149 | Dec 2003 | WO |
WO 2004021739 | Mar 2004 | WO |
WO 2004049751 | Jun 2004 | WO |
Number | Date | Country | |
---|---|---|---|
20090290749 A1 | Nov 2009 | US |