MEMBRANE UNIT FOR SPEAKER DEVICE
20220141590 · 2022-05-05
Assignee
Inventors
Cpc classification
H05K3/0011
ELECTRICITY
International classification
H04R31/00
ELECTRICITY
H05K1/18
ELECTRICITY
Abstract
Membrane unit for a speaker device, the membrane unit (1) comprising a membrane (2) and at least two coils (3). The respective longitudinal axes of the at least two coils (3) are arranged in parallel along a main axis (A), a main surface being formed perpendicular to the main axis (A). The at least two coils (3) are positioned adjacent to each other and mechanically connected to the membrane (2), the membrane (2) being substantially flat and having a major surface (S) parallel to the main surface. Wiring (4, 5, 6) to the at least two coils (3) is provided at least partly on a flat part of the membrane (2).
Claims
1. Membrane unit for a speaker device, the membrane unit comprising a membrane and at least two coils, wherein the respective longitudinal axes of the at least two coils are arranged in parallel, a main surface being formed perpendicular to the respective longitudinal axes, the at least two coils being positioned adjacent to each other and mechanically connected to the membrane, the membrane being substantially flat and having a major surface parallel to the main surface, wherein wiring to the at least two coils is provided at least partly on a flat part of the membrane.
2. Membrane unit according to claim 1, wherein the flat part of the membrane is a wiring support element.
3. Membrane unit according to claim 2, wherein the wiring support element is a printed circuit board, the printed circuit board being part of the membrane.
4. Membrane unit according to claim 2, wherein the wiring support element is a printed circuit board, the printed circuit board being attached to the membrane.
5. Membrane unit according to claim 2, wherein the wiring support element is a printed circuit board, the printed circuit board forming the membrane.
6. Membrane unit according to claim 1, wherein the at least two coils are attached to a respective bobbin, the respective bobbins being attached to the membrane.
7. Membrane unit according to claim 6, wherein a part of the wiring to the at least two coils is provided on a surface of the respective bobbins.
8. Membrane unit according to claim 1, wherein the at least two coils are connected in parallel.
9. Membrane unit according to claim 8, wherein the wiring to the at least two coils comprise a parallel connection wiring provided on the wiring support element.
10. Membrane unit according to claim 1, wherein the at least two coils are connected in series.
11. Membrane unit according to claim 10, wherein the wiring to the at least two coils comprise a series connection wiring provided on the wiring support element.
12. Membrane unit according to claim 1, wherein the membrane unit further comprises a suspension element attached to the membrane, or to a peripheral edge thereof.
13. Membrane unit according to claim 1, wherein the membrane comprises two spaced apart membrane sections connected through a pliable/flexible bridge section, wherein each of the membrane sections comprises a coil of the at least two coils.
14. Membrane unit according to claim 13, wherein a width (W.sub.1) of the bridge section is at most 50% of a width (W.sub.2) of each of the membrane sections.
15. Method of manufacturing the membrane unit according to claim 13, comprising the steps of: a) providing a single piece flat printed circuit board (PCB) comprising the wiring to the at least two coils; and b) die cutting the single piece flat printed circuit board to form the two spaced apart membrane sections and the bridge section there between.
16. Method according to claim 15, further comprising the step of c) folding the membrane along the bridge section to position the two membrane sections parallel to one another with the at least two coils being arranged between the two membrane sections.
Description
SHORT DESCRIPTION OF DRAWINGS
[0011] The present invention will be discussed in more detail below, with reference to the attached drawings, in which
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[0013]
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[0019]
DESCRIPTION OF EMBODIMENTS
[0020] Exemplary embodiments of a membrane unit 1 of the present invention are depicted in
[0021] It is understood that the membrane 2 may be seen as a diaphragm, which acts as a transducer for converting mechanical vibrations of the membrane/diaphragm 2 by the at least two coils 3 to sound or vice versa.
[0022] In an embodiment, the flat part of the membrane 2 is a wiring support element 7, which provides for secure and reliable attachment of the wiring/traces 4, 5, 6 to the membrane unit 2. In a further embodiment, the wiring support element 7 is a Printed Circuit Board (PCB), wherein the PCB is part of the membrane 2. In this embodiment, the PCB provides robust routing of the wiring to the at least two coils.
[0023] In an alternative embodiment, the wiring support element 7 is a PCB, but wherein the PCB is attached to the membrane 2, e.g. as a separate component. For example, the PCB may be seen as a separate component securely attached, e.g. glued, to the membrane 2. In this embodiment the membrane 2 may have any desirable shape to provide optimal sound production and where the PCB is attached to the substantially flat part of the membrane 2.
[0024] In an advantageous embodiment, the wiring support element 7 is a PCB and the PCB forms the membrane 2. In this embodiment the PCB itself acts as a diaphragm for producing sound. In particular, the wiring support element 7 and the PCB are integrally formed as a single piece component, thereby minimizing component count and reducing the complexity of the membrane unit 1 as the wiring support element 7, i.e. the PCB, now acts as the diaphragm as mentioned earlier. Therefore, in this embodiment the PCB is the membrane 2 as a result of which the PCB fulfils two functions, being 1) reliably and evenly supporting/routing the wiring 4, 5, 6 to the at least two coils, and 2) acting as a diaphragm for converting mechanical vibrations of the PCB to sound or vice versa. This dual purpose of the wiring support element 7, i.e. the PCB, provides for a greatly simplified and robust design of the membrane unit 1 for use in a speaker device.
[0025] In an embodiment, the wiring 4, 5, 6 to the at least two coils 3 is embedded in the membrane 2 for e.g. protecting the wiring 4, 5, 6 and/or to minimize a thickness of the membrane 2. Also, embedding the wiring 4, 5, 6 in the membrane 2 minimizes damage thereof due to vibrations.
[0026] In a further embodiment the wiring 4, 5, 6 to the at least two coils 3 may be arranged on the membrane 2 for e.g. simplifying the design and/or manufacturing process of the membrane unit 1.
[0027] As mentioned earlier, the membrane 2 may comprise a flat part as a wiring support element 7, wherein the wiring 4, 5, 6 is embedded in the wiring support element 7 or are arranged thereon. Advantageously, the wiring support element 7 is a PCB, wherein the PCB may be part of the membrane 2 as a single piece component, or the PCB may be arranged on the membrane 2 as a separate component.
[0028] Based on these embodiments, it is clear that the wiring 4, 5, 6, to the at least two coils 3 may be embedded in the major surface S or arranged on the major surface S of the membrane 2, wherein the membrane 2 itself may be a PCB. In case a separate PCB is provided arranged on the major surface S of the membrane 2, then the wiring 4, 5, 6, to the at least two coils 3 may be embedded in or arranged on the PCB, the at least two coils 3 are arranged on the PCB.
[0029] In an embodiment, each of the at least two (or the plurality of) voice coils 3 is wired in series in/on the membrane 2, or in/on the wiring support element 7, e.g. a PCB 7. As depicted, the wiring 4, 5 may be seen as positive and negative terminals of the membrane unit 1.
[0030] In
[0031] In the embodiments of
[0032] In
[0033] In an embodiment, a part/portion 4′, 5′, 6′ of the wiring 4, 5, 6 to the at least two coils 3 is provided on a surface (inner or outer surface) of the respective bobbin members 8.
[0034] As shown, the bobbin members 8 allow for the at least two coils 3 to be arranged away/offset from the major surface S of the membrane 2 at a coil offset distance Lc, which is larger than zero. Each part/portions 4′, 5′, 6′ of the wiring 4, 5, 6 then span the coil length Lc between the at least two coils 3 and the membrane 2.
[0035] Note that
[0036] In
[0037] As mentioned above, it is not strictly necessary to use a separate PCB 7 component arranged on the membrane 2 wherein the at least two coils 3 and the wiring 4, 5, 6 is arranged on the PCB. Instead, the membrane 2 and the PCB 7 may be formed in unitary fashion as a single piece component, and as such the PCB 7 is considered to be the membrane 2 so that the PCB 7 acts as a diaphragm for converting mechanical vibration to sound and vice versa.
[0038]
[0039] In
[0040] According to the present invention there is no need to provide a separate planar or conal diaphragm part to the membrane 2 for producing sound. Indeed, in advantageous embodiments the membrane 2 is a PCB 7 for routing the wiring 4, 5, 6, wherein the PCB 7 is solely responsible for the conversion of mechanical vibration to sound or vice versa. Thus, the PCB 7 can be provided in any shape for forming the membrane/diaphragm 2 for a speaker device.
[0041] In
[0042] The magnetic assembly 10, 11 may be connected to, or arranged in, a housing of a speaker device. The plurality of bobbin members 2, each of which has a coil 3, are arranged on the membrane 2, e.g. the PCB 7, which is driven by the magnetic assembly 10, 11 for producing sound.
[0043]
[0044] In an embodiment the width W.sub.1 of the bridge section 2c is at most 50% of the width W.sub.2 of each of the membrane sections 2a, 2b, thereby increasing the foldability of the bridge section 2c. In exemplary embodiments the bridge section 2c has a width W.sub.1 of at most 25%, 10%, or even at most 5% of the width W.sub.2 of each of the membrane sections 2a, 2b to further increase the flexibility of the bridge section 2c. In even further embodiments, the bridge section 2c may comprise multiple (parallel) bridge section elements, the total width of the bridge section elements being equal to the width W.sub.1.
[0045] Just like any other embodiment, the membrane 2 and in particular the membrane sections 2a, 2b, may be seen as diaphragms acting as transducers for converting mechanical vibrations of the membrane sections 2a, 2b to sound or vice versa. In an advantageous embodiment the membrane 2 may be a printed circuit board (PCB) which provides robust routing of the wiring 4, 5, 6 of each coil 3 of the membrane sections 2a, 2b. So in this embodiment the two membrane sections 2a, 2c and the bridge section 2c may be considered to form a single, foldable PCB.
[0046] As shown in
[0047] In an advantageous embodiment, the membrane 2 may be a single PCB, wherein the two membrane sections 2a, 2b as well as the bridge section 2c, including the wiring 4, 5, 6, form a single piece component, so that the number of different components is reduced and as such the membrane unit 1 is simplified.
[0048] From a manufacturing point of view, the two membrane sections 2a, 2b and bridge section 2c may be obtained by die cutting a single piece of flat material to obtain the membrane 2 as shown in
[0049] An important advantage of the pliable/flexible bridge section 2c connecting the two membrane sections 2a, 2b, is that the membrane sections 2a, 2b as shown in
[0050] In
[0051] The present invention has been described above with reference to a number of exemplary embodiments as shown in the drawings. Modifications and alternative implementations of some parts or elements are possible, and are included in the scope of protection as defined in the appended claims.