Receiver With Venting Opening
20180343515 · 2018-11-29
Inventors
- Jan Hijman (Hoofddorp, NL)
- Gerardus Johannes Franciscus Theodorus van der Beek (Hoofddorp, NL)
- Camiel Eugène Groffen (Hoofddorp, NL)
- Tomasz Kaszuba (Hoofddorp, NL)
- Krzysztof Bialy (Hoofddorp, NL)
- Grzegorz Kurpiel (Hoofddorp, NL)
Cpc classification
H04R1/025
ELECTRICITY
H04R2400/11
ELECTRICITY
H04R1/2807
ELECTRICITY
H04R2207/00
ELECTRICITY
International classification
H04R1/28
ELECTRICITY
Abstract
The present invention relates to a receiver assembly comprising a membrane structure comprising a frame portion and a moveable diaphragm, an assembly housing, and an acoustical venting opening connecting an interior volume of the receiver assembly to an exterior volume outside assembly housing, the acoustical venting opening forming an acoustical passage at least through the membrane structure.
Claims
1. A receiver assembly comprising a membrane structure comprising a frame portion and a moveable diaphragm; an assembly housing; and an acoustical venting opening connecting an interior volume of the receiver assembly to an exterior volume outside the assembly housing, the acoustical venting opening forming an acoustical passage at least through the membrane structure.
2. A receiver assembly according to claim 1, wherein the acoustical venting opening is positioned in the frame portion of the membrane structure.
3. A receiver assembly according to claim 1, wherein the frame portion and the moveable diaphragm of the membrane structure form an integrated structure, and wherein one or more openings exist between the frame portion and the moveable diaphragm of the membrane structure.
4. A receiver assembly according to claim 3, further comprising a foil layer secured to the membrane structure, the foil layer forming one or more seal members across one or more openings between the frame portion and the moveable diaphragm.
5. A receiver assembly according to claim 4, wherein the foil layer comprises an acoustical venting opening aligned with the acoustical venting opening in the membrane structure.
6. A receiver assembly according to claim 5, wherein the dimensions of the acoustical venting opening in the foil layer are smaller than the dimensions of the acoustical venting opening in the membrane structure.
7. A receiver assembly according to claim 4, wherein the thickness of the membrane structure is larger than 20 m, such as larger than 30 m, such as larger than 40 m, and wherein the thickness of the foil layer is smaller than 40 m, such as smaller than 30 m, such as smaller than 20 m, such as smaller than 10 m, such as smaller than 8 m, such as smaller than 6 m, such as smaller than 4 m.
8. A receiver assembly according to claim 1, wherein the acoustical venting opening connecting the interior volume of the receiver assembly to the exterior volume outside assembly housing comprises a tube forming the acoustical passage through the membrane structure.
9. A receiver assembly according to claim 1, further comprising a drive unit for driving the moveable diaphragm of the membrane structure in response to an applied drive signal.
10. A receiver assembly according to claim 9, wherein the drive unit comprises a moving armature type drive unit.
11. A receiver assembly according to claim 10, wherein the moving armature type drive unit comprises a U-shaped armature comprising an integrated drive pin.
12. A receiver assembly according to claim 1, wherein the assembly housing comprises a can part and a cover part, and wherein at least part of the frame portion of the membrane structure forms a seal between the can part and the cover part.
13. A receiver assembly according to claim 12 wherein the can part comprises a number of depressions/recesses along its edges, the depressions/recesses leaving space for wires.
14. A receiver assembly according to claim 12, wherein the cover part comprises a sound outlet opening and an acoustical venting opening forming an acoustical passage through the cover part, the acoustical venting opening being aligned with the acoustical venting opening of the membrane structure.
15. A receiver assembly comprising a membrane structure comprising a frame portion and a moveable diaphragm; an assembly housing; and an acoustical venting opening connecting an interior volume of the receiver assembly to an exterior volume outside the assembly housing, the acoustical venting opening comprising a passage through a foil layer.
16. A receiver assembly according to claim 15, wherein the foil layer forms part of a foil layer secured to the membrane structure, the foil layer also forming one or more seal members across one or more openings between the frame portion and the moveable diaphragm.
17. A receiver assembly according to claim 15, wherein the assembly housing comprises a can part and a cover part, and wherein at least part of the frame portion of the membrane structure forms a seal between the can part and the cover part.
18. A receiver assembly according to claim 17, wherein the foil layer is secured to the can part so that the acoustical venting opening goes through the can part.
19. A receiver assembly comprising: a receiver housing comprising a can part and a cover part, the receiver housing defining an inner space, wherein the can part and the cover part are movable relative to each other to define an open configuration and a closed configuration; an armature extending in a first direction in the inner space; and a moveable diaphragm operationally attached to the armature via a drive pin extending in a second direction, the drive pin and the armature being formed in one part.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0040] The present invention will now be described in further details with reference to the accompanying figures.
[0041]
[0042]
[0043]
[0044]
[0045]
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[0047]
[0048] While the invention is susceptible to various modifications and alternative forms specific embodiments have been shown by way of examples in the drawings and will be described in details herein. It should be understood, however, that the invention is not intended to be limited to the particular forms disclosed. Rather, the invention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the invention as defined by the appended claims.
DETAILED DESCRIPTION OF THE INVENTION
[0049] In its broadest aspect the present invention relates to a receiver having a venting opening between a back volume of the receiver and the exterior of the receiver, i.e. outside world. The venting opening may be provided through the membrane of the receiver, through a cover part of a receiver housing and/or through a can part of a receiver housing. The venting opening is provided for boosting the low-frequency response of the receiver.
[0050] Referring now to
[0051] The frame portion is rigidly connected to the receiver housing whereas the moveable diaphragm is hinged to the frame portion in a manner that allows it to move in relation thereto. A foil layer (not shown) is secured to the membrane structure with the aim of providing one or more seal members across one or more openings between the frame portion and the moveable diaphragm.
[0052] The interior of the receiver 100 defines a front volume 107 and a back volume 106 being acoustically connected via a compensation opening 104. Moreover, the back volume 106 is acoustically connected to the exterior 110 of the receiver 100 via a venting opening 105 in the membrane structure 109. A proper tuning of the venting opening 105 using for example a laser will boost the low-frequency response of the receiver. In a preferred embodiment the foil layer secured to the membrane structure, cf. for example
[0053] In order to generate sound the moveable diaphragm may be moved by a drive unit (not shown) which may include a moving armature type drive unit, cf.
[0054] Referring now to
[0055] The assembly of the membrane structure 203 and the foil layer 204 is adapted to be secured to the cover part 201 which may be extended as indicated by the dotted portion 202. When assembled (as indicated by the arrows) the membrane structure 203 and the foil layer 204 separate the front volume 207 from the back volume 209 although these volumes are acoustically connected via the compensation opening 205. The back volume 209 is acoustically connected to the exterior 208 of the receiver via the venting opening 206 in order to boost the low-frequency response of the receiver.
[0056]
[0057] Turning now to
[0058] Referring now to the embodiments 500, 509 shown
[0059]
[0060] In the embodiment shown in
[0061] In the embodiment 600 depicted in
[0062]
[0063] In conclusion the present invention addresses a sound generating receiver having an easy implementable venting opening for boosting the low-frequency response of the receiver. A laser processed foil layer may advantageously be applied for tuning the acoustical properties of the venting opening.