High-efficiency speaker with multi-magnet structure
US-2019364367-A1 · Nov 28, 2019 · US
US2023188898A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2023188898-A1 |
| Application number | US-202218074053-A |
| Country | US |
| Kind code | A1 |
| Filing date | Dec 2, 2022 |
| Priority date | Dec 9, 2021 |
| Publication date | Jun 15, 2023 |
| Grant date | — |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A loudspeaker comprises a diaphragm, a tubular voice coil assembly coupled to the diaphragm, a magnet assembly providing an annular gap in which the tubular voice coil assembly is arranged, and a flexible suspension. A longitudinal axis of the tubular voice coil assembly extends along a central axis of the loudspeaker. A longitudinal axis of the annular gap extends along the central axis of the loudspeaker. The flexible suspension has a disc shape and is configured to guide a movement of the tubular voice coil assembly along the central axis of the loudspeaker. The flexible suspension extends substantially perpendicular to the central axis. An inner diameter of the tubular voice coil assembly is greater than or equal to an outer diameter of the flexible suspension.
Opening claim text (preview).
What is claimed is: 1 . A loudspeaker, comprising: a diaphragm, a tubular voice coil assembly coupled to the diaphragm, a longitudinal axis of the tubular voice coil assembly extending along a central axis of the loudspeaker; a magnet assembly providing an annular gap in which the tubular voice coil assembly is arranged, a longitudinal axis of the annular gap extends along the central axis of the loudspeaker; a flexible suspension having a disc shape and configured to guide a movement of the tubular voice coil assembly along the central axis of the loudspeaker, the flexible suspension extends substantially perpendicular to the central axis; and wherein an inner diameter of the tubular voice coil assembly is greater than or equal to an outer diameter of the flexible suspension. 2 . The loudspeaker of claim 1 , wherein the voice coil assembly surrounds the flexible suspension. 3 . The loudspeaker of claim 1 , wherein the voice coil assembly further comprises: a tubular carrier; and a coil of wire arranged on an outside of the tubular carrier, an inner diameter of the tubular carrier is greater than or equal to the outer diameter of the flexible suspension. 4 . The loudspeaker of claim 3 , wherein the voice coil assembly surrounds the flexible suspension. 5 . The loudspeaker of claim 1 , wherein the flexible suspension has a corrugated disk shape. 6 . The loudspeaker of claim 1 , wherein: the magnet assembly further comprises: a ring magnet having an inner diameter that is larger than an outer diameter of the tubular voice coil assembly; a magnetic piece at least partially arranged within the tubular voice coil assembly; and an outer edge of the flexible suspension is attached to the magnetic piece. 7 . The loudspeaker of claim 6 , wherein a central area of the flexible suspension is at least partially attached to the diaphragm. 8 . The loudspeaker of claim 1 , further comprising: a support structure arranged within the tubular voice coil assembly; an outer edge of the flexible suspension is attached to an inner circumference of the tubular voice coil assembly; and a central area of the flexible suspension is at least partially attached to the support structure. 9 . The loudspeaker of claim 8 , wherein the support structure is at least one of: an integral part of a core cap of the magnet assembly a support coupled to the magnet assembly; and an additional magnet arranged at the magnet assembly. 10 . The loudspeaker of claim 1 , further comprising: a tubular carrier attached to the diaphragm and arranged coaxially to the tubular voice coil assembly; an outer diameter of the tubular carrier is smaller than an inner diameter of the tubular voice coil assembly; the flexible suspension has a central opening; and an edge of the central opening is attached to an outer circumference of the tubular carrier. 11 . The loudspeaker of claim 1 , wherein: the magnet assembly further comprises: a ring magnet; having an outer diameter that is smaller than an inner diameter of the tubular voice coil assembly; and a magnetic piece at least partially arranged outside the tubular voice coil assembly; and an outer edge of the flexible suspension is attached to the ring magnet. 12 . The loudspeaker of claim 1 , wherein: the magnet assembly further comprises: a ring magnet; and a magnetic piece; an outer diameter of the ring magnet is smaller than an inner diameter of the tubular coil assembly; the magnetic piece is at least partially arranged outside the tubular voice coil assembly; and an outer edge of the flexible suspension is attached to a core cap coupled to the ring magnet. 13 . The loudspeaker of claim 1 , further comprising: the tubular voice coil assembly has a first tubular voice coil assembly; a second tubular voice coil assembly is coupled to the first tubular voice coil assembly; the diaphragm has a first diaphragm; a second diaphragm is arranged coaxially to the first diaphragm; a central hole in the first diaphragm, the central hole in the first diaphragm has a diameter larger than or equal to an outer diameter of the second diaphragm; and the flexible suspension has a central hole, an edge of the central hole of the flexible suspension is attached to the first diaphragm. 14 . The loudspeaker of claim 13 , further comprising a surround coupling an outer circumference of the second diaphragm to the first diaphragm. 15 . The loudspeaker of claim 13 , wherein the magnet assembly further comprises: a first part arranged outside the first tubular voice coil assembly; a second part arranged between the first tubular voice coil assembly and the second tubular voice coil assembly; a third part arranged inside the second tubular voice coil assembly; and a magnetic field generated by at least one magnet of the magnet assembly being guided through the first part, second part and third part. 16 . The loudspeaker of claim 15 , further comprising a surround coupling an outer circumference of the second diaphragm to the first diaphragm. 17 . The loudspeaker of claim 1 , wherein: the magnet assembly further comprises: a split gap core coupled to a magnet of the magnet assembly, the split gap core providing, in an axial direction of a gap in the split gap core, a varying magnetic field with at least two maxima; and the tubular voice coil assembly further comprises: a first coil of wire with a first direction of winding; and a second coil of wire with a second direction of winding opposite to the first direction of winding. 18 . The loudspeaker of claim 1 , further comprising: a basket coupled to the magnet assembly; and a surround coupling an outer circumference of the diaphragm to the basket.
Aspects regarding the frame of loudspeaker transducers · CPC title
Spatial arrangements of separate transducers responsive to two or more frequency ranges · CPC title
Magnetic circuit · CPC title
Aspects regarding the stray flux internal or external to the magnetic circuit, e.g. shielding, shape of magnetic circuit, flux compensation coils · CPC title
comprising a plurality of sections or layers · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.