This application claims priority to PCT Application No. PCT/CN2019/112649, having a filing date of Oct. 23, 2019, which is based on CN 201921012649.X, having a filing date of Jul. 2, 2019, the entire contents both of which are hereby incorporated by reference.
The following relates to the loudspeaker field, in particular to a multi-input driving loudspeaker.
Existing loudspeakers generally adopt a structure comprising a conical cone (made of paper, PP and other materials) combined with a damper, the middle of the conical cone and the damper is respectively provided with a central hole, the damper is arranged below the conical cone, a single signal input voice coil passes through the center holes of the damper and the conical cone, and the conical cone and the damper are glued on the voice coil respectively to form a loudspeaker vibration system. This kind of loudspeaker can only be used for single signal input and has limitations on the reproduction of the original sound.
Therefore, one of the current improvements is to adopt a structure comprising a conical cone combined with a damper with a central hole in the middle thereof respectively, the damper is arranged under the conical cone, and the voice coil is changed from the single signal input mode to a multiple signal input mode and passes through the center holes of the damper and the conical cone, wherein the voice coil is formed by stacking multiple sets of coils from the inside to the outside, and the conical cone and the damper are glued on the voice coil respectively to form a loudspeaker vibration system. This kind of loudspeaker can be used for multiple signal input. However, since this type of loudspeaker has multiple sets of coils wound on one voice coil, winding multiple sets of coils on one voice coil increases the weight of the voice coil, and when the voice coil drives the cone, the sensitivity of the loudspeaker will be lost.
An aspect relates to a multi-input-driving loudspeaker, which reduces the distortion of a loudspeaker and also improves the sensitivity and the intelligibility of the loudspeaker.
To achieve the above purpose, the technical solution employed by the present disclosure is:
In the present disclosure, “multi-input” refers to multiple audio signal inputs; “multi-input driving” refers to multiple audio signals input to multiple voice coils, and the multiple voice coils jointly drive the loudspeaker to produce sound.
In an embodiment, the loudspeaker comprises three or more input driving mechanisms, and the three or more input driving mechanisms are arranged at equal intervals along a circle.
In an embodiment, the cone has a cone bottom with a flat-sheet shape and circular as a whole, and a center of the circle coincides with a center of the cone bottom, three or more voice coil mounting holes are opened on the cone bottom, center lines of the voice coil mounting holes pass through the circle, each of the voice coil mounting holes is provided with one voice coil so that the voice coil is connected with the cone bottom; three or more voice coil holes are opened on the damper, and the three or more voice coil holes are arranged at equal intervals along the circle. The bottom of the cone employs a flat-sheet shape, reduces the overall height of the cone, facilitates the reduction of the overall height of the loudspeaker, and broadens the directivity.
In an embodiment, three or more magnetic circuit mounting holes are arranged on the frame, the magnetic circuit mounting holes are arranged at equal intervals along the circle, and each of the magnetic circuit mounting holes is provided with one magnetic circuit assembly.
In an embodiment, the cone further comprises a tapered edge portion extending obliquely upwards from an outer edge of the cone bottom, and the tapered edge portion is fixedly connected to the frame through a yoke ring.
In an embodiment, the frame is provided with a flange surrounding the plurality of magnetic circuit mounting holes, and the damper and the flange cooperate with each other so that the damper is clamped into the flange.
In an embodiment, the flange is a closed circular ring shape.
In an embodiment, the damper has a main body portion shaped as flat-plate, and the voice coils are opened on the main body portion.
In an embodiment, the main body portion comprises a fabric layer and a plastic sheet layer laminated on each other.
In an embodiment, the frame is opened with a vent hole, and the vent hole is arranged between the plurality of magnetic circuit mounting holes. It is conducive to the discharge of the gas generated when the voice coils vibrate up and down and the heat generated during work.
In an embodiment, each of the input driving mechanisms further comprises a dust cover, and each of the voice coil mounting holes is covered with one dust cover.
In an embodiment, each magnetic circuit assembly comprises a U-yoke having an inner cavity, a magnetic steel and a magnetic pole core arranged within the U-yoke, a magnetic gap is formed between the magnetic steel and the magnetic pole core and an inner wall of the U-yoke, the voice coil is inserted in the magnetic gap and capable of moving in an up-and-down direction, and an upper edge of the U-yoke is fixedly connected to the magnetic circuit mounting hole of the frame.
In an embodiment, the magnetic steel is neodymium magnetic steel or ferrite magnetic steel.
In an embodiment, the frame is provided with multiple pairs of audio signal input terminals, each pair of audio signal input terminals is electrically connected to leads of one voice coil.
In an embodiment, the frame is provided with a plurality of reinforcing ribs. It can increase the strength of the cone when it is working.
In an embodiment, the plurality of input driving mechanisms is arranged along a circle, a straight line, or an array.
In an embodiment, the loudspeaker comprises three or more input-driving mechanisms, the three or more input driving mechanisms are arranged at equal intervals along a circle, the cone has a cone bottom with a flat-sheet shape and circular as a whole, a center of the circle coincides with a center of the cone bottom, three or more voice coil mounting holes are opened on the cone bottom, center lines of the voice coil mounting holes pass through the circle, each of the voice coil mounting holes is provided with one voice coil so that the voice coil is connected with the cone bottom, the loudspeaker further comprises a damper, three or more voice coil holes are opened on the damper, and the three or more voice coil holes are arranged at equal intervals along the circle, and each of the voice coils is inserted in a corresponding voice coil hole and is closely fitted with the damper.
Due to the use of the above technical solutions, the present disclosure has the following advantages over the conventional art:
In the multi-input-driving loudspeaker of the present disclosure, the structure is ingenious and rational, and the original sound reproduction and distortion are better than that of traditional loudspeakers by receiving audio signal input via multiple voice coils; by the input-driving structure formed by a plurality of voice coils and a plurality of magnetic circuit assemblies, the sensitivity of the loudspeaker is increased, and the intelligibility of the loudspeaker is improved.
Some of the embodiments will be described in detail, with references to the following Figures, wherein like designations denote like members, wherein:
1—frame; 10—magnetic circuit mounting hole; 11—flange; 12—vent hole; 2—cone; 20—voice coil mounting hole; 21—cone bottom; 22—tapered edge portion; 23—reinforcing rib; 3—input drive mechanism; 31—dust cover; 32—voice coil; 320—lead; 33—secondary neodymium magnetic steel; 34—magnetic pole core; 35—main neodymium magnetic steel; 36—U-yoke; 4—damper; 40—voice coil hole; 5—yoke ring; 6—audio signal input terminal.
In the following, the preferable embodiment of the present disclosure are explained in detail combining with the accompanying drawings so that the advantages and features of the present disclosure can be easily understood by the skilled persons in the art. It should be noted that the explanation on these implementations is to help understanding of the present disclosure, and is not intended to limit the present disclosure.
This embodiment provides a multi-input-driving loudspeaker, herein, “multi-input” refers to multiple audio signal inputs, multiple audio signals are input to multiple voice coils, and the multiple voice coils jointly drive the loudspeaker to produce sound. Referring to
In this embodiment, it is preferable to adopt a cone whose bottom is a circular shape as a whole, and the plurality of input-driving mechanisms are arranged in a ring around the circle of the bottom of the cone. In some other embodiment, the cone has an oval or rectangular cone bottom, and the plurality of the input-driving mechanisms are arranged linearly or in an array. In this embodiment, the frame 1 is made of plastic using processes such as injection molding, which is easy to form and has a certain strength, and the magnetic circuit mounting holes 10 are through holes that penetrate the frame 1 from top to bottom. The cone 2 further comprises a tapered edge portion 22 extending obliquely upwards from the outer edge of the cone bottom 21, and the tapered edge portion 22 is arranged in a circle around the cone bottom 21. The cone 2 is made of paper pulp, plastic (such as, PP (polypropylene)), ballistic fiber or aluminum alloy, and the made cone 2 is light in weight, has good damping elasticity and rigidity, high temperature and low temperature resistance, waterproof and mildew proof. In addition, the tapered edge portion 22 of the cone 2 is fixedly connected to the frame 1 through a yoke ring 5, which is made of sponge, rubber, or cloth. With the cone 2 with the above-mentioned shape, the directional expansion width is superior to that of the traditional conical loudspeaker, and the height is lower than that of the traditional conical cone 2, which is beneficial to reducing the overall height of the loudspeaker.
The damper 4 is located in the cavity formed between the frame 1 and the cone 2 after they are connected, and is clamped into the frame 1, and with the restrict of the damper 4, the voice coils 32 can only move up and down, and cannot produce displacement in the horizontal direction. Specifically, the frame 1 has an upwardly extending flange 11 surrounding the three magnetic circuit mounting holes 10, the flange 11 is specifically a closed ring-shaped protrusion, and the damper 4 is clamped into the flange 11, and the outer edge of the damper 4 is in close contact with the inner wall of the flange, so that the damper 4 can be retained by the inner walls of the flange 11 (as shown in
The frame 1 is opened with a vent hole 12 in the middle, and the vent hole 12 is arranged between the three magnetic circuit mounting holes 10, the vent hole 10 run through the middle of the frame 1 from top to bottom, which is conducive to the discharge of the gas generated when the voice coils vibrate up and down and the heat generated during work.
Each input-driving mechanism 3 also comprises a dust cover 31. The specific structure of the input-driving mechanisms 3 will be described in detail below. As shown in
The magnetic circuit assemblies in this embodiment adopt the aforementioned secondary neodymium magnetic steel and the main neodymium magnetic steel, which has the advantages of small volume and light weight. In some other embodiment, the aforementioned secondary neodymium magnetic steel and the main neodymium magnetic steel in the magnetic circuit assemblies can be replaced with ferrite magnetic steel respectively, thereby reducing the cost of the magnetic circuit assemblies.
As shown in
As shown in
The working principle of the multi-input-driving loudspeaker is: the audio signal is input to the plurality of voice coils 32 through the audio signal input terminals 5 on the frame 1, and the plurality of voice coils 32 move up and down synchronously under the action of the magnetic circuit assemblies, thereby driving the cone 2 to vibrate to produce sound. The multi-input-driving loudspeaker of the present disclosure adopts a cone 2 with a flat-shaped bottom, three or more voice coil mounting holes 20 are provided on the plane formed by the cone bottom 21, and tightly fitted with three or more voice coils 32, and then the voice coils 32 are tightly fitted with the damper 4 to form three or more input-driving mechanisms 3, and by using three or more magnetic circuit assemblies to drive the voice coils 32, and three or more voice coils 32 to drive the voice cone 2, it can not only reduce the height of the product, but also broaden the directivity of the product, and through multiple audio signal inputs, it can reduce the distortion of the product, increase the sensitivity of the loudspeakers, and improve the intelligibility of the loudspeaker. The use of integrated terminals simplifies the connection of the product and facilitates the connection of audio signal input.
The loudspeaker structure is ingenious and rational, and through the use of a flat-bottom conical cone structure, the flat-bottom conical cone has a better directivity than traditional loudspeakers; by receiving the audio signal input via three or more voice coils, the original sound reproduction and distortion are better than that of traditional loudspeakers; by adopting a cone shape with flat-bottom, the height of the cone is lower than that of the traditional conical cone, and the reduction of the height of the cone can also reduce the height of the product; by using an input-driving structure composed of three or more voice coils and three or more magnetic circuit assemblies, the sensitivity of the loudspeaker is increased; by closely connecting the flat-bottom conical cone with three or more voice coils, the three or more voice coils are driven through three or more audio signal inputs to move up and down in the U-yoke magnetic circuit to drive the cone to sound.
Although the present invention has been disclosed in the form of preferred embodiments and variations thereon, it will be understood that numerous additional modifications and variations could be made thereto without departing from the scope of the invention.
For the sake of clarity, it is to be understood that the use of ‘a’ or ‘an’ throughout this application does not exclude a plurality, and ‘comprising’ does not exclude other steps or elements.
Number | Date | Country | Kind |
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201921012649.X | Jul 2019 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2019/112649 | 10/23/2019 | WO |
Publishing Document | Publishing Date | Country | Kind |
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WO2021/000459 | 1/7/2021 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
6748090 | Bachmann et al. | Jun 2004 | B1 |
Number | Date | Country |
---|---|---|
1121678 | May 1996 | CN |
201263213 | Jun 2009 | CN |
201639768 | Nov 2010 | CN |
202713598 | Jan 2013 | CN |
204733375 | Oct 2015 | CN |
107454530 | Dec 2017 | CN |
WO-2005101901 | Oct 2005 | WO |
Entry |
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International Search Report for PCT /CN2019/112649 dated Mar. 13, 2020. |
Number | Date | Country | |
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20220248143 A1 | Aug 2022 | US |