CN104735565A - Loudspeaker box device displaying flame dancing light rays - Google Patents

Loudspeaker box device displaying flame dancing light rays Download PDF

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Publication number
CN104735565A
CN104735565A CN201510054585.XA CN201510054585A CN104735565A CN 104735565 A CN104735565 A CN 104735565A CN 201510054585 A CN201510054585 A CN 201510054585A CN 104735565 A CN104735565 A CN 104735565A
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China
Prior art keywords
light
rotation axis
flame
shell
waves
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Pending
Application number
CN201510054585.XA
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Chinese (zh)
Inventor
陈灿曜
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Individual
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Individual
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Priority to CN201510054585.XA priority Critical patent/CN104735565A/en
Publication of CN104735565A publication Critical patent/CN104735565A/en
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Abstract

The invention discloses a loudspeaker box device displaying flame dancing light rays. The loudspeaker box device has the structural feature of displaying the flame dancing light rays. The light rays can be reflected to a display face to display irradiation light with flame dancing patterns. According to the device, the flame dancing light rays are started to be displayed when music is played, and the flame dancing light rays with different areas and the flame dancing light rays with different colors are shown according to the change of music beats.

Description

Display flame waves the loudspeaker box device of light
Technical field
System of the present invention, about a kind of loudspeaker box device, espespecially a kind ofly can show the loudspeaker box device that flame waves light.
Background technology
General audio amplifier, except for except sounding, also becomes visual plant often selected in amusement, decoration.Audio amplifier industry is all constantly in the various different structure improving audio amplifier.The ㄧ of the object that this kind redesigns is for increasing its usability, and such as, providing one can with the different audio frequency of speaker sound, and make luminescence component luminous by control circuit, and just like the effect of revolving horse lantern, make audio amplifier can have the sound and light program of difference, to increase the merit able one of audio amplifier.
But known techniques is not for the problem that can present as " flame waves light " effect.
Summary of the invention
In view of this, the present invention is directed to the disappearance of prior art existence, an object of the present invention shows for providing a kind of the loudspeaker box device that flame waves light, and it has can show the architectural feature that flame waves light.
Another object of the present invention shows for providing a kind of the loudspeaker box device that flame waves light, and it has durability and architectural feature easy to carry.
To achieve these goals, technical scheme of the present invention is: a kind ofly show the loudspeaker box device that flame waves light, and it comprises:
One shell, has at least one for can the display surface of printing opacity display after being irradiated by light;
One first luminescence unit, to be located in this shell and for emission of light;
One first lens unit, is located in this shell, comprises: one first rotation axis, and it is and this first luminescence unit interval configures; And multiple first refractive mirror, these first refractive mirror systems to be sequentially staggered with at least two kinds of different angles along the axis of this first rotation axis and to be configured on this first rotation axis, to activate when this first rotation axis rotates and to drive these first refractive mirror synchronous rotaries, make these first refractive mirrors be suitable for receiving and change this light to wave the irradiation light of kenel into a flame to reflex to this display surface;
One acoustics unit, is located in this shell, for sending musical sound and exporting a sound signal; And
One control unit, it is be located in this shell, for receiving this sound signal, and provide at least one driving signal to make this first luminescence unit emission of light according to the variation of this sound signal, and drive this first rotation axis and these first refractive mirrors to rotate, to make by this light reflections of these first refractive mirrors to this display surface to be shown as the irradiation light that flame waves kenel.
As a kind of priority scheme, the wherein arrangement of these first refractive mirrors, is seen as cross from the axis of this first rotation axis and interlocks shape.
As a kind of priority scheme, wherein each first refractive mirror has at least one arc curved surface and is positioned to receive and changes the refraction minute surface of this light.
As a kind of priority scheme, it comprises a drive unit further, to be located in this shell and to be connected to this first rotation axis to rotate in order to drive this first rotation axis, and this drive unit is also connected the action for controlling this drive unit with this control unit.
As a kind of priority scheme, it comprises further:
One second luminescence unit, to be located in this shell and for emission of light; And
One second lens unit, be located in this shell, comprise: one second rotation axis, it is be located in this shell, and and this second luminescence unit interval configure, and be connected with this drive unit and rotate to be driven by this drive unit; And multiple second refracting telescope, it is be located in this shell, and these the second refracting telescope systems to be sequentially staggered with at least two kinds of different angles along the axis of this second rotation axis and to be configured on this second rotation axis, to activate when this second rotation axis rotates and to drive these the second refracting telescope synchronous rotaries, make these second refracting telescopes be suitable for receiving and change this light to wave the irradiation light of kenel into a flame to reflex to this display surface;
Wherein, this control unit can provide this driving signal at least one to make this second luminescence unit emission of light, and drive this second rotation axis and these the second refracting telescopes to rotate, to make by this light reflections of these the second refracting telescopes to this display surface to be shown as the irradiation light that flame waves kenel.
As a kind of priority scheme, the wherein arrangement of these the second refracting telescopes, is seen as cross from the axis of this second rotation axis and interlocks shape.
As a kind of priority scheme, wherein each second refracting telescope has at least one arc curved surface respectively and is positioned to receive and changes the refraction minute surface of this light.
As a kind of priority scheme, wherein this second rotation axis and these the second refracting telescopes and this first rotation axis and these first refractive mirrors go to upper and lower interval and configure, and the refraction minute surface of these the second refracting telescopes is different from the size of the refraction minute surface of these first refractive mirrors.
As a kind of priority scheme, wherein this first luminescence unit comprises at least one LED lamp panel with multiple LED.
As a kind of priority scheme, wherein on one of this shell end face, be provided with sender, and be provided with multiple holding section on the inner face of this end face; This acoustics unit comprises at least one loud speaker, which is provided with multiple engaged part and engages for corresponding with the plurality of engaged part.
The present invention compared with prior art has significant progressive and beneficial effect, specific as follows: this display flame waves the loudspeaker box device of light, it has and can show flame and wave the architectural feature of light and the loudspeaker box device that this display flame waves light has durability and architectural feature easy to carry.The loudspeaker box device that this display flame waves light effectively can improve the acoustical quality of this sound equipment, can reach good visual effect again.
Accompanying drawing explanation
The outside drawing of Fig. 1 system embodiment of the present invention.
The exploded view of Fig. 2 system Fig. 1.
Fig. 3 system is according to Fig. 2 content and omit the stereogram of shell.
The stereogram at the contrary visual angle of Fig. 4 system Fig. 3 content.
The stereogram of the first lens unit of the disclosed embodiment of Fig. 5 system.
The end view of the first lens unit in arrow C direction of Fig. 6 system Fig. 5.
The stereogram of the second lens unit of the disclosed embodiment of Fig. 7 system.
The end view of the second lens unit in arrow D direction of Fig. 8 system Fig. 7.
The shell of the disclosed embodiment of Fig. 9 system and the released state figure of acoustics unit.
Embodiment
Referring to figs. 1 to Fig. 9, which show the concrete structure of the embodiment of the present invention, it comprises: shell 10,1 first luminescence unit 20,1 first lens unit 30, acoustics unit 40, control unit 50 and a drive unit 60.
This shell 10 has multiple side 11, the display surface 12 of energy printing opacity display after at least one side wherein in the plurality of side is used as and is irradiated by light.According in Fig. 1,2,9 shownschematically example, the end face 13 of this shell 10 is also provided with the sender 14 running through this end face 13, and the inner top surface of this shell 10 is provided with multiple holding section 15.
This first luminescence unit 20 is to be located in this shell 10 and for emission of light A.This first luminescence unit 20 comprises at least one LED lamp panel 21 with multiple LED, to produce the light of at least one color.
This first lens unit 30 is be located in this shell 10, comprises: one first rotation axis 31 and multiple first refractive mirror 32.This first rotation axis 31 be cross-placed on the first support 33 and and this first luminescence unit 20 interval configure, as the first rotation axis 31 being located at the top of the first luminescence unit 20 but not limiting.The plurality of first refractive mirror 32 is sequentially to be staggered along the axis of this first rotation axis 31 with at least two kinds of different angles to be configured on this first rotation axis 31, drives these first refractive mirror 32 synchronous rotaries to activate when this first rotation axis 31 rotates.As shown in Figure 5,6, the arrangement of these first refractive mirrors 32, is seen as cross from the axis of this first rotation axis 31 and interlocks shape.Each first refractive mirror 32 has at least one arc curved surface 321 and is positioned to receive and changes the refraction minute surface of the light emitted line A of this first luminescence unit 20, so as to make these first refractive mirrors 32 be suitable for receiving and change this first luminescence unit 20 the light A that launches wave the irradiation light of kenel into a flame to reflex to this display surface 14.
This acoustics unit 40 is be located in this shell 10, for sending musical sound and exporting a sound signal.This acoustics unit 40 comprises at least one loud speaker 41, this loud speaker 41 is provided with multiple engaged part 42 and engages for corresponding with the holding section 15 of this shell 10, and this shell 10 can be combined after engaging by holding section 15 is corresponding with engaged part 42 with this loud speaker 41.
This control unit 50 comprises at least one control circuit composition, and be located in this shell 10, for receiving this sound signal, and provide at least one driving signal to make this first luminescence unit 20 emission of light according to the variation of this sound signal, and drive the first rotation axis 31 of this first lens unit 30 and these first refractive mirrors 32 to rotate, to make by the light reflection of these first refractive mirrors 32 to this display surface 14 to be shown as the irradiation light that flame waves kenel.In addition, control unit 50 can also be combined with LED lamp panel 21 and be set together, to simplify overall structure.
This drive unit 60 is to be located in this shell 10 and the first rotation axis 31 being connected to this first lens unit 30 rotates in order to drive this first rotation axis 31 and these first refractive mirrors 32.This drive unit 60 is also connected with this control unit 50, makes this control unit 50 control the startup of this drive unit 60.This drive unit 60 comprises motor 61, power transmission shaft 62 and belt pulley set 63 and forms, one end of power transmission shaft 62 is connected to motor 61, end opposite is connected to belt pulley set 63, by this, driven motor 61 drives power transmission shaft 62 to rotate belt pulley set 63 is rotated, and rotates in order to drive the first rotation axis 31 and first refractive mirror 32.
The loudspeaker box device that the display flame of the present invention waves light also comprises one second luminescence unit 70 and one second lens unit 80.
This second luminescence unit 70 is to be located in this shell 10 and for emission of light B.This second luminescence unit 70 comprises at least one LED lamp panel 71 with multiple LED, to produce the light of at least one color.LED lamp panel 71 can be combined with control unit 50 at this and be set together, to simplify overall structure.
This second lens unit 80 is be located in this shell 10, comprises: one second rotation axis 81 and multiple second refracting telescope 82.This second rotation axis 81 be cross-placed on the second support 83 and and this second luminescence unit 70 interval configure, as the second rotation axis 81 being located at the top of the second luminescence unit 70 but not limiting.The plurality of second refracting telescope 82 is sequentially to be staggered along the axis of this second rotation axis 81 with at least two kinds of different angles to be configured on this second rotation axis 81, drives these the second refracting telescope 82 synchronous rotaries to activate when this second rotation axis 81 rotates.Second rotation axis 81 of the second lens unit 80 is also connected to the belt pulley set 63 of this drive unit 60, makes this drive unit 60 that this second rotation axis 81 and these the second refracting telescopes 82 can be driven to rotate.As shown in Figure 7,8, the arrangement of these the second refracting telescopes 82, is seen as cross from the axis of this second rotation axis 81 and interlocks shape.Each second refracting telescope 82 has at least one arc curved surface 821 and is positioned to receive and changes the refraction minute surface of the light emitted line B of this second luminescence unit 80, so as to make these second refracting telescopes 82 be suitable for receiving and change this second luminescence unit 80 the light B that launches wave the irradiation light of kenel into a flame to reflex to this display surface 14.By, this driving signal at least one that this control unit 50 provides can make this second luminescence unit 70 emission of light, and drive the second rotation axis 81 of this second lens unit 80 to rotate with these second refracting telescopes 82, to make by the light reflection of these the second refracting telescopes 82 to this display surface 14 to be shown as the irradiation light that flame waves kenel.
According in Fig. 2 ~ 4 shownschematically example, this second rotation axis 81 and these the second refracting telescopes 82 are belows that interval is configured at this first rotation axis 31 and these first refractive mirrors 32, but, in this non-limiting example, in the sense of the present invention, this second rotation axis 81 and these the second refracting telescopes 82, can exchange with the setting position of this first rotation axis 31 and these first refractive mirrors 32.In addition, the refraction minute surface (arc curved surface 821) of these the second refracting telescopes 82 is different from the size of the refraction minute surface (arc curved surface 321) of these first refractive mirrors 32, the area of the irradiation light that the refraction minute surface person of the refraction minute surface person making to have larger area relatively small size produces is relatively large, therefore, the illumination effect produced in this way, and this first rotation axis 31 of activated drive and these first refractive mirrors 32 rotate, rotate with this second rotation axis 81 and these the second refracting telescopes 82, operate the irradiation light that the flame varied in size to show area on this display surface 14 simultaneously waves kenel by this.
According to disclosure of the present invention, the light that the light launched in order to avoid the first luminescence unit 20 and the second luminescence unit 70 are launched disturbs mutually, with more can distinguish cover on corresponding refracting telescope, therefore, also one first shadow shield 34 is set in an outer fix of this first lens unit 30, and one second shadow shield 84 is set in an outer fix of this second lens unit 80.
According to the first support 33 and the second support 83 disclosure in the present invention, first support 33 and the second support 83 can be arranged respectively separately, also can be combined into one and arrange to reduce manufacturing process, with lifting packaging efficiency, and reduce the quantity of component and facilitate handling of goods and materials.
During use, this acoustics unit 40 sends musical sound and exports a sound signal, this control unit 50 receives this sound signal, and provide at least one driving signal to make this first luminescence unit 20 and/or this second luminescence unit 70 emission of light according to the variation of this sound signal, and drive the second rotation axis 81 of the first rotation axis 31 of this first lens unit 30 and first refractive mirror 32 and/or this second lens unit 80 and the second refracting telescope 82 to rotate by this drive unit 60, to make by the light of first refractive mirror 32 and/or the light reflection of the second refracting telescope 82 to this display surface 14 to be shown as the irradiation light that flame waves kenel, because the refraction minute surface (arc curved surface 821) of the second refracting telescope 82 is different from the size of the refraction minute surface (arc curved surface 321) of first refractive mirror 32, therefore, two flames varied in size can be produced and wave the irradiation light of kenel on this display surface 14, when the beat change of music, this sound signal aforesaid changes simultaneously, and under the control of the variation of this sound signal, the LED lamp panel 21 of luminescence unit 20 and/or the LED lamp panel 71 of the second luminescence unit 70 can be made to produce the light of different colours, in addition, also produce by the first lens unit 30 and/or the second lens unit 80 the irradiation light that the different flame of size waves kenel.
More than in conjunction with most preferred embodiment, present invention is described, but the present invention is not limited to the embodiment of above announcement, and should contain amendment that the various essence according to the present embodiment carries out, equivalent combinations.

Claims (10)

1. show the loudspeaker box device that flame waves light, it comprises:
One shell, has at least one for can the display surface of printing opacity display after being irradiated by light;
One first luminescence unit, to be located in this shell and for emission of light;
One first lens unit, is located in this shell, comprises: one first rotation axis, and it is and this first luminescence unit interval configures; And multiple first refractive mirror, these first refractive mirror systems to be sequentially staggered with at least two kinds of different angles along the axis of this first rotation axis and to be configured on this first rotation axis, to activate when this first rotation axis rotates and to drive these first refractive mirror synchronous rotaries, make these first refractive mirrors be suitable for receiving and change this light to wave the irradiation light of kenel into a flame to reflex to this display surface;
One acoustics unit, is located in this shell, for sending musical sound and exporting a sound signal; And
One control unit, it is be located in this shell, for receiving this sound signal, and provide at least one driving signal to make this first luminescence unit emission of light according to the variation of this sound signal, and drive this first rotation axis and these first refractive mirrors to rotate, to make by this light reflections of these first refractive mirrors to this display surface to be shown as the irradiation light that flame waves kenel.
2. the display flame as described in claims 1 waves the loudspeaker box device of light, wherein the arrangement of these first refractive mirrors, is seen as cross interlocks shape from the axis of this first rotation axis.
3. the display flame as described in claims 1 or 2 waves the loudspeaker box device of light, and wherein each first refractive mirror has at least one arc curved surface and is positioned to receive and changes the refraction minute surface of this light.
4. the display flame as described in claims 1 waves the loudspeaker box device of light, it comprises a drive unit further, to be located in this shell and to be connected to this first rotation axis and rotate in order to drive this first rotation axis, this drive unit is also connected the action for controlling this drive unit with this control unit.
5. the display flame as described in claims 1 waves the loudspeaker box device of light, and it comprises further:
One second luminescence unit, to be located in this shell and for emission of light; And
One second lens unit, be located in this shell, comprise: one second rotation axis, it is be located in this shell, and and this second luminescence unit interval configure, and be connected with this drive unit and rotate to be driven by this drive unit; And multiple second refracting telescope, it is be located in this shell, and these the second refracting telescope systems to be sequentially staggered with at least two kinds of different angles along the axis of this second rotation axis and to be configured on this second rotation axis, to activate when this second rotation axis rotates and to drive these the second refracting telescope synchronous rotaries, make these second refracting telescopes be suitable for receiving and change this light to wave the irradiation light of kenel into a flame to reflex to this display surface;
Wherein, this control unit can provide this driving signal at least one to make this second luminescence unit emission of light, and drive this second rotation axis and these the second refracting telescopes to rotate, to make by this light reflections of these the second refracting telescopes to this display surface to be shown as the irradiation light that flame waves kenel.
6. the display flame as described in claims 5 waves the loudspeaker box device of light, wherein the arrangement of these the second refracting telescopes, is seen as cross interlocks shape from the axis of this second rotation axis.
7. the display flame as described in claims 5,6 waves the loudspeaker box device of light, and wherein each second refracting telescope has at least one arc curved surface respectively and is positioned to receive and changes the refraction minute surface of this light.
8. the display flame as described in claims 5 waves the loudspeaker box device of light, wherein this second rotation axis and these the second refracting telescopes and this first rotation axis and these first refractive mirrors go to upper and lower interval and configure, and the refraction minute surface of these the second refracting telescopes is different from the size of the refraction minute surface of these first refractive mirrors.
9. the display flame as described in claims 1 waves the loudspeaker box device of light, and wherein this first luminescence unit comprises at least one LED lamp panel with multiple LED.
10. the display flame as described in claims 1 waves the loudspeaker box device of light, wherein on one of this shell end face, is provided with sender, and is provided with multiple holding section on the inner face of this end face; This acoustics unit comprises at least one loud speaker, which is provided with multiple engaged part and engages for corresponding with the plurality of engaged part.
CN201510054585.XA 2015-02-02 2015-02-02 Loudspeaker box device displaying flame dancing light rays Pending CN104735565A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510054585.XA CN104735565A (en) 2015-02-02 2015-02-02 Loudspeaker box device displaying flame dancing light rays

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510054585.XA CN104735565A (en) 2015-02-02 2015-02-02 Loudspeaker box device displaying flame dancing light rays

Publications (1)

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CN104735565A true CN104735565A (en) 2015-06-24

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1222226A (en) * 1996-04-30 1999-07-07 丁普莱克斯北美有限公司 Flame simulating assembly and components thereof
CN2847438Y (en) * 2005-10-20 2006-12-13 苏州仓庆金属制品有限公司 Flame analogue device
CN201114667Y (en) * 2007-04-18 2008-09-10 华阳科技股份有限公司 A multimedia lighting horn
CN201209898Y (en) * 2007-10-16 2009-03-18 深圳市鹏林电子有限公司 Flame emulator of electric fireplace
CN204559819U (en) * 2015-02-02 2015-08-12 陈灿曜 Display flame waves the loudspeaker box device of light

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1222226A (en) * 1996-04-30 1999-07-07 丁普莱克斯北美有限公司 Flame simulating assembly and components thereof
CN2847438Y (en) * 2005-10-20 2006-12-13 苏州仓庆金属制品有限公司 Flame analogue device
CN201114667Y (en) * 2007-04-18 2008-09-10 华阳科技股份有限公司 A multimedia lighting horn
CN201209898Y (en) * 2007-10-16 2009-03-18 深圳市鹏林电子有限公司 Flame emulator of electric fireplace
CN204559819U (en) * 2015-02-02 2015-08-12 陈灿曜 Display flame waves the loudspeaker box device of light

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Application publication date: 20150624

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