WO2019136693A1 - 音乐筒灯及其应用 - Google Patents

音乐筒灯及其应用 Download PDF

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Publication number
WO2019136693A1
WO2019136693A1 PCT/CN2018/072404 CN2018072404W WO2019136693A1 WO 2019136693 A1 WO2019136693 A1 WO 2019136693A1 CN 2018072404 W CN2018072404 W CN 2018072404W WO 2019136693 A1 WO2019136693 A1 WO 2019136693A1
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WO
WIPO (PCT)
Prior art keywords
acoustic
mounting
downlight
socket
music
Prior art date
Application number
PCT/CN2018/072404
Other languages
English (en)
French (fr)
Inventor
武良举
冯文钦
Original Assignee
佛山市威得士灯饰电器有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 佛山市威得士灯饰电器有限公司 filed Critical 佛山市威得士灯饰电器有限公司
Priority to PCT/CN2018/072404 priority Critical patent/WO2019136693A1/zh
Publication of WO2019136693A1 publication Critical patent/WO2019136693A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S8/00Lighting devices intended for fixed installation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V15/00Protecting lighting devices from damage
    • F21V15/04Resilient mountings, e.g. shock absorbers 
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V29/00Protecting lighting devices from thermal damage; Cooling or heating arrangements specially adapted for lighting devices or systems
    • F21V29/50Cooling arrangements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V29/00Protecting lighting devices from thermal damage; Cooling or heating arrangements specially adapted for lighting devices or systems
    • F21V29/50Cooling arrangements
    • F21V29/70Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks
    • F21V29/83Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks the elements having apertures, ducts or channels, e.g. heat radiation holes
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V33/00Structural combinations of lighting devices with other articles, not otherwise provided for

Definitions

  • the present invention relates to a downlight, and more particularly to a music downlight and an application thereof, wherein the musical downlight can be used not only as a lighting tool but also as a music.
  • Downlights are common lighting tools that are typically mounted at a certain height from the ground, such as downlights that are typically mounted on the ceiling. Because it does not take up space, it is closer to the characteristics of natural lighting, whether it is used in outdoor lighting or indoor lighting applications, it is very popular.
  • some merchants combine downlights with music playback devices, such as installing music playback devices into the downlights so that the downlights can simultaneously play music while working.
  • the lamps do not interact with each other when they are illuminated and when they are emitted, so that the light-emitting portion and the sound-emitting portion of the downlight can operate independently of each other.
  • Another problem that needs to be solved is the music playing effect of the downlight, because the sounding part is placed on the downlight, which may be affected by the downlight and thus affect the sound quality of the sounding part, and for the light emitting part of the downlight The presence of the utterance may also affect the light transmission and heat dissipation of the illuminating portion.
  • One object of the present invention is to provide an audio downlight and an application thereof, wherein the musical downlight can emit sound while providing illumination.
  • the music downlight can provide both illumination and sound.
  • An object of the present invention is to provide an audio downlight and a method of manufacturing the same, wherein the music downlight can provide one of illumination and sound, that is, the music downlight can emit no sound when providing illumination, and No illumination is provided when the sound is emitted to meet the different needs of the user.
  • Another object of the present invention is to provide a music downlight and an application thereof, wherein the music downlight can provide a better lighting effect and a better sound playing effect.
  • Another object of the present invention is to provide an audio downlight and an application thereof, wherein the musical downlight combines illumination and sound in a structure such that the two do not interact with each other.
  • Another object of the present invention is to provide an audio downlight and an application thereof, wherein the music downlight integrates illumination and sound into one structure, resulting in a compact design and reduced manufacturing costs.
  • Another object of the present invention is to provide an audio downlight and an application thereof, wherein the heat dissipation capability of the music downlight is improved.
  • the musical downlight provides a lamp holder, an acoustic assembly, and an optical assembly, wherein the optical assembly is disposed on the socket, the acoustic An assembly is disposed at a rear of the socket, wherein sound generated by the acoustic assembly can be propagated through the socket.
  • the socket is capable of directing the direction of propagation of sound produced by the acoustic assembly.
  • the socket guides the direction of propagation of the sound produced by the acoustic assembly in a manner that changes the direction of radiation of the acoustic waves generated by the acoustic assembly.
  • Another object of the present invention is to provide an audio downlight and an application thereof, wherein the acoustic assembly is capable of enhancing the heat dissipation capability of the musical downlight in a manner that agitates the gas.
  • Another object of the present invention is to provide an audio downlight and an application thereof, wherein the socket provides an arcuate mounting portion to the optical assembly such that sound emitted by the acoustic assembly passes through the curved mounting portion It can reduce the impact on sound effects.
  • Another object of the present invention is to provide an audio downlight and an application thereof, wherein the lamp holder has a plurality of through holes, so that the lamp holder not only provides space for sound propagation, but also provides a heat dissipation space to reduce heat. Stacked here.
  • Another object of the present invention is to provide an audio downlight and an application thereof, wherein the socket can expand the range of radiation of sound waves generated by the acoustic assembly to enhance the sound of the musical downlight.
  • an audio downlight wherein the musical downlight comprises:
  • the mounting cover has a receiving cavity and a receiving cavity communicating with the receiving cavity, wherein the acoustic component is disposed in the receiving cavity of the mounting cover;
  • a lamp holder wherein the lamp holder has an annular sound transmission channel, wherein the lamp holder is mounted to the mounting cover body in such a manner that the lamp holder closes the receiving cavity of the mounting cover body.
  • the sound passage of the socket communicates with the receiving cavity of the mounting cover, wherein the optical component is held on the opposite side of the socket with the optical component and the acoustic component And being disposed on the lamp holder, wherein sound waves generated by the acoustic component are radiated from the receiving cavity of the mounting cover to the outside of the music downlight via the sound transmission channel of the socket.
  • the lamp socket further includes an annular support portion, a mounting portion and at least one support member, and both ends of each of the support members extend inwardly and outwardly to be connected to the a mounting portion and the support portion, and the sound transmission passage is formed between the support portion and the mounting portion, wherein the optical component is disposed at the mounting portion.
  • the mounting portion includes a mounting wall, each of the support members extending from the mounting wall, wherein the outer wall of the mounting wall is an arcuate outer wall for Acoustic steering produced by acoustic components.
  • the outer wall of the mounting wall is a spherical outer wall.
  • the central axis of the musical downlight, the central axis of the mounting portion and the central axis of the support coincide.
  • the acoustic assembly further includes an acoustic element, wherein the acoustic element is disposed in the receiving cavity of the mounting cover, and the acoustic element is generated in response to an input of an audio signal Sound waves, and sound waves generated by the acoustic element are radiated from the accommodating cavity of the mounting cover to the outside of the music downlight via the sound transmission path of the socket.
  • the acoustic assembly further includes an acoustic cover, wherein the acoustic cover has an acoustic cavity and an acoustic cavity communicating with the acoustic cavity, wherein the acoustic element is disposed in the The acoustic enclosure is described and the acoustic cavity of the acoustic enclosure is closed by the acoustic element.
  • the outer wall of the acoustic cover is provided with a plurality of heat dissipation fins.
  • the socket is mounted to the acoustic enclosure such that the acoustic assembly is retained by the receptacle in the receiving cavity of the mounting enclosure.
  • the music downlight further includes a dustproof member, wherein the dustproof member has at least one acoustic wave passage, wherein the dustproof member is disposed at the socket, and the prevention Each of the acoustic channels of the dust member communicates with the sound transmission channel, respectively.
  • a method of assembling a musical downlight comprising the steps of:
  • step (C) further comprising the step of installing a dustproof member having at least one acoustic wave channel on the socket to allow the acoustic element to input in response to an audio signal
  • the generated sound waves can be radiated to the outside of the music downlight via the acoustic channel of the dustproof member.
  • step (C) further comprising the step of installing a dustproof member having at least one acoustic wave channel on the socket to allow the acoustic element to input in response to an audio signal
  • the generated sound waves can be radiated to the outside of the music downlight via the acoustic channel of the dustproof member.
  • the method further comprises the steps of:
  • the present invention further provides an auxiliary heat dissipation method for a music downlight, wherein the auxiliary heat dissipation method comprises the following steps:
  • step ( ⁇ ) The step ( ⁇ ) and the step ( ⁇ ) are alternately performed to dissipate the music downlight.
  • the gas in the accommodating chamber of the mounting cover is agitated, the gas in the accommodating chamber is formed via the optical component
  • An annular sound passage excluding the mounting cover and in the step ( ⁇ ), when the gas outside the mounting cover is sucked into the receiving cavity, the outside of the mounting cover is made The gas enters the accommodating chamber of the mounting cover via the sound transmission passage formed around the optical assembly.
  • the heat generated by the optical component passes through a mounting portion, at least one support member, and a support portion, and is then transmitted to the surrounding space.
  • the optical component is mounted to the mounting portion, wherein both ends of each of the support members extend inwardly and outwardly to connect to the mounting portion and the support portion, and at the support portion
  • the sound transmission channel is formed between the mounting portion and the mounting portion.
  • the gas in the accommodating cavity of the mounting cover is agitated to discharge the accommodating cavity, and the mounting cover is External gas is drawn into the accommodating chamber of the mounting cover.
  • sound waves are generated while performing the step ( ⁇ ) and the step ( ⁇ ).
  • the present invention further provides a method for sounding a music downlight, wherein the sounding method comprises the following steps:
  • the method further comprises the steps of:
  • Enhancing the low frequency of the acoustic wave of the acoustic element by creating an acoustic cavity between the acoustic element and an acoustic mask of the acoustic assembly.
  • the lamp socket further includes an annular support portion, a mounting portion and at least one support member, and both ends of each of the support members extend inwardly and outwardly to be connected to the a mounting portion and the support portion, and the sound transmission passage is formed between the support portion and the mounting portion, wherein the optical component is disposed at the mounting portion.
  • the mounting portion includes a mounting wall, each of the support members extending from the mounting wall, wherein the outer wall of the mounting wall is an arcuate outer wall for Acoustic steering produced by acoustic components.
  • the outer wall of the mounting wall is a spherical outer wall.
  • the central axis of the musical downlight, the central axis of the mounting portion and the central axis of the support coincide.
  • FIG. 1 is a schematic illustration of a musical downlight in accordance with a preferred embodiment of the present invention.
  • FIG. 2 is an exploded perspective view of the music downlight according to the above preferred embodiment of the present invention.
  • FIG. 3 is a cross-sectional view of the music downlight in accordance with the above preferred embodiment of the present invention.
  • FIG. 4 is a schematic illustration of the music downlight in accordance with the above-described preferred embodiment of the present invention.
  • FIG. 5 is a perspective cross-sectional view of the music downlight in accordance with the above preferred embodiment of the present invention.
  • Figure 6 is a cross-sectional view of a musical downlight in accordance with another preferred embodiment of the present invention.
  • Figure 7 is a cross-sectional view of a musical downlight in accordance with another preferred embodiment of the present invention.
  • Figure 8 is a cross-sectional view of a musical downlight in accordance with another preferred embodiment of the present invention.
  • Figure 9 is a perspective view of a lamp holder of a musical downlight in accordance with the present invention.
  • FIG. 10A is a perspective view of a lamp holder of a music downlight according to another embodiment of the present invention.
  • FIG. 10B is a perspective view of a lamp holder of a music downlight according to another embodiment of the present invention.
  • Figure 11 is a perspective view of a musical downlight in accordance with a preferred embodiment of the present invention.
  • Figure 12 is an exploded perspective view of the music downlight in accordance with the above preferred embodiment of the present invention.
  • Figure 13 is a cross-sectional view of the musical downlight in accordance with the above preferred embodiment of the present invention.
  • the term “a” is understood to mean “at least one” or “one or more”, that is, in one embodiment, the number of one element may be one, and in other embodiments, the element The number can be multiple, and the term “a” cannot be construed as limiting the quantity.
  • a music downlight in accordance with a preferred embodiment of the present invention is illustrated wherein the music downlight is capable of emitting sound while providing a lighting effect and is capable of providing a better musical effect.
  • the music downlight includes a mounting cover 10, an acoustic assembly 20 and an optical assembly 30, wherein the mounting cover 10 has a receiving cavity 100, wherein the acoustic assembly 20 and the optical assembly 30 is housed in the accommodating chamber 100.
  • the acoustic assembly 20 is used to emit sound and the optical assembly 30 is used for illumination.
  • the mounting cover 10 is capable of protecting the acoustic assembly 20 and the optical assembly 30, and the acoustic assembly 20 and the optical assembly 30 can be mounted on a ceiling or the like through the mounting cover 10. The fixture is attached.
  • the optical component 30 has a light emitting surface, and the acoustic component 20 has a sound emitting surface.
  • the acoustic component 20 and the optical component 30 are mounted to the mounting cover 10
  • the acoustic component 20 is housed in The accommodating cavity 100 is disposed, and the sound emitting surface of the acoustic component 20 is disposed to face the optical component 30, and the light emitting face of the optical component 30 is disposed to face the mounting cover 10 Externally, the light is directed outward to produce a lighting effect.
  • the acoustic assembly 20 is disposed inside the mounting cover 10 relative to the optical assembly 30, that is, sound waves emitted by the acoustic assembly 20 need to be transmitted through the optical assembly 30. Go to the outside world. In this manner, the acoustic component 20 does not impede light propagation to the optical component 30 when the optical component 30 is illuminated.
  • the mounting cover 10 has a receiving cavity 101 that communicates with the receiving space 100, wherein the acoustic component 20 and the optical component 30 are mounted through the receiving cavity 101
  • the inside of the accommodating chamber 100 of the mounting cover 10 is provided.
  • the accommodation opening 101 of the mounting cover 10 is disposed downward. Both the sound emitting surface of the acoustic component 20 and the light emitting surface of the optical component 30 are disposed downwardly on the mounting cover 10 so that both sound and light can pass through the receiving cavity 101 to the outside.
  • the music downlight includes a socket 40, wherein the socket 40 is used to support the optical assembly 30 to the mounting cover 10.
  • the lamp holder 40 is housed in the accommodating cavity 100 and is mounted to the mounting hood 10, and the optical component 30 is stably mounted to the accommodating cavity 100 through the lamp holder 40.
  • the preset position is such that the optical component 30 located on the inside does not have an excessive influence on the optical component 30 when it is uttered.
  • the lamp holder 40 can not only support the optical component 30, but also help the optical component 30 to dissipate heat to avoid heat accumulation here and affect the normal operation of other components.
  • the lamp holder 40 includes a support portion 41 and a mounting portion 42, a plurality of support members 43 and a sound transmission passage 44, wherein the mounting portion 42 is coupled to the support portion 41 through the support member 43.
  • the support portion 41 is used to support the acoustic assembly 20, and on the other hand, the support portion 41 is connected to the mounting cover 10. That is, one end of the support portion 41 is connected to the acoustic assembly 20, and the other end is connected to the mounting cover 10 and covers the receiving cavity 101 of the mounting cover 10.
  • One end of the support member 43 is connected to the support portion 41 , and the other end is connected to the mounting portion 42 .
  • the sound transmission passage 44 is formed between the support portion 41 and the mounting portion 42, and the support member 43 is disposed at the sound transmission passage 44 through the support member 43, the sound transmission passage 44 It is divided into multiple spaces for sound to pass through.
  • the sound channel 44 is an annular channel.
  • the inner wall of the support portion 41 is a circular inner wall
  • the outer wall of the mounting portion 42 is a circular outer wall, wherein the support portion 41 is on the inner wall of the support portion 41 and the outer wall of the mounting portion 42 A manner of having a gap therebetween surrounds the outside of the mounting portion 42, thereby forming an annular sound transmission passage 44 between the support portion 41 and the mounting portion 42.
  • the central axis of the musical downlight passes through the center of the inner wall of the support portion 41 and the center of the outer wall of the mounting portion 42, such that the inner wall of the support portion 41 is at any one position to the The distances of the outer walls of the mounting portion 42 are the same, and in this way, the consistency of the sound waves generated by the acoustic assembly 20 when radiated from the accommodating chamber 100 to the outside via the sound transmission passages 44 can be ensured.
  • the mounting portion 42 is used to house the optical assembly 30.
  • the mounting portion 42 has a mounting cavity 421 and a mounting cavity 4211 that communicates with the mounting cavity 421, wherein the orientation of the mounting cavity 4211 coincides with the orientation of the receiving cavity 101.
  • the mounting portion 42 includes a mounting wall 422, wherein the mounting wall 422 surrounds the mounting cavity 421. It is worth mentioning that the mounting wall 422 is disposed as an arcuate structure recessed inwardly, in other words, the outer wall of the mounting wall 422 is an arcuate outer wall, so that when the acoustic component 20 is audible, passing through the location The mounting wall 422 of the mounting portion 42 of the sound transmission passage 44 is propagated outward.
  • the outer wall of the mounting wall 422 is spherical, in such a manner that the acoustic wave 20 generated by the acoustic component 20 in response to the input of the audio signal is radiated to the outer wall of the mounting wall 422, the mounting wall 422
  • the outer wall enables the acoustics produced by the acoustic assembly 20 to be evenly radiated in all directions around the item to further improve the sound of the musical downlight.
  • the cross-sectional area of the mounting portion 42 is smaller than the cross-sectional area of the support portion 41 such that when the socket 40 is mounted to the mounting cover 10, sound can pass through the mounting portion 42 and the support portion 41. The space between them propagates outward, that is, through the sound channel 44.
  • the mounting portion 42 is coupled to the support portion 41 by the support member 43.
  • one end of the support member 43 is connected to the periphery of the mounting portion 42, and the other end of the support member 43 is connected to the support portion 41.
  • the support member 43 is disposed to extend outward from the circumferential direction of the mounting portion 42 to the support portion 41.
  • the support member 43 can support the mounting portion 42 on the support portion 41 , and the light-emitting assembly mounted on the mounting portion 42 can be fixed to the mounting cover 10 through the socket 40 .
  • the support portion 41 includes a surrounding wall 411 and a bottom wall 412 and has a support cavity 413, wherein the surrounding wall 411 surrounds the support cavity 413, and the mounting portion 42 and the support member 43 are accommodated.
  • the support cavity 413 is formed in the sound transmission channel 44 in the support cavity 413.
  • connection from the socket 40 and the mounting cover 10 can be prevented from being viewed from the outside, ensuring the aesthetics of the music downlight, and on the other hand, preventing dust or moisture.
  • a substance that may cause damage to the inside of the music downlight enters the accommodating chamber 100.
  • the support member 43 is disposed at the support cavity 413 of the surrounding wall 411 of the support portion 41.
  • the height of the support member 43 is set lower than the surrounding wall 411 to leave a space above the surrounding wall 411 for the acoustic component 20 placed at the top end of the surrounding wall 411 to propagate sound.
  • the effect of the support member 43 on the sound waves emitted by the acoustic component 20 is also reduced.
  • the highest point distance of the mounting wall 422 of the mounting portion 42 of the socket 40 is set to have a predetermined distance from the acoustic component 20, and in this way, the mounting is also reduced.
  • the effect of heat dissipation by the optical assembly 30 of the socket 40 on the acoustic assembly 20 is caused.
  • the mounting portion 42 is formed at an intermediate position of the socket 40, and the cross section of the mounting portion 42 is set to a concave circle.
  • the circle here refers to a shape in which a complete circle is divided by any straight line. That is, the mounting portion 42 has a curved surface, wherein the curved surface is disposed to face the acoustic assembly 20.
  • the mounting portion 42 has a cross-sectional area that is smaller than the sounding surface of the acoustic assembly 20 such that sound emitted by the acoustic assembly 20 can propagate through the mounting portion 42. Further, the curved surface of the mounting portion 42 and the support member 43 and the sound emitting surface each have a predetermined distance.
  • a propagation space is formed between the socket 40 and the acoustic component 20, the propagation space is located at the top end of the sound transmission channel 44, and the sound passes through the propagation space first and then passes through the The space between the supports 43 is transmitted to the outside.
  • the acoustic assembly 20 is mounted to the accommodating chamber 100, and the intermediate position of the acoustic assembly 20 and the intermediate position of the mounting portion 42 are on the same axis, that is, when the acoustic assembly 20 emits sound When passing through the mounting portion 42, the curved surface of the mounting portion 42 is uniformly propagated to enable the musical downlight to sound more uniformly.
  • the acoustic assembly 20 is fixedly connected to the optical assembly 30 through the socket 40 to ensure that the acoustic assembly 20 and the optical assembly 30 are in use during use of the musical downlight.
  • the relative position is stabilized, thereby ensuring the musical effect and lighting effect of the music downlight.
  • the acoustic assembly 20 includes an acoustic element 21 and an acoustic enclosure 22, wherein the acoustic element 21 is received in the acoustic enclosure 22, the acoustic component 21 being paired by the acoustic enclosure 22 Pre-installed above the optical assembly 30 to enable the sound of the acoustic element 21 to emit better sound during propagation.
  • the acoustic cover 22 is coupled to the top surface of the support portion 41 of the socket 40.
  • the support portion 41 has a top surface 414 and a bottom surface 415, wherein the bottom surface 415 of the support portion 41 is at a lower position than the top surface 414 when the music downlight is mounted to the ceiling.
  • the acoustic enclosure 22 is detachably coupled to the socket 40 to facilitate replacement and repair of the acoustic enclosure 22 and the socket 40.
  • the acoustic cover 22 can provide a certain space for the sound propagation of the acoustic element 21, and on the other hand can also protect the acoustic element 21 from other elements to avoid the acoustic element 21 The sound effects have an impact.
  • the acoustic element 21 can be a horn or other electronic sounding element.
  • the acoustic cavity 220 of the acoustic enclosure 22 is also adapted to receive a number of circuit components that are coupled to the acoustic element 21 for powering.
  • the acoustic cover 22 can also serve as a heat dissipation, the acoustic cover 22 further comprising an acoustic cover body 221 and a plurality of heat dissipation fins 222 and having an acoustic cavity 220, wherein The acoustic cavity 220 is formed on the acoustic cover body 221 , and the heat dissipation fins 222 are disposed outside the acoustic cover body 221 .
  • the heat dissipation fins 222 are provided as a sheet-like structure having a certain thickness extending outward from the acoustic cover body 221 .
  • the heat dissipation fins 222 are disposed outside the acoustic cover body 221 with a certain distance from each other for dissipating heat.
  • the heat dissipation fins 222 are disposed to extend integrally outward from the outer side of the acoustic cover body 221, and the presence of the heat dissipation fins 222 can accelerate the dissipation of heat therein to avoid heat accumulation.
  • the electronic components in the music downlight have an effect.
  • the acoustic cover 22 and the socket 40 have a certain height, and when the acoustic cover 22 is received by the mounting base 10 through the socket 40, the acoustic cover 22 The tip is still at a certain distance from the top end of the mounting cover 10.
  • a space is formed on the top side of the acoustic cover 22 and the top side of the mounting cover 10, and the heat dissipation fins 222 can exchange heat with the air in the space to further enhance the The heat dissipation efficiency of the acoustic cover 22 is described.
  • the air in the space again exchanges heat with the mounting cover 10 to further dissipate heat to the outside.
  • the mounting cover 10 can not only function to support the socket 40, the acoustic assembly 20 and the optical assembly 30 in the installation position, it is worth mentioning that the mounting cover 10 can also Fire prevention.
  • the mounting cover 10 can be made of a high temperature resistant material or a fireproofing material such as steel, ceramic, superalloy, or the like.
  • the mounting cover 10 further includes a cover cylinder 11 and a mounting member 12, wherein the mounting member 12 is disposed on the cover cylinder 11 for mounting the cover cylinder 11 at a certain position, such as a ceiling.
  • the optical component 30 includes an optical component 31 and an optical component 32, wherein the optical component 31 is disposed at the mounting portion 42 to emit light, wherein the optical component 32 is disposed around the optical component 31.
  • the optical element 31 and the optical component 32 are disposed at an intermediate position of the mounting wall 422 of the mounting portion 42 to match the acoustic component 20, and obtain a comparison while achieving a lighting effect. Good sound effects.
  • the music downlight includes a dustproof member 50, wherein the dustproof member 50 is disposed at the socket 40 to prevent substances such as dust from entering the acoustic assembly 20 through the sound transmission passage 44. .
  • the dustproof member 50 extends from the periphery of the bottom wall 412 of the support portion 41 toward the periphery of the bottom portion of the mounting portion 42.
  • the bottom surface of the dustproof member 50 and the bottom surface of the support portion 41 are in the same plane to maintain the aesthetics of the music downlight, and the downlight can also be placed on the ground.
  • the dustproof member 50 is integrally formed on the lamp holder 40.
  • the dustproof member 50 can also be detachably coupled to the socket 40 for easy replacement and cleaning.
  • the dustproof member 50 has at least one acoustic wave channel 500 such that sound emitted by the acoustic component 20 can propagate to the outside through the acoustic wave channel 500. That is, the acoustic channel 500 is communicated with the acoustic channel 44 to allow sound to pass through the acoustic channel 44 of the socket 40 and then through the acoustic channel 500 of the dust member 50 to external. It can be understood by those skilled in the art that the dustproof member 50 is not necessary, and the sound emitted by the acoustic component 20 can directly pass through the lamp holder 40 without the dustproof member 50.
  • the sound transmission passage 44 between the support portion 41 and the mounting portion 42 is transmitted to the outside.
  • the acoustic wave passages 500 of the dustproof member 50 are uniformly symmetrically formed to ensure the acoustic effect of the acoustic assembly 20.
  • the dustproof member 50 is detachably coupled to the socket 40.
  • the dustproof member 50 includes a dustproof member base 511 and a dustproof member side wing 512.
  • the dustproof member base 511 is detachably coupled to the lamp holder 40 through the dustproof member side wing 512.
  • the dustproof member side flap 512 is disposed to extend upward from a circumference of the dustproof member base 511. When the dustproof member 50 is mounted to the lamp holder 40, the process side flap is detachable.
  • the grounding plate is connected to the support member 43 of the socket 40.
  • the dustproof member base 511 is disposed in an annular shape, wherein an outer diameter of the dustproof member base 511 is disposed to match an inner diameter of the support portion 41 of the socket 40 to make the dustproof member
  • the base 511 can be accommodated in the sound transmission passage 44, and correspondingly, the inner diameter of the dustproof member base 511 is set to match the outer diameter of the mounting portion 42 of the socket 40 to reduce dust from
  • the connection between the dustproof member base 511 and the mounting portion 42 is further described. That is, the outer diameter of the dustproof member base 511 is slightly smaller than the inner diameter of the surrounding wall 411 of the support portion 41, and the inner diameter of the dustproof member base 511 is slightly larger than the installation of the mounting portion 42.
  • the dustproof member side flap 512 is integrally formed on the dustproof member base 511.
  • the support member 43 is formed to extend outward from the mounting wall 422 of the mounting portion 42 to the surrounding wall 411 of the support portion 41, that is, The support member 43 is located outside the mounting cavity 421 of the mounting portion 42 and does not affect the illumination effect of the optical component 30 housed in the mounting cavity 421. Further, the support member 43 having a divergent shape is integrally formed on the support portion 41 and the mounting portion 42, which reduces the manufacturing cost, and the support member 43 can also enhance the installation while exerting a heat dissipation effect.
  • connection between the portion 42 and the support portion 41 makes the position of the mounting portion 42 more stable, and also reduces the influence of the vibration of the acoustic assembly 20, and in this way, a good illumination effect is obtained.
  • it can be dissipated into the outside through the space between the supports 43 and thus not gathered in the support cavity 413 of the support portion 41, reducing the acoustic assembly 20 and the optical assembly 30. Impact.
  • the height of the support member 43 is lower than the height of the surrounding wall 411 of the support portion 41 to leave a certain space at the top end of the support portion 41 for accommodating the acoustic assembly 20 Or a space is provided for the acoustic component 20 to propagate sound.
  • an audio downlight includes a mounting cover 10, an acoustic assembly 20 and an optical assembly 30, wherein The acoustic assembly 20 is for emitting sound, the optical assembly 30 is for emitting light, and the acoustic assembly 20 and the optical assembly 30 are housed in the mounting cover 10, and are mounted by the mounting cover 10. On the ceiling and other locations.
  • the music downlight is arranged to simultaneously emit light and sound in a structure, so that the music downlight achieves a simplified design, which is advantageous for saving space, and at the same time, the music downlight has better lighting effect and sound effect.
  • the mounting cover 10 includes a cover tube 11 and a mounting member 12 and has a receiving cavity 100, wherein the mounting member 12 is disposed on both sides of the cover can 11 to be mounted to the ceiling.
  • the acoustic assembly 20 and the optical assembly 30 are mounted to the canister 11.
  • the optical assembly 30 includes an optical element 31 capable of emitting light for illumination, and an optical assembly 32 disposed around the optical element 31 to help improve the optical The lighting effect of the element 31.
  • the optical accessory 32 can be a lens, a reflective device, or the like.
  • the acoustic assembly 20 includes an acoustic enclosure 22 and an acoustic component 21, wherein the acoustic enclosure 22 includes an acoustic enclosure body 221 and has an acoustic cavity 220, wherein the acoustic component 21 is covered by the acoustic
  • the acoustic cavity of the cover 22 is such that the acoustic element 21 and the acoustic cover 22 form a sound box to enhance the acoustic effect of the acoustic element 21.
  • the music downlight further includes a socket 40, wherein the socket 40 can support the acoustic assembly 20 and the optical assembly 30 while ensuring the acoustic assembly 20 and the optical assembly 30 When mounted on the mounting cover 10, there are better sound effects and optical effects.
  • the acoustic assembly 20 is mounted to the socket 40
  • the optical assembly 30 is mounted to the socket 40.
  • the acoustic assembly 20 and the optical assembly 30 are mounted to both sides of the socket 40, respectively. Further, the acoustic assembly 20 and the optical assembly 30 are located on the same axis.
  • the mounting cover 10 has a mounting top surface 102 and a mounting bottom surface 103, and the mounting bottom surface 103 is located near the receiving cavity 101.
  • the mounting top surface 102 is at a higher position than the mounting bottom surface 103.
  • the socket 40 is connected to the mounting bottom surface 103, and the optical component 30 is connected to the outward side of the socket 40. Accordingly, the acoustic component 20 is connected to the socket 40.
  • inwardly referred to herein means toward the receiving chamber 100, and outwardly refers to the outside of the music downlight.
  • the acoustic assembly 20 When the acoustic assembly 20, the optical assembly 30 and the socket 40 are mounted to the mounting cover 10 to form the musical downlight, the acoustic assembly 20 is located relative to the optical assembly 30
  • the receiving chamber 100 is facing inward. That is, the acoustic assembly 20 needs to pass the lamp holder 40 and the optical assembly 30 to propagate sound outside the receiving cavity 101.
  • the lamp holder 40 and the optical component 30 are designed such that the music downlight is not blocked by the lamp holder 40 and the optical component 30 during use.
  • the acoustic effects of the acoustic assembly 20 have a large effect.
  • the lamp holder 40 includes a surrounding wall 411, a bottom wall 412, a mounting portion 42, a plurality of supporting members 43 and a supporting cavity 413 and a mounting cavity 421, wherein the surrounding wall 411 is formed.
  • the support cavity 413, the support member 43 and the mounting portion 42 are located in the support cavity 413, the mounting portion 42 includes a mounting wall 422 and has a mounting cavity 421, wherein the mounting wall 422 is formed around
  • the mounting cavity 421 is for receiving the optical component 30.
  • the support member 43 is disposed to extend from the periphery of the mounting wall 422 toward the surrounding wall 411.
  • the support member 43 is connected to the surrounding wall 411 of the socket 40, and the plurality of the support members 43 make the mounting portion 42 more stable.
  • the bottom wall 412 is disposed to extend outward from the bottom end of the surrounding wall 411 to cover the bottom surface of the mounting cover 10 . In this way, contaminants can be prevented from entering from here.
  • the music downlight has a plurality of mounting holes 60, which are used for mutual mounting between components.
  • the music tube lamp has a first mounting hole 61 and a second mounting hole 62, wherein the first mounting hole 61 is formed on two sides of the mounting cover 10, and the second mounting hole 62 is formed in the Both sides of the surrounding wall 411 of the socket 40.
  • the second mounting hole 62 is matchedly formed at a predetermined position such that when the socket 40 is mounted to the mounting cover 10 through the receiving cavity 101, the first mounting hole 61
  • the second mounting hole 62 is aligned to pass a fixing member such as glue or a screw or the like to fix the mounting cover 10 and the socket 40.
  • the socket 40 includes a socket mounting portion 46, wherein the socket mounting portion 46 is formed between the surrounding wall 411 and the support member 43 to cause the socket 40 and the The acoustic assembly 20 is more firmly connected.
  • the socket mounting portion 46 includes a plurality of socket mounts 461, one end of the socket mount 461 is connected to the surrounding wall 411, and the other end is connected to the support member 43.
  • the socket mount 461 is partially covered by the support member 43 to enhance the joint strength between the surrounding wall 411 and the support member 43.
  • the socket mount 461 is integrally formed on the support member 43 and the surrounding wall 411 to enhance the joint strength between the surrounding wall 411 and the socket mount 461.
  • the entire socket 40 can be integrally formed in such a manner as to maintain the strength of the socket 40 while facilitating installation and replacement.
  • the socket 40 carries the weight of the acoustic assembly 20 and the optical assembly 30, so the socket 40 needs to have a certain load bearing capacity.
  • the socket mount 461 has at least one third mounting hole 63, wherein the third mounting hole 63 is formed at the top of the socket mount 461.
  • the acoustic cover body 221 of the acoustic assembly 20 has at least one fourth mounting hole 64, wherein the fourth mounting hole 64 is matchedly disposed to the third mounting hole 63 to enable When the acoustic assembly 20 is mounted to the socket 40, the third mounting hole 63 is disposed in alignment with the fourth mounting hole 64.
  • the acoustic enclosure body 221 includes an acoustic enclosure body enclosure 2211, an acoustic enclosure top surface 2212 and an acoustic enclosure bottom wall 2213, wherein the acoustic enclosure top surface 2212 is formed in the acoustic
  • the cover body surrounding wall 2211 is provided to extend inward from the circumference of the acoustic cover body surrounding wall 2211.
  • the acoustic enclosure top surface 2212 and the acoustic enclosure body enclosure wall 2211 form the acoustic cavity 220.
  • the acoustic cover bottom wall 2213 is disposed to extend outward from the bottom end of the acoustic cover body surrounding wall 2211.
  • the fourth mounting hole 64 is formed in the acoustic cover bottom wall 2213 and penetrates the acoustic cover bottom wall 2213 to enable a fixing member such as a screw to extend through the fourth mounting hole 64 to the third
  • the hole 63 is mounted to fixedly connect the acoustic assembly 20 and the socket 40. It will be understood by those skilled in the art that the connection of the socket 40 and the acoustic cover 22 of the acoustic component 20 can also be connected to the medium by glue or the like.
  • a plurality of heat dissipation fins 222 are further included, wherein the heat dissipation fins 222 are evenly arranged outside the acoustic cover body 221 to produce the acoustic element 21 during operation. The heat is released into the air.
  • the heat dissipation fin 222 is disposed to extend outward from the acoustic cover body 221, or the acoustic cover extends upward from the acoustic cover bottom wall 2213 of the acoustic cover 22
  • the body body surrounding wall 2211 extends.
  • the acoustic element 21 is housed in the acoustic cavity 220 of the acoustic enclosure 22, which provides space for the acoustic element 21 to enhance the acoustic effect of the acoustic element 21.
  • the acoustic element 21 is disposed at a top end of the acoustic cover 22 at a position away from the socket 40, that is, the acoustic element 21 is formed around the inner wall of the mounting cover 10.
  • the chamber structure is to enhance the musical effect of the acoustic element 21.
  • the sound of the acoustic element 21 propagates through the entire acoustic cavity 220 toward the socket 40 at the bottom end of the acoustic enclosure 22, thereby propagating towards the outside.
  • the acoustic element 21 and the socket 40 are respectively disposed at both ends of the acoustic cover 22.
  • the music downlight includes a sound transmission passage 44, wherein the sound transmission passage 44 is formed between the acoustic element 21 and the acoustic cover 22 and the socket 40 to transmit sound to the outside .
  • the sound emitted by the acoustic element 21 passes through the acoustic cover 22, and the socket 40 is later transmitted to the outside.
  • the mounting portion 42 on which the optical assembly 30 is mounted is encountered.
  • the mounting portion 42 has an arcuate structure. Referring to the direction of sound propagation shown in FIG. 6, the sound encounters the mounting portion 42 and then travels outward toward both sides of the mounting portion 42.
  • the curved design of the mounting portion 42 reduces the obstruction of the optical component 30 to the sound propagation of the sounding element so that the musical downlight as a whole can have better sound effects and optical effects.
  • the mounting portion 42 and the acoustic element 21 are disposed on the same axis such that sound emitted by the acoustic element 21 is uniformly propagated through the mounting portion 42 to achieve a better sound effect.
  • the support member 43 is evenly disposed between the surrounding wall 411 and the mounting portion 42 to uniformly pass the acoustic member 21 through the support member 43 to obtain a better sound effect.
  • the cross-sectional area of the mounting portion 42 is smaller than the cross-sectional area of the surrounding wall 411 of the socket 40 such that the support cavity 413 of the socket 40 is communicated with the outside to make the acoustic element The sound of 21 is transmitted to the outside through the support cavity 413 of the socket 40.
  • the music downlight further includes a dustproof member 50, wherein the dustproof member 50 is coupled to the lamp holder 40, specifically, the support cavity of the lamp holder 40 to block The entry of contaminants such as dust into the support cavity 413 affects the acoustic element 21 at the other end.
  • the dustproof member 50 includes a dustproof member body 51 and a plurality of sound wave passages 500, wherein the dustproof member body 51 includes a dustproof member side wing 512 and a dustproof member base 511, wherein the dustproof member The side flaps 512 are disposed to extend upward from a peripheral position of the dustproof member base 511, and the acoustic wave passage 500 is formed on the dustproof member base 511.
  • the dustproof member base 511 and the bottom wall 412 of the socket 40 are parallel to enable the music downlight to be placed on the ground more smoothly. It can be understood that the bottom surface of the mounting portion 42 is higher than the height of the bottom wall 412 of the socket 40 so that the lamp socket 40 does not directly contact the ground when the music downlight is placed on the ground. To reduce the chance of pollution.
  • the dustproof member 50 is detachably coupled to the socket 40.
  • One side of the dustproof member base 511 of the dustproof member 50 is connected to the mounting portion 42 and the other side is connected to the bottom wall 412 of the socket 40.
  • the outer diameter of the dustproof member base 511 is slightly smaller than the inner diameter of the bottom wall 412
  • the inner diameter of the dustproof member base 511 is slightly larger than the outer diameter of the mounting portion 42 to make the dustproof member
  • a base 511 is received between the bottom wall 412 and the mounting portion 42 to screen for contaminants entering between the bottom wall 412 and the mounting portion 42.
  • the acoustic wave channel 500 has a predetermined size and is disposed at a predetermined position of the dustproof member base 511 to reduce the dustproof member 50 to the acoustic element 21 while exerting a screening function. The effect of sound effects.
  • the acoustic element 21 is disposed at the top end of the acoustic cover 22, and the sound can pass not only through the acoustic cover 22 but also through the support cavity of the socket 40.
  • the 413 is transmitted to the outside, and can also be transmitted to the outside through the space between the mounting cover 10 and the acoustic cover 22 through the support cavity 413 of the socket 40.
  • FIG. 7 As shown in Figure 7 and with reference to Figures 1 and 2, another embodiment of a musical downlight in accordance with the present invention is illustrated.
  • the music ceiling has a better musical effect and light effect.
  • the music downlight includes a mounting cover 10, an optical assembly 30, an acoustic assembly 20 and a base 40, wherein the acoustic assembly 20 includes an acoustic element 21 and an acoustic cover 22, wherein the acoustic cover
  • the body 22 has an acoustic cavity 220, wherein the mounting cover 10 has a receiving cavity 100, wherein the optical component 30, the acoustic component 20 and the socket 40 are housed in the mounting cover 10.
  • the receiving chamber 100 is housed in the mounting cover 10.
  • the socket 40 is housed in the acoustic cavity 220 of the acoustic enclosure 22, the optical component 30 is located in the acoustic cavity 220, and is fixed to the acoustic by the socket 40 Cover 22 .
  • the acoustic element 21 has a sound emitting surface, wherein the acoustic element 21 is disposed on the acoustic enclosure 22 such that the sounding surface faces the acoustic cavity to propagate sound. Further, the acoustic element 21 is remote from the receiving cavity 101 relative to the optical component 30.
  • the optical component 30 needs to enter the optical component 30 before the sound of the acoustic element 21 reaches the receiving cavity 101 to propagate outward, and the optical propagation of the optical component 30 is not affected by the acoustic component 21. influences.
  • the lamp holder 40 not only functions to support the optical component 30 on the acoustic cover 22, but also has space for sound so that the sound of the acoustic element 21 can be transmitted outward. .
  • the socket 40 has a plurality of acoustic channels 500 for sound to pass through.
  • the lamp holder 40 includes a surrounding wall 411, a bottom wall 412, a plurality of supporting members 43 and a mounting portion 42, wherein the surrounding wall 411 surrounds a support cavity 413, and the bottom wall 412 is formed.
  • the support member 43 is provided to extend outward from the bottom end of the surrounding wall 411, and the support member 43 is provided to extend from the surrounding wall 411 toward the mounting portion 42.
  • the support members 43 are disposed between the surrounding walls 411 with a certain distance inwardly. In other words, the support member 43 is disposed to extend outward from the mounting portion 42 in a divergent manner.
  • the support cavity 413 be divided into a plurality of spaces for sound to pass, but also The space is for dissipating heat generated by the optical component 30 during operation.
  • the mounting portion 42 is used to mount the optical assembly 30 such that the optical assembly 30 is secured to the acoustic enclosure 22 by the socket 40.
  • the height of the mounting portion 42 is set to be no greater than the height of the surrounding wall 411 of the socket 40.
  • the lamp holder 40 not only provides a mounting space for the optical assembly 30, but also provides a heat dissipation space for the optical assembly 30, thereby reducing the lamp holder 40 and the optical assembly 30 in the music.
  • the proportion of space occupied by the downlight is set to be no greater than the height of the surrounding wall 411 of the socket 40.
  • the mounting portion 42 includes a mounting wall 422, wherein the mounting wall 422 is formed between the support members 43 and has an arcuate structure.
  • the mounting wall 422 is formed between the support members 43 and has an arcuate structure.
  • the two sides propagate through the support cavity 413 and then propagate outward. That is to say, the lamp holder 40 can not only help the optical component 30 to exert a normal illumination effect on the mounting cover 10, but also provide a space for the acoustic component 21 to exert a better sound effect.
  • the mounting height of the optical component 30 is reduced to reduce the overall height of the music downlight and also to dissipate heat. It is worth mentioning that the structural design of the dispersing support member 43 also strengthens the strength of the socket 40, so that the optical assembly 30 is more firmly connected to the socket 40.
  • the acoustic enclosure 22 includes an acoustic enclosure body 221, wherein the acoustic enclosure body 221 surrounds the acoustic cavity 220.
  • a plurality of heat dissipation fins 222 are further included, wherein the heat dissipation fins 222 are evenly arranged outside the acoustic cover body 221 to produce the acoustic element 21 during operation. The heat is released into the air.
  • the heat dissipation fins 222 are disposed to extend outward from the acoustic cover body 221, or the acoustics extend upward from the acoustic cover body surrounding wall 2211 of the acoustic cover 22
  • the cover bottom wall 2213 extends.
  • the acoustic element 21 can be mounted within the acoustic enclosure 22, the acoustic component 21 and the acoustic enclosure 22 producing a speaker effect for sound propagation. It is also possible that the acoustic element 21 is disposed at the top end of the acoustic enclosure 22, where the top end refers to an end remote from the optical assembly 30 such that the acoustic element 21 and the mounting cover 10 are produced An acoustic effect, in such a manner that the sound can propagate not only through the acoustic cavity 220 but also through the space between the heat dissipation fins 222 to the outside.
  • the musical downlight comprises a mounting cover 10, an optical assembly 30, an acoustic assembly 20 and a lamp holder 40
  • the mounting cover 10 includes a mounting cover wall, a mounting cover bottom wall and a receiving cavity 100, wherein the mounting cover bottom wall is configured to be mounted from the cover The bottom end of the cover wall extends outwardly, and the mounting cover wall surrounds the receiving cavity 100.
  • the acoustic assembly 20 includes an acoustic element 21 and an acoustic enclosure 22, wherein the acoustic enclosure 22 includes an acoustic enclosure body 221 and has an acoustic cavity 220 through which the optical component 30 is Supported within the acoustic cavity 220.
  • the acoustic assembly 20 is disposed at a predetermined position of the acoustic enclosure 22 on both sides of the optical assembly 30 to prevent the optical assembly 30 from being blocked by the acoustic assembly 20, and the acoustic assembly 20 is also not affected by the optical assembly 30. That is, the acoustic assembly 20 and the optical assembly 30 are not on the same axis, and thus the acoustic assembly 20 and the optical assembly 30 do not interfere with each other.
  • the socket 40 includes a surrounding wall 411, a plurality of supporting members 43 and a mounting portion 42 and a supporting cavity 413, wherein the mounting portion 42 is for mounting the optical component 30, the support A member 43 is formed between the mounting portion 42 and the surrounding wall 411 to support the mounting portion 42 to the surrounding wall 411 and provide a passage for circulation.
  • the socket 40 has a plurality of through holes 45 formed between the surrounding wall 411 and the mounting portion 42.
  • the mounting portion 42 has a mounting cavity 421 and includes a mounting wall 422, wherein the mounting wall 422 has an arcuate structure.
  • the mounting portion The mounting wall 422 of 42 is disposed to be recessed inwardly so that when the optical assembly 30 is mounted to the mounting portion 42, it does not protrude from the receiving cavity 101.
  • the mounting portion 42 has a top surface and a bottom surface, where the top surface and the bottom surface refer to the side of the top surface close to the ceiling when the music downlight is mounted on a ceiling. The bottom surface is the side away from the ceiling.
  • the top surface of the mounting portion 42 is lower than the top end of the surrounding wall 411, and the bottom surface of the mounting portion 42 is higher than the bottom end of the surrounding wall 411, that is, the mounting portion 42 is
  • the surrounding wall 411 is completely received in the support cavity 413 such that when the optical component 30 having a predetermined height is received in the mounting portion 42 of the socket 40, the socket 40
  • the overall height of the optical assembly 30 does not exceed the height of a single of the sockets 40, thereby reducing the overall mounting height of the socket 40 and the optical assembly 30, saving the socket 40 and the The space occupied by the optical assembly 30.
  • the socket 40 may be connected to the mounting cover body 10 of the mounting cover 10 through the surrounding wall 411 to be connected to the mounting cover 10 .
  • the lamp holder 40 further includes a bottom wall 412, wherein the bottom wall 412 is disposed to extend outward from a top end of the surrounding wall 411 of the lamp holder 40.
  • the lamp holder 40 is formed.
  • the surrounding wall 411 has a predetermined size to enable the surrounding wall 411 to be received in the acoustic cavity 220 of the acoustic enclosure 22.
  • the acoustic assembly 20 is located at the front end of the bottom wall 412 of the socket 40 to enable sound to propagate directly forward.
  • the front here refers to the illumination direction of the optical component 30.
  • the music downlight includes a dustproof member 50, wherein the dustproof member 50 has a plurality of acoustic wave passages 500, and the dustproof member 50 is coupled to the lamp holder 40, and the lamp holder 40 is located at the lamp holder 40. Between the surrounding wall 411 and the mounting portion 42 to reduce dust and thereby to the accommodating chamber 100. It is also possible that the dustproof member 50 is covered on the bottom wall 412 of the socket 40, that is, the dustproof member 50 is covered by the acoustic component 20 to reduce the pair in this manner. Contamination of the acoustic assembly 20.
  • the dustproof member 50 includes a dustproof member base 511 and a dustproof member side flap 512, wherein the dustproof member side flap 512 is disposed to extend vertically outward from the dustproof member base 511. A through hole is formed in the dustproof member base 511.
  • the dustproof member side flap 512 has an outer peripheral edge and an inner peripheral edge, that is, the dustproof member side flap 512 is annular, and the outer peripheral edge of the dustproof member side flap 512 is set to be slightly larger than the outer side.
  • a lamp holder 40 according to the present invention is illustrated, wherein the lamp holder 40 includes a surrounding wall 411, a bottom wall 412, a plurality of support members 43 and a mounting portion 42 and a A support cavity 413 is formed around which the support cavity 413 is formed, and the support member 43 and the mounting portion 42 are housed in the support cavity 413.
  • the bottom wall 412 is disposed to extend outward from the bottom end of the surrounding wall 411.
  • the mounting portion 42 includes a mounting wall 422 and has a mounting cavity 421, and the mounting cavity 4211 and the bottom wall 412 are on the same side.
  • the mounting portion 42 is used to mount the socket 40.
  • the socket 40 further has a plurality of through holes 45 formed between the surrounding wall 411 and the mounting portion 42 for air to circulate.
  • the support member 43 is disposed to extend from the periphery of the mounting portion 42 toward the surrounding wall 411, and the through hole 45 is formed in the support member 43 or Formed between the supports 43.
  • the support member 43 is disposed to extend from the mounting portion 42 toward the surrounding wall 411, that is, one end of the support member 43 is connected to the surrounding wall 411. The other end is connected to the mounting portion 42, and the support member 43 has a predetermined distance between the support members 43 to form the through hole 45.
  • the support members 43 are disposed to be evenly arranged around the circumference of the mounting portion 42 to evenly divide the support cavity 413.
  • the support members 43 are alternately connected to the mounting portion 42 and the surrounding wall 411 to form the through holes 45.
  • the number of the support members 43 is one, and the support member 43 is disposed to extend along the circumference of the mounting portion 42 toward the surrounding wall 411, optionally, the through A hole 45 is uniformly formed on the support member 43.
  • the mounting portion 42 is located at a central axis of the surrounding wall 411.
  • the height of the support member 43 is set lower than the surrounding wall 411 such that the height of the surrounding wall 411 is the height of the socket 40.
  • an audio downlight is illustrated in accordance with a preferred embodiment of the present invention, wherein the musical downlight includes a mounting cover 10, an acoustic assembly 20, and an optical assembly 30. And a lamp holder 40, wherein the mounting cover 10 has a receiving cavity 100 and a cavity 101 communicating with the receiving cavity 100, wherein the acoustic component 20 is disposed in the receiving cavity of the mounting cover 10. 100, wherein the socket 40 has an annular sound transmission passage 44, wherein the socket 40 is mounted on the socket 40 in such a manner that the socket 40 closes the receiving cavity 101 of the mounting cover 10.
  • the cover 10 is mounted, and the sound transmission passage 44 of the socket 40 communicates with the accommodation chamber 100 of the mounting cover 10, wherein the optical assembly 30 and the optical assembly 30 and the acoustic assembly 20 A manner of being held on the opposite side of the socket 40 is provided to the socket 40, wherein sound waves generated by the acoustic assembly 20 are transmitted from the mounting cover via the sound transmission passage 44 of the socket 40
  • the accommodation chamber 100 of 10 is radiated to the outside of the music downlight.
  • the socket 40 includes an annular support portion 41, a mounting portion 42 and at least one support member 43, and two ends of each of the support members 43 extend inwardly and outwardly to be connected to the a mounting portion 42 and the support portion 41, and the sound transmission passage 44 is formed between the support portion 41 and the mounting portion 42, wherein the optical assembly 30 is disposed at the mounting portion 42 and oriented
  • the receiving cavity 101 is mounted to the mounting portion 42 to allow light to propagate outward through the receiving cavity 101.
  • the mounting portion 42 includes a mounting portion 42 each extending from the mounting wall, wherein the mounting wall is an arcuate outer wall for diverting sound waves generated by the acoustic assembly 20 .
  • the curved outer wall is configured as a spherical outer wall.
  • the support member 43 is disposed to be unevenly formed on the sound transmission passage 44 to provide a propagation path for the acoustic assembly 20 while providing support to the mounting portion 42 to allow sound to pass through
  • the sound transmission passage 44 of the socket 40 is led out as far as possible from the accommodation opening 101 of the mounting cover 10, and it is difficult to produce a muffle. That is, the support members 43 are disposed between the sound transmission passages 44 in a non-equidistant arrangement.
  • the socket 40 further has a plurality of through holes 45, wherein the through holes 45 are formed by the support member 43 through the sound transmission passages 44.
  • the support member 43 includes a first support member 431 and a second support member 432 extending inwardly and outwardly to connect the mounting portion 42 and the support portion 41.
  • Two support members 432 extend inwardly and outwardly to connect the mounting portion 42 and the support portion 41.
  • the height of the first support member 431 is set lower than the height of the second support member 432 to allow sound to be led out as much as possible after passing through the first support member 431.
  • the height of the first support member 431 may be equal to or smaller than the height of the second support member 432.
  • the height of the support member 43 is set to be smaller than or equal to the height of the support portion 41 such that the mounting height when the acoustic assembly 20 is supported by the socket 40 is lowered.
  • the through hole 45 includes at least one first through hole 451 and at least one second through hole 452 , wherein the first through hole 451 is formed on the first support 431 and the adjacent second support 432 Between or between the first support member 431 and the first support member 431, the second through hole 452 is formed in the second support member 432 and the adjacent second support member 432.
  • the cross-sectional area of the first through hole 451 is set to be larger than the cross-sectional area of the second through hole 452 to provide more space for the acoustic component 20 to propagate.
  • the lamp holder 40 not only provides a propagation path for the acoustic component 20, but also provides an installation space for the optical component 30, and also has a heat dissipation effect, such that the acoustic component 20 and the The heat generated by the optical assembly 30 during operation is dissipated to the outside of the music downlight via the socket 40.
  • the acoustic assembly 20 includes an acoustic element 21 and an acoustic enclosure 22, wherein the acoustic element 21 is disposed on the acoustic enclosure 22, wherein the acoustic component 21 is disposed on the mounting enclosure
  • the accommodation chamber 100 of 10 and the acoustic element 21 generates an acoustic wave in response to the input of the audio signal, and the acoustic wave generated by the acoustic element 21 is self-installed via the acoustic channel 44 of the socket 40
  • the accommodating chamber 100 of the cover 10 is radiated to the outside of the music downlight.
  • the acoustic enclosure 22 has an acoustic cavity 220 and an acoustic cavity that communicates with the acoustic cavity 220, wherein the acoustic element 21 is disposed to the acoustic enclosure 22 in a manner that encloses the acoustic cavity.
  • the acoustic cavity 220 is capable of providing a sealed space in which the sound emitted by the acoustic element 21 resonates to achieve the effect of the sound box.
  • the acoustic enclosure 22 includes an acoustic enclosure cavity 223 and an acoustic enclosure top cover 224, wherein the acoustic enclosure top cover 224 overlies the acoustic enclosure cavity 223 to form the acoustic cavity 220.
  • the acoustic cover top cover 224 is detachably coupled to the acoustic cover cavity 223. It is worth mentioning that the acoustic cover top cover 224 is hermetically connected to the acoustic cover cavity 223 to enhance the acoustic effect of the acoustic cavity 220.
  • the acoustic cover top cover 224 and the acoustic cover 22 cavity 224 are interconnected by a concave-convex groove structure.
  • the bottom surface of the acoustic cover body cover 224 may be provided with a groove, and the top surface of the acoustic cover body cavity 223 is provided with a protrusion, and the groove and the protrusion are matched to each other so that The acoustic enclosure top cover 224 and the acoustic enclosure cavity 223 are removably detachably coupled.
  • the bottom surface of the acoustic cover body cover 224 is provided with a protrusion
  • the top surface of the acoustic cover body cavity 223 is provided with a groove
  • the groove and the protrusion are matched to each other.
  • the acoustic cover body cover 224 and the acoustic cover body cavity 223 are detachably coupled to each other in a relatively sealed manner.
  • the music downlight further includes a dustproof member 50 having at least one acoustic wave passage 500, wherein the dustproof member 50 is disposed on the socket 40, and the dustproof member 50 Each of the acoustic channels 500 is in communication with the sound channel 44, respectively. It is worth mentioning that, in an example of the present invention, the dustproof member 50 is fixedly coupled to the socket 40 by an interference fit.
  • the material of the dustproof member 50 may be metal, plastic or cloth.
  • the optical component 30 includes an optical component 31 and an optical component 32, wherein the optical component 31 is mounted to the mounting portion 42, the optical component 32 being mounted around the optical component 31 to enhance the optical The illuminating effect of the element 31.
  • the optical accessory 32 can be a reflector or lens or a reflector plus lens.
  • the optical component 32 is supported by the dustproof member 50 and is fixed to the mounting portion 42 of the socket 40.
  • the music downlight includes a control member 70, wherein the control member 70 is electrically connected to the optical assembly 30 and/or the acoustic assembly 20, respectively, for manipulating the optical assembly 30 and/or Or the acoustic component 20.
  • the control member 70 is disposed on the acoustic cover top cover 224 of the acoustic enclosure 22.
  • the acoustic cover top cover 224 has a predetermined distance from the top surface of the mounting cover 10 to leave a space there for the control member 70 to dissipate heat during operation.
  • the control member 70 can also be integrated into the acoustic cover top cover 224, in such a manner that the overall structure of the music downlight is more compact, saving installation space.
  • the music downlight includes a fixing member 80, wherein the fixing member 80 is disposed at a top end of the mounting cover 10 to fix an electric wire so that the entire musical downlight conforms to relevant safety regulations of the electric appliance.
  • the fixing member 80 may be a wire buckle or a crimping plate.
  • the socket 40 further has at least one first through hole 451 and at least one second through hole 452, wherein the first through hole 451 has a larger cross section than the second through hole 452.
  • the support member 43 includes a first support member 431 and a plurality of second support members 432, wherein the second through hole 452 is formed in the second support member 432 and the adjacent second portion Between the supports 432, the first through holes 451 are formed between the first support 431 and the adjacent second support 432. The height of the first support member 431 is lower than the height of the second support member 432.
  • the socket 40 further has at least one first through hole 451 and at least one second through hole 452, wherein the first through hole 451 and the second through hole 452 are formed in Between adjacent support members 43, wherein a cross section of the first through hole 451 is larger than a cross section of the second through hole 452.
  • a height of at least one of the adjacent support members 43 forming the first through holes 451 is set lower than a height of the support member 43 forming the second through holes 452.
  • the present invention also provides a method of manufacturing a musical downlight, wherein the manufacturing method comprises the following steps:
  • the socket 40 includes a surrounding wall 411 and a plurality of supporting members 43 disposed between the surrounding wall 411 and the mounting portion 42, the support member 43
  • the through hole 411 is formed to extend toward the mounting portion 42, and the through hole is formed between the support members 43.
  • the socket 40 includes a surrounding wall 411 and a support member 43 disposed between the surrounding wall 411 and the mounting portion 42.
  • a through hole is formed in the support member 43.
  • the acoustic component 20 can be an acoustic element 21, such as a horn.
  • the acoustic component 20 can be an acoustic component 21 and an acoustic enclosure 22, wherein the acoustic enclosure 22 has an acoustic cavity 220, wherein the acoustic component 21 It is disposed on the acoustic cover 22.
  • the present invention further provides a method of manufacturing a musical downlight, wherein the manufacturing method comprises the steps of:
  • the present invention further provides a method of assembling an audio downlight, wherein the assembling method comprises the following steps:
  • the lamp holder 40 is mounted to the mounting cover 10 in such a manner that the acoustic assembly 20 is held in a receiving cavity 100 of the mounting cover 10 to assemble the musical downlight.
  • the method further comprises the steps of:
  • the present invention further provides an auxiliary heat dissipation method for an audio downlight, the auxiliary heat dissipation method for assisting the music downlight to dissipate heat mainly from the optical component 30, wherein
  • the auxiliary cooling method includes the following steps:
  • step ( ⁇ ) The step ( ⁇ ) and the step ( ⁇ ) are alternately performed to dissipate the music downlight.
  • step ( ⁇ ) when the gas in the accommodating chamber 100 of the mounting cover 10 is agitated, the gas in the accommodating chamber 100 is caused to pass around the optical assembly 30.
  • An annular sound transmission passage 44 discharges the mounting cover 10, and in the step ( ⁇ ), when the gas outside the mounting cover 10 is sucked into the accommodation chamber 100, the mounting cover is caused The gas outside the body 10 enters the accommodating chamber 100 of the mounting cover 10 via the sound transmission passage 44 formed around the optical assembly 30.
  • the gas in the accommodating chamber 100 of the mounting hood 10 is agitated to discharge the accommodating chamber 100, and the mounting hood is The outside air of the body 10 is sucked into the accommodating chamber 100 of the mounting cover 10.
  • the present invention further provides a method for sounding a music downlight, wherein the sounding method comprises the following steps:
  • an acoustic component 20 generates an acoustic wave in response to an input of an audio signal
  • the method further comprises the steps of:
  • heat generated by the optical component 30 sequentially passes through the mounting portion 42, at least one of the support members 43 and the The support portion 41 is then transmitted to the surrounding space, wherein the optical assembly 30 is mounted to the mounting portion 42, wherein both ends of each of the support members 43 extend inwardly and outwardly to connect the mounting portion 42 and the support portion 43, and the sound transmission passage 44 is formed between the support portion 41 and the mounting portion 42.

Abstract

一种音乐筒灯,包括声学组件(20)、光学组件(30)、安装罩体(10)以及灯座(40)。声学组件(20)和光学组件(30)以声学组件(20)和光学组件(30)位于灯座(40)的相对侧的方式被安装于灯座(40)。灯座(40)被安装于安装罩体(10),并且使声学组件(20)被保持在安装罩体(10)的容纳腔(100)。声学组件(20)在响应音频信号的输入时产生的声波能够经由灯座(40)的传声通道(44)经由容纳腔(100)辐射至外部,以使音乐筒灯能够同时产生光线和声音。还公开了音乐筒灯的组装方法,辅助散热方法,和发声方法。

Description

音乐筒灯及其应用 技术领域
本发明涉及一筒灯,特别是一种音乐筒灯及其应用,其中所述音乐筒灯不仅能够作为照明工具,还可以播放音乐。
背景技术
筒灯是常见的照明工具,其一般被安装在距离地面的具有一定的高度的位置,例如筒灯通常被安装在天花板上。由于其不占用空间,更接近自然照明灯特点,不管是在室外照明的应用还是室内照明的应用,都颇受到欢迎。
随着对于消费者需求的变化,一些厂家开始将筒灯跟音乐播放设备结合以满足市场的需求,但是常规的筒灯跟音乐播放设备在使用是,需要分别安装使用,既不方便,又占用了较多的空间。尤其是对于美观度有要求的消费者来说,常规的筒灯跟音乐播放设备的结合使得整个天花板看起来不简洁,安装步骤繁琐。进一步地,独立的两个设备可能还使得消费者的购买成本上升,因此对于消费者需要同时购买两件设备。
目前也有一些商家将筒灯跟音乐播放设备结合,比如说将音乐播放设备安装到筒灯内以使筒灯在工作的时候也能够同时播放音乐,然而这样的做法需要解决一些问题,首先就是筒灯在发光时和发声时不能相互影响,使得筒灯的发光部和发声部能够相互独立工作。另一个需要解决的问题是筒灯的音乐播放效果,因为发声部被放置在所述筒灯,可能会受到筒灯的影响进而对于发声部的音质造成影响,而对于筒灯的发光部来说,发声部的存在也可能影响到发光部的光线传播以及散热。
因此,如何将所述筒灯和所述音乐播放设备结合,而又能减少两者之间的影响,取得较好的光照效果和声音效果,是目前亟需要解决的问题之一。
发明内容
本发明的一目的在于提供一音乐筒灯及其应用,其中所述音乐筒灯在提供照 明的同时,能够发出声音。换言之,所述音乐筒灯能够同时提供照明和发出声音。
本发明的一目的在于提供一音乐筒灯及其制造方法,其中所述音乐筒灯能够提供照明和发出声音中的一种,即,所述音乐筒灯在提供照明时可以不发出声音,和在发出声音时不提供照明,以满足使用者的不同需求。
本发明的另一目的在于提供一音乐筒灯及其应用,其中所述音乐筒灯能够提供较佳的照明效果和较佳的声音播放效果。
本发明的另一目的在于提供一音乐筒灯及其应用,其中所述音乐筒灯将光照和声音结合在一个结构中,并使得两者之间不会相互影响。
本发明的另一目的在于提供一音乐筒灯及其应用,其中所述音乐筒灯将光照和声音整合在一个结构中,使得结构设计紧凑,降低制作成本。
本发明的另一目的在于提供一音乐筒灯及其应用,其中所述音乐筒灯的散热能力被提升。
本发明的一目的在于提供一音乐筒灯及其应用,其中所述音乐筒灯提供一灯座、一声学组件以及一光学组件,其中所述光学组件被设置于所述灯座,所述声学组件被设置于所述灯座的后部,其中所述声学组件产生的声音能够经由所述灯座后被传播。
本发明的一目的在于提供一音乐筒灯及其应用,其中所述灯座能够引导所述声学组件产生的声音的传播方向。优选地,所述灯座以改变所述声学组件产生的声波的辐射方向的方式引导所述声学组件产生的声音的传播方向。
本发明的另一目的在于提供一音乐筒灯及其应用,其中所述声学组件能够以鼓动气体的方式增强所述音乐筒灯的散热能力。
本发明的一目的在于提供一音乐筒灯及其应用,其中所述声学组件产生的声音能够被所述灯座向四周均匀地扩散,以提高所述声学组件的音效。
本发明的另一目的在于提供一音乐筒灯及其应用,其中所述灯座提供一弧形安装部给所述光学组件,以使当所述声学组件发出的声音经过所述弧形安装部时能够减少对声效的影响。
本发明的另一目的在于提供一音乐筒灯及其应用,其中所述灯座具有多个贯通的通孔,使得所述灯座不仅能够提供空间供声音传播,还可以提供散热空间以减少热量在此处堆积。
本发明的另一目的在于提供一音乐筒灯及其应用,其中所述灯座能够扩大所 述声学组件产生的声波的辐射范围,以增强所述音乐筒灯的音效。
为了达到上述发明目的中的至少一个,提供了一音乐筒灯,其中所述音乐筒灯包括:
一声学组件;
一光学组件;
一安装罩体,其中所述安装罩体具有一容纳腔和连通所述容纳腔的一容纳腔口,其中所述声学组件被设置于所述安装罩体的所述容纳腔;以及
一灯座,其中所述灯座具有一环形的传声通道,其中所述灯座以所述灯座封闭所述安装罩体的所述容纳腔口的方式被安装于所述安装罩体,并且所述灯座的所述传声通道连通所述安装罩体的所述容纳腔,其中所述光学组件以所述光学组件和所述声学组件被保持在所述灯座的相对侧的方式被设置于所述灯座,其中所述声学组件产生的声波经由所述灯座的所述传声通道自所述安装罩体的所述容纳腔辐射至所述音乐筒灯的外部。
根据本发明的一个实施例,所述灯座进一步包括一环形的支撑部、一安装部以及至少一支撑件,每个所述支撑件的两端分别向内和向外延伸以连接于所述安装部和所述支撑部,并且在所述支撑部和所述安装部之间形成所述传声通道,其中所述光学组件被设置于所述安装部。
根据本发明的一个实施例,所述安装部包括一安装壁,每个所述支撑件分别延伸于所述安装壁,其中所述安装壁的外壁是一弧形外壁,以用于使所述声学组件产生的声波转向。
根据本发明的一个实施例,所述安装壁的外壁是一球形外壁。
根据本发明的一个实施例,所述音乐筒灯的中心轴线、所述安装部的中心轴线和所述支撑部的中心轴线重合。
根据本发明的一个实施例,所述声学组件进一步包括一声学元件,其中所述声学元件被设置于所述安装罩体的所述容纳腔,并且所述声学元件在响应音频信号的输入时产生声波,和所述声学元件产生的声波经由所述灯座的所述传声通道自所述安装罩体的所述容纳腔辐射至所述音乐筒灯的外部。
根据本发明的一个实施例,所述声学组件进一步包括一声学罩体,其中所述声学罩体具有一声学腔和连通所述声学腔的一声学腔口,其中所述声学元件被设置于所述声学罩体,并藉由所述声学元件封闭所述声学罩体的所述声学腔口。
根据本发明的一个实施例,所述声学罩体的外壁设有多个散热鳍片。
根据本发明的一个实施例,所述灯座被安装于所述声学罩体,以藉由所述灯座使所述声学组件被保持在所述安装罩体的所述容纳腔。
根据本发明的一个实施例,所述音乐筒灯进一步包括一防尘件,其中所述防尘件具有至少一声波通道,其中所述防尘件被设置于所述灯座,并且所述防尘件的每个所述声波通道分别连通所述传声通道。
依本发明的另一个方面,一音乐筒灯的组装方法,其中所述组装方法包括如下步骤:
(A)安装一光学组件于一灯座;
(B)以一声学组件的一声学元件和所述灯座的外壁保持距离并且所述声学元件的发声面朝向所述灯座的外壁的方式安装所述声学组件于所述灯座;以及
(C)以所述声学组件被保持在一安装罩体的一容纳腔的方式安装所述灯座于所述安装罩体,以组装所述音乐筒灯。
根据本发明的一个实施例,在所述步骤(C)之后,进一步包括步骤,安装具有至少一声波通道的一防尘件于所述灯座,以允许所述声学元件因响应音频信号的输入而产生的声波能够经由所述防尘件的所述声波通道辐射至所述音乐筒灯的外部。
根据本发明的一个实施例,在所述步骤(C)之前,进一步包括步骤,安装具有至少一声波通道的一防尘件于所述灯座,以允许所述声学元件因响应音频信号的输入而产生的声波能够经由所述防尘件的所述声波通道辐射至所述音乐筒灯的外部。
根据本发明的一个实施例,在所述步骤(B)中,进一步包括步骤:
(B.1)以所述声学元件的发声面朝向外侧的方式安装所述声学元件于一声学罩体,以在所述声学元件和所述声学罩体之间形成一声学腔;和
(B.2)安装所述灯座和所述声学罩体。
依本发明的另一个方面,本发明进一步提供一音乐筒灯的辅助散热方法,其中所述辅助散热方法包括如下步骤:
(α)鼓动一安装罩体的一容纳腔内的气体经由邻近一光学组件的区域排出所述安装罩体;
(β)经由邻近所述光学组件的区域将所述安装罩体的外部的气体吸入所述 安装罩体的所述容纳腔;以及
(γ)交替性地执行所述步骤(α)和所述步骤(β),以对所述音乐筒灯进行散热。
根据本发明的一个实施例,在所述步骤(α)中,在鼓动所述安装罩体的所述容纳腔内的气体时,使所述容纳腔内的气体经由形成于所述光学组件四周的一环形的传声通道排除所述安装罩体,和在所述步骤(β)中,在将所述安装罩体的外部的气体吸入所述容纳腔时,使所述安装罩体的外部的气体经由形成于所述光学组件的四周的所述传声通道进入所述安装罩体的所述容纳腔。
根据本发明的一个实施例,在上述方法中,在所述步骤(α)中,所述光学组件产生的热量依次通过一安装部,至少一支撑件以及一支撑部后被传向四周的空间,其中所述光学组件被安装于所述安装部,其中每个所述支撑件的两端分别向内和向外延伸以连接于所述安装部和所述支撑部,并且在所述支撑部和所述安装部之间形成了所述传声通道。
根据本发明的一个实施例,在上述方法中,在一声学组件响应音频信号的输入时,鼓动所述安装罩体的容纳腔内的气体排出所述容纳腔,和将所述安装罩体的外部的气体吸入所述安装罩体的所述容纳腔。
根据本发明的一个实施例,在上述方法中,在进行所述步骤(α)和所述步骤(β)时产生声波。
依本发明的另一个方面,本发明进一步提供一音乐筒灯的发声方法,其中所述发声方法包括如下步骤:
(i)一声学组件在响应音频信号的输入时产生声波;
(ii)通过被保持在所述声学组件的声波辐射方向的一灯座改变所述声学组件产生的声波的辐射方向;以及
(iii)经由所述灯座的一环形的传声通道辐射被改变辐射方向后的声波,以产生声音。
根据本发明的一个实施例,在所述步骤(i)中,进一步包括步骤:
(i.1)通过所述声学组件的一声学元件在响应音频信号的输入时产生声波;和
(i.2)通过在所述声学元件和所述声学组件的一发声罩体之间产生一声学腔的方式增强所述声学元件的声波的低频。
根据本发明的一个实施例,所述灯座进一步包括一环形的支撑部、一安装部以及至少一支撑件,每个所述支撑件的两端分别向内和向外延伸以连接于所述安装部和所述支撑部,并且在所述支撑部和所述安装部之间形成所述传声通道,其中所述光学组件被设置于所述安装部。
根据本发明的一个实施例,所述安装部包括一安装壁,每个所述支撑件分别延伸于所述安装壁,其中所述安装壁的外壁是一弧形外壁,以用于使所述声学组件产生的声波转向。
根据本发明的一个实施例,所述安装壁的外壁是一球形外壁。
根据本发明的一个实施例,所述音乐筒灯的中心轴线、所述安装部的中心轴线和所述支撑部的中心轴线重合。
附图说明
图1是根据本发明的一较佳实施例的关于一音乐筒灯的示意图。
图2是根据本发明的上述较佳实施例的所述音乐筒灯的分解示意图。
图3是根据本发明的上述较佳实施例的所述音乐筒灯的截面剖视图。
图4是根据本发明的上述较佳实施例的所述音乐筒灯的示意图。
图5是根据本发明的上述较佳实施例的所述音乐筒灯的立体剖视图。
图6是根据本发明的另一较佳实施例的一音乐筒灯的截面剖视图。
图7是根据本发明的另一较佳实施例的一音乐筒灯的截面剖视图。
图8是根据本发明的另一较佳实施例的一音乐筒灯的截面剖视图。
图9是根据本发明的一音乐筒灯的一灯座的立体示意图。
图10A是根据本发明的另一实施例的一音乐筒灯的一灯座的立体示意图。
图10B是根据本发明的另一实施例的一音乐筒灯的一灯座的立体示意图。
图11是根据本发明的一较佳实施例的关于一音乐筒灯的立体示意图。
图12是根据本发明的上述较佳实施例的所述音乐筒灯的分解示意图。
图13是根据本发明的上述较佳实施例的所述音乐筒灯的截面剖视图。
具体实施方式
以下描述用于揭露本发明以使本领域技术人员能够实现本发明。以下描述中的优选实施例只作为举例,本领域技术人员可以想到其他显而易见的变型。在以 下描述中界定的本发明的基本原理可以应用于其他实施方案、变形方案、改进方案、等同方案以及没有背离本发明的精神和范围的其他技术方案。
本领域技术人员应理解的是,在本发明的揭露中,术语“纵向”、“横向”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或位置关系是基于附图所示的方位或位置关系,其仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此上述术语不能理解为对本发明的限制。
可以理解的是,术语“一”应理解为“至少一”或“一个或多个”,即在一个实施例中,一个元件的数量可以为一个,而在另外的实施例中,该元件的数量可以为多个,术语“一”不能理解为对数量的限制。
参考图1至图5,依据本发明的一个较佳实施例的音乐筒灯被阐明,其中所述音乐筒灯能够在提供光照效果的同时能够发出声音,并且能够提供较佳的音乐效果。
具体地说,所述音乐筒灯包括一安装罩体10,一声学组件20和一光学组件30,其中所述安装罩体10具有一容纳腔100,其中所述声学组件20和所述光学组件30被容纳在所述容纳腔100。所述声学组件20被用于发出声音,所述光学组件30被用于照明。所述安装罩体10能够对所述声学组件20和所述光学组件30起到保护作用,并且通过所述安装罩体10,所述声学组件20和所述光学组件30能够被安装在天花板等灯具附着物上。
所述光学组件30具有一发光面,所述声学组件20具有一发声面,当所述声学组件20和所述光学组件30被安装于所述安装罩体10,所述声学组件20被容纳在所述容纳腔100,并且所述声学组件20的所述发声面被设置为面朝于所述光学组件30,所述光学组件30的所述发光面被设置为面朝所述安装罩体10外以将光线朝外射出以产生照明效果。
换句话说,相对于所述光学组件30来说,所述声学组件20被设置在所述安装罩体10内侧,也就是说,所述声学组件20发出的声波需要经过所述光学组件30传递到外界。通过这样的方式,当所述光学组件30在发光时,所述声学组件20不会阻碍到所述光学组件30的光线传播。
换言之,所述安装罩体10具有一容纳腔口101,所述容纳腔口101连通所 述容纳空间100,其中所述声学组件20和所述光学组件30通过所述容纳腔口101被安装于所述安装罩体10的所述容纳腔100内。当所述音乐筒灯被安装于天花板等灯具附着物,所述安装罩体10的所述容纳腔口101朝下设置。所述声学组件20的所述发声面和所述光学组件30的所述发光面都被朝下地设置于所述安装罩体10以使声音和光线都能够通过所述容纳腔口101达到外界。
进一步地,所述音乐筒灯包括一灯座40,其中所述灯座40被用于支撑所述光学组件30于所述安装罩体10。具体地,所述灯座40被容纳于所述容纳腔100并且被安装于所述安装罩体10,所述光学组件30通过所述灯座40被稳固地安装于所述容纳腔100的一预设位置以使位于内侧的所述声学组件20在发声时所述光学组件30尽可能不对其造成过多的影响。
所述灯座40不仅能够对所述光学组件30起到支撑作用,还可以帮助所述光学组件30散热,以避免此处热量聚集进而影响到其他部件的正常工作。
具体地,所述灯座40包括一支撑部41和一安装部42,多个支撑件43以及一传声通道44,其中所述安装部42通过所述支撑件43连接于所述支撑部41。一方面所述支撑部41被用于支撑所述声学组件20,另一方面所述支撑部41被连接于所述安装罩体10。也就是说,所述支撑部41的一端连接于所述声学组件20,另一端连接于所述安装罩体10并且覆盖于所述安装罩体10的所述容纳腔口101。所述支撑件43的一端连接于所述支撑部41,另一端连接于所述安装部42。
所述传声通道44形成于所述支撑部41和所述安装部42之间,所述支撑件43被设置在所述传声通道44,通过所述支撑件43,所述传声通道44被分隔成多个空间以供声音通过。换言之,所述传声通道44是一个环形的通道。优选地,所述支撑部41的内壁是圆形内壁,所述安装部42的外壁是圆形外壁,其中所述支撑部41以在所述支撑部41的内壁和所述安装部42的外壁之间具有间隙的方式环绕在所述安装部42的外部,从而在所述支撑部41和所述安装部42之间形成环形的所述传声通道44。更优选地,所述音乐筒灯的中心轴线穿过所述支撑部41的内壁的圆心和所述安装部42的外壁的圆心,从而使在任意一个位置所述支撑部41的内壁到所述安装部42的外壁的距离都相同,通过这样的方式,能够保证所述声学组件20产生的声波在经由所述传声通道44自所述容纳腔100辐射至外部时的一致性。
所述安装部42被用于容纳所述光学组件30。所述安装部42具有一安装腔 421和连通所述安装腔421的一安装腔口4211,其中所述安装腔口4211的朝向和所述容纳腔口101的朝向一致。所述安装部42包括一安装壁422,其中所述安装壁422围绕形成所述安装腔421。值得一提的是,所述安装壁422被设置为向内凹陷的弧形结构,换言之,所述安装壁422的外壁为弧形外壁,从而当所述声学组件20在发声时,经过位于所述传声通道44的所述安装部42的所述安装壁422后向外传播。优选地,所述安装壁422的外壁为球面,通过这样的方式,在所述声学组件20因响应音频信号的输入而产生的声波辐射至所述安装壁422的外壁时,所述安装壁422的外壁能够使所述声学组件20产生的声学转向而项四周各个方向均匀地辐射,以进一步改善所述音乐筒灯的音效。所述安装部42的截面积小于所述支撑部41的截面积,以使当所述灯座40被安装于所述安装罩体10,声音能够通过所述安装部42和所述支撑部41之间的空间朝外传播,即,通过所述传声通道44传播。所述安装部42通过所述支撑件43被连接于所述支撑部41。或者说,所述支撑件43的一端连接于所述安装部42的周沿,所述支撑件43的另一端连接于所述支撑部41。所述支撑件43被设置为自所述安装部42的周沿发射状朝外延伸至所述支撑部41。所述支撑件43能够支撑所述安装部42于所述支撑部41,进而被安装于所述安装部42的所述发光组件通过所述灯座40被固定于所述安装罩体10。
所述支撑部41包括一围壁411和一底壁412以及具有一支撑腔413,其中所述围壁411围绕形成了所述支撑腔413,所述安装部42和所述支撑件43被容纳于所述支撑腔413,所述支撑腔413形成于所述传声通道44。当所述灯座40被安装于所述安装罩体10,所述围壁411被贴合于所述安装罩体10的内壁。所述底壁412被设置为自所述围壁411的一端朝外水平延伸而成,当所述灯座40被安装于所述安装罩体10,所述底壁412被覆盖在所述安装罩体10的所述容纳腔口101。通过这样的方式能够使得从所述灯座40和所述安装罩体10的连接处从外部无法观察到,保证了所述音乐筒灯的美观度,另一方面还可以阻止灰尘或者是水汽等可能对所述音乐筒灯内部造成损害的物质进入到所述容纳腔100。
所述支撑件43被设置在所述支撑部41的所述围壁411的所述支撑腔413。所述支撑件43的高度被设置为低于所述围壁411以使在所述围壁411的上方留下一定的空间供被放置在所述围壁411顶端的所述声学组件20传播声音,也减少了所述支撑件43对于所述声学组件20发出声波的影响。换句话说,所述灯座 40的所述安装部42的所述安装壁422的最高点距离被设置跟所述声学组件20有一预设的距离,通过这样的方式,也减少了被安装于所述灯座40的所述光学组件30散热对于所述声学组件20所造成的影响。
优选地,在本发明的一示例中,所述安装部42被形成于所述灯座40的中间位置,所述安装部42的截面被设置为一凹形的分圆。可以理解的是,此处的分圆是指完整圆形被任意一条直线分割而成的形状。也就是说,所述安装部42具有一弧面,其中所述弧面被设置为面对于所述声学组件20。所述安装部42的横截面积小于所述声学组件20的所述发声面,以使所述声学组件20发出的声音能够通过所述安装部42传播。进一步地,所述安装部42的所述弧面以及所述支撑件43和所述发声面都具有一预设的距离。也就是说,在所述灯座40和所述声学组件20之间形成了一传播空间,所述传播空间位于所述传声通道44的顶端,声音首先经过所述传播空间后再经过所述支撑件43之间的空间被传播到了外界。所述声学组件20被安装于所述容纳腔100,并且,所述声学组件20的中间位置和所述安装部42的中间位置在同一轴线,也就是说,当所述声学组件20发出的声音经过所述安装部42时,被所述安装部42的所述弧面均匀地传播以使得所述音乐筒灯能够更加均匀地发声。
值得一提的是,所述声学组件20通过所述灯座40被固定地连接于所述光学组件30以保证所述音乐筒灯在使用过程当中所述声学组件20和所述光学组件30的相对位置的稳固性,进而保证所述音乐筒灯的音乐效果和光照效果。
进一步地,所述声学组件20包括一声学元件21和一声学罩体22,其中所述声学元件21被容纳在所述声学罩体22,所述声学元件21通过所述声学罩体22被对准地安装于所述光学组件30上方以使所述声学元件21的声音在传播过程中能够发出较佳的声效。具体地说,所述声学罩体22被连接于所述灯座40的所述支撑部41的顶面。所述支撑部41具有一顶面414和一底面415,其中当所述音乐筒灯被安装于天花板时,所述支撑部41的所述底面415较所述顶面414处于较低位置。可选地,所述声学罩体22被可拆卸地连接于所述灯座40,以方便对所述声学罩体22和所述灯座40进而更换和维修。
所述声学罩体22一方面能够提供一定的空间供所述声学元件21的声音传播,另一方面也能够对所述声学元件21起到保护作用,隔绝其他元件以避免对所述声学元件21的声效造成影响。所述声学元件21可以是一喇叭,或者是其他 电子发声元件。所述声学罩体22的所述声学腔220还可供容纳一些连接于所述声学元件21以供电的电路元件。值得一提的是,所述声学罩体22还可以起到散热作用,所述声学罩体22进一步包括一声学罩体本体221和多个散热鳍片222以及具有一声学腔220,其中所述声学腔220形成于所述声学罩体本体221,所述散热鳍片222被设置于所述声学罩体本体221外侧。换言之,所述散热鳍片222被设置为自所述声学罩体本体221朝外延伸而成的具有一定厚度的片状结构。所述散热鳍片222被设置在所述声学罩体本体221的外侧,相互之间具有一定的距离供散发热量。优选地,所述散热鳍片222被设置为自所述声学罩体本体221的外侧一体朝外延伸而成,所述散热鳍片222的存在能够加快此处热量的散失以避免热量聚集对于所述音乐筒灯内的电子元件造成影响。
进一步地,所述声学罩体22和所述灯座40具有一定的高度,当所述声学罩体22通过所述灯座40被容纳于所述安装罩体10,所述声学罩体22的顶端距离所述安装罩体10的顶端仍有一定的距离。换句话说,在所述声学罩体22的顶侧和所述安装罩体10的顶侧形成了一空间,所述散热鳍片222能够跟在此空间内的空气进行热交换,进一步增强所述声学罩体22的散热效率。此处空间内的空气再次跟所述安装罩体10进行热交换进一步将热量散失到外界。
所述安装罩体10不仅能够起到支撑所述灯座40,所述声学组件20和所述光学组件30于安装位置的作用,值得一提的是,所述安装罩体10还可以起到防火作用。所述安装罩体10可由耐高温材料或者防火材料(例如钢铁、陶瓷、高温合金等)而制成。
所述安装罩体10进一步包括一罩筒11和一安装件12,其中所述安装件12被设置在所述罩筒11以供所述罩筒11安装于某一位置,比如说天花板。
所述光学组件30包括一光学元件31和一光学配件32,其中所述光学元件31被设置在所述安装部42以发出光线,其中所述光学配件32被设置在所述光学元件31的周围以取得较好的光学效果。优选地,所述光学元件31和所述光学配件32都被设置在所述安装部42的所述安装壁422的中间位置以和所述声学组件20相匹配,在取得光照效果的同时取得较好的声音效果。
进一步地,所述音乐筒灯包括一防尘件50,其中所述防尘件50被设置在所述灯座40,以阻止灰尘等物质通过所述传声通道44进入到所述声学组件20。具体地,所述防尘件50自所述支撑部41的所述底壁412周沿朝所述安装部42底 部的周沿延伸而成。优选地,所述防尘件50的底面和所述支撑部41的底面在同一平面以保持所述音乐筒灯的美观度,还可以使得所述筒灯能够被站立地放置在地面。可选地,所述防尘件50被一体延伸地形成于所述灯座40。所述防尘件50也可以被可拆卸地连接于所述灯座40以方便更换和清洁。
所述防尘件50具有至少一声波通道500使得所述声学组件20发出的声音能够通过所述声波通道500传播到外界。也就是说,所述声波通道500被连通于所述传声通道44以使声音通过所述灯座40的所述传声通道44后经由所述防尘件50的所述声波通道500传递到外界。本领域技术人员可以理解的是,所述防尘件50并不是必要的,所述声学组件20发出的声音在没有所述防尘件50的情况下可以直接通过形成于所述灯座40的所述支撑部41和所述安装部42之间的所述传声通道44传播到外界。优选地,所述防尘件50的所述声波通道500被均匀对称地形成以保证所述声学组件20的声学效果。
在本发明的一示例中,所述防尘件50被可拆卸地连接于所述灯座40。所述防尘件50包括一防尘件底座511和一防尘件侧翼512,其中所述防尘件底座511通过所述防尘件侧翼512被可拆卸地连接于所述灯座40。所述防尘件侧翼512被设置为自所述防尘件底座511的周沿朝上延伸而成,当所述防尘件50被安装于所述灯座40,所述过程侧翼被可拆卸地卡接于所述灯座40的所述支撑件43。所述防尘件底座511被设置为一环形,其中所述防尘件底座511的外径被设置为和所述灯座40的所述支撑部41的内径相匹配以使所述防尘件底座511能够被容纳在所述传声通道44,相应地,所述防尘件底座511的内径被设置为和所述灯座40的所述安装部42的外径相匹配以减少灰尘从所述防尘件底座511和所述安装部42的连接处进而。也就是说,所述防尘件底座511的外径略小于所述支撑部41的所述围壁411的内径,所述防尘件底座511的内径略大于所述安装部42的所述安装壁422的外径。
优选地,所述防尘件侧翼512被一体延伸地形成于所述防尘件底座511。
值得一提的是,在本示例中,所述支撑件43自所述安装部42的所述安装壁422朝外延伸至所述支撑部41的所述围壁411形成,也就是说,所述支撑件43位于所述安装部42的所述安装腔421的外侧,并不会对容纳于所述安装腔421的所述光学组件30的光照效果造成影响。进一步地,发散状的所述支撑件43一体形成于所述支撑部41和所述安装部42,降低了制造成本,并且所述支撑件 43在发挥散热作用的同时,也可以加强所述安装部42和所述支撑部41之间的连接,使得所述安装部42的位置更加稳固,也减少了所述声学组件20发出振动造成的影响,通过这样的方式,取得了良好的光照效果。对于热量来说,可以通过所述支撑件43之间的空间散发到外界当中,进而不在所述支撑部41的所述支撑腔413内聚集,减少对于所述声学组件20和所述光学组件30的影响。更加值得一提的是,所述支撑件43的高度低于所述支撑部41的所述围壁411的高度以在所述支撑部41的顶端留出一定的空间供容纳所述声学组件20或者是提供空间供所述声学组件20传播声音。
如图6所示以及参考附图1和2,是根据本发明的一音乐筒灯的另一示例,所述音乐筒灯包括一安装罩体10,一声学组件20和一光学组件30,其中所述声学组件20用于发出声音,所述光学组件30用于发出光线,所述声学组件20和所述光学组件30被容纳于所述安装罩体10,通过所述安装罩体10被安装于天花板等位置。所述音乐筒灯被设置为在一结构中同时发光和发声,使所述音乐筒灯达到精简化设计,有利于节省空间,同时使得所述音乐筒灯拥有较佳的照明效果和声音效果。
所述安装罩体10包括一罩筒11和一安装件12以及具有一容纳腔100,其中所述安装件12被设置在所述罩筒11的两侧以被适于被安装于天花板。所述声学组件20和所述光学组件30被安装于所述罩筒11。
所述光学组件30包括一光学元件31和一光学配件32,其中所述光学元件31能够发出光线起到照明作用,所述光学配件32被设置在所述光学元件31周围以帮助改进所述光学元件31的照明效果。所述光学配件32可以是透镜,反光被等器件。
所述声学组件20包括一声学罩体22和一声学元件21,其中所述声学罩体22包括一声学罩体本体221以及具有一声学腔220,其中所述声学元件21被覆盖在所述声学罩体22的所述声学腔口,以使所述声学元件21和所述声学罩体22形成一音箱以增强所述声学元件21的声音效果。
所述音乐筒灯进一步包括一灯座40,其中所述灯座40能够对所述声学组件20和所述光学组件30起到支撑作用,同时保证了所述声学组件20和所述光学组件30被安装于所述安装罩体10时有较佳的声音效果和光学效果。所述声学组件20被安装于所述灯座40,所述光学组件30被安装于所述灯座40。所述声学 组件20和所述光学组件30被分别安装于所述灯座40的两侧。进一步地,所述声学组件20和所述光学组件30位于同一轴线。
具体地说,所述安装罩体10具有一安装顶面102和一安装底面103,所述安装底面103位于所述容纳腔口101附近,当所述安装罩体10被安装于一天花板时,所述安装顶面102较所述安装底面103处于较高位置。所述灯座40被连接于所述安装底面103,所述光学组件30被连接于所述灯座40的朝外一侧,相应地,所述声学组件20被连接于所述灯座40的朝内一侧。可以理解的是,此处的朝内是指朝所述容纳腔100,朝外是指朝所述音乐筒灯外。当所述声学组件20,所述光学组件30和所述灯座40被安装于所述安装罩体10以构成所述音乐筒灯,所述声学组件20相对于所述光学组件30位于所述容纳腔100朝内位置。也就是说,所述声学组件20向所述容纳腔口101外传播声音需要经过所述灯座40和所述光学组件30。
在本发明中,所述灯座40和所述光学组件30经过一定的设计以使所述音乐筒灯在使用过程中并不会因为所述灯座40和所述光学组件30的阻挡作用对于所述声学组件20的声音效果造成较大的影响。
具体地,所述灯座40包括一围壁411,一底壁412,一安装部42,多个支撑件43以及具有一支撑腔413和一安装腔421,其中所述围壁411围绕形成了所述支撑腔413,所述支撑件43和所述安装部42位于所述支撑腔413,所述安装部42包括一安装壁422和具有一安装腔421,其中所述安装壁422围绕形成了所述安装腔421供容纳所述光学组件30。所述支撑件43被设置为自所述安装壁422的周沿朝所述围壁411发散状延伸而成。对于所述安装部42来说,通过所述支撑件43被连接于所述灯座40的所述围壁411,多个所述支撑件43使得所述安装部42更加稳固。
所述底壁412被设置为自所述围壁411的底端朝外延伸而成进而覆盖在所述安装罩体10的底面。通过这样的方式,可以阻止污染物从此处进入。
进一步地,所述音乐筒灯具有多个安装孔60,其实所述安装孔60被用于部件之间的相互安装。所述音乐筒灯具有一第一安装孔61和一第二安装孔62,其中所述第一安装孔61形成于所述安装罩体10的两侧,所述第二安装孔62形成于所述灯座40的所述围壁411的两侧。所述第二安装孔62被匹配地形成于一预设的位置以使当所述灯座40通过所述容纳腔口101被安装于所述安装罩体10 时,所述第一安装孔61对准所述第二安装孔62,以使固定件比如说胶水或者是螺钉等穿过以固定所述安装罩体10和所述灯座40。
进一步地,所述灯座40包括一灯座安装部46,其中所述灯座安装部46形成于所述围壁411和所述支撑件43之间,以使所述灯座40和所述声学组件20更加稳固地连接。具体地,所述灯座安装部46包括多个灯座安装件461,所述灯座安装件461的一端连接于所述围壁411,另一端连接于所述支撑件43。在本发明的一示例中,所述灯座安装件461被部分包覆于所述支撑件43以增强所述围壁411和所述支撑件43之间的连接强度。优选地,所述灯座安装件461被一体成型地形成于所述支撑件43和所述围壁411以增强所述围壁411和所述灯座安装件461之间的连接强度。可以理解的是,整个所述灯座40可以是一体成型的,通过这样的方式,在方便安装和更换的同时,也保持了所述灯座40的强度。当所述音乐筒灯被安装使用时,所述灯座40承载了所述声学组件20和所述光学组件30的重量,因此所述灯座40需要有一定的承重能力。
进一步地,所述灯座安装件461具有至少一第三安装孔63,其中所述第三安装孔63形成于所述灯座安装件461顶端。相应地,所述声学组件20的所述声学罩体本体221具有至少一第四安装孔64,其中所述第四安装孔64被匹配地设置于所述第三安装孔63以使当所述声学组件20被安装于所述灯座40时,所述第三安装孔63被对准地设置于所述第四安装孔64。具体地,所述声学罩体本体221包括一声学罩体本体围壁2211,一声学罩体顶面2212和一声学罩体底壁2213,其中所述声学罩体顶面2212形成于所述声学罩体本体围壁2211,被设置为自所述声学罩体本体围壁2211的周沿朝内延伸而成。所述声学罩体顶面2212和所述声学罩体本体围壁2211形成了所述声学腔220。所述声学罩体底壁2213被设置为自所述声学罩体本体围壁2211底端朝外延伸而成。所述第四安装孔64形成于所述声学罩体底壁2213,并且贯通于所述声学罩体底壁2213以使螺钉等固定件能够通过所述第四安装孔64延伸至所述第三安装孔63从而将所述声学组件20和所述灯座40固定地连接。本领域技术人员可以理解的是,所述灯座40和声学组件20的所述声学罩体22的连接也可以通过胶水等连接介质。
对于所述声学罩体22来说,进一步包括多个散热鳍片222,其中所述散热鳍片222均匀地排列于所述声学罩体本体221外侧,以将所述声学元件21在工作当中生产的热量散发到空气当中。所述散热鳍片222被设置为自所述声学罩体 本体221朝外延伸而成,或者说是,自所述声学罩体22的所述声学罩体底壁2213朝上延伸所述声学罩体本体围壁2211延伸而成。
所述声学元件21被容纳于所述声学罩体22的所述声学腔220,所述声学罩体22为所述声学元件21提供了空间以增强所述声学元件21的声音效果。
所述声学元件21被设置在所述声学罩体22的顶端,位于一远离所述灯座40的位置,也就是说,所述声学元件21跟所述安装罩体10的内壁围绕形成了一腔室结构以增强所述声学元件21的音乐效果。所述声学元件21的声音通过整个所述声学腔220朝位于所述声学罩体22底端的所述灯座40传播,进而朝外界传播。换句话说,所述声学元件21和所述灯座40分别被设置在所述声学罩体22的两端。
进一步地,所述音乐筒灯包括一传声通道44,其中所述传声通道44形成于所述声学元件21和所述声学罩体22以及所述灯座40之间以将声音传递至外界。具体地说,所述声学元件21发出的声音通过所述声学罩体22,所述灯座40以后被传递到外界。在这一过程当中,遇到了安装有所述光学组件30的所述安装部42。所述安装部42具有一弧形结构,参照附图6所示的声音传播的方向,声音遇到所述安装部42后朝所述安装部42两侧朝外传播。换句话说,所述安装部42的弧形设计减少了所述光学组件30对于所述发声元件声音传播的阻碍使得所述音乐筒灯整体都能够具有较好的声音效果和光学效果。优选地,所述安装部42和所述声学元件21被设置在同一轴线以使所述声学元件21发出的声音通过所述安装部42被均匀地传播进而取得较好的声音效果。
优选地,所述支撑件43被均匀地地设置于所述围壁411和所述安装部42之间以使所述声学元件21均匀地经过所述支撑件43以获得较好的声音效果。
换句话说,所述安装部42的截面积小于所述灯座40的所述围壁411的截面积以使所述灯座40的所述支撑腔413被连通于外界以使所述声学元件21的声音通过所述灯座40的所述支撑腔413被传播到外界。
进一步地,所述音乐筒灯进一步包括一防尘件50,其中所述防尘件50被连接于所述灯座40,具体地,覆盖于所述灯座40的所述支撑腔口以阻止灰尘等污染物进入到所述支撑腔413内对位于另一端的所述声学元件21造成影响。
所述防尘件50包括一防尘件本体51和具有多个声波通道500,其中所述防尘件本体51包括一防尘件侧翼512和一防尘件底座511,其中所述防尘件侧翼 512被设置为自所述防尘件底座511的周沿位置朝上延伸而成,其中所述声波通道500被形成于所述防尘件底座511。优选地,在本发明的一示例中,所述防尘件底座511和所述灯座40的所述底壁412平行以使所述音乐筒灯能够被较平稳地放置在地面。可以理解的是,所述安装部42的底面高于所述灯座40的所述底壁412的高度以使所述音乐筒灯被放置在地面时,所述灯座40不跟地面直接接触以减少污染的几率。
所述防尘件50被可拆卸地连接于所述灯座40。所述防尘件50的所述防尘件底座511的一侧连接于所述安装部42,另一侧连接于所述灯座40的所述底壁412。换句话说,所述防尘件底座511的外径略小于所述底壁412的内径,所述防尘件底座511的内径略大于所述安装部42的外径以使所述防尘件底座511被容纳于所述底壁412和所述安装部42之间以对从所述底壁412和所述安装部42之间进入的污染物做出筛选。所述声波通道500具有一预设的大小以及被设置在所述防尘件底座511的一预设的位置以使所述防尘件50在发挥筛选功能的同时也减少对所述声学元件21声音效果的影响。
值得一提的是,在本实施例中,所述声学元件21被设置在所述声学罩体22顶端,声音不仅可以通过所述声学罩体22然后经过所述灯座40的所述支撑腔413传播到外界,还可以通过所述安装罩体10和所述声学罩体22之间的空间,再通过所述灯座40的所述支撑腔413传播到外界。
如图7所示以及参考附图1和2,是根据本发明的一音乐筒灯的另一实施例被阐明。所述音乐吸顶定具有较佳的音乐效果和光线效果。
所述音乐筒灯包括一安装罩体10,一光学组件30,一声学组件20和一灯座40,其中所述声学组件20包括一声学元件21和一声学罩体22,其中所述声学罩体22具有一声学腔220,其中所述安装罩体10具有一容纳腔100,其中所述光学组件30,所述声学组件20和所述灯座40皆被容纳于所述安装罩体10的所述容纳腔100。
具体地说,所述灯座40被容纳于所述声学罩体22的所述声学腔220,所述光学组件30位于所述声学腔220,并且通过所述灯座40被固定于所述声学罩体22。所述声学元件21具有一发声面,其中所述声学元件21被设置于所述声学罩体22以使所述发声面朝向所述声学腔口以使声音传播。进一步地,所述声学元件21相对于所述光学组件30远离所述容纳腔口101。换句话说,所述声学元件 21的声音达到所述容纳腔口101以朝外传播之前需要进过所述光学组件30,而所述光学组件30的光学传播并不受到所述声学元件21的影响。
值得一提的是,所述灯座40不仅起到支撑所述光学组件30于所述声学罩体22的作用,还可以了空间以供声音从而使得所述声学元件21的声音能够朝外传播。
所述灯座40具有多个声波通道500供声音通过。具体地说,所述灯座40包括一围壁411,一底壁412,多个支撑件43和一安装部42,其中所述围壁411围绕形成了一支撑腔413,所述底壁412被设置为自所述围壁411的底端朝外延长而成,所述支撑件43被设置为自所述围壁411朝所述安装部42延伸而成。所述支撑件43之间被设置为具有一定的距离朝内地排列于所述围壁411。换言之,所述支撑件43被设置为自所述安装部42朝外发散状延伸而成,通过这样的方式,不仅能够将所述支撑腔413划分为多个空间以供声音通过,还提供了空间供散发所述光学组件30在工作当中产生的热量。所述安装部42被用于安装所述光学组件30以使所述光学组件30通过所述灯座40被固定于所述声学罩体22。
所述安装部42的高度被设置为不大于所述灯座40的所述围壁411的高度。换句话说,所述灯座40不仅给所述光学组件30提供了安装空间,还提供了所述光学组件30散热空间,从而降低了所述灯座40和所述光学组件30在所述音乐筒灯当中所占有的空间比例。
更进一步地,所述安装部42包括一安装壁422,其中所述安装壁422形成于所述支撑件43之间,具有一弧形结构。当声音通过所述弧形结构时,并不会因为所述光学组件30和所述灯座40的存在被阻止传播,声音通过所述安装部42的弧形结构朝着所述安装壁422的两侧传播进而通过所述支撑腔413后朝外传播。也就是说,所述灯座40不仅能够帮助所述光学组件30在所述安装罩体10发挥正常的照明效果,还可以给所述声学元件21提供一个空间以发挥较佳的声音效果,同时减少了所述光学组件30的安装高度,以减少所述音乐筒灯整体的高度,还可以起到散热的作用。值得一提的是,分散状的所述支撑件43的结构设计还加强了所述灯座40的强度,使得所述光学组件30更加稳固地连接于所述灯座40。
进一步地,所述声学罩体22包括一声学罩体本体221,其中所述声学罩体本体221围绕形成了所述声学腔220。
对于所述声学罩体22来说,进一步包括多个散热鳍片222,其中所述散热鳍片222均匀地排列于所述声学罩体本体221外侧,以将所述声学元件21在工作当中生产的热量散发到空气当中。所述散热鳍片222被设置为自所述声学罩体本体221朝外延伸而成,或者说是,自所述声学罩体22的所述声学罩体本体围壁2211朝上延伸所述声学罩体底壁2213延伸而成。
可以理解的是,所述声学元件21可以被安装于所述声学罩体22内,所述声学元件21和所述声学罩体22产生了一音箱效果以供声音传播。还可以是,所述声学元件21被设置在所述声学罩体22的顶端,此处的顶端是指远离所述光学组件30的一端,使得所述声学元件21和所述安装罩体10产生一音响效果,通过这样的方式,声音不仅能够通所述声学腔220传播,还可以通过所述散热鳍片222之间的空间向外界传播。
如图8所示以及参考附图1和附图2,是根据本发明的一音乐筒灯的另一示例,其中所述音乐筒灯包括一安装罩体10,一光学组件30,一声学组件20以及一灯座40,其中所述安装罩体10包括一安装罩体围壁,一安装罩体底壁和具有一容纳腔100,其中所述安装罩体底壁被设置为自所述安装罩体围壁的底端朝外延伸而成,所述安装罩体围壁围绕形成了所述容纳腔100。所述声学组件20包括一声学元件21和一声学罩体22,其中所述声学罩体22包括一声学罩体本体221以及具有一声学腔220,所述光学组件30通过所述灯座40被支撑于所述声学腔220内。所述声学组件20被设置于所述声学罩体22的一预设位置,位于所述光学组件30的两侧以使所述光学组件30不被所述声学组件20阻挡,并且所述声学组件20也不会受到所述光学组件30的影响。也就是说,所述声学组件20和所述光学组件30并不在同一轴线上,进而所述声学组件20和所述光学组件30并不会影响相互工作。
具体地说,所述灯座40包括一围壁411,多个支撑件43和一安装部42以及具有一支撑腔413,其中所述安装部42用于安装所述光学组件30,所述支撑件43形成于所述安装部42和所述围壁411之间以支撑所述安装部42于所述围壁411并且提供通道供流通。所述灯座40具有多个通孔45,其中所述通孔45形成于所述围壁411和所述安装部42之间。
所述安装部42具有一安装腔421和包括一安装壁422,其中所述安装壁422具有一弧形结构,当所述灯座40被安装于所述安装罩体10时,所述安装部42 的所述安装壁422被设置为朝内凹陷地以使所述光学组件30被安装于所述安装部42时,不凸出于所述容纳腔口101。值得一提的是,所述安装部42具有一顶面和一底面,此处的顶面和底面是指当所述音乐筒灯被安装于一天花板时,顶面是靠近天花板的一侧,底面是远离天花板的一侧。所述安装部42的所述顶面低于所述围壁411的顶端,所述安装部42的所述底面高于所述围壁411的底端,也就是说,所述安装部42被完全容纳于所述围壁411形成所述支撑腔413内,从而当一具有预设高度的所述光学组件30被容纳于所述灯座40的所述安装部42时,所述灯座40和所述光学组件30的整体高度并没有超过单个所述灯座40的高度,进而降低了所述灯座40和所述光学组件30的整体安装高度,节约了所述灯座40和所述光学组件30所占据的空间。
可选地,所述灯座40可以通过所述围壁411连接于所述安装罩体10的所述安装罩体围壁进而被连接于所述安装罩体10。也可以是,所述灯座40进一步包括一底壁412,其中所述底壁412被设置为自所述灯座40的所述围壁411的顶端朝外延伸而成,所述灯座40的所述围壁411具有一预设的大小以使所述围壁411能够被容纳于所述声学罩体22的所述声学腔220。
在本示例中,所述声学组件20位于所述灯座40的所述底壁412的前端,以使声音能够直接朝前传播。此处的前是指所述光学组件30的照明方向。
进一步地,所述音乐筒灯包括一防尘件50,其中所述防尘件50具有多个声波通道500,所述防尘件50被连接于所述灯座40,位于所述灯座40的所述围壁411和所述安装部42之间以减少灰尘进而到所述容纳腔100。也可以是,所述防尘件50被覆盖在所述灯座40的所述底壁412,也就是说,所述防尘件50被覆盖于所述声学组件20以通过这样的方式减少对所述声学组件20的污染。所述防尘件50包括一防尘件底座511和一防尘件侧翼512,其中所述防尘件侧翼512被设置在自所述防尘件底座511竖直朝外延伸而成,所述通孔形成于所述防尘件底座511。所述防尘件侧翼512具有一外周沿和一内周沿,也就是说,所述防尘件侧翼512呈环形,所述防尘件侧翼512的所述外周沿被设置为略大于所述灯座40的所述围壁411的周沿以使所述防尘件50包覆在所述灯座40的所述围壁411,所述内周沿被设置为略大于所述安装部42的周沿以使所述安装部42被暴露,以不对所述光学组件30的照明造成阻碍。
如图9和图10所示,是根据本发明的一灯座40被阐明,其中所述灯座40 包括一围壁411,一底壁412,多个支撑件43和一安装部42以及一支撑腔413,所述围壁411围绕形成了所述支撑腔413,所述支撑件43和所述安装部42被容纳于所述支撑腔413。所述底壁412被设置为自所述围壁411的底端朝外延伸而成。所述安装部42包括一安装壁422和具有一安装腔421,所述安装腔口4211和所述底壁412位于同一侧。所述安装部42用于安装灯座40。所述灯座40进一步具有多个通孔45,所述通孔45形成于所述围壁411和所述安装部42之间以供空气流通。
对于所述支撑件43来说,所述支撑件43被设置为自所述安装部42的周沿朝所述围壁411延伸而成,所述通孔45形成于所述支撑件43或者是形成于所述支撑件43之间。
在一示例中,所述支撑件43被设置为自所述安装部42朝所述围壁411发散状延伸而成,也就是说,所述支撑件43的一端连接于所述围壁411,另一端连接于所述安装部42,所述支撑件43个所述支撑件43之间具有一预设的距离以形成所述通孔45。
优选地,所述支撑件43被设置为均匀地排列于所述安装部42周沿以将所述支撑腔413均匀地划分。
也可以是,所述支撑件43相互交错地连接于所述安装部42和所述围壁411,以形成所述通孔45。
还可以是,所述支撑件43的数目是一,所述支撑件43被设置为沿着所述安装部42的周沿朝所述围壁411的延伸而成,可选地,所述通孔45被均匀地形成于所述支撑件43。
可选地,所述安装部42位于所述围壁411的中心轴线。所述支撑件43的高度被设置为低于所述围壁411以使所述围壁411的高度就是所述灯座40的高度。
参考附图11、12和13所示,根据本发明的一较佳实施例的一音乐筒灯被阐明,其中所述音乐筒灯包括一安装罩体10,一声学组件20,一光学组件30以及一灯座40,其中所述安装罩体10具有一容纳腔100和连通所述容纳腔100的腔口101,其中所述声学组件20被设置于所述安装罩体10的所述容纳腔100,其中所述灯座40具有一环形的传声通道44,其中所述灯座40以所述灯座40封闭所述安装罩体10的所述容纳腔口101的方式被安装于所述安装罩体10,并且所述灯座40的所述传声通道44连通所述安装罩体10的所述容纳腔100,其中所 述光学组件30以所述光学组件30和所述声学组件20被保持在所述灯座40的相对侧的方式被设置于所述灯座40,其中所述声学组件20产生的声波经由所述灯座40的所述传声通道44自所述安装罩体10的所述容纳腔100被辐射至所述音乐筒灯的外部。
具体地说,所述灯座40包括一环形的支撑部41,一安装部42以及至少一支撑件43,每个所述支撑件43的两端分别向内和向外延伸以连接于所述安装部42和所述支撑部41,并且在所述支撑部41和所述安装部42之间形成所述传声通道44,其中所述光学组件30被设置在所述安装部42并且以朝向所述容纳腔口101的方式安装于所述安装部42以使光线通过所述容纳腔口101朝外传播。所述安装部42包括一安装部42,每个所述支撑件43分别延伸于所述安装壁,其中所述安装壁是一弧形外壁,以用于使所述声学组件20产生的声波转向。在本发明的一示例中,所述弧形外壁被设置为一球形外壁。
进一步地,所述支撑件43被设置为不均匀地形成于所述传声通道44,以在提供支撑给所述安装部42的同时为所述声学组件20提供传播路径以使声音在经由所述灯座40的所述传声通道44自所述安装罩体10的所述容纳腔口101朝外传播时尽可能被导出,不易生产闷音。也就是说,所述支撑件43之间被设置为非等距排列地形成于所述传声通道44。所述灯座40进一步具有多个通孔45,其中所述通孔45是通过所述传声通道44被所述支撑件43划分形成的。所述支撑件43包括一第一支撑件431和一第二支撑件432,所述第一支撑件431朝内和朝外延伸以连接所述安装部42和所述支撑部41,所述第二支撑件432朝内和朝外延伸以连接所述安装部42和所述支撑部41。在本发明的一示例中,所述第一支撑件431的高度被设置为低于所述第二支撑件432的高度以使声音通过所述第一支撑件431后尽可能被导出。当然,可以理解的是,所述第一支撑件431的高度可以等于或者是小于所述第二支撑件432的高度。所述支撑件43的高度被设置为小于或者是等于所述支撑部41的高度以使所述声学组件20被支撑于所述灯座40时的安装高度被降低。所述通孔45包括至少一第一通孔451和至少一第二通孔452,其中所述第一通孔451被形成于所述第一支撑件431和邻近的所述第二支撑件432之间或者是所述第一支撑件431和所述第一支撑件431之间,所述第二通孔452被形成于所述第二支撑件432和邻近的所述第二支撑件432之间,所述第一通孔451的横截面积被设置为大于所述第二通孔452的横截面积以给所 述声学组件20提供更多的传播空间。
值得一提的是,所述灯座40不仅为所述声学组件20提供了传播路径,为所述光学组件30提供了安装空间,还起到了散热的效果,使得所述声学组件20和所述光学组件30在作业过程中产生的热量经由所述灯座40朝所述音乐筒灯外部散失。
进一步地,所述声学组件20包括一声学元件21和一声学罩体22,其中所述声学元件21被设置于所述声学罩体22,其中所述声学元件21被设置于所述安装罩体10的所述容纳腔100,并且所述声学元件21在响应音频信号的输入时产生声波,和所述声学元件21产生的声波经由所述灯座40的所述传声通道44自所述安装罩体10的所述容纳腔100辐射至所述音乐筒灯外部。所述声学罩体22具有一声学腔220和连通于所述声学腔220的一声学腔口,其中所述声学元件21被以封闭所述声学腔口的方式设置于所述声学罩体22。所述声学腔220能够提供密封空间让所述声学元件21发出的声音在此共鸣,从而达到音箱的效果。
具体地,所述声学罩体22包括一声学罩体腔体223和一声学罩体顶盖224,其中所述声学罩体顶盖224覆盖在所述声学罩体腔体223共同形成了所述声学腔220。可选地,所述声学罩体顶盖224被可拆卸地连接于所述声学罩体腔体223。值得一提的是,所述声学罩体顶盖224被密闭地连接于所述声学罩体腔体223以增强所述声学腔220的音响效果。在本发明的一示例中,所述声学罩体顶盖224和所述声学罩体22腔体224通过一凹凸槽结构相互连接。可以是所述声学罩体顶盖224的底面被设置有一凹槽,所述声学罩体腔体223的顶面被设置有一凸起,所述凹槽和所述凸起被相互匹配地设置以使所述声学罩体顶盖224和所述声学罩体腔体223相对密闭地可拆卸地连接。也可以使,所述声学罩体顶盖224的底面被设置有一凸起,所述声学罩体腔体223的顶面被设置有一凹槽,所述凹槽和所述凸起被相互匹配地设置以使所述声学罩体顶盖224和所述声学罩体腔体223相对密闭地可拆卸地连接。
所述音乐筒灯进一步包括一防尘件50,所述防尘件50具有至少一声波通道500,其中所述防尘件50被设置于所述灯座40,并且所述防尘件50的每个所述声波通道500分别连通于所述传声通道44。值得一提的是,在本发明的一示例中,所述防尘件50通过过盈配合的方式被固定连接于所述灯座40。所述防尘件50的制作材料可以是金属的,塑料的或者是布料的。
所述光学组件30包括一光学元件31和一光学配件32,其中所述光学元件31被安装于所述安装部42,所述光学配件32被安装于所述光学元件31周围以增强所述光学元件31的发光效果。所述光学配件32可以是反光杯或透镜或反光杯加透镜。在本发明的一示例中,所述光学配件32被所述防尘件50所支撑进而被固定在所述灯座40的所述安装部42。
进一步地,所述音乐筒灯包括一控制件70,其中所述控制件70被分别电连接于所述光学组件30和/或所述声学组件20,以用于操控所述光学组件30和/或所述声学组件20。在本发明的一示例中,所述控制件70被设置在所述声学罩体22的所述声学罩体顶盖224。所述声学罩体顶盖224距离所述安装罩体10顶面有一预设的距离以在此处留下空间可供所述控制件70在工作过程中散热。所述控制件70也可以被集成于所述声学罩体顶盖224,通过这样的方式,使得所述音乐筒灯的整体结构更加紧凑,节约了安装空间。
进一步地,所述音乐筒灯包括一固定件80,其中所述固定件80被设置在所述安装罩体10的顶端以固定电线以使整个所述音乐筒灯符合电器的相关安全规定。所述固定件80可以是线扣也可以是压线板。
在本发明的一示例中,所述灯座40进一步具有至少一第一通孔451和至少一第二通孔452,其中所述第一通孔451的横截面大于所述第二通孔452的横截面,所述支撑件43包括一第一支撑件431和多个第二支撑件432,其中所述第二通孔452形成于所述第二支撑件432和相邻的所述第二支撑件432之间,所述第一通孔451形成于所述第一支撑件431和相邻的所述第二支撑件432之间。所述第一支撑件431的高度低于所述第二支撑件432的高度。
在本发明的另一示例中,所述灯座40进一步具有至少一第一通孔451和至少一第二通孔452,其中所述第一通孔451和所述第二通孔452形成于相邻的所述支撑件43之间,其中所述第一通孔451的横截面大于所述第二通孔452的横截面。形成所述第一通孔451的相邻的所述支撑件43中的至少一个的高度被设置为低于形成所述第二通孔452的所述支撑件43的高度。
进一步地,本发明还提供了一音乐筒灯的制造方法,其中所述制造方法包括如下步骤:
(a)形成一灯座40,所述灯座40具有多个通孔45,其中所述灯座40提供一安装部42用于安装一光学组件30,其中所述安装部42具有一弧形结构;
(b)安装一光学组件30于所述安装部42;
(c)安装一声学组件20于所述灯座40以使声音通过所述灯座40跟所述光学组件30朝一个方向传播;以及
(d)容纳所述声学组件20,所述灯座40和所述光学组件30于一安装罩体10以通过所述安装罩体10被连接于一天花板。
在上述步骤a当中,所述灯座40包括一围壁411和多个支撑件43,所述支撑件43被设置在所述围壁411和所述安装部42之间,所述支撑件43被设置为自所述围壁411朝所述安装部42延伸而成,所述支撑件43之间形成了所述通孔。
也可以是,在上述步骤a当中,所述灯座40包括一围壁411和一支撑件43,所述支撑件43被设置在所述围壁411和所述安装部42之间,所述通孔形成于所述支撑件43。
根据本发明的一实施例,在上述方法中,所述声学组件20可以是一声学元件21,比如说喇叭。
根据本发明的一实施例,在上述方法中,所述声学组件20可以是一声学元件21和一声学罩体22,其中所述声学罩体22具有一声学腔220,其中所述声学元件21被设置于所述声学罩体22。
根据本发明的另一方面,本发明进一步提供了一音乐筒灯的制造方法,其中所述制造方法包括如下步骤:
(a)分别提供一灯座40,一声学组件20,一光学组件30和一安装罩体10,其中所述灯座40形成有一弧形安装部42和多个贯通的通孔;和
(b)组装所述灯座40,所述声学组件20,所述光学组件30和所述安装罩体10使得所述光学组件30位于所述安装部42,所述声学组件20和所述灯座40被承载于所述安装罩体10。
依本发明的另一个方面,本发明进一步提供一音乐筒灯的组装方法,其中所述组装方法包括如下步骤:
(A)安装一光学组件30于一灯座40;
(B)以一声学组件20的一声学元件21和所述灯座40的外壁保持距离并且所述声学元件21的发声面朝向所述灯座40的外壁的方式安装所述声学组件20于所述灯座40;以及
(C)以所述声学组件20被保持在一安装罩体10的一容纳腔100的方式安 装所述灯座40于所述安装罩体10,以组装所述音乐筒灯。
进一步地,在所述步骤(B)中,进一步包括步骤:
(B.1)以所述声学元件21的发声面朝向外侧的方式安装所述声学元件21于一声学罩体22,以在所述声学元件21和所述声学罩体22之间形成一声学腔220;和
(B.2)安装所述灯座40和所述声学罩体22。
依本发明的另一个方面,本发明进一步提供一音乐筒灯的辅助散热方法,通过所述辅助散热方法以帮助所述音乐筒灯散去主要来自于所述光学组件30的热量,其中所述辅助散热方法包括如下步骤:
(α)鼓动一安装罩体10的一容纳腔100内的气体经由邻近一光学组件30的区域排出所述安装罩体10;
(β)经由邻近所述光学组件30的区域将所述安装罩体10的外部的气体吸入所述安装罩体10的所述容纳腔100;以及
(γ)交替性地执行所述步骤(α)和所述步骤(β),以对所述音乐筒灯进行散热。
进一步地,在所述步骤(α)中,在鼓动所述安装罩体10的所述容纳腔100内的气体时,使所述容纳腔100内的气体经由形成于所述光学组件30四周的一环形的传声通道44排出所述安装罩体10,和在所述步骤(β)中,在将所述安装罩体10的外部的气体吸入所述容纳腔100时,使所述安装罩体10的外部的气体经由形成于所述光学组件30的四周的所述传声通道44进入所述安装罩体10的所述容纳腔100。
更进一步地,在上述方法中,在一声学组件20响应音频信号的输入时,鼓动所述安装罩体10的所述容纳腔100内的气体排出所述容纳腔100,和将所述安装罩体10的外部的气体吸入所述安装罩体10的所述容纳腔100。
依本发明的另一个方面,本发明进一步提供一音乐筒灯的发声方法,其中所述发声方法包括如下步骤:
(i)一声学组件20在响应音频信号的输入时产生声波;
(ii)通过被保持在所述声学组件20的声波辐射方向的一灯座40改变所述声学组件20产生的声波的辐射方向;以及
(iii)经由所述灯座40的一环形的传声通道44辐射被改变辐射方向后的声 波,以产生声音。
进一步地,在所述步骤(i)中,进一步包括步骤:
(i.1)通过所述声学组件20的一声学元件21在响应音频信号的输入时产生声波;和
(i.2)通过在所述声学元件21和所述声学组件20的一声学罩体22之间产生一声学腔220的方式增强所述声学元件21的声波的低频。
值得一提的是,在本发明的一示例中,对于所述音乐筒灯来说,所述光学组件30产生的热量依次通过了所述安装部42,至少一所述支撑件43以及所述支撑部41后被传向四周的空间,其中所述光学组件30被安装于所述安装部42,其中每个所述支撑件43的两端分别向内和向外延伸以连接所述安装部42和所述支撑部43,并且在所述支撑部41和所述安装部42之间形成了所述传声通道44。
本领域的技术人员应理解,上述描述及附图中所示的本发明的实施例只作为举例而并不限制本发明。本发明的目的已经完整并有效地实现。本发明的功能及结构原理已在实施例中展示和说明,在没有背离所述原理下,本发明的实施方式可以有任何变形或修改。

Claims (32)

  1. 一音乐筒灯,其特征在于,包括:
    一声学组件;
    一光学组件;
    一安装罩体,其中所述安装罩体具有一容纳腔和连通所述容纳腔的一容纳腔口,其中所述声学组件被设置于所述安装罩体的所述容纳腔;以及
    一灯座,其中所述灯座具有一环形的传声通道,其中所述灯座以所述灯座封闭所述安装罩体的所述容纳腔口的方式被安装于所述安装罩体,并且所述灯座的所述传声通道连通所述安装罩体的所述容纳腔,其中所述光学组件以所述光学组件和所述声学组件被保持在所述灯座的相对侧的方式被设置于所述灯座,其中所述声学组件产生的声波经由所述灯座的所述传声通道自所述安装罩体的所述容纳腔辐射至所述音乐筒灯的外部。
  2. 根据权利要求1所述的音乐筒灯,其中所述灯座进一步包括一环形的支撑部、一安装部以及至少一支撑件,每个所述支撑件的两端分别向内和向外延伸以连接于所述安装部和所述支撑部,并且在所述支撑部和所述安装部之间形成所述传声通道,其中所述光学组件被设置于所述安装部。
  3. 根据权利要求2所述的音乐筒灯,其中所述安装部包括一安装壁,每个所述支撑件分别延伸于所述安装壁,其中所述安装壁的外壁是一弧形外壁,以用于使所述声学组件产生的声波转向。
  4. 根据权利要求3所述的音乐筒灯,其中所述安装壁的外壁是一球形外壁。
  5. 根据权利要求2至4中任一所述的音乐筒灯,其中所述音乐筒灯的中心轴线、所述安装部的中心轴线和所述支撑部的中心轴线重合。
  6. 根据权利要求1至4中任一所述的音乐筒灯,其中所述声学组件进一步包括一声学元件,其中所述声学元件被设置于所述安装罩体的所述容纳腔,并且所述声学元件在响应音频信号的输入时产生声波,和所述声学元件产生的声波经由所述灯座的所述传声通道自所述安装罩体的所述容纳腔辐射至所述音乐筒灯的外部。
  7. 根据权利要求6所述的音乐筒灯,其中所述声学组件进一步包括一声学 罩体,其中所述声学罩体具有一声学腔和连通所述声学腔的一声学腔口,其中所述声学元件被设置于所述声学罩体,并藉由所述声学元件封闭所述声学罩体的所述声学腔口。
  8. 根据权利要求7所述的音乐筒灯,其中所述声学罩体的外壁设有多个散热鳍片。
  9. 根据权利要求7所述的音乐筒灯,其中所述灯座被安装于所述声学罩体,以藉由所述灯座使所述声学组件被保持在所述安装罩体的所述容纳腔。
  10. 根据权利要求1至9中任一所述的音乐筒灯,进一步包括一防尘件,其中所述防尘件具有至少一声波通道,其中所述防尘件被设置于所述灯座,并且所述防尘件的每个所述声波通道分别连通所述传声通道。
  11. 根据权利要求2至4任一所述的音乐筒灯,其中所述灯座进一步具有至少一第一通孔和至少一第二通孔,其中所述第一通孔的横截面大于所述第二通孔的横截面,所述支撑件包括一第一支撑件和多个第二支撑件,其中所述第二通孔形成于所述第二支撑件和相邻的所述第二支撑件之间,所述第一通孔形成于所述第一支撑件和相邻的所述第二支撑件之间。
  12. 根据权利要求11所述的音乐筒灯,其中所述第一支撑件的高度低于所述第二支撑件的高度。
  13. 根据权利要求2至4任一所述的音乐筒灯,其中所述灯座进一步具有至少一第一通孔和至少一第二通孔,其中所述第一通孔和所述第二通孔形成于相邻的所述支撑件之间,其中所述第一通孔的横截面大于所述第二通孔的横截面。
  14. 根据权利要求13所述的音乐筒灯,其中形成所述第一通孔的相邻的所述支撑件中的至少一个的高度被设置为低于形成所述第二通孔的所述支撑件的高度。
  15. 根据权利要求2至4任一所述的音乐筒灯,其中所述光学元件被安装于所述灯座的所述安装部的中间位置。
  16. 一音乐筒灯的组装方法,其特征在于,所述组装方法包括如下步骤:
    (A)安装一光学组件于一灯座;
    (B)以一声学组件的一声学元件和所述灯座的外壁保持距离并且所述声学元件的发声面朝向所述灯座的外壁的方式安装所述声学组件于所述灯座;以及
    (C)以所述声学组件被保持在一安装罩体的一容纳腔的方式安装所述灯座 于所述安装罩体,以组装所述音乐筒灯。
  17. 根据权利要求16所述的组装方法,其中在所述步骤(C)之后,进一步包括步骤,安装具有至少一声波通道的一防尘件于所述灯座,以允许所述声学元件因响应音频信号的输入而产生的声波能够经由所述防尘件的所述声波通道辐射至所述音乐筒灯的外部。
  18. 根据权利要求17所述的组装方法,其中在所述步骤(C)之前,进一步包括步骤,安装具有至少一声波通道的一防尘件于所述灯座,以允许所述声学元件因响应音频信号的输入而产生的声波能够经由所述防尘件的所述声波通道辐射至所述音乐筒灯的外部。
  19. 根据权利要求16至18中任一所述的组装方法,其中在所述步骤(B)中,进一步包括步骤:
    (B.1)以所述声学元件的发声面朝向外侧的方式安装所述声学元件于一声学罩体,以在所述声学元件和所述声学罩体之间形成一声学腔;和
    (B.2)安装所述灯座和所述声学罩体。
  20. 一音乐筒灯的辅助散热方法,其特征在于,所述辅助散热方法包括如下步骤:
    (α)鼓动一安装罩体的一容纳腔内的气体经由邻近一光学组件的区域排出所述安装罩体;
    (β)经由邻近所述光学组件的区域将所述安装罩体的外部的气体吸入所述安装罩体的所述容纳腔;以及
    (γ)交替性地执行所述步骤(α)和所述步骤(β),以对所述音乐筒灯进行散热。
  21. 根据权利要求20所述的辅助散热方法,其中在所述步骤(α)中,在鼓动所述安装罩体的所述容纳腔内的气体时,使所述容纳腔内的气体经由形成于所述光学组件四周的一环形的传声通道排出所述安装罩体,和在所述步骤(β)中,在将所述安装罩体的外部的气体吸入所述容纳腔时,使所述安装罩体的外部的气体经由形成于所述光学组件的四周的所述传声通道进入所述安装罩体的所述容纳腔。
  22. 根据权利要求21所述的辅助散热方法,其中在所述步骤(α)中,所述光学组件产生的热量依次通过一安装部,至少一支撑件以及一支撑部后被传向四 周的空间,其中所述光学组件被安装于所述安装部,其中每个所述支撑件的两端分别向内和向外延伸以连接于所述安装部和所述支撑部,并且在所述支撑部和所述安装部之间形成了所述传声通道。
  23. 根据权利要求20或21所述的辅助散热方法,其中在上述方法中,在一声学组件响应音频信号的输入时,鼓动所述安装罩体的容纳腔内的气体排出所述容纳腔,和将所述安装罩体的外部的气体吸入所述安装罩体的所述容纳腔。
  24. 根据权利要求20或21所述的辅助散热方法,其中在上述方法中,在进行所述步骤(α)和所述步骤(β)时产生声波。
  25. 一音乐筒灯的发声方法,其特征在于,所述发声方法包括如下步骤:
    (i)一声学组件在响应音频信号的输入时产生声波;
    (ii)通过被保持在所述声学组件的声波辐射方向的一灯座改变所述声学组件产生的声波的辐射方向;以及
    (iii)经由所述灯座的一环形的传声通道辐射被改变辐射方向后的声波,以产生声音。
  26. 根据权利要求25所述的发声方法,其中在所述步骤(i)中,进一步包括步骤:
    (i.1)通过所述声学组件的一声学元件在响应音频信号的输入时产生声波;和
    (i.2)通过在所述声学元件和所述声学组件的一发声罩体之间产生一声学腔的方式增强所述声学元件的声波的低频。
  27. 根据权利要求25或26所述的发声方法,其中所述灯座进一步包括一环形的支撑部、一安装部以及至少一支撑件,每个所述支撑件的两端分别向内和向外延伸以连接于所述安装部和所述支撑部,并且在所述支撑部和所述安装部之间形成所述传声通道,其中所述光学组件被设置于所述安装部。
  28. 根据权利要求27所述的发声方法,其中所述安装部包括一安装壁,每个所述支撑件分别延伸于所述安装壁,其中所述安装壁的外壁是一弧形外壁,以用于使所述声学组件产生的声波转向。
  29. 根据权利要求28所述的发声方法,其中所述安装壁的外壁是一球形外壁。
  30. 根据权利要求28所述的发声方法,其中所述音乐筒灯的中心轴线、所 述安装部的中心轴线和所述支撑部的中心轴线重合。
  31. 根据权利要求27至30任一所述的音乐筒灯,其中所述灯座进一步包括至少一第一通孔和至少一第二通孔,其中所述第一通孔和所述第二通孔形成于相邻的所述支撑件之间,其中所述第一通孔的横截面大于所述第二通孔的横截面。
  32. 根据权利要求31所述的音乐筒灯,其中形成所述第一通孔的相邻的所述支撑件中的至少一个的高度被设置为低于形成所述第二通孔的所述支撑件的高度。
PCT/CN2018/072404 2018-01-12 2018-01-12 音乐筒灯及其应用 WO2019136693A1 (zh)

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CN204739490U (zh) * 2015-06-18 2015-11-04 深圳市洲明科技股份有限公司 一种带有音箱的筒灯
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CN203836760U (zh) * 2014-05-14 2014-09-17 深圳市索佳能源科技有限公司 一种一体化音乐筒灯
CN204358573U (zh) * 2014-11-24 2015-05-27 东莞长发光电科技有限公司 一种led音乐筒灯
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