1. Field of the Invention
The present invention relates generally to a speaker structure, which has a greatly minified volume and is manufactured at lower cost.
2. Description of the Related Art
In recent years, along with the miniaturization of various digital electronic products and video/audio products such as audiphones and earphones, the speakers installed on these products have been more and more required to be thinned, miniaturized and lightweight. Also, the dynamic range of the output signal of these products is enlarged so that the speakers are required to have higher output volume.
The speaker is a kind of converter for converting electrical energy into sonic energy through physical effect. According to different physical effects of conversion between electrical energy and sonic energy, the speakers can be classified into many types such as electromagnetic speakers, piezoelectric speakers, capacitive speakers or electrical speakers. In these speakers, the electrical speaker has a relatively simple structure and good performance so that the electrical speaker is popularly used as a mainstream of the currently developed and produced speakers.
According to the different effects of the respective parts of the speaker, the basic structure of the speaker can be classified into three parts of vibration system, magnetic circuit system and auxiliary system. Please refer to
The working principle of the speaker is that the current intensity and the direction of the force applied to the voice coil are changed so that the voice coil is back and forth vibrated in the magnetic gap. The period or frequency of the vibration is equal to the period or frequency of the input current. The amplitude of the vibration is in direct proportion to the instantaneous intensity of the acting current. The woofer vibration membrane and the tweeter vibration membrane are fixed on the voice coil so that the voice coil can drive the woofer vibration membrane and the tweeter vibration membrane to up and down vibrate and radiate sonic wave. Accordingly, the electrical energy is converted into sonic energy.
However, under the affection of the conventional speaker structure, there must be a certain buffering distance between the voice coil and the magnet. Also, there must be a certain buffering distance between the vibration membrane and the damper and there must be a certain buffering distance between the dangling edge and the basin support. Therefore, the total thickness of the speaker is considerably large. As a result, the conventional speaker can be hardly thinned. Due to the limitation of the thickness, the conventional speaker can be hardly applied to the current thin electronic products.
Furthermore, the conventional speaker is composed of numerous components and is manufactured by a complicated process. Therefore, it is quite time-consuming to produce the conventional speaker and the manufacturing cost of the conventional speaker is quite high.
According to the above, the conventional speaker structure has the following shortcomings:
It is therefore a primary object of the present invention to provide a speaker structure, which has a greatly minified volume.
It is a further object of the present invention to provide the above speaker structure, which is manufactured at lower cost and shortened working time.
To achieve the above and other objects, the speaker structure of the present invention includes a main body, a circuit board and a magnetic component. The main body has a receiving section and a recess formed on an outer circumference of the receiving section. A center of the main body is formed with a hole in communication with the receiving section. The circuit board has a board body and an outer frame body outward extending from a periphery of the board body. The outer frame body is inlaid in the recess of the main body. The circuit board has a first face and a second face opposite to the first face. The magnetic component is received in the hole. A voice coil collar is disposed around the magnetic component. One end of the voice coil collar is connected to the second face of the circuit board. Multiple windings are wound around a surface of the voice coil collar. Two ends of the windings are attached to the circuit board.
According to the above arrangement, the circuit board is employed instead of the vibration membrane and damper of the conventional speaker. When the current passes through the windings wound around the voice coil collar, an electromagnetic field is created, whereby the voice coil collar and the circuit board will be vibrated together to drive the ambient air to vibrate. The instantaneous contraction/expansion tempo will make the airflow vibrate to create sonic wave and emit a sound to human ears. In this case, the electrical energy is converted into sonic energy and the sound is recovered to a user to listen to.
Moreover, in the speaker structure of the present invention, the circuits of the speaker structure are integrated on the circuit board. Also, the soldering points and lead wires for fixing the windings are integrated on the circuit board to simplify the manufacturing process and lower the cost.
The structure and the technical means adopted by the present invention to achieve the above and other objects can be best understood by referring to the following detailed description of the preferred embodiments and the accompanying drawings, wherein:
Please refer to
The circuit board 21 has a board body 211 and an outer frame body 212 outward extending from a periphery of the board body 211. The outer frame body 212 is inlaid in the recess 202 of the main body. The circuit board 21 has a first face 214 and a second face 215 opposite to the first face 214.
A voice coil collar 23 is disposed around the magnetic component 22. One end of the voice coil collar 23 is connected to the second face 215 of the circuit board 21. Multiple windings 231 are wound around the surface of the voice coil collar 23. Two ends of the windings 231 are attached to the circuit board 21. After current is applied to the windings 231, the current is conducted to the voice coil collar 23, whereby the voice coil collar 23 is vibrated to drive the circuit board 21 to vibrate along with the voice coil collar 23.
In addition, a magnetically conductive component 24 is disposed around the magnetic component 22. The magnetically conductive component 24 is formed with a receiving hole 241 for receiving the magnetic component 22. A pad member 25 is disposed between one face of the magnetic component 22 and the second face 215 of the circuit board 21. The pad member 25 and the magnetic component 22 are received in the hole 203 of the main body 20.
In this embodiment, the circuit board 21 is, but not limited to, a flexible printed circuit (FPC) for illustration purposes. In practice, the circuit board 21 can be any circuit board, which can be vibrated when current passes through the windings 231 to create an electromagnetic field and make the magnetic component 22 and the voice coil collar 23 act on each other. For example, alternatively, the circuit board 21 can be a printed circuit board (PCB).
According to the above arrangement, the circuit board 21 is employed instead of the vibration membrane and damper of the conventional speaker. Referring to
Moreover, in the speaker structure 2 of the present invention, the circuits of the speaker structure 2 can be integrated on the circuit board 21. Also, the soldering points and lead wires for fixing the windings 231 can be integrated on the circuit board 21 to simplify the manufacturing process and lower the cost.
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In comparison with the conventional structure, the present invention has the following advantages:
The present invention has been described with the above embodiments thereof and it is understood that many changes and modifications in the above embodiments can be carried out without departing from the scope and the spirit of the invention that is intended to be limited only by the appended claims.
Number | Name | Date | Kind |
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20040218779 | Fukuyama et al. | Nov 2004 | A1 |
20090046889 | Huang | Feb 2009 | A1 |
20130136280 | Stephanou | May 2013 | A1 |
Number | Date | Country |
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2774063 | Apr 2006 | CN |
102036147 | Apr 2011 | CN |
Number | Date | Country | |
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20150055818 A1 | Feb 2015 | US |