The present disclosure relates to electro-acoustic converting technologies, and more particularly, to a long stroke speaker applicable to a mobile communication device for producing audible sound.
Speakers are widely applied in mobile communication devices, such as mobile phones, tablet computers, laptop computers, portable game player, portable multimedia devices, or the like, for converting electrical signals into audible sounds. The speakers can be categorized into long stroke speakers and short stroke speakers according to stroke lengths of voice coils in the speakers.
A related long stroke speaker includes a vibration system, a magnetic system, and a holder for holding the vibration system and the magnetic system. The vibrating system includes a membrane, a coil support connected to the membrane, and a voice coil arranged on the coil support. As illustrated in
Therefore, it is desired to provide a new long stroke speaker which can overcome the aforesaid problems.
Many aspects of the embodiment can be better understood with reference to the following drawings. The components in the drawing are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present disclosure. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
The present disclosure will be described in detail below with reference to the attached drawings and the embodiment thereof.
Referring to
The shell 11 includes a front cover 16, a first shell body 12 and a second shell body 13. The front cover 16 is engaged to a front end of the first shell body 12, and may include a sound outlet formed opposite to the first shell body 12. The second shell body 13 is engaged to a rear end of the first shell body 12. In the present embodiment, the first shell body 12 and the second shell body 13 may be separate from each other; in an alternative embodiment, the first shell body 12 and the second shell body 13 may be integrated into a one-piece structure.
The vibrating system 14 includes a membrane 141, a coil support 142 connected to the membrane 141, and a voice coil 143 connected to the coil support 142. The membrane 141 includes a dome arranged at a main central region thereof, and a suspension surrounding the dome; in addition, in the present embodiment, the suspension of the membrane 141 includes a periphery part 141a, the periphery part 141 may be sandwiched between the front cover 16 and the front end of the first shell body 12 which faces the front cover 16.
The coil support 142 includes a supporting part 142a and a pair of connecting arms 142b. The membrane 141 may be arranged on and supported by the supporting part 142a of the coil support 142; for example, the supporting part 142a may be connected to a bottom surface of the membrane 141, which faces the magnetic system 15. The pair of connecting arms 142 extends from a bottom of the supporting part 142a along a vibration direction of the membrane 141 (i.e., a direction B in
Furthermore, to enhance a stability of the vibrating system 14, the long stroke speaker 10 further includes an auxiliary system 17; the auxiliary system 17 includes a pair of auxiliary parts symmetrical to each other. Each of the auxiliary parts includes a fixed piece 171 and a flexible member 172. The fixed piece 171 is fixed to the shell 11, for example, the fixed piece 171 may be arranged between the first shell body 12 and the second shell body 13. The flexible member 172 includes a first end connected to the fixed piece 171, and an opposite second end connected to an extending part 142c of a corresponding one of the connecting arms 142b.
As illustrated in
The magnetic system 15 includes a magnet assembly and a magnetic guiding module surrounding the magnet assembly. The magnet assembly includes a first magnet 151, a second magnet 152 and a pole member 153 arranged between the first magnet 151 and the second magnet 152. Magnetic directions of the first magnet 151 and the second magnet 152 are both parallel to the vibrating direction of the vibrating system 14. In addition, a polarity of an end of the first magnet 151 adjacent to the pole member 153 is same as that of an end of the second magnet 152 adjacent to the pole member 153, for example, each of which may be an N-pole end; and the other ends of the first magnet 151 and the second magnet 152 distant from the pole member 153 may both be S-pole ends, as illustrated in
In a preferred embodiment of the present disclosure, the first shell body 12 and the second shell body 13 are separate from each other, so as to facility an assembly of the magnetic system 15. The first shell body 12 includes two first sidewalls 121 opposite to each other along the vibrating direction of the vibrating system 14, and a first opening 122 penetrating through the two first sidewalls 121. The second shell body 13 includes two second sidewalls 132 opposite to each other along the vibrating direction of the vibrating system 14, and a second opening 132 penetrating through the two second sidewalls 132. The first opening 122 and the second opening 132 are both semi-close openings, which are opposite to each other and can cooperatively form a receiving space for receiving the magnetic guiding module.
In the present embodiment, the magnetic guiding module includes a first magnetic guiding member 154 arranged at the first shell body 12, and a second magnetic guiding member 155 arranged at the second shell body 13. For example, the first magnetic guiding member 154 includes two parallel first magnetic guiding walls 154a arranged in the first opening 122, and a first connecting wall 154b connected to the two first magnetic guiding walls 154a at edges of the two first magnetic guiding walls 154a distant from the second shell body 13. The second magnetic guiding member 155 includes two parallel second magnetic guiding walls 155a arranged in the second opening 132, and a second connecting wall 155b connected to the two second magnetic guiding walls 155a at edges of the two second magnetic guiding walls 155a distant from the first shell body 12. With this configuration, the first magnetic guiding member 154 and the second magnetic guiding member 155 may be assembled to form a ring-shaped magnetic guiding module for receiving the magnet assembly.
The magnet assembly is arranged in the magnetic guiding module, so that an end of the first magnet 151 and an end of the second magnet 152 abut on the first connecting wall 154b and the second connecting wall 155b respectively. Moreover, magnetic gaps are formed between the first magnetic guiding walls 154a and the magnet assembly, as well as between the second magnetic guiding walls 155a and the magnet assembly. The voice coil 143 can be arranged in the magnetic gaps and surround the pole member 153. In operation, the voice coil 143 may perform reciprocating motion in the magnetic gaps due to a magnetic force applied thereto, and thus driving the membrane 141 to vibrate and produce sound.
In other words, in the present embodiment, the magnetic guiding module can not only provide a magnetic guiding function for accumulating magnetic lines, but also function as fixing the magnet assembly. In other embodiments, the magnetic guiding module may be a one-piece assembly other than a separable assembly. For example, in an alternative embodiment, the magnetic guiding module includes a first magnetic guiding plate and a second magnetic guiding plate; the shell includes a first sidewall and a second sidewall opposite to each other, each of which includes a receiving hole for receiving a corresponding one of the first magnetic guiding plate and the second magnetic guiding plate; the magnet assembly is located in the shell between the first magnetic guiding plate and the second magnetic guiding plate. In addition, the magnet assembly may be fixed in the shell in other manner, as long as the voice coil is capable of performing reciprocating motion.
Furthermore, a length L of the first magnetic guiding wall 154a along the vibrating direction is greater than a depth D of the first opening 122 in the same direction, and a length l of the second magnet guiding wall 155a along the vibrating direction is less than a depth d of the seconding opening 132 in the same direction. In other words, the first magnetic guiding wall 154a extends into the second opening 132, which makes the magnetic guiding module is fixed more tightly.
Referring to
It is to be understood, however, that even though numerous characteristics and advantages of the present embodiment have been set forth in the foregoing description, together with details of the structures and functions of the embodiment, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
Number | Date | Country | Kind |
---|---|---|---|
201510815573.4 | Nov 2015 | CN | national |
2016-118610 | Jun 2016 | JP | national |