Many aspects of the present invention can be better understood with reference to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present invention. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views:
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The first sub-shell 24 includes a round chamber 245, a first rectangular chamber 246, a first channel 242 and a first pyramid chamber 243. The round chamber 245 is formed between a base wall 244 of the first sub-shell 24 and a first annular wall 248 perpendicularly extending from a middle portion of the base wall 244. The first annular wall 248 defines a cutout 248a therein, whilst a linear plate 242a and a serpentine plate 242b respectively extend from two sides of the cutout 248a towards a sidewall 247 of the first sub-shell 24. The serpentine plate 242b has a rectangular portion 242c disposed adjacent to the round chamber 245 and a linear portion 242d parallel to the linear plate 242a. The first rectangular chamber 246 is formed between the linear plate 242a and the rectangular portion 242c of the serpentine plate 242b, and communicates with the round chamber 245 via the cutout 248a. The first channel 242 is formed between the linear plate 242a and the linear portion 242d of the serpentine plate 242b. Two slant plates 249 respectively extend from distal ends of the linear plate 242a and the serpentine plate 242b towards the sidewall 247 of the first sub-shell 24. A distance between the slant plates 249 gradually increases from the distal ends of the linear plate 242a and the serpentine plate 242b towards the sidewall 247 of the first sub-shell 24, so that the first pyramid chamber 243 is formed therebetween.
The second sub-shell 25 includes a round hole 255, a second rectangular chamber 256, a second channel 252 and a second pyramid chamber 253. The second rectangular chamber 256, the second channel 252 and the second pyramid chamber 253 have substantially similar configurations with the respective first rectangular chamber 246, first channel 242 and first pyramid chamber 243 of the first sub-shell 24. The round hole 255 extends through a base wall 254 of the second sub-shell 25. A locking groove 255a is defined in the base wall 254 of the second sub-shell 25 and communicates with the round hole 255 at an end thereof. A second annular wall 258 extends from a front side of the base wall 254 of the second sub-shell 25. The second annular wall 258 surrounds the round hole 255 and cooperates with the round hole 255 to accommodate the loudspeaker 22 therein. The loudspeaker 22 has hermetic seal with the second annular wall 258, whilst the second annular wall 258 isolates an inner space thereof from the second rectangular chamber 256 so as to prevent sound waves generated by the loudspeaker 22 from leaking from the second annular wall 258 and the round hole 255 of the second sub-shell 25.
Moreover, the second sub-shell 25 defines a plurality of vent holes 257a through a sidewall 257 thereof so as to communicate the second channel 252 with the surrounding environment. Alternatively, the vent holes 257a may be defined in the sidewall 247 of the first sub-shell 24. The first sub-shell 24 is hermetically attached to the second sub-shell 25 via screws, adhesives or other appropriate means. A round chest is formed between the second annular wall 258 and the round chamber 245, whilst a rectangular chest is formed between the first and second rectangular chambers 246, 256, communicating with the round chest via the cutout 248a. The round chest and the rectangular chest cooperatively form an irregular-shaped front acoustic chamber 241 for the loudspeaker 22. A communicating channel is enclosed by the first and second channels 242, 252, and a pyramid chest is enclosed by the first and second pyramid chambers 243, 253. The front acoustic chamber 241, the communicating channel and the pyramid chest cooperatively form a hermetic Helmholtz resonance chamber. A hermetic surrounding chamber 210 is formed between sidewalls of the shell 21 and outer walls of the Helmholtz resonance chamber. The sound waves generated by the loudspeaker 22 drive the air in the Helmholtz resonance chamber to resonate with the Helmholtz resonance chamber at a natural frequency thereof and then diffuse towards the surrounding environment via the vent holes 257a.
The loudspeaker 22 defines a plurality of front tone holes 221 facing towards the first round chamber 245 of the first sub-shell 24 and a plurality of rear tone holes 222 opposite to the front tone holes 221. The loudspeaker 22 electrically connects with the circuit board 15 so as to receive electrical signals from the circuit board 15 and convert the electric signals into acoustic signals. The acoustic signals drive a diaphragm (not shown) of the loudspeaker 22 to oscillate so as to generate sound waves. The sound waves are transmitted from the loudspeaker 22 via the front and rear tone holes 222. The circuit board 15 and the speaker section 13 of the casing 10 respectively define a plurality of through holes 16, 14 corresponding to the rear tone holes 222 of the loudspeaker 22. The loudspeaker 22 extends an ear 223 from a side thereof. The ear 223 is received in the locking groove 255a of the second sub-shell 25 so as to prevent the loudspeaker 22 from rotating in the round hole 255 of the second sub-shell 25.
The hollow frame 23 is sandwiched between a rear side of the base wall 254 of the second sub-shell 25 and the circuit board 15. The hollow frame 23 can be made of anti-vibration materials such as rubber, or glass fiber cloth and has a similar periphery configuration to the periphery configuration of the second sub-shell 25 when viewed from on top. The hollow frame 23 is preferably designed to satisfy a larger volume enclosed therein and not decrease the anti-vibration capability thereof.
A rear acoustic chamber 231 for the loudspeaker 22 is formed between a front side of the circuit board 15, an inner wall of the hollow frame 23 and the rear side of the base wall 254 of the second sub-shell 25. The sound waves in the rear acoustic chamber 231 diffuse towards the surrounding environment via the through holes 16, 14 of the circuit board 15 and the speaker section 13 of the casing 10. Two layers of adhesive (not shown) are disposed between front and rear sides of the hollow frame 23 and respective portions of the front side of circuit board 15 and of the rear side of the base wall 254 of the second sub-shell 25 so that the hollow frame 23 has hermetic seal with the circuit board 15 and the second sub-shell 25. Thus, the sound waves generated by the loudspeaker 22 can not leak from sides of the rear acoustic chamber 231. Consequently, the sound waves in the rear acoustic chamber 231 diffuse towards the surrounding environment via the through holes 16, 14 of the circuit board 15 and the speaker section 13 of the casing 10 of the mobile phone. This prevents the sound waves in the front and rear acoustic chambers 241, 231 of the speaker set 20 from interfering with each other in the casing 10 of the mobile phone and thereby improves the quality of the sound made by the mobile phone. In addition, the hollow frame 23 weakens the vibration caused by the sound waves transferring towards the circuit board 15, which prevents the quality of the sound from being impaired by the vibration.
Referring to
The present speaker set 20/30 is capable of being used in different kinds of portable electronic devices, such as personal digital assistants (PDAs), CD players, MP3s and MP4s, and more preferably in a mobile phone having a hidden antenna 17 therein. The antenna 17 is arranged at a front side of first-sub shell 24/34 and is spaced more than 7 mm from the circuit board 15 of the mobile phone so as to prevent electromagnetic interference between the circuit board 15 and the antenna 17. The speaker set 20/30 is positioned in the space formed between the antenna 17 and the circuit board 15 so as to save space in the mobile phone. In addition, the hollow frame 23/33 prevents the quality of the sound from being impaired by the vibration between the loudspeaker 22/32 and the circuit board 15. Consequently, the mobile phone is compact in size as well as having good sound quality.
It is to be understood, however, that even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of portions 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 |
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200610060276.4 | Apr 2006 | CN | national |