The above and other objects, features and advantages of the present invention will be more apparent from the following detailed description in conjunction with the accompanying drawings, in which:
Hereinafter, preferred embodiments of the present invention are described in detail with reference to the accompanying drawings. The same reference symbols identify the same or corresponding elements in the drawings. Some constructions or processes known in the art may be not described to avoid obscuring the invention in unnecessary detail.
During a call using a mobile phone, when a voice signal is absent, a background noise in an audio signal is perceived as being loud; and when a voice signal is present, the background noise is mitigated by the voice signal. To avoid this, a noise suppression effect of the low-pass filter 210 is raised when a voice signal is absent, and is lowered so as not to aggravate signal distortion when a voice signal is present.
The low-pass filter 210 includes a resistor 213 connected to a capacitor 217 and a varactor 215 connected in parallel to ground. The varactor 215 acts as a variable capacitor, and the capacitance thereof may be controlled by a controller (not shown). Hence, the noise suppression effect of the low-pass filter 210 can be controlled by adjusting the capacitance of the varactor 215.
When a voice signal is present, the capacitance of the varactor 215 is lowered so as to reduce distortion of the voice signal; and when a voice signal is absent, the noise suppression effect is raised by increasing the capacitance of the varactor 215.
The low-pass filter 310 includes a resistor 313 connected to a first capacitor 317 and a second capacitor 315 connected in parallel, wherein the first capacitor 317 is grounded and the second capacitor 315 is grounded via a switch 314.
The noise suppression effect of the low-pass filter 310 can be controlled through adjustment of the capacitance of the low-pass filter 310 by turning on and off the switch 314 depending upon absence and presence of a voice signal.
When a voice signal is present, the capacitance of the low-pass filter 310 is lowered by turning off the switch 314 so as to reduce distortion of the voice signal; and when a voice signal is absent, the noise suppression effect is raised through increasing the capacitance of the low-pass filter 310 by turning on the switch 314.
The noise suppression circuit of
As apparent from the above description, the present invention provides a noise suppression circuit for a mobile phone wherein characteristics of a low-pass filter are adjusted according to usage conditions. Thereby white noise during an ongoing call can be effectively suppressed. Further, in generation of an internal acoustic signal such as key tones, the capacitance of the low-pass filter is increased immediately before activation of a codec, and is restored back to the previous capacitance immediately before reproduction of the acoustic signal, thereby removing a popup noise at the time of codec activation.
While preferred embodiments of the present invention have been shown and described in this specification, it will be understood by those skilled in the art that various changes or modifications of the embodiments are possible without departing from the spirit and scope of the invention as defined by the appended claims.
| Number | Date | Country | Kind |
|---|---|---|---|
| 10-2006-0080420 | Aug 2006 | KR | national |