Invention Grant
US08050422B2 Audio test apparatus capable of decreasing noise influence in process of audio device testing and method thereof
失效
能够降低音频设备测试过程中噪声影响的音频测试设备及其方法
- Patent Title: Audio test apparatus capable of decreasing noise influence in process of audio device testing and method thereof
- Patent Title (中): 能够降低音频设备测试过程中噪声影响的音频测试设备及其方法
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Application No.: US12166332Application Date: 2008-07-02
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Publication No.: US08050422B2Publication Date: 2011-11-01
- Inventor: Yao Zhao , Hai-Sheng Li , Hua-Dong Cheng , Wen-Chuan Lian , Han-Che Wang , Kuan-Hong Hsieh
- Applicant: Yao Zhao , Hai-Sheng Li , Hua-Dong Cheng , Wen-Chuan Lian , Han-Che Wang , Kuan-Hong Hsieh
- Applicant Address: CN Shenzhen, Guangdong Province TW Tu-Cheng, New Taipei
- Assignee: Hong Fu Jin Precision Industry (ShenZhen) Co., Ltd.,Hon Hai Precision Industry Co., Ltd.
- Current Assignee: Hong Fu Jin Precision Industry (ShenZhen) Co., Ltd.,Hon Hai Precision Industry Co., Ltd.
- Current Assignee Address: CN Shenzhen, Guangdong Province TW Tu-Cheng, New Taipei
- Agency: Altis Law Group, Inc.
- Priority: CN200710075319 20070725
- Main IPC: H04B15/00
- IPC: H04B15/00

Abstract:
A audio test method for decreasing noise influence, which includes the following steps: obtaining analog signals; converting the analog signals into digital signals; intercepting digital signals of a first predetermined length and executing a first Fast Fourier Transform (FFT), then obtaining an first Fourier spectrum; recording the amplitudes of frequency values of the first Fourier spectrum; intercepting digital signals of a second predetermined length and executing the second FFT, then obtaining an second Fourier spectrum; recording the amplitudes of the frequency values belonging to odd points of the second frequency spectrum, which are the amplitudes of the noise composition; subtracting the amplitudes of the noise composition from the amplitudes of frequency values of the first Fourier spectrum and obtaining a frequency domain signals without noise composition; executing inverse Fast Fourier Transform (iFFT) for the frequency domain signals and obtaining time domain signals, testing each parameter of the time domain signals.
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