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The proposed model of pulse code modulation encoder for voice frequencies

机译:语音频率脉冲编码调制编码器的建议模型

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In this paper, we have developed a hardware-based model of pulse code modulation (PCM) system for voice frequencies. Firstly, we have constructed sample and hold circuit using triggered semiconductor switch (e.g., MOSFET), which is capable of sampling voice signals at 8 kHz according to Nyquist theory. Then an Analogue to Digital Converter (ADC) Integrated Circuit (IC) is introduced to quantize and to digitize of the output of the sample and hold as pulse amplitude modulation (PAM). The converted outputs are 8-bit digital parallel value per sample at a frequency of 8 kHz. Finally, a parallel to serial converter logic is constructed which remains the voice frequency at the accurate time without any delay. The principle feature of this PCM system is that during a final interval of time, it makes a waveform into 8 bit serial code word. An 8-bit shift register with decade counter and flip-flop based logic are providing to this wave-from one after another without any interruptions of the sequences.
机译:在本文中,我们开发了一种基于硬件的语音频率脉冲编码调制(PCM)系统模型。首先,我们使用触发式半导体开关(例如MOSFET)构造了采样和保持电路,根据奈奎斯特理论,该开关能够以8 kHz的频率采样语音信号。然后,引入模数转换器(ADC)集成电路(IC)以量化和数字化样本输出,并保持为脉冲幅度调制(PAM)。转换后的输出是每个采样频率为8 kHz的8位数字并行值。最后,构建了一个并行到串行转换器的逻辑,该逻辑在准确的时间保持语音频率没有任何延迟。该PCM系统的原理特征是,在最后的时间间隔内,它将波形转换为8位串行代码字。一个具有十进制计数器和基于触发器的逻辑的8位移位寄存器从一个接一个地提供给该波形,而不会中断任何序列。

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