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基于FPGA的音频编解码芯片控制器设计.docx


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基于FPGA的音频编解码芯片控制器设计.docx基于FPGA的音频编解码芯片控制器设计
摘要
现如今随着可编程逻辑器件及相关技术的不断发展和完善,其技术在现代 电子技术领域表现出的明显技术领先性,具有传统方法无可比拟的优越性。近 儿年,嵌入式数字音频产品受到越来越多消费者的青睐。在MP3、手机等电 子产品屮,音频处理功能已成为不可或缺的重耍组成部分,而高质量的音效是 当前发展的重要趋势。
数字语音集成电路与嵌入式微处理器相结合,既实现了系统的小型化、低 功耗,乂降低了产品开发成本,提高了设计的灵活性,具有体积小、扩展方便 等诸多特点,具有广泛的发展前景。
本设计基于SOPC技术,利用Verilog HDL硬件描述语言开发的基于FPGA 的音频编解码芯片控制器,以实现对音频编解码芯片WM8731的控制。并根 据Verilog HDL可移植性和不依赖器件的特点。经过适当的修改,该控制器可 以移植到各类FPGA中,以控制兼容FC和內总线的音频编解码芯片。避免 了重复开发,这样既缩短了设计周期乂降低了设计成本,可大大提高设计的效 率。系统在功能扩展上具有极大的潜力,有很好的应用前景和科研价值。
关键词:WM8731, FPGA, IP总线,音频控制器
The design of audio codec chip controller based by FPGA
Abstract
Nowadays, with the programmable logic devices and related technologies continue to develop and improve its technology in the field of modern electronic technology was demonstrated technology leadership, has incomparable superiority of traditional methods .In recent years, embedded digital audio products are more and more consumers of all ages. In MP3, mobile phones and other electronic products, audio processing features have become an indispensable part of the current development of high-quality audio is an important trend・
Digital voice integrated circuits and embedded microprocessors, which not only realized the system's small size, low power consumption, and reduced product development costs and improve design flexibility, small size, easy expansion, and many other features, a broad prospects for development.
The design is based on SOPC technology, the use of Verilog HDL hardware description language developed FPGA-based audio codec chip controller, to achieve the WM8731 audio codec chip control. Verilog HDL based on portability and does not rely on the device characteristics. After appropriate modifications, the controller can be ported to a variety of FPGA, to control I2C and I2S bus compatible audio codec chip. Avoid duplication of development, then it will shorten the design cycle and reducing design cost, can greatly improve design efficiency. Extensions on the system has great potenti

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  • 页数65
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  • 时间2020-12-09