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A Simple Clockless Network-on-Chip for a Commercial Audio DSP Chip

机译:用于商用音频DSP芯片的简单无缝​​线上芯片

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We design a very small, packet-switched, clockless network-on-chip (NoC) as a replacement for the existing crossbar-based communication infrastructure in a commercial audio DSP chip. Both solutions are laid out in a 0.18 mum process, and compared in terms of area, power consumption and routing complexity. Even though the NoC turns out to be larger and more power consuming than the existing crossbar implementation, it still accounts for less than 1% of the total chip area and power consumption, and is justified by a long list of advantages: the NoC is modular, scalable and in contrast to the existing crossbar, it allows all blocks to communicate. The total wire length is decreased by 22% which eases the layout process and makes the design less prone to routing congestion. Not least, the communicating blocks are decoupled by means of the NoC, providing a globally-asynchronous, locally-synchronous (GALS) system where independent clocking of the individual blocks is enabled. This study shows that NoCs are feasible even for small systems
机译:我们设计了一个非常小,数据包切换,无线无线网络(NOC),作为商业音频DSP芯片中现有的基于横杆的通信基础设施的替代品。两种解决方案都在0.18毫米工艺中布置,并在面积,功耗和路由复杂方面进行比较。尽管NOC比现有的横杆实现更大,并且功耗更大,但它仍然占芯片面积的少于1%和功耗,并且通过长时间的优势列表:NOC是模块化的,可扩展,与现有横杆相比,它允许所有块进行通信。总线长度减少22%,这缓解了布局过程,并使设计不容易易于布置拥塞。并非最不重要的是,通信块通过NOC解耦,提供全同步,本地同步(GALS)系统,其中能够独立地时钟。这项研究表明,即使对于小型系统,NOC也可行

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