首页> 外文会议>VLSI, 2009. ISVLSI '09 >Transition Inversion Based Low Power Data Coding Scheme for Synchronous Serial Communication
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Transition Inversion Based Low Power Data Coding Scheme for Synchronous Serial Communication

机译:同步串行通信的基于转换反转的低功耗数据编码方案

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Reducing off-chip bus power consumption has become one of the key issues for low power system design. Although methods have been proposed to reduce the power dissipated in parallel buses, these techniques do not apply to serial communication since they work on consecutive data words. The data line in synchronous serial communication is a major source of power dissipation, apart from the clock line. The clock line cannot be modified due to the requirements of data recovery. This work outlines a novel transition inversion based data coding protocol by which these transitions on the data line can be reduced for synchronous serial buses like JTAG, SPI, I2C etc. Simulation results show up to 31.9% reduction in transitions, with negligible performance loss. Analysis on the utility of the proposed technique for error detection shows that the technique can be used instead of the parity bit technique since both are found to have the same average error detection capability.
机译:降低片外总线功耗已成为低功耗系统设计的关键问题之一。尽管已经提出了减少并行总线中功耗的方法,但是这些技术不适用于串行通信,因为它们适用于连续的数据字。除了时钟线以外,同步串行通信中的数据线是功耗的主要来源。由于数据恢复的要求,无法修改时钟线。这项工作概述了一种新颖的基于过渡反转的数据编码协议,通过该协议,可以减少JTAG,SPI,I2C等同步串行总线在数据线上的这些过渡。仿真结果表明,过渡减少多达31.9%,而性能损失可忽略不计。对所提出的错误检测技术的效用进行的分析表明,由于发现两者具有相同的平均错误检测能力,因此可以代替奇偶校验位技术来使用该技术。

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