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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >A Design Methodology for Power Efficiency Optimization of High-Speed Equalized-Electrical I/O Architectures
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A Design Methodology for Power Efficiency Optimization of High-Speed Equalized-Electrical I/O Architectures

机译:高速均衡电气I / O架构的电源效率优化的设计方法

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摘要

Both power efficiency and per-channel data rates of high-speed input/output (I/O) links must be improved in order to support future inter-chip bandwidth demand. In order to scale data rates over band-limited channels, various types of equalization circuitry are used to compensate for frequency-dependent loss. However, this additional complexity introduces power and area costs, requiring selection of an appropriate I/O equalization architecture in order to comply with system power budgets. This paper presents a design flow for power optimization of high-speed electrical links at a given data rate, channel type, and process technology node, which couples statistical link analysis techniques with circuit power estimates based on normalized transistor parameters extracted with a constant current density methodology. The design framework selects the optimum equalization architecture, circuit logic style (CMOS versus current-mode logic), and transmit output swing for minimum I/O power. Analysis shows that low loss channel characteristics and minimal circuit complexity, together with scaling of transmitter output swing allows excellent power efficiency at high data rates.
机译:高速输入/输出(I / O)链路的功率效率和每通道数据速率都必须提高,以支持未来的芯片间带宽需求。为了在频带受限的信道上缩放数据速率,使用各种类型的均衡电路来补偿与频率有关的损耗。但是,这种额外的复杂性会带来功耗和面积成本,因此需要选择适当的I / O均衡架构才能符合系统功耗预算。本文提出了在给定的数据速率,通道类型和工艺技术节点下高速电气链路功率优化的设计流程,该流程将统计链路分析技术与电路功率估计结合在一起,该电路功率估计基于以恒定电流密度提取的归一化晶体管参数方法。该设计框架选择最佳的均衡架构,电路逻辑样式(CMOS与电流模式逻辑),以及发送输出摆幅,以实现最低的I / O功耗。分析表明,低损耗通道特性和最小的电路复杂度以及发射机输出摆幅的缩放比例可在高数据速率下实现出色的功率效率。

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