高速系统摆速标定方法

Arsen Hekimyan, G. Travajyan, Karen Melikyan
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引用次数: 0

摘要

提出了高速系统的摆速标定方法。在高速系统中,驱动器输出转换率的变化非常显著。这种变化影响整个系统的稳定性和定时关闭。所提出的方法校准系统输出的摆率,以提供相等的上升/下降摆率,以提高性能并避免功能故障。系统的转换率随制程电压温度的变化而变化,固定一个转换率编码可能会导致转换率失配。在许多系统中,如双数据速率(DDR),摆率不匹配是至关重要的。由于DDR信号适用于SDRAM(片对片),因此摆率不匹配会导致传输线后的功能失效。所提出的摆率校准方法也降低了TX抖动。修正了转换率失配对TX信号产生的码间干扰(ISI)影响,减少了信号的低抖动。所提出的架构可用于数据速率为4Gbps或更高的高速系统。现代高速串行链路需要摆率校准,提出的方法可用于多种标准的特殊输入/输出电路,如(DDR),通用串行总线(USB)和外围组件互连(PCI)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Slew Rate Calibration Method for High Speed Systems
The slew rate calibration method for high speed systems is presented. In high-speed systems driver output slew rates variation becomes significant. This variation impact on overall system stability and timing closers. The proposed method calibrates slew rate of output in systems to provide equals rise/fall slew rates to improve performance and avoid functional fails. Slew rate of system changes over process voltage temperature (PVT) and having fixed one slew rate code may cause slew rate mismatch. The slew rate mismatch is critical in many systems such as Double Data Rate (DDR). As DDR signal applies to SDRAM (chip to chip) so slew rate mismatch can cause functional fail after transmission line. The proposed slew rate calibration method also decreases TX jitter. Fixing slew rate mismatch inter-symbol interference (ISI) effect on TX signal decrease which causes low jitter. The proposed architecture can be used in high speed systems where data rates are 4Gbps or higher. Modern high-speed serial links require slew rate calibration and proposed method can be used in special input/output circuits of several standards such as (DDR), Universal Serial Bus (USB) and Peripheral Component Interconnect (PCI).
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