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Asymmetric Slope Dual Mode Differential Logic Circuit for Compatibility of Low-Power and High-Speed Operations

机译:非对称斜率双模差分逻辑电路,兼容低功耗和高速运行

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Asymmetric Slope Dual Mode Differential Logic (ASDMDL) embodies high-speed dynamic and low-power static operations in a single design. Two-phase dual-rail logic signaling is used in a high-speed operation, where a logical evaluation is preceded by pre-charge, and it asserts one of the rails with an asymmetrically shortened rise transition to express a binary result. On the other hand, single-phase differential logic signaling eliminates pre-charge and leads to a low-power static operation. The operation mode is defined by the logic signaling styles, and no control signal is needed in the logic cell. The design of mixed CMOS and ASDMDL logic circuits can be automated with general logic synthesis and place-and-route techniques, since the physical ASDMDL cell is prepared in such a way to comply with a CMOS standard-cell design flow. A mixed ASDMDL/CMOS micro-processor in a 0.18-μm CMOS technology demonstrated 232 MHz operation, corresponding to 14% speed improvement over a full CMOS implementation. This was achieved by substituting ASDMDL cells for only 4% of the CMOS logic cells in data paths. The low-speed operation of ASDMDL at 100 MHz was nearly equivalent to that of CMOS. However, power consumption was reduced by 3% due to the use of ASDMDL complex logic cells. Area overhead was less than 4%.
机译:非对称斜率双模式差分逻辑(ASDMDL)在单一设计中体现了高速动态和低功耗静态操作。两相双轨逻辑信号用于高速操作,在逻辑运算之前先进行预充电,并使用不对称缩短的上升沿断言其中一个轨,以表示二进制结果。另一方面,单相差分逻辑信号消除了预充电并导致了低功率静态工作。操作模式由逻辑信令样式定义,并且逻辑单元中不需要控制信号。 CMOS和ASDMDL混合逻辑电路的设计可以使用常规逻辑综合和布局布线技术自动进行,因为物理ASDMDL单元是按照符合CMOS标准单元设计流程的方式进行准备的。采用0.18μmCMOS技术的混合ASDMDL / CMOS微处理器具有232 MHz的工作频率,与完整的CMOS实施相比,速度提高了14%。这是通过用ASDMDL单元替换数据路径中仅CMOS逻辑单元的4%来实现的。 ASDMDL在100 MHz下的低速运行几乎与CMOS相当。但是,由于使用了ASDMDL复杂逻辑单元,功耗降低了3%。区域开销小于4%。

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