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SSTL I/O Standard based environment friendly energyl efficient ROM design on FPGA

机译:FPGA上基于SSTL I / O标准的环保节能高效ROM设计

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Stub Series Terminated Logic (SSTL) is an Input/output standard. It is used to match the impedance of line, port and device of our design under consideration. Therefore, selection of energy efficient SSTL I/O standard among available different class of SSTL logic family in FPGA, plays a vital role to achieve energy efficiency in design under test (DUT). Here, DUT is ROM. ROM is an integral part of processor. Therefore, energy efficient design of RAM is a building block of energy efficient processor. We are using Verilog hardware description language, Virtex-6 FPGA, and Xilinx ISE simulator. We are operating ROM with the highest operating frequency of 4 generation i7 processor to test the compatibility of this design with the latest hardware in use. When there is no demand of peak performance, then we can save 74.5% clock power, 75% signal power, and 30.83% I/O power by operating our device with 1GHz frequency in place of 4GHz. There is no change in clock power and signal power but SSTL2_H_DCI having 80.24% 83.38% 62.92% and 76.52% and 83.03% more I/O power consumption with respect to SSTL2_I, SST18_I, SSTL2_I_DCI, SSTL2_II, and SSTL15 respectively at 3.3GHz.
机译:存根系列终端逻辑(SSTL)是输入/输出标准。它用于匹配我们设计中的线路,端口和设备的阻抗。因此,在FPGA中可用的不同类别的SSTL逻辑系列中选择高能效的SSTL I / O标准,对于在被测设计(DUT)中实现能效起着至关重要的作用。在这里,DUT是ROM。 ROM是处理器不可或缺的一部分。因此,RAM的节能设计是节能处理器的基础。我们正在使用Verilog硬件描述语言,Virtex-6 FPGA和Xilinx ISE模拟器。我们正在以4代i7处理器的最高工作频率运行ROM,以测试该设计与使用中的最新硬件的兼容性。当不需要峰值性能时,通过以1GHz频率代替4GHz运行我们的设备,我们可以节省74.5%的时钟功率,75%的信号功率和30.83%的I / O功率。时钟功率和信号功率没有变化,但SSTL2_H_DCI在3.3GHz时分别具有比SSTL2_I,SST18_I,SSTL2_I_DCI,SSTL2_II和SSTL15高80.24%83.38%62.92%和76.52%和83.03%的I / O功耗。

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