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Design and Implementation of a Generic CORDIC Processor and its Application as a Waveform Generator

机译:通用CORDIC处理器的设计与实现及其在波形发生器中的应用

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Background: With the advent in hand held mobile computing devices, the demand for high performance compact processors is increasing. In this work a processor is designed with hardwired instructions for elementary mathematical functions like sine, cosine, sinh, cosh, division and multiplication. Methods: The processor employs Coordinate Rotation Digital Computer (CORDIC) algorithm for efficient hardware implementation of the above mentioned instructions. The parallel and pipelined implementation of the processor is carried out. The pipelined processor is configured as waveform generator. The novelty of this work is the integration of both trigonometric and hyperbolic operations in the same processor. Findings: ASIC Implementation is carried out with 40nm technology libraries. The parallel processor so designed operates at maximum frequency of 24.23 MHz and pipelined processor operates at maximum frequency of 261.36 MHz. Conclusion: This increase in operating frequency is achieved at the cost of increased silicon area and optimal power dissipation. The waveform generator generates sine, cosine waves of 3.5 MHz and sine hyperbolic, cosine hyperbolic waves and exponential waves of 7.9 MHz. The limitation being the waveform generator generates waves of constant frequency. Additional circuit is required in generating waves of different frequencies.
机译:背景技术:随着手持移动计算设备的出现,对高性能紧凑型处理器的需求正在增长。在这项工作中,设计了带有硬连线指令的处理器,用于基本数学功能,例如正弦,余弦,sinh,cosh,除法和乘法。方法:处理器采用坐标旋转数字计算机(CORDIC)算法来有效执行上述指令的硬件。执行处理器的并行和流水线实施。流水线处理器配置为波形发生器。这项工作的新颖之处在于将三角运算和双曲线运算集成在同一处理器中。发现:ASIC实现是使用40nm技术库进行的。如此设计的并行处理器以24.23 MHz的最大频率运行,而流水线处理器以261.36 MHz的最大频率运行。结论:工作频率的这种增加是以增加的硅面积和最佳功耗为代价的。波形发生器生成3.5 MHz的正弦,余弦波以及7.9 MHz的正弦双曲,余弦双曲和指数波。局限性在于波形发生器会产生恒定频率的波。在产生不同频率的波时需要附加电路。

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