首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 430 MHz, 280 mW Processor for the Conversion of Cartesian to Polar Coordinates in 0.25 $muhbox{m}$ CMOS
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A 430 MHz, 280 mW Processor for the Conversion of Cartesian to Polar Coordinates in 0.25 $muhbox{m}$ CMOS

机译:430 MHz,280 mW处理器,用于在0.25 $ muhbox {m} $ CMOS中将笛卡尔坐标转换为极坐标

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摘要

A novel architecture to realize the conversion of rectangular to polar coordinates is presented in this paper. The proposed technique for phase calculation uses a logarithmic number system and does not require any multiplications, but only a few small tables and a few multi-operand additions. The modulus is computed by a constant multiplier, a lookup table, and a full multiplier. A test chip has been designed and fabricated in 0.25 $mu hbox{m}$ CMOS. The realized circuit uses a novel high-speed modified double-pass transistor (DPL) full-adder cell to improve performance. The test chip includes two processors. The first one computes only the phase and reaches 482 MHz maximum clock frequency, with 0.37 mW/MHz power dissipation. The second processor computes the phase and modulus and works up to 430 MHz, with 0.64 mW/MHz. The experimental results compare favorably with previously reported architectures.
机译:本文提出了一种新颖的架构来实现直角坐标到极坐标的转换。提出的相位计算技术使用对数系统,不需要任何乘法,只需要几个小表和几个多操作数加法。模数由常数乘数,查找表和完全乘数计算得出。已经在0.25μmhbox {m} $ CMOS中设计和制造了一种测试芯片。所实现的电路使用新颖的高速修改型双通晶体管(DPL)全加法器单元来提高性能。测试芯片包括两个处理器。第一个仅计算相位并达到482 MHz的最大时钟频率,功耗为0.37 mW / MHz。第二个处理器计算相位和模数,并在430 MHz下工作,频率为0.64 mW / MHz。实验结果与以前报道的体系结构相比具有优势。

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