利用Cadence工具设计45nm的QAM

Ravi Hosamani, Govindaraj Tonape, Harshavardhana Mannur, Basavaraj Neelagund
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引用次数: 1

摘要

在无线通信中,低功率调制器因其效率高而得到广泛应用。正交调幅(QAM)是一种广泛应用于高数据速率传输的调制技术。本文对32位和64位QAM调制器的功率、面积等参数进行了分析。在该方法中,使用查找表来存储使用传统方法生成的余弦和正弦波数据。为了产生输出信号,在输入数据流上选择存储的数据。对该调制器进行了仿真和合成,并在Cadence的属工具中对180nm、90nm和45nm的调制器结果进行了比较。所提出的模型是在Verilog代码中使用cadence设计和开发的。64qam调制器的布局是在cadence创新的45纳米技术工具中进行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of QAM in 45nm Using Cadence Tool
For wireless communication, low-power modulators are Widely used because of their efficiency. Quadrature Amplitude Modulation (QAM) is one of the popularly employed modulation Techniques for high data rate transmission. This paper describes the analysis of the parameters like power and area of 32bit and 64bit QAM modulators. In this proposed approach, a Lookup table is used to store cosine and sine wave data generated using traditional methods. To generate the output signal, the stored data is chosen on the input data stream. The modulator is simulated and synthesized, and results are compared in 180nm, 90nm, and 45nm in Cadence’s genus tool. The proposed model is designed and developed in Verilog code using cadence. The layout of the 64qam modulator is carried out in the cadence’s innovus tools with 45nm technology.
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