IEICE Transactions on Electronics
Online ISSN : 1745-1353
Print ISSN : 0916-8524
Special Section on Solid-State Circuit Design — Architecture, Circuit, Device and Design Methodology
A High-Throughput Low-Energy Arithmetic Processor
Hong-Thu NGUYENXuan-Thuan NGUYENCong-Kha PHAM
Author information
Keywords: CORDIC, fixed-point, CMOS, 180 nm
JOURNAL RESTRICTED ACCESS

2018 Volume E101.C Issue 4 Pages 281-284

Details
Abstract

In this paper, the hardware architecture of a CORDIC-based Arithmetic Processor utilizing both angle recoding (ARD) CORDIC algorithm and scaling-free (SCFE) CORDIC algorithm is proposed and implemented in 180 nm CMOS technology. The arithmetic processor is capable of calculating the sine, cosine, sine hyperbolic, cosine hyperbolic, and multiplication function. The experimental results prove that the design is able to work at 100 MHz frequency and requires 12.96 mW power consumption. In comparison with some previous work, the design can be seen as a good choice for high-throughput low-energy applications.

Content from these authors
© 2018 The Institute of Electronics, Information and Communication Engineers
Previous article Next article
feedback
Top