A hybrid adaptive CORDIC in 65nm SOTB CMOS process
Trong-Thuc Hoang, Duc-Hung Le, Hong-Thu Nguyen, Xuan-Thuan Nguyen, Cong‐Kha Pham · 2016
In this paper, a hybird adaptive Coordinate Rotation Digital Computer (HA-CORDIC) has implemented in 65nm Silicon On Thin Buried oxide (SOTB) CMOS technology. In the HA-CORDIC implementation, the adaptive algorithm is utilized for reducing the iteration of CORDIC algorithm. In comparison with other floating-point CORDIC designs, the latency of our proposed scheme is lower. It spends only 12, 20, and 26 clocks cycles in the best, average, and worst case, respectively. The HA-CORDIC exploits some design techniques such as resource sharing, pipeline, and parallel processing to achieve low-resource and low-latency. In 65nm SOTB CMOS technology, this design is able to operate at 50 MHz frequency with 0.5 V supply voltage, 0.36 mA current, and 0.058 mm2 area. Its power consumption of HA-CORDIC is 0.251 mW, about three times lower than the one in conventional CMOS technology. Its leakage current is about 0.492 μA if the supply voltage VDD is 0.4 V and the bias voltage VBB is -1.5 V. This leakage current is about four times lower than that of HA-CORDIC implementing in conventional CMOS.