Title :
Fifth derivative Gaussian pulse generator for UWB Breast Cancer Detection System
Author :
Ignacio Barboza, Stelvio Henrique ; Amaya Palacio, Jose Alejandro ; Pontes, Elvis ; Takeo Kofuji, Sergio
Author_Institution :
Electr. Eng. Dept., Univ. of Sao Paulo, Sao Paulo, Brazil
Abstract :
Design and test results of a fabricated integrated circuit Fifth-Order Derivative Gaussian Pulse Generator - FODGPG in a standard IBM 0.18 μm CMOS technology is presented. Is proposed a FODGPG that uses: (a) static inverters based delay circuit; (b) Phase Detector with n-dynamic block, n-Latch and static inverter and (c) NMOS Pulse Shaping circuit designed for high speed. The Transistor Dimensions were defined in order to obtain adequate characteristic of a fifth derivative Gaussian Pulse considering required specifications of Breast Cancer Detection System. Full custom layout with minimal dimensions was implemented. Five different fabricated IC´s were tested and values of power supply, peak to peak voltage and width pulse were measured. The measured power supply was 244 μW, output pulse peak to peak amplitude was 115.2 mV and pulse width of 407.8 ps with a sinusoidal input signal of 100 MHz. The Pulse Generator circuit was tested resulting in Power Spectral Density with bandwidth of 0.6 GHz to 7.8 GHz that is adequate for UWB applications in Breast Cancer Detection.
Keywords :
Gaussian processes; biomedical communication; cancer; delay circuits; pulse generators; ultra wideband communication; FODGPG; NMOS pulse shaping circuit; UWB breast cancer detection system; bandwidth 0.6 GHz to 7.8 GHz; delay circuit; fifth derivative Gaussian pulse generator; frequency 100 MHz; n-dynamic block; n-latch inverter; phase detector; power 244 muW; power spectral density; pulse generator circuit; standard IBM 0.18 μm CMOS technology; static inverter; static inverters; voltage 115.2 mV; Breast cancer; CMOS integrated circuits; Detectors; Microwave FET integrated circuits; Microwave circuits; Pulse generation; Breast Cancer Detection; CMOS; Gaussian pulse generator; UWB;
Conference_Titel :
Ultra-WideBand (ICUWB), 2014 IEEE International Conference on
Conference_Location :
Paris
DOI :
10.1109/ICUWB.2014.6958991