Nayereh Ghobadi

M.Sc. Student

 

n.ghobadi@ece.ut.ac.ir

Tel: (+98 21) 8208-4359

Group: Device and Digital Group

Thesis Title: Investigation and Modeling of Reliability Challenges and Gate Leakage Currents of the Nano-Devices

Personal

  • Born in 1983, Tehran, Iran.
  • Single.

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Education

  • 2006 to present: M.Sc. Student in Electrical and Electronics Engineering, University of Tehran, Tehran, Iran, GPA (up to now) 18.2/20.00.
 
  • 2001 to 2005: B.Sc. Degree in Electrical and Electronics Engineering, Sharif University of technology, Tehran, Iran, GPA 16.73/20.

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Scientific Experiences

  • University of Tehran:

    •  M.Sc. project: Investigation and Modeling of Reliability Challenges and Gate Leakage Currents of the Nano-Devices, under the supervision of Prof. A. Afzali-Kusha (In progress).

o   Investigation and modeling of the Gate Induced Drain Leakage (GIDL) current in DMGD SOI MOSFET structure, under the supervision of Prof. A. Afzali-Kusha.

o   Modifying the MIPS Multi-Cycle Microprocessor to Perform CORDIC Calculations with Verilog using ModelSim simulator and Synplify and Quartus synthesis tools, under the supervision of Prof. S. M. Fakhraie.

o   Design and simulation of subthreshold 4-Bit Carry-Ripple and Modified Carry Look-ahead Adders using HSpice circuit simulator, under the supervision of Prof. A. Afzali-Kusha.

o   Modeling and simulation of the Threshold Voltage of the DMGD Single-Layer SSOI MOSFET, under the supervision of Prof. A. Afzali-Kusha.

  • Sharif University of Technology:

o   B.Sc. project: Artificial Neural Network Implementation on FPGA with VHDL using ISE software and ModelSim simulator.

o   Designing software and hardware for connecting keyboard to PC parallel port using Interrupt.

o   Designing the hardware and developing the software (with C51) of a Temperature Monitoring System using T89C51AC2 microcontroller, Temperature sensor, LCD, keyboard and AC heater.

o   Designing high frequency amplifiers with bipolar and CMOS technology that has a 100dB open loop gain and 10 MHZ unity gain frequency with 60 phase margin when used as a unity gain buffer.

o   Through study in discrete time signal processing and accomplishing several signal processing projects applying MATLAB for DSP course.

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Professional Experiences

·         Parman Company (Winter 2005-Present):

    • Working as a software team programmer and Contributing in the Design, development and test of embedded software of:
      • Compact STM-1: Compact Fiber optic transceiver for transporting 24 E1 channels over 155 Mbit/s STM-1 Frame based on ITU-T G.783, G.784 recommendations.
      • Ethernet Over SDH: Design and Implementation of Ethernet over SDH embedded software with capability of transporting up to 8 10/100 MB Ethernet Connection via 155 Mbit/s STM-1 Frame.
      • Modular STM-1 System with Ethernet Capability: A full Modular SDH System with capability of supporting 63 E1’s and eight 10/100 MB/s Ethernet Port with 4 Optical/Electrical STM-1 Ports. It has full Protection Modes, SNMP Enabled Remote management, a Real-Time OS with more than 25 concurrent Real-Time Threads, …
    • Design and implementation of AVR Microcontroller software to drive a Touch Screen LCD for monitoring STM-1 system.
    • Design and implementation of GSM Network Quality monitoring software using Visual C++.

 

  • Pars Research Center (Fall 2005)

o       Designing and developing the hardware of a Boost Converter as a part of Dual Band Jammer project.

o       Designing the hardware and developing the software (with C51) of a RF & IF Frequency Synthesizer as a part of Narrowband Repeater project.

o       Designing the hardware and developing the software (with C51) of an AGC as a part of Narrowband Repeater project.

·         Niroo Research Institute (NRI) for internship (Summer 2004)

o       Research  in design  of  a  MC base  system  (Atmega128)  to  communicate with PC through USB  port .   

o       Studying the specifications of digital 3phase meters and the relationship between the number of tariffs and the number of registered maximum demands, and their intervals.

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Computer Skills

  • Programming skills in Basic, Pascal, C/C++, and Visual C++.

  • Analyzing analog and digital circuits using PSpice, Orcad and HSpice.

  • Digital design with VHDL and Verilog hardware description languages using Xilinx ISE tool and ModelSim Simulator.

  • Designing an Embedded System using Real Time Rational Rose Programming Environment.

  • GNU tools: like gcc, gdb, g++, insight, cygwin…

  • Microprocessors and Microcontrollers programming using Assembly (8088, 8086, 8051), C51 and CodeVisionAVR.

  • Designing PCB using Protel DXP and Orcad.

  • Modeling and analyzing Industrial electronics, Control systems and Discrete signal processing using MATLAB and MATLAB SIMULINK.

  • Familiar with Synplify and Leonardo synthesis tools.

  • Familiar with Device and Process Simulator.

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