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Shilpi Sharma 469-951-7150 [email protected] OBJECTIVE To obtain a full time position as an RF and Microwave Design Engineer starting summer of 2017. EDUCTION Master of Science in Electrical Engineering Anticipated May 2017 The University of Texas at Dallas GPA: 3.889 Bachelor of Engineering in Electronics Engineering May 2015 Birla Institute of Technology, Mesra GPA: 8.05/10 RELEVANT COURSES RF & Microwave Circuits RF & Microwave Systems Engineering Fields and Waves RF Power Amplifiers Microwave Design and Measurements Antenna Engineering and Wave Propagation RF & Microwave Amplifier Design Wireless Communications Lab RF Integrated Circuit Design Computational Electromagnetics COURSE PROJECTS AND LABS RF and Microwave Design and Measurements Design and analysis of nine RF circuits including microstip resonator, power divider, coupler, butterworth & chebychev filter and amplifier using AWR Microwave office (MWO) and AWR Axiem electromagnetic solver. easurement of designed RF circuits by using a vector network analyzer (VNA), RF power meter, spectrum analyzer. RF and Microwave Systems Design and simulation of system-level receiver and transmitter performance with AWR Virtual System Simulator (VSS) for a ioT based smart traffic system. Simulated for gain, cascaded noise figure, P1dB, IP3, PAE and yield analysis. Power Amplifier Design of Class A, B and C power amplifier with power combining technique by performing DC-IV analysis RF Amplifer Design of a two stage low noise amplifier LNA using NEC710 transistors for given specification. Antenna Engineering and Wave Propagation Design of Tapered Microstrip slot antenna in HFSS, milled the design and measurement of design in anechoic chamber. Wireless Communication Lab Physical Layer simulation of ERP IEEE 802.11g and design of Orthogonal Frequency Division Multiplexing TX and Rx Modulation and Demodulation (BPSK, QPSK, QAM, PAM), channel estimation and equalization TECHNICAL SKILLS Extensive experience on following lab equipment and software tools: Equipment: RF Power Meter Oscilloscope Spectrum Analyzer NI USRP Vector Network Analyzer Signal Generator Software Tools: AWR-MWO-Axiem-VSS Ansys-HFSS LABVIEW MATLAB Cadence Virtuoso FEKO ADS-Momentum Microsoft Office OS & Languages Linux (Ubuntu) C VHDL EMPLOYMENT EXPERIENCE RF Antenna and System Research Assistant January 2016 Present Developed a commercial wireless Laguerre-Gaussian beam solution to achieve increased data rate transmission for 5G standards using spatial multiplexing National Instruments Technical Intern (AWR Group) May 2016 August 2016 Created real-world application examples for designers. Created example for using HFSS connected for AWR. Contributed by designing new generation of 2layer board and added 5 new elements on 3D FEM parameterized editor cells. ACHIEVEMENTS Paper accepted Experimental Demonstration of a Dual-channel E-band Communication Link using Commercial Impulse Radios with Orbital Angular Momentum Multiplexing’ for IEEE Radio Wireless week 2017. Poster presentation on ‘Spiral Phase Plate for Generation of mm-wave Laguerre Gaussian Beams’ at MTTS Texas Symposium

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Shilpi Sharma 469-951-7150

[email protected] OBJECTIVE To obtain a full time position as an RF and Microwave Design Engineer starting summer of 2017.

EDUCTION Master of Science in Electrical Engineering Anticipated May 2017 The University of Texas at Dallas GPA: 3.889

Bachelor of Engineering in Electronics Engineering May 2015 Birla Institute of Technology, Mesra GPA: 8.05/10

RELEVANT COURSES RF & Microwave Circuits RF & Microwave Systems Engineering Fields and Waves RF Power Amplifiers Microwave Design and Measurements Antenna Engineering and Wave Propagation RF & Microwave Amplifier Design Wireless Communications Lab RF Integrated Circuit Design Computational Electromagnetics

COURSE PROJECTS AND LABS RF and Microwave Design and Measurements

Design and analysis of nine RF circuits including microstip resonator, power divider, coupler, butterworth & chebychev

filter and amplifier using AWR Microwave office (MWO) and AWR Axiem electromagnetic solver.

easurement of designed RF circuits by using a vector network analyzer (VNA), RF power meter, spectrum analyzer.

RF and Microwave Systems Design and simulation of system-level receiver and transmitter performance with AWR Virtual System Simulator (VSS)

for a ioT based smart traffic system. Simulated for gain, cascaded noise figure, P1dB, IP3, PAE and yield analysis.

Power Amplifier

Design of Class A, B and C power amplifier with power combining technique by performing DC-IV analysis

RF Amplifer

Design of a two stage low noise amplifier LNA using NEC710 transistors for given specification.

Antenna Engineering and Wave Propagation Design of Tapered Microstrip slot antenna in HFSS, milled the design and measurement of design in anechoic chamber.

Wireless Communication Lab Physical Layer simulation of ERP IEEE 802.11g and design of Orthogonal Frequency Division Multiplexing TX and Rx

Modulation and Demodulation (BPSK, QPSK, QAM, PAM), channel estimation and equalization

TECHNICAL SKILLS

Extensive experience on following lab equipment and software tools: Equipment: RF Power Meter

Oscilloscope

Spectrum Analyzer

NI USRP

Vector Network Analyzer

Signal Generator

Software Tools: AWR-MWO-Axiem-VSS Ansys-HFSS LABVIEW

MATLAB Cadence Virtuoso FEKO

ADS-Momentum Microsoft Office

OS & Languages Linux (Ubuntu) C VHDL

EMPLOYMENT EXPERIENCE

RF Antenna and System Research Assistant January 2016 – Present Developed a commercial wireless Laguerre-Gaussian beam solution to achieve increased data rate transmission for 5G

standards using spatial multiplexing

National Instruments Technical Intern (AWR Group) May 2016 – August 2016 Created real-world application examples for designers. Created example for using HFSS connected for AWR. Contributed by

designing new generation of 2layer board and added 5 new elements on 3D FEM parameterized editor cells.

ACHIEVEMENTS

Paper accepted ‘Experimental Demonstration of a Dual-channel E-band Communication Link using Commercial Impulse

Radios with Orbital Angular Momentum Multiplexing’ for IEEE Radio Wireless week 2017.

Poster presentation on ‘Spiral Phase Plate for Generation of mm-wave Laguerre Gaussian Beams’ at MTTS Texas Symposium