An Electrical Engineering graduate student at Pennsylvania State University with a keen interest in fields related to RF Circuit Design.
The amplifier utilized a Gallium Nitride device on an FR-4 substrate. It gave 40 dBm of output power with around 14 dB of gain. It was able to achieve a power efficiency of 53.7% with a good linearity with it's IIP3 higher than 35 dBm. Carried out spectrum analysis, constellation analysis, EVM testing etc with the actual IEEE 802.11.b protocol signal applied.
The purpose of the design was to gain hands-on experience handling Keysight ADS. The design achieved a noise figure of around 1.4 dB, with a gain higher than 15 dB.
Acquired skills in operating RF instruments, including DSO, VNA, Vector Signal Generator, Spectrum Analyzer, and Radiation Measurement Systems for sub-6 GHz range.
Keysight ADS, Ansys HFSS, CST Design Suite, NI Multisim, LT Spice, Proteus, Arduino, C, MATLAB, VHDL, Verilog
Circularly Polarized Dual Band MIMO Antenna for Biomedical Applications, [Ongoing], 08/23, Ongoing, 1, Designing a CP MIMO antenna for high data rate telemetry and wireless power transfer. Design being carried out on Ansys HFSS inside a muscle phantom model. Physical Implementation to be carried out once the design is successful. 2.4 GHz Power Amplifier for 802.11.b Wireless Protocol, LNMIIT, Jaipur, 02/23, 05/23, 1, Carried out the mathematical analysis of the transfer function and implemented the circuit in NI Multisim.