Electronics
Duration : 40 Hours
Basic of power electronics and rectifiers (AC-DC converters), DC-DC converters, Inverters (AC-AC converters), Applications of Power Electronics Converters
Duration : 40 Hours
Introduction to VLSI and Digital Design, FPGA design flow using Vivado, Clocking resources implementation in vivado & STA, Clocking resources implementation in vivado & static timing analysis, Block Memory implementation in vivado, FSM implementation in Vivado & XSIM simulation, Vivado logic analyzer & its features,Introduction to HLS,Optimizing Techniques, Embedded System Design Using FPGA
Duration : 40 Hours
Evolution of Wireless technology, 3G Architecture & Channels, Antenna optimization, PM tools, GIS based tools for optimization, In building solution Small cells, Introduction to LTE Architecture, Introduction to MIMO, Introduction to 5G
Duration : 40 Hours
Introduction to MSP430 family MSP430F5529 Launchpad,Blink LED using MSP430F5529 GPIO,Hibernation and wake-up on RTC interrupt in Tiva C Series,TI Internet of Things Overview,Introduction to CC3200 launchpad, Weather forecast using cc3200,Creating Wi-Fi network and establishing wireless communication between two Tiva board,
Duration : 40 Hours
Digital System Design using Verilog, Fundamental of STA, FPGA architecture and design flow, Embedded System Design using FPGAs
Duration : 40 Hours
Integrated circuit Design - Methodology and EDA Tools, Design of SRAM MOS Analog Models and Application in Circuit design Analog Simulations,Design of Voltage References/ Sources, CMOS Process Fabrication flow
Duration : 40 Hours
Impedance Matching, Coupler/ Divider, Microwave Filters, Microwave Amplifier Design,Basic of RF PCB design and some thumb rules, RF Circuit Design and Simulation using ADS,ADS Schematic simulations, System Level Simulation for 5G using SystemVue, RF/Microwave Component Characterization, Mixed Domain instruments -For Time domain, Frequency Domain & Digital /Logic measurement, Advanced Communication Measurement & Analysis Tools
Duration : 40 Hours
Overview on Digital Signal Processing and its applications. TI Portfolio. Architecture of DSP and its peripherals, Working with Serial Communication Interface(SCI) peripheral – UART / USB,Introduction to Energia IDE : Working with Digital IO & Analog,Working with Experimenter board, Peripheral –I/O Port with LCD Interface and Matrix Keypad, Working with TI-RTOS, Advanced Concepts of Signal processing - Viterbi, Complex Math and CRC, Parallel Processing with Control law Accelerators for Complex and Real Time Signal Processing, Introduction to TMS320C6748 DSP Development Kit and its Peripherals, Applications with Audio Processing and Signal Analysis
Duration : 40 Hours
Introduction to VLSI Flow, Synthesis Using Tool, Physical Design Flow, CTS & Routing Concepts
Duration : 40 Hours
Evolution of Wireless technology, 3G Architecture & Protocol, Antenna & channel optimization, PM tools, GIS based tools for optimization
Duration : 40 Hours
Review of Fundamental Concepts and Mathematical, Preliminaries Basic digital modulation schemes and signaling over AWGN Channels Analog communication systems Pulse Modulation
Duration : 40 Hours
Introduction to EV, EV control systems, V2G and G2V technology, Policies, R&D and deployment roadmap for India
Duration : 40 Hours
Evolution of Wireless Communication technology generations, Roadmap to 5G: targeted specifications, Radio access technologies for 5G-Massive MIMO and millimetre wave, Modulation techniques and waveform design for 5G communication, Antennas and RF subsystem for 5G ,Hyperdense small cell deployment for capacity improvement, Self organizing network, Machine type communication, Cooperative communication and cognitive radio, 5G Internet, Security for 5G Communications, Unified 5G Broadcast-Broadband Architecture.
Duration : 40 Hours
Introduction and basics of Mobile radio propagation environment, Cellular radio communication systems and Multiple access Techniques, Digital communication over fading channels, diversity equalization and channel coding, Spread spectrum, Multi-carrier and MIMO wireless systems.
Duration : 40 Hours
Digital System Design using Verilog.Logic Synthesis, Synthesizable HDL and coding guidelines, Basics of Timing Analysis, Exercises on STA concepts, Interpreting timing reports, Embedded System Design using FPGA’s, Zynq FPGA architecture & design flow, Assignments on Modeling of digital blocks.Logic Synthesis of the given design using Vivado.
Duration : 40 Hours
Introduction to DSP Filter Design and Realization, Advanced DSP Introduction and Measurement of Physical Parameters - I
Duration : 40 Hours
Adaptive Signal Processing, Applications of Transformations to Signal, Classical Optimization and Basics of Unsupervised Learning Techniques, Evolutionary and Nature Inspired Optimization Techniques, Multi-Objective Optimization Genetic Techniques
Duration : 40 Hours
SoC Design (RISC-V SoC, which implements RISC-V IMC ISA) – (Theory), Pre-layout timing analysis (Lab - OpenSTA) and Floorplanning (Lab – MAGIC):Placement, Clock tree synthesis, Routing and SI (Lab – Yosys, Graywolf, Qrouter, OpenSTA, MAGIC), Post-layout STA (Lab – OpenSTA), ECO (Optional – Theory + Labs, Lab - TritonSizer)
Duration : 40 Hours
Antenna Fundamentals and Basic Antenna Configurations Planar Antennas Antenna Arrays and Beamforming Reflector antennas for radar and satellite communication Emerging trends in antenna technologies.
Duration : 40 Hours
Introduction to Wide Bandgap Power Devices, Introduction to practical concepts of Sentaurus tool in modelling devices, Introduction to Synopsys TCAD Device Simulation: Sentaurus Device (SDEVICE), Introduction to Process Simulation Structure creation by Sentaurs Process (SPROCESS)
Information Technology
Duration : 40 Hours
Introduction to Cloud Computing, Introduction to AWS, Amazon Elastic Compute Cloud, Elastic Block Storage (EBS), Relational Database Service, S3 (Simple Storage Service).
Duration : 40 Hours
Artificial Neural Networks Brief introduction and history of Artificial Neural Networks (ANN) (ANNs), Deep Learning Optimization Technique Convectional Model Sequencing Model.