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sense-course-B.Tech. Electronics and Communication Engineering with...

B.Tech. Electronics and Communication Engineering with Specialization in Internet of Things and Sensors is an interdisciplinary programme that combines the study of electronic engineering, with an emphasis on computer science, internet technologies, wireless communications, sensor devices, and cloud computing. This programme aims to equip the students with a broader knowledge and practical skills on electronics engineering with computer technology and sensor networks that provides a wide range of applications in the Internet of Things. The programme will start with a strong foundation of mathematics in and continues with a basic theory of Electronics and Computer Technology, core modules in Electronics, Computers and Communication Networks will be emphasized.

Data Structures and Algorithms / Cloud Computing and Information Security / Applications of Differential and Difference Equations / Applied Linear Algebra / Basic Electrical and Electronics Engineering / Electronic Circuits / Electromagnetic Field Theory and Transmission Lines / Signal Analysis and Processing / Control Systems / Principles of Sensors and Data Acquisition / Principles of Communication Engineering / Digital Circuit Design / IoT System Architecture / Graphical System Design for Communication Engineers / Principles of Computer Communication / Microcontroller and Embedded Systems / Sensor Technology

Data Mining / IoT Edge Nodes and its Applications / Mobile App Development for IoT / Fiber Optic Sensors and Applications / Probability and Statistical Theory of Communication / EMC and EMI / VLSI System Design / Antennas and Wave Propagation / Microwave Engineering / IoT in Automotive Systems / IoT for Industrial Systems / RFID and Flexible Sensors / Sensors for Structural Health Monitoring / Wireless Sensor Networks and IoT / MEMS and Nano Sensors / Chemical and Bio-sensors / Wireless Technologies for IOT / Advanced Microcontrollers / Optical Communication and Networks / Information Theory and Coding / Wireless and Mobile Communication / Embedded Programming / M2M Communication / Embedded Sensing Technologies / Smart IoT Applications / Web Technologies / Geographical Information System / Applied Numerical Methods / Cyber Physical Systems / Data Analytics

  • Communication Engineering Laboratory is equipped with hardware equipment’s to carry out analog, digital and wireless communication experiments. The hardware equipment’s includes, Digital storage oscilloscope (60 MHz and 200 MHz), EXA Signal Analyzer, RF Signal Generator, Mixed Signal Oscilloscope, Arbitrary Waveform Generator, Multipurpose lab station, Digital IQ Modulation Set, Multiple output power supply, Wireless Software Defined Radio (900 MHz and 2.4 GHz), Sensor Module from Sensenut (Radio Module with Integrated Antenna, Gateway Module with USB cable, Gateway Module Wireless, TL Sensor Module (Temp. & Light), HTP Sensor Module (Humidity, Temp & Pressure), GAP Sensor Module (GPS, PIR & Accelerometer)). The software module includes, NetSim Version 9.1, Multisim ver. 10, Matlab 2015, broadband wireless simulator.
  • Networking Lab is equipped with NETSIM Academic Simulator with 60 User licenses and research license, Qualnet Simulator with 30 user licenses and research license, Riverbed Modeler Academic Version, Dell PowerEdge 7 Series server and 62 State of art computing machines, Asus and Netgear Layer2 & Layer3 Switches, Wireless Router and Ethernet cards.
  • Microprocessor and Microcontroller Lab is equipped with ARM based NXP Microcontroller, 8051 based NXP Microcontroller, various interfacing devices, Embedded developments boards, Keil software [supports ARM microprocessors and microcontrollers, 8051 microcontrollers] and Proteus software[simulates 8051 microcontrollers based system].
  • Advanced Micro Controller and RTOS Lab is equipped with KEIL Simulator Tool, Linux, VxWorks RTOS, AppCOE Simulator, Xilinx Vivado Design Suite and NI Labview. Associated hardware are MBED NXP LPC1768, ARM 9 and ARM Cortex boards, Xilinx FPGA Boards: Zybo ZYNQ 7000 ARM/FPGA SoC Trainer Board, Nexys 4 Artix-7 FPGA Trainer Boards and interfacing peripherals, Zed Board Zynq-7000 ARM/FPGA SoC Development Board, NetFPGA-1G-CML, Xilinx Kintex-7 netFPGA Development Board, Black fin processor, CAN controllers, TELOSB, ULK kit, NVIDIA GPU TESLA K40 and GTX 780. Lab is housed with 65 State of art computing machines with Windows 2000 server and HP Workstations Z440 & Z640.
  • Data Acquisition Laboratory is equipped with NI LabVIEW 2015 software, Analog I/O, Digital I/O, NIELVIS, MyDAQ, cDAQ, cRIO, Quanser control modules, NI WSN modules, Rasberry pi and ARM boards.
  • Sensor Systems Laboratory is equipped with different Physical Sensors, Agilent Digital Storage Oscilloscope, Infrared Camera, Hot wire anemometer, Agilent Lab station, Pico ammeter and Arbitrary waveform generator.
  • Chemical Sensor Laboratory is equipped with Sputtering unit, Hydraulized motor press, Laser Engraver, Chemical wet etch bench, Flat screen printer with vacuum worktable, LCR meter, Source IV meter, Furnace, Ultrasonic cleaner, Optical microscope, Digital balance, Gas sensing setup.
  • MEMS Design Laboratory is equipped with Comsol Multiphysics 5.2a, Intellisuite 8.9v, Conventorware suite 10.1v.

The number of connected IoT (Internet of Things) devices, sensors and actuators will reach over 46 billion in 2021. The Global Internet of Things (IoT) market reached USD 598.2 Billion in 2015 and the market is expected to reach USD 724.2 Billion by 2023. Further, the market is projected to register a CAGR of 13.2% during the forecast period 2016-2023 globally. Employment, Research and Start up opportunities are inclined in line with the market projection. Futuristic IoT jobs are Agricultural Technologist, 3-D Printing Engineer, Wearable Tech Designer, Medical Robot Designer, Data Security Expert, Cloud Computing Specialist, E-discovery Investigator, Intermodal Transport Designers, Counter Hackers, and many more.

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