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We support VLSI projects, VERILOG, VHDL, Verification of Truth table of Digital Gates (NAND, X-OR etc.), Flip-Flops (R-S, J-K etc.), Counters (Binary/Decade), Display Drivers/Decoders, Verilog Multiplexers (MUX), Verilog Demultiplexers (DEMUX).

         Online Special Training on VLSI - Soft skill

   Certified VLSI design course 10 Hours Class at - on Google meet / zoom /Teamviewer.  Suitable for,  Programmers of VLSI, VHDL, Verilog, B.E ECE, EEE, EI. This course is also for Ph.D Power electronics and drives.

         VLSI Online Course Syllabus - 10 Hours course - Fees 25 to 30 USD per Hour.

  This intents to bridge the VLSI design and the real world applications. This course covers,

      Overview of Digital Design with Verilog HDL, Evolution of CAD, emergence of HDLs, typical HDL-flow, Verilog HDL, trends in HDLs.

Top-down and bottom-up design methodology, differences between modules and module instances, parts of a simulation, design block, stimulus block.
        Basic Concepts of Lexical conventions, data types, system tasks, compiler directives.
Modules and Ports - Module definition, port declaration, connecting ports, hierarchical name referencing.
Gate-Level Modeling
Modeling using basic Verilog gate primitives, description of and/or and buf/not type gates, rise, fall and turn-off delays, min, max, and typical delays.
Dataflow Modeling, Continuous assignments, delay specification, expressions, operators, operands, operator types.
The course in VLSI includes - Live Experiments - tutorials - 10

VLSI projects for Power Electronics Masters and Ph.D

Power electronics and VLSI (Very-Large-Scale Integration) are two critical areas in modern electronics that often intersect in advanced applications. VLSI techniques are increasingly being used to design power electronics systems that are more efficient, compact, and capable of handling high power with precision. Below are some interesting power electronics projects that leverage VLSI design:

1. Design of DC-DC Converters Using VLSI

  • Project Overview: Develop a high-efficiency DC-DC converter using VLSI techniques. The project involves designing the control logic, pulse-width modulation (PWM) circuits, and feedback mechanisms on a chip.

  • Key Components:

    • VLSI design for the control unit (e.g., PWM generator, feedback control loop)

    • Integration of power transistors and drivers

    • Simulation and verification of the design using EDA tools like Cadence or Synopsys

  • Applications: Power management in portable devices, renewable energy systems, and automotive electronics.

2. On-Chip Power Management System (PMS)

  • Project Overview: Design an on-chip Power Management System (PMS) that can regulate multiple power domains in an integrated circuit. This project involves designing voltage regulators, power gating circuits, and power distribution networks.

  • Key Components:

    • Design of low-dropout regulators (LDOs) using VLSI techniques

    • Implementation of power gating for reducing standby power

    • Multi-phase buck converter design

    • Simulation of the complete power management system

  • Applications: Used in microprocessors, SoCs, and other high-performance ICs to manage power consumption effectively.

3. VLSI-Based Inverter Design for Solar Power Systems

  • Project Overview: Develop a VLSI-based inverter for converting DC from solar panels into AC power. The project focuses on designing the inverter's control logic, modulation schemes, and fault protection circuits on a single chip.

  • Key Components:

    • VLSI design for inverter control circuits (e.g., sinusoidal PWM, space vector modulation)

    • Integration with power transistors and protection circuits

    • Implementation of Maximum Power Point Tracking (MPPT) algorithms

    • Simulation and hardware validation using FPGA or ASIC

  • Applications: Solar inverters for residential and commercial solar power installations.

4. Digital Control of Power Converters Using VLSI

  • Project Overview: Design a digital controller for power converters, such as DC-AC inverters or AC-DC rectifiers, using VLSI techniques. The project involves implementing digital control algorithms (like PID or fuzzy logic) on an ASIC or FPGA.

  • Key Components:

    • VLSI implementation of digital control algorithms

    • Interface design for ADCs/DACs to connect with analog power stages

    • Real-time simulation and verification of the control system

  • Applications: Used in industrial power supplies, UPS systems, and renewable energy converters.

5. Power Electronics IC Design for Electric Vehicles (EVs)

  • Project Overview: Develop a power electronics IC for electric vehicles, focusing on battery management, motor control, and energy recovery systems. This project involves the VLSI design of power controllers, communication interfaces, and safety features.

  • Key Components:

    • Design of motor driver circuits and battery management systems (BMS)

    • Integration of communication interfaces (e.g., CAN, LIN) on the chip

    • Implementation of safety mechanisms for overcurrent, overvoltage protection

    • Chip layout and simulation using VLSI tools

  • Applications: Powertrain control in electric vehicles, energy recovery systems in hybrid vehicles.

6. FPGA-Based VLSI Implementation of Power Factor Correction (PFC)

  • Project Overview: Implement a Power Factor Correction (PFC) controller on an FPGA using VLSI techniques. The project involves designing the control logic for PFC, including current and voltage sensing, and integrating it with power electronics hardware.

  • Key Components:

    • VLSI design of PFC control logic (e.g., boost converter control, PWM generation)

    • Integration with analog-to-digital converters (ADCs) for sensing

    • Simulation and hardware testing on FPGA

  • Applications: Power supplies for industrial equipment, consumer electronics, and energy-efficient appliances.

7. Design of Energy Harvesting Circuits Using VLSI

  • Project Overview: Develop an energy harvesting system using VLSI design techniques, focusing on converting ambient energy (such as solar, thermal, or vibrational energy) into electrical energy. The project involves designing power management circuits and energy storage systems.

  • Key Components:

    • VLSI design of rectifiers, voltage converters, and energy storage controllers

    • Integration of energy harvesting transducers (e.g., piezoelectric, thermoelectric)

    • Simulation and testing of the complete system for efficiency and reliability

  • Applications: IoT devices, wearable electronics, and low-power sensors.

8. Smart Grid Interface Using VLSI Design

  • Project Overview: Design a VLSI-based interface for smart grids that can manage the distribution and consumption of electrical power. The project focuses on developing the control logic for grid synchronization, load balancing, and fault detection.

  • Key Components:

    • VLSI implementation of grid synchronization algorithms

    • Design of load management and fault detection circuits

    • Communication interface for data exchange with the grid

    • Simulation and integration with smart grid infrastructure

  • Applications: Smart meters, intelligent distribution systems, and grid-tied renewable energy systems.


VLSI Project Titles for B.E ECE and EEE

  1. 1394 LLC

  2. 5x4Gbps CRC generator designed with standard cells

  3. 8 bit Microcontroller application in Home

  4. 8 bit Microprocessor application in poultry

  5. 8048 Controller application in poultry

  6. Adaptive Filter design in VLSI

  7. ADPCM algorithm

  8. Arm core implementation in VLSI

  9. Basic DES crypto core

  10. Basic RSA encryption engine

  11. CISC processor design on FPGA

  12. CPU Generator design on FPGA

  13. Cryptographic communication

  14. Cryptographic controller design

  15. CV001 CORDIC core

  16. Debit card design on FPGA

  17. DES Algorithm design design on FPGA

  18. Design and implementation of 2D DWT architecture

  19. Design and implementation of acoustic echo canceller

  20. Design and implementation of adaptive beam former for sonar system

  21. Design and implementation of adaptive noise canceller

  22. Design and implementation of declination filter

  23. Design and implementation of digital architecture of support vector machine

  24. Design and implementation of distributed arithmetic algorithm based FIR filter

  25. Design and implementation of energy scalable system design on FPGA

  26. Design and implementation of fuzzy logic controller -project using VLSI

  27. Design and implementation of histograms accumulator buffer - project using VLSI

  28. Design and implementation of image compression technique - project using VLSI

  29. Design and implementation of image segmentation using VLSI

  30. Design and implementation of noise cancellation using recursive least square  

  31. Design and implementation of packet scheduling algorithm for ATM switches

  32. Design and implementation of read salmon decoder

  33. Design and implementation of safer encryptions algorithm in blue tooth using     

  34. Designing an active noise control system using DSP and VLSI

  35. DMT Transceiver - project using VLSI

  36. E1 Framer/De framer -project using VLSI                      

  37. Electronic voting machine - project using VLSI

  38. FIR & IIR filter designing - in VHDL

  39. First File Reader FAT16  in VHDL

  40. Fuzzy controller design in VHDL

  41. Fuzzy Logic Hardware Accelerator using FPGA

  42. HDB3/B3ZS Encoder + Decoder  in VHDL

  43. Home appliances control designing in VHDL

  44. I2C controller core using verilog

  45. Identity card designing using verilog

  46. Image processing using verilog

  47. Image processing in VLSI

  48. ISA bus design

  49. JOP: a Java Optimized Processor

  50. Linear Predictive Coding

  51. List of VLSI projects

  52. Mini MIPS using verilog

  53. Motion Detection From Image Sequences Using A New Fully Digital VLSI

  54. MP3 decoder using verilog

  55. Neural Architecture PID controller

  56. Object counter designing

  57. PCI bus design using verilog

  58. Plasma - most MIPS I(TM) Epodes

  59. Quadrature  Decoder / Counter

  60. Railway barrier monitor using verilog

  61. RISC coprocessor designing using verilog

  62. RISC5x

  63. RSA Algorithm design

  64. Security system

  65. Single clock unsigned division algorithm

  66. SISC processor design

  67. Smart card designing

  68. SPDIF Interface

  69. Spectrum analyzer

  70. Stepper Motor Controller

  71. System680

  72. system6805

  73. System6809

  74. System6811

  75. Traffic light controller

  76. UART designing

  77. Vending machine

  78. Wireless attendance recorder cum security system

  79. WISHBONE Builder

  80. Wishbone System6800/01

    

 

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