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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
1394 LLC
5x4Gbps CRC generator
designed with standard cells
8 bit Microcontroller
application in Home
8 bit Microprocessor
application in poultry
8048 Controller
application in poultry
Adaptive Filter design
in VLSI
ADPCM algorithm
Arm core
implementation in VLSI
Basic DES crypto core
Basic RSA encryption
engine
CISC processor design
on FPGA
CPU Generator design
on FPGA
Cryptographic
communication
Cryptographic
controller design
CV001 CORDIC core
Debit card design on
FPGA
DES Algorithm design
design on FPGA
Design and
implementation of 2D DWT architecture
Design and
implementation of acoustic echo canceller
Design and
implementation of adaptive beam former for sonar system
Design and
implementation of adaptive noise canceller
Design and
implementation of declination filter
Design and
implementation of digital architecture of support vector
machine
Design and
implementation of distributed arithmetic algorithm based FIR
filter
Design and
implementation of energy scalable system design on FPGA
Design and
implementation of fuzzy logic controller -project using VLSI
Design and
implementation of histograms accumulator buffer - project
using VLSI
Design and
implementation of image compression technique - project
using VLSI
Design and
implementation of image segmentation using VLSI
Design and
implementation of noise cancellation using recursive least
square
Design and
implementation of packet scheduling algorithm for ATM
switches
Design and
implementation of read salmon decoder
Design and
implementation of safer encryptions algorithm in blue tooth
using
Designing an active
noise control system using DSP and VLSI
DMT Transceiver -
project using VLSI
E1 Framer/De framer
-project using VLSI
Electronic voting
machine - project using VLSI
FIR & IIR filter
designing - in VHDL
First File Reader
FAT16 in VHDL
Fuzzy controller
design in VHDL
Fuzzy Logic Hardware
Accelerator using FPGA
HDB3/B3ZS Encoder +
Decoder in VHDL
Home appliances
control designing in VHDL
I2C controller core
using verilog
Identity card
designing using verilog
Image processing using
verilog
Image processing in
VLSI
ISA bus design
JOP: a Java Optimized
Processor
Linear Predictive
Coding
List of VLSI projects
Mini MIPS using
verilog
Motion Detection From
Image Sequences Using A New Fully Digital VLSI
MP3 decoder using
verilog
Neural Architecture
PID controller
Object counter
designing
PCI bus design using
verilog
Plasma - most MIPS
I(TM) Epodes
Quadrature Decoder /
Counter
Railway barrier
monitor using verilog
RISC coprocessor
designing using verilog
RISC5x
RSA Algorithm design
Security system
Single clock unsigned
division algorithm
SISC processor design
Smart card designing
SPDIF Interface
Spectrum analyzer
Stepper Motor
Controller
System680
system6805
System6809
System6811
Traffic light
controller
UART designing
Vending machine
Wireless attendance
recorder cum security system
WISHBONE Builder
Wishbone System6800/01
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