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Live Project Based Robotics with AVR and ARM7 6 months training in Noida

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KVCH India program builds a powerful training tool that can be implemented in classrooms as well as in the industry. We offer wide range of programs for Live Project 6 Months Robotics with AVR and ARM7 Training in Noida under the guidance of the best industrial experts. We are continuously awarded for the past 10 years as the Best 6 months Robotics with AVR and ARM7 training Institute in Noida.

Six Months Robotics with AVR and ARM7 Training in Noida includes from basic to advance level modules designed for both students and working professionals.

Globalization has brought up with new opportunities in the market creating a pool of jobs for the graduate students. In order to hold up with the everyday growing demand the universities holds the responsibilities to produce students with excellent skills and experience.

6 Months Based Robotics with AVR and ARM7 Training Course in Noida is very essential to make student who is pursuing MCA, B.Tech, BCA, BBA, MBA course and they should be aware of the real working environment in industries and to prepare them to handle any kind of obstacles that occur. It is a roadway that allows students to apply their theoretical knowledge practically and opens door to new opportunities. At KVCH, we assure that the performance of each student is up to the standards of the IT industry.

At KVCH once the student opts for 6 months Robotics with AVR and ARM7 Training they get to experience the real working environment of the IT industry. Our team of expert senior trainers work together to ensure the development of set of skills for each individual. Our experts with hands-on experience on the technology and working experience makes sure to deliver the best to the students while working on LIVE project.

KVCH is the renowned 6 months Robotics with AVR and ARM7 Training Center in Noida providing world class education to students.

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Course Description

Industrial Training in Robotics with AVR and ARM7 is a modular 6 months course. The course curriculum of Industrial Training in Robotics with AVR and ARM7 comprises of

      Module 1: Embedded C Programming

      INTRODUCTION OF EMBEDDED C

    • Introduction to Embedded C
    • Different between C & Embedded C
    • Data type of Embedded C
    • Operators of Embedded C
    • Statements & loops of Embedded C
    • PROGRAMMING EMBEDDED SYSTEMS IN C

    • Introduction
    • What is an embedded System?
    • Which processor should you use?
    • Which programming language should you?
    • Which operating system should you use?
    • How do you develop embedded software?
    • HELLO, EMBEDDED WORLD

    • Introduction
    • Installing the Kiel software and loading the project
    • Configuring the simulator
    • Building the target
    • Running the simulation
    • Dissecting the program
    • Aside: Building the hardware
    • ADDING STRUCTURE TO YOUR CODE

    • Introduction
    • Object-oriented programming with C
    • Example: Restructuring the ‘Hello Embedded World’ example
    • Example: Restructuring the goat-counting example
    • Further Concepts
    • Data Types
    • Integer, Character, Float & S-bit
    • Operators
    • Assignment
    • Arithmetic
    • Relational
    • Logical – Bit wise & Byte wise
    • Increment/Decrement
    • Comma
    • Control Flow
    • If & If – else
    • While & Do – while
    • For
    • Switch
    • Continue
    • Break
    • Array
    • Pointers
    • Functions and Header files
    • PROGRAMMING & INTERFACING USING EMBEDDED C

    • Programming of Timer & Counter
    • Programming of Serial Port
    • Programming of Interrupt
    • LCD Interfacing
    • Motor Interfacing
    • Key board Matrix Interfacing
    • Module 2: Introduction to Robotics

      INTRODUCTION TO ROBOTICS

    • Types of robots
    • Legged robots
    • Mobile robots
    • Autonomous robots
    • Manual robots
    • Robotic arm
    • Procedure of building robots
    • ROBOTS AND CONTROLLERS

    • Mobile Robots
    • Embedded Controllers
    • Brief study of Microcontrollers
    • Interfaces
    • Operating System
    • Serial communication concepts with programming
    • Interrupt programming and embedded c concepts how to use KEIL with C concepts
    • LOCOMOTION IN ROBOTS

    • Wheeled
    • Legged
    • Flying
    • Floating
    • CONSTITUENTS OF AUTONOMOUS ROBOTS

    • Sensors
    • Microcontrollers
    • Actuators
    • Module 3: Robotics with AVR

      Microcontroller ATMEGA16 (AVR)

    • Hardware Details
    • Pin Diagram
    • AVR Architecture
    • Interrupts and Timers
    • Microcontroller AVR Assembly Language
    • AVR Studio, WINAVR C, Code Vision AVR
    • INTRODUCTION TO AVR (ATMEGA16)

    • AVR Family
    • Pin Diagram & pin description
    • Pin configuration
    • Memory Organization
    • Input/output pins
    • Special functions
    • System Control
    • USART(Universal Synchronous Asynchronous Rx Tx)
    • SPI (Serial Peripheral Interface)
    • Timer / Counter / Interrupts
    • PWM (pulse width Modulation)
    • I2C (Inter-Integrated Circuit)
    • ADC (Analog To Digital Convertor)
    • Analog comparator
    • BASIC INTERFACINGS

    • LED
    • Switch
    • Keypad matrix
    • LED matrix
    • 7 – segment Display
    • LCD - 2X16 Dot Matrix
    • 8 bit mode
    • 4 bit mode
    • Motors
    • DC Motor
    • Stepper Motor
    • Servo Motor
    • Relay
    • IR – sensor
    • Module 4: Robotics with ARM7

      INTRODUCTION TO ARM ARCHITECTURE

    • Introduction of ARM Architecture
    • Evolution of ARM Architecture
    • Pipeline Concept
    • ARM7 Architecture
    • ARM7 Based Microcontrollers
    • INTRODUCTION TO PHILLIPS LPC21XX

    • General description of LPC21XX
    • Features of LPC21XX
    • Block diagram & pin description
    • Memory map & bus structure
    • SYSTEM PERIPHERALS OF LPC21XX

    • Memory Accelerated Module (MAM)
    • Phase Locked Loop (PLL)
    • Power Control
    • APB (ARM peripheral Bus ) divider
    • Interrupt system
    • Wake –up Timer
    • Brown- out detection
    • Pin Connect Block
    • Vector interrupt Control (VIC)
    • USER PERIPHERALS OF LPC2148

    • Register description, Pin configuration, Features & applications of..
    • GPIO (General purpose input output)
    • Timer/Counter
    • PWM (Pulse Width modulation)
    • RTC (Real Time Clock)
    • WDT (Watch Dog Timer)
    • UART (Universal asynchronous receiver & transmitter)
    • I2C (Inter-Integrated Circuit)
    • SPI (Serial Peripheral Interface)
    • SSP (Synchronous Serial Port)
    • ADC (Analog to Digital Convertor)
    • DAC (Digital to Analog Convertor)
    • BASIC INTERFACINGS

    • LED
    • Switch
    • Keypad matrix
    • LED matrix
    • 7 – segment Display
    • LCD - 2X16 Dot Matrix
    • 8 bit mode
    • 4 bit mode
    • Motors
    • DC Motor
    • Stepper Motor
    • Servo Motor
    • Relay
    • IR – sensor