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Electronics System Design

Electronic System Design

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Syllabus

This course is full of best-in-class content by leading faculty and industry experts in the form of videos and projects

Course Overview

  • This course deals with the process of electronic system design, including various stages such as requirement analysis, system architecture design, hardware design, software design, testing, and integration.
  • It involves the integration of multiple disciplines, such as electrical engineering, computer engineering, and software engineering to construct functional, dependable, and cost-effective electronic systems that meet specified needs.

Course Syllabus

On a daily basis we talk to companies in the likes of Tata Elxsi and Mahindra to fine tune our curriculum.

Module 1 - Introduction to Electronic Systems

  • Purpose and Scope
  • Electronics System Definition
  • Applications and Examples
  • Applications in Medical Devices Industry

Module 2 - Electronics System Overview

  • Breakdown of an Electronic System
  • Requirements
  • Architecture
  • Model Approach
  • Tools Introduction

Module 3 - Design Inputs

  • Requirement Specifications
  • Concept Generation
  • High Level Design Specifications
  • Design Breakdown
  • Verification and Validation Requirements

Module 4 - Design Realization

  • User Needs to Design Inputs
  • Low-Level Design or Detailed Design - Hardware
  • Low-Level Design or Detailed Design - Firmware or Application Software
  • Design Realization - Hardware
  • Proof of Concept
  • DHF, DFM and Manufacturing Documents

Module 5 - Design Verification

  • Verification Plan
  • System Verification - Functionality
  • Subsystem Verification - Functionality
  • Other Verification Requirements

Module 6 - Design Validation and Release

  • System Validation
  • System Release and Design Transfer
  • Design Changes
  • Quality Management

Module 7 - Introduction to Electromechanical Systems

  • Background and Introduction
  • Electromechanical Systems Definition
  • Complexity and Types of Systems
  • Breakdown into Subsystems
  • Scope of Mechanical Parts or Modules
  • Application and Examples in Various Industries
  • Application and Examples in Medical Devices
  • Applicable Standards

Module 8 - Electromechanical System Design

  • Requirements - System and Subsystem
  • User/Business/Application/Regulatory Needs
  • Architecture and Design Breakdown
  • Design Specifications (High and Low Level)
  • Verification and Validation Inputs
  • Tools Introduction
  • CAD Design

Module 9 - Electromechanical System Integration and Verification

  • Subsystem Qualification
  • System Integration and Challenges
  • Electromechanical System Validation
  • System Release and Design Transfer
  • Design Changes (PDLM and NPI)

Module 10 - PCB Design Introduction and Specifications

  • PCB Introduction
  • Layer Breakdown and Design Flow
  • Introduction to CAE Tools
  • Applicable Standards (General and Medical)
  • Hardware Specifications
  • Schematics Design and Verification, and Critical or Key Components Survey

Module 11 - PCB Layout Design

  • General Design Steps
  • Special Requirements
  • Design Analysis

Module 12 - PCB Layout Review, Output and Integration

  • Layout Design Review
  • Design Output
  • PCB Fabrication and Assembly
  • Board Bring up and Integration
  • System Verification

Our courses have been designed by industry experts to help students achieve their dream careers

Industry Projects

Our projects are designed by experts in the industry to reflect industry standards. By working through our projects, Learners will gain a practical understanding of what they will take on at a larger-scale in the industry. In total, there are 2 Projects that are available in this program.

Develop a Patient Monitoring System using the Electronic System Design Part

  • In this project, the students will learn about the patient monitoring system, which is an application that continuously or periodically monitors and collects patient vitals, viz., SPO2, ECG, temperature, pulse rate, etc., and displays them on a monitor as well as retains the data for recording purposes.
  • They will understand that the control system is a circuit board based on a microcontroller/microprocessor that is powered by an adaptor and has a built-in battery for backup purposes. The system also gets connected to the hospital network via WiFi.

Develop a Patient Monitoring system using the PCB Design and Mechanical Design Part

  • In this project, the students will have to continue Project 1.
  • The mechanical design needs have to be identified and specifications drafted out of them. These specifications, in addition to the electronic specifications drafted in Project 1, form the electromechanical system requirements/specifications.
  • Also, the circuit design in Project 1 needs to be realized into a PCB by following all the methods and processes.

Our courses have been designed by industry experts to help students achieve their dream careers

Ratings & Reviews by Learners

Skill-Lync has received honest feedback from our learners around the globe.

Google Rating
4.8

Flexible Pricing

Talk to our career counsellors to get flexible payment options.

Premium

INR 40,000

Inclusive of all charges


Become job ready with our comprehensive industry focused curriculum for freshers & early career professionals

  • 1 Year Accessto Skill-Lync’s Learning Management System (LMS)

  • Personalized Pageto showcase Projects & Certifications

  • Live Individual & Group Sessionsto resolve queries, Discuss Progress and Study Plans.

  • Personalized & Hands-OnSupport over Mail, Telephone for Query Resolution & Overall Learner Progress.

  • Job-Oriented Industry Relevant Curriculumavailable at your fingertips curated by Global Industry Experts along with Live Sessions.

Instructors profiles

Our courses are designed by leading academicians and experienced industry professionals.

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1 industry expert

Our instructors are industry experts along with a passion to teach.

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10 years in the experience range

Instructors with 10 years extensive industry experience.

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Areas of expertise

  • Embedded Systems
  • Automation
  • Hardware Design

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