Diploma in Embedded systems Engineering - Fees, Eligibility, Syllabus, Jobs

Diploma in Embedded systems Engineering - Fees, Eligibility, Syllabus, Jobs

Edited By Team Careers360 | Updated on Oct 03, 2024 03:27 PM IST | #Diploma

Diploma in embedded systems engineering is a full-time 24 weeks course that is recognized by the All India Council for Technical Education. Embedded systems engineering is a process of controlling various devices and machines that are different and unique from traditional computers that are using software engineering. The integration of software engineering with non-computer devices has led to the formation of embedded systems.

The popularity of embedded systems is typically in the field of medical sciences, computer electronics, aviation, automotive technology and manufacturing science. Embedded systems require a wide and vast range of programming tools, different kinds of microprocessor and operating systems. Embedded software engineers serve to the needs of hardware that have to be controlled and have to run through as required

Embedded software engineering is different from the traditional application development in terms of additional consideration in comparison to the external factors like temperature factors, environmental factors and other correlated factors that can affect the performance and other things. These embedded software engineers work with experts in this field, who help to develop different and unique kinds of software and applications to serve the consumers.

Diploma in Embedded systems Engineering Course Details

Particulars

Highlights

Duration

24 weeks

Degree

Diploma

Eligibility

Graduation from a recognized university

Academic Session

Semester Based

Admission Process

Direct Admission/ Merit Based

Mode of Learning

Full Time and Part-Time

Estimated Diploma in Embedded Systems Engineering fee

Rs. 9000 to Rs. 2 Lakhs (approx)

Career options after the course

  • Embedded software engineer

  • Application software engineer

  • System software engineer

Top Recruiters

  • HSBC

  • Intel Corporation

  • Tech Mahindra

  • IBM

  • L&T

  • Infosys

  • InfoTech

  • Accenture

  • HCL Technologies

Average Salary

Rs. 5 lakhs (approximately)

Eligibility for Diploma in Embedded Systems Engineering

Mentioned below is the eligibility criteria of Diploma in Embedded Systems Engineering for reference:

  • Candidates must graduate in engineering (10+2+4 or 10+3+3 years) in IT/ Electronics/ Computer science/ Telecommunication/ Electrical/ Instrumentation.

  • Candidates can also have a degree of MSc/MS (10+2+3+2 years) in Computer Science, IT, Electronics

  • Candidates must have studied maths in 10+2 (It is exempted for those candidates who have Diploma + Engineering)

  • Candidates need to make sure that they have scored a minimum of 55 per cent marks in their qualifying examination to be eligible.

Candidates need to have all the above-mentioned credentials to pursue Diploma in Embedded Systems Engineering. The eligibility criteria for diploma in embedded systems engineering might differ from college to college depending upon whether it is a private university or a government university.

Diploma in Embedded Systems Engineering Admission

There is no entrance exam for the Diploma in Embedded Systems Engineering programme. It is fully dependent on the student's merit, as well as the candidate's 10+2 results. Students can work in a variety of fields, including education, hospitality, tourism, and hotels, after completing this degree.

Admission process

There is only one way to get admission into this course, that is to get admission through an entrance examination. An entrance examination is a mechanism where applicants are required to qualify the entrance examination of the particular college they are planning to take admission into.

  • There are different entrance exams for the different colleges depending upon whether it is a private university or a government university.

  • For example - To take admission into any of the CDAC colleges, students have to give the common admission test that is designed to take admission into CDAC college.

  • Candidates need to check the college website and apply accordingly.

Cutoff of top colleges

A cut-off score for the Diploma in Embedded Systems Engineering is a set of criteria used to evaluate a student's merit or exam performance. The Diploma in Embedded Systems Engineering cutoff varies by college and is decided by qualifying examinations and the number of students who take the admissions exam.

Diploma in Embedded Systems Engineering Skills Required

Mentioned below are essential qualities for a candidate who wants to pursue this course:

  • Good knowledge of theory and practical

  • Sound understanding of programming language.

  • Good understanding of microprocessor internals.

  • Competency in at least one assembly language

  • Good understanding of DMA

  • Ability to perform at least basic electronics

  • Understanding of basic regions and their uses.

  • Working with hexadecimal numbers and math.

  • Understanding of different kinds of memory

  • Understanding of multitasking in the embedded world.

  • Ability to use debuggers to perform simple operations.

  • Ability to debug multitasking code

  • Developing code to run under a Real-Time Operating System.

  • Develop and debug codes for peripherals and communication.

  • Ability to write state machine

  • Innovative thinking

  • Working in a team

  • Reading datasheets

  • Hardworking

  • Smart worker

The skills required for an embedded system engineer may also vary depending upon the job they prefer to do. A company may require more or less of the skills stated above according to job preference and field one opts to work in.

Diploma in Embedded Systems Engineering Syllabus

Students are assigned a project work that will have a duration of 5 weeks. Students will also have to conduct a mandatory seminar on a topic that will be related to embedded systems design. Students will also be given special credit for the project work they will submit and also for the seminars during their course.

Internet of things (loT) and mobile Programming hours

Programming concepts

  • loT trends

  • loT application

  • loT structure

  • loT standards

  • loTprotocols

  • Mobile development platforms ( Android, Symbian, JavaME)

  • Mobile programming languages and design and development of mobile user interfaces

  • Mobile application development and debugging

  • Customizing of the android platform

  • Basis of program writing and coding practices

  • Embedded C programming

  • Overview of C programming language

  • Algorithm and abstract data types

  • Complexity of algorithms

  • Embedding assembly code in C program

  • Linked lists

  • Debugging and optimization of C program

  • Stacks

  • Hardware portability issues in C

  • Ques

  • Introduction to the data structure

  • Hardware, time and space and power-aware programming

  • Searching and sorting algorithms

  • Handling portability issues in C

  • Trees

  • Object-oriented programming

Fundamentals of Job oriented programming

Real-time operating systems

  • Overview of java language

  • Programming concepts

  • Programming of java evolution

  • Decision making

  • Constants, variables and data types

  • Operators and expressions

  • Packages

  • Arrays

  • Interface

  • Objects and methods

  • Strings and collections

  • Classes

  • Branching and looping

  • Porting of RTOS

  • Introduction to real-time concepts

  • Configuring RTOS

  • Schedulability analysis

  • Building RTOS image for target platforms

  • RTOS internals

  • Application programming on RTOS

  • Task specifications

  • Performance metrics of RTOS

  • Real-time scheduling


Embedded hardware design and development hours

Embedded operating systems

  • Introduction to the manufacturing process

  • Board design fundamentals

  • Gerber generation

  • Circuit design and simulation

  • PCB placement and routing

  • Schematic entry

  • Component library development

  • Driver debugging technique

  • Introduction to embedded operating systems

  • Timings, synchronization, locking and interrupts

  • Introduction to boot loaders and board support packages

  • Handling delays

  • Char device drivers

  • Process management and inter-process communication

  • I/O memory and ports

  • Memory management

  • Linux kernel modules

  • I/O subsystem and embedded file systems

  • Embedded Linux device drivers

  • POSIX thread programming

  • Embedded Linux kernel intervals

  • POSIX semaphores

  • Debugging and testing of Multi-threaded application

  • Mutexes

  • Message queue

  • Conditional variables

  • Barriers

Microcontrollers and interfacing

  • Introduction to FPGA

  • RTC

  • Introduction to 8-bit microcontrollers

  • LCD

  • Introduction to multicore embedded systems

  • Emerging bus standards

  • ARM architecture and organization

  • Peripheral programming

  • Programming in Assembly and Embedded C

  • Exceptional handling

  • Introduction to 16/32- bit processors

  • Memory model

  • Introduction to Cortex M3 architecture

  • Programming model and instruction set

  • DAC

  • RISC/ CISC and Harvard Princeton

  • ADC

  • Architecture embedded memory

  • Switches

  • Timers / Counters

  • LED

  • UART

  • CAN

  • SPI

  • I2C

  • PWM

  • Output compare modes

  • WDT

  • Input capture

Effective communication

Diploma in Computer Applications Fees Structure and Details:

Actual fee of the course may vary. There is a difference between the fee structure of private universities and government universities. With the rise in demands of electronic products and the coming up of new technology and innovation, there has been a rise in the field of embedded systems.

First Installment

Rs. 10,000 (approx.)

Second installment

Rs. 80,000 (approx.)

Total fees

Rs. 90,000 (approx.)

FEE DISCLAIMER - Total fees of course is Rs. 90,000 and it will also have additional GST charges of 18 per cent (This can vary). Both the installments will include 18% GST respectively.

Scope of Diploma in Catering Technology

The field of embedded systems sees a change at a very quick rate because technology in today's world is changing at a very fast rate. Mentioned below are few of the recent developments and new trends in the field of embedded systems technology

  • There has been a development in the field of loT and industrial IOT because of which enabled systems technology is helping in connecting rapidly with the world of loT systems.

  • There has been a development in the combination of the programme consisting of hardware and software mix so that it will support various fields of technology.

  • Embedded systems have supplied well to the world of Real-time operating systems (RTOS) so that there can be rapid and fast changes in order to support the new technology.

  • Embedded systems have helped in the study advancement of the next generation of intelligent devices because of which we are able to get smart devices today.

Career option after Diploma in Embedded Systems Engineering

After completing his or her Diploma in Embedded Systems Engineering, the individual will be exposed to a variety of career and work opportunities. These include the following, but are not limited to:

Embedded software engineer: An embedded systems or software engineer works on product design, development, and maintenance. Software development is a common aspect of the job. It does, however, necessitate a thorough understanding of embedded systems as a whole. Engineers who work primarily with embedded software are referred to as embedded engineers by some companies.

Application software engineer: Application software engineers create and maintain software applications including utility programmes and general-purpose software. They collaborate with users to identify needs and develop software to suit those needs. They make changes to current software to address bugs, improve performance, and enable it to run on new hardware platforms. They are in charge of overseeing the installation of software systems as well as the monitoring of equipment.

System software engineer: A Software Systems Engineer will evaluate an issue and either create a new system or upgrade an existing one to make it better and more efficient. They should display high technical skills, deploy mission-critical infrastructure, and assure the highest levels of availability, performance, and security.

Benefits of studying Diploma in Embedded Systems Engineering

There is a clear path to becoming an embedded system professional, whether in the fields of system integration, software, hardware design, or something else. There's no denying that starting salaries are low, but after three to four years of experience, you'll be rewarded handsomely. In India, professional embedded system developers are in high demand.

Expected salary

Embedded systems is emerging as one of the most growing industries and also there is a rise in requirement for professionals. There are various domains for optical performance in this field. Mentioned below are some of the job profiles with their annual salary package:

JOB PROFILE

SALARY (ANNUALLY)

Embedded software engineer

Rs. 5 lakhs (approximately)

Application software engineer

Rs. 5 lakhs (approximately)

System software engineer

Rs. 8 lakhs (approximately)

SALARY DISCLAIMER - The salary figures mentioned anywhere in these articles are just for reference purposes. Please treat them as such. Actual salaries may vary depending on respective candidates, employer, job location and numerous other factors.

List of top 10 Diploma in Embedded Systems Engineering colleges in India

Many educational institutions in India provide Embedded Systems Engineering diploma programmes. Entrance is based on prior academic achievements and admission test scores. The following is a list of the best colleges and universities in India that provide a Diploma in Embedded Systems Engineering:

Frequently Asked Questions (FAQs)

1. Is embedded systems engineering a good career?

Yes, embedded systems engineering is a good career. With new developments in the information and technology sector, the scope for embedded systems is increasing which has led to the opening up of various new career prospects in this field.

2. Is there a value of this course in the international market?

The structure of this course is unique and also has the scope to generate various opportunities. Therefore it gives an edge for students. This course will hold its importance everywhere. So, a candidate needs not to worry about it.

3. Does course content serve the base for practical use as well?

The curriculum of this course is designed in such a way that it serves the real-life needs and students are able to learn and grasp new things so that they are well aware of their practical and theoretical knowledge.

4. What is the selection process to take admission into this course?

To take admission into this course, students have to give an entrance test. After clearing the test, they have to follow the procedure stated by the university.

5. What is the time duration of this course?

The duration of this course is 24 weeks. It is approved by All India Council For Technical Education.

6. What are the career options available after doing a Diploma in embedded systems engineering?

There are various job opportunities after doing a diploma in embedded systems engineering. Job profiles offered are- Embedded software engineer, Embedded hardware engineer, Application software engineer, Solutions engineer, System software engineer, Software test engineer, Embedded system trainer, Hardware designer, Communication protocol engineer, Device driver developer and many more.

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Questions related to Diploma

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Core Disciplines: Core Disciplines: Engineering Mechanics: Statics, Dynamics, Kinematics, and Kinetics. Engineering Mathematics: Calculus, Differential equations, Linear Algebra, and Numerical Method. Engineering Drawing: Technical Drawing, Machine drawing, and CAD. Strength of Materials: Stress, Strain, Bending Moment, Shear Force, Deflection of Beams. Fluid Mechanics: Fluid properties, fluid statics, fluid dynamics, Hydraulic machine Thermal Engineering: Thermodynamics, heat transfer, and internal combustion engines Machine Design: Machine elements design, i.e., shafts, bearing, gear and spring, etc. Manufacturing Processes: includes metal casting, forging machining and welding among others Metrology and Quality Control: Measurement techniques, quality control tools, and statistical quality control Industrial Engineering: Production planning and control, operations research, and work study Important Topics: Important Topics: Engineering Mechanics: Force equilibrium, friction, inertia moments, kinematics of particles and rigid bodies. Strength of Materials: Stress-strain diagram, bending moment and shear force diagram, deflection of beams and torsion of shafts. Fluid Mechanics: Physical properties of fluids, fluid statics, Bernoulli's equation, flow in pipes, and pumps. Thermal Engineering: The laws of thermodynamics, conduction, convection, radiation, internal combustion engines, and refrigeration/air conditioning. Machine Design: Design of machine elements, failure theories, and fatigue analysis. Manufacturing Processes: Metal casting, forging, machining, welding, etc. Metrology and Quality Control: Measurement techniques, tolerance and fits, and statistical quality control. Industrial Engineering: Production planning and control, work study, and operations research. Additional Tips: Additional Tips: Focus on Fundamentals: Build a very good base of the concept. Practice Regularly: Practice numerical problems and design exercises. Consult Standard Text Books: Standard text books R.K. Rajput, R.K. Bansal, S.K. Singh etc. Online Resources: NPTEL, YouTube, etc. Study Groups: Discuss concepts amongst peer groups and solve problems together. Consult Faculty/Experienced Engineers: Refine and obtain guidance from faculty or senior engineers. By following these prescriptions and repeated attempts at diligent progress, you will be able to succeed in your RGPV Diploma in Mechanical Engineering studies. It is also noted that the specific curriculum and main areas may vary according to the revision of RGPV curriculum. In all cases, please refer to the website of the official RGPV for the latest information. https://www.careers360.com/colleges/university-polytechnic-rajiv-gandhi-proudyogiki-vishwavidyalaya-bhopal

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Hello Aditya,

The diploma courses at King George's Medical University (KGMU) typically have a fee structure of around Rs. 99,000, depending on the course. This fee includes various diplomas like Cardiology Technician, Dialysis Technician, and Medical Laboratory Technician, which generally last 2 years.

For the most accurate and up-to-date details regarding the fees for the specific diploma you're interested in, I recommend checking the official KGMU website or directly contacting their admissions office.


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I hope this answer helps you. If you have more queries then feel free to share your questions with us we will be happy to assist you.

Thank you and wishing you all the best for your bright future.


Standard Duration of a Diploma Course


The standard duration of a diploma course in India is after 10th standard that is two years, but the courses may vary in their duration and can be offered by different institutions as well.


Factors Which Can Affect the Duration


Course Intensiveness: In fact, some diploma courses have longer or shorter courses, and this can mainly be due to the fact that some courses are more intensive, and in others, the courses can be quite comprehensive.

Mode of Study: Full-time courses have shorter periods of study compared to part-time or distance learning classes.

Diploma Institutional Policies differ based on the institution that prescribes the running period of the course.

As a result, it is advisable to get as much information about the duration of a certain diploma course from the institution or the provider of that course.

Hello

Yes ,  you are eligible .

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