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Monday, 22 August 2016

Be an Electrical Engineer by taking admission in top engineering colleges offering b.tech in Electrical and electronics engineering

Direct admission in top enginerring colleges of Bangalore @ btech in Electrical and electronics engineering

Get complete information about direct admission , fees and placements of top enginerring colleges of Bangalore @ btech in Electrical and electronics engineering

*** Earlier you book the seats, lesser amount you have to pay Call - 9916566036 ***

Electrical and electronics engineers are involved in a wide variety of technology ranging from huge global positioning systems which can pinpoint the location of a moving vehicle to gigantic electrical power generators. These engineers are responsible for designing, developing, testing as well supervising the production of electrical and electronic equipment and machinery. Broadcast and telecommunication systems, electric motors, controls of machinery, lights and wiring in building complexes, vehicles, aircraft, radar and navigation systems, power generation, control and transmission devices which are used by electric utilities are all examples of equipment built by these engineers.

Electrical Engineer - Super Micro Computer, Inc. (Supermicro) - San Jose, CA

Dedicated on VRM Power debugging, Tuning, Testing  Experience with lab equipment, like oscilloscopes, along with soldering and debugging skills

Electrical Engineer - Poly-America, Inc. - Chester, SC

Electrical engineers at Carolina Poly are responsible for engineering of new equipment installations, and the modification of existing equipment used

Technical Manager, Electrical Engineering - Fitbit - San Diego, CA

Manage, lead and guide the HW team on development

Top 3 Electronic Engineer Jobs

DEC Electronic Systems Engineer - Electronics Product Engineer - Delphi - Troy, MI
ÂÂ Work with Delphi Marketing to create and show properties for industry and customer events (e.g. SAE Congress) ÂÂ Develop new technologies and

Engineering Manager, Electronic Design - Hayward Industries - North Kingstown, RI
Research and development are at the forefront of Hayward's short and long-term goals, while introducing industry-changing, energy-efficient products

Electronics Engineer - Riverside Research Institute - Wright Patterson AFB, OH
Support research and development of multi-process cognitive algorithm framework for autonomous sensing  Conduct measurements and processing of

What Electrical and Electronics Engineers Do

Electrical engineers design, develop, test, and supervise the manufacturing of electrical equipment, such as electric motors, radar and navigation systems, communications systems, or power generation equipment. Electrical engineers also design the electrical systems of automobiles and aircraft.

Electronics engineers design and develop electronic equipment, such as broadcast and communications systems, from portable music players to global positioning systems (GPSs). Many also work in areas closely related to computer hardware.

Duties of Electrical and Electronics Engineers

Electrical engineers typically do the following:
  • Design new ways to use electrical power to develop or improve products
  • Perform detailed calculations to develop manufacturing, construction, and installation standards and specifications
  • Direct the manufacture, installation, and testing of electrical equipment to ensure that products meet specifications and codes
  • Investigate complaints from customers or the public, evaluate problems, and recommend solutions
  • Work with project managers on production efforts to ensure that projects are completed satisfactorily, on time, and within budget

Electronics engineers typically do the following:
  • Design electronic components, software, products, or systems for commercial, industrial, medical, military, or scientific applications
  • Analyze customer needs and determine the requirements, capacity, and cost for developing an electrical system plan
  • Develop maintenance and testing procedures for electronic components and equipment
  • Evaluate systems and recommend design modifications or equipment repair
  • Inspect electronic equipment, instruments, and systems to make sure that they meet safety standards and applicable regulations
  • Plan and develop applications and modifications for electronic properties used in parts and systems in order to improve technical performance
  • Electronics engineers who work for the federal government research, develop, and evaluate electronic devices used in a variety of areas, such as aviation, computing, transportation, and manufacturing. They work on federal electronic devices and systems, including satellites, flight systems, radar and sonar systems, and communications systems.
  • The work of electrical engineers and electronics engineers is often similar. Both use engineering and design software and equipment to do engineering tasks. Both types of engineers also must work with other engineers to discuss existing products and possibilities for engineering projects.
  • Engineers whose work is related exclusively to computer hardware are considered computer hardware engineers.

Work Environment for Electrical and Electronics Engineers

Electrical and electronics engineers held about 315,900 jobs in 2016. The industries that employed the most electrical engineers in 2014 were as follows:

Engineering services

  • Electric power generation, transmission and distribution    
  • Semiconductor and other electronic component manufacturing     
  • Navigational, measuring, electromedical, and control instruments manufacturing           
  • Research and development in the physical, engineering, and life sciences
  • The industries that employed the most electronics engineers in 2016 were as follows:
  • Telecommunications 
  • Federal government, excluding postal service         
  • Engineering services  
  • Semiconductor and other electronic component manufacturing     
  • Navigational, measuring, electromedical, and control instruments manufacturing           
  • Electrical and electronics engineers generally work indoors in offices. However, they may visit sites to observe a problem or a piece of complex equipment.
  • Electrical and Electronics Engineer Work Schedules
  • Most electrical and electronics engineers work full time.

How to Become a Electrical or Electronics Engineer

Electrical and electronics engineers must have a bachelor’s degree. Employers also value practical experience, so participation in cooperative engineering programs, in which students earn academic credit for structured work experience. Having a Professional Engineer (PE) license may improve an engineer’s chances of finding employment.

Electrical and Electronics Engineer Education

High school students interested in studying electrical or electronics engineering benefit from taking courses in physics and mathematics, including algebra, trigonometry, and calculus. Courses in drafting are also helpful, because electrical and electronics engineers often are required to prepare technical drawings.

In order to enter the occupation, prospective electrical and electronics engineers need a bachelor’s degree in electrical engineering, electronics engineering, or electrical engineering technology. Programs include classroom, laboratory, and field studies. Courses include digital systems design, differential equations, and electrical circuit theory. Programs in electrical engineering, electronics engineering, or electrical engineering technology should be accredited by ABET.

Some colleges and universities offer cooperative programs in which students gain practical experience while completing their education. Cooperative programs combine classroom study with practical work. Internships provide similar experience and are growing in number.

At some universities, students can enroll in a 5-year program that leads to both a bachelor’s degree and a master’s degree. A graduate degree allows an engineer to work as an instructor at some universities, or in research and development.

Important Qualities for Electrical and Electronics Engineers

Concentration. Electrical and electronics engineers design and develop complex electrical systems and electronic components and products. They must be able to keep track of multiple design elements and technical characteristics when performing these tasks.

Initiative. Electrical and electronics engineers must be able to apply their knowledge to new tasks in every project they undertake. In addition, they must engage in continuing education to keep up with changes in technology.

Interpersonal skills. Electrical and electronics engineers must be able to work with others during the manufacturing process to ensure that their plans are implemented correctly. This collaboration includes monitoring technicians and devising remedies to problems as they arise.

Math skills. Electrical and electronics engineers must be able to use the principles of calculus and other advanced math in order to analyze, design, and troubleshoot equipment.

Speaking skills. Electrical and electronics engineers work closely with other engineers and technicians. They must be able to explain their designs and reasoning clearly and to relay instructions during product development and production. They also may need to explain complex issues to customers who have little or no technical expertise.

Writing skills. Electrical and electronics engineers develop technical publications related to equipment they develop, including maintenance manuals, operation manuals, parts lists, product proposals, and design methods documents.

Licenses, Certifications, and Registrations

Licensure is not required for entry-level positions as electrical and electronics engineers. A Professional Engineering (PE) license, which allows for higher levels of leadership and independence, can be acquired later in one’s career. Licensed engineers are called professional engineers (PEs). A PE can oversee the work of other engineers, sign off on projects, and provide services directly to the public. State licensure generally requires

  • A degree from an ABET-accredited engineering program
  • A passing score on the Fundamentals of Engineering (FE) exam
  • Relevant work experience
  • A passing score on the Professional Engineering (PE) exam
  • The initial Fundamentals of Engineering (FE) exam can be taken right after graduation from a college or university. Engineers who pass this exam commonly are called engineers in training (EITs) or engineer interns (EIs). After getting work experience, EITs can take the second exam, called the Principles and Practice of Engineering exam.
  • Several states require engineers to take continuing education courses to keep their license. Most states recognize licensure from other states if the licensing state’s requirements meet or exceed their own licensure requirements.

Advancement for Electrical and Electronics Engineers

Electrical and electronic engineers may advance to supervisory positions in which they lead a team of engineers and technicians. Some may move to management positions, working as engineering or program managers. Preparation for managerial positions usually requires working under the guidance of a more experienced engineer.

Would a career as an Electrical or Electronics Engineer be a good fit for you? 

Electrical and Electronics Engineer Salaries

The median annual wage for electrical engineers was $91,410 in May 2014. The median wage is the wage at which half the workers in an occupation earned more than that amount and half earned less. The lowest 10 percent earned less than $59,140, and the highest 10 percent earned more than $143,200.

The median annual wage for electronics engineers, except computer was $95,790 in May 2016. The lowest 10 percent earned less than $61,780, and the highest 10 percent earned more than $147,570.
In May 2016, the median annual wages for electrical engineers in the top industries in which they worked were as follows:

  • Semiconductor and other electronic component manufacturing 
  • Research and development in the physical, engineering, and life sciences
  • Navigational, measuring, electro medical, and control instruments manufacturing            Engineering services   
  • Electric power generation, transmission and distribution  
  • Federal government, excluding postal service         
  • Navigational, measuring, electromedical, and control instruments manufacturing            
  • Semiconductor and other electronic component manufacturing  
  • Engineering services   
  • Telecommunications  
Job Outlook for Electrical and Electronics Engineers

Employment of electrical and electronics engineers is projected to show little or no change from 2014 to 2024. Change in employment is expected to be tempered by slow growth or decline in most manufacturing sectors in which electrical and electronics engineers are employed.

Job growth for electrical and electronics engineers will occur largely in engineering services firms, because more companies are expected to cut costs by contracting their engineering services rather than directly employing engineers. These engineers also will be in demand to develop sophisticated consumer electronics.

The rapid pace of technological innovation and development will likely drive demand for electrical and electronics engineers in research and development, an area in which engineering expertise will be needed to develop distribution systems related to new technologies. These engineers will play key roles in new developments having to do with solar arrays, semiconductors, and communications technologies.

Careers Related to Electrical and Electronics Engineers

Aerospace Engineers

Aerospace engineers design primarily aircraft, spacecraft, satellites, and missiles. In addition, they test prototypes to make sure that they function according to design.

Architectural and Engineering Managers

Architectural and engineering managers plan, direct, and coordinate activities in architectural and engineering companies.

Biomedical Engineers

Biomedical engineers combine engineering principles with medical and biological sciences to design and create equipment, devices, computer systems, and software used in healthcare.

Electrical and Electronics Installers and Repairers

Electrical and electronics installers and repairers install or repair a variety of electrical equipment in telecommunications, transportation, utilities, and other industries.

Electricians

Electricians install, maintain, and repair electrical power, communications, lighting, and control systems in homes, businesses, and factories.

Electro-mechanical Technicians

Electro-mechanical technicians combine knowledge of mechanical technology with knowledge of electrical and electronic circuits. They operate, test, and maintain unmanned, automated, robotic, or electromechanical equipment.

Sales Engineers

Sales engineers sell complex scientific and technological products or services to businesses. They must have extensive knowledge of the products’ parts and functions and must understand the scientific processes that make these products work.

Booking in advance for 2016 batch in most of the colleges is going on. So call us and Book your seats, at very modest and genuine rate. !! Seats are limited. Hurry Up!!

Contact Person(s):
Aditya Pandey (+91-9916566036)


Saturday, 20 August 2016

Know which course is better B.TECH IN COMPUTER SCIENCE ENGINEERING OR INFORMATION TECHNOLOGY

Direct admission in B.TECH IN COMPUTER SCIENCE ENGINEERING OR INFORMATION TECHNOLOGY

Get complete information about B.TECH IN COMPUTER SCIENCE ENGINEERING AND B.TECH IN INFORMATION TECHNOLOGY

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B.Tech Computer Science course covers almost all theoretical areas in  information and computation. The course will enable the students to  enter in to the Software Application, service, Sales and Marketing,  operations and even work as a programmer.

B.Tech Information Technology mainly focuses on the study of the use of  computers and telecommunications to recover, store and transfer  information. This can be in various forms like text, images, sound,  multimedia, etc. The B.Tech Information Technology covers mainly three  fields like namely network administration, computer maintenance and  programming. CSE(Computer Science & Engineering) and IT (Information technology) both are quite similar in some or the other manner. 

Main Difference :

CSE: Computer science engineers are involved in many aspects of computing, from the design of individual microprocessors, personal computers and supercomputers to circuit designing and writing software that powers them.

IT:  Information Technology deals with the use of electronic computers and computer software to store, protect process, transmit and securely retrieve data. IT professionals perform a variety of tasks that range from installing applications to designing complex computer networks and information databases.

The major  difference between both these field is that IT deals with the application of computing technology to real life processes, while, Computer Science deals with the science that facilitates these applications. To make it short and simple, Computer Science is the creation of software and hardware by using different programming skills. On the other hand, IT is just the selection of the proper software or hardware for the task.

Difference in course and core areas:

CSE: Computer Science engineering students study about design, implementation, and management of information system of both software and hardware processes. Students pursuing computer science study: Algorithms and Data Structure, Architecture, Artificial Intelligence and Robotics, Database and Information Retrieval, Human-Computer Communication, Numerical and Symbolic Computation, Operating Systems, Programming Languages and Software Methodology and Engineering.

IT: Information Technology deals with installation, development and implementation of computer systems and applications. Under this stream, students learn the following: Data Structures and Algorithms, Microprocessors and Interfacing, Computer Communication and Networking, Database Systems, Internet Technologies and Applications, Software Engineering etc.

Career scope:

CSE: Job openings for Software professionals is much higher in the corporate sector than in public sector. Professionals can join as junior programmer, database administrator, junior network manager, Data Analyst, Software Developer, Software Engineer, and Client-Server Systems Manager etc in the initial stage. Students have job opportunities at organizations like IBM, Intel, HP, TCS, INFOSYS, WIPRO, TECHMAHINDRA,CTS and Dell in India and abroad.

IT: Career options after B.Tech in Information Technology are good. IT Specialists are required in almost all range of employment fields such as finance, arts, medicine, defense, and other areas. Many opportunities are available in various IT firms all over India. Some of the leading IT Companies are Infosys, TCS, Wipro, Accenture, HCL Infotech, IBM, etc.  These professional can get jobs in many public sector firms. Some of the leading public sector firms are BSNL, ISRO, CDIT, CDAC, etc.

Option in Higher Study: Students who have completed their bachelor degree in Computer Science or in Information technology go for higher specialization in the related area. There are various colleges in India as well as abroad that offer Master’s program in Computer Science. Those who have pursued Masters of Business administration can attain both technical as well as administrative skills. Given below higher study options such as M.Phil and PhD also awaits professionals in Computer science and Information technology.

Masters in Technology
Masters in Engineering
Masters in Science
Masters in Business Administrations
M.Phil
Ph.D

Students only have to think about their interest and then select the field . They shouldn’t leave any space for any sort of confusion. Taking the right decision at the initial stage, would be a boon to students in the research field and to those who want to do more invention or become innovators for tomorrow’s world.

Computer science

Computer scientists are, in fact, scientists. They are focused with the theory of computational applications. That means they understand the “why” behind computer programs. Using algorithms and advanced mathematics, computer scientists invent new ways to manipulate and transfer information. Computer scientists are generally concerned with software, operating systems and implementation.

Like Neo in The Matrix, computer scientists can see and make sense of code. Computer science students will learn the fundamentals of different programming languages, linear and discrete mathematics, and software design and development. Computer scientists study the machine itself and understand how and why various computer processes operate the way they do.

Simply put, computer scientists can talk to computers. The field is based in mathematics—the language of computers. Computer scientists understand why computers work and can create a program or operating system that does what you want it to do. Careers in computer scienceComputer science is a rapidly growing field and is expected to see large increases in employment opportunities. High salaries are generally associated with computer science careers.

 If you’re pursuing a computer science degree, the following career paths are open to you:

Applications software developer. As the creative minds behind applications and programs, software developers design and build programs and applications for computers and technological devices. Angry Birds? A software developer made that. Microsoft Office? That would be software developers again. The median salary for a software developer is $90,530.

Systems engineer. Operating systems provide the foundation for computers and devices to function. Microsoft Windows, Linux and iOS are examples of types of operating systems. Systems engineers design and create those types of systems for use in personal computers, phones and even cars. The median pay for systems engineers is $94,180.

Web developer. Web developers are not graphic designers. Graphic designers create the images you see on websites; web developers program the code that makes a website function. Web developers integrate the graphics, audio and video into the site and monitor the site’s traffic, performance and capacity. The median salary for a Web developer is $75,660.

Computer engineering

To put it bluntly, computer engineers make computer parts work together. Computer engineers are responsible for the research, design and development of computer equipment like circuit boards, microchips, routers, video cards, etc. Some universities may treat this discipline as an off-shoot of electrical engineering.

It is beneficial for computer engineers to have a grasp of computer science. Computer engineers often deal with hardware-to-software integration, meaning they have to design and build processors and hardware that can support a given program. As technology advances and our devices become smaller and smaller, a main goal of computer engineers is to create microchips and microprocessors that work economically and efficiently.

Computer engineering students will study concepts in computer science, engineering and mathematics. By combining these three fields, computer engineers are able to solve hardware problems and create state-of-the-art machines that can handle the many tasks computers perform.

Careers in computer engineering

There’s not a lot of diversity in job titles in the computer engineering world. Diversity in the job comes from the various industries that employ computer engineers. You can find employment rates and median salary information for the top four industries in which computer engineers work below:
Federal government. As of 2010, the federal government employed seven percent of all computer engineers. The median annual pay for computer engineers working for the federal government is $102,950.

Computer and electronic product manufacturing. The majority of computer engineers (35 percent) work in this industry. The median salary for computer engineers in product manufacturing is $101,320.

Information technology

Information technology (IT) may adopt the monikers information systems or systems administration. 
Essentially, IT professionals are the users of technology. IT utilizes existing operating systems, software and applications in tandem to create a larger system that solves a specific business problem. IT constructs a network from established building blocks to carry out a task, such as an automated supplies ordering service.

Due to the nature of the work, IT professionals are more likely to interact with clients and co-workers outside of their department. They may help explain to a client how to solve technology problems or work with executives and business owners to construct a technology plan that will meet their business needs.

IT students will study network and database design in depth, and receive an introduction to basic theory and applied mathematics. Successful IT candidates will possess strong critical thinking skills; IT professionals are tasked with resourcefully and cost-effectively applying the tools at their disposal.Careers in information technology.At every level, from mom-and-pop shops to multinational corporations, businesses need IT. Over the next decade, career opportunities in IT are expected to grow faster than average. 

Depending on your level of education, a degree in IT can provide a comfortable paycheck.

Information security analysts. IT security analysts work to prevent cyberattacks by monitoring their business’s network for breaches and weak spots and to create emergency plans in the event of an attack. According to a 2012 survey by Robert Half Technology, the average salary for this position ranges between $89,000 and $121,500.

Network architect. Sometimes called network engineers, these IT professionals design and build communication networks, such as local area networks (LANs), wide area networks (WANs) and intranets. Robert Half Technology reports that the average salary for network architects is between $95,500 and $137,000.

Computer support specialists. Support specialists provide advice and troubleshooting help to individuals and businesses that have questions about their software. The median salary for computer support specialists is $46,260.

Database administrators. DBAs use software and programs to organize and store data for businesses that range from financial firms to shipping companies. Depending on the industry in which a DBA works, the median salary for this position ranges between $62,580 and $82,820.
Systems administrators. System administrators conduct the day-to-day maintenance and operation of a business’s networks, including LANs, WANs, intranets and other communication systems. Salaries for this position vary by industry. The median annual pay for system administrators ranges between $59,230 and $74,230.

YOU CAN TAKE DIRECT ADMISSION IN BTECH IN CSE OR BTECH IN IT IN GIVEN BELOW COLLEGES

  1. RV College of Engineering – Top 20 Engineering Colleges of COMEDK – Direct Admission through Management Quota
  2. PES Institute of Technology – Top 20 Engineering Colleges of COMEDK – Direct Admission through Management Quota
  3. BMS College of Engineering – Top 20 Engineering Colleges of COMEDK – Direct Admission through Management Quota
  4. MS Ramaiah Institute of Technology – Top 20 Engineering Colleges of COMEDK – Direct Admission through Management Quota
  5. Bangalore Institute of Technology – Top 20 Engineering Colleges of COMEDK – Direct Admission through Management Quota
  6. Sir M Visvesvaraya Institute of Technology – Top 20 Engineering Colleges of COMEDK – Direct Admission through Management Quota
  7. Dayananda Sagar College of Engineering – Top 20 Engineering Colleges of COMEDK – Direct Admission through Management Quota
  8. RNS Institute of Technology – Top 20 Engineering Colleges of COMEDK – Direct Admission through Management Quota
  9. PES Institute of Technology – Top 20 Engineering Colleges of COMEDK – Direct Admission through Management Quota
  10. BMS Institute of Technology – Top 20 Engineering Colleges of COMEDK – Direct Admission through Management Quota
  11. BNM Institute of Technology – Top 20 Engineering Colleges of COMEDK – Direct Admission through Management Quota
  12. JSS Academy of Technical Education – Top 20 Engineering Colleges of COMEDK – Direct Admission through Management Quota
  13. CMR Institute of Technology – Top 20 Engineering Colleges of COMEDK – Direct Admission through Management Quota

Booking in advance for 2016 batch in most of the colleges is going on. So call us and Book your seats, at very modest and genuine rate. !! Seats are limited. Hurry Up!!

Contact Person(s):
Aditya Pandey (+91-9916566036)


Wednesday, 17 August 2016

Direct admission in b.tech in the PES Institute of Technology (PESIT)

** Earlier you book the seats, lesser amount you have to pay Call - 9916566036 ***

PES University (PESU) is a private university in Bengaluru, India. Established in 1972, it is focused on four main educational areas: Engineering, Medicine, Management and Life Sciences. The institutions offer both foundation courses in these areas, as well as specialization with a Bachelors/ Master/ PhD degree. Originally named the PES Institute of Technology (PESIT), it was renamed in 2013.

Admission criteria

PESU admits 40% of its students to undergraduate courses based on their Karnataka CET and 60% seats based on PESSAT (the university's own entrance test) ranks. PESU also admits students under Management quota,which does not place any merit requirements.There is a lateral entry scheme in place, by which students holding diploma degrees can directly enter the second year of study in engineering. On graduating students receive a Bachelor of Engineering degree.

Students are admitted to postgraduate courses based on their GATE test scores as well as on their Post Graduate Karnataka CET scores. Upon graduating, they receive aMaster of Technology degree. The online registrations for PESSAT 2016 has commenced.

Under Graduate Programs

PESU offers Bachelor of Technology (B.Tech.), formerly B.E., 4 year degree programs in the following disciplines:

  • Computer Science and Engineering (total number of seats available is 480)
  • Mechanical Engineering (total number of seats available is 240)
  • Electronics and Communication Engineering (total number of seats available is 360)
  • Electrical and Electronics Engineering (total number of seats available is 120)
  • Biotechnology (total number of seats available is 60)
  • Civil Engineering (total number of seats available is 60)

Postgraduate departments

Department of MBA, which includes, Finance, Marketing and HR streams
Department of MCA
M.Tech (Computer Science and Engineering)
M.Tech (Electronics and Communication Engineering)
M.Tech (Mechanical Engineering)
M.Tech (Web Technologies)
M.Tech (Power Electronics)

All estimates are approximate only. The number of seats are subject to change.

Faculty and research

Crucible Of Research and Innovation (CORI) is a multi-disciplinary research centre at PESU. It was inaugurated by C.N.R Rao former Director, Indian Institute of Science on February 7, 2010. It has research facilities and a set of dedicated research staff who carry out research in their areas of interest.

BIOTECHNOLOGY

Biotechnology is the culmination of Life Sciences and Engineering resulting in technologies. These are exciting times for Biotechnology as it is considered the area that can solve sustainability issues for the human mankind. One can look for alternative renewable energy sources or mitigate climate change or produce medicines or discover new drugs or treatment technologies for health or tackle the requirements of meeting the hunger of billions of people or treat water and waste water or occupational health, etc., the answer lies in Biotechnology.

The Bachelors program in Biotechnology at PES University is a four year undergraduate degree course covering the span of Bioprocess Engineering, Cell and Molecular Biotechnology, Bioinformatics and Computational Biology and Medical and Environmental Biotechnology to address the sustainable issues which the human mankind has never dealt before.

The Bachelors of Engineering (B.E) in Biotechnology involves the application of engineering principles to biology and is more of an applied approach to Life Sciences laying the foundation by studying both hands on as well as formal teaching in basics of Biotechnology. It differs from the BSc and MSc Biotechnology which focuses more on the basic sciences and no focus on engineering aspects of biology. A student entering into the B.E Biotechnology program is introduced to subjects related to Biology such as Microbiology, Cell Biology, Molecular Biology, Biochemistry, in addition to engineering courses such as Bioprocess Calculations, Fluid Mechanics, Heat and Mass Transfer, Bioprocess Reaction Engineering and also Bioinformatics.

As the student approaches the intermediate level he or she would gear towards one of the specialized areas. Further, the student is trained hands on experience in the laboratories so as to gain knowledge of both the wet lab as well as dry lab. The program offers a choice of core courses in Biotechnology apart from a host of elective subjects in the respective domains. As part of the curriculum a student of Biotechnology is expected to complete a project of interest in their respective specialized area as a partial fulfilment of the B.E Biotechnology program. This gives the student an opportunity to excel either independently or as part of a team in conduction and execution of the project.

CIVIL

Civil Engineering as known is the oldest branch of engineering which comprises of all activities fulfilling the basic needs of the human beings. It aims at providing food, water, shelter, power and transportation. Civil engineering problems involve physical, mathematical, life, earth, social, communication and engineering sciences. It involves many other professional areas including architecture, planning, law, public health, economics, management, sociology, finance and other branches of engineering.

Department of Civil Engineering at PESIT was established in the year 2012 with an object to create world class civil engineering department with state of art facilities to excel in academics and research activities.

The department aims to create professionally superior and ethically strong students. To achieve this, the curriculum is developed in line with the current trends in civil engineering industry and research. Some examples are advanced CAD labs, 3D modeling using Sketchup, Revit Architecture, etc. Also the department has highly qualified faculty members from academics and industry with vast research experience working on cutting edge technology. The faculty has published technical papers addressing the current scenario, in leading journals and conferences.

The department is equipped with state of the art infrastructure like class rooms with modern teaching aids, laboratories that include 100 Tons strain controlled Universal Testing Machine, Total Stations etc and a library having adequate number of books on different fields of civil engineering. Students and faculty also have on-line access to most of the international journals.

The students and faculty are encouraged to attend and publish in conferences, workshops and seminars, take part in competitions related to civil engineering, set up various chapter/clubs to carry out research/activities of their interest, like IGBC, ICI, Saṃniveśa etc. Student Academic Support Program is conducted after the class hours for the benefit of slow learning students in all the subjects. Guest lectures, invited lectures from the academic and industry experts are arranged to keep the students and faculty informed of the latest developments and industry challenges. The department would also like to organize national and international conferences, seminars and symposia in future.

The department plans to offer M.Tech and Ph.D programs, setup centers of excellence in structural engineering, advanced materials, geotechnical and transportation engineering, take up consultancy involving planning and design of real life projects and offer specific training to students and industry, on a timely and need basis.

In all, the department aims to offer the best environment for under graduate engineering students to pursue academic studies, research/activities in the field of their interest.

The Department of Civil Engineering at PESIT is one of the new department of the institution with an annual intake of 120 students. The Department currently has total faculty strength of 13 inclusive of 2 Professors, 1 Associate Professor and 7 Assistant Professors and 3 Visiting Professors.

COMPUTER SCIENCE

The B.E. in Computer Science and Engineering programme is designed to create globally competent manpower for the information and communication technology (ICT) industry. At the same time, it is also designed to prepare the student for post graduate education in the best universities across the globe. These twin objectives are accomplished by including an optimal mix of fundamental theory subjects and practical, current and industry relevant subjects in the scheme of study.

Other courses such as database management systems, for instance, provide the student a good mix of theoretical and practical aspects of the particular technology. Such courses have theory and laboratory components that are well integrated throughout the semester. In addition, students choose from a wide array of elective courses in higher semesters to further their competence in their chosen area of specialization such as advanced computer architecture, computer networking, mobile communication, sensor networks and artificial intelligence.

These courses are revised frequently and include current topics such as Web 2.0, data analytics, cloud computing, mobile systems engineering, Web technologies and so on. In addition to the regular curriculum, the students get an opportunity to work as teaching and research assistants under the faculty members who are constantly involved in sponsored research and consulting projects. The scheme also encourages and provides students opportunities to obtain summer internships in reputed companies to make them industry ready.

ELECTRICAL AND ELECTRONICS

Improve Lives. Save the Planet.
Electrical and electronic engineering covers a wide range of general engineering principles and concepts. The branch tackles major global issues in: Transport , Energy, Healthcare, Telecommunications. This branch of engineering aims at Changing the world with revolutionary technology, improve people’s lives around the world and solve the planet’s energy needs. This program is a degree program that is industrially relevant, a well-paid and rewarding job when you graduate.

Electrical engineers are developing clean and efficient renewable energy and electric/hybrid vehicles to radically reduce our dependence on fossil fuel and to reduce our CO2 emissions.
Electrical and electronic engineering is revolutionizing mechanical and aerospace engineering with the introduction of smart electronics, modern control systems, electrical energy management and advanced communications. They are replacing our aging and inefficient power distribution systems with a revolutionary new Smart Grid.

For students who are interested in mathematics and science, electricity, energy and electronics, and want to design and invent things that benefit society, the best choice is electrical and electronic engineering degree.There is a particularly strong cross-over with aspects of aeronautical and mechanical engineering. It is also a very creative subject and many of our graduates find employment in the digital media industry. The subject lies at the heart of the internet. Other specialist areas include the techniques to reduce our carbon footprint by developing renewable energy solutions, rolling out smart energy grids, and designing hybrid and all-electric vehicles; and investigating the latest quantum effects of electronics and their application in security and computing.

Career opportunities

Electrical and electronics engineering graduates can expect to gain employment in power generation and distribution, electronic design, factory control, local government, public works and consulting. 90 per cent of our graduates are in well-paid full-time employment. There is strong demand for graduating electrical and electronic engineers!

The techniques and skills acquired by them will help in pursuing research in diverse fields like biomedical, reliability, optimization, control and in multi disciplinary areas.

THE IMPORTANCE OF PURSUING MASTER’S PROGRAM IN POWER ELECTRONICS.

Energy is the life-blood for continual progress of human civilization. Energy processing equipment or power electronic equipment is a key element in the conversion of billions of kilowatts of electrical energy especially in the field of adjustable speed drives and renewable energy systems, contributing to remarkable energy saving and environmental pollution control in a broader perspective.
Power electronics technology has seen rapid progress in the past five decades, including power semi conductor devices, converters, drives, green surface and aerospace transport systems and renewable energy systems.

Power electronics is interdisciplinary in nature and used in a wide variety of industries from computers to chemical plants to rolling mills.

The importance of power electronics has grown tremendously over the years. Smart power devices are expected to become ubiquitous and revolutionize the way power is handled. In order to offer better quality of power, lot of research is on in areas such as power factor
correction and harmonic compensation.

Power electronics has now been established as a major discipline in electrical engineering and is gradually tending to emerge as a high tech frontier technology with power engineering. In the 21st century, it is expected that there will be a tremendous impact of power electronics not only in global industrialization and efficient energy systems, but also in energy conservation, renewable energy systems and electric or hybrid vehicles. The role of power electronics will be as important and versatile as computer and information technology today.
It is quite apparent that power electronics is emerging as the most preferred area of specialization and therefore quite worthwhile pursuing a master’s degree in power electronics.

MECHANICAL

Department of Mechanical Engineering at PESIT was established in the year 1988. The department has an aggressive academic rigor in the autonomous program with a high quality curriculum.

The Department of Mechanaical Engineering offers Master’s degree in Automotive Engineering under Visvesvaraya Technological University. The department has highly qualified experts from both the academia and the industry with vast research and engineering experience. This helps offer high end courses, work on cutting edge technologies along with a curriculum that would help the students get ready for their professional career, be it the industry or academics.

The department is also setting up a research centre dedicated to automotive and aerospace researchand engineering now under the domain CARE (Center for Automobile Research and Engineering) and well facilitated computer labs with the most latest of hardware and software in line with industry requirements. The department has collaborative research relationships with many internationally reputed companies such as General Motors, Mann Hummel, Triveni, EKO, GE to name a few. The department is now expanding especially in the automotive domain to work on cutting edge research and technologies of electric and hybrid vehicles. The department also has high profile faculty who have joined from the Automotive and Aerospace industry with an average of greater than 25 years of experience. The department very soon is working to offer a Master’s degree in Aerospace engineering.

Sufficient class rooms and systems are provided for students use. The department also boasts of PACE – a one of its kind partnership that General Motors has with a few selected institutes in south east Asia. The department also hosts the Auto and Aero clubs and has a very active SAE students chapter. The students have won accolades by participating in national and international events.
The department has innumerable books to cater to the students, faculty and research. The department also has on-line access to most of all international journals. The faculty have authored scholarly papers in leading journals, are key note speakers in international conferences and organize international conferences and symposia. The department also has a wind and a water tunnel facility along with all the mechanical labs, workshops and related infra structure to be used by the faculty and students.

In addition the department offers specific training to industry, students and faculty on a timely basis.
In all, the department offers the best environment for Master’s and Ph.D students to pursue research in the field of their interest in Automotive and Aerospace engineering and research. Main fields of activity are in computational mechanics (CAE and CFD including computational bio-mechanics), automotive and aero space design and engineering, electric and hybrid vehicles, alternate materials and concepts, sensors and embedded systems, infotonics to name a few.
The Department of Mechanical Engineering of PESIT is one of the oldest departments of the institution and was started in the year 1988. The Department has an annual intake of 180 students presently, with alumni strength of over 3000 students, who can be found in the top notch companies and universities across the world.

The Department has total faculty strength of 30 inclusive of 10 Professors, 3 Associate Professors and 14 Assistant Professors and 3 Visiting Professors.
The Department is among the top three in terms of choice of students in CET every year and has faculty with an average teaching experience of 18.1 years. Some of the faculty members have teaching experience upto 50 years. Besides teaching the faculty of the department have an impeccable record in research and consultancy. In the past 3 years the faculty of the Department completed upto 2.33 crores worth of funded projects and presently projects worth 41.23 lakhs are still in progress.
The Faculty have a rich record of publishing articles in National and International Journals and have published more than 75 papers in reputed peer reviewed International Journals and more than 100 papers in National & International Conferences over the past five years.

The Department has state-of-the-art infrastructure which include facilities such as Subsonic Wind Tunnel, Water Tunnel, 200 ton Hydraulic Press, High Velocity Oxy-fuel Spraying Equipment, Grid Blasting Machine, Slurry Test Machine, Air Jet Erosion Machine, Salt Spray Tester, Pin-on-disc Scratch Test Machine, Vicker’s Micro-Hardness Tester, Rapid Prototyping Machine, 100 ton UTM and many others. It is also home to the PACE (Partners for Advancement of Collaborative Engineering Education) lab which is an initiative of General Motors Inc., USA, from the past 6 years.
The Department has unique student project initiatives such as Team HAYA (Formula Racing Team), Team AEOLUS (aero modeling team) and Team SAMKARAN (hybrid car team). The student teams have participated in National and International competitions as part of these teams and won numerous prizes.

Booking in advance for 2016 batch in most of the colleges is going on. So call us and Book your seats, at very modest and genuine rate. !! Seats are limited. Hurry Up!!

Contact Person(s):
Aditya Pandey (+91-9916566036)


Monday, 15 August 2016

Why should take direct admission in b.tech in Nitte Meenakshi Institute of Technology (NMIT)

Get complete information about direct admission , fees and placements in Nitte Meenakshi Institute of Technology (NMIT)

*** Earlier you book the seats, lesser amount you have to pay Call - 9916566036 ***

Nitte Meenakshi Institute of Technology (NMIT)

Nitte Meenakshi Institute of Technology (also referred to as NMIT) is an autonomous engineering college in Bangalore,Karnataka, India. The college is and approved by the AICTE, New Delhi. NMIT offers a four-year graduate programme in engineering leading to the award of the degree Bachelor of Engineering (B.E.). The college postgraduate programmes in

Nitte Meenakshi Institute of Technology (NMIT) is an Autonomous Institution affiliated to the Visvesvaraya Technological University (VTU), with the approval of UGC.NMIT got accredited by the National Board of Accreditation [NBA] under Tier-1 status (for 4 Programs) and Grade-A status by National Assessment and Accreditation Council [NAAC - UGC ]. NMIT is the youngest engineering college in the country to be conferred the prestigious Autonomous Status by UGC/Govt. of Karnataka, New-Delhi in the year 2007.

NMIT is the only unaided private engineering college in Karnataka State to be selected by the Govt. of India for World Bank Funding under TEQIP Phase II-Subcomponent 1.1 in the year 2011.
NMIT has a strong focus on excellence in education, research and promotion of Innovation and entrepreneurship.Innovation and Entrepreneurship Development Centre was established inthe year 2010 and funded (to the tune of Rs. 45 lakhs) by the Department of Science and Technology (NSTEDB), New Delhi.

NMIT has established Business Incubator supported by MSME (Micro, Smalland Medium Enterprises), Govt. of India.NMIT has established an Innovation Club supported by VisvesvarayaTechnological University and Govt. of Karnataka with a seed money of Rs 5Lakhs.
NMIT has several sponsored research projects amounting to Rs.7+ Crores sanctioned by different reputed National Funding Agencies such as DST, DIT, AICTE, DRDO Labs, VGST, IEEE, VTU etc.
NMIT is a unique institution which has established five multi-disciplinary research centres viz for Small Satellites, Robotics, Nanomaterial & MEMS, Computational Fluid Dynamics andDesign Engineering & Process Simulation.

First college in India to introduction of Robotics Engineering-Lego Mindstorms and TETRIX Course with Laboratory for II Year B.E Students in AY 2015-16. The course is on the lines of few US/European Universities.NMIT is recognised by ISRO as a Centre for Small Satellite Research (CSSR) for undertaking collaborative research on space technology and satellite development. NMIT has led a consortium that designed and built STUDSAT-1, a satellite of PICO category. Launched by ISROs PSLV-C15 on 12 July 2010. This success is listed in the Limca book of records.
Working model of Pick & Place Robot has been kept as a Permanent Exhibit in Birla Science Center, Hyderabad

NMIT has a unique Scheme of Deputing UG Students to Industry,R&D Organizations, IISc, IITs and NID for a minimum period of 6 weeks internship leading to academic credits.NMIT offers wide range of academic programs comprising of seven UG and eight PG programs in Engineering besides MBA and MCA. Ten Departments of NMIT offer doctoral programs of VTU / Mysore University.
Highly qualified and experience faculty comprising 55+Ph.Ds primarily from IISc, IITs & NITs. An additional 60+ Faculty are pursuing Ph.Ds in different research centres of NMIT as well as in other Institutions of eminence.

  • NMIT has well equipped laboratories with more than 1600+ computers. NMIT has advanced software, library resources and high speed Internet connectivity 100 Mbps (leased line - 1:1).
  • NMIT is identified as Regional Nodal Centres of IIT-B/ IIT-KGP for faculty development programs under National Mission on Education through ICT(NMEICT), under MHRD, Govt. of India.
  • NMIT has an active and dynamic Training and Placement cell. The Placement cell successful attracted a large number of reputed well known organizations for on-campus placement. The Placement cell conducts programs to improve the background and competence of students by enhancing soft skills / analytical abilities / problem solving capabilities/ attitudinal and leadership qualities.
  • The institute has separate modern hostel facilities in the campus for boys and girls with in-house dining facilities.

Master of Computer Applications - MCA
  • M.Tech in -Computer Networking Engineering,Digital Communications &Netwotking Engineering,VLSI & Embedded Systems,Computer Science & Engineering
  • Master of Business Administration(MBA),
  • M.Tech in Thermal Power Engineering,Machine Design,Structural Engineering
  • The campus is on a 23-acre (93,000 m2) site in Govindapura, Gollahalli village 3 km from Baglur cross, on the way to Devanahalli airport on Hyderabad-Bangalore NH 7 and it is 25 km from Centre of Bengaluru.

Courses offered

Undergraduate programme
  • Bachelor of Engineering (BE)
  • Mechanical Engineering [HOD:Dr. Kiran Aithal S ( ME (Machine Design), Ph.D(NITK[1])]
  • Electronics & Communication Engineering [HOD: Dr. S. sandaya (Ph.D (IISC)]
  • Computer Science Engineering [HOD: Dr. Venkatesh K (MS, PhD]
  • Aeronautical Engineering [HOD: Dr. Shaik Ismail, M.Tech. (IISc), Ph.D. (NIT Trichy)]
  • Civil Engineering [HOD: Dr. H.R. Dhanajaya (B.E (Civil), M.E, PhD (Structures) IISc]
  • Information Science Engineering [HOD: Dr. Sanjay H.A (M.Tech,Ph.D(IISc]
  • Electrical & Electronics Engineering [HOD: Dr. H.M Ravikumar (M.E.,Ph.D.[IIT-Bombay],FIETE)

Postgraduate programme

Master of Business Administration (MBA)
Specializations
Finance
Human Resource
Marketing
International Business
Master of Technology (M.Tech)
VLSI and Embedded Systems
Computer Science and Engineering
Master of Computer Application (MCA)

Infrastructure

Total area: 23 acres (93,000 m2)

Laboratories

NMIT CleanRoom

Electronics lab of 10,000ppm used as integration chamber of first Indian Pico-satellite StudSat

Computer lab 2

7 P-IV Computers + 8 Sun Micro Workstation; 20 systems connected through LAN; 2 printers; Internet Connectivity of 256 kbit/s through leased line.

Electronics lab

7 P-IV Computers

Mechanical lab

30 lathe machines along with 1 CNC lathe. Drilling, milling, sapper machines are available. highly equipped design lab, IC Engine lab, Manufacturing lab and Heat and mass transfer lab. Department also have 2 well equipped CAD labs.

Aeronautical lab

Wind tunnel lab

College also have a R&D Department always available for the students for research in different areas. A well equipped Robotics and MEMS lab are also with around 7-8 ongoing projects.

Student activities

Inter-collegiate techno-cultural fest

Anaadyanta, a Sanskrit word meaning "the one which has neither the beginning nor the end..." is also an epithet for Lord Shiva. The institution hosts its inter-collegiate techno-cultural fest under this banner. It started in 2004 with around 20 events and 19 performing colleges. In 2008 the college count reached 13. Eminent personalities like Kannada superstar Puneeth Rajkumar, former VTU vice chancellor Dr. Balaveera Reddy, Lokayukta Justice Santhosh Hegde, etc. have graced the events. The event has hosted performances by Moksha, DJ Jasmet, Total Mukthi, DJ Goapu, and percussionist Gopi.

Library

The library has online search facilities, a Book Bank, and an inter-library loan facility with British Council Library, Bangalore and NAL, Bangalore.

Hostels

Separate hostels for boys and girls are within the campus. The junior boys' hostel Sambhavi accommodates more than 350 students and the senior boys' hostels Kumardhara and Netravathi accommodates over 250 boys in each. The hostel for junior girls' Nandini accommodates over 250 girls and in senior girls' hostel Kaveri about 200 girls. NHA, a hostel association of NMIT, organizes sports and cultural events, encouraging the participation of hostelites. Now one more hostel is build named as NEW HOSTEL for boys.

Facilities

National Cadet Corps

The Institute has raised the NCC Signal Coy in 2004. NCC unit at NMIT conducting activities under the leadership of Capt.Rajesh.N, Associate NCC Officer.

Games and sports

Football, cricket, basketball and volleyball courts are available inside the campus. The college hosted SRCA Cricket Tournament in October 2004. The annual inter-collegiate volleyball tournament was held in December 2004. The annual college sports meet was held in June 2005.

Soft skills

Campus Connect is a programme called by Infosys that helps students during the process of recruitment.
Kannada Rajyothsava is conducted annually in November as a part of Kannada Cultural Activity organised by BELAKU. Students and staff take part in the programme which showcases the cultural heritage of Kannada and Karnataka.

Alumni association: Nitte Alumni Association has members across the globe. The annual alumni meet is in July/August. Plans to start Nitte International Alumni are in progress. Members of alumni help and support current students in terms of studies, placement and any other support.

Booking in advance for 2016 batch in most of the colleges is going on. So call us and Book your seats, at very modest and genuine rate. !! Seats are limited. Hurry Up!!

Contact Person(s):
Aditya Pandey (+91-9916566036)