Electronics & Telecommunication Engineering aims to develop skills and deepen knowledge of the basic concepts and theories in the field of Signal Processing, RF and Microwave communication, Embedded systems etc. It has been instrumental in producing quality engineers of global standards with capabilities of facing new challenges in the Telecommunication field.

  • Branch started in the year : 1996-1997
  • Changes in U.G. intake since beginning till date :

Year

Intake

1996 to 1999

60

2000 to till date

120

 
  • Lateral entry at S.E. (Direct Admission After Diploma): 24
  • Name of departmental student body: IETE – KJSISF
  • NBA Accreditation status: Provisionally Accredited in November 2013(For two years)
  • Post Graduate course started in year 2010-2011 with intake of 18 students.

Vision:

To become center of excellence for creating competent engineers with evolving technical skills, leadership qualities with human values to pursue excellence in professional field.

Mission:

Providing quality education to

  • Develop technical skills, soft skills and professional ethics to cater the needs of industry.
  • Promote research and creativity in Engineering and technology.
  • Inculcate awareness towards societal needs  and environmental issues.

 

Program Education Objectives :

A graduate of Electronics and Telecommunication Engineering will be able to: 

IndexObjective
PEO 1
excel in professional career by adapting emerging technologies.
PEO 2
pursue higher education, research, address environmental issues with ethical practices.
PEO 3
solve real life problems in a team as a member or as a leader.

 

 





Program Outcomes :
After successful completion of the program, graduate will be able to:

Index

Outcome

PO1

Apply  knowledge of differential equations, vector calculus, complex variables, matrix theory, probability theory, Boolean algebra, physics, chemistry and network and EM field analysis  to communication systems .

PO2

Identify ,formulate and analyze electronics & telecommunication engineering problems and derive conclusions using first principles of mathematics .

PO3

Design electronic systems, components or processes to meet desired needs within realistic constraints considering social, cultural and public health issues.

PO4

Design and conduct experiments, analyze and interpret data for analog, digital and communication systems .

PO5

Use appropriate techniques, skills and modern engineering and software tools to analyze and design telecommunication engineering problems.

PO6

Apply contextual knowledge to understand social ,health, safety and legal issues relevant to engineering profession.

PO7

Understand the impact of Electronics and Telecommunication Engineering solutions on society and environment for sustainable development.

PO8

Apply knowledge of Electronics and Telecommunication engineering in profession with ethical responsibilities.

PO9

Function as an individual or leader in diverse teams.

PO10

Communicate on engineering activities with engineering community and society at large.

PO11

Apply principles of engineering activities and project management in multidisciplinary environments.       

PO12

Engage in life-long learning in context of technological advances

 


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