Bachelor of Science in Engineering Technology in Electrical Engineering Technology

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The Bachelor of Science in Electrical Engineering Technology  provides students with the opportunity to develop strengths in the design, implementation, integration, analysis, testing, and support of electronic circuits and electrical systems that are critical to the achievement of enterprise, project, research, and business goals.

This focused bachelor's degree includes courses in mathematics, physics, electric circuit theory, analog and digital circuits and systems, power circuits and systems, and electric circuit and system analysis. Specializations are available in Electrical Power Technology, Embedded System Technology, and Mobile and Web Communication Technology.

Program Objectives

The objective of the Electrical Engineering Technology (EET) Program at Northeastern University is to prepare graduates with the skills necessary to enter careers in the design, analysis, construction, testing, operation, and maintenance of electrical and electronic circuits and systems. The course of study enables our graduates, within a few years of graduation, to secure a successful engineering career and contribute decisively to the application, improvement, and development of technology by demonstrating their ability to:

  • Address and solve complex and broadly defined engineering problems related to their discipline and field of specialization
  • Work as team members, show leadership, and communicate technical concepts and ideas effectively
  • Manifest a high level of professional integrity, and make ethical decisions that will have a positive impact on the organization and society
  • Embrace and practice lifelong learning, continue personal growth, and professional self-improvement

Bachelor of Science in Electrical Engineering Technology graduates design, analyze, construct, deploy, maintain, and test electric and electronic circuits and systems for companies of all sizes and disciplines. Core and foundation courses allow students the opportunity to think critically and gain insights into disciplines other than their particular field of study. Requirements include learning the use of traditional and emerging techniques and technologies to accomplish tasks effectively and using appropriate mathematical, physics, and computing techniques and concepts to obtain solutions to problems.

Student Learning Outcomes

The curriculum of the Electrical Engineering Technology Program offered by the College of Professional Studies at Northeastern University will enable students to develop:

a. Ability to select and apply the knowledge, techniques, skills, and modern tools of the discipline to broadly defined engineering technology activities

b. Ability to select and apply a knowledge of mathematics, science, engineering, and technology to engineering technology problems that require the application of principles and applied procedures or methodologies

c. Ability to conduct standard tests and measurements; to conduct, analyze, and interpret experiments; and to apply experimental results to improve processes

d. Ability to design systems, components, or processes for broadly defined engineering technology problems appropriate to program educational objectives

e. Ability to function effectively as a member or leader on a technical team

f. Ability to identify, analyze, and solve broadly defined engineering technology problems

g. Ability to apply written, oral, and graphical communication in both technical and nontechnical environments and an ability to identify and use appropriate technical literature

h. Understanding of the need for, and ability to engage in, self-directed continuing professional development

i. An understanding of, and commitment to address, professional and ethical responsibilities including a respect for diversity

j. Knowledge of the impact of engineering technology solutions in a societal and global context

k. Commitment to quality, timeliness, and continuous improvement

Enrollment, Graduation Rate, and Persistence Rate

The Bachelor of Science in Engineering Technology in Electrical Engineering Technology is accredited by the Engineering Technology Accreditation Commission of ABET, Inc.

ABET, Inc.
111 Market Place, Suite 1050
Baltimore, MD 21202-4012
Phone: 410-347-7700


Please note: The College of Professional Studies undergraduate programs will operate on a semester academic calendar in fall 2016. Read more...

Students who started this program prior to Fall 2015 should follow the curriculum reflected on their manual degree audit, which can be obtained by contacting their academic advisor.


General Foundation Courses (20 s.h.)

ENG 1105 College Writing 1 3 s.h.
ENG 1106 College Writing 1 Lab 1 s.h. 
ENG 3105 Writing for the Professions–Science & Engineering 3 s.h.
ENG 3106 Writing for the Professions Lab–Science & Engineering 1 s.h.
  Engaging Difference and Diversity 3 s.h.
PHL 2140 Ethical Issues in Science & Engineering 3 s.h.
  Interpreting Culture 3 s.h.
  Understanding Societies and Institutions 3 s.h.

General Engineering Foundation Courses (39 s.h.)

MTH 2100 Calculus 1 3 s.h. 
MTH 2105 Calculus 2 3 s.h. 
MTH 2110 Calculus 3 3 s.h.
MTH 3200 Differential Equations 3 s.h.
MTH 3300 Applied Probability and Statistics 3 s.h.
CHM 1100/1101
BIO 1100/1101
General Chemistry 1 & Lab
Biology 1 & Lab
4 s.h. 
PHY 1200 Physics 1 3 s.h. 
PHY 1201 Physics 1 Lab 1 s.h.
PHY 2200 Physics 2 3 s.h.
PHY 2201 Physics 2 Lab 1 s.h.
GET 1100 Introduction to Engineering & Technology 3 s.h.
GET 1150 Foundations of Engineering Graphics & Design 3 s.h.
GET 2100 Computer Engineering Programming & Analysis 3 s.h.
GET 2200 Engineering Economy 3 s.h.

Electrical Engineering Technology Core Courses (39 s.h.)

EET 2000
Circuits 1 3 s.h.
EET 2001 Circuits 1 Lab 2 s.h.
EET 2100 Circuits 2 3 s.h.
EET 2101 Circuits 2 Lab 2 s.h.
EET 3100 Electronics 1 3 s.h.
EET 3101 Electronics 1 Lab 2 s.h.
EET 3200 Electronics 2 3 s.h.
EET 3201 Electronics 2 Lab 2 s.h.
EET 3300 Digital Logic 3 s.h.
EET 3301 Digital Logic Lab  2 s.h.
EET 3400 Digital Electronics 3 s.h.
EET 3401 Digital Electronics Lab  2 s.h.
CET 2100 Essentials of Computer Organization 3 s.h.
EET 3700 Linear Systems 3 s.h.
EET 3800 Control Systems 3 s.h.


Technical Electives (9 s.h.)

Choose three 3-credit technical electives (with lab if applicable) (3000 or 4000 level). One must be EET; the other two must be from CET, EET, ITC, or MET.

Engineering Technology Capstone (6 s.h.)

GET 4840 Engineering Technology Capstone Project Proposal 2 s.h.  
GET 4850 Engineering Technology Capstone Project Execution 4 s.h.  

Open Electives (14 s.h.) 


 Required minimum credit hours: 127 s.h.


Technical Electives
EET 4100 Foundations of Power Systems 3 s.h.
EET 4110 Electromagnetics 3 s.h.
EET 4120 Digital Signal Processing 3 s.h.
EET 4130 Electric Machines 3 s.h.
EET 4140 Digital Communication Systems 3 s.h.

The Electrical Engineering Technology degree program is accredited by the Engineering Technology Accreditation Commission of ABET, INC, 111 Market Place, Suite 1050, Baltimore, MD 21202-4012; telephone 410.347.7700

Admissions Requirements

Below are the official Admissions Requirements for this program.

Student Profile

Who Will Your Classmates Be?

The Bachelor of Science in Electrical Engineering technology degree is well suited for students who are interested in medical electronics, automation, instrumentation, radar, and robotics.

Potential careers include:

  • Electrical and electronic engineer
  • Electrical, electronic, industrial, and mechanical technician or technologist
  • Computer engineer
  • Technology sales

Career Outlook

Put Your Degree to Work

Graduates of the electrical engineering technology program can pursue a range of careers—from electronic gaming to robotics as well as employment opportunities in:

  • Public and private research laboratories
  • Engineering consulting firms specializing in industrial and plant applications
  • Electric utilities
  • Organizations concerned with the operation, installation, or sale of electrical or electronic systems and equipment

Job opportunities are expected to remain strong, with growth expected in electrical device development and manufacturing.

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Next Term Starts
  • Summer Graduate
    Jul 10, 2017 (4-, 6-, and 8-week classes)
    Aug 7, 2017 (4-week classes)
  • Fall Undergraduate
    Sep 4, 2017 (7.5- and 15-week classes)
    Oct 25, 2017 (7.5-week classes)
  • Fall Graduate
    Sep 18, 2017 (6- and 12-week classes)
    Oct 30, 2017 (6-week classes)

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