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Become A Mechanical Systems Designer

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Working As A Mechanical Systems Designer

  • Interacting With Computers
  • Making Decisions and Solving Problems
  • Communicating with Supervisors, Peers, or Subordinates
  • Analyzing Data or Information
  • Getting Information
  • Deal with People

  • Make Decisions

  • $84,000

    Average Salary

What Does A Mechanical Systems Designer Do

Mechanical engineering is one of the broadest engineering disciplines. Mechanical engineers research, design, develop, build, and test mechanical and thermal sensors and devices, including tools, engines, and machines.

Duties

Mechanical engineers typically do the following:

  • Analyze problems to see how mechanical and thermal devices might help solve a particular problem
  • Design or redesign mechanical and thermal devices or subsystems, using analysis and computer-aided design
  • Develop and test prototypes of devices they design
  • Analyze the test results and change the design or system as needed
  • Oversee the manufacturing process for the device

Mechanical engineers design and oversee the manufacture of many products ranging from medical devices to new batteries.

Mechanical engineers design power-producing machines, such as electric generators, internal combustion engines, and steam and gas turbines, as well as power-using machines, such as refrigeration and air-conditioning systems.

Mechanical engineers design other machines inside buildings, such as elevators and escalators. They also design material-handling systems, such as conveyor systems and automated transfer stations.

Like other engineers, mechanical engineers use computers extensively. Mechanical engineers are routinely responsible for the integration of sensors, controllers, and machinery. Computer technology helps mechanical engineers create and analyze designs, run simulations and test how a machine is likely to work, interact with connected systems, and generate specifications for parts.

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How To Become A Mechanical Systems Designer

Mechanical engineers typically need a bachelor’s degree in mechanical engineering or mechanical engineering technology. Mechanical engineers who sell services publicly must be licensed in all states and the District of Columbia.

Education

Mechanical engineers typically need a bachelor’s degree in mechanical engineering or mechanical engineering technology. Mechanical engineering programs usually include courses in mathematics and life and physical sciences, as well as engineering and design courses. Mechanical engineering technology programs focus less on theory and more on the practical application of engineering principles. They may emphasize internships and co-ops to prepare students for work in industry.

Some colleges and universities offer 5-year programs that allow students to obtain both a bachelor’s and a master’s degree. Some 5-year or even 6-year cooperative plans combine classroom study with practical work, enabling students to gain valuable experience and earn money to finance part of their education.

ABET accredits programs in engineering and engineering technology. Most employers prefer to hire students from an accredited program. A degree from an ABET-accredited program is usually necessary to become a licensed professional engineer.

Important Qualities

Creativity. Mechanical engineers design and build complex pieces of equipment and machinery. A creative mind is essential for this kind of work.

Listening skills. Mechanical engineers often work on projects with others, such as architects and computer scientists. They must listen to and analyze different approaches made by other experts to complete the task at hand.

Math skills. Mechanical engineers use the principles of calculus, statistics, and other advanced subjects in math for analysis, design, and troubleshooting in their work.

Mechanical skills. Mechanical skills allow engineers to apply basic engineering concepts and mechanical processes to the design of new devices and systems.

Problem-solving skills. Mechanical engineers need good problem-solving skills to take scientific discoveries and use them to design and build useful products.

Licenses, Certifications, and Registrations

Licensure is not required for entry-level positions as a mechanical engineer. 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, typically at least 4 years
  • A passing score on the Professional Engineering (PE) exam

The initial FE exam can be taken after one earns a bachelor’s degree. Engineers who pass this exam are commonly called engineers in training (EITs) or engineer interns (EIs). After meeting work experience requirements, EITs and EIs can take the second exam, called the Principles and Practice of Engineering.

Several states require engineers to take continuing education to renew their licenses every year. Most states recognize licensure from other states, as long as the other state’s licensing requirements meet or exceed their own licensing requirements.

Several professional organizations offer a variety of certification programs for engineers to demonstrate competency in specific fields of mechanical engineering.

Advancement

A Ph.D. is essential for engineering faculty positions in higher education, as well as for some research and development programs. Mechanical engineers may earn graduate degrees in engineering or business administration to learn new technology, broaden their education, and enhance their project management skills. Mechanical engineers may become administrators or managers after obtaining the requisite experience.

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Average Length of Employment
Plumbing Designer 6.0 years
Facility Designer 4.1 years
Systems Designer 3.2 years
Designer 3.1 years
Top Careers Before Mechanical Systems Designer
Designer 8.5%
Draftsman 6.1%
Mechanic 3.0%
Top Careers After Mechanical Systems Designer
Designer 3.4%
Draftsman 2.7%

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Top Skills for A Mechanical Systems Designer

  1. Engineering Department
  2. Hvac
  3. CAD
You can check out examples of real life uses of top skills on resumes here:
  • Tracked project level interdependencies within the engineering department.
  • Perform cumulative design and layout of HVAC/Plumbing systems of commercial and residential buildings, sky-rises, apartments, Halls and Churches.
  • Participate in implementation and development of company CAD and Technology Standards.
  • Interfaced mechanical designs for compatibility with Greenfield facility architectural and structural requirements.
  • Calculated individual room heating and cooling requirements and sized mechanical equipment appropriately.

Mechanical Systems Designer Demographics

Gender

Male

81.8%

Female

10.9%

Unknown

7.3%
Ethnicity

White

62.2%

Asian

11.8%

Black or African American

11.1%

Hispanic or Latino

9.8%

Unknown

5.1%
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Foreign Languages Spoken

Carrier

60.0%

Spanish

40.0%

Mechanical Systems Designer Education

Schools

University of California - Berkeley

10.3%

Stevens Institute of Technology

10.3%

Wichita State University

6.9%

Bauder College

6.9%

Union College (New York)

6.9%

Lawrence Technological University

6.9%

Delaware Technical and Community College

6.9%

University of Iowa

3.4%

Purdue University

3.4%

Arapahoe Community College

3.4%

Bryant and Stratton College

3.4%

Stanford University

3.4%

Allan Hancock College

3.4%

North Hennepin Community College

3.4%

Brigham Young University

3.4%

Drexel University

3.4%

Cuyahoga Community College

3.4%

College of New Jersey

3.4%

Guilford Technical Community College

3.4%

Northern Illinois University

3.4%
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Majors

Mechanical Engineering

35.9%

Drafting And Design

18.4%

Engineering

7.8%

Mechanical Engineering Technology

5.8%

Business

3.9%

Industrial Technology

2.9%

Graphic Design

2.9%

Architectural Engineering Technology

1.9%

Legal Research And Advanced Professional Studies

1.9%

Fine Arts

1.9%

Interior Design

1.9%

Automotive Technology

1.9%

Computer Science

1.9%

Environmental Control Technologies/Technicians

1.9%

Criminal Justice

1.9%

Construction Management

1.9%

Electrical Engineering

1.9%

Systems Engineering

1.0%

Manufacturing Engineering

1.0%

Computer Information Systems

1.0%
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Degrees

Bachelors

39.0%

Other

26.0%

Associate

14.6%

Masters

11.4%

Certificate

5.7%

Diploma

2.4%

License

0.8%
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