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Information systems engineer job growth summary. After extensive research, interviews, and analysis, Zippia's data science team found that:
The projected information systems engineer job growth rate is 5% from 2018-2028.
About 18,200 new jobs for information systems engineers are projected over the next decade.
Information systems engineer salaries have increased 9% for information systems engineers in the last 5 years.
There are over 109,965 information systems engineers currently employed in the United States.
There are 248,183 active information systems engineer job openings in the US.
The average information systems engineer salary is $104,903.
| Year | # of jobs | % of population |
|---|---|---|
| 2021 | 109,965 | 0.03% |
| 2020 | 105,559 | 0.03% |
| 2019 | 97,795 | 0.03% |
| 2018 | 254,313 | 0.08% |
| 2017 | 248,148 | 0.08% |
| Year | Avg. salary | Hourly rate | % Change |
|---|---|---|---|
| 2026 | $104,903 | $50.43 | +3.4% |
| 2025 | $101,446 | $48.77 | +2.3% |
| 2024 | $99,149 | $47.67 | +1.2% |
| 2023 | $98,001 | $47.12 | +1.8% |
| 2022 | $96,310 | $46.30 | +2.4% |
| Rank | State | Population | # of jobs | Employment/ 1000ppl |
|---|---|---|---|---|
| 1 | District of Columbia | 693,972 | 830 | 120% |
| 2 | Virginia | 8,470,020 | 4,159 | 49% |
| 3 | Maryland | 6,052,177 | 2,557 | 42% |
| 4 | Colorado | 5,607,154 | 2,235 | 40% |
| 5 | Massachusetts | 6,859,819 | 2,503 | 36% |
| 6 | Delaware | 961,939 | 347 | 36% |
| 7 | North Dakota | 755,393 | 268 | 35% |
| 8 | Alaska | 739,795 | 262 | 35% |
| 9 | Vermont | 623,657 | 220 | 35% |
| 10 | Washington | 7,405,743 | 2,422 | 33% |
| 11 | Utah | 3,101,833 | 1,026 | 33% |
| 12 | New Hampshire | 1,342,795 | 434 | 32% |
| 13 | Rhode Island | 1,059,639 | 334 | 32% |
| 14 | Wyoming | 579,315 | 186 | 32% |
| 15 | Oregon | 4,142,776 | 1,238 | 30% |
| 16 | Minnesota | 5,576,606 | 1,593 | 29% |
| 17 | South Dakota | 869,666 | 254 | 29% |
| 18 | Nebraska | 1,920,076 | 545 | 28% |
| 19 | Montana | 1,050,493 | 289 | 28% |
| 20 | Arizona | 7,016,270 | 1,808 | 26% |
| Rank | City | # of jobs | Employment/ 1000ppl | Avg. salary |
|---|---|---|---|---|
| 1 | Annapolis | 15 | 38% | $99,342 |
| 2 | Juneau | 2 | 6% | $84,213 |
| 3 | Columbia | 5 | 5% | $99,265 |
| 4 | Bethesda | 2 | 3% | $99,100 |
| 5 | Marietta | 2 | 3% | $88,154 |
| 6 | Washington | 14 | 2% | $99,140 |
| 7 | Atlanta | 4 | 1% | $88,096 |
| 8 | Orlando | 3 | 1% | $81,192 |
| 9 | Huntsville | 2 | 1% | $86,268 |
| 10 | Oxnard | 2 | 1% | $127,181 |
| 11 | Baltimore | 2 | 0% | $99,387 |
| 12 | Denver | 2 | 0% | $92,881 |
| 13 | Indianapolis | 2 | 0% | $81,199 |
| 14 | Los Angeles | 2 | 0% | $124,882 |
Hampton University
Belmont University
Seattle University
University of South Alabama
Mount St Mary's University
University of Minnesota - Duluth
New Jersey Institute of Technology
Weber State University
Southern Illinois University Edwardsville
California Polytechnic State University-San Luis Obispo
Duke University
Oklahoma State University Institute of Technology - Okmulgee
Harding University
University of South Alabama
Julie Brandis: Oregon State University provides support in salary negotiation, also students can work with mentors who are familiar with company hiring practices and wage structures. If you have internship experience, that can help to boost your starting salary.
Julie Brandis: The nation needs engineers across many disciplines. There isn’t one skill that is needed. Honesty and integrity (do what’s right, be honest and be dependable) Leadership - ability to meet deadlines, resolve conflict, balance competing demands, communicate in groups and influence peers, manage budgets
Davide Masato: The high demand for plastics engineers facilitates maximizing starting salaries. Graduates with co-op experience enjoy a competitive edge. To grow both as engineers and team members, young professionals should actively seek professional development opportunities. Continuous learning and seeking advancement within the organization or externally are key. Pursuing advanced degrees or certifications, even remotely, enhances qualifications and marketability.
Christopher Misorski FASM: Maximizing salary potential at the start of your career is not a clear pathway generally. One way that you can be considered more valuable, and hence worth a better salary, is to have participated in a co-op or internship program with a company in your field. This experience gives employers some confidence that you were able to carry out assignments and thrive in a workplace environment. The employer that you worked for may be inclined to offer you a position upon graduation and you are now worth more because you have already proven to them your abilities. Even if they don’t offer you a job (no appropriate open position may be available) your ability to discuss your experiences with the HR recruiter or hiring manager at another company can instill confidence in your selection as a hire. Just remember, if you tell them you did a project, be prepared to explain it so it doesn’t appear you were just in the background of this project, just going along for the ride.
Dr. Yohannes Bekele: In being a computer engineer, people like all the advantages in the field including attractive compensation packages and lucrative salaries, the intellectual satisfaction of solving complex problems, opportunities for continuous learning and innovation as technology rapidly evolves, ability to work on cutting-edge technologies and contribute to their development and the diverse career paths across hardware, software, embedded systems, and various industries. The main struggle most people have in becoming a computer engineer is its steep learning curve especially when it comes to hardware design and related areas. It takes years to become proficient in the field as compared to other fields such as software programming where a relatively shorter amount of time is enough to join the workforce. In addition, the ever evolving environment with constantly changing technologies, standards, and the need to keep learning new things makes it difficult to achieve the epitome in the field.
Thomas Congedo PhD: That comes from your ability to focus on technical product of the highest quality, always seeking to truly understand the customer’s needs. For example, often a customer will phrase a problem by stating the solution he or she assumes. Taking the time to respectfully draw out the thinking further can make you the customer’s hero, and this makes you the person likely to be selected for the challenging and most rewarded assignments.
Dr. Tisha Brown-Gaines: Over the next five years, the expanding landscape of Big Data facilitated via Information Systems will continue to play a major role in the structure of how Smart Systems are created and maintained. As a result, having skills that will allow for effectively accessing, modifying, analyzing, storing and securing data is key. The integration of these skills are strengths that will support fields under the umbrella of computer science and data science that expand into machine learning, natural language processing and the Internet of Things (IoT) concepts.
Dr. Tisha Brown-Gaines: Colleges and universities try very hard to prepare students for life after graduation. Most students have the required skill sets for their field of study. However, the journey after attaining a degree still can be tricky. Selecting the right field for you is paramount. Information Systems (IS) is a great major. The interdisciplinary aspect of Information Systems (IS) allows graduates to select from numerous opportunities in the field. However, this can be quite overwhelming when students have options to apply to countless jobs. My advice would be to reflect on several assignments, projects or internship experiences during your undergraduate career that captured your interest, made you smile while completing the assignment or even one which began as a random goal and became personal. Start by identifying tasks that made you inquire more about a topic outside of the minimum requirements or a task that was challenging but helped to improve a skill set. Reflecting on these experiences will allow you to effectively navigate what areas to consider and what jobs to apply to in a sea of endless opportunities. Additionally, having the ability to reflect on past accomplishments can motivate and challenge graduates to achieve additional goals as they continue building their careers.
Seattle University
Civil Engineering
Jhon Smith: Do not be afraid to ask questions to your supervisors (although do not take it to an extreme and become demanding—show initiative). You get the fundamentals of engineering at school and you are equipped to use them but it takes a few years to feel comfortable. Engineering is a profession of practice and it is only through practice that you best learn it.
Jhon Smith: Expand your network, join professional organizations and committees, become valuable in whatever company you work for, never stop learning, seek for opportunities for professional work, get your PE license. After these you will become more valuable naturally and could comfortably ask for a promotion or a salary increase because you’d know you deserve it.
Sean Walker: Model Based Systems Engineering (MBSE) and Artificial Intelligence (AI) are going to be incredibly important in Systems Engineering over the next 3-5 years. MBSE has already become quintessential to the practice of Systems Engineering, which is why it has become a staple of our Master's and Doctoral programs. AI, of course, is changing almost every technical field and will be important to Systems Engineers as well. For Systems Engineers, the challenge will be understanding how and when to apply AI to solve systemic problems. Of course, both of these elements must be applied with an understanding of sociotechnical systems concerns. An engineer with the skills to apply MBSE and AI without losing sight of the humans in the system will be highly sought after.
Sean Walker: To maximize your salary, it is really essential to learn the tools and methods associated with Systems Engineering while also maintaining a sense of creativity. Employers are not only looking for engineers with the ability to apply specific tools but also the ability to think creatively to solve complex systems problems. I often encourage my students to maintain their creative hobbies so that they don't lose those skills. But, more immediately, gaining a graduate education in Systems Engineering can help any engineer increase their earning potential.
Sean Walker: I think the best advice for a new Systems Engineer, or really any engineer, is to be observant. One of the best things you can do when starting to apply the theoretical aspects that you've learned in school to your new career is to watch and listen to how experienced Systems Engineers practice in the field. This doesn't mean that you can't offer ideas or perspectives that are new, but that there will be challenges in your field that - due to the breadth of Systems Engineering - may not have been covered in your education.
Sagar Raina D.Sc.: The transition from the academic world to the industry is a significant milestone and may be overwhelming for the beginners. The first and foremost advice I would give is to be “patient”, be “positive” and be “open to learning”. The field of Information Systems consists of the three important components – people, processes, and technology. The graduates beginning their careers should be able to understand and learn about the “people” working in the organization, the “processes” of the organization and the “technology” used by the organization. To accomplish this, work hard, be open to ask questions to the senior colleagues and keep yourself informed about the new trends in Information Systems sector.
Sagar Raina D.Sc.: One of the recommendations would be to get an entry-level industry certification within the Information Systems field. For example, if you are interested in networking, you can go for CompTIA Network+, similarly, if you are interested in cybersecurity, you can go for CompTIA Security+. In addition to your college degree, industry certifications are well recognized by the organizations which can maximize your salary potential when starting a career in Information Systems.
Sagar Raina D.Sc.: Apart from the traditional knowledge expected in the field such coding, computer networking, database design and development, systems analyses, web technologies and development, data analytics; the use of generative Artificial Intelligence (AI) and the knowledge about cybersecurity will be considered as the important and prevalent skills sought among the new graduates in the field.
Richard Davis: Engineering offers career opportunities across various industries, from technology and healthcare to infrastructure and environmental sustainability. With technological advancements and the increasing complexity of global challenges, such as climate change, food and clean water, and urbanization, engineers are in high demand to develop innovative solutions. For example, environmental engineers are crucial in developing sustainable solutions to reduce pollution and conserve resources. Engineering provides opportunities for creativity and problem-solving, making it a rewarding career choice for those who enjoy tackling complex problems. The global focus on sustainability and renewable energy presents exciting prospects for engineers to contribute to meaningful projects that positively impact society and the environment.
Mishah Salman Ph.D.: An underappreciated skill that I think will become more sought-after is the ability to validate computer-made decisions and their shortcomings. With the growing prominence of AI use in design, problem solving, and decision making, the engineering field will need experts to error-check decisions made using these technologies. Sometimes there are unexplored gaps that these technologies overlook, and sometimes there are biases or inappropriate assumptions baked into AI-based results. Humans are inherently imaginative and creative. We excel at picking up on things that computer algorithms may miss. Talented experts that recognize and address these issues will remain invaluable in the workforce. Another indispensable skill that is often overlooked in engineering is effective interpersonal communication. Whether in a teamwork context, a leadership role, or a client interaction, competent communication is crucial. This can take the form of conversation, live presentations, written correspondence, and beyond. People that hone their communication skills are often recognized, and tend to be the individuals that are promoted to more senior roles.
Mishah Salman Ph.D.: To maximize salary potential, I recommend growing your professional network and being flexible within your career. Attending professional gatherings and rubbing shoulders goes a very long way. It’s amazing how you can casually bump into some well-respected team leader that’s trying to fill an opening or glean information about a new project that needs fresh talent. Network with people in diverse fields and roles. You never know who knows who. Making a positive impression and having someone recognize your name down the line can go a very long way!
Mishah Salman Ph.D.: My advice to recent graduates is to be open to non-conventional roles. Taking on responsibilities beyond one’s official discipline provides broader value to employers. Many students that graduate with degrees in mechanical engineering (or similar disciplines) find great success by stepping outside of their expected job title. Sometimes exploring roles with titles like “analyst” or “manager” or “designer” can provide interesting opportunities to apply one’s engineering skillset in an alternate context. The real strength of your degree is the transferable skillset that you developed along your educational journey. Keep your options open!
Mansooreh Mollaghasemi Ph.D.: Concurrent with building technical skills, they must build soft skills such as communication, teamwork, problem-solving, and leadership. These skills are often the differentiators between good and great engineers.
Megumi Usui: Even after obtaining a degree, it is crucial to recognize that continuous learning is a fundamental aspect of professional development in the workplace. One must cultivate an open-minded attitude and demonstrate a willingness to acquire new knowledge and skills at any time and in any context. Effective communication with colleagues and clients is essential for successful collaboration and project execution. It is important to understand that the professional environment is significantly different from the academic setting. In a company, the focus is delivering work that meets the expectations and standards set by the employer and satisfies the needs of clients, rather than merely fulfilling personal criteria. Furthermore, it is imperative to produce high-quality work consistently. Mediocre performance is unacceptable, and organizations will not hesitate to seek replacements if the work delivered does not meet their standards. Ensuring that your work is thorough, precise, and aligns with the company's objectives is critical for maintaining the position and advancing their career.
Michael Denn: 1. Become the expert in whatever you do. 2. Understand how your work fits into the bigger picture and keep that in mind when you do your work. 3. Keep learning! Your engineering degree is not the end of your education! 4. Take stretch assignments and opportunities whenever you can.
Michael Denn: 1. The time needed to progress from an idea to a quality prototype is continually decreasing. That trend will likely continue. Skills that support short development times, such as computer modeling, simulations and rapid prototyping, will continue to be valued. 2. One skill that will always be valuable is the ability to acquire new knowledge and apply it to the task at hand.
Michael Denn: The answers to this question are largely the same as the answer to question 1. However, here are some additional points: 1. Excel in your job. Become the person everyone goes to for whatever type of work you do. 2. Develop and maintain a career plan. Make sure your assignments and tasks align with your plan. When you have the opportunity to change positions, keep you plan in mind.
Dr. Elizabeth Adams PhD, PE: My personal recommendation for maximizing your salary potential is to play the long game. Focus on learning and becoming an expert in your field – find the area you enjoy working in and get really good at it. Maybe it’s bridge construction, maybe it’s electrical infrastructure, maybe it’s project management. Internships and co-op experiences during your college years are invaluable as they are excellent resume boosters and networking opportunities, and they can help you differentiate between areas you are more and less interested in.
Kevin Jetton: Now referred to simply as Information Systems or Enterprise Systems, they are the mission-critical applications that run the enterprise and used to provide information, processes, data and outcomes to all parties such as internal employees, customers and partners/suppliers. Example such systems are all the Financial Applications (Accounts Payable/Receivable, General Ledger, Payroll, Human Resources, Fixed Assets, Budgeting and more), Supply Chain Management, Customer Relationship Management, Manufacturing, Enterprise Resource Management, Order/Service Fulfillment and more. What do individuals do on a daily basis? Depends on the individual's role in the overall process: Unit Managers/Users: Part of a project team to analyze/design/test/train/implement new or modified systems for their unit. IT Professionals: Project Management, Systems Analysts, Enterprise Architects to design solutions, Database and Security experts, Application Developers/Programmers, Testing and Training Teams, Data conversion specialists, Scheduling and Implementation teams.
Kevin Jetton: The phrase itself has been retired basically and broadened to include ALL information systems - focusing on the mission-critical applications and processes to deliver results to all the parties both inside and outside the organization. Originally, Management Information Systems (MIS) focused ONLY on the Financial/Accounting/Payroll/Manufacturing aspects and was the label for them and the department of IT staffers 1970's-1990's eras. By the year 1995-2000 with the looming Y2K issue, the mission-critical nature of these applications enterprise-wide rose to the forefront of everyone's mind when the realization that the systems may not function properly 1/1/2000 and beyond basically introduced the phrase Enterprise Systems to the world that serve the enterprise internally and externally. Like: The excitement of being involved in such key applications/systems serving the entire organization. Working side-by-side by all units/levels of fellow staff members and partner organizations to identify and solve pain-points within the organization and more that could be solved/automated/enhanced through technology. Helping deliver applications and tools that serve your organization's customers, fellow-employees and partners. Dislike: Long projects that could span months-to-years. Underestimated project schedules that rush through the phases but deliver short-changed results. Pressure to meet deadlines and expectations. Constantly changing/evolving technology and services. Outsourcing to non-employees outside the organization perhaps globally. Being on-call 24x7 to handle and resolve system outages and downtime/failures.
Dr. Jimmie Lenz D.B.A.: A primary reason is the value placed on the quantitative nature of an engineering degree and the fact that this is primarily applied learning and skills, as opposed to the theoretical nature of some other areas of quantitative study. Being able to start working as soon as they start is very attractive to employers, as well as the broad knowledge of software, artificial intelligence, and data science that most engineers leave school with.
Dr. Jimmie Lenz D.B.A.: Engineering encompasses so many areas of modern life that it’s impossible to provide a comprehensive answer here. The training that engineers receive, both the technical and the applied nature, make these individuals quite attractive to all types of industries. Perhaps the most surprising to many people are the significant number of engineers employed in financial services.
Oklahoma State University Institute of Technology - Okmulgee
Electromechanical Technologies/Technicians
Jim Gordon: Computer skills will only increase in importance and drone technology will be huge. Fluency in the software your firm uses will be a must-have skill.
Dr. Joe Faith: Skills involving how to properly use AI and AI-enabled tools will be big. We've already seen huge changes since November of 2022. I only think the life cycle for these products will continue to get shorter. It's not AI that you need to worry about displacing you from your job. It's a smart human that knows how to use AI. I think that, for IS professionals specifically, you need to focus not only on hard skills, but soft skills as well. Many individuals can either communicate well or program well but not many can do both. There is a niche there that needs to be filled.
Dr. Joe Faith: I think the best general advice would be to not be scared to take a risk on yourself. There are a lot of jobs out there that people are oftentimes afraid to apply for. This can be for several factors but one of the main ones I hear is that they don't feel like they are qualified enough. I can't tell you how many times I've had students that got a job they were slightly underqualified for because they were smart, had drive, and were a great culture fit for the firm in question. Along with that, I would say that certifications can help land your first gig. After a while, in many cases, experience will be more important. But, a cert can be just the thing to get you 'over the top' and land that first job after college.
University of South Alabama
Electrical, Electronics, And Communications Engineering
Edmund Spencer: Look for jobs that have the highest technical content, and try to develop entrepreneurial skills early.