Career and Education Opportunities for Computer Engineers in Pittsburgh, Pennsylvania
For those living in the Pittsburgh, Pennsylvania area, there are many career and education opportunities for computer engineers. The national trend for computer engineers sees this job pool growing by about 3.8% over the next eight years. In general, computer engineers research, design, and test computer or computer-related equipment for commercial, industrial, or scientific use.
Computer engineers earn approximately $43 hourly or $90,110 per year on average in Pennsylvania. Nationally they average about $46 hourly or $97,400 yearly. Computer engineers earn more than people working in the category of Engineering generally in Pennsylvania and more than people in the Engineering category nationally. Jobs in this field include: computer designer, field service engineer, and computer architect.
The Pittsburgh area is home to eighty-three schools of higher education, including one within twenty-five miles of Pittsburgh where you can get a degree as a computer engineer. The most common level of education for computer engineers is a Bachelor's degree. You can expect to spend about four years studying to be a computer engineer if you already have a high school diploma.
CAREER DESCRIPTION: Computer Engineer
In general, computer engineers research, design, and test computer or computer-related equipment for commercial, industrial, or scientific use. They also may supervise the manufacturing and installation of computer or computer-related equipment and components.
Computer engineers update knowledge and skills to keep up with rapid advancements in computer technology. They also direct technicians, engineering designers or other technical support personnel as needed. Equally important, computer engineers have to store and manipulate data for analysis of system capabilities and requirements. They are often called upon to talk with engineering staff and consult specifications to review interface between hardware and software and the operational and performance requirements of overall systems. They are expected to monitor functioning of equipment and make needed modifications to insure system operates in conformance with specifications. Finally, computer engineers analyze data to establish and plan layouts using computers.
Every day, computer engineers are expected to be able to listen to and understand others in meetings. They need to think through problems and come up with general rules. It is also important that they articulate ideas and problems.
It is important for computer engineers to analyze user needs and recommend appropriate hardware. They are often called upon to furnish training and support to system designers and users. They also evaluate factors such as reporting formats required and need for security restrictions to establish hardware configuration. They are sometimes expected to test and verify hardware and support peripherals to insure that they meet specifications and requirements, by recording and analyzing test data. Somewhat less frequently, computer engineers are also expected to layout and develop computer hardware and support peripherals, including central processing units (CPUs), support logic, microprocessors, custom integrated circuits, and printers and disk drives.
They also have to be able to recommend purchase of apparatus to control dust and humidity in area of system installation And finally, they sometimes have to test and verify hardware and support peripherals to insure that they meet specifications and requirements, by recording and analyzing test data.
Like many other jobs, computer engineers must be persistant in the face of problems and impediments and be thorough and dependable.
Similar jobs with educational opportunities in Pittsburgh include:
- Aerospace Technician. Operate, install, and maintain integrated computer/communications systems consoles, simulators, and other data acquisition, test, and measurement instruments and equipment to launch, track, and evaluate air and space vehicles. May record and interpret test data.
- Biomedical Engineer. Apply knowledge of engineering, biology, and biomechanical principles to the design, development, and evaluation of biological and health systems and products, such as artificial organs, prostheses, instrumentation, medical information systems, and health management and care delivery systems.
- Chemical Engineer. Design chemical plant equipment and devise processes for manufacturing chemicals and products, such as gasoline, synthetic rubber, and pulp, by applying principles and technology of chemistry, physics, and engineering.
- Civil Engineer. Perform engineering duties in planning, designing, and overseeing construction and maintenance of building structures, and facilities, such as roads, railroads, airports, bridges, harbors, channels, dams, irrigation projects, pipelines, power plants, water and sewage systems, and waste disposal units. Includes architectural, structural, and geo-technical engineers.
- Electrical Engineer. Design, develop, or supervise the manufacturing and installation of electrical equipment, components, or systems for commercial, industrial, or scientific use.
- Electronics Engineer. Research, design, and test electronic components and systems for commercial, industrial, or scientific use utilizing knowledge of electronic theory and materials properties. Design electronic circuits and components for use in fields such as telecommunications, aerospace guidance and propulsion control, acoustics, or instruments and controls.
- Fire Prevention Research Engineer. Research causes of fires, determine fire protection methods, and design or recommend materials or equipment such as structural components or fire-detection equipment to assist organizations in safeguarding life and property against fire, explosion, and related hazards.
- Health, Safety, and Environment Manager. Plan, implement, and coordinate safety programs, requiring application of engineering principles and technology, to prevent or correct unsafe environmental working conditions.
- Industrial Engineer. Design, develop, and evaluate integrated systems for managing industrial production processes including human work factors, quality control, inventory control, logistics and material flow, cost analysis, and production coordination.
- Manufacturing Engineer. Apply knowledge of materials and engineering theory and methods to design, integrate, and improve manufacturing systems or related processes. May work with commercial or industrial designers to refine product designs to increase producibility and decrease costs.
- Materials Engineer. Evaluate materials and develop machinery and processes to manufacture materials for use in products that must meet specialized design and performance specifications. Develop new uses for known materials. Includes those working with composite materials or specializing in one type of material, such as graphite, metal and metal alloys, ceramics and glass, plastics and polymers, and naturally occurring materials.
- Mechanical Engineer. Perform engineering duties in planning and designing tools, engines, and other mechanically functioning equipment. Oversee installation, operation, and repair of such equipment as centralized heat, gas, and steam systems.
- Nuclear Engineer. Conduct research on nuclear engineering problems or apply principles and theory of nuclear science to problems concerned with release, control, and utilization of nuclear energy and nuclear waste disposal.
- Product Safety Engineer. Develop and conduct tests to evaluate product safety levels and recommend measures to reduce or eliminate hazards.
EDUCATIONAL OPPORTUNITIES: Computer Engineer Training
University of Pittsburgh-Pittsburgh Campus - Pittsburgh, PA
University of Pittsburgh-Pittsburgh Campus, 4200 Fifth Avenue, Pittsburgh, PA 15260. University of Pittsburgh-Pittsburgh Campus is a large university located in Pittsburgh, Pennsylvania. It is a public school with primarily 4-year or above programs. It has 27,562 students and an admission rate of 56%. University of Pittsburgh-Pittsburgh Campus has a bachelor's degree and a master's degree program in Computer Engineering which graduated forty-nine and two students respectively in 2008.
Geometric Dimensioning & Tolerancing Professional - Technologist: ASME GDTP Certification provides the means to recognize proficiency in the understanding and application of the geometric dimensioning and tolerancing (GD&T) principles expressed in the ASME Y14.
For more information, see the American Society of Mechanical Engineers International website.
Wireless Communications: Technicians seeking the ETA Certified Electronics Technician specialty are required to have a basic education in fundamental electronics.
For more information, see the ETA International website.
Certified Fiber Optics Installer - Outside Plant: The Fiber Optic Installer-Outside Plant certification is designed after the FOI certification, with special emphasis on outside plant applications and standards.
For more information, see the ETA International website.
Stay Sharp Program - Mastering Packet Analysis: Network administrators, information security analysts, intrusion detection and prevention analysts and network auditors that need an in-depth understanding of how to assess network protocols and use powerful network analysis tools.
For more information, see the Global Information Assurance Certification website.
Certified Web Professional - Internetworking Specialist: A CWP Internetworking Specialist defines network architecture, identifies infrastructure components, monitors and analyzes network performance.
For more information, see the International Webmasters Association website.
Junior Telecommunications Engineer: Telecommunications certification is applicable to professionals involved in the science and practice of communications by electromagnetic means.
Licensing agency: Department of State
Address: Bureau of Professional and Occupational Affairs, Professional Engineer, Land Surveyors & Geo Board, 124 Pine Street, Harrisburg, PA 17101
Phone: (717) 783-7049
Website: Department of State Bureau of Professional and Occupational Affairs Professional Engineer, Land Surveyors & Geo Board
LOCATION INFORMATION: Pittsburgh, Pennsylvania
Pittsburgh is located in Allegheny County, Pennsylvania. It has a population of over 310,037, which has shrunk by 7.3% over the last ten years. The cost of living index in Pittsburgh, 86, is well below the national average. New single-family homes in Pittsburgh cost $196,700 on average, which is far greater than the state average. In 2008, one hundred eighty-five new homes were built in Pittsburgh, up from one hundred seventeen the previous year.
The three most popular industries for women in Pittsburgh are health care, educational services, and finance and insurance. For men, it is educational services, health care, and accommodation and food services. The average travel time to work is about 23 minutes. More than 26.2% of Pittsburgh residents have a bachelor's degree, which is higher than the state average. The percentage of residents with a graduate degree, 12.5%, is higher than the state average.
The unemployment rate in Pittsburgh is 7.8%, which is less than Pennsylvania's average of 8.4%.
The percentage of Pittsburgh residents that are affiliated with a religious congregation, 71.8%, is more than both the national and state average. Saint Pauls Cathedral, Saint Patrick Roman Cathlic Church and Saint Nicholas Greek Orthodox Church are some of the churches located in Pittsburgh. The largest religious groups are the Catholic Church, the Presbyterian Church (USA) and the United Methodist Church.
Pittsburgh is home to the Mount Washington Overlook and the Golden Triangle as well as Magee Playground and Kennard Playground. Shopping centers in the area include Shadyside Shopping Center and Allegheny Center Mall. Visitors to Pittsburgh can choose from Best Western University Center, Avalon Motel and Four Points By Sheraton Pittsburgh Airport for temporary stays in the area.