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Career and Education Opportunities for Manufacturing Engineers in San Diego, California

There are many career and education opportunities for manufacturing engineers in the San Diego, California area. There are currently 29,200 working manufacturing engineers in California; this should grow by 9% to 31,700 working manufacturing engineers in the state by 2016. This is better than the nation as a whole, where employment opportunities for manufacturing engineers are expected to grow by about 6.7%. Manufacturing engineers generally apply knowledge of materials and engineering theory and methods to design, integrate, and improve manufacturing systems or related processes.

A person working as a manufacturing engineer can expect to earn about $46 per hour or $96,940 annually on average in California and about $42 hourly or $88,570 per year on average in the U.S. as a whole. Earnings for manufacturing engineers are better than earnings in the general category of Engineering in California and better than general Engineering category earnings nationally. People working as manufacturing engineers can fill a number of jobs, such as: manufacturing applications engineer, methods engineer, and facility engineer.

There are two schools within twenty-five miles of San Diego where you can study to be a manufacturing engineer, among sixty schools of higher education total in the San Diego area. Given that the most common education level for manufacturing engineers is a Bachelor's degree, you can expect to spend about four years training to become a manufacturing engineer if you already have a high school diploma.

CAREER DESCRIPTION: Manufacturing Engineer

In general, manufacturing engineers apply knowledge of materials and engineering theory and methods to design, integrate, and improve manufacturing systems or related processes. They also may work with commercial or industrial designers to refine product designs to increase producibility and decrease costs.

Manufacturing engineers identify opportunities or implement changes to further optimize products or reduce costs using knowledge of fabrication processes, tooling and production equipment, assembly methods, quality control standards, or product layout, materials and parts. They also apply continuous improvement methods such as lean manufacturing to enhance manufacturing quality or cost-effectiveness. Equally important, manufacturing engineers have to communicate manufacturing capabilities or other data to enable production processes. They are often called upon to train production personnel in new or existing methods. They are expected to layout testing methods and test finished products or process capabilities to determine standards or validate process requirements. Finally, manufacturing engineers supervise technicians or other engineers.

Every day, manufacturing engineers are expected to be able to read and understand documents and reports. They need to articulate ideas and problems. It is also important that they listen to and understand others in meetings.

Manufacturing engineers sometimes are asked to purchase equipment or parts. They also have to be able to design layouts of equipment or work spaces to attain maximum efficiency and layout or troubleshoot manufacturing equipment. And finally, they sometimes have to furnish technical expertise or support pertaining to manufacturing.

Like many other jobs, manufacturing engineers must be able to absorb the factors involved and a problem and provide a well thought out solution and be reliable.

Similar jobs with educational opportunities in San Diego include:

  • Aerodynamics Engineer. Perform a variety of engineering work in designing, constructing, and testing aircraft, missiles, and spacecraft. May conduct basic and applied research to evaluate adaptability of materials and equipment to aircraft design and manufacture. May recommend improvements in testing equipment and techniques.
  • 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.
  • Computer Engineer. Research, design, and test computer or computer-related equipment for commercial, industrial, or scientific use. May supervise the manufacturing and installation of computer or computer-related equipment and components.
  • 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.
  • 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.
  • Product Safety Engineer. Develop and conduct tests to evaluate product safety levels and recommend measures to reduce or eliminate hazards.

EDUCATIONAL OPPORTUNITIES: Manufacturing Engineer Training

San Diego State University - San Diego, CA

San Diego State University, 5500 Campanile Dr, San Diego, CA 92182. San Diego State University is a large university located in San Diego, California. It is a public school with primarily 4-year or above programs. It has 34,889 students and an admission rate of 44%. San Diego State University has a master's degree program in Manufacturing Engineering which graduated four students in 2008.

University of San Diego - San Diego, CA

University of San Diego, 5998 Alcala Park, San Diego, CA 92110-2492. University of San Diego is a medium sized university located in San Diego, California. It is a private not-for-profit school with primarily 4-year or above programs. It has 7,832 students and an admission rate of 52%. University of San Diego has a bachelor's degree program in Industrial Engineering which graduated five students in 2008.

CERTIFICATIONS

Certified Forensic Claims Consultant : AACE International's Certified Forensic Claims Consultant (CFCC) certification program is designed to establish credentials to recognize your professional expertise.

For more information, see the AACE International (Association for the Advancement of Cost Engineering through total cost management) website.

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.

Certified Energy Manager: Since its inception in 1981, the Certified Energy Manager (CEM®) credential has become widely accepted and used as a measure of professional accomplishment within the energy management field.

For more information, see the Association of Energy Engineers website.

Certified Energy Auditor: The Certified Energy Auditor (CEA) certification identifies professionals as having the required knowledge and experience needed to succeed in the growing field of energy auditing.

For more information, see the Association of Energy Engineers website.

Protective Coatings Specialist: This certification is geared toward individuals who are experienced, knowledgeable and capable of performing work at an advanced level in both the theory and practice of corrosion prevention and control, and who are capable of performing work at an advanced level in the protective coatings field.

For more information, see the NACE International website.

LOCATION INFORMATION: San Diego, California

San Diego, California
San Diego, California photo by FlickreviewR

San Diego is situated in San Diego County, California. It has a population of over 1,279,329, which has grown by 4.6% over the last ten years. The cost of living index in San Diego, 141, is far greater than the national average. New single-family homes in San Diego are valued at $323,700 on average, which is well above the state average. In 2008, six hundred forty-one new homes were constructed in San Diego, down from seven hundred forty-eight the previous year.

The three big industries for women in San Diego are health care, educational services, and professional, scientific, and technical services. For men, it is professional, scientific, and technical services, accommodation and food services, and construction. The average travel time to work is about 23 minutes. More than 35.0% of San Diego residents have a bachelor's degree, which is higher than the state average. The percentage of residents with a graduate degree, 13.4%, is higher than the state average.

The unemployment rate in San Diego is 10.5%, which is less than California's average of 12.3%.

The percentage of San Diego residents that are affiliated with a religious congregation, 43.7%, is less than both the national and state average. Penasquitos Nazarene Church, Peace Lutheran Church and Paul E Kidd African Methodist Episcopal Church are some of the churches located in San Diego. The most common religious groups are the Catholic Church, the LDS (Mormon) Church and the Southern Baptist Convention.

San Diego is home to the Zlac Rowing Club and the Rancho Los Penasquitos Golf Course as well as Adobe Bluffs Park and John F Kennedy Park. Shopping malls in the area include San Diego Factory Outlet Shopping Center, San Carlos Shopping Center and Montgomery Plaza Shopping Center. Visitors to San Diego can choose from Best Western Posada at the Yac, Beachfront San Diego and Banana Bungalow Hostel San Diego for temporary stays in the area.