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Computer Integrated Manufacturing Engineer Jobs in Washington

Senior Manufacturing Engineer

Beltsville, MD ยท On-site

$99K - $145K/yr

The role combines manufacturing engineering, CNC programming, project management, tooling ... Minimum of two (2) years experience with CAD and Microsoft. * Minimum of one (1) year Project ...

Work closely with cross-functional Integrated Product Teams (IPTs) to oversee the development and ... Experience with basic CAD software (AutoCAD, SolidWorks, Creo, etc. etc.) * Lean Six Sigma (LSS ...

New

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Computer Integrated Manufacturing Engineer information

See Washington salary details

$53.8K

$97K

$135.9K

How much do computer integrated manufacturing engineer jobs pay per year?

As of Aug 20, 2026, the average yearly pay for computer integrated manufacturing engineer in Washington is $96,965.00, according to ZipRecruiter salary data. Most workers in this role earn between $82,700.00 and $106,500.00 per year, depending on experience, location, and employer.

What does a computer integrated manufacturing engineer do?

A Computer Integrated Manufacturing (CIM) Engineer is responsible for designing, implementing, and optimizing automated manufacturing systems that use computers to control the entire production process. They integrate hardware and software solutions to streamline operations, improve product quality, and increase efficiency. CIM Engineers work with robotics, computer-aided design (CAD), and computer-aided manufacturing (CAM) systems to ensure the seamless flow of information and materials throughout the manufacturing process.

How does a computer integrated manufacturing engineer typically collaborate with other departments during a project?

As a Computer Integrated Manufacturing (CIM) Engineer, you'll frequently work cross-functionally with production, quality assurance, design engineering, and IT teams. Your role involves integrating computer systems with manufacturing processes, so you'll often coordinate with software developers to customize automation solutions and with production managers to ensure smooth implementation on the shop floor. Regular meetings and clear communication with these teams are essential for troubleshooting issues, optimizing workflows, and ensuring that technological upgrades align with manufacturing goals. This collaborative environment provides valuable opportunities to broaden your technical knowledge and build strong professional relationships.

What are the key skills and qualifications needed to thrive as a computer integrated manufacturing engineer, and why are they important?

To thrive as a Computer Integrated Manufacturing Engineer, you need a strong background in manufacturing processes, automation, and systems engineering, usually supported by a degree in mechanical, industrial, or manufacturing engineering. Proficiency with CAD/CAM software, PLC programming, robotics, and familiarity with ERP systems and lean manufacturing certifications are typically required. Analytical thinking, problem-solving, and effective teamwork are essential soft skills for optimizing production and driving process improvements. These skills are vital for integrating advanced technologies in manufacturing, enhancing efficiency, and maintaining competitive operations.

What is the difference between Computer Integrated Manufacturing Engineer vs Manufacturing Engineer?

AspectComputer Integrated Manufacturing EngineerManufacturing Engineer
Required CredentialsBachelor's in Manufacturing, Industrial Engineering, or related; certifications like CIM or CAD software proficiencyBachelor's in Mechanical, Industrial, or Manufacturing Engineering; similar certifications often required
Work EnvironmentDesigning, implementing, and optimizing automated manufacturing systems in factories or plantsDeveloping manufacturing processes, improving production efficiency, and troubleshooting in production facilities
Employer & Industry UsageUsed by manufacturing firms focusing on automation and integrated systemsCommon across various manufacturing sectors including automotive, aerospace, and consumer goods

The main difference is that Computer Integrated Manufacturing Engineers focus on designing and managing automated, computer-controlled manufacturing systems, while Manufacturing Engineers concentrate on developing and improving manufacturing processes. Both roles require similar educational backgrounds and certifications but differ in their focus areas within the manufacturing industry.

Is there a demand for computer integrated manufacturing engineers?

Computer Integrated Manufacturing (CIM) engineers are in high demand due to the increasing adoption of automation, robotics, and advanced manufacturing systems across industries. Employers seek professionals skilled in CAD/CAM software, PLC programming, and systems integration to improve production efficiency and reduce costs.

What cities in Washington are hiring for Computer Integrated Manufacturing Engineer jobs?

Cities in Washington with the most Computer Integrated Manufacturing Engineer job openings:

Computer Engineer

US Department of the Air Force

Alexandria, VA โ€ข On-site

$76K/yr

Full-time

Re-posted yesterday


Job description

Click on "Learn more about this agency" button below for IMPORTANT additional information.
This is a Direct Hire Solicitation. This public notice is to gather applications that may or may not result in a referral or selection.Qualifications:In order to qualify, you must meet the specialized experience requirements described in the Office of Personnel Management (OPM) Qualification Standards for General Schedule Positions, Group Coverage Qualification Standard for Professional and Scientific Positions.
BASIC REQUIREMENT OR INDIVIDUAL OCCUPATIONAL REQUIREMENT:
A. Degree: Professional Engineering. To be acceptable, the curriculum must: (1) be in a school of engineering with at least one curriculum accredited by the Accreditation Board for Engineering and Technology (ABET) as a professional engineering curriculum; or (2) include differential and integral calculus and courses (more advanced than first-year physics and chemistry) in five of the following seven areas of engineering science or physics: (a) statics, dynamics; (b) strength of materials (stress-strain relationships); (c) fluid mechanics, hydraulics; (d) thermodynamics; (e) electrical fields and circuits; (f) nature and properties of materials (relating particle and aggregate structure to properties); and (g) any other comparable area of fundamental engineering science or physics, such as optics, heat transfer, soil mechanics, or electronics.
OR
B. Combination of education and experience: College-level education, training, and/or technical experience that furnished (1) a thorough knowledge of the physical and mathematical sciences underlying professional engineering, and (2) a good understanding, both theoretical and practical, of the engineering sciences and techniques and their applications to one of the branches of engineering. The adequacy of such background must be demonstrated by one of the following:
1. Professional Registration: Current registration as a professional engineer by any State, the District of Columbia, Guam, or Puerto Rico. Absent other means of qualifying under this standard, those applicants who achieved such registration by means other than written test (e.g., State grandfather or eminence provisions) are eligible only for positions that are within or closely related to the specialty field of their registration. For example, an applicant who attains registration through a State Board's eminence provision as a manufacturing engineer typically would be rated eligible only for manufacturing engineering positions.
OR
2. Written Test: Evidence of having successfully passed the Engineer-in-Training (EIT) examination, or the written test required for professional registration, which is administered by the Boards of Engineering Examiners in the various States, the District of Columbia, Guam, and Puerto Rico.
OR
3.
Specified Academic Courses: Successful completion of at least 60 semester hours of courses in the physical, mathematical, and engineering sciences and in engineering that included the courses specified in the basic requirements. The courses must be fully acceptable toward meeting the requirements of a professional engineering curriculum.
OR
4. Related Curriculum:
Successful completion of a curriculum leading to a bachelor's degree in engineering technology or in an appropriate professional field, e.g., physics, chemistry, architecture, computer science, mathematics, hydrology, or geology, may be accepted in lieu of a degree in engineering, provided the applicant has had at least one year of professional engineering experience acquired under professional engineering supervision and guidance. Ordinarily there should be either an established plan of intensive training to develop professional engineering competence, or several years of prior professional engineering-type experience, e.g., in interdisciplinary positions.
In addition to meeting the basic requirement above, to qualify for this position you must also meet the qualification requirements listed below:
SPECIALIZED EXPERIENCE:
GS-12: One year of specialized experience equivalent to the GS-11. Examples of specialized experience include management and directing of assigned IT systems and programs for complex programs and/or projects.
GS-13: One year of specialized experience equivalent to the GS-12. Examples of specialized experience include identifying, preparing and presenting detailed technical reports and briefings on new concepts and technical directions impacting programs/projects, and defining future technology requirements.
GS-14: One year of specialized experience equivalent to the GS-13. Examples of specialized experience include planning, organizing, and managing branch level activities and developing goals and objectives that integrate organization and objectives for computer engineering programs.
GS-15: One year of specialized experience equivalent to the GS-14. Examples of specialized experience include providing technical leadership, advice, and assistance on complex, controversial or precedent setting matters and dealing tactfully and effectively with high level officials, engineers and scientists.
KNOWLEDGE, SKILLS AND ABILITIES (KSAs):
  1. Knowledge of computer engineering policies, theories, principles and concepts, and familiarity with other engineering disciplines.
  2. Knowledge of automated data processing concepts, systems capabilities, and measurements processes to effectively accomplish assigned functions.
  3. Ability to analyze, evaluate, and applies rules, regulations, and procedures in a variety of situations.
  4. Ability to plan and organize work and coordinate with other engineering disciplines; communicate effectively, both orally and in writing; and maintain good working relations.
PART-TIME OR UNPAID EXPERIENCE: Credit will be given for appropriate unpaid and or part-time work. You must clearly identify the duties and responsibilities in each position held and the total number of hours per week.
VOLUNTEER WORK EXPERIENCE: Refers to paid and unpaid experience, including volunteer work done through National Service Programs (i.e., Peace Corps, AmeriCorps) and other organizations (e.g., professional; philanthropic; religious; spiritual; community; student and social). Volunteer work helps build critical competencies, knowledge and skills that can provide valuable training and experience that translates directly to paid employment. You will receive credit for all qualifying experience, including volunteer experience.Education:IF USING EDUCATION TO QUALIFY: If position has a positive degree requirement or education forms the basis for qualifications, you MUST submit transcriptswith the application. Official transcripts are not required at the time of application; however, if position has a positive degree requirement, qualifying based on education alone or in combination with experience; transcripts must be verified prior to appointment. An accrediting institution recognized by the U.S. Department of Education must accredit education. Click here to check accreditation.
FOREIGN EDUCATION: Education completed in foreign colleges or universities may be used to meet the requirements. You must show proof the education credentials have been deemed to be at least equivalent to that gained in conventional U.S. education program. It is your responsibility to provide such evidence when applying.Employment Type: OTHER