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Entry Level Manufacturing Engineering Jobs in Buffalo, NY

... designs meet engineering and manufacturing standards. • Maintain engineering documentation, including drawings, BOMs, and revision control. • Support Design-for-Manufacturability (DFM ...

Product Engineer

Lockport, NY · On-site

$95K - $115K/yr

A Bachelor's Degree in Engineering or related field of Science is required. * Experience in brazed ... Benefits-US/CH_CN_DI_IB_LI_MA_MP_MW_OB_PH Entry level: Experienced hires Part- / Full-time: ...

Product Engineer

Lockport, NY · On-site

$95 - $115/hr

A Bachelor's Degree in Engineering or related field of Science is required. * Experience in brazed ... Compensation Range: $95,000 - $115,000 Facts about the job Entry level: Experienced hires Part ...

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Entry Level Manufacturing Engineering information

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$13

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$49

How much do entry level manufacturing engineering jobs pay per hour?

As of Aug 25, 2026, the average hourly pay for entry level manufacturing engineering in Buffalo, NY is $30.33, according to ZipRecruiter salary data. Most workers in this role earn between $26.54 and $33.51 per hour, depending on experience, location, and employer.

What does an entry level manufacturing engineer do?

An entry level manufacturing engineer assists in designing, developing, and improving manufacturing processes and systems within a factory or plant. Their responsibilities often include supporting production lines, troubleshooting equipment or process issues, ensuring quality standards, and collaborating with other engineers or technicians. They may also help implement new technologies, gather data for process improvements, and ensure compliance with safety regulations. This role is typically supervised and provides opportunities to learn about manufacturing operations and engineering best practices.

What are some typical projects or responsibilities an entry level manufacturing engineer may be assigned in their first year?

As an Entry Level Manufacturing Engineer, you can expect to work on projects such as process improvement initiatives, troubleshooting production issues, and assisting with the implementation of new equipment or technologies. You'll likely collaborate closely with experienced engineers, production supervisors, and quality teams to analyze workflows and suggest optimizations. Early responsibilities often include data collection, creating process documentation, and supporting the launch of new products to ensure smooth manufacturing operations. This hands-on exposure is valuable for building technical skills and understanding plant operations.

What are the key skills and qualifications needed to thrive as an entry level manufacturing engineer, and why are they important?

To thrive as an Entry Level Manufacturing Engineer, you need a bachelor’s degree in engineering (typically mechanical, industrial, or manufacturing) and a solid understanding of manufacturing processes and quality control. Familiarity with CAD software, lean manufacturing principles, and ERP systems is often required, and certifications like Six Sigma Green Belt can be advantageous. Strong problem-solving abilities, attention to detail, and effective communication skills help you collaborate with cross-functional teams and address production challenges. These skills and qualifications are essential for optimizing manufacturing efficiency, ensuring product quality, and supporting continuous improvement initiatives.

What is the difference between Entry Level Manufacturing Engineering vs Manufacturing Technician?

AspectEntry Level Manufacturing EngineeringManufacturing Technician
Required CredentialsBachelor's degree in engineering or related fieldAssociate degree or technical certification
Work EnvironmentDesign, process improvement, and project planning in manufacturing settingsHands-on equipment operation and maintenance on the factory floor
Employer & Industry UsageManufacturing companies, engineering firmsFactories, production plants

Entry Level Manufacturing Engineers focus on designing processes and improving manufacturing systems, often requiring a bachelor's degree. Manufacturing Technicians handle equipment operation and maintenance, typically with technical certifications. Both roles are essential in manufacturing environments but differ in responsibilities and qualifications.

What are the most commonly searched types of Manufacturing Engineering jobs in Buffalo, NY?

The most popular types of Manufacturing Engineering jobs in Buffalo, NY are:

What cities near Buffalo, NY are hiring for Entry Level Manufacturing Engineering jobs?

Cities near Buffalo, NY with the most Entry Level Manufacturing Engineering job openings:

Infographic showing various Entry Level Manufacturing Engineering job openings in Buffalo, NY as of August 2026, with employment types broken down into 89% Full Time, 7% Part Time, 3% Contract, and 1% Nights. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $63,089 per year, or $30.3 per hour.

Free Entry-Level Manufacturing Technician Training Program (Paid Training- Fall Class)

Greenforce Training Inc

Buffalo, NY • On-site

$44K - $57K/yr

Temporary

Posted 19 days ago


Job description

Overview:

University at Buffalo’s Center for Industrial Effectiveness in conjunction with Alfred State College is proud to announce a new Entry-level Manufacturing Technician (EMT) training program. The EMT training program equips trainees with the fundamental skills, knowledge, and hands-on experience needed to thrive in a dynamic manufacturing setting. It emphasizes technical proficiency, workplace safety, operational efficiency, and professional standards to support consistent, high-quality production.

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Program Objectives:

By the end of the Entry-Level Manufacturing Technician (EMT) Training Program, participants will:

    1.Understand the Role of an EMT – Gain a clear understanding of the responsibilities, expectations, and impact of an entry-level manufacturing technician.
    2.Follow Workplace Safety Protocols – Learn essential safety procedures, proper equipment operation, and emergency response techniques.
    3.Operate Manufacturing Tools and Technology – Develop hands-on experience using industry-specific tools, machinery, and production systems.
    4.Ensure Quality Control and Efficiency – Learn to monitor product quality, maintain production standards, and troubleshoot common manufacturing issues.
    5.Build Essential Workplace Skills – Strengthen teamwork, time management, and communication abilities to work effectively in a fast-paced manufacturing environment.

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Key Training Components:
    1.Work Readiness and Professional Skills
  • Develop teamwork, communication, and leadership skills for a manufacturing environment.
  • Gain job search skills, financial literacy, and workplace professionalism.
    1. 2.Introduction to Manufacturing Tools and Equipment
  • Learn to safely operate measurement, fastening, cutting, and shaping tools.
  • Understand the proper use of impact, clamping, and lubrication tools.
    1. 3.Fundamentals of Mechanics
  • Explore kinetic, gravitational, and potential energy concepts in manufacturing.
  • Safely operate mechanical systems and apply Newton’s Laws of Motion.
    1. 4.Pneumatics and Hydraulics
  • Differentiate between pneumatic and hydraulic systems and their applications.
  • Learn to operate, maintain, and troubleshoot fluid power systems safely.
    1. 5.Introduction to Electricity
  • Understand electrical circuits, conductors, insulators, and power measurement.
  • Apply Ohm’s Law and safely operate electrical components like switches and fuses.
    1. 6.Industrial Motors and Motor Controls
  • Identify common industrial motors, their components, and motor control systems.
  • Learn to read schematics, troubleshoot circuits, and understand variable frequency drives (VFDs).
    1. 7.Programmable Logic Controllers (PLC)
  • Gain handson experience with PLC systems, ladder logic, and industrial automation.
  • Connect sensors, switches, and actuators while troubleshooting control systems.
    1. 8.Process Control and Industrial Automation
  • Understand open vs. closedloop control systems and automation principles.
  • Learn process troubleshooting, system tuning, and industrial control applications.
    1. 9.Robotics in Manufacturing
  • Explore the differences between industrial robots and collaborative robots (cobots).
  • Learn about robotic safety, programming basics, and realworld applications.
  • ________________________________________

    Dates & Duration:

    October 5, 2026- November 27, 2026

    The program runs for approximately 12 weeks, 4 hours per day, totaling 240 hours, followed by a 160-hour paid internship at a regional manufacturing facility.

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    Target Audience:

    This program is ideal for individuals 18 and older who are looking to start or transition into a hands-on career in manufacturing. It’s a great fit for recent graduates, career changers, veterans, and underemployed or underrepresented individuals seeking in-demand skills and job opportunities in a growing industry.

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    Assessment and Certification:
  • Participants will be assessed through practical demonstrations, knowledge tests, and instructor evaluations.
  • A certificate of completion will be awarded upon successfully meeting all program objectives.
  • Students who fully complete the program will be able to utilize transfer of credit for prior learning at Alfred State College or can apply for credit for transfer at other SUNY institutions.
  • About University at Buffalo’s Center for Industrial Effectiveness (TCIE) and Alfred State College:

    TCIE is a continuing and professional education university center focused on workforce development and operational excellence. As an industry outreach arm for the UB School of Engineering and Applied Sciences, TCIE is well connected with the regions’ employers, community-based organizations, training providers, community colleges, and technical schools. As an active contributor in workforce development, TCIE works with industry to assess workforce needs, develop, and deliver seated, multi-modal curriculum that increases the size of qualified applicant pool, creating greater economic impact, and greater employment opportunities for the community.

    School of Applied Technology at Alfred State College is the premier technology campus for hands on learning and skilled trades in Western New York. The campus faculty are leaders themselves in the skilled trades and have a wide depth of knowledge and experience themselves that is brought to the classroom. The hands-on learning approach for the trades is a desirable learning platform for students to build upon and a solid level of foundation and work ethic which employers demand.