1

Additive Manufacturing Jobs in Rochester, NY (NOW HIRING)

... additive manufacturing. Understanding of transparent conductive films properties Experience in project management Minimum Experience Level 3 to 6 years Educational Requirements Minimum B.S. Degree in ...

Product Engineer

Rochester, NY · On-site

$85K - $95K/yr

... additive manufacturing. • Understanding of transparent conductive films properties • Experience in project management Minimum Experience Level 3 to 6 years Educational Requirements Minimum B.S.

Be Seen First

Hands-on experience with machining, welding, additive manufacturing, NC programming, or other fabrication processes. * Experience with large mechanical assemblies and assembly optimization.

Software Engineer Rochester, New York Full Time Company Description Impossible Objects is a rapidly growing organization in the dynamic and exciting 3D printing / additive manufacturing industry. We ...

NPD Mechanical Engineer I

Rochester, NY · On-site

$69K - $103K/yr

Experience with additive manufacturing (3D printing) methods desirable. * Experience with electro-mechanical assemblies * Familiarity with API675 agency standardsrequired * Familiarity with DFSS, DFM ...

Production Associate

Newark, NY · On-site

$18 - $22/hr

... manufacturing capacity across 10 facilities, Fathom seamlessly blends in-house capabilities across plastic and metal additive technologies, CNC machining, injection molding & tooling, urethane ...

Production Associate

Newark, NY · On-site

$17 - $21/hr

... manufacturing capacity across 10 facilities, Fathom seamlessly blends in-house capabilities across plastic and metal additive technologies, CNC machining, injection molding & tooling, urethane ...

Manufacturing Engineer

Henrietta, NY · On-site

$69K - $88K/yr

We are a manufacturer of material handling and fall protection products for the production and warehouse/distribution sectors. We're on the cutting edge of manufacturing and distribution; a thriving ...

Manufacturing Engineer

Henrietta, NY · On-site

$69K - $88K/yr

We are a manufacturer of material handling and fall protection products for the production and warehouse/distribution sectors. We're on the cutting edge of manufacturing and distribution; a thriving ...

next page

Showing results 1-20

Additive Manufacturing information

See Rochester, NY salary details

$13

$24

$34

How much do additive manufacturing jobs pay per hour?

As of Jun 10, 2026, the average hourly pay for additive manufacturing in Rochester, NY is $24.61, according to ZipRecruiter salary data. Most workers in this role earn between $19.90 and $28.46 per hour, depending on experience, location, and employer.

What is the difference between Additive Manufacturing vs CNC Machinist?

AspectAdditive ManufacturingCNC Machinist
CredentialsTypically requires technical training or certification in 3D printing technologiesRequires machining certifications or technical training in CNC operations
Work EnvironmentWorks in labs or manufacturing facilities with 3D printers and related equipmentWorks in machine shops or manufacturing plants operating CNC machines
Industry UsageUsed in prototyping, custom parts, and complex geometriesUsed for precision manufacturing of metal and plastic parts
Search & Comparison IntentOften compared for manufacturing processes involving digital fabricationCompared for traditional subtractive manufacturing skills

While both roles are involved in manufacturing, Additive Manufacturing focuses on building parts layer-by-layer using 3D printing technologies, whereas CNC Machinists operate subtractive machines to carve parts from raw materials. Understanding these differences helps in choosing the right career path or job search focus within the manufacturing industry.

What Is Additive Manufacturing?

Additive manufacturing (AM) is the process of creating products by adding material using one or more techniques. This is the opposite of subtractive manufacturing, which produces products by removing material. Many products are produced using a combination of these two techniques. To manufacture a plastic shape, you may use additive manufacturing to layer plastic materials then use subtractive manufacturing to cut and shape the plastic. In recent years, AM has started to focus on advanced techniques like 3D printing, where complex products are created layer by layer, using one or more materials. The main job in AM is that of an additive manufacturing engineer, although rapid prototyping may utilize this process to create a small model of a potential product.

What is additive manufacturing?

Additive manufacturing, often referred to as 3D printing, is a process of creating objects by adding material layer by layer, based on a digital model. Unlike traditional manufacturing methods that remove material from a solid block, additive manufacturing builds products directly from raw materials such as plastics, metals, or composites. This technology enables complex designs, rapid prototyping, and customization that would be difficult or impossible with conventional manufacturing processes.

What are the key skills and qualifications needed to thrive in Additive Manufacturing, and why are they important?

To excel in Additive Manufacturing, a solid understanding of engineering principles, 3D modeling, and materials science is typically required, often supported by a degree in engineering or a related field. Familiarity with CAD software, 3D printers, and quality assurance systems, as well as certifications like SME Additive Manufacturing Certification, is highly beneficial. Strong problem-solving, attention to detail, and effective communication skills help professionals innovate and collaborate in dynamic production environments. These competencies are essential for ensuring precision, efficiency, and the successful implementation of advanced manufacturing technologies.

What are some typical challenges faced in an Additive Manufacturing role, and how can they be addressed?

Professionals in Additive Manufacturing often encounter challenges such as ensuring part quality, optimizing print parameters, and troubleshooting equipment malfunctions. Working closely with engineering teams and using advanced simulation software can help address issues related to design for additive processes. Regular calibration of machinery and staying updated on the latest material advancements are also key strategies for overcoming common hurdles. Collaboration and ongoing training play a significant role in maintaining production efficiency and quality standards.
What are the most commonly searched types of Additive Manufacturing jobs in Rochester, NY? The most popular types of Additive Manufacturing jobs in Rochester, NY are:
What are popular job titles related to Additive Manufacturing jobs in Rochester, NY? For Additive Manufacturing jobs in Rochester, NY, the most frequently searched job titles are:
What job categories do people searching Additive Manufacturing jobs in Rochester, NY look for? The top searched job categories for Additive Manufacturing jobs in Rochester, NY are:
What cities near Rochester, NY are hiring for Additive Manufacturing jobs? Cities near Rochester, NY with the most Additive Manufacturing job openings:
Infographic showing various Additive Manufacturing job openings in Rochester, NY as of June 2026, with employment types broken down into 92% Full Time, 6% Part Time, and 2% Nights. Highlights an 94% Physical, 2% Hybrid, and 4% Remote job distribution, with an average salary of $51,198 per year, or $24.6 per hour.
Sr. Manager, Product Development Engineer - Fiber Assembly & Termination Systems, DDN

Sr. Manager, Product Development Engineer - Fiber Assembly & Termination Systems, DDN

TE Connectivity

Rochester, NY • On-site

Full-time

Medical, Life, Retirement, PTO

Posted 17 days ago


TE Connectivity rating

7.3

Company rating: 7.3 out of 10

Based on 64 frontline employees who took The Breakroom Quiz

88th of 139 rated electronics manufacturers


Job description

3/31/26
At TE, you will unleash your potential working with people from diverse backgrounds and industries to create a safer, sustainable and more connected world.
Job Description:
Job Overview
Sr. Manager, Product Development Engineer - Fiber Assembly & Termination Systems, Digital Data Networks (DDN) Business Unit | TE Connectivity
The Opportunity Join TE Connectivity's advanced Fiber Assembly organization as a Product Development Engineering Manager and help pioneer the next generation of fiber backplane cable assemblies, termination systems, and high-density interconnect solutions powering AI and hyperscale computing. You'll tackle complex engineering challenges in fiber optics, working with advanced assembly processes, additive manufacturing, and precision manufacturing to create products that enable the world's most demanding data center applications.
Why This Role Matters
As AI workloads demand unprecedented bandwidth density and reliability, fiber assembly engineering and advanced termination technologies have become mission-critical. You'll be at the forefront of solving complex technical challenges in fiber routing, polarity management, and high-density packaging that directly enable the AI revolution while advancing TE's leadership in sophisticated optical connectivity solutions.
Please note: operations are currently based at a temporary site in Webster, NY. The team will transition to a permanent Rochester location (near RIC) upon completion.
Job Requirements
What You'll Engineer:
Advanced Fiber Assembly Design
• Fiber Cable Assembly Systems: Develop innovative multi-fiber cable assemblies featuring advanced termination methods, polarity mapping, and shuffle configurations for high-density data center applications
• Termination Process Engineering: Design sophisticated fiber termination processes including mechanical splicing systems, and automated polishing sequences ensuring consistent optical performance
• Polishing Process Optimization: Engineer precision fiber endface polishing standards, including angle polishing (APC), geometry control, and surface quality optimization for ultra-low loss terminations
• Optical Shuffle Architecture: Design complex optical shuffle configurations and polarity mapping systems for parallel optics applications, including polarity reversal mechanisms and channel routing optimization
Advanced Manufacturing & Additive Technologies
• 3D Printing Applications: Leverage additive manufacturing for rapid prototyping of fiber management components, custom connector housings, and complex geometric strain relief structures enabling design optimization and reduced development cycle times
• Additive Manufacturing Materials: Evaluate and implement advanced 3D printing materials including flexible substrates, and multi-material printing for integrated opto-mechanical assemblies
Advanced Assembly Technologies
• Low Pressure Molding Systems: Develop advanced low-pressure molding processes for fiber cable strain relief, environmental sealing, and mechanical protection while maintaining critical bend radius specifications
• Bend Radius Management: Engineer sophisticated bend radius control mechanisms, including controlled bend limiters, fiber guides, and routing structures preventing optical performance degradation
• Fiber Routing Architecture: Design precision fiber routing solutions for intra-chassis and backplane applications, including fiber management systems, breakout assemblies, and high-density packaging
Optical Flex Circuit Development
• Flexible Substrate Design: Engineer flexible optical circuits with embedded fiber waveguides, micro-bend management features, and integrated termination points for compact assemblies
• Routing Optimization: Develop algorithmic approaches for optimal fiber pathway routing considering bend radius constraints, signal integrity, and mechanical stress distribution
• Multi-layer Architecture: Design complex multi-layer optical flex circuits incorporating fiber routing, electrical traces, and integrated alignment features
• Dynamic Bend Analysis: Perform comprehensive analysis of optical flex circuits under dynamic bending conditions including fatigue testing and performance degradation modeling
Patch Cord & Jumper Engineering
• Fiber Patch Cord Development: Engineer precision fiber patch cords and jumpers with optimized bend performance, durability testing, and connector interface compatibility
• Cable Assembly Validation: Develop comprehensive test methodologies for insertion loss, return loss, fiber geometry, and mechanical reliability of complex cable assemblies
• Cross-functional Integration: Collaborate with manufacturing, quality, and product management teams ensuring design for manufacturability (DFM) of precision fiber assembly systems
What your background should look like
Essential Qualifications
• Education: BS/MS in Optical Engineering, Mechanical Engineering, Electrical Engineering, Physics, or related technical field
• Experience: 13 years in fiber cable assembly, termination systems, or precision optical manufacturing
• Technical Expertise: Hands-on experience with fiber assembly processes, polishing technologies, and cable management systems
• Process Knowledge: Understanding of low-pressure molding, automated assembly processes, and fiber handling techniques
• Additive Manufacturing: Experience with 3D printing technologies, materials selection, and design for additive manufacturing (DFAM)
Preferred Qualifications
• Advanced Degree: MS/PhD in Optics, Photonics, Mechanical Engineering, Electrical Engineering, Materials Science, or Manufacturing Engineering
• Industry Experience: Background in telecommunications, data center, or high-speed interconnect markets with fiber assembly applications and additive manufacturing
• Standards Knowledge: Familiarity with IEC, TIA/EIA, and IEEE fiber optic standards, particularly multi-fiber and cable assembly specifications
• Programming Skills: MATLAB, Python, or other technical computing languages for process optimization, routing algorithms, and quality analysis
• Patent Experience: Track record of intellectual property development in fiber assembly processes, cable management systems, and additive manufacturing applications
• Automation Experience: Background in manufacturing automation, robotic systems, and process control for optical assembly applications
Competencies
SET : Strategy, Execution, Talent (for managers)
ABOUT TE CONNECTIVITY
TE Connectivity plc (NYSE: TEL) is a global industrial technology leader creating a safer, sustainable, productive, and connected future. As a trusted innovation partner, our broad range of connectivity and sensor solutions enable the distribution of power, signal and data to advance next-generation transportation, energy networks, automated factories, data centers enabling artificial intelligence, and more.
Our more than 90,000 employees, including 10,000 engineers, work alongside customers in approximately 130 countries. In a world that is racing ahead, TE ensures that EVERY CONNECTION COUNTS. Learn more at www.te.com and on LinkedIn, Facebook, WeChat, Instagram and X (formerly Twitter).
COMPENSATION
• Competitive base salary commensurate with experience: $180,400-$270,500 (subject to change dependent on physical location)
• Posted salary ranges are made in good faith. TE Connectivity reserves the right to adjust ranges depending on the experience/qualification of the selected candidate as well as internal and external equity.
• Total Compensation = Base Salary + Incentive(s) + Benefits
BENEFITS
• A comprehensive benefits package including health insurance, 401(k), disability, life insurance, employee stock purchase plan, paid time off and voluntary benefits.
EOE, Including Disability/Vets
IMPORTANT NOTICE REGARDING RECRUITMENT FRAUD
TE Connectivity has become aware of fraudulent recruitment activities being conducted by individuals or organizations falsely claiming to represent TE Connectivity. Please be advised that TE Connectivity never requests payment or fees from job applicants at any stage of the recruitment process. All legitimate job openings are posted exclusively on our official careers website at te.com/careers, and all email communications from our recruitment team will come only from actual email addresses ending in @te.com. If you receive any suspicious communications, we strongly advise you not to engage or provide any personal information, and to report the incident to your local authorities.
Job Locations:
780 Salt Road
Webster, New York 14580-9709
United States
Posting City: Rochester
Job Country: United States
Travel Required: 10% to 25%
Requisition ID: 148427
Workplace Type: Onsite
External Careers Page:

What TE Connectivity employees say

Pay

Benefits

Hours and flexibility

Workplace

Get the full story on Breakroom