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Optical Coating Jobs in Ohio (NOW HIRING)

... Optical, and leading e-commerce platforms. Our unique business model and relentless pursuit of ... Coating: * Inspector: Inspect lenses to ensure that they are optically and cosmetically accurate.

Quality Inspector

Eastlake, OH · On-site

$20 - $24/hr

... optical comparators, and more * Apply GD&T principles to interpret complex blueprints and verify ... Inspect parts from outside processes (heat treat, plating, coating, NDT, etc.) * Ensure inspection ...

Principal Mechanical Engineer

Dayton, OH · On-site

$91K - $162K/yr

S., Attalon engineers critical optical, laser, and coating technologies that enable systems to see farther, target faster, and survive the harshest environments. From high-energy directed laser ...

... coating. This role is essential to ensuring quality control and precision in our optical lens production process. Primary Responsibilities Spot lenses to check power and prism measurements for ...

Mid-level PCB Engineer (Manufacturing)

Columbus, OH · On-site

$70K - $90K/yr

Conformal coating * Knowledge of IPC-A-610 workmanship standards. * AOI (Automated Optical Inspection) * Pick-and-place equipment * SMT programming and optimization * Strong root-cause analysis ...

Staff RF Engineer

Osgood, OH · On-site

$155.20 - $232.80/hr

... optical frequencies. * Extending design principles and optimization procedures into domains with ... Experience with low‑observable RF and IR coating materials and processes; ability to author and ...

Showing results 41-60

Optical Coating information

What is an optical coating technician?

Optical coating technicians are skilled professionals who apply thin layers of material onto optical components, such as lenses, mirrors, or filters, to alter their reflective, transmissive, or absorptive properties. These coatings can enhance the performance of optical devices by reducing glare, increasing light transmission, or providing protective barriers. Technicians use specialized equipment in cleanroom environments and follow precise processes to ensure high-quality coatings for applications in industries like photography, telecommunications, and medical devices.

What are the key skills and qualifications needed to thrive as an optical coating technician?

To thrive as an Optical Coating Technician, you need knowledge of thin film deposition, precision measurement, and a background in physics or engineering, often supported by relevant technical certifications or an associate degree. Familiarity with vacuum coating systems, spectrophotometers, and cleanroom protocols is typically required. Attention to detail, problem-solving ability, and effective teamwork are crucial soft skills in this role. These skills ensure high-quality coatings, minimize defects, and support the production of advanced optical components for industries like aerospace, medical devices, and telecommunications.

What are some common challenges faced by professionals working in optical coating, and how can they be addressed?

Professionals in optical coating often face challenges related to maintaining high precision and consistency in thin film deposition, as minor process variations can impact coating performance. Cleanroom environments and strict quality control protocols are essential to minimize contamination and defects. Working closely with engineers, quality assurance teams, and equipment technicians helps address technical issues quickly. Continuous training and familiarity with evolving coating technologies also support effective problem-solving and career development in this specialized field.

What is the difference between Optical Coating vs Optical Technician?

AspectOptical CoatingOptical Technician
CredentialsCertifications in optics, coatings, or related fieldsHigh school diploma or technical training, certifications vary
Work EnvironmentCleanrooms, laboratories, manufacturing facilitiesOptical labs, manufacturing plants, repair shops
Industry UsageDesigning and applying coatings to lenses and optical componentsAssembling, testing, and repairing optical devices

Optical Coating specialists focus on applying specialized coatings to optical components to enhance performance, while Optical Technicians handle the assembly, testing, and maintenance of optical systems. Both roles require knowledge of optics but differ in responsibilities and work environments.

What are popular job titles related to Optical Coating jobs in Ohio?

For Optical Coating jobs in Ohio, the most frequently searched job titles are:

What job categories do people searching Optical Coating jobs in Ohio look for?

The top searched job categories for Optical Coating jobs in Ohio are:

Infographic showing various Optical Coating job openings in Ohio as of August 2026, with employment types broken down into 81% Full Time, 16% Part Time, 2% Contract, and 1% Nights. Highlights an 88% Physical, 1% Hybrid, and 11% Remote job distribution.

Principal Mechanical Engineer

Attalon, Inc.

Beavercreek, OH • On-site

$90 - $130/hr

Other

Posted 17 days ago


Job description

About this position

Attalon is a leading technology partner to the global aerospace and defense industry, specializing in lasers and precision optics. With over 500 employees in the U.S., Attalon engineers critical optical, laser, and coating technologies that enable systems to see farther, target faster, and survive the harshest environments. From high-energy directed laser systems to satellite optics and hypersonic thermal protection, Attalon equips the warfighter with the advantage of precision.

This role is an on-site position based in Beavercreek, OH. Our Laser Systems Integration facility focuses on building high energy lasers for the defense market, supporting critical national security initiatives and defense innovation. At Attalon, we’re redefining performance, precision, and reliability in defense technologies.

A Principal ME will demonstrate expertise in the development of precision, opto-mechanical subsystems such as gimbaled telescopes, directed energy beam directors, positioning mechanisms, and integrated sensors, to be deployed in spaceborne, airborne, terrestrial, and seaborne environments. Responsibilities include generating detailed CAD models, overseeing structural, thermal, and dynamic analyses, characterizing system performance and tracking requirements, and preparing engineering documentation. This role requires close collaboration across disciplines to ensure all functional and performance requirements are met effectively. Additionally, the Principal Mechanical Engineer will contribute to the design of tooling, as well as the creation of work instructions to support the assembly, integration, and testing of deliverable hardware. A Principal ME may also be asked to support proposal preparation and cost estimating for new projects and will be expected to work with program and functional leadership to direct the design efforts of a mechanical design team.

Responsibilities
  • Demonstrate technical leadership: Utilize expert-level knowledge in Mechanical Engineering and/or Opto-Mechanical Engineering to execute major development programs, lead and mentor cross‑functional teams, and drive design initiatives to achieve program goals.
  • Own product design and development: Lead product design and process development activities, ensuring all designs and processes meet customer specifications, technical requirements, and functional performance standards.
  • Develop and maintain system‑level CAD models: Oversee the creation and maintenance of system‑level CAD designs, including layout generation, component and assembly modeling, and detailed drawings to support manufacturing and integration.
  • Conduct advanced analysis and verification: Perform or oversee structural, dynamic, shock, and thermal analyses such as FEA and STOP (using tools like Sigfit) to certify compliance with functional and performance requirements, ensuring designs meet mission‑critical standards.
  • Collaborate with program management: Provide technical guidance and strategic input to program leaders, contributing to project planning and execution while adhering to financial targets and delivering cost and status updates as needed.
  • Support manufacturing and operations: Partner with Manufacturing/Operations to implement Design for Manufacturing (DFM) and Design for Manufacturability and Assembly (DFMA) principles, ensuring products meet cost, quality, and schedule objectives.
  • Participate in advanced technology development: Contribute to innovation by providing insights into new concepts and informing research and development activities to maintain a competitive edge in precision opto‑mechanical systems.
  • Manage product configurations and changes: Participate in configuration control, change control, and material review processes (e.g., CCD, ECO, NOR, and RCN activities) to ensure traceability and maintain fidelity for assigned programs.
Minimum Qualifications
  • Minimum ten years of related experience in a professional role with a Bachelor’s degree or related discipline.
  • Minimum of seven years of experience with a Master’s degree or three years with a Ph.D. in a relevant field.
Preferred Qualifications
  • Experience in optomechanical or precision mechanism design: Familiarity with optomechanical design principles and/or precision mechanism development, with the ability to apply core engineering fundamentals throughout the design process.
  • Knowledge of Optical System Design: Experience working with optical systems from concept to production, including optics, mounting strategies, Geometric Dimensioning and Tolerancing (GD&T), manufacturability, and cost estimation.
  • Competence with 3D CAD software: Proficiency with SOLIDWORKS and Solidworks PDM is preferred.
  • Familiarity with analysis methods and tools: Understanding of thermal, vibrational, and shock analysis methods for optical systems or precision mechanisms, with experience using Femap/NX Nastran, Simcenter 3D, Mathcad, MATLAB, and/or Star CCM+.
  • Experience with precision mechanisms: Hands‑on experience in the design, analysis, assembly, and testing of precision mechanisms, including motor and bearing sizing, encoder selection, lubrication, and flexure design.
  • Understanding of advanced materials: Familiarity with designing subsystems that use specialized materials such as ceramics, specialty metals (e.g., Invar), carbon fiber composites, and optical coatings.
  • Familiarity with systems engineering tools and practices: Knowledge of methodologies such as error budgeting, Failure Modes and Effects Analysis (FMEA), and Technical Performance Measure (TPM) tracking.
  • Exposure to optical systems integration and testing: Experience with integrating, aligning, or testing optical systems is highly valued, and familiarity with optical and dynamic testing or data analysis is a plus.
  • Design for assembly and integration: Understanding of key principles for designing complex optomechanical systems, including alignment planning, tolerance stack analysis, and assembly workflows.
  • Strong interpersonal and organizational skills: Effective communication and collaboration skills with a proven ability to work independently or as part of a multidisciplinary team. Attention to detail and a structured approach to problem‑solving are essential.
Equal Opportunity Employer Statement

Attalon, Inc. is an equal opportunity/affirmative action employer. All qualified applicants will receive consideration for employment without regard to sex, gender identity, sexual orientation, race, color, religion, national origin, disability, protected Veteran status, age, or any other characteristic protected by law.

Export Control Compliance

This role involves access to technology, materials, software, or hardware subject to U.S. export control laws. Therefore, to be considered, candidates must be classified as a “U.S. Person” under applicable regulations or be eligible for authorization under a U.S. government export license.

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