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Plating Process Engineer Jobs in Pennsylvania (NOW HIRING)

Sr. Mechanical Engineer

Yocumtown, PA ยท On-site

$100K - $132K/yr

... Process Engineering, Test Lab personnel, other Engineers (local and global). * Ability to ... General knowledge of molding, stamping, plating is a plus. This position requires access to ...

Manufacturing Engineer

Kulpsville, PA ยท On-site

$72K - $93K/yr

An understanding of non-machining processes such as plating, coatings, welding and brazing ... Bachelor's degree in either Manufacturing Engineering (Technology), and /or experience as a ...

Quality Systems Engineer

Aston, PA ยท On-site

$100K - $105K/yr

Quality Systems Engineer As a Quality Systems Engineer, you will plan and execute the Quality ... Processes (plating, coating, passivation, heat treatment). * Ability to interpret and inspect ...

Quality Systems Engineer

Aston, PA ยท On-site

$100K - $105K/yr

Quality Systems Engineer As a Quality Systems Engineer, you will plan and execute the Quality ... Processes (plating, coating, passivation, heat treatment). * Ability to interpret and inspect ...

... and processes requiring a diversified and integrated knowledge of mechanical, electrical ... plating, water purification and recycling, pollution control equipment, chemical handling, and ...

... and processes requiring a diversified and integrated knowledge of mechanical, electrical ... plating, water purification and recycling, pollution control equipment, chemical handling, and ...

... and processes requiring a diversified and integrated knowledge of mechanical, electrical ... plating, water purification and recycling, pollution control equipment, chemical handling, and ...

Showing results 21-40

Plating Process Engineer information

What skills and qualifications are needed to thrive as a plating process engineer?

A Plating Process Engineer requires a solid background in chemical engineering, materials science, and process optimization, often supported by a relevant engineering degree. Familiarity with plating equipment, chemical bath controls, statistical process control (SPC), and industry standards such as ISO 9001 is crucial. Strong analytical thinking, attention to detail, and effective problem-solving and communication skills help excel in this role. These abilities ensure high-quality metal finishing, process efficiency, and compliance with safety and environmental regulations.

What is the difference between Plating Process Engineer vs Electroplating Technician?

AspectPlating Process EngineerElectroplating Technician
CredentialsBachelor's degree in materials, chemistry, or engineeringHigh school diploma or technical certification
Work EnvironmentDesign, develop, and optimize plating processes in manufacturing settingsOperate and maintain plating equipment on the production line
Industry UsageUsed in industries like aerospace, automotive, electronicsPrimarily in manufacturing and finishing departments
ResponsibilitiesProcess development, troubleshooting, quality controlSetup, operation, and basic maintenance of plating equipment

The Plating Process Engineer focuses on designing and improving plating processes, requiring higher education and analytical skills. In contrast, the Electroplating Technician handles day-to-day operations and equipment maintenance. Both roles are essential in the plating industry but differ in responsibilities and qualifications.

What is a plating process engineer?

Plating Process Engineers are professionals who design, optimize, and oversee electroplating and metal finishing processes in manufacturing environments. They are responsible for developing procedures to deposit metal coatings onto various substrates, ensuring product quality and adherence to industry standards. Their work often involves troubleshooting plating issues, maintaining equipment, implementing safety protocols, and collaborating with other engineers to improve process efficiency. These engineers are essential in industries such as automotive, electronics, aerospace, and jewelry where surface finishing is critical to product performance and appearance.

What are common challenges faced by plating process engineers, and how can they be addressed?

Plating Process Engineers often encounter challenges such as maintaining consistent coating quality, managing chemical bath composition, and ensuring compliance with environmental and safety regulations. Variations in process parameters or contamination can affect product quality, so meticulous monitoring and regular maintenance of equipment are vital. Collaboration with quality assurance teams and production staff helps quickly identify and resolve any issues, while ongoing training and process audits can further enhance reliability and efficiency in plating operations.
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What job categories do people searching Plating Process Engineer jobs in Pennsylvania look for? The top searched job categories for Plating Process Engineer jobs in Pennsylvania are:
Infographic showing various Plating Process Engineer job openings in Pennsylvania as of July 2026, with employment types broken down into 1% As Needed, 79% Full Time, 15% Part Time, 2% Temporary, 2% Contract, and 1% Nights. Highlights an 91% Physical, 3% Hybrid, and 6% Remote job distribution.

Principal Engineer - Connector Reliability

Amphenol TCS

Yocumtown, PA โ€ข On-site

$98K - $123K/yr

Full-time

Re-posted 29 days ago


Job description

Amphenol Communications Solutions (ACS), a division of Amphenol Corporation, is a world leader in interconnect solutions for Communications, Mobile, RF, Optics, and Commercial electronics markets. Amphenol Corporation is one of the world’s largest designers and manufacturers of electrical, electronic and fiber optic connectors and interconnect systems, antennas, sensors and sensor-based products and coaxial and high-speed specialty cable. ACS has an expansive global presence in research and development, manufacturing, and sales. We design and manufacture a wide range of innovative connectors as well as cable assemblies for diverse applications including server, storage, data center, mobile, RF, networking, industrial, business equipment, and automotive.


POSITION SUMMARY

The Principal Engineer Connector Reliability is the senior technical authority for connector reliability within Amphenol Power BU. This is a high-impact individual contributor role not a product development position that provides independent, expert-level reliability support to design, quality, and application engineering teams across the full product development lifecycle.

This role translates high-risk failure modes identified through DFMEA and risk evaluation into rigorous, targeted reliability test programs. By combining reliability engineering discipline with compliance support, this role ensures that Amphenol Power connector products are both safe and durable before they reach market.

KEY RESPONSIBILITIES

Risk-Based Reliability Test Definition & Planning

  • Consume DFMEA outputs and risk evaluation results to identify the highest-priority failure modes requiring reliability test coverage.
  • Define targeted test plans specifying methods, stress levels, sample sizes, acceptance criteria, and pass/fail thresholds grounded in physics-of-failure principles.
  • Map identified failure modes (contact wear, corrosion, thermal cycling, mechanical fatigue, environmental degradation) to appropriate methods drawn from IEC 60512, USCAR-2, AEC-Q200, MIL-STD, and Amphenol internal standards.
  • Develop and maintain standardized reliability test frameworks, sequence-of-test matrices, and test plan templates across Power BU programs and global sites.
  • Review test results against acceptance criteria; interpret failures in the context of the original risk profile and advise on required design or process responses.
  • Align reliability testing, qualification testing, and certification testing to minimize duplication, reduce cost, and accelerate time to approval.

MTBF & Reliability Prediction

  • Develop MTBF predictions using MIL-HDBK-217F, Telcordia SR-332, IEC TR 62380, and FIDES methodologies.
  • Build physics-of-failure models to evaluate long-term connector reliability under thermal, mechanical, and electrical stress conditions.
  • Develop mating cycle life models relating contact geometry, plating system, normal force, and mechanics to degradation of contact resistance and electrical performance over time.
  • Define and validate accelerated life testing (ALT) and HALT plans; develop reliability growth models and reliability demonstration test (RDT) matrices for new programs.
  • Analyze field return data to validate predicted failure models and continuously improve prediction accuracy; provide reliability data for customer proposals and qualification packages.

Product Development Support

  • Review and provide expert commentary on product designs, drawings, specifications, and test protocols from a reliability and risk perspective.
  • Advise on connector contact system design choices (material, plating, geometry) as they relate to wear life, contact reliability, and mating cycle durability.
  • Support selection of test methods and qualification criteria aligned to IEC, UL, USCAR, AEC-Q200, and customer-specific reliability requirements.
  • Provide guidance on reliability-impacting manufacturing processes plating thickness, assembly torque, housing material selection and collaborate with quality and manufacturing teams to ensure process controls support reliability targets.
  • Integrate compliance requirements directly into DFMEA reviews, risk assessments, and reliability test planning ensuring safety-critical and regulatory-driven failure modes receive appropriate validation coverage.
  • Assess compliance and certification impact of design changes, material substitutions, supplier changes, and manufacturing transfers; manage ongoing certification maintenance requirements.
  • Act as the customer-facing SME representing site engineering on product safety, certification, and regulatory compliance supporting RFQs, audits, and technical reviews with authoritative, clear responses on certification paths, timelines, and limitations.

Failure Analysis & Continuous Improvement

  • Lead and support failure analysis investigations (8D, fishbone, fault tree, FTA, SEM/cross-section) for in-process, field, and customer-returned connector products.
  • Identify systemic failure trends across product lines; initiate CAPA in collaboration with design and quality teams.
  • Maintain and grow a reliability knowledge base capturing lessons learned from failures, test programs, and qualification activities across all programs.
  • Drive continuous improvement in reliability processes and tools; introduce updated methodologies and industry best practices as standards evolve.
  • Correlate field issues and failure analysis results to both reliability models and compliance assumptions, driving continuous improvement across both disciplines.
  • Define and deploy standardized compliance and qualification processes across all Power BU sites eliminating site-to-site variability and reactive, ad-hoc approaches.

Technical Standards, Documentation & Communication

  • Maintain deep knowledge of IEC 60512, UL 1977, USCAR-2, AEC-Q200, and relevant automotive, industrial, and power application standards.
  • Author and maintain reliability engineering procedures, test plan frameworks, MTBF templates, and qualification standards for use across Power BU sites.
  • Prepare and present reliability assessments, risk summaries and MTBF reports for engineering leadership, program teams, and customers.
  • Collaborate with global Engineering Excellence SMEs, quality engineers, and operations teams to align reliability and compliance standards and propagate best practices.
  • Provide training and guidance to engineering teams on compliance fundamentals, certification pitfalls, and integration with reliability best practices.

FINANCIAL AND MANAGERIAL ACCOUNTABILITIES

This role has no direct financial or managerial accountabilities. The Principal Engineer Connector Reliability influences product reliability outcomes through technical guidance and risk assessment, not through budgetary or direct-report authority.

EDUCATION

  • Ph.D. in Mechanical Engineering, Electrical Engineering, Materials Science, or related field strongly preferred; master's degree considered with commensurate experience.

EXPERIENCE

  • 8+ years of engineering experience in the connector, electronic components, or related electro-mechanical industry.
  • 5+ years of dedicated reliability engineering experience with demonstrated focus on risk-based test planning and lifetime prediction.
  • Proven ability to consume DFMEA outputs and translate high-RPN failure modes into targeted, executable reliability test plans.
  • Experience designing and executing ALT, HALT, and HAST programs, and reliability demonstration tests.
  • Working knowledge of connector design, manufacturing processes (stamping, molding, plating, assembly), and their reliability implications.
  • Experience with statistical tools and reliability software: Weibull++, ReliaSoft, Minitab, or equivalent.
  • Knowledge of Six Sigma and DFSS methodologies is a plus.

SKILLS REQUIRED

Technical Skills

Behavioral Competencies

Risk-based reliability test plan definition

Strong analytical and critical thinking

MTBF / reliability prediction modeling

Independent and self-directed work style

Accelerated life test design and execution

Cross-functional influencer no authority required

Failure analysis (FTA, 8D, SEM, cross-section)

Clear communicator of complex technical topics

Statistical reliability analysis (Weibull, etc.)

High attention to detail and process discipline

Connector physics-of-failure knowledge

Proactive identifies risk early and drives resolution

IEC / USCAR / AEC-Q200 standards knowledge

Collaborative and globally oriented mindset

Technical report writing and presentation

Committed to continuous improvement and learning

TRAVEL

Up to 25% domestic and international travel to Amphenol Power BU sites, customer locations, and supplier facilities.


Amphenol Corporation is proud of our reputation as an excellent employer. Our focus is to provide the highest level of support and responsiveness to both our employees and our customers, the world's largest technology companies. Amphenol Corporation offers the opportunity for career growth within a global organization. We believe that Amphenol Corporation is unique in that every employee, regardless of his or her position, has the ability to positively impact the business.

Amphenol is an “Equal Opportunity Employer” - Minority/Female/Disabled/Veteran/Sexual Orientation/Gender Identity/National Origin. For additional company information please visit our website at https://www.amphenol-cs.com/


Amphenol TCS logo

About Amphenol TCS

Sourced by ZipRecruiter

Industry

Electrical equipment, appliance, and component manufacturing

Company size

1,001 - 5,000 Employees

Headquarters location

Nashua, NH, US

Year founded

1968