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Computer Validation Jobs in Rhode Island (NOW HIRING)

Final deliverables include detailed casting documentation packages-comprising simulation results, sprue/gating CAD models, validated process parameters, and recommended SOP inputs-that facilitate a ...

Familiarity with Computer System Validation (CSV) and digital manufacturing systems Location * This is an onsite opportunity with hybrid capabilities in Providence, RI Veranex is an equal opportunity ...

Senior Mechanical Engineer

East Providence, RI · On-site

$105K - $139K/yr

Select and validate polymer materials based on functional requirements, chemical compatibility, processability, and longterm reliability. Create highquality CAD models and drawings (SolidWorks ...

Analyze circuit board specifications, define and validate hardware architecture and component ... SolidWorks, AutoCAD, or other mechanical CAD software experience would also be useful (employed in ...

Autonomous Systems Software Engineer

Newport, RI · On-site

$174K - $206K/yr

Bachelor's degree in computer science, software engineering, computer engineering or related field ... Experience in software validation and testing Position Location: Newport, Rhode Island *The ...

Patient Care Technician

Wakefield, RI · On-site

$20.25 - $25/hr

... computer system. Minimum Qualifications: HS Diploma or equivalent and current RI Nursing Assistant License and current valid BLS from AHA required. Previous Nursing Assistant experience. Pay starting ...

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Computer Validation information

See Rhode Island salary details

$10

$53

$84

How much do computer validation jobs pay per hour?

As of Jul 23, 2026, the average hourly pay for computer validation in Rhode Island is $53.19, according to ZipRecruiter salary data. Most workers in this role earn between $40.96 and $63.08 per hour, depending on experience, location, and employer.

What is the salary of SoC validation engineer?

The salary of a SoC validation engineer typically ranges from $80,000 to $130,000 annually, depending on experience, location, and company size. Entry-level positions may start lower, while experienced engineers with specialized skills in hardware description languages and verification tools can earn higher salaries.

How to become a validation specialist?

To become a validation specialist, typically one needs a bachelor's degree in life sciences, engineering, or a related field, along with experience in quality assurance or manufacturing. Certification in validation or Good Manufacturing Practices (GMP) can enhance job prospects. Skills in documentation, attention to detail, and knowledge of validation tools and protocols are essential for success in this role.

What is the difference between Computer Validation vs Quality Assurance Specialist?

AspectComputer ValidationQuality Assurance Specialist
Required CredentialsGxP, 21 CFR Part 11, validation certificationsISO standards, QA certifications, GxP knowledge
Work EnvironmentPharmaceutical, biotech, regulated industriesManufacturing, healthcare, regulated industries
Employer & Industry UsageRegulated industries requiring validated systemsEnsuring quality compliance across processes

Computer Validation focuses on verifying that computer systems meet regulatory requirements and function correctly, primarily in regulated industries. Quality Assurance Specialists oversee overall quality processes, ensuring compliance and standards across various operations. While both roles require knowledge of GxP and industry regulations, Computer Validation is more technical and system-specific, whereas QA Specialists have a broader scope in quality management.

What is the salary of a CSV engineer?

A CSV (Computer System Validation) engineer's salary typically ranges from $70,000 to $120,000 annually, depending on experience, location, and certifications. Senior roles or those with specialized skills in validation tools and regulatory compliance may earn higher salaries.

Is computer system validation a good field?

Computer validation professionals ensure that computer systems in regulated industries meet quality and compliance standards, often requiring knowledge of GxP regulations and validation tools. The field offers steady demand, especially in pharmaceuticals and biotech, with opportunities for certification and career growth. It is suitable for those with technical skills and attention to detail interested in quality assurance and regulatory compliance.
What are popular job titles related to Computer Validation jobs in Rhode Island? For Computer Validation jobs in Rhode Island, the most frequently searched job titles are:
What job categories do people searching Computer Validation jobs in Rhode Island look for? The top searched job categories for Computer Validation jobs in Rhode Island are:
Infographic showing various Computer Validation job openings in Rhode Island as of July 2026, with employment types broken down into 1% As Needed, 81% Full Time, 15% Part Time, and 3% Contract. Highlights an 93% Physical, 2% Hybrid, and 5% Remote job distribution, with an average salary of $110,645 per year, or $53.2 per hour.
NPI Process Engineer Casting

NPI Process Engineer Casting

Tiffany

Cumberland, RI

Other

Posted 29 days ago


Tiffany & Co. rating

7.2

Company rating: 7.2 out of 10

Based on 42 frontline employees who took The Breakroom Quiz

9th of 29 rated jewelry retailers


Job description

Tiffany & Co. is one of the most legendary brands in the world today. With a history that spans back to 1837, Tiffany & Co is a jeweler and specialty retailer, whose merchandise offerings include an extensive selection of jewelry, as well as timepieces, sterling silverware, China, crystal, stationery, fragrances, and accessories. Tiffany & Co. operates different manufacturing facilities in the US, where jewelry products unique to our company are crafted by a diverse workforce.

Position Overview

The NPI Casting Process Engineer drives casting optimization and process development during the early stages of new product integration; translating complex design intent into manufacturable, high-quality casting solutions. This role works cross-functionally with CAD Developers, Project Leads, and Manufacturing Engineers to ideate and refine sprue systems, leveraging an in-depth understanding of fluid dynamics, solidification behavior, shrinkage compensation, and defect mitigation strategies. Utilizing advanced flow simulation tools, the engineer analyzes fill and solidification results to predict and resolve potential issues including porosity, cracking, cold shuts, and incomplete fills. These insights guide iterative sprue optimization and process parameter adjustments. The engineer is responsible for initiating and managing trial casting work orders, evaluating physical samples for quality, dimensional accuracy, and surface finish, and using non-destructive testing (NDT) methods when appropriate. This role ensures that validated casting designs meet aesthetic and functional requirements prior to production handoff. Final deliverables include detailed casting documentation packages-comprising simulation results, sprue/gating CAD models, validated process parameters, and recommended SOP inputs-that facilitate a seamless transition to manufacturing while supporting first-time quality and long-term process stability

Key Accountabilities

Lead casting design validation by thoroughly analyzing casting simulation data and physical trial casting

results to identify potential. Utilize advanced casting simulation software to evaluate variables that impact

casting quality and reduce scrap rates. Work closely with CAD and Engineering teams to iterate on casting

designs, balancing manufacturability, mechanical properties, and aesthetic requirements to meet both

engineering and design expectations.

Lead casting design validation by thoroughly analyzing casting simulation data and physical trial casting

results to identify potential. Utilize advanced casting simulation software to evaluate variables that impact

casting quality and reduce scrap rates. Work closely with CAD and Engineering teams to iterate on casting

designs, balancing manufacturability, mechanical properties, and aesthetic requirements to meet both

engineering and design expectations.

Manage trial casting activities by coordinating with cross-functional teams to create detailed work orders,

schedule test runs, and define acceptance criteria for prototype castings. Lead the hands-on evaluation of

cast parts, performing dimensional inspections, non-destructive testing (NDT), and other analysis to verify

accuracy and conformity to specifications. Capture and analyze process data to diagnose deviations and

recommend iterative adjustments to sprue design, tree setup, or casting parameters. 

Document findings and communicate results effectively to stakeholders to support timely decision-making and 

minimize development cycle time.

Apply lean manufacturing and quality tools to identify inefficiencies, bottlenecks, and sources of casting

defects early in the NPI process. Use data-driven approaches to prioritize improvements and implement

corrective actions that enhance yield, reduce cycle time, and improve overall process robustness.

Continuously monitor process metrics during ramp-up phases, driving a culture of continuous improvement

and ensuring sustainable quality performance.

Drive continuous innovation and technology adoption by researching and evaluating emerging casting

technologies, materials, and process improvements. Identify opportunities to incorporate advanced

methods such as additive manufacturing for mold creation, automation in gating system production, or

real-time process monitoring sensors. Collaborate with NPI and manufacturing teams to pilot new

techniques, assess feasibility, and implement best practices that enhance casting quality, reduce cycle

times, and lower overall production costs. Promote a forward-thinking mindset that keeps the casting

process at the forefront of industry advancements and supports long-term competitive advantage.
 

Required Bachelor's degree in Mechanical Engineering, Materials Science, Manufacturing Engineering, or a related discipline; or equivalent hands-on experience in casting process development within the jewelry industry. Strong ability to analyze and solve complex casting process challenges using Root Cause Analysis methods. Experience managing multiple projects simultaneously in a fast-paced New Product Integration (NPI) environment, with strong organizational and time management skills. Understanding of metallurgical fundamentals relevant to precious metals Ability to perform hands-on inspections of cast parts Working knowledge of CAD software, particularly tools like Rhino and/or Solid works Excellent communication skills (written, verbal, and presentation) to effectively collaborate with cross-functional teams including CAD, manufacturing, and quality. Advanced proficiency in Microsoft Office Suite, particularly Excel Proficiency in statistical analysis and process control technique.

Preferred Hands-on experience with simulation software relevant to manufacturing Knowledge of modern jewelry manufacturing techniques Direct experience in jewelry casting processes, including investment casting Familiarity with project management tools such as Wrike Knowledge of advanced data tools PDM/PLM, ERP, and Tulip systems Experience supporting product launches and production ramp-up

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