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Financial Engineer Jobs in Oregon (NOW HIRING)

DevOps Engineer

OR · On-site +1

$52.75 - $72.25/hr

... financial software company that develops and sells financial, accounting and tax preparation ... Engineer Role - Devops Engineer Remote Position Duration: - 12+ months Skills - Configuration ...

Upstart's Verifications Decisioning Engineering team builds the backend platform that powers ... You'll work on distributed systems that integrate third-party financial data providers, machine ...

AI & Automation Engineer

Portland, OR · On-site

$90K - $120K/yr

Just as we work to improve our clients' financial well-being, we also work to strengthen local ... Programming Skills: Proficiency in at least one programming or scripting language (such as Python ...

Just as we work to improve our clients' financial well-being, we also work to strengthen local ... Programming Skills: Proficiency in at least one programming or scripting language (such as Python ...

These are mission-critical systems where every state transition must be financially correct ... As a Staff Engineer, your work will have a profound impact on our core FCM infrastructure, directly ...

Engineers work across a variety of Bank initiatives while partnering closely with Product, Compliance, Legal, Risk, Finance, Operations, and Engineering to deliver scalable software in a regulated ...

Engineers work across a variety of Bank initiatives while partnering closely with Product, Compliance, Legal, Risk, Finance, Operations, and Engineering to deliver scalable software in a regulated ...

Data Visualization Engineer

Beaverton, OR · On-site

$120K - $145K/yr

Responsibilities : • Work with a team of approximately 10-12 professionals, including principal engineers, domain partners, and finance analysts. • Navigate multiple data sources and trace back ...

Financial Business Partner: Work closely with Site Manager and operation leadership, provide ... S. without sponsorship Founded in 1871, Weir is a world leading engineering business with a purpose ...

Financial Business Partner: Work closely with Site Manager and operation leadership, provide ... S. without sponsorship Founded in 1871, Weir is a world leading engineering business with a purpose ...

Senior Software Engineer

OR · On-site +1

$122K - $161K/yr

Boosted.ai is building AI purpose-built for finance to help teams do more. Our mission is to optimize investing and boost productivity. We're already trusted by leading enterprises and developers ...

Deployment Engineer

OR · On-site +1

$100K/yr

Array is a financial innovation platform that helps digital brands, financial institutions, and ... As a Deployment Engineer at Array, you will work with SaaS products and solutions in a post-sales ...

Lead Deployment Engineer

OR · On-site +1

$150K/yr

Array is a financial innovation platform that helps digital brands, financial institutions, and ... As a Lead Deployment Engineer at Array, you will lead complex, enterprise-scale SaaS ...

Showing results 41-60

Financial Engineer information

See Oregon salary details

$80.4K

$117.2K

$143.8K

How much do financial engineer jobs pay per year?

As of Aug 20, 2026, the average yearly pay for financial engineer in Oregon is $117,160.00, according to ZipRecruiter salary data. Most workers in this role earn between $105,700.00 and $131,600.00 per year, depending on experience, location, and employer.

What is a financial engineer?

A financial engineer, also called a computational engineer, advises clients on investment strategies and risk management based on quantitative analysis of their portfolio and the atmosphere in the stock market. As a financial engineer, your job duties include analyzing the stock market to predict how stocks will perform, building models of trends in the stock market based on market history, and make recommendations on how to manage their portfolio.

What is a financial engineer?

A Financial Engineer is a professional who applies mathematical techniques, computational tools, and financial theory to solve complex problems in finance. They are often involved in designing financial products, developing risk management strategies, and building quantitative models for pricing, trading, and portfolio management. Financial Engineers typically work for banks, investment firms, or financial technology companies, and their expertise is essential for managing financial risks and innovating new financial instruments.

What skills should a financial engineer have?

To thrive as a Financial Engineer, you need a strong background in mathematics, statistics, finance, and programming, typically supported by a degree in quantitative fields such as finance, mathematics, engineering, or computer science. Familiarity with technical tools like Python, R, MATLAB, financial modeling software, and sometimes certifications like CFA or FRM is highly valued. Exceptional problem-solving, analytical thinking, and the ability to communicate complex concepts clearly are vital soft skills. These skills and qualifications are crucial for designing innovative financial models, managing risks, and enabling data-driven decision-making in complex financial environments.

What are some common challenges financial engineers face when developing quantitative models, and how can they address them?

Financial Engineers often encounter challenges such as ensuring model accuracy, dealing with incomplete or noisy data, and adapting models to rapidly changing market conditions. Addressing these issues typically requires strong collaboration with data scientists, risk managers, and traders to validate assumptions and stress-test models under various scenarios. Staying current with industry trends and regulatory requirements also helps Financial Engineers maintain robust, compliant solutions that add value to their organizations.

What is the difference between Financial Engineer vs Quantitative Analyst?

AspectFinancial EngineerQuantitative Analyst
Required CredentialsDegree in finance, mathematics, or engineering; often CFA or FRM certificationsDegree in finance, mathematics, or statistics; often CFA or FRM certifications
Work EnvironmentFinancial institutions, hedge funds, investment banksAsset management firms, hedge funds, investment banks
Job FocusDeveloping complex financial models, derivatives pricing, risk managementData analysis, model development, trading strategies
Common UsageDesigning financial products and strategiesAnalyzing data to inform trading decisions

Financial Engineers and Quantitative Analysts share similar educational backgrounds and certifications, often working in similar environments like investment banks and hedge funds. While Financial Engineers focus on creating complex financial models and derivatives, Quantitative Analysts primarily analyze data to support trading strategies. Both roles require strong quantitative skills and contribute to financial innovation and risk management.

Do financial engineers make a lot of money?

Financial engineers often earn high salaries due to their specialized skills in quantitative analysis, modeling, and programming. Compensation varies based on experience, location, and industry, but many financial engineers have the potential to earn six-figure incomes or more, especially with advanced degrees and certifications like the CFA or FRM.

How much do financial engineers make?

Financial engineers in general earn a median annual salary of around $100,000 to $130,000, with experienced professionals and those working in major financial centers earning higher. Salaries can vary based on experience, education, certifications like CFA or FRM, and the complexity of financial models used. Entry-level positions typically start lower, while senior roles can exceed $200,000 annually.

What job categories do people searching Financial Engineer jobs in Oregon look for?

The top searched job categories for Financial Engineer jobs in Oregon are:

What cities in Oregon are hiring for Financial Engineer jobs?

Cities in Oregon with the most Financial Engineer job openings:

Infographic showing various Financial Engineer job openings in Oregon as of August 2026, with employment types broken down into 1% As Needed, 80% Full Time, 17% Part Time, and 2% Contract. Highlights an 88% Physical, 4% Hybrid, and 8% Remote job distribution, with an average salary of $117,160 per year, or $56.3 per hour.

Manufacturing Engineer II

Ascentec Engineering

Tualatin, OR • On-site

$80K - $105K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 24 days ago


Job description

Ascentec Engineering is hiring a Manufacturing Engineer II to serve as an experienced technical contributor responsible for independently managing manufacturing processes, leading moderate-complexity NPI projects, and providing technical guidance to junior engineers. This role demonstrates proven capability in process optimization, cost reduction initiatives, and cross-functional collaboration while developing toward advanced technical leadership and strategic process development. The position requires solid hands-on machining knowledge, the ability to analyze engineering drawings for manufacturability, and demonstrated competence in project management.
This position is on-site (not remote/not hybrid) at our Tualatin headquarters and is not eligible for Visa sponsorship or transfer of Visa sponsorship.
Requirements
JOB RESPONSIBILITIES:
MANUFACTURING PROCESS OWNERSHIP & OPTIMIZATION
Process Development & Refinement:
  • Independently develop and implement manufacturing processes for moderate-complexity components and assemblies
  • Lead NPI projects from concept through full production transition with minimal oversight
  • Optimize existing processes to improve cycle time, yield, and cost-effectiveness
  • Design and validate manufacturing tooling, fixtures, and work-holding solutions
  • Conduct time studies and establish standard work documentation for production operations

Advanced Problem-Solving:
  • Lead root cause analysis investigations for quality escapes and process failures
  • Develop and implement corrective and preventive actions (CAPA) with measurable effectiveness
  • Apply statistical methods (DOE, capability studies) to optimize process parameters
  • Troubleshoot complex machining issues involving multi-axis operations, tight tolerances, and difficult materials
  • Identify and eliminate sources of variation in manufacturing processes

Technical Documentation:
  • Create comprehensive work instructions, process maps, and control plans
  • Develop and maintain process FMEA documentation
  • Establish process validation protocols and acceptance criteria
  • Document lessons learned and contribute to knowledge base development

MANUFACTURING COST MANAGEMENT & VALUE ENGINEERING
Cost Estimation & Analysis:
  • Develop detailed manufacturing cost estimates for new products and process changes
  • Conduct make-vs-buy analysis with supporting financial justification
  • Identify cost reduction opportunities through process improvement and design optimization
  • Track and report cost savings achieved through engineering initiative

Value Engineering Leadership:
  • Collaborate with design engineering to optimize product manufacturability
  • Propose alternative materials, processes, or manufacturing approaches to reduce costs
  • Evaluate emerging manufacturing technologies for potential cost or quality benefits
  • Balance cost objectives with quality, delivery, and performance requirements

TECHNICAL MENTORSHIP & TEAM DEVELOPMENT
Peer & Junior Engineer Support:
  • Provide technical guidance and mentorship to Manufacturing Engineer I team members
  • Review and approve work instructions and process documentation prepared by junior engineers
  • Serve as subject matter expert for specific manufacturing processes or technologies
  • Lead knowledge-sharing sessions on advanced manufacturing techniques

Training Development:
  • Develop and deliver training materials for production personnel on new processes
  • Create visual aids, training videos, and quick-reference guides
  • Assess training effectiveness and implement improvements

PROJECT MANAGEMENT & CROSS-FUNCTIONAL LEADERSHIP
NPI Project Leadership:
  • Manage NPI projects involving 3-5 concurrent work streams with interdependencies
  • Develop project plans with clear milestones, resource requirements, and success criteria
  • Coordinate cross-functional activities across engineering, quality, supply chain, and production
  • Proactively identify and mitigate project risks
  • Report project status to stakeholders with data-driven analysis

Stakeholder Management:
  • Interface with suppliers on technical process development and problem resolution
  • Support customer technical reviews and process qualification activities (with PM coordination)
  • Collaborate with quality engineering on inspection methods and acceptance criteria
  • Partner with production supervision to implement process improvements

QUALITY SYSTEMS & CONTINUOUS IMPROVEMENT
Quality System Contribution:
  • Participate in internal and external quality audits as process owner
  • Lead closure of audit findings related to manufacturing processes
  • Ensure processes comply with ISO9001, AS9100, and customer-specific requirements
  • Maintain process validation and control documentation per quality system requirements

Advanced Quality Tools:
  • Apply SPC techniques to monitor process capability and stability
  • Conduct measurement system analysis (GR&R) studies
  • Implement poka-yoke (error-proofing) solutions
  • Develop process control plans with appropriate reaction plans

Continuous Improvement Leadership:
  • Lead Lean Six Sigma projects targeting specific operational metrics
  • Facilitate kaizen events and value stream mapping activities
  • Implement 5S workplace organization initiatives
  • Track and report improvement project results with validated savings

JOB QUALIFICATIONS / EXPERIENCE AND TECHNICAL SKILLS:
Education & Experience:
  • Bachelor's degree in Mechanical Engineering, Manufacturing Engineering, or Industrial Engineering
  • 3-5 years of manufacturing engineering experience in precision machining environment
  • Demonstrated experience leading NPI projects from design through production
  • Experience with CNC programming, setup, troubleshooting, and process optimization

Technical Expertise:
  • Intermediate to Advanced Machining Knowledge: Solid understanding of CNC machining operations, multi-axis programming, tooling selection, feeds/speeds optimization, and setup procedures
  • Manufacturing Cost Estimation: Ability to analyze engineering drawings and develop accurate manufacturing cost estimates with cycle time analysis
  • ERP Systems: Experience with Epicor ERP or similar manufacturing systems for process planning, costing, and project management
  • Quality Systems Knowledge: Familiarity with ISO9001 and AS9100 standards, statistical process control, and CAPA methodologies
  • Process Improvement: Working knowledge of Lean Manufacturing and Six Sigma methodologies (Green Belt certification preferred)

Leadership & Communication:
  • Proven ability to manage multiple projects independently with minimal supervision
  • Strong analytical and problem-solving capabilities with structured approach to root cause analysis
  • Excellent written and verbal communication skills for technical and non-technical audiences
  • Demonstrated ability to mentor junior engineers and contribute to team development
  • Effective collaboration skills with cross-functional teams including design, quality, and production

PERSONAL QUALIFICATIONS:
  • Self-starter / Self-motivated / Flexible / Detail oriented
  • Reliable and dependable
  • Positive customer-focused attitude
  • Enjoy fast-paced and rapidly changing environment
  • Honest with good integrity
  • Professional demeanor and respectful to people in all situations
  • Flexible and willing to help others as needs and tasks change often
  • Team player

WORKING CONDITIONS:
  • Position requires significant time on the production floor conducting process analysis, troubleshooting, and team collaboration
  • Office-based work for project management, cost analysis, documentation, and meetings
  • Occasional travel to supplier facilities or customer sites (<10>
  • May require flexibility for project deadlines and production support requirements
  • Physical requirements include walking, standing, and lifting up to 35 lbs in manufacturing environment

COMPENSATION / BENEFITS:
  • Salary range: $80,000 - $105,000 DOE with performance-based annual review
  • Performance bonus program based on individual and company performance metrics
  • Comprehensive benefits package including medical, dental, vision, and life insurance
  • 401(k) retirement plan with generous company matching contribution
  • Professional development support including certification reimbursement and conference attendance
  • Paid time off / Paid holidays
  • Continuing education opportunities and tuition reimbursement program

Other Requirements:
Applicant must be able to pass a drug screen and criminal background check prior to employment.
ITAR REQUIREMENTS: To conform to U.S. Government space technology export regulations, including the International Traffic in Arms Regulations (ITAR) you must be a U.S. citizen, lawful permanent resident of the U.S., protected individual as defined by 8 U.S.C. 1324b(a)(3), or eligible to obtain the required authorizations from the U.S. Department of State.
Ascentec Engineering is an Equal Opportunity Employer; employment with Ascentec Engineering is governed on the basis of merit, competence and qualifications and will not be influenced in any manner by race, color, religion, gender, national origin/ethnicity, veteran status, disability status, age, sexual orientation, gender identity, marital status, mental or physical disability or any other legally protected status.
Salary Description
$80,000 to $105,000 per year DOE