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Internship Design Verification Intern Jobs in Portland, OR

Contributes to the design, development, and optimization of AI software solutions including ... Available to work part-time for 6-12 months and to work onsite for the duration of the internship ...

Contributes to the design, development, and optimization of AI software solutions including ... Available to work part-time for 6-12 months and to work onsite for the duration of the internship ...

Analog Engineer

Hillsboro, OR · On-site

$164.47 - $269.10/hr

Develop test plans for design verification and evaluate test results to meet specification ... internship experiences and or schoolwork/classes/research.**Minimum Qualifications*** Bachelor ...

Analog Engineer

Hillsboro, OR · On-site

$220K/yr

Develop test plans for design verification and evaluate test results to meet specification ... internship experiences and or schoolwork/classes/research. Minimum Qualifications * Bachelor ...

Analog Engineer

Hillsboro, OR

$220K/yr

Develop test plans for design verification and evaluate test results to meet specification ... internship experiences and or schoolwork/classes/research. Minimum Qualifications * Bachelor ...

The internship is a 10-week program, starting June 1st and ending August 5th. This role offers a ... design changes, and support postretirement health valuations. * Performing data analysis using ...

... verification. * Knowledge of EDA tools used for custom digital and memory circuit design. Preferred Qualifications: * PhD with 1-2 years of professional experience gained through either internships ...

Showing results 21-40

Internship Design Verification Intern information

See Portland, OR salary details

$9

$20

$39

How much do internship design verification intern jobs pay per hour?

As of Aug 23, 2026, the average hourly pay for internship design verification intern in Portland, OR is $20.55, according to ZipRecruiter salary data. Most workers in this role earn between $15.29 and $22.93 per hour, depending on experience, location, and employer.

What is the difference between Internship Design Verification Intern vs Design Verification Engineer?

AspectInternship Design Verification InternDesign Verification Engineer
CredentialsEnrolled in or recent graduate of relevant engineering programBachelor's or Master's in Electrical/Computer Engineering
Work EnvironmentInternship, learning-focused, entry-level tasksFull-time, professional engineering environment
Industry UsageCommon in tech and semiconductor companies for trainingEstablished role in hardware/software verification teams

The Internship Design Verification Intern role is an entry-level, learning-focused position for students or recent graduates, while the Design Verification Engineer is a full-time professional responsible for verifying hardware or software designs. Interns gain foundational experience, whereas engineers lead verification projects and ensure product quality.

What does a design verification intern do?

A design verification intern assists in testing and validating electronic or hardware designs to ensure they meet specifications. They develop test plans, use simulation tools, and analyze results to identify issues, often working with engineers and using hardware description languages like VHDL or Verilog. The role helps ensure product quality and functionality before manufacturing.

What are popular job titles related to Internship Design Verification Intern jobs in Portland, OR?

For Internship Design Verification Intern jobs in Portland, OR, the most frequently searched job titles are:

What job categories do people searching Internship Design Verification Intern jobs in Portland, OR look for?

The top searched job categories for Internship Design Verification Intern jobs in Portland, OR are:

Senior Mechanical Project Engineer

Root Edge

Portland, OR • On-site

$120 - $160/hr

Other

Posted 5 days ago


Job description

This hybrid Senior Mechanical Project Engineer role combines hands-on mechanical design authority with full project engineering leadership across the company's biogas and bioenergy systems. The position covers mechanical calculations, 3D modeling in SolidWorks, and 2D drafting in AutoCAD, alongside the coordination, client interface, and cross-functional leadership needed to carry projects from design through execution. The role applies relevant codes, norms, and industry standards to guide both design and delivery decisions, mentors junior engineers and drafters, and collaborates closely with an international engineering network to maintain technical consistency across global projects. A strong foundation in mechanical design principles, combined with practical experience in bioenergy systems and their field applications, is essential.

Key Responsibilities

Mechanical Design & Engineering

  • Mechanical Design & Calculations:Perform mechanical design work and engineering calculations to support equipment selection, sizing, and system layout.
  • 3D & 2D Modeling:Create and maintain 3D models in SolidWorks and 2D drawings in AutoCAD for equipment, assemblies, and project-specific layouts.
  • Standard Design Verification:Review and verify existing standard designs for accuracy, manufacturability, and continued compliance with current codes and standards.
  • Design Adaptation:Modify standard equipment and designs to meet project-specific requirements while preserving engineering intent and design integrity.
  • Codes & Standards:Apply relevant norms, codes, and industry standards to guide design decisions and ensure deliverables meet regulatory and safety requirements.

Project Engineering & Delivery

  • Project Design & Delivery:Perform core engineering tasks including system design, equipment specification, and process coordination across the project lifecycle.
  • Commissioning Support:Advise commissioning teams, providing technical input and troubleshooting support.
  • Client & Sales Interface:Interface with clients to translate project requirements into action, and review proposed project scopes from the sales team to confirm feasibility and alignment with standard offerings.
  • Project Planning & Oversight:Define technical strategies and resource allocation for incoming projects, and coordinate engineering activities across multiple projects to maintain alignment with scope, schedule, and budget.

Cross-Disciplinary Collaboration

  • International Design Reviews:Collaborate with the company's international engineering teams on design reviews to maintain technical consistency across global projects.
  • Cross-Functional Coordination:Work closely with process, electrical, drafting, sales, and project engineering teams to ensure designs integrate cleanly into overall project delivery.
  • Vendor & Fabrication Support:Interface with vendors and fabricators to clarify specifications, resolve design questions, and support procurement.

Standards & Process Improvement

  • Standardization:Support development and maintenance of standard mechanical designs, calculation methods, drafting practices, and engineering workflows.
  • Design & Process Optimization:Identify opportunities to improve design and delivery efficiency, reduce rework, and streamline adaptation of standards for new projects.
  • Technical Governance:Guide and enforce consistent application of company engineering methods and standards.
  • Documentation:Maintain clear, accurate, up-to-date design documentation, drawings, and calculation records.
  • Quality:Ensure proper quality assurance methods are followed.

Team Support & Development

  • Mentorship & Onboarding:Mentor and support junior engineers, drafters, and interns, providing technical guidance, design review feedback, and onboarding support.
  • Knowledge Sharing:Promote continuous learning through internal training, documented best practices, and technical discussions.
  • Performance Input:Provide structured feedback to support performance development and annual reviews of junior team members.
Competencies
  • Technical Execution:Apply sound engineering judgment across design, calculations, drafting, and full project delivery, ensuring technically robust and accurate deliverables.
  • Design Verification:Critically evaluate existing designs against applicable codes, standards, and best practices, and identify necessary revisions.
  • Software Proficiency:Work confidently in SolidWorks and AutoCAD to produce and maintain high-quality 3D models and 2D drawings.
  • Project Coordination:Manage multiple tasks and deadlines while maintaining alignment across internal teams, vendors, and project stakeholders.
  • Collaborative Communication:Communicate clearly across disciplines and international teams, including regular coordination with global engineering partners, sales, drafting, and field teams.
  • Mentorship & Support:Guide and support less experienced engineers and interns, fostering a collaborative environment focused on technical growth.
Experience & Qualifications
  • Education:Bachelor's degree (or higher) in Mechanical Engineering, Chemical Engineering, or a related technical discipline.
  • Experience:7+ years in mechanical design and/or project engineering within a process industry (Biogas/RNG strongly preferred; water/wastewater, pulp and paper, oil and gas, or similar also considered).
  • Codes & Standards Knowledge:Working knowledge of relevant mechanical codes, standards, and norms (e.g., ASME, ANSI, or equivalent).
  • Technical Calculations:Experience performing mechanical calculations to support equipment design and specification.
  • Regulatory Knowledge:In-depth knowledge of environmental and safety legislation, industry standards, and codes.
  • Software Skills:Strong proficiency with Microsoft Office, particularly Excel.
  • Other Requirements:Valid U.S. driver's license.
Physical Demands
  • Must be able to sit, stand, walk, talk, and use a keyboard regularly.
  • Ability to perform job duties in varying environmental conditions, including extreme cold or heat, and wear appropriate personal protective equipment (PPE).
  • Lifting requirements: up to 50 lbs.
Work Environment
  • Primarily office-based, with occasional travel to job sites, vendor locations, and training events, both domestic and international.
  • Flexible working hours, including the possibility of remote work as needed.
  • Frequent collaboration with international engineering teams across multiple global locations.
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