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Hardware Test Engineer Jobs in Portland, OR (NOW HIRING)

Hardware Engineer

Tualatin, OR · Hybrid

$128K - $169K/yr

Hardware Engineer This role focuses on a high-speed PCB design project centered on respinning an ... Document test plans, validation procedures, and results, and provide clear recommendations based on ...

Hardware Engineer V

Tualatin, OR · On-site

$160K - $165K/yr

The Hardware Engineer V will be part of an engineering team developing extensive power electronics ... Develop production validation and product acceptance test criteria to support transition into ...

Hardware Debug Engineer

Hillsboro, OR · On-site

$134K - $177K/yr

Job Title: Hardware Debug Engineer Job Location: Hillsboro, OR Job Type: Contract * The primary ... Develop test methods to evaluate performance and calculate operating margins of highspeed serial ...

Sr. Hardware Engineer

Tualatin, OR · Hybrid

$115K - $153K/yr

Hardware Engineer - High-Speed PCB Design This role focuses on a high-speed PCB design project ... Document test plans, validation procedures, and results, and provide clear recommendations based on ...

The Role and Impact Join Intel's world-class team as an EDA Tools Hardware Engineer, where you will ... final test and assembly. We ensure our foundry customers' products receive our utmost focus in ...

Electrical Hardware Lead

Portland, OR · On-site

$130K - $170K/yr

... the hardware engineering activities for several UAV platforms. This role will interface closely with mechanical, electrical, software, and test teams to ensure timely and effective delivery of ...

Showing results 21-40

Hardware Test Engineer information

See Portland, OR salary details

$14

$61

$105

How much do hardware test engineer jobs pay per hour?

As of Aug 10, 2026, the average hourly pay for hardware test engineer in Portland, OR is $61.88, according to ZipRecruiter salary data. Most workers in this role earn between $42.31 and $70.87 per hour, depending on experience, location, and employer.

What is the difference between Hardware Test Engineer vs Electronics Test Engineer?

AspectHardware Test EngineerElectronics Test Engineer
Required CredentialsBachelor's in Electrical, Electronics, or Computer Engineering; certifications like ISTQBBachelor's in Electronics, Electrical Engineering; certifications like ISTQB
Work EnvironmentTesting hardware components, circuit boards, and systems in labs or manufacturingTesting electronic devices, circuits, and embedded systems in labs or production lines
Employer & Industry UsageElectronics manufacturing, hardware development companies, tech firmsElectronics manufacturing, consumer electronics, telecommunications

Both roles focus on testing electronic hardware, but Hardware Test Engineers typically work on entire hardware systems and components, while Electronics Test Engineers often specialize in electronic circuits and embedded systems. The roles overlap in skills and industry usage, making them closely related but distinct in scope.

What is a hardware test engineer?

Hardware Test Engineers are professionals responsible for evaluating and verifying the functionality, reliability, and quality of electronic hardware components and systems. They design and execute tests to ensure products meet industry standards and specifications. Their tasks include developing test plans, troubleshooting issues, and working closely with design and manufacturing teams to resolve hardware problems. Hardware Test Engineers play a crucial role in ensuring that electronic products perform as intended before they reach consumers.

What are the key skills and qualifications needed to thrive as a hardware test engineer?

To thrive as a Hardware Test Engineer, you need a solid background in electronics, circuit analysis, and test methodologies, usually supported by a degree in electrical engineering or a related field. Familiarity with test automation tools, oscilloscopes, logic analyzers, and certifications such as ISTQB or Six Sigma are valuable assets. Strong problem-solving abilities, attention to detail, and effective teamwork enhance performance in this role. These skills and qualifications are essential to ensure product reliability, troubleshoot issues efficiently, and contribute to high-quality hardware development.

What are some common challenges hardware test engineers face when working on new product prototypes?

Hardware Test Engineers often encounter challenges such as debugging unexpected failures during prototype testing, adapting to rapidly changing design revisions, and balancing thoroughness with tight project deadlines. They may need to quickly develop new test procedures for innovative components and collaborate closely with design, firmware, and manufacturing teams to resolve issues. This dynamic work environment requires strong problem-solving skills and adaptability, as priorities can shift rapidly based on test results and project needs.
What are popular job titles related to Hardware Test Engineer jobs in Portland, OR? For Hardware Test Engineer jobs in Portland, OR, the most frequently searched job titles are:
What job categories do people searching Hardware Test Engineer jobs in Portland, OR look for? The top searched job categories for Hardware Test Engineer jobs in Portland, OR are:
Infographic showing various Hardware Test Engineer job openings in Portland, OR as of August 2026, with employment types broken down into 1% As Needed, 82% Full Time, 12% Part Time, 4% Contract, and 1% Nights. Highlights an 92% Physical, 1% Hybrid, and 7% Remote job distribution, with an average salary of $128,718 per year, or $61.9 per hour.

Sr. Hardware Engineer (Teradyne, Oregon)

Teradyne

Tualatin, OR

$115K - $153K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 13 days ago


Job description

We are the global test and automation specialists, powering next-generation technologies through sophisticated solutions. Behind every electronic device you use, Teradyne's test technology ensures your device works right the first time, every time! Our portfolio of automation solutions help manufacturers to develop and deliver products quickly, efficiently and cost-effectively. Together, Teradyne companies deliver manufacturing automation across industries and applications around the world!

We attract, develop, and retain a high-performance workforce, comprised of people with diverse backgrounds and a shared drive for excellence. We strive to foster a positive and inclusive work environment that helps employees, and communities, thrive.

Our Purpose
TERADYNE, where experience meets innovation and driving excellence in every connection. We are fueled by creativity and diversity of thought and in our workforce. Our employees are supported to innovate and learn something new every day.
We cultivate a culture of inclusion for all employees that respects their individual strengths, views, and experiences. We believe that our differences enable us to be a better team - one that makes better decisions, drives innovation and delivers better business results.

 

Opportunity Overview

The Senior Hardware Engineer in the hardware group is responsible for designing, developing, and validating highcurrent, highpower sourcing and switching hardware used in semiconductor automated test equipment. This role focuses on power delivery architecture, fast transient response, load regulation, protection systems, thermal management, and systemlevel integration to support advanced SoCs, FPGAs, highpower devices, and complex test conditions. The engineer owns powerdelivery modules from concept through production release and collaborates across hardware, firmware, mechanical, and test engineering teams.

Power Delivery Architecture & Design

  • Architect and design highcurrent power delivery modules (from mA to 100+ A) for ATE systems.
  • Develop fastresponse voltage/current sourcing circuits optimized for dynamic load conditions, droop control, and transient performance.
  • Implement advanced powerstage topologies (buck, multiphase, linear, hybrid) tailored for semiconductor test environments.
  • Design for wide operating ranges, including highvoltage rails, lowvoltage/highcurrent rails, and dynamic voltage scaling.

Power Integrity & Transient Performance

  • Optimize power integrity across the full PDN (instrumentation cabling loadboard DUT).
  • Model and mitigate droop, overshoot, ringing, and ground bounce under fast load steps.
  • Perform simulation and analysis of loop stability, compensation networks, and transient response.
  • Ensure compliance with DUT powerup sequencing, ramp rates, and timing constraints.

Protection, Reliability & Safety

  • Design robust protection systems including OCP, OVP, OTP, shortcircuit protection, and faultisolation mechanisms.
  • Implement fast faultresponse circuits to protect sensitive DUTs and ATE hardware.
  • Conduct reliability analysis, derating studies, and thermal modeling for longterm stability.
  • Support HALT/HASS, stress testing, and failuremode investigations.

Switching, Routing & Load Management

  • Develop efficient highcurrent solutions for routing power to multiple DUT pins or sites.
  • Engineer lowimpedance, lowloss paths for highcurrent delivery with attention to thermal and mechanical constraints.
  • Collaborate with mechanical teams on heatsinking, airflow, and thermal interface design.

BringUp, Debug & Validation

  • Lead bringup of new powerdelivery modules, performing rootcause analysis of analog, digital, and mixedsignal issues.
  • Execute characterization plans for load regulation, transient response, efficiency, thermal behavior, and fault handling.
  • Use advanced lab equipment (power analyzers, highbandwidth scopes, current probes, electronic loads) to validate performance.

ATE System Integration

  • Ensure powerdelivery modules meet ATE systemlevel requirements for timing, triggering, synchronization, and software control.
  • Collaborate with firmware teams on control loops, telemetry, calibration, and faultreporting algorithms.
  • Create and use ATE test programs to validate instrument and system level designs.
  • Support integration with loadboards, probecards, and DUT powerdelivery networks.

CrossFunctional Collaboration

  • Work with product engineering, test engineering, and silicon teams to define powerdelivery requirements for new devices.
  • Provide technical mentorship and contribute to powerdelivery design standards and best practices.

All About You

  • 8- 10+ years of experience in power electronics, highcurrent power delivery, or instrumentation hardware design.
  • Strong expertise in switching power supplies, multiphase regulators, linear regulators, and powerstage design.
  • Experience with power integrity, transient analysis, and compensation/stability design.
  • Proficiency with SPICE simulation, PDN modeling tools, and PCB design tools.
  • Handson experience with power measurement equipment and highcurrent test setups.
  • Strong analytical and debugging skills.
  • Experience designing powerdelivery modules for ATE instrumentation.
  • Knowledge of dynamic voltage scaling, digital power control, and telemetry systems.
  • Familiarity with highcurrent connectors, cabling, and lowimpedance mechanical design.
  • Understanding of thermal modeling, heatsink design, and systemlevel thermal constraints.
  • Bachelor's or Master's degree in Electrical Engineering or related field.

Compensation:
The base salary range for this role is $141,400 - $226,200. This range is a good faith estimate, and the amount of base salary will correspond with experience and skill set. This range can also fluctuate depending on demand and location.

 

Incentive Plan: This job is eligible for discretionary bonus(es) based on financial performance. 

 

Benefits:

Teradyne offers a variety of robust health and well-being benefit programs, including medical, dental, vision, Flexible Spending Accounts, retirement savings plans, life and disability insurance, paid vacation & holidays, tuition assistance programs, and more.  Please click here to see details. 

 

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