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Intern Hardware Integration Engineer Jobs in Oregon

The Role and Impact Join Intel's world-class team as an EDA Tools Hardware Engineer, where you will ... Hierarchical block integration * Chip-level placement and routing coordination * Power grid ...

Sr. Electrical Engineer

Tualatin, OR · On-site

$110 - $150/hr

The Sr. Electrical Engineer will own the full hardware development cycle, from concept through design, validation, and integration. Deep expertise in signal integrity, electrical noise mitigation ...

Sr. Electrical Engineer

Tualatin, OR

$112K - $145K/yr

The Sr. Electrical Engineer will own the full hardware development cycle, from concept through design, validation, and integration. Deep expertise in signal integrity, electrical noise mitigation ...

Sr. Electrical Engineer

Tualatin, OR · On-site

$112K - $145K/yr

The Sr. Electrical Engineer will own the full hardware development cycle, from concept through design, validation, and integration. Deep expertise in signal integrity, electrical noise mitigation ...

... GPU programming, and performance optimization. Contributes to the design, development, and ... hardware software integration. May also include the creation of AI software solutions in ...

Showing results 41-60

Intern Hardware Integration Engineer information

What does an intern hardware integration engineer do?

An Intern Hardware Integration Engineer supports the design, development, and testing of hardware systems by assisting with the integration of various electronic components and subsystems. Their responsibilities typically include assembling hardware prototypes, running diagnostic tests, documenting results, and collaborating with teams to troubleshoot and resolve integration issues. This role provides hands-on experience with hardware platforms and tools, preparing interns for future engineering positions in the hardware field.

What types of projects and responsibilities can an intern hardware integration engineer expect to work on during their internship?

As an Intern Hardware Integration Engineer, you can expect to work on tasks such as assembling and testing hardware components, assisting in troubleshooting integration issues, and collaborating with cross-functional engineering teams. You'll likely help document hardware configurations, run diagnostic tests, and support the integration of new devices into larger systems. This role offers hands-on experience with both hardware and software, and you'll gain insight into the collaborative problem-solving process that ensures different components work seamlessly together.

What are the key skills and qualifications needed to thrive as an intern hardware integration engineer, and why are they important?

To thrive as an Intern Hardware Integration Engineer, you need a solid understanding of electronics, circuit design, and embedded systems, often supported by coursework or a degree in electrical or computer engineering. Familiarity with tools like oscilloscopes, logic analyzers, PCB design software (such as Altium or Eagle), and basic programming languages is typically required. Strong problem-solving abilities, attention to detail, and effective communication skills help you collaborate with cross-functional teams and resolve integration challenges. These skills and qualities are essential for successfully contributing to hardware projects and ensuring reliable system performance.

What is the difference between Intern Hardware Integration Engineer vs Intern Electronics Engineer?

AspectIntern Hardware Integration EngineerIntern Electronics Engineer
Required CredentialsEnrolled in Electrical, Computer Engineering or related fieldsEnrolled in Electrical, Electronics, or related fields
Work EnvironmentHands-on hardware testing, integration, and system assemblyDesign, circuit analysis, and electronic component testing
Industry UsageTechnology, consumer electronics, hardware manufacturingElectronics design firms, R&D labs, manufacturing

Both roles typically require similar educational backgrounds and are used in hardware-focused industries. The Intern Hardware Integration Engineer emphasizes system integration and testing, while the Intern Electronics Engineer focuses more on circuit design and electronic components. Understanding these differences helps candidates choose the right internship based on their skills and career goals.

What are the most commonly searched types of Hardware Integration Engineer jobs in Oregon?

The most popular types of Hardware Integration Engineer jobs in Oregon are:

What cities in Oregon are hiring for Intern Hardware Integration Engineer jobs?

Cities in Oregon with the most Intern Hardware Integration Engineer job openings:

Sr. Hardware Engineer (Teradyne, Oregon)

Teradyne

Tualatin, OR • On-site

$115K - $153K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 25 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 PurposeTERADYNE, 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 high-current, high-power 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 system-level integration to support advanced SoCs, FPGAs, high-power devices, and complex test conditions. The engineer owns power-delivery modules from concept through production release and collaborates across hardware, firmware, mechanical, and test engineering teams.
Power Delivery Architecture & Design
  • Architect and design high-current power delivery modules (from mA to 100+ A) for ATE systems.
  • Develop fast-response voltage/current sourcing circuits optimized for dynamic load conditions, droop control, and transient performance.
  • Implement advanced power-stage topologies (buck, multiphase, linear, hybrid) tailored for semiconductor test environments.
  • Design for wide operating ranges, including high-voltage rails, low-voltage/high-current 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 power-up sequencing, ramp rates, and timing constraints.

Protection, Reliability & Safety
  • Design robust protection systems including OCP, OVP, OTP, short-circuit protection, and fault-isolation mechanisms.
  • Implement fast fault-response circuits to protect sensitive DUTs and ATE hardware.
  • Conduct reliability analysis, derating studies, and thermal modeling for long-term stability.
  • Support HALT/HASS, stress testing, and failure-mode investigations.

Switching, Routing & Load Management
  • Develop efficient high-current solutions for routing power to multiple DUT pins or sites.
  • Engineer low-impedance, low-loss paths for high-current delivery with attention to thermal and mechanical constraints.
  • Collaborate with mechanical teams on heatsinking, airflow, and thermal interface design.

Bring-Up, Debug & Validation
  • Lead bring-up of new power-delivery modules, performing root-cause analysis of analog, digital, and mixed-signal issues.
  • Execute characterization plans for load regulation, transient response, efficiency, thermal behavior, and fault handling.
  • Use advanced lab equipment (power analyzers, high-bandwidth scopes, current probes, electronic loads) to validate performance.

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

Cross-Functional Collaboration
  • Work with product engineering, test engineering, and silicon teams to define power-delivery requirements for new devices.
  • Provide technical mentorship and contribute to power-delivery design standards and best practices.

All About You
  • 8- 10+ years of experience in power electronics, high-current power delivery, or instrumentation hardware design.
  • Strong expertise in switching power supplies, multiphase regulators, linear regulators, and power-stage design.
  • Experience with power integrity, transient analysis, and compensation/stability design.
  • Proficiency with SPICE simulation, PDN modeling tools, and PCB design tools.
  • Hands-on experience with power measurement equipment and high-current test setups.
  • Strong analytical and debugging skills.
  • Experience designing power-delivery modules for ATE instrumentation.
  • Knowledge of dynamic voltage scaling, digital power control, and telemetry systems.
  • Familiarity with high-current connectors, cabling, and low-impedance mechanical design.
  • Understanding of thermal modeling, heatsink design, and system-level 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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