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Embedded Engineer Jobs in Gresham, OR (NOW HIRING)

Firmware Engineer

Wilsonville, OR · On-site

$80 - $100/hr

About The Role APCON, Inc. is on the lookout for a passionate Firmware Engineer to be a contributor to our next-generation embedded systems. In this role, you will be assisting in the design ...

DSP Algorithms Engineer

Hillsboro, OR · On-site

$155K - $181K/yr

Expert in MATLAB, real-time Simulink prototyping and fixed-point embedded software. Creative problem solver, team player Qualifications Proficient in DSP theory, scientific programming, adaptive ...

Develop C and C++ FW for laser controllers and measurement embedded devices. * Participate in the ... Work with engineering team members to optimize operational and performance requirements of overall ...

Hardware Engineer

Beaverton, OR · On-site

$128K - $169K/yr

Staff Hardware Engineer Tektronix , an operating company of Ralliant , is a place where people are ... Design, develop, and modify embedded hardware platforms that use host processors running Linux or ...

Showing results 41-60

Embedded Engineer information

See Gresham, OR salary details

$74.2K

$162.5K

$184.3K

How much do embedded engineer jobs pay per year?

As of Sep 9, 2026, the average yearly pay for embedded engineer in Gresham, OR is $162,491.00, according to ZipRecruiter salary data. Most workers in this role earn between $139,300.00 and $183,300.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as an embedded engineer?

To thrive as an Embedded Engineer, you need a solid background in computer science or electrical engineering, with strong skills in C/C++, microcontroller programming, and embedded systems design. Familiarity with real-time operating systems (RTOS), hardware debugging tools, and version control systems like Git is typically required, and certifications such as Certified Embedded Systems Engineer (CESE) can be beneficial. Strong problem-solving abilities, attention to detail, and effective communication are standout soft skills in this field. These competencies are crucial for developing reliable, efficient embedded solutions that integrate seamlessly with hardware and meet user requirements.

What are some common challenges faced by embedded engineers when working on cross-functional teams?

Embedded Engineers often collaborate closely with hardware designers, software developers, and test engineers, which can present challenges related to communication and integration. Aligning the firmware with hardware specifications, managing resource constraints, and ensuring timely debugging across different platforms are frequent hurdles. To succeed, Embedded Engineers need strong communication skills and a collaborative mindset to bridge gaps between disciplines and deliver cohesive, reliable systems.

What is the difference between Embedded Engineer vs Firmware Engineer?

AspectEmbedded EngineerFirmware Engineer
Required CredentialsBachelor's in Electrical, Computer Engineering, or related fields; certifications like ARM or IoT certifications are commonBachelor's in Computer Engineering, Electrical Engineering, or related; often similar certifications in embedded systems or firmware development
Work EnvironmentDesigning and developing hardware-software integrated systems, often in industrial, automotive, or consumer electronicsWriting, testing, and debugging low-level code that runs directly on hardware devices like microcontrollers or embedded processors
Employer & Industry UsageElectronics manufacturers, automotive, aerospace, IoT companiesConsumer electronics, IoT devices, medical devices, automotive systems

Embedded Engineers and Firmware Engineers often work closely, but Embedded Engineers focus on both hardware and software integration, while Firmware Engineers specialize in low-level code development that runs directly on hardware. Both roles require similar skills and certifications, but their primary focus and work environment differ slightly.

Are embedded engineers in demand?

Embedded engineers are in high demand due to the growth of IoT devices, automotive systems, and consumer electronics. Skills in C/C++, real-time operating systems, and hardware integration are particularly valuable in this field, which offers strong job stability and opportunities across various industries.

What does an embedded engineer do?

An embedded engineer designs, develops, and tests software and hardware for embedded systems, which are specialized computing devices within larger machines or products. They work with microcontrollers, real-time operating systems, and programming languages like C or C++, often collaborating with hardware teams to ensure system functionality and reliability.

What are popular job titles related to Embedded Engineer jobs in Gresham, OR?

For Embedded Engineer jobs in Gresham, OR, the most frequently searched job titles are:

What job categories do people searching Embedded Engineer jobs in Gresham, OR look for?

The top searched job categories for Embedded Engineer jobs in Gresham, OR are:

What cities near Gresham, OR are hiring for Embedded Engineer jobs?

Cities near Gresham, OR with the most Embedded Engineer job openings:

Infographic showing various Embedded Engineer job openings in Gresham, OR as of August 2026, with employment types broken down into 90% Full Time, 7% Part Time, and 3% Contract. Highlights an 85% Physical, 5% Hybrid, and 10% Remote job distribution, with an average salary of $162,491 per year, or $78.1 per hour.

Sr. Electrical Engineer

Beaverton, OR • On-site

Photon Kinetics, Inc
Manufacturing • 51 - 200 employees

$125 - $150/hr

Other

Posted 21 days ago


Job description

Photon Kinetics is the world's trusted standard in optical fiber testing and measurement solutions. For more than 40 years, our instruments have helped fiber and cable manufacturers deliver the performance that enables high-speed communication networks around the globe. 95% of the world's optical fiber has been tested using our equipment.

As the world moves deeper into AI‑driven computing and hyperscale data centers, the demand for precise measurement and reliable optical infrastructure continues to grow. Photon Kinetics is applying its expertise in measurement science, automation, and precision systems to help build the connectivity backbone that powers the next generation of data and AI technologies.

ROLE OVERVIEW

The Senior Electrical Engineer is a core member of the Product Development Engineering team, responsible for designing, developing, and improving the analog, mixed‑signal, and data‑acquisition electronics at the heart of Photon Kinetics' test and measurement instruments.

You will work across the full design lifecycle—from initial concept and SPICE simulation through PCB layout, prototyping, and production release. Your circuits will handle signals from DC to 2 GHz, including ultra‑low‑noise photodiode front ends, small‑signal amplifier chains, and precision power supplies. You will also contribute to microcontroller firmware for bare‑metal and embedded systems.

This role requires a hands‑on engineer who thrives on solving difficult measurement problems and who values the kind of precision and reliability that define Photon Kinetics' reputation in the industry.

TOP 3 OUTCOMES IN YEAR 1

1. Deliver Production‑Ready Circuit Designs
Complete at least one major analog or mixed‑signal design from concept through validated prototype, meeting performance specifications and ready for manufacturing release.

2. Strengthen Product Development Engineering Capability
Establish yourself as a go‑to resource for analog and mixed‑signal design within the team. Contribute to design reviews, mentor junior engineers where appropriate, and help build repeatable design practices for low‑noise signal chains and data‑acquisition systems.

3. Support Manufacturing and Customer Success
Work with Manufacturing Engineering to develop test procedures and resolve production issues for new and existing products. Provide technical support to Customer Service when field problems require deep electrical expertise.

KEY RESPONSIBILITIES

  • Design and maintain analog and mixed‑signal circuits from DC to 2 GHz, including small‑signal amplifier chains, precision data‑acquisition systems, and DC‑DC power supplies
  • Design ultra‑low‑noise photodiode front ends and signal conditioning circuits for high‑performance optical measurement instruments
  • Perform detailed analytical and experimental analysis of electrical circuits using SPICE simulation and bench testing; document results clearly and thoroughly
  • Manage designs from initial concept through schematic capture, PCB layout optimization (component placement and signal routing), prototyping, and production release

Firmware & Embedded Systems

  • Contribute to microcontroller firmware development for bare‑metal and embedded systems used in PK instruments
  • Participate in programming, debugging, and testing of microcontroller‑based subsystems

Manufacturing & Customer Support

  • Assist Manufacturing in developing test procedures and diagnosing problems during production startup of new products
  • Define testing and acceptance criteria for finished products
  • Provide technical support for Customer Service and Marketing when field issues require electrical engineering expertise
  • Participate in design reviews and contribute to cross‑functional project teams
  • Monitor trends and innovations in components, technologies, and techniques relevant to Photon Kinetics' product lines
  • Continuously improve the performance, reliability, and manufacturability of PK products
  • Develop an understanding of Photon Kinetics' products, key markets, and customer applications

Other

  • May manage or lead projects of broad scope and complexity to develop and introduce new or significantly enhanced products into manufacturing
  • May train or mentor less experienced engineers
  • Comply with all Photon Kinetics quality procedures and work instructions

QUALIFICATIONS

Required

  • BSEE or MSEE, or equivalent combination of education, training, and experience
  • 4+ years of hands‑on experience designing analog and mixed‑signal circuits
  • Demonstrated experience with low‑noise signal chain design and data‑acquisition systems
  • Proficiency with SPICE simulation and analytical circuit design techniques from concept through physical PCB realization
  • Experience with PCB CAD tools and an understanding of component placement and signal routing for mixed‑signal boards
  • Working knowledge of microcontroller programming and embedded systems
  • Strong written, verbal, and interpersonal communication skills
  • Ability to manage multiple concurrent projects and prioritize effectively

Preferred

  • Experience with Altium Designer or comparable PCB design tools
  • Familiarity with Microchip PIC microcontrollers and associated toolchain
  • Knowledge of high‑performance industrial test and measurement instrumentation
  • Exposure to fiber‑optic test and measurement techniques, including OTDRs
  • Experience working effectively as both a team contributor and a project lead

WHY THIS ROLE IS DIFFERENT

  • Hands‑on design ownership—your circuits ship in instruments used by fiber manufacturers worldwide
  • Work across the full signal path, from ultra‑low‑noise photodiode front ends to digital data acquisition and embedded firmware
  • Collaborate directly with Manufacturing, Applications, and Customer Service—short feedback loops from design to production to field performance
  • Join the company whose equipment tests 95% of the world's optical fiber—your designs directly support the infrastructure behind AI, data centers, and global communications
  • A team of approximately 65 people where engineering decisions are visible, your contributions are recognized, and your work matters

WHY JOIN PHOTON KINETICS

You'll work on technologies that enable the next wave of AI and data center innovation. At Photon Kinetics, you'll join a highly skilled, collaborative team where your contributions directly impact the products and relationships that connect the world. You'll have visibility and influence in a company recognized globally for engineering excellence, precision, and trusted performance. We value different perspectives and problem‑solving approaches. The best solutions come from teams that think differently.

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