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Transducer Engineer Jobs in Seattle, WA (NOW HIRING)

Senior Mechanical Engineer

Kent, WA · On-site

$118K - $155K/yr

This role places a strong emphasis on strain gage-based load cell transducer design and development ... Perform engineering analysis, including FEA, and validate designs through prototype testing

The ideal candidate will have hands-on experience with various testing equipment, transducers, data ... Lab engineering role - • Experience with Material Handling Equipment - • Knowledge of ...

Meta Reality Labs is seeking a Research Acoustic Systems Engineer to advance the science and ... Understanding of transducer design and digital signal processing About Meta: Meta builds ...

... transducer design, acoustic modeling, and system-level audio performance optimization • ... Engineering, Electrical Engineering, or equivalent experience Preferred Qualifications • ...

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Showing results 1-20

Transducer Engineer information

See Seattle, WA salary details

$42.7K

$122.8K

$162.7K

How much do transducer engineer jobs pay per year?

As of Aug 6, 2026, the average yearly pay for transducer engineer in Seattle, WA is $122,796.00, according to ZipRecruiter salary data. Most workers in this role earn between $107,000.00 and $133,700.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a transducer engineer, and why are they important?

To thrive as a Transducer Engineer, you need a strong background in electrical or mechanical engineering, a deep understanding of sensor/transducer physics, and experience with signal processing. Proficiency in CAD software, simulation tools (like MATLAB or ANSYS), and familiarity with industry standards and certifications such as ISO or IEEE are commonly required. Strong analytical problem-solving skills, attention to detail, and effective communication are crucial soft skills for this position. These abilities are essential for designing reliable transducers, collaborating with multidisciplinary teams, and ensuring products meet rigorous industry performance and safety standards.

What are the typical day-to-day responsibilities of a transducer engineer?

As a Transducer Engineer, your daily tasks may include designing and simulating new sensor concepts, optimizing existing transducer systems, and conducting experiments to validate performance. You will likely work closely with cross-functional teams, including mechanical designers, electronics engineers, and manufacturing staff, to ensure seamless integration and production of transducer components. Documentation, testing, troubleshooting, and regularly presenting findings or updates to project teams are also important aspects of the job. The role often balances hands-on laboratory work and design activities, providing variety and opportunities to continually develop technical expertise.

What is a transducer engineer?

A Transducer Engineer designs, develops, and tests transducers, which convert one form of energy into another, such as sensors and actuators. They work with materials, electronics, and acoustics to create devices for applications in industries like medical, automotive, and defense. Responsibilities include simulation, prototyping, performance evaluation, and troubleshooting. Strong knowledge of physics, signal processing, and engineering principles is essential for this role.

What are popular job titles related to Transducer Engineer jobs in Seattle, WA? For Transducer Engineer jobs in Seattle, WA, the most frequently searched job titles are:
Infographic showing various Transducer Engineer job openings in Seattle, WA as of August 2026, with employment types broken down into 90% Full Time, and 10% Contract. Highlights an 100% In-person job distribution, with an average salary of $122,796 per year, or $59 per hour.

Other

Re-posted 26 days ago


Job description

Lead Ultrasound Engineer

We are seeking ambitious Ultrasound Engineers to contribute to the design, development, and optimization of imaging modes and features for our ultrasound imaging platforms. This position could be opened at multiple levels including Principal, Lead, and Senior depending upon years of experience in relation to posted requirements. As the Lead Ultrasound Engineer, you are responsible for ensuring world-class imaging performance on our products that meet our customers' needs. You will integrate a range of transducers onto ultrasound imaging platforms and assess clinical value. You will develop software tools, image and data analytics infrastructure, and test methods to facilitate pre-clinical and clinical evaluation. You will regularly collaborate with a global, cross-functional team that includes Product Managers, Clinical Application Specialists, and R&D colleagues (e.g., hardware, software, mechanical, and transducer engineers).

Your key responsibilities include:

  • Participate in the design and development of transducer technologies to improve image quality, including advanced matrix arrays and wearable transducers
  • Develop and improve features in echocardiography, including 3D/4D volumetric imaging
  • Streamline and accelerate the development of artificial intelligence (AI) models that will be deployed on state-of-the-art ultrasound platforms to improve imaging performance
  • Design and develop the full ultrasound signal path (from transmit to display) for basic imaging modes and advanced features
  • Lead image performance improvement, including algorithm research and development, pre-clinical and clinical image optimization, verification and validation
  • Lead new product development activities, including design requirements and specifications, test method development, verification, and related documentation that complies with medical device regulations, standards, and our quality system
  • Collaborate with global Ultrasound team to integrate transducers onto ultrasound platforms
  • Participate in development of workflow automation features, including AI-based algorithms
  • Mentor and coach early-career team members in order to elevate R&D capabilities of team
  • Contribute to company's IP portfolio, including development of invention disclosures and patent applications
  • Support for collaborations with clinical institutions and universities on innovation projects
  • Maintain knowledge (e.g., publications, conferences) of state-of-the-art and trends in imaging technologies and reporting to global team

To be successful in this role, you should have the following skills and experience:

  • Master's or PhD degree in relevant engineering or science discipline (PhD preferred)
  • Substantial experience in medical ultrasound product development, including as an R&D contributor on multiple products from concept stage through commercialization stage
  • Expertise in ultrasound physics, signal and image processing, numerical modeling, and algorithm development
  • Experience in echocardiography and/or image quality optimization is preferred
  • Demonstrated experience using fast prototyping software (e.g., MATLAB, Python)
  • Demonstrated experience with C/C++ development and/or GPU programming with CUDA
  • Demonstrated ability to lead and influence a highly technical group
  • Excellent oral and written communication skills for multiple levels of an organization
  • Excellent organizational and time management skills
  • Ability to work in a fast-paced, collaborative, and agile environment with minimal direction, including on global teams
  • Working knowledge of relevant medical device regulations and guidance (e.g., ISO 13485, ISO 14971, IEC 62304, IEC 60601)
  • Willing to travel domestically and internationally at least 10%
  • Demonstrated Passion for Change

Working Conditions:

Magnetic Environment Exposure:

This position requires working in an environment where strong magnetic fields may be present. Employees may be exposed to powerful magnets, electromagnetic equipment, or other devices that generate magnetic fields.

Risk to Ferrous Metals in the Body:

Due to the nature of the magnetic environment, employees must not wear or carry ferrous metals on their person while in the designated work area. This includes, but is not limited to, metal objects such as steel, iron, and other ferrous materials. Additionally, employees with implants, medical devices, or foreign objects containing ferrous metals within their body (e.g., certain surgical implants, pacemakers, or metal pins) may be at risk and must disclose any such conditions to their supervisor prior to starting work.