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Signal Processing Engineer Jobs in Boston, MA (NOW HIRING)

... signal processing, AI/ML algorithm development, algorithm development, test & evaluation, model & simulation, or systems engineering, test engineering, radar modelling, or RF systems prototyping

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Signal Processing Engineer information

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$58.2K

$142.9K

$210.5K

How much do signal processing engineer jobs pay per year?

As of Aug 15, 2026, the average yearly pay for signal processing engineer in Boston, MA is $142,872.00, according to ZipRecruiter salary data. Most workers in this role earn between $118,000.00 and $160,400.00 per year, depending on experience, location, and employer.

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

To thrive as a Signal Processing Engineer, you need a strong background in mathematics, digital signal processing theory, and programming, typically supported by a degree in electrical engineering or a related field. Familiarity with tools such as MATLAB, Python, DSP hardware platforms, and relevant certifications like Certified LabVIEW Developer are highly beneficial. Analytical thinking, problem-solving abilities, and effective communication are crucial soft skills in this role. These skills and qualities ensure accurate analysis, efficient design, and successful implementation of signal processing solutions in diverse technical environments.

What is the difference between Signal Processing Engineer vs Communications Engineer?

AspectSignal Processing EngineerCommunications Engineer
Required CredentialsBachelor's or Master's in Electrical Engineering, Signal Processing, or related fieldsBachelor's or Master's in Electrical Engineering, Communications, or related fields
Work EnvironmentResearch labs, tech companies, R&D departmentsTelecom companies, network providers, infrastructure firms
Industry UsageDesigning algorithms for audio, video, radar, and sensor dataDeveloping and maintaining communication systems and networks
Search & Comparison IntentFocuses on signal analysis, filtering, and data processingFocuses on network design, protocols, and transmission systems

While both roles involve electrical engineering principles, Signal Processing Engineers primarily develop algorithms for analyzing and filtering signals, whereas Communications Engineers focus on designing and maintaining communication systems and networks. The roles often overlap in telecommunications, but their core responsibilities differ based on the specific application and industry focus.

What does a signal processing engineer do?

A Signal Processing Engineer designs, develops, and implements algorithms and systems to analyze, modify, and interpret signals such as audio, video, radar, or sensor data. They work with both analog and digital signals to extract meaningful information, improve signal quality, and enable communication between devices. Their work is essential in industries like telecommunications, healthcare (medical imaging), audio engineering, and defense. Signal Processing Engineers often use programming languages like MATLAB or Python, and work closely with hardware and software teams to optimize system performance.

What does a signal processing engineer do?

A signal processing engineer is an information technologies expert that analyzes and alters digital signals to make them more accurate and reliable. As a signal processing engineer, your responsibilities are to develop, manage and update digital signals, creating algorithms to process them more efficiently. Qualifications for a signal processing engineer include a bachelor’s degree in electrical or computer engineering, math, or physics, and skills in various programming languages, like C++. You can find signal processing engineer jobs in a wide variety of industries from security to logistics.

What are some typical challenges signal processing engineers face when working on real-time systems?

Signal Processing Engineers working on real-time systems often encounter challenges related to processing speed, latency, and resource constraints. They must design algorithms that efficiently handle large volumes of data without sacrificing accuracy, all while operating within the hardware's computational limits. Collaborating closely with hardware engineers and software developers is common to ensure seamless integration and optimal system performance. Staying updated with the latest advancements in digital signal processing (DSP) tools and techniques also helps address these challenges effectively.

What are the most commonly searched types of Signal Processing Engineer jobs in Boston, MA?

The most popular types of Signal Processing Engineer jobs in Boston, MA are:

What are popular job titles related to Signal Processing Engineer jobs in Boston, MA?

For Signal Processing Engineer jobs in Boston, MA, the most frequently searched job titles are:

What job categories do people searching Signal Processing Engineer jobs in Boston, MA look for?

The top searched job categories for Signal Processing Engineer jobs in Boston, MA are:

What cities near Boston, MA are hiring for Signal Processing Engineer jobs?

Cities near Boston, MA with the most Signal Processing Engineer job openings:

Infographic showing various Signal Processing Engineer job openings in Boston, MA as of August 2026, with employment types broken down into 94% Full Time, and 6% Contract. Highlights an 88% In-person, 6% Hybrid, and 6% Remote job distribution, with an average salary of $142,872 per year, or $68.7 per hour.

Radar Signal Processing Engineer-Associate Staff

MIT Lincoln Laboratory

Lexington, MA

Full-time

Medical, Dental, Vision, Retirement, PTO

Re-posted 11 days ago


Job description

Position Description

MIT Lincoln Laboratory is seeking a talented signal processing researcher to join our dynamic team.  As a member of the Airborne Radar Systems and Techniques group at MIT Lincoln Laboratory, you will work on world-class sensor systems as part of a team with a variety of technical backgrounds. We model and analyze the performance of new technologies, prototype radio frequency and complimentary sensors, design and execute data collections, and develop algorithms to detect, track, and image challenging targets within complex environments.  Our models and algorithms benefit from access to a one-of-a-kind interactive supercomputer.  Our prototypes and data collections are enabled by highly adaptable test infrastructure including two airborne radar testbeds-including a turboprop aircraft equipped with an advanced radar, visible and infrared imaging system, communications systems, and real-time data processors-and modern jammers.

Early career candidates and recent graduates are strongly encouraged to apply, and if selected, will work alongside experienced group members to learn about our mission areas and identify career growth paths. We are particularly interested in candidates with a relentless curiosity and strong technical foundation in Electrical or Computer Engineering, Mathematics, Physics, or a related field with experience in signal/imaging processing, data analysis, or radio frequency systems.

Responsibilities
  • Collaborate with experienced staff on the design, simulation, implementation, and optimization of signal and image processing algorithms
  • Analyze and interpret data sets to extract meaningful insights, assess system behavior, and evaluate the performance of new algorithms
  • Contribute to the design and execution of experiments that include both ground-based and airborne sensors
  • Prepare technical documentation, including test plans, interface control documents, reports, and technical presentations
Minimum Qualifications
  • Master's degree in Electrical Engineering, Computer Engineering, Mathematics, Physics, or a related field.  In lieu of a Master's, a Bachelor's degree with 3 years of relevant work experience will be considered
  • Experience in programming languages such as MATLAB, Python, or C/C++ along with standard data/signal/image processing and machine learning libraries
  • Strong organizational and problem-solving skills with the ability to work independently as well as collaboratively with a team
  • Effective communication skills, including ability to convey research goals, processes, accomplishments, and technical concepts
  • Ability to participate in field tests, data collection campaigns, and system demonstrations with occasional travel

Our team has a wide variety of professional experiences and educational backgrounds that enable us to find creative solutions to challenging real-world problems.  We value university research experience, Master's thesis work, journal or conference submissions, and capstone or senior design projects.  Applicants are not expected to have experience in all the following areas, however, a deep understanding of some and the desire and ability to learn others is expected.

  • Technical courses including classical mechanics, electromagnetism, waves and optics, mathematical methods for scientists, linear algebra, differential equations, probability and statistics, digital signal processing, artificial intelligence and machine learning, remote sensing, and robotics
  • Prototype, testing, and laboratory experience including experience with amplifiers, antennas, analog and digital filters, radio frequency systems on chip (RFSoC), field programable gate arrays (FPGAs), central/graphics processing units (CPU/GPUs), oscilloscopes, and spectrum analyzers
  • Signal/imaging processing and data analysis techniques including eigen-decomposition, Z and Fourier transform, finite/infinite impulse response filters (FIR/IIRs), transformers and other neural networks, and adaptive estimation

Join us in an intellectually rewarding, collaborative environment where you will further develop and apply your technical skills to real-world challenges.  We value differences and encourage applications from candidates of all backgrounds. If you are ready to join a team with a passion for pushing the boundaries of technology, we would love to hear from you!

Recent Graduate Hiring Range: $116,400 - $140,000

Experienced Hiring Range: $116,400 - $182,200

 

Disclaimer: MIT Lincoln Laboratory provides a typical hiring range as a good faith estimate of what we reasonably expect to offer for this position at the time of posting. The final salary offered to a selected candidate will depend on various factors, including-but not limited to-the scope and responsibilities of the role, the candidate's experience, skills and education/training, internal equity considerations and applicable legal requirements. This range reflects base salary only and does not include additional forms of compensation or benefits.

At MIT Lincoln Laboratory, our exceptional career opportunities include many outstanding benefits to help you stay healthy, feel supported, and enjoy a fulfilling work-life balance. Benefits offered to employees include: 

  • Comprehensive health, dental, and vision plans
  • MIT-funded pension
  • Matching 401K
  • Paid leave (including vacation, sick, parental, military, etc.)
  • Tuition reimbursement and continuing education programs
  • Mentorship programs
  • A range of work-life balance options
  • ... and much more!  

Please visit our Benefits page for more information. As an employee of MIT, you can also take advantage of other voluntary benefits, discounts and perks.

Selected candidate will be subject to a pre-employment background investigation and must be able to obtain and maintain a Top Secret level security clearance with compartmented program eligibility

MIT Lincoln Laboratory is an Equal Employment Opportunity (EEO) employer. All qualified applicants will receive consideration for employment and will not be discriminated against on the basis of race, color, religion, sex, sexual orientation, gender identity, national origin, age, veteran status, disability status, or genetic information; U.S. citizenship is required.

Requisition ID: 42766Â