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Digital Signal Processing Engineer Jobs in New Mexico

Senior FPGA Engineer

Albuquerque, NM · On-site

$100 - $130/hr

These solutions include digital signal processing algorithms deployed using System on Chip (SoC) or Field Programmable Gate Arrays (FPGAs) in combination with General Purpose Processors (GPPs) and ...

... digital signal processing. * Experience with analog laboratory equipment such as waveform ... Degree in Electrical Engineering. * Experience leading Root-Cause Corrective Action investigations.

FPGA Engineer

Albuquerque, NM · On-site

$88K - $135K/yr

These solutions include digital signal processing algorithms deployed using System on Chip (SoC) or Field Programmable Gate Arrays (FPGAs) in combination with General Purpose Processors (GPPs) and ...

FPGA Engineer

Albuquerque, NM · On-site

$88K - $135K/yr

These solutions include digital signal processing algorithms deployed using System on Chip (SoC) or Field Programmable Gate Arrays (FPGAs) in combination with General Purpose Processors (GPPs) and ...

Showing results 41-60

Digital Signal Processing Engineer information

See New Mexico salary details

$51.8K

$127.3K

$187.5K

How much do digital signal processing engineer jobs pay per year?

As of Aug 13, 2026, the average yearly pay for digital signal processing engineer in New Mexico is $127,287.00, according to ZipRecruiter salary data. Most workers in this role earn between $105,100.00 and $142,900.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a digital signal processing engineer?

To thrive as a Digital Signal Processing (DSP) Engineer, you need a strong background in mathematics, signal processing theory, and proficiency in programming languages like MATLAB, C/C++, or Python, often supported by a degree in electrical engineering or a related field. Familiarity with DSP hardware, simulation tools, and platforms like FPGA or DSP processors is typically required, and certifications in embedded systems or signal processing are advantageous. Problem-solving ability, analytical thinking, and effective teamwork set candidates apart in this field. These skills are crucial for designing, implementing, and optimizing algorithms that process digital signals accurately and efficiently in various applications.

What is the difference between Digital Signal Processing Engineer vs Electrical Engineer?

AspectDigital Signal Processing EngineerElectrical Engineer
Required CredentialsBachelor's or Master's in Electrical Engineering, Signal Processing, or related fieldsBachelor's or Master's in Electrical Engineering or related fields
Work EnvironmentResearch labs, tech companies, telecommunications firmsPower plants, manufacturing, electronics design
Industry UsageSignal processing, communications, audio/video techPower systems, electronics, control systems
Common Search IntentComparing roles in signal processing and electronicsBroader electrical engineering roles

The Digital Signal Processing Engineer specializes in designing algorithms and systems for processing digital signals, often within communications, audio, and video applications. Electrical Engineers have a broader scope, working on electrical systems, power, and electronics across various industries. While both roles require similar educational backgrounds, their focus areas and work environments differ significantly.

What does a digital signal processing engineer do?

A Digital Signal Processing (DSP) Engineer designs, develops, and implements algorithms and systems that manipulate and analyze signals such as audio, video, and sensor data. They work on both hardware and software to improve signal quality, extract useful information, or compress data for efficient storage and transmission. DSP Engineers are essential in industries like telecommunications, audio engineering, medical imaging, and consumer electronics, where they help create products such as smartphones, hearing aids, and radar systems.

What are some common challenges digital signal processing engineers face when integrating new algorithms into existing systems?

Digital Signal Processing Engineers often encounter challenges such as ensuring compatibility between new algorithms and legacy hardware or software, maintaining real-time processing requirements, and optimizing for limited computational resources. Debugging and validating algorithm performance under various signal conditions can also be complex, requiring collaboration with hardware engineers and extensive testing. Effective communication with cross-functional teams is essential to address integration issues and achieve system-wide functionality.
What are popular job titles related to Digital Signal Processing Engineer jobs in New Mexico? For Digital Signal Processing Engineer jobs in New Mexico, the most frequently searched job titles are:
What job categories do people searching Digital Signal Processing Engineer jobs in New Mexico look for? The top searched job categories for Digital Signal Processing Engineer jobs in New Mexico are:
What cities in New Mexico are hiring for Digital Signal Processing Engineer jobs? Cities in New Mexico with the most Digital Signal Processing Engineer job openings:
Infographic showing various Digital Signal Processing Engineer job openings in New Mexico as of August 2026, with employment types broken down into 1% Internship, 80% Full Time, 14% Part Time, 1% Temporary, and 4% Contract. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $127,287 per year, or $61.2 per hour.

Principal Engineer - Airborne Hardware

Data Device Corporation

Albuquerque, NM • On-site

$150 - $190/hr

Other

Posted 23 days ago


Job description

Career Opportunities with Data Device Corporation

Join our fast growing team!

Current job opportunities are posted here as they become available.

Data Device Corporation (DDC) has been recognized as a world leader in the design and manufacture of high‑reliability connectivity, power, and control solutions for the aerospace, defense, and space industries.

Great River Technology (GRT) located in Albuquerque, NM, a wholly owned subsidiary of Data Device Corporation, is a leader in high performance digital video and data development tools and services for the mil/aero industry. Since its founding in 1996, it has developed partnerships with leading commercial and military companies worldwide.

This position is 100% onsite at GRT in Albuquerque, NM.

Due to U.S. export control requirements, this position is open only to candidates who qualify as a "U.S. Person". This generally includes U.S. citizens, U.S. nationals, lawful permanent residents/green card holders, and certain protected individuals, including refugees and asylees.

Description

Great River Technology (GRT) is searching for a Principal Hardware Engineer to serve as a Subject Matter Expert (SME) in ARINC 818 digital video interface design, testing, simulation, and VHDL implementation within the aerospace domain. This role requires an individual with a proven track record of architecting, developing, and verifying complex airborne electronic hardware, with a particular emphasis on high‑speed digital video and data communication systems. The successful candidate will provide technical depth and leadership, mentor junior engineers, and significantly contribute to the strategic direction of GRT’s hardware development initiatives.

Responsibilities
  • ARINC 818 Expertise:
    • Serve as the primary technical authority for all aspects of ARINC 818 design, including Fibre Channel protocols, video formats, timing, and link integrity.
    • Lead the architectural definition, detailed design, and implementation of ARINC 818 interfaces for advanced avionics systems.
    • Develop and execute comprehensive test plans and procedures for ARINC 818 compliance, robustness, and performance validation, often leveraging custom test rigs and advanced instrumentation.
    • Pioneer and refine simulation methodologies for ARINC 818 links, including model development, analysis of signal integrity, and performance prediction in complex system environments.
  • VHDL Development & FPGA Design:
    • Design, develop, and verify complex VHDL code for high‑performance FPGAs (e.g., Xilinx) used in mission‑critical aerospace applications.
    • Expertise in FPGA architecture, floor planning, timing closure, synthesis, and place and route optimization for challenging aerospace requirements.
    • Implement digital signal processing (DSP) algorithms and video processing pipelines within FPGAs.
    • Develop comprehensive verification environments using VHDL, UVM, or other appropriate methodologies to ensure design integrity and functional correctness.
  • Hardware Design Leadership:
    • Lead the full lifecycle hardware development for airborne electronic systems, from requirements definition and conceptual design through detailed design, integration, verification, and production support.
    • Conduct in-depth analysis of power consumption, component stress, worst‑case tolerances, and reliability for critical hardware components.
    • Collaborate extensively with cross‑functional teams, including Systems Engineering, Software Development, and Manufacturing, to ensure seamless integration and optimal system performance.
    • Provide technical guidance and mentorship to junior and mid‑level hardware engineers, fostering a culture of technical excellence and continuous improvement.
  • Certification & Compliance:
    • Deep understanding and proven experience with aerospace certification standards.
    • Contribute to the generation and review of airworthiness documentation, including hardware design plans, technical requirements, functional specifications, design specifications, qualification test plans and reports.
    • Ensure designs adhere to industry best practices, internal standards, and regulatory requirements.
  • Problem Solving & Innovation:
    • Identify, diagnose, and resolve complex hardware issues, utilizing advanced diagnostic tools and methodologies.
    • Stay abreast of emerging technologies, industry trends, and research in digital video, high‑speed interfaces, and FPGA technology to drive innovation.
    • Propose and implement design improvements for existing products, focusing on quality, cost reduction, and component obsolescence management.
Required Qualifications
  • Bachelor's or Master's degree in Electrical Engineering, Computer Engineering, Aerospace Engineering, or a related field.
  • 10+ years of progressive experience in hardware design and development within the aerospace or defense industry.
  • Extensive experience with VHDL for complex FPGA development in aerospace applications.
  • Proven ability to lead technical projects and mentor engineering teams.
  • Strong understanding of digital circuit design principles, high‑speed digital interfaces, and signal integrity.
  • Proficiency with electronic design automation (EDA) tools for schematic capture, simulation (e.g., ModelSim/QuestaSim, Vivado Simulator), and FPGA development (e.g., Xilinx, Vivado).
  • Experience with test equipment such as oscilloscopes, logic analyzers, spectrum analyzers, and network analyzers.
  • Excellent problem‑solving, analytical, and communication skills.
  • Ability to work effectively in a dynamic, collaborative, and highly regulated environment.
Preferred Qualifications
  • Experience with other aerospace data bus standards.
  • Experience with Python or other scripting languages for test automation and data analysis.
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