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Dsp Engineer Jobs in Utah (NOW HIRING)

Lead, Software Engineer - FPGA

Salt Lake City, UT ยท On-site

$124K - $160K/yr

FPGA EW Design Engineer Job Code: 41806 Job Location: Salt lake City Job Schedule: 9/80, employees ... Advanced digital signal processing (DSP) techniques * Digital modulation and demodulation * Forward ...

New

AtlasIED is seeking a Web GUI Engineer to design and develop advanced, highly interactive user ... Our interfaces are embedded web GUIs served directly from hardware devices such as DSP processors ...

Senior FPGA Design Engineer

Provo, UT

$116K - $160K/yr

As a Senior FPGA Design Engineer you will develop FPGA designs for all major vendors and device ... DSP, controls, data links, embedded processing and processor interfaces. Designers work with ...

FPGA Design Engineer II

Provo, UT

$116K - $160K/yr

As an FPGA Design Engineer II you will develop FPGA designs for all major vendors and device ... DSP, controls, data links, embedded processing and processor interfaces. Designers work with ...

New

... and DSP--managed through the 3P partner, and hold them accountable to ACoS and ROAS targets ... programming, and paid amplification. * Build the internal and partner playbook for TikTok Shop ...

... and DSP-managed through the 3P partner, and hold them accountable to ACoS and ROAS targets ... programming, and paid amplification. * Build the internal and partner playbook for TikTok Shop ...

Dsp Engineer information

See Utah salary details

$86.5K

$140.4K

$153.4K

How much do dsp engineer jobs pay per year?

As of Aug 16, 2026, the average yearly pay for dsp engineer in Utah is $140,401.00, according to ZipRecruiter salary data. Most workers in this role earn between $130,200.00 and $152,000.00 per year, depending on experience, location, and employer.

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

To thrive as a DSP Engineer, you need a solid background in digital signal processing, mathematics, and programming, typically supported by a degree in electrical engineering or a related field. Familiarity with tools like MATLAB, Simulink, C/C++, and DSP hardware platforms is essential, along with knowledge of relevant industry standards. Strong analytical thinking, problem-solving abilities, and effective communication help you collaborate across multidisciplinary teams and troubleshoot complex systems. These skills ensure accurate signal processing solutions, efficient development cycles, and the delivery of high-performance products.

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

AspectDsp EngineerSignal Processing Engineer
Required CredentialsBachelor's or Master's in Electrical Engineering, Computer Engineering, or related fields; knowledge of DSP algorithmsBachelor's or Master's in Electrical Engineering, Signal Processing, or related fields; strong math and algorithm skills
Work EnvironmentDesigning and implementing digital signal processing systems, often in embedded environmentsDeveloping algorithms for analyzing and processing signals, often in research or software settings
Employer & Industry UsageTelecommunications, audio/video, defense, consumer electronicsResearch labs, academia, software companies, telecommunications

While both roles involve signal processing, Dsp Engineers focus on designing and implementing digital signal processing systems, often embedded, whereas Signal Processing Engineers typically develop algorithms for analyzing signals, often in research or software environments. The roles overlap in skills and industry usage but differ in application focus.

What is a DSP engineer?

A digital signal processing (DSP) engineer designs, develops, and maintains digital signals for accuracy. Duties of a DSP engineer include using knowledge of DSP algorithms and software to create or improve systems that process audio, visual, and data signals. They work with various types of systems, including undersea cables, audio-visual systems, or computer networking.

What are the common challenges a DSP engineer faces when working on real-time signal processing applications?

DSP Engineers often encounter challenges such as optimizing algorithms to run efficiently on hardware with limited processing power and memory, ensuring low latency for real-time applications, and minimizing power consumption, especially in embedded systems. They must also frequently collaborate with hardware, software, and systems teams to integrate their solutions seamlessly. Keeping up with evolving digital signal processing techniques and tools is essential for tackling complex signal environments and meeting project requirements.

Are DSP engineers in demand?

DSP engineers are in high demand due to their expertise in digital signal processing used in telecommunications, audio, and imaging systems. The role often requires knowledge of programming languages like C/C++ and tools such as MATLAB, with employment opportunities growing as electronic devices and communication technologies expand.

What are the most commonly searched types of Dsp Engineer jobs in Utah?

The most popular types of Dsp Engineer jobs in Utah are:

What are popular job titles related to Dsp Engineer jobs in Utah?

For Dsp Engineer jobs in Utah, the most frequently searched job titles are:

What job categories do people searching Dsp Engineer jobs in Utah look for?

The top searched job categories for Dsp Engineer jobs in Utah are:

What are popular job titles related to Dsp Engineer jobs in UT?

For Dsp Engineer jobs in UT, the most frequently searched job titles are:

Infographic showing various Dsp Engineer job openings in Utah as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $140,401 per year, or $67.5 per hour.

Lead, Software Engineer - FPGA

L3HHCM20

Salt Lake City, UT โ€ข On-site

$124K - $160K/yr

Full-time

Posted 3 days ago

New


Job description

Job Title: FPGA EW Design Engineer

Job Code: 41806

Job Location: Salt lake City

Job Schedule: 9/80, employees work 9 out of 14 days- totaling 80 hours worked- and have every other Friday off

ย 

We are seeking an experienced FPGA Design Engineer to help develop advanced electronic warfare (EW) and wireless digital communications systems. Ideal candidates bring experience in EW, wireless communications, modems, and/or digital signal processing (DSP). You will contribute across the full design lifecycle, including proposals, requirements definition, RTL development, simulation, synthesis, place-and-route, verification and test, system integration, and field support. This role offers challenging technical work within a collaborative team of talented engineers and opportunities to work independently while leading small teams of technical contributors. Located in Salt Lake City, this position also offers access to exceptional year-round outdoor recreation and cultural experiences, supported by L3Harris's commitment to work-life balance.

Candidates with experience or education in one or more of the following areas are encouraged to apply:

  • Electronic warfare (EW)
  • Signal detection, classification, and identification
  • Radar systems and signal processing
  • Advanced digital signal processing (DSP) techniques
  • Digital modulation and demodulation
  • Forward error correction (FEC)
  • Machine learning
  • FPGA verification using simulation and unit testing
  • Experience developing in VHDL (preferred) or Verilog

Minimum Qualifications:

  • Bachelor's Degree and minimum 9 years of prior relevant experience. Graduate Degree and a minimum of 7 years of prior related experience. In lieu of a degree, minimum of 13 years of prior related experience
  • Current DOD clearance or the ability to aquire one.

Preferred Qualifications:

  • Master's degree in computer science, computer engineering, software engineering, or electrical engineering
  • Experience leading small engineering teams or technical contributors
  • Experience developing electronic support (ES) and/or electronic attack (EA) signal-processing capabilities
  • Experience implementing complex modem and/or DSP algorithms in FPGA-based programmable logic; comparable ASIC design experience is also applicable
  • Experience implementing industry-standard interfaces, such as 10/100/1000 Ethernet, SPI, UART, SDRAM, DDR3, JESD, and PCIe
  • Experience with FPGA simulation, synthesis, and implementation tools, such as ModelSim, Synplify, AMD Xilinx Vivado/ISE, and/or Intel Quartus
  • Experience with high-speed serial FPGA interfaces operating at 3 Gbps or greater
  • Experience achieving timing closure in large FPGA designs
  • Experience with high-level synthesis (HLS)
  • Hands-on laboratory debug experience using signal generators, digital oscilloscopes, logic analyzers, bit-error-rate testers (BERTs), and other advanced measurement equipment
  • Familiarity with Git source control
  • Familiarity with C, C++, C#, MATLAB, and/or Simulink

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