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Signal Integrity Engineer Jobs in Alabama (NOW HIRING)

Supporting signal integrity and power integrity considerations throughout the design process * Working closely with electrical, mechanical, manufacturing and test engineers to achieve optimum product ...

Supporting signal integrity and power integrity considerations throughout the design process * Working closely with electrical, mechanical, manufacturing and test engineers to achieve optimum product ...

$80 - $100/hr

... integrity of purpose and product. IERUS offers competitive compensation packages, retirement ... Description IERUS Technologies, Inc., is seeking a Signal Processing Engineer to join a diverse and ...

New

PCB Design Engineer

Huntsville, AL ยท On-site

$120 - $140/hr

Supporting signal integrity and power integrity considerations throughout the design process * Working closely with electrical, mechanical, manufacturing and test engineers to achieve optimum product ...

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Signal Integrity Engineer information

See Alabama salary details

$115.6K

$152.7K

How much do signal integrity engineer jobs pay per year?

As of Sep 4, 2026, the average yearly pay for signal integrity engineer in Alabama is $150,736.00, according to ZipRecruiter salary data. Most workers in this role earn between $151,400.00 and $151,400.00 per year, depending on experience, location, and employer.

What does a signal integrity engineer do?

A signal integrity engineer works within electronics engineering. You design circuit boards and electrical systems. Your responsibilities include finding solutions to problems surrounding electrical current delivery in various devices. Other duties involve creating pathways for current to travel through circuitry. As a signal integrity engineer, you work to keep current free from interference and reflections to provide the highest quality of current to a device or piece of equipment. Using superior troubleshooting skills, you identify design problems and develop solutions.

What does a signal integrity engineer do?

A Signal Integrity Engineer is responsible for ensuring that electrical signals in high-speed circuits and systems maintain their quality and integrity as they travel through various components and interconnections. They analyze and address issues like signal loss, noise, crosstalk, and timing errors that can degrade performance in electronic devices, such as computer motherboards, communication systems, and data centers. Their work involves simulation, measurement, and troubleshooting to optimize designs and ensure reliable operation of complex electronic systems.

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

To thrive as a Signal Integrity Engineer, you need a deep understanding of electrical engineering principles, high-speed circuit design, and electromagnetic compatibility, typically supported by a relevant engineering degree. Familiarity with simulation tools such as HyperLynx, HFSS, and SPICE, as well as PCB layout software and signal measurement instruments, is essential. Strong analytical thinking, problem-solving skills, and effective communication enable collaboration with multidisciplinary teams and interpretation of complex data. These skills are crucial to ensuring reliable, high-performance electronic systems and preventing costly design errors.

What are some common challenges signal integrity engineers face when working on high-speed PCB designs?

Signal Integrity Engineers often encounter challenges such as minimizing crosstalk, managing electromagnetic interference (EMI), and ensuring signal quality over long trace lengths or high-frequency applications. They must collaborate closely with hardware designers, PCB layout engineers, and test teams to address these issues early in the design process. Staying updated with evolving standards and simulation tools is essential, as is troubleshooting problems that arise during prototyping and validation phases.

What is the difference between Signal Integrity Engineer vs RF Engineer?

AspectSignal Integrity EngineerRF Engineer
Required CredentialsBachelor's or Master's in Electrical Engineering, certifications like IEEEBachelor's or Master's in Electrical Engineering, RF-specific certifications
Work EnvironmentDesign labs, simulation software, PCB testingTesting labs, antenna design, RF measurement equipment
Industry UsageHigh-speed digital design, PCB layout, signal analysisWireless, telecommunications, radar systems

While both roles require electrical engineering knowledge, Signal Integrity Engineers focus on maintaining signal quality in digital systems, whereas RF Engineers specialize in radio frequency systems and wireless communication. The roles often overlap in industries like telecommunications and electronics, but their core responsibilities and tools differ.

What are the most commonly searched types of Signal Integrity Engineer jobs in Alabama?

The most popular types of Signal Integrity Engineer jobs in Alabama are:

What job categories do people searching Signal Integrity Engineer jobs in Alabama look for?

The top searched job categories for Signal Integrity Engineer jobs in Alabama are:

Infographic showing various Signal Integrity Engineer job openings in Alabama as of August 2026, with employment types broken down into 1% As Needed, 84% Full Time, 12% Part Time, 1% Temporary, and 2% Contract. Highlights an 91% Physical, 2% Hybrid, and 7% Remote job distribution, with an average salary of $150,736 per year, or $72.5 per hour.

Senior Electrical Engineer, PCB Design

Redwire Defense Tech

Huntsville, AL โ€ข On-site

$132K - $163K/yr

Full-time

Medical, Dental, Vision, Retirement, PTO

Posted 23 days ago


Job description

Description

WORK LOCATION: San Luis Obispo, CA or Huntsville, AL

FLSA STATUS: Exempt

SALARY RANGE: The anticipated salary range for this role is $132,000 to $163,000.00 in San Luis Obispo, CA or $120,000 to $140,000 in Huntsville, AL. This range reflects a good faith estimate based on the targeted level for the role and typical compensation benchmarks across U.S. locations. Actual compensation may vary depending on the selected candidate’s qualifications, experience, geographical location, and internal alignment.


SUMMARY 

The Senior Electrical Engineer, PCB Design plays a critical role in the design, development, and integration of embedded electrical systems for uncrewed aircraft platforms. This role is responsible for architecting and validating flight-critical circuits, power systems, avionics interfaces, and embedded electronics that operate reliably in demanding environments. The Senior Electrical Engineer, PCB Design serves as a domain expert within the hardware team - PCB layout and design for avionics and embedded systems, schematic capture, PCB stack-up, signal integrity, and manufacturability for rugged aerospace environments and ensuring seamless integration with mechanical, software, and GNC functions. 

This position is ideal for an engineer experienced in UAS or aerospace electronics who thrives in a hands-on, fast-paced environment and enjoys solving complex technical challenges involving sensors, radios, power regulation, embedded compute, and flight-critical communication buses. 

RESPONSIBILITIES 

The following job functions are a basic requirement but are not limited to and may be assigned other duties. 

  • Design and develop multi-layer PCBs for avionics, power regulation, and sensor interfaces.
  • Perform schematic capture and PCB layout using Altium (or equivalent), ensuring compliance with aerospace standards.
  • Optimize signal integrity, impedance control, and thermal management in PCB designs.
  • Collaborate with electrical engineers to translate system requirements into PCB-level implementations.
  • Support DFM/DFT reviews and coordinate with manufacturing for board builds.
  • Conduct design reviews (CoDR, PDR, CDR) focused on PCB aspects.
  • Assist in prototype bring-up and troubleshooting at the board level.
  • Own subsystem requirements, architecture, component selection, schematic creation, and design documentation. 
  • Develop and review PCB designs, ensuring manufacturability, signal integrity, and environmental robustness.
  • Integrate sensors, radios, autopilots, datalinks, GPS modules, payload interfaces, and embedded computer platforms (e.g., Jetson, STM32, PIC, etc.).
  • Support environmental, vibration, thermal, and electrical testing, including benchtop validation, HIL/SIL testing, and flight test preparation.
  • Collaborate cross-functionally across GNC, Software, Mechanical, Autonomy, Production, and Test teams to ensure seamless integration.
  • Participate in design reviews (CoDR, PDR, CDR), risk assessments, and reliability evaluations.
  • Diagnose and resolve complex field issues related to avionics, power, sensors, and embedded electronics. 

REQURIED QUALIFICATIONS 

The following are a non-exhaustive list of qualifications for the position: 

  • Bachelor’s degree in electrical engineering, Computer Engineering, or related field required. 
  • 4-7 years of PCB design experience (Altium preferred) for aerospace, defense or UAS applications.
  • Strong knowledge of high-speed digital design, power distribution, and mixed-signal PCB layouts.
  • Familiarity with IPC standards, controlled impedance routing, and stack-up design.
  • Experience with design rule checks (DRC) and signal integrity analysis tools.
  • Demonstrated ownership of subsystem-level development (architecture → test → integration → release).
  • Experience supporting flight test, field troubleshooting, or operational unmanned systems.
  • High-speed routing, differential pairs, controlled impedance.
  • Thermal and mechanical considerations for ruggedized boards.
  • Understanding of power integrity and decoupling strategies.
  • Ability to interpret system schematics and translate into PCB layouts.
  • Understanding of UAS electrical architectures, autopilot interfaces, and avionics integration.
  • Experience with oscilloscopes, multimeters, logic analyzers, and environmental test setups.
  • Strong analytical and problem-solving skills with the ability to troubleshoot complex electrical issues.
  • Excellent cross-disciplinary communication and collaboration.
  • Detail-oriented, organized, and comfortable balancing multiple priorities. 

PREFERRED QUALIFICATIONS 

  • Master’s degree in electrical engineering or related discipline is a plus.
  • Experience with rigid-flex PCB design for space-constrained UAS platforms.
  • Knowledge of MIL-STD-810, DO-160 environmental requirements for PCB hardware.
  • Previous involvement in flight-critical or safety-critical hardware development. 
  • Familiarity with RF layout practices and grounding/shielding techniques.
  • Experience with FMEA, reliability analysis, or system safety documentation. 
  • Experience developing test fixtures, automated test rigs, or custom validation tools. 

REDWIRE DEFENSE TECH BENEFITS 

  • Matching 401(k)
  • Paid PTO
  • Paid holidays
  • Medical, vision, and dental insurance
  • Group Short-Term & Long-Term Disability
  • HSA and FSA Options
  • Critical Care Plan
  • Accident Care Plan
  • Employee Stock Purchasing Program (ESPP)

CLEARANCE REQUIREMENTS 

This position may require access to information that is subject to compliance with the International Traffic Arms Regulations (“ITAR”) and/or the Export Administration Regulations (“EAR”). To comply with the requirements of the ITAR and/or the EAR, applicants will be asked to provide specific documentation to verify a US person’s status under the ITAR and the EAR.

WORK ENVIRONMENT AND PHYSICAL REQUIREMENTS 

The work environment may involve a standard office setting while also incorporating elements of a production area. Employees will use standard office equipment, including computers, and must demonstrate stamina to sit or stand while maintaining attention to detail despite potential interruptions. The role may require occasional activities such as walking, climbing, stooping, crouching, and bending. Vision is necessary for reading printed materials and a computer screen, while hearing and speech are essential for effective communication both in person and over the telephone. Additionally, the position may necessitate travel by air or automobile. Employees may be required to use personal protective equipment, including safety glasses, safety shoes, and shop coats, to ensure safety in the production environment. Employees may be able to lift up to 30 pounds as needed.

REDWIRE DEFENSE TECH IS AN EQUAL OPPORTUNITY EMPLOYER 

All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, disability, age, sexual orientation, gender identity, national origin, veteran status, or genetic information. Redwire Defense Tech is committed to providing access, equal opportunity and reasonable accommodation for individuals with disabilities in employment, its services, programs, and activities. To request reasonable accommodation, contact Human Resources. Continued employment remains on an “At-Will” basis.