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Satellite Electrical Engineer Jobs (NOW HIRING)

NY · On-site

$136K - $167K/yr

... LEO satellite platforms, and we need bold, experienced engineers who are ready to push the ... We are seeking a Principal Electrical Power Subsystem (EPS) Architect to join our growing BNS team.

Electrical Engineer

Tukwila, WA · On-site

$100K - $180K/yr

About Starfish Space Starfish Space provides satellite servicing missions with its Otter servicing ... This engineer will do everything ranging from designing electrical schematics and PCB layouts, to ...

The Staff Avionics RF Electrical Engineer will participate in all aspects of the development and test of RF hardware for E-Space satellite communications equipment. The ideal candidate has 10+ years ...

The Staff Avionics RF Electrical Engineer will participate in all aspects of the development and test of RF hardware for E-Space satellite communications equipment. The ideal candidate has 10+ years ...

Showing results 21-40

Satellite Electrical Engineer information

See salary details

$40.5K

$86.4K

$142.5K

How much do satellite electrical engineer jobs pay per year?

As of Sep 10, 2026, the average yearly pay for satellite electrical engineer in the United States is $86,381.00, according to ZipRecruiter salary data. Most workers in this role earn between $65,000.00 and $103,500.00 per year, depending on experience, location, and employer.

What does a satellite electrical engineer do?

A Satellite Electrical Engineer designs, develops, tests, and maintains the electrical systems and components used in satellites. Their work includes creating power systems, communication subsystems, and integrating various onboard electronics to ensure the satellite operates reliably in space. They collaborate with multidisciplinary engineering teams to address challenges such as energy efficiency, radiation protection, and system redundancy. These engineers play a critical role in ensuring satellite missions are successful, from initial concept through launch and operation.

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

To thrive as a Satellite Electrical Engineer, you need a solid background in electrical engineering, circuit design, and satellite systems, typically supported by a relevant engineering degree. Familiarity with tools like Altium Designer, MATLAB, and experience with satellite communication protocols are often required, along with certifications such as Professional Engineer (PE) licensure. Strong problem-solving, attention to detail, and teamwork skills help you excel in complex, multidisciplinary projects. These capabilities are crucial for ensuring the reliability, safety, and innovation of satellite systems in demanding environments.

What are some common challenges faced by satellite electrical engineers during satellite integration and testing phases?

Satellite Electrical Engineers often encounter challenges such as troubleshooting unexpected anomalies in electrical subsystems during integration and environmental testing. They must ensure all components interact seamlessly and meet rigorous reliability standards, often under tight deadlines. Collaboration with multidisciplinary teams is essential to quickly resolve issues, document findings, and implement solutions. Additionally, adapting to evolving project requirements and ensuring compliance with industry regulations are key aspects of the role.

What is the difference between Satellite Electrical Engineer vs Satellite Systems Engineer?

AspectSatellite Electrical EngineerSatellite Systems Engineer
Required CredentialsBachelor's in Electrical Engineering, certifications in satellite systemsBachelor's in Electrical, Aerospace, or Systems Engineering, similar certifications
Work EnvironmentDesign, develop, test electrical components for satellitesOversee entire satellite systems, including electrical, software, and mechanical aspects
Employer & Industry UsageSatellite manufacturing companies, aerospace firmsSatellite operators, aerospace and defense companies
Common Search & ComparisonFocuses on electrical systems within satellitesEncompasses broader satellite system integration

Satellite Electrical Engineers specialize in designing and testing electrical components for satellites, while Satellite Systems Engineers oversee the entire satellite system integration, including electrical, software, and mechanical parts. Both roles require similar technical credentials but differ in scope and focus within the satellite industry.

Do satellite electrical engineers work on satellites?

Yes, satellite electrical engineers design, develop, and test the electrical systems of satellites, including power distribution, communication interfaces, and control circuits. They often work in cleanroom environments and use tools like circuit simulation software to ensure system reliability in space conditions.

What cities are hiring for Satellite Electrical Engineer jobs?

Cities with the most Satellite Electrical Engineer job openings:

What are popular job titles related to Satellite Electrical Engineer jobs?

For Satellite Electrical Engineer jobs, the most frequently searched job titles are:

Infographic showing various Satellite Electrical Engineer job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 92% Full Time, 5% Part Time, 1% Contract, and 1% Nights. Highlights an 95% Physical, 1% Hybrid, and 4% Remote job distribution, with an average salary of $86,381 per year, or $41.5 per hour.

Principal Space Solar Electrical Engineer

Atlanta, GA

Qcells
Clean Energy Semiconductors Manufacturing

$133K - $163K/yr

Full-time

Posted 12 days ago


Key responsibilities

  • Define and own the module-level electrical architecture for space solar panels, including cell interconnection, string topology, and power output interface design

  • Define the electrical interface between Qcells solar panels and the spacecraft EPS, including voltage-current characteristics, power budget, and fault behavior

  • Design and lead the cell and module electrical characterization program, including I-V measurements, spectral response, and post-environmental testing analysis


Qcells rating

6.8

Company rating: 6.8 out of 10

Based on 24 frontline employees who took The Breakroom Quiz


Job description

Description

POSITION DESCRIPTION: 

Hanwha Qcells is building its first U.S.-based Space Photovoltaic Systems R&D organization, co-located with Georgia Tech in Atlanta.  The Principal Space Solar Electrical Engineer will define how our next generation perovskite-silicon tandem cells become spacecraft power. You will own the full electrical architecture from cell interconnect through panel design to spacecraft EPS interface, and lead radiation degradation research efforts that drive material and design decisions. 

The Principal Space Solar Electrical Engineer is a principal-level individual contributor who defines the electrical architecture and design for space-based PV systems. You will determine how cells are interconnected, how strings are configured, how power is routed across a panel, and how the assembly interfaces with a satellite's electrical power subsystem. 

This role demands deep PV device expertise, hands-on cell interconnection and characterization experience, and the systems are thinking to translate cell behavior into spacecraft power architecture. You will work independently on complex, ambiguous problems and develop junior engineers as the team grows. 

RESPONSIBILITIES:

Module Electrical Architecture — Technical Ownership 

  • Define and own the module-level electrical architecture for Qcells space solar panels: determine cell interconnection technology, string topology, bypass and blocking diode strategy, and power output interface design 

  • Lead technology selection and trade studies for cell interconnect approaches — metallic tab welding, ultrasonic bonding, conductive adhesive, mesh or fabric conductors — evaluating conductivity, mechanical compliance, thermal fatigue resistance, radiation tolerance, and process yield 

  • Develop the complete electrical design package: interconnect geometry, current routing on rigid or flexible substrates, voltage isolation, ESD protection, grounding architecture, and module electrical design standards and interface control documentation 

Spacecraft Power Interface & EPS Integration 

  • Define the electrical interface between Qcells solar panels and Hanwha Systems spacecraft EPS: voltage-current characteristics, operating point under MPPT or direct energy transfer, current limits, fault behavior, and harness interface 

  • Develop and own the mission-class power budget framework: orbital energy balance models for VLEO, LEO, and cis-lunar missions incorporating eclipse fraction, pointing loss, thermal derating, and EOL degradation 

  • Collaborate with Hanwha Systems power system engineers to ensure Qcells module design is correctly matched to satellite power conditioning architectures 

Cell & Module Characterization 

  • Design and lead the cell and module electrical characterization program: I-V measurement, AM0-equivalent illumination, spectral response, EQE, dark I-V, and CV characterization; establish calibration standards and data reduction tools (Python/MATLAB) for routine and specialized measurements 

  • Lead post-environmental characterization campaigns following TVAC cycling, vibration, and radiation testing; analyze performance retention, identify failure signatures, and drive corrective design or process actions 

  • Develop parametric degradation models correlating test data to predicted on-orbit electrical performance over mission lifetime 

Radiation Degradation Research — Program Leadership 

  • Define the radiation degradation experimental program: test matrix, radiation species and fluence selection, and performance metrics; coordinate access to external proton/electron beam facilities and manage test execution, sample handling, and data chain of custody 

  • Lead post-irradiation characterization and analysis — I-V, EL/PL imaging, capacitance — and model DDD and TID effects on device parameters; translate findings into design guidance on coverglass optimization, interconnect material selection, and string margin requirements for radiation-degraded performance 

  • Author technical publications and internal reports; represent the team at space PV conferences and government program technical reviews 

REQUIRED QUALIFICATIONS:
  • M.S. or Ph.D. in electrical engineering, physics, materials science, or a closely related field; Ph.D. preferred for Staff-level placement 

  • 10+ years of hands-on R&D with photovoltaic devices, solar cells, or semiconductor device characterization; space or high-reliability environment experience strongly favored 

  • Proven technical leadership as an individual contributor: owned major design decisions, set technical direction for a program, and mentored junior engineers 

  • Deep proficiency in PV device characterization: I-V measurement systems, spectral response, QE, EL/PL imaging, and parametric modeling 

  • Hands-on experience with cell interconnection processes in a laboratory environment: soldering, bonding, or electro-mechanical assembly 

  • Ability to independently design and execute complex experimental programs, analyze ambiguous data, and reach defensible engineering conclusions 

  • Familiarity with spacecraft EPS architecture: power conditioning, battery/solar array interfaces, or satellite EPS design 

PREFERRED QUALIFICATIONS: 
  • Experience with space PV technology — multi-junction GaAs, III-V cells, or perovskite/thin-film PV — and applicable qualification standards (AIAA S-111, NASA-STD-4005) 

  • Radiation effects expertise: displacement damage dose modeling, TID characterization, and experimental methods for irradiation of photovoltaic devices 

  • Knowledge of spacecraft EPS topologies: DET vs. MPPT, solar array regulator behavior, and cell I-V mismatch implications 

  • Experience with flexible interconnect design: flex PCB, polyimide substrates, or metal mesh conductors 

  • Python or MATLAB proficiency for data analysis, degradation modeling, and power budget tools 

  • Publications or presentations in space PV, radiation effects, or related fields 

  • Experience with ITAR-controlled technical work 

COMPENSATION: 

In accordance with applicable pay transparency laws, the anticipated annual base salary for this position is: 

  • Zone 1 (Bay Area, NYC): $208,100 - $254,300   

  • Zone 2 (CA, NJ, NY): $190,700 - $233,100   

  • Zone 3 (All others): $173,400 - $211,900   

The applicable salary range is based on the employee’s primary work location. Individual compensation will be determined based on qualifications, relevant experience, education, skills, internal equity, and other business-related factors. 

Hanwha Q CELLS Technologies, Inc. a subsidiary of Hanwha Q CELLS, one of the world´s largest and most recognized photovoltaic manufacturers for its high-performance, high-quality solar cells and modules. It is headquartered in Seoul, South Korea (Global Executive HQ) Thalheim, Germany (Technology & Innovation HQ) and Santa Clara, CA, USA (HW and SW Product Development HQ). Through its growing global business network spanning Europe, North America, Asia, South America, Africa, and the Middle East, the company provides excellent services and long-term partnerships to its customers in the utility, commercial, government, and residential markets. Hanwha Q CELLS is a flagship company of Hanwha Group, a FORTUNE Global 500 firm and a Top 7 business enterprise in South Korea.        

PHYSICAL, MENTAL & ENVIRONMENTAL DEMANDS: 

To comply with the Rehabilitation Act of 1973 the essential physical, mental and environmental requirements for this job are listed below. These are requirements normally expected to perform regular job duties. Incumbent must be able to successfully perform all of the functions of the job with or without reasonable accommodation.  

Mobility 

Standing 

20% of time  

Sitting 

70% of time  

Walking 

10% of time  

Strength 

Pulling 

up to 10 Pounds  

Pushing 

up to 10 Pounds  

Carrying 

up to 10 Pounds  

Lifting 

up to 10 Pounds  

Dexterity (F = Frequently, O = Occasionally, N = Never) 

Typing 

Handling 

Reaching 

Agility (F = Frequently, O = Occasionally, N = Never) 

Turning 

Twisting 

Bending 

Crouching 

Balancing 

Climbing 

Crawling 

Kneeling 


The salary range is required by the California Pay Transparency Act and may differ depending on the location of those candidates hired nationwide. Actual compensation is influenced by a wide array of factors including but not limited to, skill set, education, licenses and certifications, essential job duties and requi


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