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Antenna Engineer Jobs in Indiana (NOW HIRING)

Understanding of antenna theory and design, including physical geometry, material properties, and ... Professional Engineer (PE) or Fundamentals of Engineering (FE) credentials. * Fiber optic ...

Understanding of antenna theory and design, including physical geometry, material properties, and ... Professional Engineer (PE) or Fundamentals of Engineering (FE) credentials. * Fiber optic ...

... antenna arrays. * Develop schematics, wiring diagrams, and technical data packages to support ... Support reverse engineering and obsolescence mitigation efforts for legacy electronics to extend ...

Senior Mach-TB Mission Engineer

Crane, IN · On-site

$104K - $143K/yr

... antenna recordings. * Manage and operate TM rack equipment to receive decrypted telemetry links ... Engineering units * Manage and validate data quality and integrity, ensuring a nominal trajectory ...

Unpaid Intern, Weather

Indianapolis, IN · On-site

$14.25 - $19/hr

... programming produced annually by its business units. Nexstar owns America's largest local ... networks Antenna TV and Rewind TV, and a 31.3% ownership stake in TV Food Network. The Company ...

Showing results 41-60

Antenna Engineer information

See Indiana salary details

$56.1K

$130.7K

$187K

How much do antenna engineer jobs pay per year?

As of Aug 13, 2026, the average yearly pay for antenna engineer in Indiana is $130,659.00, according to ZipRecruiter salary data. Most workers in this role earn between $96,600.00 and $186,500.00 per year, depending on experience, location, and employer.

What is the difference between Antenna Engineer vs RF Engineer?

AspectAntenna EngineerRF Engineer
CredentialsBachelor's or higher in Electrical Engineering, specialized in antennasBachelor's or higher in Electrical Engineering, RF or Communications focus
Work EnvironmentDesigning, testing, and optimizing antennas in labs or fieldDesigning and testing RF circuits and systems in labs or production
Industry UsageTelecommunications, aerospace, defense, wireless devicesWireless communications, radar, satellite, mobile networks

Both Antenna Engineers and RF Engineers work in wireless and telecommunications industries, often overlapping in skills related to radio frequency systems. However, Antenna Engineers focus specifically on antenna design and performance, while RF Engineers handle broader RF circuit and system design. Understanding these distinctions helps in choosing the right career path or job search focus.

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

To thrive as an Antenna Engineer, you need a solid background in electromagnetics, RF engineering, and antenna theory, typically supported by a degree in electrical engineering or a related field. Familiarity with simulation tools like HFSS or CST, vector network analyzers, and relevant certifications such as the IEEE Wireless Communication certification is highly valuable. Strong problem-solving abilities, attention to detail, and effective teamwork are essential soft skills for this role. These competencies are crucial for designing, testing, and optimizing antennas that meet performance requirements in complex wireless systems.

What is an antenna engineer?

An antenna engineer designs and develops antennas and other communication devices. The duties of someone in this career include working with electronic equipment such as modems, cell phones, satellite equipment, and radio antennas. As an engineer, you may analyze a company’s needs and then make plans to meet those needs. Your responsibilities may include performing research, making a development schedule, and creating budget proposals for development projects. You often create prototypes of your designs for testing and then analyze performance. Many projects require an understanding of radio frequency (RF) ranges.

How does an antenna engineer typically collaborate with other teams during the development of a new wireless product?

Antenna Engineers frequently work alongside RF engineers, mechanical designers, and product managers to ensure that antenna designs are optimized for both performance and manufacturability. During product development, they participate in cross-functional meetings to discuss integration challenges, share test results, and address design trade-offs. Close collaboration with the testing and quality assurance teams is also essential to validate the antenna's real-world performance. This teamwork helps ensure the final product meets regulatory requirements and customer expectations.

What are the most commonly searched types of Antenna Engineer jobs in Indiana?

The most popular types of Antenna Engineer jobs in Indiana are:

What are popular job titles related to Antenna Engineer jobs in Indiana?

For Antenna Engineer jobs in Indiana, the most frequently searched job titles are:

What job categories do people searching Antenna Engineer jobs in Indiana look for?

The top searched job categories for Antenna Engineer jobs in Indiana are:

What are popular job titles related to Antenna Engineer jobs in IN?

For Antenna Engineer jobs in IN, the most frequently searched job titles are:

Infographic showing various Antenna Engineer job openings in Indiana as of August 2026, with employment types broken down into 25% As Needed, and 75% Full Time. Highlights an 100% In-person job distribution, with an average salary of $130,659 per year, or $62.8 per hour.

Full-time

Posted 6 days ago


SAIC rating

7.9

Company rating: 7.9 out of 10

Based on 79 frontline employees who took The Breakroom Quiz

78th of 223 rated it services


Job description

SAIC is seeking an Electrical Systems Engineer (EE2) to support the Expeditionary Electronic Warfare Division at NSWC Crane. This position supports RF and electrical engineering for signal communications management and power distribution supporting test and evaluation activities. The selected candidate will design and optimize electrical and electronic test range infrastructure, including wired and wireless communications and fiber-to-cellular towers. Additionally, this role involves managing range power distribution systems, performing power system studies, and testing/evaluating threat devices.

Job Responsibilities:

  • Provide RF and electrical engineering support for signal communications management and power distribution in support of MXQT test and evaluation activities.
  • Design, analyze, evaluate, and optimize electrical and electronic test range infrastructure, including wired and wireless communications systems.
  • Manage and support fiber-to-cellular wireless tower architecture and associated telecommunications infrastructure.
  • Manage and evaluate test range power distribution systems and support improvements to reliability, safety, and operational performance.
  • Perform power system studies and engineering evaluations, including steady state, short circuit, dynamic stability, transient, harmonic, flicker, switching overvoltage, lightning, energization, and related analyses.
  • Apply technical knowledge of electronics principles to troubleshoot and resolve complex electrical and RF-related issues.
  • Conduct electrical and RF measurements on systems and components using specialized diagnostic and test equipment.
  • Support testing and evaluation of CIED and CUxS threat devices and associated processes.
  • Evaluate equipment design, assess system performance, and provide recommendations for technical improvement.
  • Test, evaluate, troubleshoot, repair, and support fiber optic and copper cable systems used in lab and range environments.
  • Support fielded power and communication cabling through design, evaluation, maintenance, management, and repair on test ranges.
  • Prepare support-equipment reports and related engineering documentation supporting system readiness and customer decision-making.
  • May perform quality assurance testing of assemblies and equipment fabricated by technicians.
  • Support work in both laboratory and outdoor field environments, including testing in variable weather and operational conditions. 
SAIC is a premier mission integrator focused on advancing the power of technology and innovation to serve and protect our world. Our robust portfolio of offerings across the defense, space, intelligence, and civilian markets includes secure high-end solutions in mission IT, enterprise IT, engineering services, and professional services. We integrate emerging technology, rapidly and securely, into mission critical operations that modernize and enable critical national imperatives.

We are approximately 23,000 strong; driven by mission, united by purpose, and inspired by opportunities. SAIC is an Equal Opportunity Employer. Headquartered in Reston, Virginia, SAIC has annual revenues of approximately $7.3 billion. For more information, visit saic.com. For ongoing news, please visit our newsroom.

Education Level: Bachelor of Science in Electrical Engineering.

Required Qualifications:

  • 3+ years of related professional experience in electrical engineering, RF systems, telecommunications, or test infrastructure support.
  • Working knowledge of power and energy distribution, wireless telecommunications, and RF signal design/processing.
  • Strong understanding of electrical theory, including high and low voltage, power, current, and resistance.
  • Proficiency with RF circuit schematics and RF design, including RF power, attenuation, filters, diplexers, antennas, and loads.
  • Understanding of RF transmission concepts, including scattering parameters and RF power-flow behavior.
  • Understanding of antenna theory and design, including physical geometry, material properties, and feed network impacts on coverage and efficiency.
  • Experience conducting RF measurements, including RF power, frequency, occupied bandwidth, and modulation assessment.
  • Familiarity with RF communication standards, modulation schemes, and communication protocols.
  • Practical knowledge of wireless digital signal behavior, system tradeoffs, and environmental effects on performance.
  • Familiarity with 3G, 4G, and 5G cellular technologies.
  • Strong written and verbal communication skills, especially in explaining technical matters clearly.
  • U.S. Citizenship required.
  • Must be able to obtain and maintain a Secret security clearance.

Desired Qualifications:

  • Professional Engineer (PE) or Fundamentals of Engineering (FE) credentials.
  • Fiber optic certifications such as CFOT, CFOS/T, CFOS/D, CFOT S/O, CFOS/FC, or CFOS/W.
  • OSHA 10/30 training or related hazard management experience.
  • Experience supporting test ranges, RF labs, field instrumentation, or military telecommunications infrastructure.
  • Experience with CIED, CUxS, EW systems, or threat-device test environments.
  • Ability to support occasional field events, limited travel, and non-standard shifts as mission needs require.

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