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Electronic Communication Engineer Jobs in Arkansas

... Communications, POS, Structured Cabling Have an Associates Degree in Electronic Engineering or equivalent experience CAT 6 and fiber experience preferred Have a valid Driver's License and able to ...

Manufacturing Engineer

Fort Smith, AR · On-site

$69K - $89K/yr

PURPOSE OF THE JOB The Manufacturing Engineer is responsible for performance and continued growth ... Communicate with co-worker's face to face, by telephone, and electronic communications. * Possess ...

Laboratory Technician I

Fort Smith, AR · On-site

$18.25 - $24.25/hr

... engineering specifications, procedures and acceptable industry standards in support of senior ... Manage electronic communications and assigned tasks and task documentation. * Demonstrate an ...

Laboratory Technician I

Fort Smith, AR · On-site

$18.25 - $24.25/hr

... engineering specifications, procedures and acceptable industry standards in support of senior ... Manage electronic communications and assigned tasks and task documentation. * Demonstrate an ...

In this highly visible engineering position, you will join a team of professionals who are ... communications, consumer electronics, industrial, automotive, commercial vehicle and medical. As a ...

... communications, consumer electronics, industrial, automotive, commercial vehicle and medical ... As Principal Launch Engineer with the CSBU IO Engineering team your primary focus will be to solve ...

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Showing results 1-20

Electronic Communication Engineer information

See Arkansas salary details

$33.9K

$73.5K

$113.7K

How much do electronic communication engineer jobs pay per year?

As of Aug 30, 2026, the average yearly pay for electronic communication engineer in Arkansas is $73,509.00, according to ZipRecruiter salary data. Most workers in this role earn between $49,200.00 and $90,500.00 per year, depending on experience, location, and employer.

What is an electronic communication engineer?

Electronic Communication Engineers are professionals who design, develop, and maintain systems used for transmitting information electronically, such as radio, satellite, wireless, and fiber optic networks. They work on a wide range of technologies, from traditional telecommunication systems to modern digital communication infrastructure. Their responsibilities include ensuring reliable data transmission, optimizing network performance, and integrating new communication technologies. These engineers may also be involved in troubleshooting, testing, and upgrading existing communication systems to meet evolving industry standards.

What are the key skills and qualifications needed to thrive as an electronic communication engineer?

To thrive as an Electronic Communication Engineer, you need a solid background in electronic circuit design, signal processing, and telecommunications, usually supported by a degree in electrical or electronic engineering. Familiarity with industry-standard tools like MATLAB, simulation software (e.g., HFSS, CST), and relevant certifications such as CCNA or IEEE membership is valuable. Strong analytical thinking, problem-solving, teamwork, and effective communication skills help you excel in complex project environments. These competencies are essential for designing, implementing, and maintaining reliable communication systems in a rapidly evolving technological landscape.

What are some typical challenges electronic communication engineers face when working on large-scale network projects?

Electronic Communication Engineers often encounter challenges such as integrating new technologies with legacy systems, ensuring secure data transmission, and maintaining network reliability under high traffic. Collaborating with multidisciplinary teams—including software developers, network architects, and project managers—is common, requiring strong communication and problem-solving skills. Successfully managing these challenges not only improves technical expertise but also opens pathways to leadership roles in network design and systems engineering.

What is the difference between Electronic Communication Engineer vs Radio Frequency Engineer?

AspectElectronic Communication EngineerRadio Frequency Engineer
CredentialsBachelor's in Electrical/Electronic Engineering, certifications like CCENT or Cisco certificationsBachelor's in Electrical Engineering, certifications like RF Certification or FCC licensing
Work EnvironmentDesigning, testing, and maintaining communication systems in labs or fieldDesigning and optimizing RF systems, antennas, and wireless networks
Industry UsageTelecommunications, broadcasting, networkingWireless communications, satellite, radar systems
Common Search/ComparisonElectronic Communication EngineerRadio Frequency Engineer

Electronic Communication Engineers and Radio Frequency Engineers often work together but focus on different aspects. Electronic Communication Engineers handle overall communication systems, while Radio Frequency Engineers specialize in RF signals and wireless technologies. Both roles require similar credentials and are vital in telecommunications industries.

How much does an electronic communication engineer get paid?

The average salary for an electronic communication engineer varies by experience and location but typically ranges from $70,000 to $120,000 annually. Entry-level positions start around $60,000, while experienced engineers with specialized skills can earn over $130,000 per year.

What are popular job titles related to Electronic Communication Engineer jobs in Arkansas?

For Electronic Communication Engineer jobs in Arkansas, the most frequently searched job titles are:

What job categories do people searching Electronic Communication Engineer jobs in Arkansas look for?

The top searched job categories for Electronic Communication Engineer jobs in Arkansas are:

Infographic showing various Electronic Communication Engineer job openings in Arkansas as of August 2026, with employment types broken down into 1% As Needed, 80% Full Time, 16% Part Time, and 3% Contract. Highlights an 81% Physical, 2% Hybrid, and 17% Remote job distribution, with an average salary of $73,509 per year, or $35.3 per hour.

ELECTRONIC INTEGRATED SYSTEMS MECHANIC (Title 32)

Little Rock Air Force Base, AR • On-site

$35.61/hr

Full-time

Posted 2 days ago

New


Job description

THIS IS A NATIONAL GUARD TITLE 32 EXCEPTED SERVICE POSITION.
This National Guard position is for a ELECTRONIC INTEGRATED SYSTEMS MECHANIC (Title 32), Position Description Number D2240P01 and is part of the AR ANG 189 MAI SQ, National Guard.
NATIONAL GUARD MEMBERSHIP IS REQURED- If you are not currently a member of any military service (Branch/Status), please provide a letter stating intent to join.Qualifications:GENERAL EXPERIENCE:
Experience or training which demonstrates the applicant's knowledge to perform duties such as, install, modify, overhaul, maintain, troubleshoot, repair, align, calibrate, and rebuild multi-system avionics complexes. Ability to collect and analyze data effectively, efficiently, and accurately. Able to apply procedures and directives by reading and interpreting material. Ability to communicate clearly and effectively. Applicant must have a validated understanding of the basic principles and concepts of the occupational series and grade.
SPECIALIZED EXPERIENCE:
Experience or training demonstrating the ability to repair, overhaul, rebuild, align, and adjust complete multi-systems such as the electronics package in a highly automated aircraft where target acquisition and tracking, weapons control, aircraft attitude control, navigation, and other complex functions are performed by numerous systems which are extensively interconnected with data feedback loops. Applies comprehensive knowledge of all major units of the complete multisystem, i.e., how they function independently, how they are interfaced in the integrated subsystems, and how the subsystems interact to achieve operating specifications. Able to determine proper sequence of operations and start point in sequential operations in order to pinpoint areas of malfunction. Extensive practical knowledge of the theories and practices of electromagnetic propagation, electronic circuits, computer theory, hydraulic or pneumatic control and power systems, and many other areas covering a wide range of system applications. Broad knowledge of the interactions among a number of closely integrated complex systems. Knowledge of mathematics, including trigonometry, to calculate power relation ships, signal phasing, etc. Ability to interpret drawings for multisystem complexes such as the complete electronics package for an aircraft including numerous interconnections of signal paths both between and within individual subsystems of the multisystem complex. Ability to isolate malfunctions of complete multiple integrated systems consisting of closely interrelated fire control, bombing-navigation, flight control, countermeasures or similar systems and to determine the methods of repair where extremely complex relationships exist among numerous interconnected units and control circuits not only within the individual control systems but between them as well, requiring complete knowledge of all electronic, mechanical, and or optical systems and units. Performs on-equipment or off-equipment maintenance on one or more complete electronic integrated systems associated with the assigned aircraft, and/or maintenance on automatic flight control systems, instrument systems, inertial and radar navigation systems.Education:DUTIES CONTINUED.
3. Troubleshoots operational malfunctions and analyzes system performance utilizing aircrew debrief data, Technical Orders, schematic and wiring diagrams, engineering drawings, data analysis, common and system-specific test equipment and built in system tests. Performs on and off-equipment maintenance on systems such as automatic flight control, instruments, communication, navigation, and inertial navigation. Coordinates back shop bench check (if applicable, completes testing, repair, inspection, modification, programming, reprogramming, mating, adjusting, alignment, and analyzing of LRUs and shop replaceable units (SRUs). Uses a variety of test equipment such as automatic test equipment (ATE), oscilloscopes, frequency counters, phase-angle voltmeters, optical alignment equipment, digital pitot-static testers, programming units and special purpose test analyzers. Tests and troubleshoots solid state electronic assemblies and subassemblies such as circuit cards, modules, rate generators, electronic control amplifiers, electro-mechanical assemblies, random access memories, programmable read only memories, and various integrated circuits. Identifies faulty parts and repairs to level authorized. Reassembles unit after repair, performs alignment and makes shop checks.
4. Recommends methods to improve equipment performance, technical data, and maintenance procedures by reporting hardware and software malfunctions, initiates material deficiency reports both on equipment and in technical data, and assists in design changes as necessary. Conducts aircrew debriefing to determine the nature of system malfunctions. Documents all discrepancies and maintenance actions performed by inputting information into the electronic records information systems (i.e.: CAMS, IMDS, GO-81, REMIS). Recommends hardware and software changes. Submits change recommendations to Technical Orders. Requisitions supply assets and processes repairable assets in accordance with Standard Base Supply System requirements. Documents maintenance actions in aircraft forms and documents man-hour expenditures and maintenance actions in the maintenance computer system. Maintains Electronic Warfare (EW) (if applicable) and analysis equipment such as infrared/radar warning equipment, infrared/radar jamming equipment, chaff/flare dispensing systems, signal analysis equipment, recorders, direction finders, and special purpose test equipment. Accomplishes organizational and intermediate level modifications. Configures complex aircraft ECM equipment (if applicable) to meet critical mission requirements. Performs intricate component alignment and calibration to ensure proper system operation. Performs flight operational test, adjusts or replaces units or components as required. Conducts aircrew debriefings to analyze maintenance problems and determines the nature of required modifications.
5. May upload and download chaff/flare dispensers. This hazardous task may involve the inspection, storage and handling of explosive devices; to include flares, chaff, impulse cartridges and similar items. Conducts on-the-job training on assigned systems and related support equipment and tasks to include classroom instruction as necessary. Provides training to lower graded personnel concerned with the repair of integrated avionics systems. Provides training to newly assigned personnel regardless of grade level. Prepares for and participates in Aerospace Expeditionary Force (AEF) tasking, deployments and various inspections and exercises. Processes and accounts for due-in from maintenance (DIFM) supply assets. Ensures that material and equipment are properly stored, protected and maintained and that funds are not obligated for material or parts without proper justification.
6. May be required to perform additional duties such as structural fire-fighting, aircraft fire/crash/rescue duty, serve as a security guard, remove snow, load and handle munitions, launch/recover and service aircraft, operate heavy equipment, maintain facilities and equipment, or serve as a member of a team to cope with natural disasters or civil emergencies. Complies with safety, fire, security, and housekeeping regulations.
7. Performs other duties as assigned.Employment Type: OTHER