1

Telecom Transmission Engineer Jobs (NOW HIRING)

$85K - $100K/yr

Job Title Telecom Electrical Engineer Department Critical Facilities & Wireless Network Engineering ... Strong knowledge of power generation, transmission, and distribution * Strong understanding of ...

... cabling, and RF transmission systems over satellite, microwave, and radio. The Telecom Engineer will assess situations, solve problems, and develop solutions using their knowledge of ...

... the largest telecom customers in the world. Our company was founded in 1984 with a single fiber ... S. transmission grid is being rebuilt for a new era. Utilities are upgrading aging infrastructure ...

... the largest telecom customers in the world. Our company was founded in 1984 with a single fiber ... S. transmission grid is being rebuilt for a new era. Utilities are upgrading aging infrastructure ...

Showing results 41-60

Telecom Transmission Engineer information

See salary details

$54.5K

$112.4K

$159K

How much do telecom transmission engineer jobs pay per year?

As of Aug 18, 2026, the average yearly pay for telecom transmission engineer in the United States is $112,436.00, according to ZipRecruiter salary data. Most workers in this role earn between $92,000.00 and $124,000.00 per year, depending on experience, location, and employer.

What does a telecom transmission engineer do?

A Telecom Transmission Engineer is responsible for designing, implementing, and maintaining the infrastructure that carries voice, data, and video communications across various transmission mediums like fiber optic cables, microwave links, and satellite systems. They ensure reliable and high-quality transmission by troubleshooting network issues, optimizing performance, and upgrading equipment as technology evolves. Their work is crucial in supporting telecommunications networks that enable internet, phone, and television services.

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

To thrive as a Telecom Transmission Engineer, you need a solid understanding of telecommunications principles, network architecture, and RF or fiber optic transmission, generally supported by a degree in electrical, electronics, or telecommunications engineering. Familiarity with transmission planning tools, network management systems, and certifications such as CCNA or similar are typically required. Strong problem-solving abilities, attention to detail, and effective communication skills help you address technical issues and coordinate with multidisciplinary teams. These skills are crucial for designing, optimizing, and maintaining reliable transmission networks that support seamless communication services.

What are some typical challenges telecom transmission engineers face when working on large-scale network upgrades?

Telecom Transmission Engineers often encounter challenges such as coordinating with multiple teams to minimize downtime, integrating new technologies with legacy systems, and ensuring network reliability during the upgrade process. Managing timelines and resources while adhering to strict regulatory and safety standards is also common. Proactive communication and thorough planning are crucial for overcoming these challenges, as is staying current with evolving transmission technologies.

What is the difference between Telecom Transmission Engineer vs Network Operations Technician?

AspectTelecom Transmission EngineerNetwork Operations Technician
CredentialsBachelor's in Electrical/Telecom Engineering, certifications like CCNA or CWNAAssociate's or Bachelor's in Networking or IT, certifications like CompTIA Network+ or Cisco CCNA
Work EnvironmentDesign, install, and maintain telecom transmission systems in offices, field sites, or data centersMonitor, troubleshoot, and repair network infrastructure in data centers or network operation centers
Employer & IndustryTelecom providers, infrastructure companies, service providersTelecom companies, ISPs, data centers

The Telecom Transmission Engineer focuses on designing and maintaining transmission systems, while the Network Operations Technician handles daily network troubleshooting and repairs. Both roles require technical certifications and work within the telecom industry, but their responsibilities differ in scope and focus.

What is the role of a Telecom Transmission Engineer?

A Telecom Transmission Engineer designs, implements, and maintains telecommunications transmission systems, including fiber optics, microwave links, and satellite communications. They troubleshoot network issues, optimize signal quality, and ensure reliable data transmission, often using tools like network analyzers and adhering to industry standards and safety protocols.
More about Telecom Transmission Engineer jobs

What states have the most Telecom Transmission Engineer jobs?

States with the most job openings for Telecom Transmission Engineer jobs include:

What job categories do people searching Telecom Transmission Engineer jobs look for?

The top searched job categories for Telecom Transmission Engineer jobs are:

Infographic showing various Telecom Transmission Engineer job openings in the United States as of August 2026, with employment types broken down into 94% Full Time, 2% Part Time, and 4% Contract. Highlights an 85% Physical, 6% Hybrid, and 9% Remote job distribution, with an average salary of $112,436 per year, or $54.1 per hour.

Telecom Electrical Engineer

ATN International Inc

On-site

$85K - $100K/yr

Full-time

Re-posted 12 days ago


Job description

Job Title

Telecom Electrical Engineer

Department

Critical Facilities & Wireless Network Engineering

Location

USVI

Reports to

Director of Wireless & Critical Facilities



Grade: 22

Job Code:




Type of position:

Full-time Part-time


Non-Union Union


Hours__40 __ / week

Exempt Non-exempt


JOb Summary

Telecom Electrical Engineer designs, installs, and maintains the electrical and electronic infrastructure supporting voice, data, and video networks. The incumbent of this role will bridge electrical engineering principles with telecommunications, managing power distribution, signal routing, and equipment reliability to ensure continuous, high-speed connectivity. This role will liaison the optimization and future-proof of the electrical and communication infrastructure that drives next-generation networks.

Qualifications or Prerequisites


Duties and responsibilities include but are not limited to the following:

  • Infrastructure Design: Develop electrical schematics, power distribution plans, and structural layouts for cell towers, data centers, switching stations, and fiber optic networks.
  • Power Systems Management: Drive the installation, managing, and maintenance of critical power equipment, including DC power systems, Uninterruptible Power Supplies (UPS), all generator types, and precision air conditioning.
  • Lead battery lifecycle management — wet cell, VRLA, and lithium systems. Oversee replacement programs and procurement.
  • Power & Energy Systems: Engineer resilient power distribution systems, DC plants, UPS configurations, and backup generation. Drive the integration of renewable energy sources (solar, micro-wind, advanced battery storage) into remote cell sites.
  • Forward-Thinking R&D: Research, evaluate, and prototype emerging technologies. Spearhead initiatives in edge computing power distribution, network automation, and software-defined network (SDN) hardware alignment.
  • Network Testing: Run diagnostic tests on signal strength, latency, and bandwidth using equipment such as oscilloscopes and digital meters to minimize lag and prevent outages.
  • Compliance & Safety: Ensure all broadcasting equipment, cable layouts, and structural rigging conform to federal telecommunications and electrical safety regulations.
  • Troubleshooting & Upgrades: Identify root causes of electrical or signal faults, repair system hardware, and implement infrastructure upgrades to meet growing data demands.

Other related key functions:

  • Design and assess electrical systems for telecom infrastructure (cell sites, central offices)
  • Perform load calculations, load balancing, and rebalancing
  • Lead generator maintenance and reliability programs
  • Monitor and optimize power consumption and energy costs
  • Ensure compliance with electrical safety standards and regulatory requirements
  • Support infrastructure upgrades, expansions, and capital projects




Page Break



REQUIREMENTS, KNOWLEDGE, SKILLS AND ABILITIES

  • Experience with transformers, generators, and circuit breakers.
  • Excellent problem-solving and analytical skills.
  • Strong communication and interpersonal skills
  • Ability to interpret complex data and diagnostic tools to optimize network performance
  • Proven ability to evaluate and adopt emerging technologies, challenge conventional methodologies, and identify new opportunities for infrastructure optimization
  • Attention to detail and strong organizational skills
  • Knowledge of industry standards and regulations
  • Experience with project management and budgeting
  • Ability to conduct feasibility studies and cost-benefit analyses
  • Proficiency in technical report writing
  • Experience with system simulations and modeling
  • Ability to perform site inspections and assessments
  • Commitment to safety and reliability
  • Experience with renewable energy systems is a plus
  • Strong computer skills, including MS Office

EDUCATION REQUIREMENTS

  • Education: 3-5+ years in Electrical Engineering or other related field.
  • Associates or Bachelor's degree in Telecommunications Engineering, Electrical Engineering, or a closely related discipline


TECHNICAL REQUIREMENTS

  • Proficiency in power system analysis software
  • Strong knowledge of power generation, transmission, and distribution
  • Strong understanding of electronic schematics, fiber optics, radio systems, and electrical components
  • Medium voltage (MV) systems — cable installation, splicing & terminating (5kV–35kV)
  • Low voltage — panel work, load calculations, service entrance, distribution, conduit
  • Backup power systems: diesel/propane generators, UPS, ATS, SPD, rectifiers, DC plants
  • Battery technologies: wet cell, VRLA, LiFePO4, BMS
  • Fuel Management Systems (FMS) — commissioning, sensor repair, NOC telemetry

CERTIFICATION REQUIREMENTS

  • Professional Engineer (PE) license preferred.

TRAINING REQUIREMENTS

  • N/A

PHYSICAL REQUIREMENTS

  • Physical ability and mobility to work in an office setting
  • Walk and sit, stand, talk or hear, seeing, stoop, kneel, crouch, climb, reach, twist, and grasp
  • Occasionally lift and/or move up to 25 pounds
  • Moderate noise level
  • Traversing on foot to complete a task; Use of upper extremities to maneuver; climb heights up to 28ft on ladder if required; exposure to extreme temperatures; subject to both environmental conditions

TRAVEL REQUIREMENTS

  • Inter-Island travel
  • Off Island travel for training and certification

OTHER REQUIREMENTS

  • Valid VI Driver’s License
  • Must be willing to work flexible hours to meet project needs and be on call
  • Professional appearance and demeanor