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Remote Verizon Rf Engineer Jobs in Ohio (NOW HIRING)

The Systems Engineer will collaborate with software engineers, RF engineers, and data scientists to ... This role is based in Dayton, Ohio with the possibility of remote work. Requirements U.S.

Remote Verizon Rf Engineer information

What is a Remote Verizon RF Engineer?

A Remote Verizon RF Engineer is a telecommunications professional who specializes in designing, optimizing, and maintaining Verizon's wireless radio frequency (RF) networks while working remotely. Their responsibilities include analyzing network performance, troubleshooting signal issues, planning new cell sites, and ensuring optimal coverage and capacity for Verizon customers. These engineers use specialized software tools to model RF propagation, assess interference, and implement solutions to improve network quality. As remote workers, they often collaborate virtually with onsite teams and use remote access tools to monitor and adjust network parameters.

What is the difference between Remote Verizon Rf Engineer vs Remote Wireless Network Engineer?

AspectRemote Verizon Rf EngineerRemote Wireless Network Engineer
CertificationsFCC, RF, or wireless certificationsCCNA, CWNA, or wireless certifications
Work EnvironmentTelecom, network infrastructure, field and officeNetwork design, troubleshooting, and deployment
Industry UsageTelecommunications, service providersTelecom, enterprise, and service providers

The Remote Verizon Rf Engineer and Remote Wireless Network Engineer roles share similar certifications and work environments, focusing on wireless communication systems. While the Verizon RF Engineer specializes in Verizon's network infrastructure, the Wireless Network Engineer has a broader scope across various providers and enterprise networks. Both roles require strong technical skills in wireless technology and often involve remote work, making them closely related but distinct in their specific focus areas.

What are some common challenges faced by Remote Verizon RF Engineers, and how can they be addressed?

Remote Verizon RF Engineers often face challenges such as troubleshooting network issues without on-site access, coordinating with cross-functional teams across different time zones, and ensuring reliable communication for timely project updates. To address these challenges, engineers typically rely on robust remote monitoring tools, clear documentation, and regular virtual meetings to maintain team alignment. Building strong relationships with local field technicians and leveraging remote diagnostic software also greatly enhance problem-solving efficiency.

What are the key skills and qualifications needed to thrive as a Remote Verizon RF Engineer, and why are they important?

To thrive as a Remote Verizon RF Engineer, you generally need a degree in electrical engineering or a related field, along with strong knowledge of RF principles, cellular network design, and optimization. Experience with tools such as Atoll, TEMS, and Spectrum Analyzers, as well as certifications like CCNA or relevant OEM certifications, are highly valued. Excellent problem-solving abilities, communication skills, and self-motivation are important soft skills for collaborating remotely and addressing technical challenges. These competencies are crucial to ensure reliable network performance, efficient troubleshooting, and seamless team coordination in a remote work environment.
What are the most commonly searched types of Verizon Rf Engineer jobs in Ohio? The most popular types of Verizon Rf Engineer jobs in Ohio are:
What cities in Ohio are hiring for Remote Verizon Rf Engineer jobs? Cities in Ohio with the most Remote Verizon Rf Engineer job openings:
Infographic showing various Remote Verizon Rf Engineer job openings in Ohio as of June 2026, with employment types broken down into 5% As Needed, 82% Full Time, 10% Part Time, and 3% Contract. Highlights an 100% Remote job distribution.

Systems Engineer

MMB Solutions LLC

Dayton, OH • On-site, Remote

Full-time

Posted 17 days ago


Job description

MMB Solutions is seeking a mid-level Systems Engineer to support the design, development, and operation of advanced wireless experimentation infrastructure for the Open 6G Testbed program. The engineer will work on next-generation wireless research involving 5G/6G telemetry architectures, AI-driven network experimentation, spectrum analytics, and integrated sensing and communications (ISAC).

This position will support development of a data architecture and machine learning experimentation platform used to collect, enrich, analyze, and operationalize wireless telemetry data from advanced radio systems operating in research environments.

The Systems Engineer will collaborate with software engineers, RF engineers, and data scientists to build scalable telemetry pipelines, research data infrastructure, and AI-enabled wireless experimentation platforms.

This role is based in Dayton, Ohio with the possibility of remote work.  

Requirements

U.S. Citizenship

Bachelors' Degree in one of the following:

  • Electrical Engeering
  • Computer Science
  • Systems Engineering
  • Computer Engineering
  • Wireless Communications

Key Responsibilities

Wireless Telemetry Architecture

Design and implement systems that collect and process telemetry data from advanced wireless networks and sensing infrastructure.

Responsibilities include:

  • Designing telemetry collection architectures for 5G and emerging 6G network environments
  • Integrating telemetry from multiple wireless interfaces including:
    • O-RAN E2 interfaces
    • F1 interfaces
    • Core network signaling (N1/N2/N3)
    • RRC signaling and RAN performance metrics
  • Supporting ingestion of telemetry sources such as:
    • User equipment activity
    • Spectrum observations
    • Network performance counters
  • Developing telemetry schemas and system documentation for research datasets.

Wireless Research Data Infrastructure

Support the development of a centralized wireless research data lake used to store and analyze large volumes of telemetry and experimentation data.

Responsibilities include:

  • Designing and supporting scalable data ingestion pipelines
  • Supporting schema enforcement and structured dataset management
  • Developing indexing and query capabilities for telemetry datasets
  • Integrating telemetry sources into research analytics environments
  • Supporting data lifecycle management for wireless experimentation datasets.

Data Enrichment and Machine Learning Integration

Develop and support automated data enrichment pipelines to convert raw telemetry into AI-ready wireless datasets.

Responsibilities include:

  • Implementing automated tagging and labeling pipelines
  • Integrating enrichment sources including:
    • Spectrum monitoring systems
    • Environmental sensors
    • Geospatial positioning systems
    • Experiment scenario metadata
  • Supporting machine learning feature extraction and dataset generation.

Wireless Experimentation Support

Assist in the design and execution of wireless experimentation events within the Open 6G Testbed.

Example experiment areas include:

  • Wireless interference injection scenarios
  • Spectrum sharing experiments
  • Rogue handset detection scenarios
  • Integrated sensing and communications (ISAC) experiments

Responsibilities include:

  • Experiment planning and system integration
  • Dataset generation and collection
  • Experiment documentation and reporting.

AI Model Deployment and Orchestration

Support deployment of an AI model lifecycle management framework integrated with wireless telemetry pipelines.

Responsibilities include:

  • Supporting model versioning and lifecycle management
  • Integrating machine learning models with wireless telemetry systems
  • Deploying distributed inference capabilities across network infrastructure

Supporting AI experimentation using structured wireless datasets.