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Telecommunications Engineer Jobs in Oregon (NOW HIRING)

Telecommunications Engineer Location: Portland, Oregon PROJECT OVERVIEW: Our client is conducting a phased telecommunications network modernization and records validation effort. Phase 1 will focus ...

General Purpose Design, test and integrate telecommunications and network communications systems in support of reliable electrical system operations. Responsibilities include provisioning and ...

Work with field personnel, operations, engineering, cybersecurity, telecommunications, and IT teams to deliver projects and resolve technical issues. * Travel to substations and field locations to ...

Engineering degree desired but not required * Must be a US citizen and be able to pass a DOE security background check. Preferred Qualifications: * Experience with designing inside plant and outside ...

RCDD Telecom Design Engineer

Portland, OR · On-site

$116K - $210K/yr

Engineering degree desired but not required * Must be a US citizen and be able to pass a DOE security background check. Preferred Qualifications: * Experience with designing inside plant and outside ...

As a casual 100% remote position with 80% travel- Telecommunications Electronics/Network Technician w / Secret Clearance AND Sec+ AND CCNA certifications, you will provide services related to the ...

As a casual 100% remote position with 80% travel- Telecommunications Electronics/Network Technician w / Secret Clearance AND Sec+ AND CCNA certifications, you will provide services related to the ...

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Telecommunications Engineer information

See Oregon salary details

$25

$51

$76

How much do telecommunications engineer jobs pay per hour?

As of Aug 8, 2026, the average hourly pay for telecommunications engineer in Oregon is $51.19, according to ZipRecruiter salary data. Most workers in this role earn between $40.43 and $62.26 per hour, depending on experience, location, and employer.

What jobs can a telecommunications engineer do?

A telecommunications engineer can work in designing, installing, and maintaining communication systems such as telephone networks, internet infrastructure, wireless networks, and satellite communications. They often work in roles like network engineer, systems analyst, field technician, or project manager, utilizing tools like network analyzers and requiring certifications such as Cisco or CompTIA. Their work environment includes telecom companies, internet service providers, and corporate IT departments.

What are some common challenges telecommunications engineers face when working on large-scale network deployments?

Telecommunications Engineers often encounter challenges such as integrating new technologies with legacy systems, managing tight project timelines, and ensuring network reliability during upgrades or expansions. Coordinating with cross-functional teams—including IT, project managers, and vendors—can be complex, especially when aligning on technical standards and deployment schedules. Additionally, staying updated with rapid advancements in telecommunications technologies requires continuous learning and adaptation.

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

To thrive as a Telecommunications Engineer, you need a solid understanding of network infrastructure, signal processing, and telecommunications protocols, often supported by a degree in electrical engineering or a related field. Familiarity with tools such as network analyzers, protocol testers, and certifications like Cisco CCNA or CompTIA Network+ is typically required. Analytical thinking, problem-solving, and effective communication are crucial soft skills in this role. These skills ensure the reliable design, implementation, and maintenance of communication systems vital to organizational connectivity.

What is a telecommunications engineer?

Telecommunications Engineers are professionals who design, install, maintain, and troubleshoot communication systems, such as telephone networks, internet infrastructure, and wireless networks. They work with various technologies, including fiber optics, satellites, and data transmission systems, to ensure reliable and efficient communication. These engineers often collaborate with other IT and network specialists to implement new solutions and upgrade existing networks.

What is the difference between Telecommunications Engineer vs Network Engineer?

AspectTelecommunications EngineerNetwork Engineer
CredentialsBachelor's in Telecommunications, Electronics, or Electrical Engineering; certifications like CCNA, CompTIA Network+Bachelor's in Computer Science, Networking, or related; certifications like CCNA, Cisco Certified Network Professional (CCNP)
Work EnvironmentDesigning, installing, and maintaining telecom systems, including fiber optics, satellite, and wireless networksDesigning, implementing, and managing computer networks, including LANs, WANs, and data centers
Industry UsageTelecom providers, satellite companies, wireless carriersIT firms, large corporations, data centers

Telecommunications Engineers focus on designing and maintaining telecom infrastructure like fiber optics and satellite systems, while Network Engineers primarily manage computer networks and data communication systems. Both roles require similar certifications and often work in overlapping environments, but their specific technical focus differs.

What does a telecommunications engineer do?

A telecommunications engineer configures or designs voice, data, and video communications systems. Your responsibilities in this career include working to install or maintain telephones, networks, telecom equipment, telephony elements, voicemail systems, or conferencing systems. Other duties include evaluating and reviewing requests from managers, technicians, and engineers for system modifications, estimating the costs for components or system operation and implementation. You are also in charge of supervising telecommunications equipment maintenance, preparing performance and system activity reports, evaluating and testing software and hardware to determine reliability, compatibility, and efficiency with existing systems, and maintaining, implementing, and developing telecommunications disaster recovery plans so that there are no interruptions to the business.

What are the most commonly searched types of Telecommunications Engineer jobs in Oregon? The most popular types of Telecommunications Engineer jobs in Oregon are:
What are popular job titles related to Telecommunications Engineer jobs in Oregon? For Telecommunications Engineer jobs in Oregon, the most frequently searched job titles are:
What job categories do people searching Telecommunications Engineer jobs in Oregon look for? The top searched job categories for Telecommunications Engineer jobs in Oregon are:
What cities in Oregon are hiring for Telecommunications Engineer jobs? Cities in Oregon with the most Telecommunications Engineer job openings:
Infographic showing various Telecommunications Engineer job openings in Oregon as of July 2026, with employment types broken down into 73% Full Time, 18% Part Time, and 9% Contract. Highlights an 100% In-person job distribution, with an average salary of $106,470 per year, or $51.2 per hour.

Telecommunications Engineer

Vailexa

Portland, OR

Full-time

Posted 12 days ago


Job description

Build More Than Just a Career. Build Your Future.

At Vailexa, we're not just hiring — we're building thinkers, creators, and future leaders.

We believe in giving people the space to grow, the freedom to think, and the opportunity to create real impact from day one. If you're someone who wants to learn fast, take ownership, and grow beyond limits, you'll feel right at home here.

Job Title: Telecommunications Engineer

Location: Portland, Oregon

PROJECT OVERVIEW: Our client is conducting a phased telecommunications network modernization and records validation effort. Phase 1 will focus on structured field and records assessments across regional facilities to validate legacy transport services, reconcile circuit records, identify gaps, and document findings for client review before downstream planning begins. Site visits may be required to confirm service status, validate records against physical infrastructure, and support follow-up planning. Findings will be compiled, reviewed with the client for verification, and documented in relevant network management and operational support systems.

The environment includes legacy optical transport platforms, with direct SONET experience strongly preferred. This is an engineer-level engagement requiring independent analysis, documentation judgment, and the ability to work directly with client operations staff at each site — it is not a break-fix or technician position.

CORE RESPONSIBILITIES

  • Conduct structured, site-by-site field visits across regional client facilities to assess legacy transport equipment and supporting infrastructure
  • Collect, reconcile, and validate circuit records from NMS platforms, OSS systems, and legacy/paper records against physical equipment and platform configurations
  • Trace and document circuits on a circuit-by-circuit basis: origination, termination, intermediate nodes, protection paths, and current service status
  • Identify gaps, discrepancies, and undocumented circuits between existing records and the physical network state
  • Build a comprehensive, site-by-site inventory of SONET platforms, shelf configurations, line cards, protection schemes, and optical spans
  • Produce clear, structured findings documentation for client review and sign-off at each phase milestone
  • Facilitate working sessions with client network operations and engineering staff to verify findings and resolve discrepancies
  • Maintain version-controlled, audit-ready records throughout the engagement REQUIRED QUALIFICATIONS
  • 7+ years of hands-on experience with SONET/SDH transport networks at an engineer level — design, analysis, circuit engineering, and records management (not solely installation or maintenance)
  • Deep working knowledge of SONET multiplexing: DS1, DS3, OC-3, OC-12, OC-48, OC-192 and associated TDM circuit types
  • Strong understanding of SONET protection architectures: UPSR, BLSR/MS-SPRing, and APS (1+1, 1:N)
  • Proficiency working with SONET Network Management Systems (NMS) for circuit tracing, alarm analysis, and inventory extraction
  • Demonstrated ability to read and interpret circuit records, network diagrams, cross-connect maps, and as-built documentation
  • Experience with fiber optic infrastructure: span documentation, OTDR interpretation, and optical power budgets
  • Ability to work independently in field-based infrastructure environments
  • Strong technical writing and documentation skills — this role produces client-facing deliverables
  • Valid driver's license and ability to travel to regional client sites as needed PREFERRED QUALIFICATIONSLegacy Optical Transport Platform Experience (Strongly Preferred):
  • Hands-on experience with legacy SONET optical transport platforms, including OC-level transport systems or equivalent
  • Familiarity with vendor-specific network management systems for circuit provisioning, tracing, and inventory validation
  • Experience reading and interpreting platform-specific cross-connect and tributary configurations
  • Understanding of shelf architecture, slot assignments, and card types common in large-scale transport environments

Industry Experience:

  • Prior experience in telecom, energy, infrastructure, or other large-scale network environments
  • Familiarity with operational communications circuits in large-scale infrastructure environments
  • Awareness of compliance-sensitive infrastructure environments and the importance of accurate transport network records
  • Experience with OSP (outside plant) fiber route documentation and GIS-based network records systems

Additional Technical:

  • Experience with other SONET platforms: Ciena/Nortel heritage, Cisco ONS/NCS 15xxx, Tellabs, or ECI
  • Familiarity with Ethernet over SONET / GFP encapsulation and hybrid TDM/packet transport
  • Background in telecom records management or OSS data quality improvement projects.
  • This role requires someone who can interpret, analyze, and make engineering judgments — not just follow procedures.

The right candidate will:

  • Recognize when a circuit record is inconsistent with physical reality and know how to investigate and resolve the discrepancy
  • Understand why a protection or resiliency scheme is configured a certain way and flag when it appears incorrect or suboptimal
  • Produce documentation that is immediately usable by the client's engineering team for future planning
  • Communicate findings clearly to both technical and operational stakeholders
  • Exercise independent judgment on prioritization when sites present complex or undocumented configurations

Ready to take the next step?

If you're excited about this role and ready to grow with a team that values ambition, ideas, and impact — we'd love to hear from you.