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Network Reliability Engineer Jobs in Michigan (NOW HIRING)

Principal Network Engineer

Grand Rapids, MI · On-site

$136K - $205K/yr

... system reliability across development and production environments. Guide early-stage solution ... Network Engineering, Electrical Engineering, or a related discipline; advanced technical ...

Principal Network Engineer

Grand Rapids, MI · On-site

$136K - $205K/yr

... system reliability across development and production environments. Guide early-stage solution ... Network Engineering, Electrical Engineering, or a related discipline; advanced technical ...

Senior Platform Engineer

Ann Arbor, MI · On-site

$102K - $140K/yr

Qualifications * 5+ years in Platform Engineering / SRE / DevOps * Strong Azure expertise (AKS, networking, App Gateway / Front Door) * Deep Kubernetes experience * Hands-on Terraform (IaC ...

Principal Network Engineer

Grand Rapids, MI · On-site

$136K - $205K/yr

... reliability across development and production environments. • Guide early-stage solution ... Network Engineering, Electrical Engineering, or a related discipline; advanced technical ...

Experience with Kubernetes and infrastructure as code in partnership with platform/SRE teams ... work - networking, process management, permissions, and performance. Google Cloud Platform - The ...

Showing results 41-60

Network Reliability Engineer information

See Michigan salary details

$53.2K

$102.8K

$122.9K

How much do network reliability engineer jobs pay per year?

As of Aug 6, 2026, the average yearly pay for network reliability engineer in Michigan is $102,824.00, according to ZipRecruiter salary data. Most workers in this role earn between $89,300.00 and $112,400.00 per year, depending on experience, location, and employer.

What is a network reliability engineer?

A Network Reliability Engineer (NRE) is an IT professional responsible for ensuring the reliability, performance, and scalability of network systems. They combine skills in networking, software engineering, and automation to proactively detect and resolve potential network issues before they affect users. NREs often design and implement monitoring tools, automate network management tasks, and work to improve the overall stability of network infrastructure. Their goal is to minimize downtime and ensure seamless connectivity across an organization’s network.

What is the difference between Network Reliability Engineer vs Network Operations Center (NOC) Technician?

AspectNetwork Reliability EngineerNetwork Operations Center (NOC) Technician
CertificationsCCNA, CCNP, Network+CCNA, Network+
Work EnvironmentDesign, analyze, and improve network infrastructureMonitor, troubleshoot, and maintain networks in real-time
Employer & Industry UsageTelecom, large enterprises, cloud providersISPs, data centers, enterprise networks
Common Search & ComparisonFocus on network reliability and designFocus on network monitoring and incident response

The main difference is that Network Reliability Engineers focus on designing and improving network systems to ensure long-term reliability, while NOC Technicians monitor and troubleshoot networks in real-time to resolve issues quickly. Both roles require relevant certifications and are essential in maintaining network performance, but they serve different functions within network management.

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

To thrive as a Network Reliability Engineer, you need a strong background in computer networking, network protocols, troubleshooting, and often a degree in computer science or a related field. Familiarity with tools like Wireshark, Nagios, Cisco IOS, and certifications such as CCNA or CCNP are commonly required. Analytical thinking, proactive problem-solving, and effective communication are standout soft skills in this role. These skills are crucial to maintaining reliable network operations, minimizing downtime, and ensuring seamless communication across organizational systems.

What are some common challenges faced by network reliability engineers, and how are they typically addressed?

Network Reliability Engineers often encounter challenges such as diagnosing intermittent connectivity issues, managing network upgrades with minimal downtime, and maintaining high availability during peak traffic. These are typically addressed by leveraging robust monitoring tools, implementing automation for routine tasks, and collaborating closely with software engineers, network administrators, and incident response teams. Staying current with evolving network technologies and best practices is essential for effectively identifying and resolving problems before they impact users.
What are popular job titles related to Network Reliability Engineer jobs in Michigan? For Network Reliability Engineer jobs in Michigan, the most frequently searched job titles are:
What job categories do people searching Network Reliability Engineer jobs in Michigan look for? The top searched job categories for Network Reliability Engineer jobs in Michigan are:
What cities in Michigan are hiring for Network Reliability Engineer jobs? Cities in Michigan with the most Network Reliability Engineer job openings:

Principal Network Engineer

Kiongroup

Grand Rapids, MI • On-site

$136K - $205K/yr

Full-time

Re-posted 3 days ago


Job description

What We Offer:
Career Development
Competitive Compensation and Benefits
Pay Transparency
Global Opportunities
Learn More Here: https://www.dematic.com/en-us/about/careers/what-we-offer/
Dematic provides equal employment opportunities to all employees and applicants for employment and prohibits discrimination and harassment of any type without regard to race, color, religion, age, sex, national origin, disability status, genetics, protected veteran status, sexual orientation, gender identity or expression, or any other characteristic protected by federal, state or local laws.
This policy applies to all terms and conditions of employment, including recruiting, hiring, placement, promotion, termination, layoff, recall, transfer, leaves of absence, compensation and training.
The base pay range for this role is estimated to be $136,800.00 - $205,200.00 at the time of posting. Final compensation will be determined by various factors such as work location, education, experience, knowledge, and skills.We offer:

Lead the design, specification, and governance of network architectures supporting SCADA, PLC, and industrial automation systems across enterprise environments.

Establish and standardize network segmentation strategies aligned to OT cybersecurity frameworks and business risk models.

o Define and influence cybersecurity architecture requirements, incorporating industry best practices (e.g., ISA/IEC 62443, zero-trust principles).

o Review, approve, and govern network design artifacts, ensuring technical accuracy, scalability, and compliance with enterprise standards.

oProvide strategic technical leadership and oversight for Operational Technology (OT) network architecture, guiding cross-functional engineering and project teams toward aligned, standardized solutions.

Architect and oversee network configurations, including physical connectivity, industrial communication protocols, IP schema design, VLAN strategies, and firewall policy frameworks across complex environments.

Drive the design and evolution of secure, resilient OT network architectures, ensuring high availability, performance, and compliance with cybersecurity and operational requirements.

Lead root-cause analysis and resolution of complex network and infrastructure issues, establishing best practices and improving system reliability across development and production environments.

Guide early-stage solution development by reviewing system designs, RFQs, and project requirements, ensuring alignment with enterprise architecture and long-term scalability.

Serve as a thought leader by continuously evaluating emerging technologies, industry standards, and best practices, and translating them into actionable strategies, standards, and roadmaps for the organization.

Tasks and Qualifications:

What We Are Looking For:
Qualifications & Experience

Bachelor's or advanced degree in Information Technology, Network Engineering, Electrical Engineering, or a related discipline; advanced technical certifications or graduate-level education preferred.
Deep expertise in industrial plant-floor network architectures, with authoritative understanding of IT vs. OT convergence and clear segmentation strategies.
Proven leadership in designing, standardizing, and scaling industrial automation systems and enterprise-wide architectures.
Advanced mastery of networking principles, including complex routing, switching, and large-scale VLAN design across distributed manufacturing environments.
Recognized subject matter expert in industrial cybersecurity, including firewall strategy, zero-trust concepts, and defense-in-depth for OT networks.
Extensive experience architecting and governing Industrial DMZ (IDMZ) frameworks aligned to industry standards (e.g., ISA/IEC 62443).
Demonstrated ability to lead integration of IoT/IIoT technologies within industrial environments, ensuring secure, scalable connectivity.
Expert-level knowledge of industrial communication protocols and architectures (e.g., OPC, MQTT), with experience driving standardization and interoperability.
Industry-recognized certifications (e.g., Cisco, Hirschmann/Belden, or equivalent) with preference for advanced or specialized industrial networking and cybersecurity credentials.
Core Competencies
Demonstrated expertise in diagnosing, leading, and resolving highly complex technical challenges within dynamic, large-scale industrial environments, often setting direction for others.
Exceptional communication skills, with the ability to influence and align both technical and executive stakeholders, translating complex concepts into clear business and operational impact.
Proven capability to lead comprehensive network assessments and audits, establishing standards and providing strategic recommendations on architecture, topology, cabling, and infrastructure design.
Collaborative technical leader who mentors engineers, drives cross-functional alignment, and enables successful execution of enterprise-wide initiatives.
Strong track record of defining, presenting, and institutionalizing network standards, governance models, and best practices across diverse organizational teams.
Additional Requirements
Willingness to travel up to 25% and work additional hours as needed to support project and business demands.