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Remote Reliability Engineer Jobs in Houston, TX (NOW HIRING)

Principal Engineer

Houston, TX · Remote

$50K - $60K/yr

You'll partner closely with senior leaders to define the long-term engineering vision and lead initiatives that strengthen system performance, scalability, and reliability. If you're an experienced ...

You'll partner closely with senior leaders to define the long-term engineering vision and lead initiatives that strengthen system performance, scalability, and reliability. If you're an experienced ...

.NET Developer - Remote

Houston, TX · Remote

$60 - $110/hr

NET Developer Role Type: Contract Location: Remote About the Role We are looking for skilled ... Optimize application performance and reliability. * Document technical solutions and collaborate ...

New

Remote Principal Agentic Software Engineer

Houston, TX · On-site +1

$128K - $172K/yr

... SRE practices. * A record of mentoring senior engineers and raising the bar through frameworks and standards, and of explaining complex AI and architectural ideas simply to executives and non ...

Remote Principal Agentic Software Engineer

Houston, TX · On-site +1

$128K - $172K/yr

... SRE practices. * A record of mentoring senior engineers and raising the bar through frameworks and standards, and of explaining complex AI and architectural ideas simply to executives and non ...

Senior Software Engineer (Remote)

Houston, TX · Remote

$117K - $154K/yr

This is a remote role anywhere in the USA. Meet the Team Our software engineering team develops ... Review and test code to identify problems and improve scalability, speed, and reliability.

Support programs and projects which contribute to the profitability, reliability, environmental and ... The Company's Global Remote Work Policy allows eligible employees to request to work remotely up to ...

... Engineer for Honeywell International, Inc. (Houston, TX) RESPONSIBILITES: * Deliver remote support ... Engineering occupation could come under control system engineer, Reliability engr or Automation ...

... Engineer for Honeywell International, Inc. (Houston, TX) RESPONSIBILITES: * Deliver remote support ... Engineering occupation could come under control system engineer, Reliability engr or Automation ...

Backend C#/. - Remote

Houston, TX · Remote

$60 - $110/hr

NET Developer Role Type: Contract Location: Remote About the Role We are looking for skilled ... Optimize application performance and reliability. * Document technical solutions and collaborate ...

New

Showing results 21-40

Remote Reliability Engineer information

See Houston, TX salary details

$58.3K

$112.7K

$134.7K

How much do remote reliability engineer jobs pay per year?

As of Sep 15, 2026, the average yearly pay for remote reliability engineer in Houston, TX is $112,661.00, according to ZipRecruiter salary data. Most workers in this role earn between $97,900.00 and $123,200.00 per year, depending on experience, location, and employer.

What is a remote reliability engineer?

A Remote Reliability Engineer is a professional who works from a remote location to ensure that systems, applications, or infrastructure are reliable, available, and performing well. Their responsibilities typically include monitoring system health, diagnosing issues, implementing preventative measures, and collaborating with teams to improve system reliability. They often use tools for automation, incident response, and performance monitoring, all while working offsite. This role is critical in minimizing downtime and ensuring a smooth user experience, especially for companies with complex technical environments. Remote Reliability Engineers must have strong problem-solving skills and be proficient in cloud technologies, automation, and incident management.

What are the key skills and qualifications needed to thrive as a remote reliability engineer?

To thrive as a Remote Reliability Engineer, you need a strong background in systems engineering, software development, and infrastructure management, often supported by a degree in computer science or a related field. Proficiency with cloud platforms (such as AWS, Azure, or GCP), monitoring tools (like Prometheus, Grafana), and relevant certifications (e.g., AWS Certified DevOps Engineer) is highly valuable. Excellent problem-solving, communication, and collaboration skills are crucial for working effectively across distributed teams and responding to incidents. These abilities ensure system reliability, quick incident resolution, and seamless remote teamwork, which are vital for maintaining high service uptime and user satisfaction.

How do remote reliability engineers typically collaborate with on-site teams to address urgent technical issues?

Remote Reliability Engineers often utilize a combination of video conferencing, instant messaging, and collaborative monitoring tools to stay closely connected with on-site teams. When urgent technical issues arise, they participate in real-time troubleshooting sessions, analyze system logs remotely, and may guide on-site staff through step-by-step resolution procedures. Building strong communication channels and regular check-ins are essential to ensure swift and effective collaboration, even across different time zones. This structure allows Remote Reliability Engineers to contribute significantly to system uptime while working from a distance.

What is the difference between Remote Reliability Engineer vs Remote Site Reliability Engineer?

AspectRemote Reliability EngineerRemote Site Reliability Engineer
CredentialsTypically requires certifications like AWS Certified Solutions Architect, Linux Foundation certificationsSimilar credentials, often with additional focus on site-specific tools and monitoring
Work EnvironmentPrimarily remote, focusing on cloud infrastructure and system reliabilityRemote with some on-site responsibilities, focusing on infrastructure and operational stability
Industry UsageUsed across tech, cloud providers, SaaS companiesCommon in data centers, cloud providers, and large enterprise IT
Search & Comparison IntentOften compared due to overlapping roles in system reliability and cloud infrastructureCompared for on-site vs remote operational responsibilities

The main difference is that Remote Reliability Engineers focus on cloud and system reliability remotely, while Remote Site Reliability Engineers may have some on-site duties related to infrastructure. Both roles require similar skills and certifications but differ in their work environment and specific responsibilities.

What are the most commonly searched types of Reliability Engineer jobs in Houston, TX?

The most popular types of Reliability Engineer jobs in Houston, TX are:

What are popular job titles related to Remote Reliability Engineer jobs in Houston, TX?

For Remote Reliability Engineer jobs in Houston, TX, the most frequently searched job titles are:

What job categories do people searching Remote Reliability Engineer jobs in Houston, TX look for?

The top searched job categories for Remote Reliability Engineer jobs in Houston, TX are:

What cities near Houston, TX are hiring for Remote Reliability Engineer jobs?

Cities near Houston, TX with the most Remote Reliability Engineer job openings:

Infographic showing various Remote Reliability Engineer job openings in Houston, TX as of September 2026, with employment types broken down into 100% Full Time. Highlights an 100% Remote job distribution, with an average salary of $112,661 per year, or $54.2 per hour.

System Engineer - Solution Integrations

Houston, TX • Remote

National Oilwell Varco
Oil and Gas Extraction • 10K+ employees

Full-time

Re-posted 14 days ago


NOV rating

8.1

Company rating: 8.1 out of 10

Based on 72 frontline employees who took The Breakroom Quiz


Job description

Responsibilities 

Reference Architecture and Technical Baseline 

  • Own technical readiness across DaaS and partner application integrations. 
  • Define repeatable architecture patterns for industrial data services across edge systems, control system data, cloud services, partner platforms, customer endpoints, and platform services. 
  • Create reference architectures, integration diagrams, data flow views, deployment patterns, validation plans, and technical readiness checklists. 
  • Define the technical baseline for secure data acquisition, buffering, monitoring, cloud processing, customer delivery, and steady state support. 
  • Identify integration gaps, network constraints, cybersecurity requirements, vendor dependencies, and operational risks before PoCs or pilots begin. 

Cybersecurity and OT Readiness 

  • Create reusable cybersecurity and OT evidence packages for customer IT and OT reviews. 
  • Maintain standard topology diagrams, data flow diagrams, firewall rule templates, DMZ, VLAN, VPN, and routing patterns, identity and access assumptions, logging evidence, and remote access patterns. 
  • Support customer cybersecurity, MoC, and OT approval processes with clear technical documentation and repeatable review artifacts. 
  • Ensure integration patterns account for segmentation, auditability, hardening, patching, remote access, change control, and customer approval expectations. 

Data Standards and Assurance 

  • Define standards for source to target data assurance, data mapping, customer naming conventions, unit handling, latency, completeness, frequency, validity, and source versus target comparison. 
  • Define how data quality signals are monitored, surfaced, alerted, and acted on across internal teams and customer facing workflows. 
  • Support standards for historical backfill, replay, corrected history workflows, local versus cloud historian boundaries, and customer delivery validation. 
  • Create reusable templates for customer standards management, data mapping, endpoint setup, and delivery validation. 

Pre PoC Validation and Technical Gates 

  • Define pre PoC validation gates for customer and partner opportunities. 
  • Validate that required systems, data sources, endpoints, access paths, network assumptions, and support expectations are understood before delivery begins. 
  • Create repeatable technical validation plans for PoCs, pilots, partner integrations, and production deployments. 
  • Develop repeatable validation procedures, troubleshooting methodologies, and diagnostic playbooks that improve deployment success, reduce integration risk, and accelerate issue resolution. 
  • Provide clear go or no go input when technical readiness is incomplete or customer commitments create delivery risk. 

Vendor and Partner Coordination 

  • Work with vendors and partner engineering teams to define integration responsibilities, data handoffs, technical boundaries, support expectations, and escalation paths. 
  • Define how partner platforms fit into the NOV service wrapper for industrial data acquisition, data delivery, video, file workflows, operational communications, analytics, and customer endpoints. 
  • Translate partner capabilities and constraints into practical implementation plans for NOV teams and customer facing stakeholders. 
  • Track vendor readiness risks and make unresolved dependencies visible early. 
  • Help turn recurring partner integration patterns into reusable templates and documented standards. 

Edge to Cloud Flow and Customer Delivery 

  • Support architecture and readiness for data movement from edge environments into cloud services, platform APIs, customer applications, partner systems, or external delivery endpoints. 
  • Validate end to end data flows, connectivity, access, authentication, security, monitoring, and operational handoff requirements across edge systems, networks, cloud services, APIs, partner platforms, and customer environments. 
  • Lead technical investigations and troubleshooting activities across edge, network, cloud, partner, and customer environments to identify and resolve integration, connectivity, deployment, and data quality issues before and during customer delivery. 
  • Partner with product, engineering, operations, implementation, support, SRE, cybersecurity, and customer facing teams to make deployments repeatable and supportable. 
  • Reduce one off delivery by documenting common integration patterns, technical assumptions, and deployment requirements. 
  • Drive technical improvements that reduce dual stack complexity, manual mapping, custom connector work, and one off deployment risk. 

Technical Documentation and Governance 

  • Maintain integration documentation, readiness checklists, technical decision records, and reusable implementation templates. 
  • Define standards for what technical evidence is required before customer or partner execution begins. 
  • Turn lessons from PoCs, pilots, and partner deployments into improved architecture patterns, validation gates, and implementation guidance. 
  • Maintain reusable artifacts for customer reviews, internal readiness checks, partner onboarding, and steady state support. 

Required Education 

  • Bachelor's degree in Engineering, Computer Science, Information Systems, Industrial Technology, Data Systems, or related field. 

Required Experience 

  • 5+ years of experience in systems engineering, integration engineering, solution engineering, technical architecture, industrial digital systems, or customer facing technical delivery. 
  • Experience designing or validating integrations across edge systems, cloud services, APIs, data flows, partner systems, and customer delivery endpoints. 
  • Experience with industrial data systems, operational data flows, OT and IT integration, industrial edge and cloud platforms, or rig and site data environments. 
  • Experience working with vendors, partners, engineering teams, implementation teams, support teams, and customer facing stakeholders. 
  • Strong technical fluency across edge to cloud architectures, networking, APIs, authentication, observability, cybersecurity, and operational data systems, including experience troubleshooting connectivity, security, data quality, and integration issues in distributed OT and IT environments. 
  • Working knowledge of networking and OT and IT concepts such as TCP/IP, VLANs, routing, firewall rules, VPNs, DMZ design, segmentation, and secure remote access. 
  • Working knowledge of industrial data protocols and interfaces such as WITSML, ETP, WITS, OPC UA, Modbus, MQTT, REST APIs, customer historians, or industrial data platforms. 
  • Experience with data quality concepts such as latency, completeness, frequency, validity, source versus target comparison, mapping, units of measure, and real time data workflows. 
  • Strong Linux administration and command line troubleshooting experience. 
  • Experience using API and network diagnostic tools such as Postman, curl, Wireshark, tcpdump, and related troubleshooting utilities. 
  • Demonstrated ability to analyze logs, validate end to end data flows, isolate root causes, and drive technical issues to resolution across complex distributed systems. 
  • Experience identifying technical readiness risks before customer PoCs, pilots, or deployments begin. 
  • Ability to create reference architectures, data flow diagrams, validation plans, integration checklists, and technical decision records. 
  • Strong understanding of network, cybersecurity, access, data quality, auditability, service operations, and supportability considerations in integration heavy environments. 
  • Ability to communicate technical tradeoffs clearly to technical teams, commercial stakeholders, partners, and customer facing teams. 
  • Strong bias toward repeatable patterns, documentation, validation, and reducing one off integration work. 
  • Experience leveraging AI assisted tools to accelerate troubleshooting, architecture reviews, integration design, documentation, and solution validation while applying sound engineering judgment to validate results. 

What NOV employees say

Pay

Benefits

Hours and flexibility

Workplace

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About NOV

Sourced by ZipRecruiter

Throughout every region in the world and across every area of drilling and production, our family of companies has provided the technical expertise, advanced equipment and operational support necessary for success. We have the people, capabilities and vision to serve the needs of a challenging and evolving industry. One the world can’t live without. We are a global family of thousands of individuals, working as one team to create lasting impact for ourselves, our customers and the communities where we live and work. We take responsibility for each other and our company’s future, knowing that personal ownership leads to broader success. We believe in purposeful innovation because we see what others do not and we act. Through business innovation, product creation and service delivery, we are driven to power the industry that powers the world better.

Industry

Oil and gas extraction

Company size

10,000+ Employees

Headquarters location

Houston, TX, US

Year founded

1841