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Remote Network Security Jobs in Colorado (NOW HIRING)

This position is 100% Remote Key Responsibilities * Develop and implement innovative sourcing ... Ensure adherence to corporate policies, including HIPAA Privacy and Security rules. * Monitor ...

... Remote: No The Opportunity At Hitachi Energy, we're shaping the future of the power industry by ... Streamline security processes such as IAM, encryption, and network security. * Enforce governance ...

Developing familiarity with security technologies (e.g., SIEM, IDS/IPS, network security controls ... remote and hybrid options What's in it for you: - Working with an industry leader : Be part of a ...

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Remote Network Security information

See Colorado salary details

$22.1K

$131.4K

$175.6K

How much do remote network security jobs pay per year?

As of Aug 6, 2026, the average yearly pay for remote network security in Colorado is $131,385.00, according to ZipRecruiter salary data. Most workers in this role earn between $109,900.00 and $150,400.00 per year, depending on experience, location, and employer.

What does a remote network security professional do?

Remote Network Security professionals typically monitor network activity, analyze security logs for unusual behavior, and respond to potential threats or incidents. Daily responsibilities may include configuring firewalls, conducting regular vulnerability assessments, updating policies to reflect new threats, and coordinating with IT and other security teams to implement best practices. Strong documentation and reporting are also key parts of the role, ensuring compliance and operational transparency. Since this position is remote, effective communication and collaboration with teams across different locations are integral to maintaining secure network environments.

What are the key skills and qualifications needed to thrive in remote network security, and why are they important?

To thrive as a Remote Network Security professional, you need a robust understanding of networking concepts, cybersecurity protocols, threat analysis, and incident response, often supported by a degree in computer science or a related field. Familiarity with firewall management tools, intrusion detection systems, VPNs, and certifications such as CISSP, CompTIA Security+, or CEH is typically required. Excellent problem-solving skills, attention to detail, and the ability to communicate complex issues clearly are standout soft skills for this position. These competencies are critical for proactively safeguarding organizations’ networks and effectively responding to evolving security threats in a remote work environment.

What is a remote network security?

A Remote Network Security job involves protecting an organization's digital assets, networks, and data from cyber threats while working remotely. Responsibilities typically include monitoring network traffic, identifying vulnerabilities, implementing security measures, and responding to security incidents. Professionals in this role use firewalls, intrusion detection systems, encryption protocols, and other security tools to protect against cyberattacks. They also ensure compliance with security policies and industry regulations. Remote Network Security professionals often collaborate with IT teams to strengthen overall cybersecurity.

What are the most commonly searched types of Network Security jobs in Colorado? The most popular types of Network Security jobs in Colorado are:
What are popular job titles related to Remote Network Security jobs in Colorado? For Remote Network Security jobs in Colorado, the most frequently searched job titles are:
What cities in Colorado are hiring for Remote Network Security jobs? Cities in Colorado with the most Remote Network Security job openings:
Infographic showing various Remote Network Security job openings in Colorado as of July 2026, with employment types broken down into 85% Full Time, 11% Part Time, and 4% Contract. Highlights an 4% In-person, and 96% Remote job distribution, with an average salary of $131,385 per year, or $63.2 per hour.

Principal Systems Architect and Lead Systems Engineer

asrcfh

Aurora, CO • On-site, Remote

Other

Re-posted 12 days ago


Job description

We are seeking a highly accomplished, elite-level Principal Systems Architect and Lead Systems Engineer to pioneer the technical architecture, design, and multi-disciplinary execution of a brand-new, high-availability Satellite Control Center (Mission Operations Center) supporting NOAA's Space Weather Observations Mission Operations Services (SWO-MOS) program. This complex, multi-year contract entails building a resilient operational ground core interacting securely across WAN networks with remote NOAA/NASA antenna architectures.

Based permanently in our engineering hub in Aurora, Colorado, with an expected travel requirement of up to 15% to the Annapolis, MD facility site, the successful candidate will own the 'digital thread,' acting as the master systems integrator to eliminate architectural blind spots and ensure seamless data processing, commanding loops, and federal security compliance.

Location: Aurora, CO (On-site / Hybrid)

Clearance Required: Ability to obtain/maintain NOAA Public Trust / Secret

Travel Requirement: Up to 15% travel to Annapolis, MD

Key Responsibilities & Essential Functions

  • Model-Based Systems Engineering (MBSE) Leadership: Formulate, develop, and govern the comprehensive, end-to-end SysML system model within Cameo Systems Modeler / MagicDraw, serving as the single source of truth for the entire SWO-MOS ground architecture.
  • Core Systems Baseline Integration: Architect the technical interface maps and behavioral models integrating the core program baseline, specifically optimizing the OS/COMET® framework for telemetry processing and NASA's General Mission Analysis Tool (GMAT) for flight dynamics and orbit tracking.
  • System-of-Systems Integration: Map and manage intricate interfaces, timing loops, and data dependencies across diverse engineering teams (Civil/Facilities, Cyber/Network, Software, C2, and Space Weather Data Processing).
  • Requirements Architecture: Drive formal engineering requirements definition, verification, validation, and traceability tracking (DOORS/Cameo integration) to satisfy NOAA, NASA, and federal programmatic milestones.
  • Network & Boundary Interface Design: Coordinate directly with Network Security Architects to model and validate zero-trust, high-throughput, and low-latency VPN/HSM pipeline topologies communicating over secured internet lines to remote antenna hardware.
  • Technical Governance & Risk Management: Lead major technical reviews (SRR, PDR, CDR) and execute technical trade studies, structural analysis, and dependency mapping to mitigate late-stage integration failures.

Required Qualifications & Experience

  • Years of Experience: A minimum of 15 to 20+ years of progressive technical experience in aerospace, defense, or specialized satellite ground system architecture. Proven experience leading large-scale federal ground system modernizations is strictly required.
  • Core Systems Stack Authority: Proven architectural experience integrating complex ground station system layers utilizing OS/COMET® command & control platforms and NASA's General Mission Analysis Tool (GMAT) flight dynamics configurations.
  • MBSE Mastery: Distinguished technical authority with Cameo Systems Modeler or MagicDraw. Expert-level capability with SysML v1.x/v2 and UAF architectures is mandatory, specifically modeling command and telemetry flows.
  • Domain Expertise: In-depth technical familiarity with satellite command and control (C2) frameworks, telemetry decommutation, flight dynamics infrastructure, or scientific high-throughput ingest pipelines.
  • Education: Bachelor’s, Master’s, or Ph.D. in Systems Engineering, Aerospace Engineering, Electrical Engineering, or a highly related technical discipline.

Preferred Qualifications

  • Direct experience handling SWO-MOS related space weather instrumentation datasets (e.g., magnetometers, plasma sensors, coronagraphs).
  • Familiarity modeling compliance frameworks directly within systems architecture models (e.g., mapping NIST SP 800-53 or FISMA High controls into SysML security profiles).