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Remote Antenna Design Jobs in Colorado (NOW HIRING)

Remote Antenna Design information

What is remote antenna design?

Remote antenna design refers to the process of designing antennas that can be deployed and operated in remote locations, often controlled or monitored from a distance. This field involves creating antennas for applications such as wireless communication, satellite systems, and IoT devices, ensuring optimal signal transmission and reception. Engineers in this role use specialized software and tools to simulate, test, and optimize antenna performance, often collaborating with cross-functional teams to meet project requirements. Remote antenna design is critical for expanding connectivity to areas where traditional infrastructure may not be feasible.

What are some common challenges faced by remote antenna design engineers, and how can they be addressed?

Remote antenna design engineers often encounter challenges such as limited access to physical prototypes, difficulties in real-time collaboration with team members, and managing time zone differences. To address these, engineers typically leverage advanced simulation software, participate in regular virtual meetings, and use collaborative digital platforms for sharing designs and feedback. Building strong communication habits and being proactive in seeking clarification can help ensure projects stay on track and technical issues are resolved efficiently.

What is the difference between Remote Antenna Design vs RF Engineer?

AspectRemote Antenna DesignRF Engineer
CredentialsBachelor's in Electrical Engineering or related; certifications like FCC or IEEEBachelor's or higher in Electrical Engineering; similar certifications
Work EnvironmentDesign labs, remote collaboration, CAD softwareTesting labs, fieldwork, design and simulation
Industry UsageTelecommunications, aerospace, consumer electronicsWireless communication, broadcasting, defense

Remote Antenna Design and RF Engineer roles share similar educational backgrounds and certifications. While Remote Antenna Designers focus on creating antenna structures often remotely using CAD tools, RF Engineers work on broader radio frequency systems, including testing and field deployment. Both roles are vital in telecommunications and related industries, but their daily tasks and work environments differ slightly, with Remote Antenna Design emphasizing remote design work and RF Engineering involving more field and testing activities.

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

To excel as a Remote Antenna Design Engineer, you need a solid background in electrical engineering, RF/microwave theory, and antenna design principles, usually backed by a relevant degree. Proficiency with simulation tools like HFSS, CST Microwave Studio, and CAD software, as well as familiarity with industry standards and certification (such as IEEE membership), is important. Strong problem-solving skills, attention to detail, and effective remote communication are standout soft skills in this field. These abilities ensure high-performing, reliable antenna systems and enable seamless collaboration on complex projects, even when working remotely.
Infographic showing various Remote Antenna Design job openings in Colorado as of July 2026, with employment types broken down into 91% Full Time, 4% Part Time, 4% Contract, and 1% Summer. Highlights an 96% Physical, 2% Hybrid, and 2% Remote job distribution.

Principal Systems Architect and Lead Systems Engineer

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Aurora, CO • On-site, Remote

Other

Re-posted 4 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).