1

Satellite Rf Engineer Jobs in Alabama (NOW HIRING)

next page

Showing results 1-20

Satellite Rf Engineer information

What is the difference between Satellite Rf Engineer vs Satellite Communications Technician?

AspectSatellite Rf EngineerSatellite Communications Technician
CredentialsBachelor's in Electrical Engineering or related, RF certificationsTechnical diploma or associate degree, RF and satellite training
Work EnvironmentDesign, testing, and troubleshooting RF systems in labs or fieldInstallation, maintenance, and repair of satellite systems on-site
Industry UsageDesign and optimize satellite RF systems for telecom, defense, or spaceOperate and maintain satellite communication equipment for service providers

Satellite Rf Engineers focus on designing and testing RF systems, while Satellite Communications Technicians handle installation and maintenance. Both roles require RF knowledge but differ in responsibilities and work settings.

What are the key skills and qualifications needed to thrive as a Satellite RF Engineer, and why are they important?

To thrive as a Satellite RF Engineer, you need a solid background in electrical engineering, with expertise in radio frequency (RF) theory, satellite communications, and often a relevant degree. Familiarity with RF simulation software (like CST or HFSS), spectrum analyzers, network analyzers, and industry certifications such as FCC licensing are typically required. Strong problem-solving abilities, attention to detail, and effective teamwork enhance success in this role. These skills and qualifications ensure reliable satellite communication systems and efficient troubleshooting in a highly technical, mission-critical environment.

What are Satellite RF Engineers?

Satellite RF Engineers are specialists who design, develop, test, and maintain radio frequency (RF) systems used in satellite communications. They are responsible for ensuring reliable transmission and reception of signals between satellites and ground stations, often working with antennas, transmitters, receivers, and other RF components. Their expertise is crucial for enabling services such as satellite TV, internet, navigation, and remote sensing. Satellite RF Engineers also troubleshoot signal issues, optimize system performance, and comply with regulatory standards.

What are some common challenges Satellite RF Engineers face when working on satellite communication systems?

Satellite RF Engineers often encounter challenges related to signal interference, atmospheric attenuation, and ensuring reliable communication links over long distances. Dealing with strict regulatory standards and coordinating frequency allocations is also part of the role. Additionally, troubleshooting hardware in remote or space-based environments can require creative solutions and close collaboration with cross-functional teams such as system integration and network operations.
What are popular job titles related to Satellite Rf Engineer jobs in Alabama? For Satellite Rf Engineer jobs in Alabama, the most frequently searched job titles are:
What job categories do people searching Satellite Rf Engineer jobs in Alabama look for? The top searched job categories for Satellite Rf Engineer jobs in Alabama are:
What cities in Alabama are hiring for Satellite Rf Engineer jobs? Cities in Alabama with the most Satellite Rf Engineer job openings:

Senior Responsible Systems Engineer - DoD Programs with Security Clearance

Woodside Staffing Solutions & Consulting

Huntsville, AL • On-site

$103K - $140K/yr

Other

Posted 15 days ago


Job description

Senior Responsible Systems Engineer – DoD Programs Clearance: Secret (must be current and active) Location: Redstone Gateway, Huntsville, AL 35808 Relocation: Candidates willing to relocate within 2-4 weeks from offer will be considered. Compensation: 180-191k. Commiserates with education and years of experience Job Description The System Engineering & Integration Team (SE&IT) is seeking a Senior Responsible Systems Engineer (RSE) to join the System Design and Requirements Capability team in Huntsville, AL. The successful candidate will lead cross-functional teams to develop system level architecture and requirements to influence Missile Defense Agency (MDA) incremental capability. The candidate will use Model Based Systems Engineering (MBSE) to evaluate architectural impacts through functional and behavior analysis for the defeat of conventional and advanced Threats (i.e., ballistic, aero-maneuvering, hypersonic, hyper-glide, countermeasures, etc.) systems within the (MDA) mission areas.
Must have an active and transferable DoD Secret security clearance with current investigation at the required level. Must be able to maintain the required clearance Required Education/Experience: • Bachelor’s degree in a related engineering, mathematics, or physics. Masters or PHD preferred. Minimum of 10 years’ experience in Responsible Systems Engineering (RSE). • The RSE will collaborate in an MBSE environment to develop system-of-systems requirements via system/component trade studies and analysis, and lead the development of Change Notices (CNs) to MDA’s system specific actions to include functional, interface and performance requirements, architectural models, interface definitions, and support Trace verification from System to Element level requirements. The RSE will develop and deliver products (i.e., technical briefings, CNs) to support internal and MDA stakeholder reviews.
• RSE must demonstrate a strong technical background in architecture development, functional decomposition and allocation of requirements (performance, functional and interface definition) with system-modelling tools.
• Candidate must have strong prior experience with use of MSOSA (Cameo) and DOORS and demonstrated knowledge in any of the MDA domain areas, such as Aegis Weapons Systems, Ground-based Midcourse Defense (GMD), Glide Phase Intercept (GPI), Hypersonic and Ballistic Tracking Space Sensor (HBTSS), Fire Control, C2BMC, MDS sensors (EO/IR/RF).
• Must demonstrate the ability to think critically and capture concepts in papers, presentations and discussions. • Excellent communication/presentation skills and capable of working both independently and within a small team environment.
• Experience working directly and in close coordination with the customer. • Domain knowledge in Aerospace, missiles, space vehicles, or complex defense systems. • Current and active Secret clearance Desired Skills • Demonstrated experience modeling or simulating missile defense applications or similar domains (air combat, air defense, intercept of ballistic targets, intercept of non-ballistic targets, space vehicles, sub-orbital mechanics, etc.).
• Knowledge of ballistic and advanced threat systems (i.e., aero-maneuvering, hypersonic, hyper-glide, counter measures, etc.). • Modeling and analysis experience in aspects of the missile defense system (e.g., Aegis Weapons Systems, Ground-based Midcourse Defense (GMD), Glide Phase Intercept (GPI), Hypersonic and Ballistic Tracking Space Sensor (HBTSS), Fire Control, C2BMC, MDS sensors (EO/IR/RF), kill vehicles, interceptors, countermeasures, Systems engineering experience with large, complex systems. Job Duties: A Responsible Systems Engineer (RSE) is a technical lead in defense or aerospace, who owns the requirements, design, and validation of a specific system or subsystem throughout its lifecycle. They act as the "go-to" technical authority, ensuring compliance, managing technical risks, leading, and overseeing integration and testing. Core Responsibilities: • Requirements Management: Defining, maintaining, and verifying requirements for complex subsystems.
• Technical Leadership: Directing multidisciplinary teams (structures, software, propulsion) on missile or satellite platforms.
• Verification & Validation: Creating test plans, verifying requirements, and conducting final certification of hardware/software.
• Problem Resolution: Leading Material Review Boards (MRB) and Failure Review Boards (FRB) to determine root causes and corrective actions.
• Stakeholder Interaction: Interfacing with program management and customers to ensure the design meets performance, cost, and schedule targets.