Full-Time

Senior Systems Architect

UE Terminal NTN Platform

Deadline 7/29/27
ViaSat

ViaSat

5,001-10,000 employees

Delivers subscription-based satellite internet services

Compensation Overview

$180.5k - $285k/yr

Carlsbad, CA, USA

In Person

Onsite role; supports up to 20% travel.

Bachelor's, Master's, Bachelor of Science (BS), Master of Science (MS)

Category
Electrical Engineering (1)
Required Skills
Software Testing

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Requirements
  • 10+ years of experience in wireless communications, cellular devices, or systems architecture.
  • Strong knowledge of Long-Term Evolution and fifth-generation New Radio technologies.
  • Deep understanding of user equipment architecture, modem chipsets, radio-frequency systems, and device integration.
  • Demonstrated experience defining system architectural requirements and translating them into user equipment requirements.
  • Experience working with chipset vendors, original equipment manufacturers, and network partners.
  • Strong problem-solving and technical leadership skills.
  • Experience qualifying a user equipment device in a Third Generation Partnership Project environment.
  • Product engineering experience to participate in product roadmap strategic discussions.
  • Previous experience providing cost and schedule estimates for new proposals and sustaining activities.
  • Ability to support multiple simultaneous projects and self-prioritize.
  • A Bachelor of Science degree in Electrical Engineering, Physics, or another related engineering discipline.
  • Availability to support up to 20% travel averaged over time.
Responsibilities
  • Represent the User Equipment Terminal group in end-to-end system infrastructure architecture for the Direct-to-Device Non-Terrestrial Network platform across user equipment, radio access network, core network, and interworking functions.
  • Provide architectural inputs into the platform roadmap affecting the User Equipment Terminal, including standards compliance, feature priorities, and system and radio access network constraints.
  • Represent the User Equipment Terminal team in end-to-end system architecture discussions.
  • Translate product goals into architectural principles, interfaces, and assumptions across Non-Terrestrial Network and terrestrial networks.
  • Define User Equipment Terminal features required to support alignment with Third Generation Partnership Project Release 19 and Release 20 Non-Terrestrial Network specifications.
  • Identify gaps or ambiguities in standards and propose deployable, standards-compliant solutions.
  • Develop technical requirements and architectural solutions for Non-Terrestrial Network-enabled devices.
  • Leverage Third Generation Partnership Project system architecture expertise to align with evolving Non-Terrestrial Network standards.
  • Provide guidance on standards interpretation and implementation.
  • Drive alignment with chipset vendors, original equipment manufacturers, operators, and standards organizations.
  • Translate product and customer requirements into User Equipment system requirements.
  • Specify User Equipment Terminal requirements for Non-Terrestrial Network access, mobility, roaming, network selection, behavior, and power management.
  • Align with chipset vendors, original equipment manufacturers, and network vendors on feasible User Equipment Terminal implementations for Internet of Things, reduced-capability, and enhanced reduced-capability applications.
  • Drive system-level hardware and software trade-off discussions.
  • Evaluate and benchmark Non-Terrestrial Network-capable modems, chipsets, and reference designs.
  • Analyze vendor roadmaps, feature support, and standards compliance.
  • Lead technical engagement with chipset vendors and device manufacturers.
  • Support platform selection and technology investment decisions.
  • Support laboratory, field, and commercial integration and readiness through end-to-end validation strategies and success criteria.
  • Define User Equipment validation and test strategies.
  • Troubleshoot hardware, software, radio-frequency, and network integration issues.
  • Support certification activities including PTCRB, Global Certification Forum, over-the-air, and carrier acceptance testing.
  • Ensure interoperability with Non-Terrestrial Network and terrestrial networks.
Desired Qualifications
  • A Master of Science degree in Electrical Engineering, Physics, or another related engineering discipline.
  • Experience with fifth-generation Non-Terrestrial Network, satellite communications, or Direct-to-Device systems.
  • Experience with smartphones, Internet of Things devices, reduced-capability, enhanced reduced-capability, or narrowband Internet of Things.
  • Familiarity with Third Generation Partnership Project standards and standardization activities.
  • Experience with PTCRB, Global Certification Forum, carrier certification, and over-the-air testing.
  • Direct involvement in Non-Terrestrial Network or satellite communications product launches.

Viasat provides high-speed satellite internet access for residential, business, and government customers, especially in areas where traditional broadband is limited. The service works by connecting customers to a global high-capacity satellite network through subscription-based plans (with different speeds and data allowances) and is supported by customer hardware such as modems and antennas. In addition to consumer internet, Viasat signs contracts with government and enterprise clients for specialized communication solutions. Compared with some competitors, Viasat relies on a broad satellite network to reach remote regions worldwide and serves a diverse mix of customers, including households, businesses, and government entities, sometimes offering savings on selected plans. The company’s goal is to provide reliable, high-speed internet connectivity across the globe, expanding access to underserved areas through its satellite technology and services.

Company Size

5,001-10,000

Company Stage

IPO

Headquarters

Carlsbad, California

Founded

1986

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Simplify Jobs

Simplify's Take

What believers are saying

  • Q1 2027 backlog rose 19% to $4.2 billion, led by defense awards.
  • Free cash flow reached $72 million, and management kept fiscal 2027 guidance.
  • ViaSat-3 Flight 3 entered testing in August 2026 for Asia-Pacific service launch.

What critics are saying

  • Fixed broadband subscribers fell to 115,000 in Q1 2027, crushing legacy cash flows.
  • DAT strategic review can distract management, while Western Digital litigation remains unresolved.
  • Debt still ran 3.2x EBITDA in August 2026; a ViaSat-3 delay threatens solvency.

What makes ViaSat unique

  • Viasat pairs satellites, payloads, ground operations, and government services under one roof.
  • Its PTS-G win in May 2026 deepens U.S. Space Force protected communications credibility.
  • ViaSat-3 and Inmarsat assets give Viasat multi-orbit coverage across air, sea, and government.

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Benefits

Hybrid Work Options

Growth & Insights and Company News

Headcount

6 month growth

5%

1 year growth

5%

2 year growth

2%
Crunchbase
Aug 22nd, 2026
Viasat - Crunchbase Company Profile & Funding

Viasat is a global communications company that offers satellite services.

MilitaryLeak
Aug 21st, 2026
Viasat selects Rocket Lab to build GEO satellite for US Space Force's Protected Tactical SATCOM-Global program.

Viasat selects Rocket Lab to build GEO satellite for US Space Force's Protected Tactical SATCOM-Global program. August 21, 2026 Viasat Inc. (NASDAQ: VSAT), a global leader in satellite communications, today announced it selected Rocket Lab Corporation (Nasdaq: RKLB), a leading launch and space systems company, to build a satellite bus for the U.S. Space Force's (USSF) Space Systems Command (SSC) under the Protected Tactical SATCOM-Global (PTS-G) program. On May 22, 2026, Viasat was awarded a prime contract to deliver one of the first small, maneuverable geosynchronous Earth orbit (GEO) satellites for the PTS-G constellation. The initial production award, known as Swarm 1, includes manufacturing, integration and test, launch, and on-orbit checkout of the mini-GEO satellite system. PTS-G is a key part of USSF's strategy to deliver global, resilient, and scalable satellite communications to warfighters by leveraging commercial designs and technology to support smaller, faster-to-produce satellites with enhanced anti-jam capabilities. Viasat's government space team within its Defense and Advanced Technologies segment will lead this work to advance the PTS-G initial operating capability. Global military news Rocket Lab will deliver a GEO configuration of its high-performance Lightning spacecraft platform to host Viasat's dual-band X/Ka-band payload. Lightning-GEO features a high-power architecture built with Rocket Lab's own vertically integrated components and subsystems, including tracking, telemetry, and command (TT&C) radios, solar power, star trackers, reaction wheels, flight and ground software, and more. The combination of Rocket Lab's high reliability Lightning platform and Viasat's mini-GEO satellite architecture and high-performance payload will provide secure communications for the warfighter. This mini-GEO satellite will provide a next-generation, anti-jam, resilient communications capability designed to ensure secure connectivity for U.S. and allied forces operating in contested environments around the world. Viasat will provide its technical and operational expertise designing and delivering high-performance dual-use satellite solutions, as well as a deep understanding of USSF and U.S. Department of War mission requirements. Rocket Lab's GEO configuration also leverages commercial solutions, further supporting the Space Force's push toward more resilient architecture based on scaled commercial capability. Unmanned vehicle technology Discover more Air force news Defense contractor profiles "This production award represents an important step forward in delivering the next generation of protected satellite communications capabilities for the U.S. Space Force," said Craig Miller, President, Viasat Government. "By combining Viasat's cutting-edge communications payload technology with Rocket Lab's proven spacecraft platform, we are advancing a more agile and resilient GEO architecture designed to support mission-critical communications hot spots in contested environments. We are excited to showcase how low cost, high performance dual-use technology can provide reliable connectivity for evolving missions in an increasingly contested tactical communications environment." Rocket Lab Founder and CEO, Sir Peter Beck said: "Moving from design into production marks an important milestone for this program and for Rocket Lab's growing role in national security space. By pairing our vertically integrated spacecraft with Viasat's protected communications payload, we're delivering resilient, space-based communications infrastructure that keeps our forces connected and secure in contested environments." Viasat's award is one of two delivery orders issued under a competitive Fair Opportunity acquisition, reflecting the Space Force's strategy of building a diversified, resilient PTS-G architecture. In addition to delivering the spacecraft and payload, the Viasat PTS-G award also includes five years of operations and sustainment services for the satellite, including TT&C, satellite and network operations, and cybersecurity requirements. Viasat is a global communications company that believes everyone and everything in the world can be connected. With offices in 24 countries around the world, its mission shapes how consumers, businesses, governments and militaries around the world communicate and connect. Viasat is developing the ultimate global communications network to power high-quality, reliable, secure, affordable, fast connections to positively impact people's lives anywhere they are - on the ground, in the air or at sea, while building a sustainable future in space. In May 2023, Viasat completed its acquisition of Inmarsat, combining the teams, technologies and resources of the two companies to create a new global communications partner. Discover more Military leak analysis Armed forces history Rocket Lab is a leading space company that provides launch services, spacecraft, payloads and satellite components serving commercial, government, and national security markets. Rocket Lab's Electron rocket is the world's most frequently launched orbital small rocket; its HASTE rocket provides hypersonic test launch capability for the U.S. government and allied nations; and its Neutron launch vehicle in development will unlock medium launch for constellation deployment, national security and exploration missions. Rocket Lab's spacecraft and satellite components have enabled more than 1,700 missions spanning commercial, defense and national security missions including GPS, constellations, and exploration missions to the Moon, Mars, and Venus. Rocket Lab is a publicly listed company on the Nasdaq stock exchange (RKLB). Post Views: 45

Intelligence Community News
Aug 18th, 2026
Viasat selected for Space Force PTS-G program.

Viasat selected for Space Force PTS-G program. 0 Comments On June 11, Viasat, Inc. announced it was awarded a prime contract by the U.S. Space Force's (USSF) Space Systems Command (SSC) to build, launch and deliver the first of a proliferated fleet of small, maneuverable geosynchronous Earth orbit (GEO) satellites under the Protected Tactical SATCOM-Global (PTS-G) program. The new Swarm 1 Delivery Order contract builds on Viasat's completion of the Delivery Order 1 (DO1) phase awarded in 2025, where the company successfully matured a system design for a resilient, low size, weight and power (SWaP) GEO satellite and associated ground architecture to dynamically support key hot spot service areas. The proposed satellite design and operational concept illustrates how Viasat is applying low cost, high performance dual-use technology to provide resilient connectivity for an increasingly contested tactical communications environment. The PTS-G program, which has an Indefinite Delivery Indefinite Quantity (IDIQ) ceiling value of $4B across program awardees, is a cornerstone of the USSF's strategy to use commercial baseline designs to deploy a proliferated constellation of agile GEO satellites to deliver secure, resilient, anti-jam communications and improve operational flexibility for warfighters worldwide. This prime contract reinforces Viasat's unique position as both an end-to-end satellite system manufacturer and operator for the USSF across a broad range of frequencies and expands its role as a partner for U.S. and global allies seeking advanced, dual-use space communication systems. Under this multi-year development award, Viasat's Space and Mission Systems (SMS) team will produce and deliver a dual-band X/Ka-band mini-GEO, maneuverable satellite, and provide ground stations and operations support. This Swarm 1 Delivery Order award also includes five years of operations and sustainment services for the satellite, inclusive of tracking, telemetry, and command (TT&C), satellite and network operations, and cybersecurity requirements. Viasat's PTS-G mini-GEO satellite architecture will leverage cutting-edge technology already developed for the ViaSat-3 fleet, allowing for rapid, cost-effective deployment of high-performance and resilient satellite systems that adapt to evolving USSF mission requirements. "Viasat is pleased to continue our partnership with the U.S. Space Force as the PTS-G program moves into the production phase," said Craig Miller, president, Viasat Government. "This production award recognizes Viasat's technical and operational expertise designing and rapidly delivering resilient, and high-performance dual-use satellite solutions in a multi-orbit environment, as well as our deep understanding of USSF mission needs and how to effectively deliver secure communications for DoW and partner missions. We are excited to partner with the USSF on this foundational work supporting next-generation government space operations, and we look forward to accelerating the Space Force's vision for employing scalable, dual-use capabilities to create a more agile, cost-effective, and survivable SATCOM architecture." PTS-G is part of a broader transformation in how the USSF acquires and deploys satellite communications capabilities - emphasizing speed, competition, and commercial technology integration to meet evolving threats. This transformation includes the USSF objective to deploy maneuverable GEO satellites, significantly improving the resilience and agility of military communications. John Reeves, vice president of space and mission systems, Viasat Government, said, "Our team is motivated to continue this critical work supporting the USSF and DoW under the PTS-G program, and we are eager to transition our innovative design into production and delivery of a small, maneuverable GEO capability to support dynamic mission operations. Our flexible dual-band X/Ka-band satellite is designed to enable critical DoW operations and mission outcomes - supporting global connectivity, increasing resilience and improving warfighters' ability to combat emerging threats." The Viasat SMS team is part of the company's Defense and Advanced Technologies segment. Viasat's production and delivery of the dual-band satellite system will support meeting initial operating capability no earlier than 2029. IC News delivers the situational awareness you need to get ahead and stay ahead in the IC contracting space. Subscribe today for full access to 10,000+ articles, plus new articles each weekday.

BISinfotech
Aug 18th, 2026
SNU researchers advance 6G with world-first wafer-integrated antenna.

SNU researchers advance 6G with world-first wafer-integrated antenna. 2 minutes read A breakthrough for future wireless networks was achieved recently when researchers from Seoul National University (SNU) managed to produce a technology which allows manufacturing of 6G high-frequency antennas in mass production on silicon wafers using processes similar to those employed to manufacture computer chips. The innovative architecture called STARE (Semiconductor Transmit Array with Reconfigurable Elements) was invented by a research team led by Professor Jungsuek Oh from the Department of Electrical and Computer Engineering at SNU. It allows 6G antennas and radiofrequency (RF) semiconductor switches responsible for directing radio waves to be integrated into one wafer in the course of manufacturing process. The bottleneck in next-gen connectivity. Both 6G networks and current satellites depend on huge arrays of small antennas, which can concentrate their signals to the end-user accurately. Technologies like the Reconfigurable Intelligent Surface (RIS), which is a smart panel that redirects or reflects radio waves around objects, are essential for the operation of high-frequency networks. Nevertheless, there are serious limitations when it comes to the production of such devices through traditional technologies: * Complicated Assembly: Conventional approaches involve placing thousands of individual switch, PIN diode, and varactor parts on prefabricated antennas. With an increase in size of the antenna arrays, the cost and complexity of assembly grow tremendously. * Material Deficiencies: Other possible materials like liquid crystals react too slowly, while standard diodes have huge losses of energy at ultra-high frequencies. * Contradictory Design: Semiconductors are created by chip technology on a nanometer scale, while antennas work on the principle of electromagnetic waves on a millimeter scale. Combining these two different ways of designing in one silicon chip was historically very difficult. How STARE solves the problem. Rather than developing a circuit board and mounting the components on it, the STARE architecture unites the antenna and the switches into one semiconductor device. In order to address the issues arising from the integration of two different systems onto one silicon chip, the researchers made three important advances: * Integrated Co-Design: They created a design method that combined electromagnetic analysis with the real performance of semiconductors enabling design of the switches and antenna patterns at the same time from the start. * Magnetic Coupling: In conventional design, microholes had to be drilled in the silicon wafer, an expensive process called through-silicon vias, to enable the connection of the front- and rear-side components. Using the SNU technology, there was no need to drill holes; magnetic coupling of the metal structures on opposite sides of the wafer enabled signal transfer. * Flat and Sleek Design: As the use of magnetic fields for signal transfer minimizes losses and makes control switches totally embedded in the wafer, not sticking out of it. Key performance benefits. * Nanosecond Switching: Offers near-instantaneous signal steering compared to older liquid-crystal alternatives. * Ultra-Low Power: Reduces power consumption and signal losses over high frequency 6G bands. * Scalable Mass Production: Because components do not need to be attached one by one, production costs drop significantly as array sizes grow. * Customizable Designs: Antenna layouts can be altered at the software design stage to fit specific physical spaces or frequency bands before the wafer is made. Viasat Partners with Rocket Lab to Build Mini-GEO Satellite for U.S. Space Force Also Read Real-World applications. With support from South Korea's Ministry of Science and ICT via the Institute of Information & Communications Technology Planning & Evaluation (IITP), the single wafer-based design makes a wide range of applications possible: * 6G Base Stations and Repeaters: Small, low-profile panels that can be mounted on walls or lampposts to steer waves around congested urban areas. * Satellite Network: Low-power, lightweight beam steering antenna for Low-Earth-Orbit (LEO) satellite internet receivers. * Fleet Control of Autonomous Vehicles: Real-time ultra-low latency electronic steering of beams to follow movements of autonomous cars and factory robots. * AI Data Center & ISAC: Wireless high-speed data transmission in AI data centers and Integrated Sensing and Communication (ISAC) systems where one radio panel can simultaneously transmit data and map environment. The research team from SNU managed to build a full-scale prototype demonstrating full control over electronic beam steering. The next step is to develop additional switch paths for fine tuning of signal angles and power.

Military Embedded Systems
Aug 18th, 2026
Anti-jam GEO satellite to support U.S. Space Force communications.

Anti-jam GEO satellite to support U.S. Space Force communications. August 18, 2026 Technology Editor Military Embedded Systems CARLSBAD, California. Viasat selected Rocket Lab to build the satellite bus for a small geosynchronous Earth orbit (GEO) satellite supporting the U.S. Space Force Protected Tactical SATCOM-Global (PTS-G) program, the company announced in a statement. Rocket Lab will provide a GEO version of its Lightning spacecraft platform to carry Viasat's dual-band X/Ka-band communications payload, the statement reads. The satellite is intended to provide anti-jam communications for U.S. and allied forces operating in contested environments, Viasat says. The PTS-G program is designed to use smaller GEO satellites based in part on commercial technologies to provide protected satellite communications. Rocket Lab's spacecraft will include tracking, telemetry, and command (TT&C) radios, solar-power systems, star trackers, reaction wheels, and flight and ground software, according to the statement. Viasat received a Space Force production award in May 2026 covering manufacturing, integration and testing, launch, and on-orbit checkout of the satellite. The award also includes five years of satellite operations and sustainment services, including TT&C, network operations, and cybersecurity support, the company says. Featured companies. 6155 El Camino Real Carlsbad, CA 92009