Principal Digital Payload & 5G NTN Architect
Listed on 2026-07-11
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Engineering
Systems Engineer, Telecoms Engineering, Aerospace / Aviation / Avionics, Electronics Engineer
SWISSto
12 is one of the world’s fastest‑growing aerospace companies, evolving from its pioneering use of 3D printing technologies for high‑performance Radio Frequency (RF) products and applications to recently announcing the manufacture of entire geostationary telecom satellites, called Humming Sat, that define a new category in space.
Humming Sat is the world’s first commercial telecom GEO Small Sat developed in collaboration with the European Space Agency (ESA). Its uniquely compact size combined with highly capable telecom payloads allows telecommunications operators to deploy a cost‑efficient, compact, and agile asset without sacrificing performance or security. Humming Sat has been selected by Intelsat to build the I-45 satellite, by Inmarsat to build three I-8 satellites, and recently by Astrum Mobile to build the NEASTAR‑1 satellite.
SWISSto
12 is also a leading provider of Radio‑Frequency (RF) products and sub‑systems for satellite communication and remote sensing applications. The company’s patented 3D printing technologies and associated product designs are unique to deliver lightweight, compact, highly performing, and competitive RF products.
- Minimum 10 years of experience in satellite communications systems, digital payloads, ground segment technologies and SATCOM engineering.
- Proven experience defining and developing digital payload architectures, including On‑Board Processing (OBP), regenerative payloads and software‑defined satellite systems.
- Strong expertise in FPGA, RFSoC and SDR‑based implementations for space and communications applications.
- Extensive knowledge of 3
GPP 5G NTN standards, D2D architectures and broadband satellite communications systems. - Demonstrated experience conducting system trade‑offs, performance optimization and architecture studies for complex satellite communication systems.
- Hands‑on experience with payload development throughout the full lifecycle, from concept definition to integration, validation and operational deployment.
- Strong understanding of RF communications, waveform design, DVB standards, digital signal processing and communications system architecture.
- Experience leading multidisciplinary engineering teams and coordinating technical activities with external suppliers and partners.
- Demonstrated ability to define technology roadmaps and drive innovation in advanced satellite communications products.
- Define and drive the architecture of next‑generation digital satellite payloads, including regenerative and transparent GEO, MEO and LEO payload solutions for broadband, Direct‑to‑Device (D2D), 5G NTN and SATCOM applications.
- Lead the definition, design and development of On‑Board Processing (OBP) systems based on FPGA, RFSoC, SDR and embedded processing technologies.
- Define and manage payload‑level system architectures, requirements, performance budgets, interfaces and trade‑offs across RF, digital processing, software and spacecraft segments.
- Lead the development and integration of 5G NTN air interfaces and protocols within satellite payloads, ensuring compliance with 3
GPP standards and future evolution roadmaps. - Perform system‑level analyses, modelling, simulations and performance assessments to optimise payload capacity, flexibility, spectral efficiency and overall mission performance.
- Define technical roadmaps for digital payload technologies, including software‑defined payloads, virtualization, digital beamforming, regenerative processing and advanced waveform implementations.
- Prepare payload and subsystem specifications, requirements flow‑down, compliance matrices, technical documentation and review data packages for major program milestones (SRR, PDR, CDR, QR and Acceptance Reviews).
- Lead FPGA, firmware, software and hardware development activities, ensuring optimal allocation of processing resources and efficient implementation of payload functions.
- Manage payload interfaces with spacecraft platforms, ground segments, user terminals and network infrastructure.
- Support payload technology selection, make‑or‑buy decisions, supplier evaluations and technical assessments of new products and technologies.
- Coordinate…
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