Sr. Phased Array RF Front End Architect, Amazon Leo Antenna Team
Listed on 2026-10-03
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Engineering
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Design & Architecture
Job : | Amazon Kuiper Manufacturing Enterprises LLC
Amazon Leo is Amazon’s low Earth orbit satellite constellation initiative designed to bring fast, affordable broadband connectivity to unserved and underserved communities around the world. We are building a next-generation satellite system from the ground up — designing everything from the spacecraft and payload to the ground infrastructure and customer terminals. This is a rare opportunity to join a team that is shaping the future of global connectivity at scale.
We are looking for a Phased Array RF Front End Architect to join the Payload Architecture team in San Diego. This is a cross-program role — you will own the phased array RF front‑end architecture for both the Direct‑to‑Device (cellular‑band) and Broadband (Ka‑band) satellite payloads. You will work hand‑in‑hand with the D2D Phased Array Architect, the Broadband Phased Array Architect, and the DSP & Digital Beamforming Architect to define and improve the phased array RF front‑end architecture and semiconductor process strategy across both programs.
This role requires deep expertise in phased array RF front‑end design spanning cellular‑band and Ka‑band frequencies. You will own the analog RF signal chain from antenna element to the digital interface, making architecture decisions across the transmit and receive signal chains. A central challenge is ensuring that front‑end performance — noise figure, linearity, and efficiency — is maintained across all beam steering conditions, including scan loss management, impedance variation with scan angle, and element‑level amplitude and phase consistency for beamforming.
You must also be fluent in the space‑unique constraints — thermal, radiation, power, and vacuum — that separate satellite design from terrestrial work.
You will define phased array RF front‑end requirements and work with the verification team to validate them through test. This role bridges the RF front‑end with the beamforming architecture — you must understand how front‑end performance impacts beam quality, sidelobe levels, and effective radiated power across scan angles. You will collaborate with systems, HW design, silicon, antenna, calibration, thermal, power, mechanical, and reliability teams to ensure the phased array RF front‑end architecture is achievable within space environment constraints.
Beyond current programs, you will evaluate emerging semiconductor processes and front‑end technologies to contribute to the architecture roadmap for future satellite generations.
This is a hands‑on role — you will be in the lab, in the data, and on call when satellites are live. If you have experience designing RF front‑end architectures for phased arrays across multiple frequency bands and semiconductor processes, we want to hear from you.
Export Control Requirement:
Due to applicable export control laws and regulations, candidates must be a U.S. citizen or national, U.S. permanent resident (i.e., current Green Card holder), or lawfully admitted into the U.S. as a refugee or granted asylum.
- Own the phased array RF front‑end architecture across both D2D and Broadband payloads — spanning the analog signal chain from antenna element to digital interface
- Ensure RF front‑end performance across all beam steering angles — including scan loss, impedance variation, and element‑level amplitude and phase consistency
- Define T/R module architecture balancing performance, integration, and semiconductor process trade‑offs across both programs
- Work with the D2D and Broadband Phased Array Architects to ensure RF front‑end consistency with full signal chain requirements
- Co‑optimize phased array RF front‑end…
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