Senior RF Front-End Design Engineer | Zipline

Senior RF Front-End Design Engineer

Location: South San Francisco, California, USA
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About Zipline

Zipline is the world’s largest and most experienced drone delivery service. We are on a mission to serve all humans equally by ensuring access to food, medicine, and essential goods anytime, anywhere. We design, build, and operate the world’s largest autonomous logistics system, delivering critical supplies quickly and reliably. Today, Zipline operates on four continents, makes a delivery somewhere in the world every 30 seconds, and has completed millions of deliveries to date, including blood, vaccines, medical supplies, food, and retail products.

Our customers include the world’s largest and most prominent healthcare systems, governments, retailers, restaurants, and global businesses who rely on us to save lives, reduce emissions, increase economic opportunity, and provide delivery from point A to point B as fast as possible. The drone is only 15% of what we’ve built to enable seamless, reliable, global operations.

Our system strengthens supply chains, reduces congestion, and gives people time back. With more than 140 million commercial autonomous miles safely flown, Zipline is redefining access to healthcare, consumer products, and food across the globe.

We operate at a global scale and are looking for practical problem solvers who thrive on real-world challenges and rapid growth. Our team is motivated by building systems that have a direct, meaningful impact on people’s lives and by scaling the future of logistics. We are seeking people who sculpt from first principles, enjoy facing adversity, and can do the impossible at record-breaking speeds.

About You and The Role

Zipline is seeking a Senior RF Front-End Design Engineer to lead the architecture, design, integration, and validation of highly integrated multi-radio front-end systems across our autonomous aircraft and ground infrastructure.

You will own RF front-end architecture from early system definition through schematic design, hardware integration, validation, manufacturing, certification, and field deployment. You will design wireless platforms supporting technologies including 4G LTE, 5G NR, GNSS, Wi-Fi, ADS-B, UAT, Bluetooth, ISM radios, emerging Vehicle-to-Vehicle (V2V) communications, and future air-to-ground communication systems, all operating simultaneously within extremely space- and power-constrained platforms.

This role requires deep expertise in RF front-end architecture, multi-radio integration, and chip-down wireless solutions, with a strong understanding of RF coexistence, interference management, and receiver desense mitigation as critical elements of delivering robust wireless systems. You will collaborate closely with antenna, electrical, embedded software, systems, mechanical, flight test, manufacturing, reliability, certification, and cloud engineering teams to build the next generation of Zipline's wireless platforms.

What You'll Do

What You'll Bring

Preferred Qualifications

What Success Looks Like

Why Join Zipline’s RF Team?

Zipline offers one of the industry's most challenging RF environments. Our aircraft, docks, droids, and logistics infrastructure integrate numerous simultaneously operating wireless systems across licensed and unlicensed spectrum while operating in dynamic airborne environments with demanding size, weight, power, reliability, and regulatory constraints.

As a Senior RF Front-End Design Engineer, you will architect the wireless foundation for the next generation of autonomous logistics. From LTE and 5G connectivity to future V2V networks, advanced navigation systems, ADS-B/UAT integration, GNSS, Wi-Fi, and next-generation air-to-ground communications, your work will define how our aircraft and infrastructure communicate, coordinate, and operate safely at global scale. You will help shape the long-term wireless architecture across every Zipline product—from aircraft and docks to droids, Zipping Points, and future autonomous platforms—while solving some of the industry's most complex multi-radio integration challenges.