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Distributed Antenna Systems Jobs in California (NOW HIRING)

Antenna Engineer

Redwood City, CA · On-site

$140K - $180K/yr

We built our system on state-of-the-art, patented technology, including high-efficiency power ... The Reach solution transforms the way the world will think about power distribution. Much has ...

Antenna Engineer

Redwood City, CA · Hybrid

$140K - $180K/yr

We built our system on state-of-the-art, patented technology, including high-efficiency power ... The Reach solution transforms the way the world will think about power distribution. Much has ...

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Distributed Antenna Systems information

See California salary details

$48.4K

$100.9K

$141.6K

How much do distributed antenna systems jobs pay per year?

As of Jul 26, 2026, the average yearly pay for distributed antenna systems in California is $100,891.00, according to ZipRecruiter salary data. Most workers in this role earn between $84,900.00 and $115,000.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive in the Distributed Antenna Systems position, and why are they important?

To excel in a Distributed Antenna Systems (DAS) role, you need a solid understanding of RF engineering, wireless communications, and network design, typically supported by a degree in electrical engineering or a related field. Familiarity with DAS components, signal testing tools like spectrum analyzers, and certifications such as iBwave or FCC GROL are highly valued. Strong problem-solving abilities, attention to detail, and clear communication skills help professionals effectively collaborate with clients, contractors, and team members. These competencies ensure reliable system performance and successful project implementation in diverse and complex environments.

What is an entry level job at a data center?

An entry-level job at a data center related to Distributed Antenna Systems (DAS) may include roles such as technician or installer, focusing on installing, maintaining, and troubleshooting antenna equipment. These positions typically require basic technical skills, familiarity with networking tools, and may involve on-the-job training or certifications like OSHA or industry-specific credentials.

What does a typical project lifecycle look like for a Distributed Antenna Systems professional?

A typical project for a Distributed Antenna Systems professional starts with site surveys and needs assessment, followed by designing the system layout and coordinating with architects, building owners, and other stakeholders. You will then be involved in overseeing or performing the installation, configuring equipment, conducting signal testing, and troubleshooting any issues to ensure optimal coverage. Beyond installation, ongoing maintenance, system upgrades, and client training may also be part of your responsibilities. Collaboration with multidisciplinary teams and adapting to diverse building environments are key aspects of this dynamic role.

What is the highest paying job in telecommunications?

In telecommunications, senior roles such as Telecommunications Director, Network Operations Manager, or Systems Architect tend to be among the highest paying positions. These roles often require extensive experience, advanced certifications, and expertise in network infrastructure, security, and project management.

What does a Distributed Antenna Systems (DAS) job involve?

A Distributed Antenna Systems (DAS) job involves designing, installing, and maintaining networks of antennas that improve wireless coverage in buildings and dense areas. Professionals in this field work with RF engineering, signal testing, and equipment like repeaters and fiber-optic cabling. Their role is essential in ensuring reliable cellular and public safety communications in facilities such as stadiums, hospitals, and airports.

What is a DAS technician?

A DAS technician installs, maintains, and repairs Distributed Antenna Systems (DAS), which are networks of antennas used to improve wireless coverage in large buildings or areas. They typically work with RF equipment, use testing tools, and may require certifications such as BICSI or OSHA. The role often involves physical labor, technical troubleshooting, and working in various environments, including indoors and outdoors.

What does a distributed antenna system do?

A Distributed Antenna System (DAS) is used to improve wireless signal coverage and capacity within buildings or large areas by distributing antennas throughout the space. Jobs in this field involve designing, installing, and maintaining these systems, often requiring technical skills in RF engineering and knowledge of wireless standards. DAS technicians ensure reliable connectivity for users in complex environments such as stadiums, hospitals, or office buildings.
What are popular job titles related to Distributed Antenna Systems jobs in California? For Distributed Antenna Systems jobs in California, the most frequently searched job titles are:
What job categories do people searching Distributed Antenna Systems jobs in California look for? The top searched job categories for Distributed Antenna Systems jobs in California are:
Infographic showing various Distributed Antenna Systems job openings in California as of July 2026, with employment types broken down into 80% Full Time, 7% Part Time, and 13% Contract. Highlights an 94% In-person, and 6% Remote job distribution, with an average salary of $100,891 per year, or $48.5 per hour.
Senior RF Antenna Design Engineer

Senior RF Antenna Design Engineer

Zipline

South San Francisco, CA

Other

Medical, Dental, Vision, PTO

Posted 11 days ago


Job description

About You and The Role

Zipline is seeking a Senior Antenna Design Engineer to lead the design, integration, and validation of antenna systems for our autonomous aircraft, ground infrastructure, and supporting products.

You will own antenna performance from early architecture and simulation through hardware integration, regulatory certification, manufacturing, and field deployment. You will work on electrically and mechanically constrained platforms where antenna performance must be balanced against aerodynamics, structural requirements, thermal constraints, industrial design, reliability, cost, and manufacturability.

This role requires strong electromagnetic fundamentals, practical antenna development experience, and the ability to turn ambiguous system requirements into robust production hardware. You will collaborate closely with RF, electrical, mechanical, embedded, systems, flight test, manufacturing, reliability, and regulatory teams.

What You'll Do
  • Own antenna architecture, design, simulation, prototyping, integration, and validation for airborne and ground-based products.
  • Develop antennas and RF structures across technologies such as cellular, GNSS, Wi-Fi, Bluetooth, ISM, telemetry, ADSB, UAT, command-and-control, and other licensed or unlicensed bands.
  • Translate communication, navigation, regulatory, and system-level requirements into antenna specifications and verification plans.
  • Perform electromagnetic simulations using tools such as Ansys HFSS, CST Studio Suite, Altair FEKO, or equivalent platforms.
  • Optimize antenna performance within tightly constrained mechanical environments containing batteries, motors, composites, metals, cables, electronics, and other RF-sensitive structures.
  • Conduct antenna measurements, including return loss, impedance, isolation, efficiency, gain, radiation patterns, polarization, and total radiated performance.
  • Plan and execute testing in anechoic chambers, outdoor antenna ranges, laboratory environments, and representative operational configurations.
  • Characterize antenna performance at the subsystem and complete-vehicle levels, including installed performance and platform-induced effects.
  • Develop antenna diversity, MIMO, isolation, coexistence, and placement strategies for systems containing multiple radios.
  • Work on antenna arrays, distributed antenna systems, single aperture antennas as well as co-located antenna integrations to deliver on radiated performance, and support cross functionally to deliver: coexistence, desense, regulatory and product level requirements.
  • Deliver antenna integration with additional follow through with specific attention to detail to harness integration, serviceability, matching networks, aperture matching, connector strategy and PCB integration.
  • Evaluate link performance and collaborate with RF systems engineers on link budgets, propagation assumptions, interference risks, and coverage requirements.
  • Investigate RF performance issues using simulation, laboratory measurements, flight-test data, and structured root-cause analysis.
  • Design repeatable RF test methods and fixtures for engineering validation, production testing, and supplier qualification.
  • Design and implement unique antenna systems and RF harnessing solutions with multi physics demands across thermal, shock, vibe, humidity, mass, and life limits.
  • Partner with mechanical and industrial design teams to develop antenna solutions that meet aerodynamic, environmental, structural, and packaging requirements.
  • Work with manufacturing and suppliers to establish antenna specifications, tolerances, inspection criteria, calibration methods, and production controls.
  • Support regulatory and carrier certification activities, including FCC, CE, ISED, cellular carrier, SAR, spurious-emissions, and other applicable testing.
  • Perform technical reviews, communicate design tradeoffs, and document decisions, risks, test results, and lessons learned.
  • Mentor other engineers and help establish antenna-development tools, processes, standards, and technical roadmaps for the RF organization.
What You'll Bring
  • Bachelor's degree in electrical engineering, applied physics, electromagnetics, or a related technical field.
  • Typically 7 or more years of professional experience developing antennas or closely related RF hardware for production systems.
  • Strong understanding of electromagnetic theory, antenna fundamentals, transmission lines, impedance matching, polarization, coupling, radiation efficiency, and propagation.
  • Demonstrated experience taking at least one antenna system from concept through integration, verification, and production.
  • Experience designing antennas for mechanically constrained products such as aircraft, drones, robotics, automotive systems, mobile devices, wearables, or IoT products.
  • Proficiency with a full-wave electromagnetic simulation tool such as HFSS, CST, FEKO, or an equivalent platform.
  • Hands-on experience with vector network analyzers, spectrum analyzers, signal generators, RF power meters, and antenna-measurement systems.
  • Experience interpreting three-dimensional radiation patterns, chamber data, efficiency measurements, link-test results, and statistical production data.
  • Working knowledge of RF PCB design, feed networks, matching circuits, connectors, cables, grounding, shielding, and electromagnetic compatibility.
  • Ability to analyze complex system interactions and isolate issues spanning antenna, radio, electrical, mechanical, embedded, and environmental domains.
  • Strong written and verbal communication skills, including the ability to explain technical tradeoffs to multidisciplinary stakeholders.
  • Ability to operate with significant autonomy, prioritize effectively, and drive technically complex programs to completion.
Preferred Qualifications
  • Master's degree or PhD in electrical engineering, electromagnetics, applied physics, or a related field.
  • Experience designing antennas for unmanned aircraft, aerospace platforms, autonomous vehicles, or safety-critical systems.
  • Experience with cellular antenna systems, including LTE, 5G, carrier aggregation, MIMO, and over-the-air performance.
  • Experience with high-accuracy or multiband GNSS antenna systems.
  • Experience with conformal antennas, phased arrays, electronically steered antennas, or direction-finding systems.
  • Familiarity with composite structures, carbon fiber, radomes, environmental sealing, and antenna-material characterization.
  • Experience with RF coexistence, desense, intermodulation, passive intermodulation, and electromagnetic compatibility.
  • Familiarity with scripting or data-analysis tools such as Python, MATLAB, or equivalent software.
  • Experience developing automated antenna-measurement, simulation, optimization, or test-data-analysis workflows.
  • Knowledge of regulatory requirements and test methods relevant to airborne, cellular, intentional-radiator, and international products.
  • Experience working directly with antenna suppliers, contract manufacturers, test laboratories, and certification bodies.
  • Familiarity with design-for-manufacturing, tolerance analysis, reliability testing, and high-volume production processes.
What Success Looks Like
  • Establish a clear understanding of Zipline's existing antenna architectures, RF platforms, operating environments, and key performance risks.
  • Take technical ownership of one or more antenna-development programs.
  • Deliver antenna systems for real products at scale.
  • Design, fabricate and productionize antenna systems to operate in global markets around the world to support ziplines global footprint.
  • Deliver antenna designs that meet installed RF performance, mechanical, reliability, regulatory, and manufacturing requirements.
  • Improve the correlation between simulation, laboratory testing, vehicle-level testing, and field performance.
  • Create reusable design practices, measurement methods, and analysis tools that increase the speed and quality of future antenna programs.
  • Help develop the long-term antenna technology roadmap required to support Zipline's 
Why Join Zipline's RF Team?

Zipline presents an antenna environment unlike a conventional consumer or telecommunications product. Our systems operate in three-dimensional space, travel through changing propagation and interference environments, and must maintain reliable wireless connectivity while meeting strict size, weight, power, aerodynamic, safety, and regulatory constraints.

You will have the opportunity to move between electromagnetic theory, hands-on hardware development, full-system testing, manufacturing, and real-world operations. The antenna systems you develop will directly enable autonomous logistics at global scale and help deliver products that matter to people when and where they need them.

What Else You Need To Know

The starting cash range for this role is $160,000 - $250,000. Please note that this is a target, starting cash range for a candidate who meets the minimum qualifications for this role. The final cash pay for this role will depend on a variety of factors, including a specific candidate's experience, qualifications, skills, working location, and projected impact. The total compensation package for this role may also include: equity compensation; discretionary annual or performance bonuses; sales incentives; benefits such as medical, dental and vision insurance; paid time off; and more.

Zipline is an equal opportunity employer and prohibits discrimination and harassment of any type without regard to race, color, religion, age, sex, national origin, disability status, genetics, protected veteran status, sexual orientation, gender identity or expression, or any other characteristic protected by federal, state or local laws or our own sensibilities.

We value diversity at Zipline and welcome applications from those who are traditionally underrepresented in tech. If you like the sound of this position but are not sure if you are the perfect fit, please apply!