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Drone Camera Jobs (NOW HIRING)

Drone Operator

Washington, DC ยท On-site

$80K - $110K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

The Drone Operator will deploy, operate, and support C-UAS platforms used for intelligence ... Operate C-UAS payloads, including high-resolution cameras, thermal imaging, communications relay ...

Drone Operator

Washington, DC ยท On-site

$80K - $110K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

The Drone Operator will deploy, operate, and support C-UAS platforms used for intelligence ... Operate C-UAS payloads, including high-resolution cameras, thermal imaging, communications relay ...

Marketing Specialist

Lincoln, NE ยท On-site +1

  • Medical

  • Dental

  • Vision

  • Retirement

  • PTO

Video production, editing, or drone camera operation experience preferred Work Environment * Regular collaboration with owners, leadership, co-workers, vendors, and customers * Mix of office-based ...

How do we manage to ingest, QC, and stream millions of high-resolution drone camera files from hundreds of pilots who have completely heterogeneous networks, browsers, hardware, and bandwidths? * How ...

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Drone Camera information

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How much do drone camera jobs pay per hour?

As of Aug 18, 2026, the average hourly pay for drone camera in the United States is $22.49, according to ZipRecruiter salary data. Most workers in this role earn between $20.19 and $24.76 per hour, depending on experience, location, and employer.

What is a drone camera operator?

Drone camera operators are professionals who use unmanned aerial vehicles (drones) equipped with cameras to capture photos and videos from the air. Their work is used in a variety of industries, including film and television, real estate, agriculture, surveying, and construction. They are responsible for operating the drone safely, planning flight paths, and ensuring high-quality visual content is captured according to project needs. Drone camera operators must also follow all federal and local regulations regarding drone usage and may require specific certifications, such as the FAA Part 107 license in the United States.

What skills and qualifications are needed to thrive as a drone camera operator?

To thrive as a Drone Camera Operator, you need proficiency in UAV piloting, aerial photography or videography, and typically a commercial drone license such as the FAA Part 107 certification. Familiarity with drone control systems, GPS navigation, and editing software like Adobe Premiere Pro is important. Attention to detail, spatial awareness, and strong communication skills help operators capture high-quality footage and collaborate with creative teams. These skills ensure safe, legal, and visually compelling aerial content essential for industries like film, real estate, and surveying.

What are common challenges faced by drone camera operators and how can they be addressed?

Drone camera operators often encounter challenges such as unpredictable weather conditions, battery limitations, and airspace restrictions. Adapting to changing environments requires careful pre-flight planning and flexibility during shoots. Maintaining up-to-date knowledge of regulations and ensuring proper equipment maintenance can help minimize disruptions. Collaboration with other team members, such as directors or surveyors, is also essential to capturing the desired footage efficiently and safely.

What is the difference between Drone Camera vs Drone Pilot?

AspectDrone Camera
RoleOperates or installs cameras on drones for capturing images or videos
CredentialsMay require drone operation certification, camera operation skills
Work EnvironmentOn-site at filming locations, construction sites, or outdoor areas
Industry UsageFilmmaking, real estate, inspections, journalism

While a Drone Camera focuses on capturing footage using drones, a Drone Pilot is responsible for flying and controlling the drone itself. Both roles often overlap, but the Drone Pilot handles the operation, while the Drone Camera role emphasizes the imaging aspect. Understanding these distinctions helps in choosing the right career or service provider in the drone industry.

How do you become a drone camera operator?

To become a drone camera operator, you typically need to obtain a remote pilot certificate from the FAA or relevant authority, which involves passing a knowledge test. Skills in photography, videography, and drone operation are essential, and familiarity with drone regulations and safety procedures is important for working professionally in the field.

How much do drone camera operators make?

Drone camera operators typically earn between $15 and $50 per hour, depending on experience, location, and the complexity of the projects. Salaries can range from around $30,000 to over $70,000 annually for full-time positions, especially for those with specialized skills or certifications in aerial cinematography or surveying.

How to become a drone camera?

To become a drone camera operator, you should learn how to operate drones and understand camera equipment and aerial photography techniques. Obtaining a drone pilot certification from relevant authorities and gaining experience with drone flight and camera controls are important steps. Familiarity with safety regulations and good communication skills are also beneficial.
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What cities are hiring for Drone Camera jobs?

Cities with the most Drone Camera job openings:

What states have the most Drone Camera jobs?

States with the most job openings for Drone Camera jobs include:

Infographic showing various Drone Camera job openings in the United States as of August 2026, with employment types broken down into 95% Full Time, 3% Part Time, and 2% Contract. Highlights an 11% Physical, and 89% Remote job distribution, with an average salary of $46,781 per year, or $22.5 per hour.

Staff Autonomy Engineer (Drone)

Gather AI

Pittsburgh, PA โ€ข On-site

Full-time

Re-posted yesterday


Job description

About Us

Are you ready to build the future of supply chain? At Gather AI, we're not just creating software; we're pioneering a new era of warehouse intelligence. We've developed a groundbreaking, vision-powered platform that uses autonomous drones and existing equipment to capture real-time data, completely digitizing workflows that have historically been manual and error-prone. This means facilities operate smarter, safer, and more efficiently, ultimately redefining "on-time, in full" delivery.

If you're looking for an opportunity to contribute to truly transformative technology and make a significant impact in a vital industry, Gather AI is the place for you. We're leading the charge in the rapidly evolving robotics industry, and we invite you to join us in reshaping the global supply chain, one intelligent warehouse at a time.

About the Team

Our Autonomy team builds the software that makes Gather AI's MHE Vision and drone products work in live warehouse environments. MHE Vision turns forklifts and other material handling equipment into real-time inventory sensors, using onboard cameras and compute to scan locations and report inventory data as equipment moves through the facility. It's a technically demanding product line operating at the intersection of embedded systems, computer vision, and large-scale warehouse deployments.

About the Role

We're looking for a Staff Autonomy Engineer (Drone) to own the core autonomy software stack for our drone platform. You'll lead the design and implementation of the perception, localization, and scanning pipelines that run on vehicle-mounted hardware in production warehouses, and you'll do it on real systems with real constraints.

This is a Staff-level individual contributor role with significant technical ownership. You'll work directly with hardware, field deployment, and ML teams to build software that performs reliably in environments that are noisy, dynamic, and unforgiving of edge cases. Your work will directly shape the accuracy and reliability of inventory data that customers depend on.

What You'll Do
  • Own the autonomy software stack for Gather products, including perception, localization, and inventory scanning pipelines running on vehicle-mounted embedded compute
  • Contribute to the architecture of the product autonomy stack as the product scales to more vehicle types, facility layouts, and customer configurations
    • Document existing systems
    • Plan future revisions
    • Contribute and lead to design improvements and testing
  • Solve problems across the autonomy stack
    • Design and implement algorithms that reliably detect, identify, and record inventory locations as forklifts and drones move through warehouse aisles under variable lighting, occlusion, and motion
    • Improve scan accuracy and coverage through algorithmic improvements, better sensor integration, and tighter coordination with the ML perception models
    • Build and maintain the software systems that manage scan triggering, location mapping, and data handoff to the cloud platform
    • Collaborate with hardware and field teams to diagnose and resolve issues on deployed systems, using log data and field observations to drive improvements
What You'll Need
  • 7+ years of software engineering experience with at least 3 years building autonomy, robotics, or perception systems that run on physical hardware in production
  • Strong C++ and Python, with experience writing software that runs on embedded or resource-constrained compute platforms
  • Hands-on experience with computer vision pipelines including camera-based detection, localization, or tracking in real-world environments
  • Experience building and debugging software on deployed systems, including log-based diagnosis and field iteration
  • Comfort operating at Staff level: setting technical direction, making consequential architecture decisions, and taking end-to-end ownership of a system
Nice to Have
  • Experience with ROS2 or similar robotics middleware in a production context
  • Background in warehouse, logistics, or industrial automation environments
  • Familiarity with sensor fusion, calibration, or multi-camera systems
  • Experience with SLAM, odometry, or other localization approaches on mobile platforms