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Drones Jobs in Detroit, MI (NOW HIRING)

Software Architect - Robotics & Drones About Aptiv Aptiv is a global technology leader with more than 200,000 employees across 48 countries. We develop advanced software, compute platforms, and ...

Program Manager - Robotics & Drones We are Aptiv - a global technology company with 200,000 specialists in 48 countries. We develop innovative software and build the hardware to bring autonomous ...

Program Manager - Robotics & Drones We are Aptiv - a global technology company with 200,000 specialists in 48 countries. We develop innovative software and build the hardware to bring autonomous ...

Program Manager - Robotics & Drones We are Aptiv - a global technology company with 200,000 specialists in 48 countries. We develop innovative software and build the hardware to bring autonomous ...

We're moving from a capable contract manufacturer into a true adaptive manufacturing partner -- one that serves the most technically demanding customers in drones, defense, robotics, and clean energy.

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Drones information

See Detroit, MI salary details

$28.6K

$132.6K

$267.6K

How much do drones jobs pay per year?

As of Sep 6, 2026, the average yearly pay for drones in Detroit, MI is $132,620.00, according to ZipRecruiter salary data. Most workers in this role earn between $82,456.00 and $171,824.00 per year, depending on experience, location, and employer.

What is a drone operator?

Drone operators are professionals trained to pilot unmanned aerial vehicles (UAVs), commonly known as drones. They use drones for a variety of purposes, including aerial photography, surveying land, inspecting infrastructure, delivering goods, and even monitoring wildlife. Drone operators must understand how to safely maneuver the drone, comply with aviation regulations, and often analyze the data or images collected during flights. In commercial settings, they may also need certification or licenses, depending on the country and type of operation.

What are the key skills and qualifications needed to thrive as a drone pilot, and why are they important?

To thrive as a Drone Pilot, you need strong spatial awareness, technical proficiency in operating UAVs, and typically a drone pilot certification such as the FAA Part 107 (in the U.S.). Familiarity with flight planning software, GPS systems, and camera or sensor equipment is often required. Excellent problem-solving skills, attention to detail, and effective communication set outstanding drone operators apart. These competencies ensure safe, legal, and efficient drone operations across industries such as photography, surveying, and inspections.

What are some common challenges drone operators face when working on commercial projects?

Drone operators working on commercial projects often encounter challenges such as obtaining proper flight permissions, adapting to changing weather conditions, and ensuring compliance with local and federal regulations. Additionally, operators must work closely with clients and team members to understand project requirements and deliver accurate data or imagery. Staying updated on evolving technology and troubleshooting equipment issues are also key aspects of the role.

What is the difference between Drones vs Drone Pilots?

AspectDronesDrone Pilots
CredentialsNone required for operation; certifications optional for commercial useFAA Part 107 certification required
Work EnvironmentUsed in various industries like photography, agriculture, constructionOperate drones in specific projects or jobs, often outdoors
Employer & IndustryManufacturers, service providers, hobbyistsCompanies, government agencies, media outlets

While drones refer to the devices themselves, drone pilots are licensed professionals who operate these devices for various commercial and industrial purposes. Understanding the distinction helps in choosing the right career path or service.

How do I start a career in drones?

To start a career in drones, gain knowledge of drone technology, flight operations, and safety regulations. Obtain relevant certifications such as the FAA Part 107 license if operating commercially in the United States, and develop skills in remote piloting, maintenance, and data analysis. Gaining hands-on experience through training programs or internships can also improve job prospects.

What kind of jobs can you do with drones?

Jobs with drones include aerial photography and videography for real estate, events, or media production, as well as inspections of infrastructure like power lines, bridges, and wind turbines. Drone operators often need certification, technical skills, and knowledge of safety regulations to perform tasks in industries such as agriculture, construction, surveying, and emergency response.

What are popular job titles related to Drones jobs in Detroit, MI?

For Drones jobs in Detroit, MI, the most frequently searched job titles are:

Infographic showing various Drones job openings in Detroit, MI as of August 2026, with employment types broken down into 88% Full Time, 7% Part Time, 1% Temporary, and 4% Contract. Highlights an 89% Physical, 2% Hybrid, and 9% Remote job distribution, with an average salary of $132,620 per year, or $63.8 per hour.

Software Architect - Robotics & Drones

Aptiv PLC

Troy, MI • On-site

$140 - $190/hr

Other

Posted 9 days ago


Job description

Software Architect – Robotics & Drones About Aptiv

Aptiv is a global technology leader with more than 200,000 employees across 48 countries. We develop advanced software, compute platforms, and intelligent systems that enable autonomous driving, advanced driver‑assistance systems (ADAS), connected mobility, and intelligent infrastructure. Aptiv technology is embedded in millions of vehicles worldwide and powers some of the industry's most advanced automotive platforms.

As part of our expansion into Robotics and Adjacent Markets, Aptiv is developing scalable software and embedded computing platforms for autonomous mobile robots (AMRs), drones, industrial automation, and next‑generation intelligent machines. These platforms combine embedded software, sensing, connectivity, autonomy, safety‑critical systems, and cloud‑connected architectures to enable reliable operation in demanding real‑world environments.

As a Software Architect – Robotics & Drones, you will provide technical leadership for the design, development, and deployment of next‑generation software platforms that power autonomous robotic systems. You will be responsible for defining software architecture, collaborating with the development teams, and ensuring scalable, reliable, safe, and high‑performance solutions across robotics, drone, and intelligent machine platforms. You will work at the intersection of embedded software, robotics, AI/ML, autonomy, sensing, and systems engineering, collaborating with multidisciplinary teams spanning software, hardware, systems, product strategy, and customer engineering organizations.

Key Responsibilities Software Architecture Leadership
  • Lead software architecture planning, design, implementation, and deployment for robotics and drone platforms.
  • Define, document, and maintain scalable, modular, and reusable software architectures and interfaces.
  • Participate in product/platform planning, requirements definition, and evaluation of architectural alternatives.
  • Allocate software functionality across components, middleware, services, and hardware platforms.
  • Define and ensure fulfillment of critical non‑functional requirements including performance, timing, reliability, and scalability.
  • Establish software development standards, coding guidelines, and architecture best practices.
  • Review architecture, design, code, open‑source usage, and release readiness to ensure quality and compliance.
  • Collaborate with Agile teams to evolve platform architecture and maximize software reuse.
Embedded Software & Platform Engineering
  • Architect software platforms running on embedded microprocessors, microcontrollers, and heterogeneous computing platforms.
  • Support defining resource budgets for CPU utilization, memory, storage, power consumption, bandwidth, and latency.
  • Collaborate with hardware teams to influence processor selection, sensor integration, networking, and platform trade‑offs.
  • Support development on Linux and RTOS‑based environments.
  • Guide implementation of real‑time, deterministic, and safety‑relevant software capabilities.
Systems Engineering, Quality & Customer Engagement
  • Collaborate with systems engineering teams to define customer requirements, use cases, and interface specifications.
  • Work closely with Product Development and Product Strategy teams to define platform roadmaps and feature sets.
  • Work with customers, suppliers, and stakeholders to define requirements, expected system behavior, and platform roadmaps.
  • Support new program pursuits, change requests, estimations, and customer quotations.
  • Establish performance, reliability, maintainability, and scalability metrics.
  • Drive implementation of automated testing, continuous integration, and software quality processes.
  • Support compliance with applicable industry standards and development processes.
  • Develop, analyze, and realize reusable software products and platform capabilities.
  • Support definition of functional requirements and ownership of key non‑functional requirements.
  • Align interfaces across internal and external software components and partner integrations.
  • Drive built‑in quality through architecture reviews, CI/CD, testing, and quality processes.
  • Support software DFMEA, safety, cybersecurity, and compliance activities in collaboration with cross‑functional teams.
Robotics & Autonomous Systems
  • Architect software platforms supporting AMRs, drones and industrial automation systems.
  • Collaborate with robotics teams developing perception, localization, navigation, planning, mission management, and control software.
  • Design middleware and communication frameworks leveraging technologies such as ROS 2, DDS, Ethernet, and service‑oriented architectures.
  • Define interfaces between sensors, actuators, embedded controllers, edge devices, and cloud services.
  • Support integration of cameras, radar, lidar, ultrasonic sensors, GPS/GNSS, IMUs, and other sensing technologies.
  • Drive architectural decisions for distributed and heterogeneous robotic systems.
Basic Qualifications
  • Bachelor's degree in Computer Science, Software Engineering, Computer Engineering, Electrical Engineering, Robotics, or a related discipline.
  • 8+ years of experience in embedded software development.
  • 3+ years in a software architecture, technical lead, or principal engineer role.
  • Proven experience defining software architectures for complex embedded systems.
  • Experience modeling tools such as Enterprise Architect.
  • Strong understanding of software engineering principles and embedded hardware/software architectures.
  • Experience with embedded processors and platforms from NVIDIA, Qualcomm, NXP, Renesas, AMD, Intel, TI, or similar vendors.
  • Experience with Linux-based embedded operating systems and/or RTOS environments.
  • Strong proficiency in C/C++.
  • Experience driving architecture decisions across multidisciplinary organizations.
  • Experience with the V-model development flow.
  • Strong communication and stakeholder management skills.
Preferred Qualifications
  • 12+ years of experience in embedded software and system architecture.
  • Knowledge of AI/ML, Edge Computing, IoT, or Robotics platforms.
  • Experience with robotics, autonomous systems, drones, AMRs/AGVs, industrial automation, or intelligent machines.
  • Experience with ROS 2, DDS, robotics middleware, or distributed embedded software architectures.
  • Experience integrating camera, radar, lidar, GPS, IMU, ultrasonic, and other sensor technologies.
  • Experience with Docker, CI/CD pipelines, DevOps practices, and automated software deployment.
  • Familiarity with communication protocols including CAN, Ethernet, TSN, DDS, and similar.
  • Experience with low‑level software development including SPI, I2C, UART, Ethernet, PCIe, and device drivers.
  • Familiarity with simulation and virtual validation environments such as Gazebo, Isaac Sim, AirSim, CARLA, or equivalent platforms.
  • Knowledge of functional safety standards and safety‑critical development processes, including ISO 26262, IEC 61508 or related standards.
  • Familiarity with Automotive SPICE, AUTOSAR, or equivalent structured software development methodologies.
Traits We Value
  • Strong systems‑thinking mindset with the ability to optimize across hardware and software boundaries.
  • Passion for robotics, drones, autonomous systems, and embedded technologies.
  • Ability to balance long‑term architectural vision with pragmatic product delivery.
  • Ownership mentality with a strong bias toward execution.
  • Collaborative leadership style with a passion for mentorship and technical excellence.
  • Strong problem‑solving skills and ability to navigate ambiguity.
  • Excellent communication and stakeholder engagement skills.
  • Desire to build scalable software platforms that power the next generation of autonomous and intelligent machines.

Privacy Notice - Active Candidates: https://www.aptiv.com/privacy-notice-active-candidates

Aptiv is an equal employment opportunity employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, national origin, sex, gender identity, sexual orientation, disability status, protected veteran status or any other characteristic protected by law.

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