Lantronix

Edge AI Compute & SOM Platforms for Next-Generation UAV Autonomy & Robotics

Lantronix is a leading developer of advanced AI-powered edge compute solutions for drones and robotics, with a product portfolio that enables OEMs and system integrators to equip their platforms with cutting-edge autonomy and intelligence.

With U.S.-based headquarters and global engineering presence, Lantronix is one of the few North American providers of NDAA- and TAA-compliant SOM (system-on-module) products, offering secure and controlled production and supply chains. The company has partnered with a number of leading drone industry OEMs, including Teledyne FLIR, Gremsy, and Teal, and is also participating in the Pentagon’s Drone Dominance program.

Low-SWaP edge computing & AI for UAVs

Lantronix’ solutions offer powerful compute capabilities and excellent power efficiency in a compact and lightweight form factor, resulting in longer flight times and enhanced payload capacities. With rapid and reliable processing at the edge, they unlock real-time perception and navigation without the need for cloud services or high-bandwidth communications.

These industry-leading capabilities make them ideal for a wide range of industries and use cases, including:

  • ISR and defense
  • Emergency and disaster response
  • Real-time fault detection in utilities and infrastructure inspection
  • Multispectral crop analysis for precision agriculture
  • BVLOS operations under emerging FAA Part 108 regulations

System-on-Module Solutions

Lantronix’ embedded SOMs provide a powerful foundation for drone platform development, replacing the multiple processors used by traditional designs with a single intelligent capability that makes it easier and faster to deploy AI-based solutions. With seamless integration into virtually any platform, these modules reduce development costs and enable faster time-to-market.

Lantronix is recognized as a key Western scaling partner for Qualcomm, with over two decades of experience in leveraging its compute and connectivity solutions.

Open-Q™ 8550CS SOM

  • Based on Qualcomm® Dragonwing™ QCS8550 SoC
  • Onboard AI Engine delivers up to 48 INT8 & 12 FP16 TOPS
  • Android 13 and Linux Yocto Kirkstone

Lantronix Open-Q™ 6490CS SOM

Open-Q™ 6490CS SOM

  • Based on Qualcomm® Dragonwing QCS6490 SoC
  • Onboard AI Engine delivers up to 12.5 TOPS
  • Dedicated computer vision engine & multiple MIPI camera/display ports

Lantronix Open-Q™ 9075IQ SOM

Open-Q™ 9075IQ SOM

  • Based on Qualcomm® IQ9 Series Dragonwing® Processor
  • Onboard AI Engine delivers up to 100 INT8 TOPS
  • Image signal processor supports up to 16 concurrent video streaming cameras

Lanronix Open-Q™ 5165RB SOM

Open-Q™ 5165RB SOM

  • Smallest Qualcomm® Dragonwing™ QRB5165 SoC-based module on the market
  • Onboard AI Engine delivers up to 15 TOPS
  • Ubuntu 18.04 Linux with support for ROS 2.0

Development Kits

Lantronix SOM Development Kits pair a production-ready SOM with everything developers need to start building right out of the box, providing an easy and convenient method of evaluating and prototyping drone and AI applications.

The System-On-Module development kits offer a wide variety of I/O and connectivity options, as well as JTAG and debug ports.

Drone Reference Platform

Lantronix Drone Reference PlatformBuilt around the Qualcomm® Dragonwing™ QCS8550 — a processor purpose-engineered for low-SWaP (Size, Weight, and Power) performance — the Lantronix Drone Reference Platform gives OEMs and developers a proven, NDAA-compliant foundation to move from concept to flight-ready prototype in weeks, not months.

Lantronix Drone Reference PlatformThe platform is MAVLink-compatible, working seamlessly with popular external flight controllers such as Unusual Machines’ H7 or Pixhawk. With pre-integrated hardware and software, development teams can bypass the most time-consuming stages of design, validation, and testing — dramatically compressing time to market while reducing development cost.

Lower power. Longer missions. The Qualcomm Dragonwing draws approximately 10W compared to 25W for competing solutions, translating to 8–15% longer flight times. ~4.8 INT8 TOPS per watt at a ~10W operating point, excellent SWAP resulting in more mission flexibility and AI workloads. For commercial and defense operators, that efficiency gain means greater operational range, enhanced mission capability, and real cost savings in the field.

Better drone fit. Lower power and smaller cooling needs improve SWaP for small UAVs.

AI at the edge, built in. The platform is compatible with the FLIR Hadron 640R thermal camera featuring onboard AI-powered detection and tracking — ready for surveillance, search and rescue, infrastructure inspection, monitoring, and more. Edge AI processing, sensor fusion, secure boot, and encrypted communications are all part of the stack, not afterthoughts.

Flexible by design. Compatible with a wide range of multirotor and fixed-wing configurations, so your architecture can scale as your program grows.

Modular by design. Built to support a wide range of drone platforms and mission profiles — from agriculture and inspection to ISR, search and rescue, and defense applications. The platform works out of the box with critical drone components, while Lantronix continues to expand its hardware and software ecosystem to give customers more integration options as their programs scale.

Backed by 20+ years of embedded engineering expertise, 200+ engineers, and a track record of 2,000+ projects delivered, Lantronix brings the full-stack capability — AI/ML, imaging, connectivity, and compliance — that serious drone programs demand.

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