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Mesh Rider

Explore the technology behind every connection.

  • Why Mesh Rider

Capabilities

Connectivity across range, spectrum and changing conditions.

  • Long Range
  • Electronic Warfare
  • Mesh
  • Supply Chain
  • High Throughput
  • Multiband

Patents

Explore our innovations and the latest software releases.

  • Patents
Doodle Labs' New Dual RadioBlogIntroducing Mesh Rider® Dual Radio: Two independent bands. One unbreakable link.

Domain

Connect platforms across air, land and sea.

  • Air
  • Land
  • Sea
  • All domains

Industry

Find the right communications for your mission.

  • Defense
  • Commercial
  • Public Safety
Doodle Labs' New Dual RadioBlogIntroducing Mesh Rider® Dual Radio: Two independent bands. One unbreakable link.AUSA 2026 BannerEventJoin Doodle Labs at AUSA 2026 October 12-14 in DC

Radios

Find a Mesh Rider radio for your platform.

  • Nano²
  • Mini
  • OEM
  • Wearable
  • Accessories

Amplifiers

Extend the reach of your Mesh Rider radio.

  • Boost

Software

Manage, monitor and optimize your network.

  • Sense EW
  • TacOps
  • NMS
Doodle Labs' New Dual RadioBlogIntroducing Mesh Rider® Dual Radio: Two independent bands. One unbreakable link.

Explore resources

The latest stories, insights and events from Doodle Labs.

  • Blog
  • Events
  • Webinars
  • Case Studies
  • Podcasts
  • All resources
Doodle Labs' New Dual RadioBlogIntroducing Mesh Rider® Dual Radio: Two independent bands. One unbreakable link.AUSA 2026 BannerEventJoin Doodle Labs at AUSA 2026 October 12-14 in DCDoodle Labs Nano square radioBlogNano²: A Full-MIMO Radio Built for SWaP-Constrained Drones
Technology

Mesh Rider

Explore the technology behind every connection.

  • Why Mesh Rider

Capabilities

Connectivity across range, spectrum and changing conditions.

  • Long Range
  • Electronic Warfare
  • Mesh
  • Supply Chain
  • High Throughput
  • Multiband

Patents

Explore our innovations and the latest software releases.

  • Patents
Doodle Labs' New Dual RadioBlogIntroducing Mesh Rider® Dual Radio: Two independent bands. One unbreakable link.
Solutions

Domain

Connect platforms across air, land and sea.

  • Air
  • Land
  • Sea
  • All domains

Industry

Find the right communications for your mission.

  • Defense
  • Commercial
  • Public Safety
Doodle Labs' New Dual RadioBlogIntroducing Mesh Rider® Dual Radio: Two independent bands. One unbreakable link.AUSA 2026 BannerEventJoin Doodle Labs at AUSA 2026 October 12-14 in DC
Products

Radios

Find a Mesh Rider radio for your platform.

  • Nano²
  • Mini
  • OEM
  • Wearable
  • Accessories

Amplifiers

Extend the reach of your Mesh Rider radio.

  • Boost

Software

Manage, monitor and optimize your network.

  • Sense EW
  • TacOps
  • NMS
Doodle Labs' New Dual RadioBlogIntroducing Mesh Rider® Dual Radio: Two independent bands. One unbreakable link.
Resources

Explore resources

The latest stories, insights and events from Doodle Labs.

  • Blog
  • Events
  • Webinars
  • Case Studies
  • Podcasts
  • All resources
Doodle Labs' New Dual RadioBlogIntroducing Mesh Rider® Dual Radio: Two independent bands. One unbreakable link.AUSA 2026 BannerEventJoin Doodle Labs at AUSA 2026 October 12-14 in DCDoodle Labs Nano square radioBlogNano²: A Full-MIMO Radio Built for SWaP-Constrained Drones
About
Tech LibraryContact Us →
Blog

Latest articles

Doodle Labs' New Dual Radio

Introducing Mesh Rider® Dual Radio: Two independent bands. One unbreakable link.

Learn how the Mesh Rider Dual Radio minimizes single points of failure with its dual-band capability for secure communication.

Doodle Labs Nano square radio

Nano²: A Full-MIMO Radio Built for SWaP-Constrained Drones

Discover how Nano² combines a compact stacked design with full MIMO capability to support drone communications within tight size, weight and power limits.

Doodle Labs Boost extending range of drones

Boost C-Band: Extending Mesh Rider® Range and Jam Resistance Without Draining the Battery 

Explore how Boost C-Band uses on-demand amplification to extend Mesh Rider range and improve jam resistance while managing power use on battery-powered drones.

Doodle labs Nano squared radio

Why Radio SWaP Optimization Is the Hardest Subsystem Tradeoff in Drone Design

Explore why radio size, weight and power are difficult to optimize together, and how RF performance, antennas and range shape drone subsystem tradeoffs.

Doodle Labs product line

How to choose the radio for your drone: Guide for OEMs to get comms right the first time

Plan a drone datalink around mission requirements, range, spectrum, video and control traffic, with practical radio selection considerations for OEMs.

How the Doodle Labs Supply Chain Helps Drone OEMs Scale  — featured image

How the Doodle Labs Supply Chain Helps Drone OEMs Scale 

See how Doodle Labs addresses manufacturing capacity, component sourcing and lead times to help drone OEMs move from prototype development to production.

FPV drone

Analog vs. Digital Drone Comms in the Autonomy Era

Compare analog and digital drone communication tradeoffs, from FPV latency to networked data, telemetry and the demands of increasingly autonomous systems.

IF800+MicaSense Altum-PT drone

NDAA Compliance in the Drone Industry: It Starts at the Datalink

Explore how datalink hardware and radio sourcing affect NDAA-related drone procurement requirements, and why communications deserve attention early in design.

Doodle Labs Supply Chain

Drone Dominance at Scale: Why Supply Chain Matters More Than Specs

Explore why production capacity, sourcing and lead times matter alongside radio specifications when drone programs need to scale from prototypes to fleets.

Doodle Labs Mesh rider radios

Winning the Spectrum: The Rise of Multi-Band Resilient Communications

Learn why multi-band radio links add flexibility beyond a single frequency band and how spectrum agility supports resilient drone communications.

Soldier operating GPS device for drones

How GPS Denial Is Influencing Communications in Contested Environments

Explore how GPS denial affects timing, synchronization and coordination, and why resilient communications matter for drones in contested environments.

Drone in flight

True autonomy demands strong, reliable connectivity.

Explore why autonomous systems still need resilient command links, real-time situational awareness and mesh networking for human oversight and coordination.

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