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AUSA 2021: Logos Technologies Unveils MicroKestrel Wide-Area Sensor for Tethered UAS

World’s smallest wide-area motion imagery (WAMI) system, MicroKestrel delivers persistent surveillance to a whole new group of military and homeland security sensor operations

FAIRFAX, Va.— September 23, 2021 — Logos Technologies LLC, a leader in wide-area motion imagery (WAMI), announced today that it will be unveiling its new MicroKestrel sensor for small, tethered, multirotor-type unmanned aerial systems (UASs) at the upcoming Association of the United States Army (AUSA) Meeting & Exposition, in Washington, D.C.

When mounted on a tethered UAS and hovering at 200 feet, a single MicroKestrel can image three square kilometers, tracking every vehicle and detecting every moving dismount within its 180-degree field of regard. The WAMI system can also cue high-definition video cameras for close-in inspection should an operator require a positive identification of a target.

“The amazing thing, though, is MicroKestrel’s weight. At just under 5 pounds, the new WAMI system is so light that some tethered UAS can actually accommodate two units, each pointed in a different direction,” said Doug Rombough, VP of Business Development for Logos Technologies. “In such a doubled-up configuration, you get twice the coverage area and a 360-degree field of view.”

The idea of getting WAMI on a small, tethered unmanned aerial vehicles once seemed impossible. Now, these sensors will be able to go on tethered UAVs or free-flying UAVs that have been connected to a third-party tethering station. This greatly expands the types of operators who will be able to use WAMI.

“People who would never have access to runway or catapult-launched UAVs, let alone big Predators, can pop open a container, set up a tethered UAV, and launch a WAMI sensor into the air,” said Rombough. “Think about what that means for base protection, event security, or other mission sets.”

Logos Technologies will be showcasing MicroKestrel and other sensor systems at the company’s booth (No. 1143) at AUSA, on October 11-13.

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