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Dynovas Inc SBIR Phase I Award, May 2021

A SBIR Phase I contract was awarded to Dynovas Inc. in May, 2021 for $124,948.0 USD from the NASA.

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Contents

sbir.gov/node/2117013
Is a
SBIR/STTR Awards
SBIR/STTR Awards

SBIR/STTR Award attributes

SBIR/STTR Award Recipient
Dynovas Inc.
Dynovas Inc.
0
Government Agency
NASA
NASA
0
Award Type
SBIR0
Contract Number (US Government)
80NSSC21C01730
Award Phase
Phase I0
Award Amount (USD)
124,9480
Date Awarded
May 13, 2021
0
End Date
November 19, 2021
0
Abstract

Dynovasrsquo; Motorless Extension, Leveling, and Tracking (MELT) array system eliminates motors from all operations of a modular lunar surface solar array. The elimination of motors with the MELT array system can: increase weight efficiency to exceed 75 W/kg, increase volume efficiency to exceed 20 kW/m3, and be compatible with any array power module design (e.g., Dynovasrsquo; MAD Energy array, NGC UltraFlex array, DSS ROSA array, etc.) while providing a dust resistant method of deployment. The MELT array system utilizes smart material actuators (e.g., piezoelectrics and/or shape memory alloys) in a ldquo;caterpillarrdquo; configuration to achieve both the necessary deployment force and translational distances for extension, rotation, and leveling. The actuation devices will be mounted to a bi-stable composite substrate. The bistable composite substrate will provide rigidity in the stowed and deployed state such that the force on the actuators is negligible except when actuating. Minimizing the force on the actuators except when operating will minimize the power draw and maximize the lifetime of the motorless system.nbsp;nbsp;nbsp;nbsp;nbsp;nbsp;nbsp;nbsp;nbsp;nbsp;nbsp;nbsp;nbsp; When realized, the MELT array system will provide NASA and space exploration OEMs with a modular and scalable base system for the 10 m extension, 360deg; rotation for sun tracking, and 15deg; terrain leveling with a dust resistant universal motorless actuation package. The MELT array system smart material caterpillar also provides cross-cutting benefits to the array, including: inherent load limiting via voltage input, ability for integration of structural health monitoring capabilities within the composite, active vibration tuning for dampening and dust mitigation, and general applicability to other deployable structures.

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