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TECHNOLOGY TRANSFER OPPORTUNITY: Lunar Experiment Support System and Handling (LESSH) Battery Charger Module (BCM) (GSC-TOPS-362)

NATIONAL AERONAUTICS AND SPACE ADMINISTRATION › NASA MARSHALL SPACE FLIGHT CENTER

Response deadlineAug 11, 2027 4:00 PM EDT
View official notice on SAM.gov (opens in a new tab)
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Key decision factors

Response deadline
Aug 11, 2027 4:00 PM EDT
Posted
Aug 11, 2026 12:00 AM EDT
Notice type
Special Notice
Set-aside
Not provided or not applicable
NAICS
927110
PSC
9999
Place of performance
Not specified
Current status
Open

Notice details

Official status
Open
Normalized group
Other
Notice ID
b6753911f0874ebc9c8f41d74b05c0f4
Solicitation number
T2P-GSFC-00071

Description

Displayed as sanitized plain text from SAM.gov. Retrieved Aug 15, 2026 8:02 PM EDT.

NASA’s Technology Transfer Program solicits inquiries from companies interested in obtaining license rights to commercialize, manufacture and market the following technology. License rights may be issued on an exclusive or nonexclusive basis and may include specific fields of use. NASA provides no funding in conjunction with these potential licenses. THE TECHNOLOGY: Innovators at NASA’s Goddard Space Flight Center have developed a groundbreaking extravehicular activity (EVA)-compatible Battery Charger Module (BCM) as part of the Lunar Experiment Support System and Handling (LESSH) package. This first-of-its-kind technology is designed to provide wired battery charging capabilities to astronauts on the lunar surface or other harsh environments. With the Artemis III mission and beyond, NASA plans to deploy cutting-edge science instruments near the lunar South Pole landing site. To support extended lunar science operations, the EVA-compatible LESSH BCM offers seamless recharging and reliable hard-line data transfer at the modular interface bank on the Human Landing System (HLS) or other Artemis systems (rovers, vehicles, habitats, etc.). Engineered for astronaut ease-of-use, the LESSH BCM delivers an ergonomic interface to connect instruments to power and data systems. By combining battery charge monitoring with flexible data transfer capabilities, the BCM empowers astronauts to extend the scope and duration of operations on the Moon. The NASA invention is integral to creating a recharging infrastructure that enables sustainable, long-term lunar exploration. NASA’s LESSH BCM is a compact, high-performance, ruggedized system designed to support extended science operations in harsh lunar environments. With a mass of 9.4 kg and dimensions of 50 x 25 x 10 cm, the BCM is engineered for seamless integration with the interface bank on the HLS. A 1.5-meter flexible harness with an EVA-compatible connector and removable dust cover enables reliable operation in austere environments. Astronaut-operated controls, such as a guarded power switch and LED indicators, simplify usability and reduce the potential for errors during high-stakes lunar operations. The BCM is optimized for safety and efficiency, incorporating state-of-the-art power and charging capabilities. It supports charging of 28V astronaut-rated batteries with a power output rated at 215W and integrates a battery pre-heater to maintain optimal performance in extreme temperatures. The BCM features a 4-hour charge time with software adjustability for charging parameters such as current, voltage, overvoltage, and undervoltage setpoints. Battery longevity is ensured through passive rebalancing of cell voltages and advanced safety features. Its 2-fault tolerant hardware and adjustable safety setpoints safeguard against potential hazards. Additionally, the BCM supports 1000BASE-T Ethernet pass-through for high-speed data transfer. Originally designed to extend the length of lunar surface science experiments by enabling astronauts to recharge instrumentation, NASA’s LESSH BCM may be desired by companies seeking to operate sensors on the lunar or Martian lunar surface. The design may also be suitable for terrestrial applications involving harsh environments where interchangeable sealed sensors must operate on their own or with rovers, robotics, and drones. The BCM is at technology readiness level (TRL) 4 (component and/or breadboard validation in lab) and is available for patent licensing. To express interest in this opportunity, please submit a license application through NASA’s Automated Technology Licensing Application System (ATLAS) by visiting https://technology.nasa.gov/patent/GSC-TOPS-362 If you have any questions, please e-mail NASA’s Technology Transfer Program at Agency-Patent-Licensing@mail.nasa.gov with the title of this Technology Transfer Opportunity as listed in this SAM.gov notice and your preferred contact information. For more information about licensing other NASA-developed technologies, please visit the NASA Technology Transfer Portal at https://technology.nasa.gov/ These responses are provided to members of NASA’s Technology Transfer Program for the purpose of promoting public awareness of NASA-developed technology products, and conducting preliminary market research to determine public interest in and potential for future licensing opportunities. No follow-on procurement is expected to result from responses to this Notice.

Contacts

NASA’s Technology Transfer Program
Primary
Agency-Patent-Licensing@mail.nasa.goV

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