Solving Critical Fluid Management Challenges Beyond Earth Orbit

Long-duration missions demand reliable fluid management, contamination control, and thermal performance. Mott helps aerospace engineers solve these challenges with flight-proven filtration, flow control, and porous media technologies.

The Deep Space Reality: What Missions Are Up Against

Operating beyond Earth orbit introduces engineering challenges that traditional aerospace systems were never designed to address.

Contamination Control

Protect propulsion systems, scientific instruments, and life-support equipment from harmful particulate contamination.

Fluid & Gas Management

Enable reliable fluid acquisition, transfer, and control in microgravity and reduced-gravity environments.

Extreme Thermal Conditions

Maintain performance through harsh thermal cycling experienced during lunar day/night transitions and deep-space operations.

SWaP Constraints

Reduce size, weight, and power requirements without sacrificing reliability or performance.

Cryogenic Propellant Management

Improve storage, transfer, and utilization of cryogenic propellants for lunar, cislunar, and deep-space missions.

How Mott Solves Lunar & Deep Space Challenges

Mott combines decades of aerospace expertise with advanced porous metal, mesh, and additive manufacturing technologies to help engineers improve reliability, reduce risk, and optimize system performance.

60+ years engineering filtration, flow, and thermal technologies for aerospace applications
Flight-proven solutions supporting spacecraft, launch systems, and exploration programs
Advanced porous media and additive manufacturing capabilities for complex system requirements
AS9100-certified, U.S.-based manufacturing and engineering support

Why Aerospace
Teams Work With Mott?

Trusted by Industry Leaders

Proven in Lunar Exploration

Supporting NASA's PRIME-1 Lunar Mission

Mott's custom flow control assembly successfully completed operational testing on the lunar surface as part of NASA's PRIME-1 mission. The technology supported volatile gas sampling from lunar regolith, helping advance future lunar exploration and resource utilization efforts.

Supporting Human Lunar Exploration

Mott filtration technology was selected for the Gateway lunar space station's HALO module, supporting critical Environmental Control and Life Support System functions designed to provide contaminant-free breathing gases in crewed environments.

Lunar & Deep Space Solutions

Mott supports a range of mission-critical systems across lunar exploration, habitation, and deep space programs.

Mesh Filters

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Chemical Propulsion Filter

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Flow Restrictors

Electric Propulsion Filter

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3D Printed STE

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Flow Restrictors

Flow Manifolds

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ECLSS

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Frequently Asked Questions

Lunar and deep-space missions face unique challenges, including contamination control, microgravity fluid management, extreme thermal cycling, strict size, weight, and power (SWaP) requirements, and long-duration operation without maintenance.

Particulate contamination can impact propulsion systems, valves, regulators, scientific instruments, and life-support equipment. Effective filtration helps improve reliability, protect sensitive hardware, and reduce mission risk.

Spacecraft use specialized technologies such as Surface Tension Elements (STEs), Propellant Management Devices (PMDs), and precision flow-control components to acquire, transport, and manage fluids when gravity is unavailable.

Yes. Mott technologies have supported deep-space exploration and lunar missions, including NASA’s Deep Space 1 mission and NASA’s PRIME-1 lunar mission. Mott solutions have also been used across spacecraft, propulsion systems, scientific instruments, and life-support applications.

Solve Your Lunar & Deep Space Challenges Before They Impact Mission Success

Whether you’re developing lunar landers, habitat systems, resource utilization technologies, or deep space exploration platforms, Mott can help solve complex contamination control, fluid management, thermal management, and reliability challenges.

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