Enpulsion’s Nano Lark propulsion system is designed to meet the unique mobility requirements of spacecraft up to 100kg.
The Nano Lark includes the propellant, subsystem, and power processing unit in one compact unit under 1U — enabling maximum mobility with minimal volume.
Built on a legacy of over 200 units, the Nano Lark leverages insights gained through in-orbit operation to advance our proven design with specialized components for even greater reliability.
Nano Lark features a dynamic ISP range of 1,500 to 4,500 s, enabling both high-thrust orbital maneuvers and low-thrust precision control.
Legacy-Driven Reliability
Built on a legacy of over 170 flight units, the Nano Lark leverages insights gained through in-orbit operation to advance our proven design with specialized components to provide even greater reliability.
Durable, Flexible Integration
The Nano Lark’s rugged casing shields onboard electronics from space radiation, simplifies integration, and enables flexible side mounting for enhanced durability and ease of use.
Consistent, Qualified Performance
All EEE components are procured in lot-controlled batches. Select batches are radiation-tested, ensuring each thruster traces back to a fully qualified model with improved TID and SEE tolerance.
Precision Thrust Control
Thrust is finely tuned via electrode voltages, providing exceptional control across the full thrust range and allowing operations with low thrust noise. The efficient ionization process also enables market-leading specific impulse levels.
Solid-State Safety Architecture
With no moving parts and solid-state indium propellant, the Nano Lark eliminates volatile materials and pressurized tanks. The lack of reactive propellants simplifies handling, integration, and launch procedures.
Powered by Enpulsion’s innovative FEEP technology, the Nano Lark delivers precise, adjustable thrust by using a powerful electromagnetic field to ionize and accelerate liquified metal propellant.
Indium propellant liquifies in orbit to generate finely tunable thrust, delivering efficient, precise maneuverability throughout the entire life of the mission.