LEO–GEO
High bandwidth storage for next gen AI compute in space.
Radiation-tolerant storage for space computing, from low Earth orbit to geostationary orbit.
Space Grade Ava-Storage
Leveraging the power of Ava-MRAM™, Avalanche’s Storage products are tailor made for the increasingly contested environment of Space, offering scalable solutions to meet FUTURE constellation requirements. Uniquely architected for high reliability, radiation & EMP immunity AND accelerated processing, Ava-Storage solutions stand ready to address evolving mission needs for Defense and Commercial Space alike. Based on industry standard form factors and interfaces, these drives enable distributed storage solutions for scalable missions from VLEO through GEO, providing robust store and forward as well as a High-Performance Computing in Space.
Density: 4GB to 1TB+
Standard Form factors: M.2, VNX+, SpaceVPX
Supports Data Streaming and Random Access
Radiation & EMP Tolerant
Yottabyte Endurance
Processing Acceleration
Capable of High IOPS random operation under radiation in Space making Model generation in Space a reality.
Storage is one part of the trusted architecture: Ava-Storage unlocks new capabilities in Orbit. It holds critical recovery images so systems can be restored to a known good state and brings a standard compute paradigm to Space.
Four criteria working together
By storing restore points in a trusted storage system, recovery is assured
Using components qualified up to NASA-INST-001 PEMS level 1 and tested to the highest standards for Vibration, shock and EMP
LEO–GEO
Radiation-tolerant storage for space computing, from low Earth orbit to geostationary orbit.
VLEO
Radiation-tolerant store for operating system recovery as well as distributed data File architecture
Avalanche defines Space Grade Ava-Storage by four criteria
01 // HIGH-REL DATA CAPTURE
Radiation-tolerant Ava-MRAM commits data directly on capture and keeps it protected for the mission.
MEDIA // AVA-MRAM
02 // EXTENDED CAPTURE LIFE
Ava-MRAM extends service life beyond conventional storage. All-MRAM drives sustain yottabytes of writes while hybrid drives use Ava-MRAM to reduce flash wear and protect data integrity.
ENDURANCE // BEYOND CONVENTIONAL
03 // MULTIPROCESS SUPPORT
Ava-MRAM’s random rather than sequential access delivers high IOPS, allowing concurrent workloads to run without contention.
RANDOM I/O // CONCURRENT ACCESS
04 // SURVIVAL WITHOUT COMPROMISE
Every complete drive undergoes rigorous shock, vibration and EMP testing at the system level, plus radiation testing at the component level.
TESTING // SHOCK + VIBRATION + EMP
Low power system recovery point in a standard M.2 slot. Provides Root of Trust for a distributed network in VLEO, allowing nodes to be added, removed and recovered without the network going down.
Explore M.2
High-throughput assurance from the same NVMe bay datacenters rely on, bringing every VLEO node up from a verified image.
Explore U.2
Petabyte-level endurance drive capable of improving NAND performance in orbit using Ava-MRAM as a cache
Explore 3U SpaceVPX Hybrid
A truly remarkable all Ava-MRAM drive with True Random Access, Infinite write capability for missions to the Moon and beyond.
Request for infoWhen data integrity defines mission success, Ava-MRAM becomes the foundation for Trusted Storage. Ensure trust in both data capture and data recall in the harsh conditions of space