UnifabriX develops the MAX™ Software-Defined Memory Pool, which utilizes CXL technology to provide on-demand memory bandwidth and capacity, enabling efficient resource allocation in data-intensive environments. This solution addresses the limitations of traditional memory architectures by offering scalable memory density and performance telemetry, enhancing overall infrastructure efficiency.
Funding
$10.6M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

Founders
Product
Problem
Modern data centers face limitations in memory bandwidth and capacity due to the static allocation of traditional memory architectures. This inflexibility leads to inefficient resource utilization, hindering the performance of data-intensive applications. The lack of real-time performance telemetry further complicates resource management and optimization.
Solution
UnifabriX offers the MAX™ Software-Defined Memory Pool, a CXL-based solution that provides on-demand memory bandwidth and capacity. This technology enables dynamic allocation of memory resources, optimizing performance for demanding workloads. The MAX™ Memory Pool leverages an embedded CXL 3.1 switch, backward compatible with CXL 1.1 and 2.0, and high-performance CXL over 112G serial transport. By offering scalable memory density and real-time performance telemetry, UnifabriX enhances overall infrastructure efficiency and enables Memory-as-a-Service capabilities.
Target Audience
The primary target audience includes data centers, AI labs, and enterprises that require high-performance, scalable memory solutions for data-intensive applications.
Features
- Software-Defined Memory Pool for dynamic allocation of memory bandwidth and capacity
- Market-leading density up to 32TB DDR5 in 2U
- Embedded CXL 3.1 Switch with Backend Fabric Ports, backward compatible with CXL 1.1 and CXL 2.0
- High-performance CXL over 112G serial transport, comparable in bandwidth with NVLink 4.0
- Adaptive Memory Sharing for optimized resource utilization
- Software-Defined Autonomous Tiering for automated data placement
- Performance Telemetry for real-time monitoring and optimization
- Enterprise-grade RAS with HA support