A More Resilient Power Infrastructure
CPS Metal Matrix Composites help modernize energy systems with lighter, longer-lasting, thermally efficient components that improve performance and reduce waste.

Custom Composites
Lightweight composite materials for radiation shielding and thermal energy storage.
Superior Performance
Structural metal matrix composites for improved performance and reliability.
Long Term Durability
Robust thermal management solutions for long service life.
Strengthening the world’s energy infrastructure.
In a world of growing energy demand, reliability isn’t optional – it’s engineered. Extreme thermal cycling, fatigue, and radiation exposure can degrade traditional metals over time, causing system fatigue and costly downtime.
CPS Technologies solves these challenges with advanced Metal Matrix Composites that combine the strength of aluminum with other materials, ensuring unmatched heat transfer and mechanical durability. Lighter, cooler, and more resilient, CPS solutions help OEMs modernize energy systems, reduce maintenance, and support the transition to sustainable, high-efficiency power infrastructure.
Micro Case Study
Base Plate Delamination
CPS encountered a large telecom company that struggled with the common problem of copper base plate delamination. As Cu base plates tend to detach from substrates after a certain cycling threshold is met, the client had problems maintaining infrastructure across their many cellular base stations.
CPS came on the scene and converted their copper base plate infrastructure into our proprietary AlSiC matrix composites. This allowed the base plates to better diffuse heat across thermal cycles and prevent delamination over time (CPS’ AlSiC base plates do not delaminate even after tens of thousands of cycles). These materials provided a long-term solution for the client, producing benefits to costs, durability, and reliability.
CPS Energy Solutions Can Change Your World
Our experts specialize in custom energy solutions that offer superior performance and reliability.

