Procero provides a software solution that optimizes compute-bound workloads on existing hardware, enhancing processing speed by 2X to 10X without requiring code changes. This technology reduces power consumption and operational costs, making it a cost-effective alternative to hardware upgrades while extending the lifespan of older systems.
Funding
Funding not disclosed
Founders
Product
Problem
Compute-intensive workloads often face performance bottlenecks due to limitations in existing hardware, leading to increased processing times, higher energy consumption, and the need for costly hardware upgrades. Optimizing these workloads typically requires complex code modifications and architectural changes.
Solution
Procero offers a software-based solution that optimizes compute-bound workloads on existing hardware, enhancing processing speed and reducing power consumption without requiring code changes. The solution employs algorithmic improvements at the system level to increase throughput and efficiency across various platforms, including CPU, GPU, and NPU-based computation. By optimizing compute performance, Procero's technology reduces operational costs, extends the lifespan of existing hardware, and improves scalability for CPU and GPU clusters. The software enhances both cloud-based and edge applications, reducing data center footprints and improving user experience.
Target Audience
The primary target audience includes professionals and organizations in gaming, AI, robotics, voice & speech recognition, computer vision, and graphics creation industries who require enhanced compute performance on existing hardware.
Features
- Algorithmic optimization of compute-bound workloads for enhanced performance
- Software-based solution adaptable to any platform, including CPU, GPU, and NPU
- Increased throughput and scalability for CPU and GPU clusters
- Reduced power consumption, leading to energy and cooling cost savings
- Real-time processing enhancements for cloud-based and edge applications
- Seamless integration without requiring code or architectural changes