IBM Power S1024 Rack-Mounted Server - 48 Power10 Cores, 8TB Memory | China Suppliers & Factory
Product Description
Power10 Processor
Supports up to 48 cores, doubling the capacity of POWER9-based systems.
AI Acceleration
Four matrix operation accelerators per core for faster AI inference.
Active Memory Mirroring
Improves system availability, reliability, and overall uptime.
Technical Specifications
| Chassis | 4U rack |
| Processor slot | Up to 2 |
| Number of cores | Up to 48 |
| Memory-(max.) | 8 TB |
| Supported operating systems | AIX, IBMi, Linux |
| Processor | IBM Power10, supporting on-demand Capacity Upgrade (CuOD) |
| Memory technology | DDIMM connected by OMI (Open Memory Interface) |
| Memory safety features | Supports transparent memory encryption |
| Internal storage | Supports up to 16 NVMe devices with native PCIe connections |
| Internal storage capacity | Up to 102.4TB |
| I/O expansion | Native PCIe 5.0 connection |
| AI Acceleration | Each core contains a matrix mathematics accelerator for AI inference |
| Consumption model | Supports the "private cloud metered capacity" model of pay-as-you-go |
| Secure Boot | Supports Trusted Boot |
Frequently Asked Questions
The IBM Power S1024 is specifically designed to run AIX, IBM i, and Linux operating systems.
The IBM Power S1024 provides twice the number of cores compared to POWER9-based servers. Additionally, the number of cores in each system is increased by 2.5 times, and memory bandwidth is increased by 2.4 times compared to the IBM Power S924.
The server supports up to 8 TB of memory and up to 102.4TB of internal storage capacity using up to 16 NVMe devices with native PCIe connections.
Each processor core features four matrix operation accelerators (matrix mathematics accelerators), which enable faster AI inference directly at data points.
The system features Trusted Boot, transparent memory encryption, and utilizes Active Memory Mirroring to increase uptime, availability, and reliability.
It supports a pay-as-you-go "private cloud metered capacity" model, allowing you to achieve cloud-like economic benefits locally.








