Supermicro RSC-R1UG-E16A-X9 Riser Card for Server Expansion
The Supermicro RSC-R1UG-E16A-X9 Riser Card is designed to optimize server hardware configurations by providing additional PCIe slots in a compact form factor. This riser card features a robust construction to ensure reliable connectivity and performance in enterprise server environments. It is compatible with a variety of Supermicro servers, making it a versatile choice for expanding system capabilities. The card's design allows for efficient airflow and minimal obstruction, supporting high-performance computing tasks without compromising server density. Installation is straightforward, providing a seamless upgrade path for data centers seeking to enhance their hardware flexibility and scalability. Whether upgrading existing servers or building new systems, this riser card offers a dependable solution for increasing I/O options and supporting multiple expansion cards.
Features:
- Designed for server hardware expansion in enterprise environments
- Provides additional PCIe slots to increase system I/O capacity
- Robust construction ensures reliable connectivity and performance
- Compatible with various Supermicro server models for versatile deployment
- Supports high-performance computing tasks with minimal airflow obstruction
Product Information
Product Information
Shipping & Returns
Shipping & Returns
Supermicro RSC-R1UG-E16A-X9 Riser Card for Server Expansion
Supermicro RSC-R1UG-E16A-X9 Riser Card for Server Expansion
The Supermicro RSC-R1UG-E16A-X9 Riser Card is designed to optimize server hardware configurations by providing additional PCIe slots in a compact form factor. This riser card features a robust construction to ensure reliable connectivity and performance in enterprise server environments. It is compatible with a variety of Supermicro servers, making it a versatile choice for expanding system capabilities. The card's design allows for efficient airflow and minimal obstruction, supporting high-performance computing tasks without compromising server density. Installation is straightforward, providing a seamless upgrade path for data centers seeking to enhance their hardware flexibility and scalability. Whether upgrading existing servers or building new systems, this riser card offers a dependable solution for increasing I/O options and supporting multiple expansion cards.
Features:
- Designed for server hardware expansion in enterprise environments
- Provides additional PCIe slots to increase system I/O capacity
- Robust construction ensures reliable connectivity and performance
- Compatible with various Supermicro server models for versatile deployment
- Supports high-performance computing tasks with minimal airflow obstruction
Product Information
Product Information
Shipping & Returns
Shipping & Returns
Description
The Supermicro RSC-R1UG-E16A-X9 Riser Card is designed to optimize server hardware configurations by providing additional PCIe slots in a compact form factor. This riser card features a robust construction to ensure reliable connectivity and performance in enterprise server environments. It is compatible with a variety of Supermicro servers, making it a versatile choice for expanding system capabilities. The card's design allows for efficient airflow and minimal obstruction, supporting high-performance computing tasks without compromising server density. Installation is straightforward, providing a seamless upgrade path for data centers seeking to enhance their hardware flexibility and scalability. Whether upgrading existing servers or building new systems, this riser card offers a dependable solution for increasing I/O options and supporting multiple expansion cards.
Features:
- Designed for server hardware expansion in enterprise environments
- Provides additional PCIe slots to increase system I/O capacity
- Robust construction ensures reliable connectivity and performance
- Compatible with various Supermicro server models for versatile deployment
- Supports high-performance computing tasks with minimal airflow obstruction

















