HP Server rp3410-2 Support Expertise

Independent HP Server rp3410-2 Support Expertise



HP Server rp3410-2HP has designed the HP rp3400 server series to get the most out of the powerful PA-8900 processor by integrating the processor with the HP Scalable Processor Chipset zx1. This chipset offers decreased memory latency and increased memory bandwidth, enabling the servers to achieve even greater performance.
The HP rp3410-2 Server is available with your choice of one or two PA-8900 800 MHz processors, up to 6 GB of memory, and two PCI-X slots-and it's an easy in-box upgrade to the HP rp3440-4 Server, providing outstanding investment protection.
TheHP zx1 Chipset contained in the HP rp3400 server series is specifically designed for use with both the PA-8900 processor and the IntelŪ ItaniumŪ 2 processor, making it both easy and effective to perform an in-box upgrade from the HP rp3400 server series to the HP Integrity rx2620-2 Server.

Specifications:

  • 1 or 2 x PA-8800 800MHz processors
  • Up to 6GB DDR memory
  • Up to 3 x 36GB/73GB/146GB Hot Plug Ultra2 SCSI 15k rpm disks
  • 2 GB/s aggregate I/O slot bandwidth
  • 2 PCI-X hot-plug I/O card slots
  • Hot-swap, redundant power supplies; Redundant (2N+1) input power; Hot-swap, redundant cooling fans
  • Core I/O: 10/100/1000Base-T LAN, Ultra3 SCSI, management LAN, 3 serial ports
  • Supports HP-UX 11i ver 1
 

Features:

  • Latest generation of PA-RISC PA-8900 processor
  • HP Scalable Processor Chipset zx1
  • Server chassis shared with HP Integrity rx2620-2 Server
  • High-availability clustering integration with workload management
  • HP-UX Virtual Server Environment with HP Workload Manager
  • Optional Level 1 RAID
 

Benefits:

  • Higher performance than competitive RISC platforms
  • Easy in-chassis upgrade from PA-RISC to IntelŪ ItaniumŪ 2 processors
  • Increased system resource utilization while maintaining service levels
  • Automatic resource allocation, simplified management, and improved system usage
  • Mirror disks for additional fault tolerance and performance