
HPE 64GB (1x64GB) Dual Rank x4 DDR4-3200 CAS-22-22-22 Registered Smart Memory Kit
Product Highlights
- HPE 64GB (1x64GB) Dual Rank x4 DDR4-3200 CAS-22-22-22 Registered Smart Memory Kit
Specifications
General
Brand
HPE
Country Of Origin
China
Dimm Rank
Dual Rank
Dimm Type
RDIMM
Product Type
DRAM
Processor
Dimm Native Speed Mts
3200 MT/s
Memory
Dimm Capacity
64 GB
Ports
Input Voltage
1.2 V
Supported Application
HPE ProLiant Rack/Tower/BladeSystem Servers/Synergy
Power
Inp Voltage
1.2 V
Physical
Dimension
8.89 x 19.05 x 1.91 cm
Weight
0.045 KG
Product Manuals
Description
Product Details
FAQs
Frequently Asked Questions
While this memory kit is optimized for HPE servers and systems, it may also be compatible with select third-party servers that support DDR4 memory modules. However, compatibility and performance may vary, so it's recommended to consult the server's specifications and compatibility lists before purchase.
Yes, this memory kit is suitable for virtualization environments, offering high capacity, speed, and reliability to support virtualized workloads, applications, and databases, enabling efficient resource allocation, scalability, and performance optimization in virtualized server deployments.
Yes, this memory kit supports ECC (Error-Correcting Code) technology, providing advanced error detection and correction capabilities to prevent data corruption and ensure system stability and reliability, making it suitable for mission-critical and data-sensitive applications that require enhanced data integrity.
The warranty coverage for this memory kit may vary depending on the manufacturer's policies and terms. Typically, HPE memory products come with a limited warranty that covers defects in materials and workmanship for a specified period, offering peace of mind and protection against potential hardware failures.
Yes, this memory kit can be upgraded in the future by adding additional modules or replacing existing modules with higher-capacity ones, allowing businesses to adapt and scale their server infrastructure according to evolving performance and capacity requirements.
