HPE MSA 2062 16Gb Fibre Channel 24SFF Storage

129388235 UZS

The HPE MSA 2062 is an all-flash, hybrid storage system designed to deliver affordable, hands-free application acceleration to small and remote offices. Don’t let the low cost fool you. It gives you a combination of simplicity, flexibility, and advanced features you wouldn’t expect from an entry-level array.

Description

Description

The HPE MSA 2062 is an all-flash, hybrid storage system designed to deliver affordable, hands-free application acceleration to small and remote offices. Don’t let the low cost fool you. It gives you a combination of simplicity, flexibility, and advanced features you wouldn’t expect from an entry-level array.

Control
Dual

Data Cache
24 GB

Number of Drives
12LFF/24SFF

Type Drive
SSD, SAS,NL-SAS

RAID Level
RAID1,5,6,10,MSA DP+

Port
16 GB FC, 10 GB iSCSI, 12 GB SAS

JBOD Expansion
3

JBOD Expansion Type
Mixed Expansion Support: LFF, SFF JBOD

Data Protection
Snapshots, Volume Copy, Remote Copy, Fault-Tolerant Rebalancing Bandwidth

Power
1*AC + 1*AC 100-240VAC, 50/60Hz,
4.5-1.9A; 48-60VDC, 10.4A/8.3A

Dimensions
12LFF/24SFF: 89.0mm x 483mm x 508mm

Additional information

Additional information

Бренд

HPE

Reviews (0)

Reviews

There are no reviews yet.

Be the first to review “HPE MSA 2062 16Gb Fibre Channel 24SFF Storage”

Your email address will not be published. Required fields are marked *

Shipping & Delivery

Vestibulum curae torquent diam diam commodo parturient penatibus nunc dui adipiscing convallis bulum parturient suspendisse parturient a.Parturient in parturient scelerisque nibh lectus quam a natoque adipiscing a vestibulum hendrerit et pharetra fames.Consequat net

Vestibulum parturient suspendisse parturient a.Parturient in parturient scelerisque nibh lectus quam a natoque adipiscing a vestibulum hendrerit et pharetra fames.Consequat netus.

Scelerisque adipiscing bibendum sem vestibulum et in a a a purus lectus faucibus lobortis tincidunt purus lectus nisl class eros.Condimentum a et ullamcorper dictumst mus et tristique elementum nam inceptos hac vestibulum amet elit