SSD Selector

Optimize your HPE Servers with KIOXIA solid state drives to maximize performance and efficiency for your enterprise customers.

SSD Selector Performance Overview

Select Your Application

Key Performance Metrics

* Table can be scrolled horizontally.

Sequential Read Sequential Write Random Read Random Write
✔       

* Table can be scrolled horizontally.

Optimal Capability Recommendation Workload Criteria
Max Performance
Enterprise NVMe
 High read throughput to enable fast transfer of datasets or models into compute resources (CPU/GPU). High write throughput to enable quicker checkpointing. Low latency is critical to keep compute resources optimized. NVMe protocol supports GPU workloads. 
Optimized Performance
Data Center NVMe

If you have SAS infrastructure, contact us. KIOXIA SAS SSDs provide uncompromising performance and reliability.

Key Performance Metrics

* Table can be scrolled horizontally.

Sequential Read Sequential Write Random Read Random Write
      ✔ 

* Table can be scrolled horizontally.

Optimal Capability Recommendation Workload Criteria
Max Performance
Enterprise NVMe
Workload requires low write latency and high IOPS for random write to serve many uses and constant data updates for financial use cases.
Optimized Performance
Data Center NVMe

If you have SAS infrastructure, contact us. KIOXIA SAS SSDs provide uncompromising performance and reliability.

Key Performance Metrics

* Table can be scrolled horizontally.

Sequential Read Sequential Write Random Read Random Write
     

* Table can be scrolled horizontally.

Optimal Capability Recommendation Workload Criteria
Max Performance
Enterprise NVMe
  Transaction log files require high sequential write throughput. Balanced read and write IOPS are necessary for fast query response times for these mixed workloads.
Optimized Performance
Data Center NVMe
Balanced Capacity & Performance for SAS Servers

If you have SAS infrastructure, contact us. KIOXIA SAS SSDs provide uncompromising performance and reliability.

Key Performance Metrics

* Table can be scrolled horizontally.

Sequential Read Sequential Write Random Read Random Write
   

* Table can be scrolled horizontally.

Optimal Capability Recommendation Workload Criteria
Optimized Performance
Data Center NVMe
High capacity and low cost are the most important elements of file services, but latency can also be a major consideration as your user concurrency scales up.
Balanced Capacity & Performance for SAS Servers

If you have SAS infrastructure, contact us. KIOXIA SAS SSDs provide uncompromising performance and reliability.

Key Performance Metrics

* Table can be scrolled horizontally.

Sequential Read Sequential Write Random Read Random Write
     

* Table can be scrolled horizontally.

Optimal Capability Recommendation Workload Criteria
Max Performance
Enterprise NVMe
High sequential read throughput is required for business intelligence and data analytics, to support high query volumes from multiple data sources. Business needs will change the requirements for performance based on cost and analytics demand. 
Optimized Performance
Data Center NVMe
Balanced Capacity & Performance for SAS Servers

If you have SAS infrastructure, contact us. KIOXIA SAS SSDs provide uncompromising performance and reliability.

Key Performance Metrics

* Table can be scrolled horizontally.

Sequential Read Sequential Write Random Read Random Write
   

* Table can be scrolled horizontally.

Optimal Capability Recommendation Workload Criteria
Balanced Capacity & Performance for SAS Servers High capacity, density, cost, and sequential read and write throughput are driving factors in these type of workloads, to serve very large files for medical usage.

If you have SAS infrastructure, contact us. KIOXIA SAS SSDs provide uncompromising performance and reliability.

Key Performance Metrics

* Table can be scrolled horizontally.

Sequential Read Sequential Write Random Read Random Write
   

* Table can be scrolled horizontally.

Optimal Capability Recommendation Workload Criteria
Optimized Performance
Data Center NVMe
Content management workloads require low latency and good throughput to serve large data sets to many users in parallel. Sequential read and write, low latency and density are major factors in these use cases.
Balanced Capacity & Performance for SAS Servers

If you have SAS infrastructure, contact us. KIOXIA SAS SSDs provide uncompromising performance and reliability.

Key Performance Metrics

* Table can be scrolled horizontally.

Sequential Read Sequential Write Random Read Random Write
   

* Table can be scrolled horizontally.

Optimal Capability Recommendation Workload Criteria
Optimized Performance
Data Center NVMe
Read and write throughput are the primary workload characteristic required for data lakes. High capacity and cost are also factors for choosing these specific drives.
Balanced Capacity & Performance for SAS Servers

If you have SAS infrastructure, contact us. KIOXIA SAS SSDs provide uncompromising performance and reliability.

Key Performance Metrics

* Table can be scrolled horizontally.

Sequential Read Sequential Write Random Read Random Write
   

* Table can be scrolled horizontally.

Optimal Capability Recommendation Workload Criteria
Max Performance
Enterprise NVMe
SDS workloads are generally driven by random read and write IOPS, with low latency requirements. These fast SSDs will help to serve these high performance distributed workloads.
Optimized Performance
Data Center NVMe

If you have SAS infrastructure, contact us. KIOXIA SAS SSDs provide uncompromising performance and reliability.

Key Performance Metrics

* Table can be scrolled horizontally.

Sequential Read Sequential Write Random Read Random Write
   

* Table can be scrolled horizontally.

Optimal Capability Recommendation Workload Criteria
Optimized Performance
Data Center NVMe
Read and write throughput are the primary workload characteristic required for data lakes. High capacity and cost are also factors for choosing these specific drives.
Balanced Capacity & Performance for SAS Servers

If you have SAS infrastructure, contact us. KIOXIA SAS SSDs provide uncompromising performance and reliability.

KIOXIA Solid State Drives (SSD) for HPE Servers

* Table can be scrolled horizontally.

Category Family Workload Data Security & Encryption Options(5) Endurance Capacity(1) (GB) Random
Read/Write(2)
(IOPS(4))
Sequential
Read/Write(2)
(MB/s)
Value SAS Read Intensive SIE 1 DWPD(3)
for 5 years(6)
960 - 7,680 Up to
190K/40K
Up to
1,100/1,050
Mixed Use 3 DWPD
for 5 years(6)
960 - 3,840 Up to
190K/55K
Enterprise SAS Read Intensive FIPS 1 DWPD
for 5 years(6)
3,840 Up to
720K/175K
Up to
4,200/4,100
Mixed Use 3 DWPD
for 5 years(6)
1,600 Up to
720K/355K
Enterprise NVMe Read Intensive SIE / FIPS 1 DWPD
for 5 years(6)
1,920 - 15,360 Up to
2.7M/310K
Up to
14,000/7,000
Mixed Use 3 DWPD
for 5 years(6)
1,600 - 6,400 Up to
2.7M/600K
Data Center NVMe Read Intensive SIE 1 DWPD
for 5 years(6)
960 - 15,360 Up to
1.25M/200K
Up to
7,200/6,000
Mixed Use 3 DWPD
for 5 years(6)
800 - 12,800 Up to
1.25M/380K
Read Intensive 1 DWPD
for 5 years(6)
1,920 - 15,360 Up to
2M/200K
Up to
12,000/5,500
Mixed Use 3 DWPD
for 5 years(6)
1,600 - 6,400 Up to
2M/400K

Performance Operational Conditions

SSD Series Sequential Read Sequential Write Random Read Random Write
RM7 64 KiB(7), QD=16 4 KiB, QD=32 4 KiB, QD=16
PM7 128 KiB, QD=32 128 KiB, QD=32 4 KiB, QD=256 4 KiB, QD=32
CM7 4 KiB, QD=512
CD8 4 KiB, QD=256
CD8P
  1. Definition of capacity: KIOXIA Corporation defines a megabyte (MB) as 1,000,000 bytes, a gigabyte (GB) as 1,000,000,000 bytes and a terabyte (TB) as 1,000,000,000,000 bytes. A computer operating system, however, reports storage capacity using powers of 2 for the definition of 1GB = 2^30 bytes = 1,073,741,824 bytes and 1TB = 2^40 bytes = 1,099,511,627,776 bytes and therefore shows less storage capacity. Available storage capacity (including examples of various media files) will vary based on file size, formatting, settings, software and operating system, and/or pre-installed software applications, or media content. Actual formatted capacity may vary.
  2. Read and write speed may vary depending on the host device, read and write conditions, and file size. Refer to the Performance Operational Conditions table for the workload measurement conditions. 
  3. DWPD: Drive Write Per Day. One full drive write per day means the drive can be written and re-written to full capacity once a day every day for five years, the stated product warranty period. Actual results may vary due to system configuration, usage and other factors. This is computed assuming a worst case 4K random workload.
  4. IOPS: Input Output Per Second (or the number of I/O operations per second).
  5. Data Security:
    - Sanitize Instant Erase (SIE) option supports Crypto Erase, which is a standardized feature defined by the technical committees (SCSI) of INCITS (the Inter National Committee for Information Technology Standards) or by NVM Express Inc.
    - SED (Self-Encrypting Drive) SSDs support TCG Enterprise SSC or TCG Opal SSC
    - FIPS drives are validated as FIPS 140-2 Level 2 which defines security requirements for cryptographic module by NIST (National Institute of Standards and Technology). Read and write speed may vary depending on the host device, read and write conditions, and file size.
  6. HPE Warranty/Maximum Usage Limitations: HPE branded SSD base warranty is 3 years - terms and service are covered by HPE and not KIOXIA. NAND Flash devices use semiconductor technology that has a finite number of data that can be written to the device, defined as the Maximum Usage Limit, commonly called “Write Endurance”. HPE’s Write Endurance - is measured while running 100% random 4KiB writes across the entire SSD and is used to generate a “Lifetime Writes (TB)” for a SSD drive as well as a “Drive Writes Per Day” (DWPD) calculation. Drives that have reached this Maximum Usage Limit are no longer eligible for warranty coverage.
  7. A kibibyte (KiB) means 2^10 or 1,024 bytes

Subject to Change: While KIOXIA has made every effort at the time of publication to ensure the accuracy of the information provided herein, product specifications, configurations, prices, system/component/options availability are all subject to change without notice.

NVMe is a trademark of NVM Express, Inc.

Product image may differ from the actual product.