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Components Hard drives (HDD and SSD) NVMe U.3 Micron 9400 MAX 12.8 TB NVMe GEN4 U.3 15mm 7000MBps/7000MBps - MTFDKCC12T8TGJ-1BC1ZABYY

Micron 9400 MAX 12.8 TB NVMe GEN4 U.3 15mm 7000MBps/7000MBps - MTFDKCC12T8TGJ-1BC1ZABYY

Capacity: 12.8 TB BUS: NVMe GEN4 Format: U.3 15mm Speed: 7000 MBps (read) / 7000 MBps (write) Random Read (4K): 1600000 IOPS Random Entry (4K): 600000 IOPS Lifetime: 3 DWPD Technology: Micron 176-layer 3D TLC NAND

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Product code 227.169352
Part number MTFDKCC12T8TGJ-1BC1ZABYY
Alternative Part No. MTFDKCC12T8TGJ-1BC1ZABYYR
Supermicro Part No. HDS-MUN-MTFDKCC12T8TGJ1B
Manufacturer Micron
Availability
In stock 0 pc
Stock allocation and delivery options
Transport company across Europe
Friday 6. 12. at the latest Thursday 12. 12.
Supplier availability In stock 23 pc
Warranty 60 months
Weight 0.03 kg
The price includes all legal fees
€ 3 560,74 ex VAT
€ 3 560,74 w/ VAT
pc

Detailed information

SSD

SSDs using SATA, SAS or NVMe interfaces are ideal for applications where the balance between read/write speed and affordability is important. They can be used, for example, as system disks, in database servers or IOPS-heavy hot-storage. In addition to its unrivalled speed, it offers, at a higher price, very low failure rates and higher reliability and resistance to vibration and temperature fluctuations. These drives are generally available in 2.5" format and they are therefore compatible with hot-swap slots designed for HDDs.

Manufacter
Micron
Series
9400 MAX

NVMe

NVM (non-volatile memory) Express is a newer interface designed to take maximum advantage of flash memory and to minimize the so-called “bottleneck”. It can take advantage of the super low latency and high data throughput when connected via the PCIe interface. This allows the theoretical throughput of up to 32 GB/s depending on the number of lanes and the PCI-express generation. They are available in a variety of formats, from the compact m.2 and 2.5" U.2, to the add-on card for PCIe.

Speed

For SSDs, speed is most commonly divided into sequential speed, which is given in MB/s, and random speed, which is given in IOPS. SSDs are many times faster than traditional hard drives and are rapidly approaching in price in recent years. They also have a much lower access time and they do not wear out the disk during the reading process as is the case with traditional rotating disks.

Speed Read/Write
7000/7000 MBps
Random Read (4K) Random Entry (4K):
1600000/600000 IOPS

Capacity

The capacity of a disk often determines its usage. High-capacity HDDs are used for storing and backing up large amounts of data. High-capacity SSDs are useful, for example, when multiple users are simultaneously working with large amounts of data in real time. On the other hand, SSDs with a small storage space are mainly used for the operating system and its fast running, or as a boot drive or hypervisor.

Capacity 12.8 TB

Lifespan

To determine the lifespan of the drive, TBW(TeraBytes Written) and PBW(PetaBytes Written) parameters are often given to indicate the total data written to the SSD before failure. The second most common designation is DWPD (Drive Writes per Day) indicating how many times per day the user can overwrite the entire capacity of the SSD for the duration of the warranty.

PBW
70.08
DWPD
3

2.5“

This format is most often found in SSDs, but also in desktop, most often laptop hard drives and also specialized fast SAS drives. It stands out with its lower consumption and better heat dissipation compared to 3.5" disks. The most common use is found in 1U and 2U servers, all-flash disk arrays.

Parameters

Interface PCI-E 4.0 4x
HDD type U.3
Capacity in GB 12800
Read speed 7000
Write speed 7000
Random read 1600000
Random write 600000
DWPD 3

Price development



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