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Comparison Toshiba MG09 MG09ACA18TE 18 TB
SATA
vs Toshiba MG08 MG08ACA16TE 16 TB
SATA 512e

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Toshiba MG09 MG09ACA18TE 18 TB SATA
Toshiba MG08 MG08ACA16TE 16 TB SATA 512e
Toshiba MG09 MG09ACA18TE 18 TB
SATA
Toshiba MG08 MG08ACA16TE 16 TB
SATA 512e
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512e sector format.
MAMR recording technology - Microwave-Assisted Magnetic Recording (microwave magnetic recording).
Placementbuilt-inbuilt-in
TypeHDDHDD
Featuresfor PCserver
Volume18 TB16 TB
Form factor3.5 "3.5 "
ConnectionSATA3SATA3
Manufacturer's warranty5 years5 years
Technical specs
Cache memory512 MB512 MB
Record technologyMAMRCMR
RPM7200 rpm7200 rpm
Data transfer rate281 MB/s
Plates99
Operation power consumption4.16 W7.63 W
Standby power consumption4 W
MTBF2.5 M h2.5 M h
MTBF (on/off)600 K
General
Size147x102x26 mm147x102x26 mm
Weight720 g
Added to E-Catalognovember 2021january 2019
Compare Toshiba MG09 MG09ACA18TE and MG08 MG08ACA16TE
Hard drives Toshiba MG09 MG09ACA18TE and Toshiba MG08 MG08ACA16TE have similar characteristics, but there are key differences. The MG09 offers a larger capacity of 18 TB compared to 16 TB in the MG08, which can be a deciding factor for users needing more space. Both drives have a spindle speed of 7200 RPM and use SATA3 for connection. However, the MG08 consumes more power when operating — 7.63 W compared to 4.16 W for the MG09. It is also worth noting that the MG08 is designed for servers, while the MG09 is suitable for PCs. Both devices have a 5-year warranty and identical dimensions.
Toshiba MG08 often compared
Glossary

Features

The general purpose of a hard drive is the type of devices for which it was originally intended.

For PC. Hard drives designed for use with conventional consumer computers and laptops. At the same time, the possibility of installing an internal HDD (see "Performance") directly depends on the form factor (see the relevant paragraph), while external models are not subject to such restrictions — it is enough for them to have the appropriate connection connector. Also note that almost all external hard drives are designed specifically for PCs; making server models external is not technically justified.

For the server. Hard drives designed for servers have increased speed and reliability, because they constantly have to receive and give large amounts of information. To ensure speed, they may provide an increased rotation speed (up to 15,000 rpm). Such drives are made only internal (see "Performance"), and, in addition to SATA, they can use other, more specific connection methods — for example, SAS(see "Connection interfaces").

For game console. Specialized hard drives designed for use with game consoles. They are made only external (see "Performance"), they are intended mainly for storing games — including saves and user settings profiles. The main difference between such devices and classic external HDDs is...precisely the optimization for working with game consoles, including the availability of special software tools for improved integration. Many of these drives are originally designed for a specific model or family of set-top boxes.

Volume

The capacity of a hard disk drive shows how much data the HDD can store—from documents and photos to games, movies, backups, and large work archives. This parameter determines whether the drive is suitable for a simple home system, file storage, or, for example, for long-term accumulation of video recordings from surveillance cameras.

Models small by modern standards are more often chosen for documents, music, and basic files, whereas drives of 48 TB and larger are already interesting for large media libraries, backups, and NAS systems. Compared to SSDs, high-capacity HDDs are usually more cost-effective per gigabyte, so they are often chosen particularly when the maximum space is more important than record-breaking speed. For example, a drive of 1 or 2 TB might be enough for a regular PC, while 610 TB could be suitable for a movie collection, family archive, or constant video recording.

Record technology

CMR(Conventional Magnetic Recording) is a classic method of magnetic recording, characterized by high data access speed. CMR hard drives are used in systems where it is important to provide high (as far as possible) data read/write speed. These are user computers, security video surveillance systems, etc. The main disadvantage of CMR hard drives is the high complexity of creating volume drives, which is reflected in their price. Additionally, HDDs with CMR technology are quite “gluttonous” in terms of power supply.

SMR(Shingled Magnetic Recording) — a promising technology for magnetic recording, which is called "tiled". SMR allows to achieve high data density, which in turn increases the capacity of memory drives and lowers their market value. SMR hard drives have slow rewriting speed, which makes such memory drives poorly suited for use in client computer systems. But they have proven themselves well when working as part of data processing centers, archives and similar systems for which low write / rewrite speed is not critical. However, some companies still produce SMR solutions for personal and even mobile systems. These HDDs use an optimized write/rewrite technology called Drive-Managed SMR (DM-SMR).

Data transfer rate

The speed of data transfer between the disk and client devices is determined by the type of drive, spindle speed, memory buffer size and connection connectors. The last parameter is the most important, since it is impossible to exceed the bandwidth of a particular interface.

Operation power consumption

The amount of power consumed by the disk when reading and writing information. In fact, this is the peak power consumption, it is in these modes that the drive consumes the most energy.

HDD power consumption data is needed primarily to calculate the overall system power consumption and power supply requirements for the system. In addition, for laptops that are planned to be used often "in isolation from outlets", it is advisable to choose more economical drives.

Standby power consumption

The amount of power consumed by the disk "idle". In the on state, the disk platters rotate regardless of whether information is being written or read or not — maintaining this rotation takes the energy consumed while waiting.

The lower the power consumption while waiting, the more economical the disk is, the less energy it consumes. At the same time, we note that in fact this parameter is relevant mainly when choosing a drive for a laptop, when energy efficiency is crucial. For stationary PCs, “idle” power consumption does not play a special role, and when calculating the requirements for a power supply, it is necessary to take into account not this indicator, but the power consumption during operation (see above).

MTBF (on/off)

Guaranteed (minimum) number of hard drive on-off cycles after which it will remain operational. The higher this number, the more reliable the drive.