Random Read Performance

Our first test of random read performance uses very short bursts of operations issued one at a time with no queuing. The drives are given enough idle time between bursts to yield an overall duty cycle of 20%, so thermal throttling is impossible. Each burst consists of a total of 32MB of 4kB random reads, from a 16GB span of the disk. The total data read is 1GB.

Burst 4kB Random Read (Queue Depth 1)

The QD1 burst random read performance of the HyperX Fury RGB is about 18% slower than what the Plextor M8V manages with the same NAND flash, and 40% slower than the Crucial MX500.

Our sustained random read performance is similar to the random read test from our 2015 test suite: queue depths from 1 to 32 are tested, and the average performance and power efficiency across QD1, QD2 and QD4 are reported as the primary scores. Each queue depth is tested for one minute or 32GB of data transferred, whichever is shorter. After each queue depth is tested, the drive is given up to one minute to cool off so that the higher queue depths are unlikely to be affected by accumulated heat build-up. The individual read operations are again 4kB, and cover a 64GB span of the drive.

Sustained 4kB Random Read

On the longer random read test with some higher queue depths involved, the Fury RGB manages to be clearly faster than the DRAMless SATA drives and is only a little bit slower than average for mainstream SATA drives.

Sustained 4kB Random Read (Power Efficiency)
Power Efficiency in MB/s/W Average Power in W

When excluding the LEDs power draw, the Fury RGB has reasonable power efficiency during low queue depth random reads since the power draw and performance are both just a bit below average.

The random read performance of the Fury RGB scales up with increasing queue depth better than the DRAMless drives, but most of the other mainstream drives show at least slightly better scaling.

Random Write Performance

Our test of random write burst performance is structured similarly to the random read burst test, but each burst is only 4MB and the total test length is 128MB. The 4kB random write operations are distributed over a 16GB span of the drive, and the operations are issued one at a time with no queuing.

Burst 4kB Random Write (Queue Depth 1)

The QD1 burst random write performance of the HyperX Fury RGB is slightly better than the DRAMless SATA SSDs but is almost 30% slower than a good mainstream SATA drive.

As with the sustained random read test, our sustained 4kB random write test runs for up to one minute or 32GB per queue depth, covering a 64GB span of the drive and giving the drive up to 1 minute of idle time between queue depths to allow for write caches to be flushed and for the drive to cool down.

Sustained 4kB Random Write

The decent burst random write performance from the Fury RGB doesn't hold up during the longer sustained random write test. The Fury RGB outperforms the DRAMless SATA drives but it is closer to their level of performance than to the typical mainstream SATA SSDs.

Sustained 4kB Random Write (Power Efficiency)
Power Efficiency in MB/s/W Average Power in W

With average power consumption but sub-par performance, the Fury RGB's power efficiency rating is very low even before the LED's power draw is included.

The random write performance of the HyperX Fury RGB does scale up slightly with increasing queue depths, but it plateaus at a performance level that is only slightly faster than the Toshiba TR200 DRAMless SATA SSD.

AnandTech Storage Bench - Light Sequential Performance
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  • TitanX - Tuesday, September 25, 2018 - link

    i have an asus x470 prime..it has a turn off lights thing in the bios.
  • mr_tawan - Monday, September 24, 2018 - link

    I'm looking for a new SSD for my laptop. This might be a good fit ...

    Oh wait, my laptop has no glass panel.
  • Lolimaster - Monday, September 24, 2018 - link

    Blame your laptop manufacturer for not making the mobo pcb and you keyboard clear :D
  • dcole001 - Monday, September 24, 2018 - link

    All Flash and I recommend to Pass!! Just go with the Samsung 860 Series SSD Drive and you will have the best SSD Drive you can get for Desktops.
  • jabbadap - Monday, September 24, 2018 - link

    Or crucial mx500, at least it's cheaper than samsung where I live.
  • Lolimaster - Monday, September 24, 2018 - link

    On amazon the difference is about $10-20. EVO's got twice the endurance.

    But MX500 got hardware powerloss protection (physical capacitors).
  • TitanX - Tuesday, September 25, 2018 - link

    man, unless you are doing enterprise workloads or 4k video edit, that whole endurance thing on 500gb+ SSDs is a moot point now. i had a 5 year old Mushkin Chronos deluxe 240GB SSD as a primary drive and only wrote 37 TB in that time. i have a 1TB crucial M2 now and its endurance is multiples of that..i'll replace with with the next big thing or whatever long before it konks out on endurance.
  • casperes1996 - Monday, September 24, 2018 - link

    I really don't get the RGB thing... It really isn't even pleasant to look at, and in a lot of cases you lock it away in a non-see-through case anyway. I'd much rather just have a sleek and simple design like the old Cheese Grater Mac Pro than pay extra for flashing lights on everything. I'm willing to pay extra for a great, simple design. But not for lights that ruin the aesthetic. Red lights would disturb my peripheral vision. Keyboard backlighting I can get behind since that serves a good purpose and can look good in the dark when the purpose is there. RGB on GPUs, SSDs, RAM etc. I don't understand.
  • seamonkey79 - Tuesday, September 25, 2018 - link

    I'm not huge on RGB, but it's kind of funny that you would mention buying a Mac of any type, which is going to cost more than anything (I've seen) that uses RGB in the Wintel world (for the same hardware).
  • rpmurray - Monday, September 24, 2018 - link

    I'm waiting for them to include a radio receiver so that the lights can pulse to the beat of your favorite FM station.

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