Final Words

The HP S700 is in theory handicapped by its DRAMless controller. Random access performance in particular suffers without a DRAM cache, and garbage collection on a near-full drive is more of a chore. This doesn't necessarily translate to a significant disparity in real-world performance. The S700 falls behind on the heaviest real-world tests and performs much worse when it is full, but on more common lighter workloads and with plenty of unused capacity, it is not immediately obvious that the drive is DRAMless. On workloads where the S700's performance doesn't tank, it also offers great power efficiency. Its apparent inability to enter the slumber idle power state prevents me from recommending it for mobile use, but this issue may be fixable with a firmware update. The S700 also offers a surprisingly high sequential read speed, much better than any other SATA SSD using Micron 3D NAND, including the S700 Pro and even the MLC-based Crucial BX300.

The HP S700 Pro is in closer competition with the kinds of SATA SSDs we typically review. The S700 Pro uses the same NAND and the same controller as the ADATA SU800 we reviewed earlier this year. HP's firmware tuning clearly pays off, as the S700 Pro outperforms the SU800 across the board in both performance and power efficiency. The improvement is seldom enough to allow the S700 Pro to deliver mid-range performance like the Crucial MX300, but it's clear the S700 Pro is more refined than the SU800. The S700 Pro also handles operating in a nearly-full state much better than the SU800, and the 512GB S700 Pro's performance is barely affected by being full. We suspect the 1TB S700 Pro will also offer similarly good all-around performance with few caveats. The 256GB S700 Pro's performance will drop on a wider range of workloads but is still decent.

Building a SSD with decent performance in the 120/128GB capacity class is quite challenging with modern NAND flash chips that mean the drive will only have three or four dies to stripe accesses across. Several vendors no longer attempt this and start even their entry-level SSD product lines at 240GB or more. With NAND flash prices elevated by a shortage, there's still some demand for smaller SSDs. Crucial just re-entered this product segment with the MLC-based BX300, but we haven't yet had the chance to confirm whether the 120GB BX300 performs as well as its larger versions suggest is should. Aside from the BX300, it looks like the 128GB HP S700 Pro is probably one of the best performers in that capacity class from the current or previous generation of SSDs. However, everything in this capacity class is at a substantial disadvantage to larger drives, and this will continue to be the case unless someone starts manufacturing 128Gb 3D NAND dies.

  120-128GB 240-275GB 480-525GB 960-1050GB 2TB
HP S700 $69.93 (58¢/GB) $116.48 (47¢/GB) $199.99 (40¢/GB)    
HP S700 Pro $59.97 (47¢/GB) $106.99 (42¢/GB) $207.86 (41¢/GB) $369.99 (36¢/GB)  
Crucial BX300 $59.99 (50¢/GB) $89.99 (38¢/GB) $149.99 (31¢/GB)    
Crucial MX300   $99.99 (40¢/GB) $159.99 (32¢/GB) $289.99 (29¢/GB) $549.00 (27¢/GB)
ADATA SU800 $56.68 (44¢/GB) $93.45 (37¢/GB) $160.00 (31¢/GB) $269.98 (26¢/GB)  
Samsung 850 EVO   $89.99 (36¢/GB) $139.99 (28¢/GB) $327.00 (33¢/GB) $697.99 (35¢/GB)

We're not sure if Micron is selling the Crucial BX300 at a loss, but they're certainly selling it with slimmer margins than most budget SSDs. While this pricing holds, there's no reason to consider drives with Micron's TLC, and the next step up would be the Samsung 850 EVO. At the moment, the 500GB 850 EVO is even cheaper than the BX300. Meanwhile, the HP S700 isn't consistently cheaper than the S700 Pro, and the latter is substantially more expensive than the BX300 except at the smallest capacity.

While the HP S700 and S700 Pro are not currently priced competitively, they do show that there's value in continued firmware tuning. More than a year after Micron's 32-layer 3D NAND hit the market, the HP S700 sets a new record for sequential read performance from a four-channel controller, and helps show that DRAMless SSDs can't be immediately dismissed from consideration. The S700 Pro improves on the performance that can be obtained from the combination of Micron's 32L 3D TLC and the SM2258 controller, which are now both nearing the end of their product cycles. These improvements bring the SM2258 controller into closer competition with the more expensive Marvell controllers.

Power Management
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  • sonny73n - Friday, September 8, 2017 - link

    You should compare the 850 EVO with the BX300. I don't care whether the EVO has better controller but I will take a 2-bit per cell NAND over a 3-bit any day.
  • mapesdhs - Wednesday, September 13, 2017 - link

    I just keep picking up lightly used 840 Pro 256GB units, people have forgotten how good they were and still are. It's annoying they no longer appear in review charts. Even the Vertex4 and Vector are still good compared to modern models.
  • barleyguy - Friday, September 8, 2017 - link

    You seem to be comparing retail price to street price. HP has sales almost constantly. These might be $116 initially, but they'll be discounted very quickly to lower prices. I fully expect them to be competitive pricewise.
  • r3loaded - Thursday, September 7, 2017 - link

    Hurray, yet another 2017 SSD that gets utterly curbstomped by a Samsung SSD from 2015 on both performance and price.
  • 8steve8 - Thursday, September 7, 2017 - link

    1. Who is buying SATA SSDs in 2017
    2. Why is Anandtech putting so much effort into SATA SSDs in 2017
  • Billy Tallis - Thursday, September 7, 2017 - link

    I've yet to hear from a vendor that their volume of NVMe drives has even come close to matching their volume of SATA drives, for either the retail consumer market or the client OEM market. Even in the enterprise market, NVMe isn't close to killing off SATA and SAS yet.

    We have new technologies launching in SATA products like the Intel 545s and Western Digital's 3D NAND SSDs. SATA SSDs are still more cost effective than NVMe SSDs, and will be until there have been plenty of low-end NVMe controllers like Phison E8 and Silicon Motion SM2263 on the market for quite a while.
  • Elstar - Thursday, September 7, 2017 - link

    Also:
    1) most motherboards are still loaded with SATA connectors
    2) most motherboards have few if any NVMe connectors (other than traditional PCIe)
    3) SATA drives are often more friendly to "sneaker net" security.
  • 8steve8 - Thursday, September 7, 2017 - link

    yes, most motherboards have lots of SATA, but they also have a PCIe m.2 slot... hard to find one that doesn't.

    but who's buying SATA SSDs? It's an honest question.

    on newegg i see a $99 240GB m.2 NVMe SSD, so who would recommend this 256GB SATA drive with a retail price of $169?
  • bji - Friday, September 8, 2017 - link

    Nice straw man. Answer: nobody would buy either. They'd buy a $90 250GB Samsung EVO. I just did last night.
  • cfenton - Monday, September 11, 2017 - link

    Lot's of people don't have motherboards that support m.2. You're right that most new motherboards support m.2, but there are a whole lot of people out there with 2+ year old computers who might want more storage or a faster boot drive. SSDs, of any kind, still aren't common in many OEM products, especially at the low end. A SATA SSD is still going to beat the hell out of any HDD.

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