Power Management Features

Real-world client storage workloads leave SSDs idle most of the time, so the active power measurements presented earlier in this review only account for a small part of what determines a drive's suitability for battery-powered use. Especially under light use, the power efficiency of a SSD is determined mostly be how well it can save power when idle.

For many NVMe SSDs, the closely related matter of thermal management can also be important. M.2 SSDs can concentrate a lot of power in a very small space. They may also be used in locations with high ambient temperatures and poor cooling, such as tucked under a GPU on a desktop motherboard, or in a poorly-ventilated notebook.

WD Black SN750
NVMe Power and Thermal Management Features
Controller SanDisk 20-82-007011
Firmware 102000WD
NVMe
Version
Feature Status
1.0 Number of operational (active) power states 3
1.1 Number of non-operational (idle) power states 2
Autonomous Power State Transition (APST) Supported
1.2 Warning Temperature 80 °C
Critical Temperature 85 °C
1.3 Host Controlled Thermal Management Supported
 Non-Operational Power State Permissive Mode Not Supported

The WD Black SN750 supports the typical power and thermal management features we expect from recent drives, including a reasonably high warning temperature of 80 degrees. The idle power states declare fairly quick transition times, especially for the PS3 intermediate idle.

WD Black SN750
NVMe Power States
Controller SanDisk 20-82-007011
Firmware 102000WD
Power
State
Maximum
Power
Active/Idle Entry
Latency
Exit
Latency
PS 0 6 W Active - -
PS 1 3.5 W Active - -
PS 2 3 W Active - -
PS 3 100 mW Idle 4 ms 10 ms
PS 4 2.5 mW Idle 4 ms 45 ms

Note that the above tables reflect only the information provided by the drive to the OS. The power and latency numbers are often very conservative estimates, but they are what the OS uses to determine which idle states to use and how long to wait before dropping to a deeper idle state.

Idle Power Measurement

SATA SSDs are tested with SATA link power management disabled to measure their active idle power draw, and with it enabled for the deeper idle power consumption score and the idle wake-up latency test. Our testbed, like any ordinary desktop system, cannot trigger the deepest DevSleep idle state.

Idle power management for NVMe SSDs is far more complicated than for SATA SSDs. NVMe SSDs can support several different idle power states, and through the Autonomous Power State Transition (APST) feature the operating system can set a drive's policy for when to drop down to a lower power state. There is typically a tradeoff in that lower-power states take longer to enter and wake up from, so the choice about what power states to use may differ for desktop and notebooks.

We report two idle power measurements. Active idle is representative of a typical desktop, where none of the advanced PCIe link or NVMe power saving features are enabled and the drive is immediately ready to process new commands. The idle power consumption metric is measured with PCIe Active State Power Management L1.2 state enabled and NVMe APST enabled if supported.

Active Idle Power Consumption (No LPM)Idle Power Consumption

The WD Black SN750 has slightly higher idle power consumption than its predecessor, both with idle states enabled and with them disabled. The SN750 is one of a few NVMe drives that cannot even come close to a reasonably deep sleep state on our desktop testbed, a problem that seems to be hard for the industry to eliminate for good.

Idle Wake-Up Latency

Given the relatively poor idle power savings achieved with our desktop testbed, it's good to see the SN750's wake-up latency is so low, at under a quarter of a millisecond.

Mixed Read/Write Performance Conclusion
Comments Locked

54 Comments

View All Comments

  • mohitssj10 - Tuesday, January 22, 2019 - link

    Will the heatsink included model fit inside Acer Predator Helios 300 (2018 version having 8 gen i5 CPU) laptop?
  • Billy Tallis - Tuesday, January 22, 2019 - link

    The heatsink version is intended only for desktops, and is very unlikely to fit in anything that could reasonably be called a laptop.
  • Nasalmirror - Sunday, February 24, 2019 - link

    So, is it worth getting the new SN750 2019 version over the wd black 2018? (price difference is 5 euros where I live) And if so, why? I can't really find any difference between the two ssds, and I really can't decide which one to get. I want to put it in my laptop (helios 300).
  • Davidm771 - Thursday, November 25, 2021 - link

    Was wondering how the SN750 compares to the SN730 in terms of power efficiency? Against the SK Hynix P31 Gold even? Thanks

Log in

Don't have an account? Sign up now