Thermaltake Toughpower GF3 1650 W Review - Two 12VHPWR Connectors 35

Thermaltake Toughpower GF3 1650 W Review - Two 12VHPWR Connectors

Transient Response, Inrush & Leakage Current »

Hold-Up Time

Hold-up time represents the duration for which a PSU can maintain stable output as defined by the ATX specification without input power. This is very important when the quality of your electricity varies, and there are short drops in the supply (dips or brownouts).

In the oscilloscope screenshots below, the blue line is the AC input mains signal, the green line is the "Power Good" signal, and the yellow line is the +12V rail. The measured timing variable is listed as ΔX.

Hold-Up Time





AC Loss to PWR_OK Hold-Up Time





PWR_OK Inactive to DC Loss Delay





The hold-up time is too short for the pair of caps that this PSU uses. I will ask for a second sample, because there might a problem with the bulk caps of this unit.

Timings for Alternative Low Power Modes (ALPM)

Sleep mode (S3) traditionally shuts the system off for long periods of time (minutes or hours) to reduce power consumption. However, this approach adds a few seconds delay when resuming from standby. Microsoft recently introduced Modern Standby, which brings the instant-on capability to PCs—similar to how your phone instantly turns on without any noticeable delay. Modern Standby builds on the Alternative Low Power Modes capability, which Intel defined. To support ALPM, a power supply must wake up from sleep quickly to ensure system stability—think of it as the PSU's boot time.

We measured T1 and T3 at 20% and 100% load for the reviewed PSU.

T1 (Power-on time) & T3 (PWR_OK delay)
LoadT1T3
20%106 ms124 ms
100%107 ms124 ms


Power-on time is below 150 ms, and the PWR_OK delay is in the 100-150 ms range, so the PSU supports Alternative Low Power Modes.

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Aug 17th, 2024 17:23 EDT change timezone

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