- 12V-2x6
- The 16-pin graphics connector, and the revised version of 12VHPWR.
- Carries up to 600 W on one cable. 2x6 reshapes the sense pins so a partly seated plug does not power up.
- Why it mattersIf your card uses it, you want a unit that ships the cable natively rather than an adapter — adapters are where the reported melting incidents concentrated.
- 80 PLUS
- A certification for efficiency only — not for quality.
- Bronze through Titanium, measured at 20/50/100% load. Titanium adds a 10% load point.
- Why it mattersIt says how much power is wasted as heat, and nothing about ripple, protections or build. A Gold unit can be worse than a Bronze one in every way that breaks hardware.
- Active PFC
- Electronics that make the unit draw current cleanly from the wall.
- Active power factor correction shapes the input current to follow the mains voltage.
- Why it mattersThe alternative, passive PFC, is heavy, inefficient and effectively extinct in anything worth buying. A passive-PFC unit sold today is a red flag by itself.
- ATX 3.x
- The current specification, written for graphics cards that spike hard.
- Adds defined behaviour for short excursions far above the rated output, and the 12V-2x6 connector.
- Why it mattersA modern GPU can briefly pull nearly twice its rated power. An ATX 3.x unit is specified to ride that out; an ATX 2.x unit of the same wattage is not.
- Confidence index
- How much is actually documented about a unit, from 0 to 100.
- Weighs specification coverage, whether the OEM is confirmed, source trust, and whether independent lab data exists.
- Why it mattersIt caps the rating. Without laboratory evidence no unit reaches Tier A here, however good it looks on paper — a datasheet cannot buy a top rating.
- DC-DC conversion
- Separate converters generate +5V and +3.3V from the +12V rail.
- The unit produces one big +12V rail, then derives the smaller rails from it with their own converters.
- Why it mattersEach rail holds its voltage regardless of what the others are doing. Modern PCs draw nearly everything from +12V, so this is the arrangement you want.
- Fluid dynamic bearing
- The long-lived, quiet fan bearing type.
- An FDB fan runs on a film of oil rather than a sleeve rubbing on a shaft.
- Why it mattersFans are usually the first thing to fail in a power supply. A sleeve bearing in an otherwise good unit is a genuine long-term weakness.
- Group regulation
- One feedback loop controls +12V and +5V together, so they fight each other.
- An older, cheaper design where the rails share a regulation circuit and cannot be corrected independently.
- Why it mattersLoad +12V hard — a graphics card under load — and +5V drifts out of spec as a side effect. In a machine that pulls almost everything from +12V, this is the single clearest sign of an obsolete platform.
- Hold-up time
- How long the unit keeps output alive after mains power disappears.
- The ATX specification asks for at least 17 ms at full load.
- Why it mattersIt is what lets a UPS switch over, or a brief flicker pass, without your machine dropping. Short hold-up shows up as inexplicable reboots during storms.
- LLC resonant
- The efficient modern way to run the high-voltage side of a power supply.
- A primary-side topology that switches when current is near zero, so the switching losses are small.
- Why it mattersIt is what makes Gold and better efficiency practical. Its absence on a recent unit usually means an old platform in a new box.
- Load point
- How much of the unit's capacity your machine actually uses.
- Efficiency peaks around half load and falls off at both extremes.
- Why it mattersWildly oversizing is not free: a 1200 W unit running a 200 W office PC sits in its least efficient region and its fan behaviour may be worse, not better.
- OCP
- Over-current protection: shuts down when a rail draws too much.
- A limit per rail, ideally set close above the rail's real capability.
- Why it mattersSet too high it protects nothing; set too low it trips on ordinary spikes. Both failures appear in reviewer notes, and both count against a unit here.
- OEM
- The company that actually builds the unit, whoever's name is on the box.
- A handful of manufacturers — Seasonic, CWT, Super Flower and a few others — build for most brands.
- Why it mattersTwo units with different badges can be the same platform, and one brand's line-up can span four OEMs of very different quality. It is the most useful thing to know and the least often printed.
- Platform
- The OEM's actual design, shared across many branded products.
- Identified by an internal code such as GPU-2000 or Leadex III.
- Why it mattersReviews of any unit on the same platform tell you most of what you need. It is also how a brand can quietly change a product: same name, different platform.
- Ripple
- Leftover AC wobble riding on top of a DC rail.
- Measured in millivolts peak-to-peak; the ATX specification sets limits per rail.
- Why it mattersHigh ripple stresses everything downstream. It can only be measured, never read off a datasheet — which is why units without lab results are capped in this site's confidence model.
- Tier
- A rating from A+ down to F on a fourteen-step scale.
- Assigned here by published criteria, and shown alongside the imported list's own rating.
- Why it mattersTiers compress a lot of judgement into one letter. The value of one is entirely in whether you can see how it was reached — which is why every rating on this site opens up into its criteria.
- Transient load
- A power spike lasting a fraction of a millisecond.
- Graphics cards present very short excursions well above their rated board power.
- Why it mattersToo small to show on a wattmeter, big enough to trip a protection circuit and reboot the machine. This is why capacity headroom is about spikes, not averages.