The common mistake with battery backup is buying for the wrong scenario. People size for continuing to work through a long outage, which is expensive and rarely the actual need.
The real jobs are narrower: ride through the brief interruptions that cause an unclean shutdown, and provide enough time for a clean one when the outage is longer.
What changed in 2026
- Lithium units became more common. Longer service life and lighter weight, at higher cost than lead-acid.
- Modern power supplies got fussier. Active power factor correction made pure sine wave output more relevant.
- Automatic shutdown software improved. Integration for triggering clean shutdowns became more reliable.
- Home networking increased the load list. Router, modem, and NAS joined the list of things worth backing up.
VA and watts
The specification confusion that causes undersizing.
VA (volt-amperes) is apparent power. Watts is real power. For a UPS, the watt rating is lower, and it is the one that binds — a unit rated 1500VA might be rated only 900W.
Size against the watt figure. Add up the actual draw of the equipment, not the maximum rating on each power supply, which is almost always far above real consumption.
A power meter at the wall gives the real number and costs little. Failing that, estimate conservatively.
Headroom matters because runtime falls sharply as load approaches capacity, and because batteries lose capacity with age. Running at half the rated load rather than near it gives meaningfully better runtime and longevity.
| Load |
Sizing note |
| Desktop and monitor |
Measure; usually well under the assumed figure |
| Router and modem |
Small draw, long runtime, high value |
| NAS |
Worth backing up — see NAS backup strategy |
| Laser printer |
Never — huge startup surge |
| Space heater or kettle |
Never |
| Anything with a motor |
Check surge requirements |
Runtime, realistically
Runtime is nonlinear. A UPS delivering thirty minutes at a quarter load might deliver five at full load, and manufacturer runtime charts assume a new battery.
For most home and small office situations the target is: survive interruptions of a few seconds to a couple of minutes, and trigger a clean shutdown for anything longer.
That needs perhaps five to fifteen minutes of runtime at your actual load — far less than people buy, and enough for the actual failure modes.
Configure automatic shutdown. A UPS with no shutdown integration protects only against brief interruptions, because when the battery runs out the machine loses power anyway. Connecting the data cable and installing the software is what makes the longer outages safe.
Networking equipment is the exception worth extending: a router and modem draw very little and run for hours on a modest unit, keeping connectivity during an outage.
Topology
Standby (offline). Passes mains through and switches to battery on failure. Cheapest, with a brief transfer time and no voltage regulation. Adequate for basic protection.
Line-interactive. Adds voltage regulation, correcting sags and surges without using the battery. This matters where mains voltage is variable, since it prevents the battery cycling constantly. The sensible default for most situations.
Online (double conversion). Continuously converts to DC and back, so there is no transfer time and complete isolation from mains problems. Expensive, less efficient, and generally more than a home or small office needs.
Waveform matters with modern power supplies. Units producing a stepped approximation of a sine wave can cause active PFC supplies to behave badly on battery — buzzing, or refusing to run. Pure sine wave output avoids this and is worth specifying for computer loads.
Common mistakes
- Sizing on VA instead of watts. Undersizes.
- Using power supply ratings instead of measured draw. Wildly overestimates.
- No automatic shutdown configured. Protects only against brief blips.
- Laser printers on a UPS. Startup surge overwhelms it.
- Running near rated capacity. Poor runtime, shorter battery life.
- Never replacing the battery. Silent failure until the outage.
- Stepped waveform with active PFC supplies. Can cause problems on battery.
FAQ
How long do UPS batteries last?
Lead-acid typically a few years, shortened by heat and by frequent cycling. Lithium units last longer. Test periodically rather than assuming.
Should I plug a monitor in?
On the battery-backed outlets, yes, if you need to see the screen to shut down cleanly. Most units also have surge-only outlets for everything else.
Is a surge protector enough?
It handles surges and does nothing for outages or sags. A UPS covers both; a surge protector alone leaves the interruption problem.
Does a UPS protect against lightning?
It provides surge protection, and a direct strike exceeds what any consumer device handles. Unplugging during severe storms remains the only complete protection.
Where to go next
For the storage a clean shutdown protects, read NAS backup strategy. For cooling that keeps hardware healthy, fan curves explained, and for the cabling around a UPS, cable management.