OEE calculator

Work out the Overall Equipment Effectiveness of any machine or line from one shift of production data, and see exactly where the planned time went.

Your production data

Planned production time is shift length minus breaks. Stop time includes breakdowns and planned stops like changeovers. Ideal cycle time is your fastest repeatable time per unit, not the average.

Overall Equipment Effectiveness

78.5%

Around the score often cited as typical for discrete manufacturing.

40% low
60% typical
85% world class
Availability90.2%

Run time ÷ planned production time

Performance89.0%

(Ideal cycle time × total units) ÷ run time

Quality97.8%

Good units ÷ total units

Where the planned time went

  • Fully productive time6 h 17 min
  • Quality loss8 min
  • Speed loss48 min
  • Downtime loss47 min

What is OEE?

Overall Equipment Effectiveness is the standard measure of manufacturing productivity. It multiplies three factors into a single score: the share of planned time that was truly productive.

OEE = Availability × Performance × Quality

Availability

Captures downtime losses: breakdowns, changeovers, adjustments, and every other stop, planned or not, that keeps the line from running.

Performance

Captures speed losses: slow cycles and small stops that let the line run below the fastest rate it's capable of.

Quality

Captures quality losses: scrap and parts that need rework. Only units that are right the first time count as good.

What's a good OEE score?

There's no universal target; it depends on your industry and process. These commonly cited benchmarks give the score some context.

100%
Perfect production: every unit good, at maximum speed, with zero downtime. A theoretical ceiling rather than a realistic target.
85%
Commonly cited as world class for discrete manufacturing, and a meaningful long-term goal.
60%
Fairly typical for discrete manufacturers, and a sign there's substantial room for improvement.
40%
Not uncommon for lines being measured for the first time. A low starting score simply means the recoverable capacity is large.

Knowing the score is the easy part

The calculator tells you how much capacity you're losing. Working out which change wins it back is harder, and that's what a digital twin of your factory is for.

Simulate before you change anything

Rebuild your line in moicon's process analysis engine, with sources, processors, buffers, and connectors, then watch material flow through it to find the bottleneck before touching the real line.

Production simulation

Model the losses you just measured

Processors in a simulation carry the same characteristics behind your OEE score, like setup times, processing times, MTBF and MTTR, so you can see how availability and speed losses ripple through your output.

Watch conditions in real time

Connect IoT sensors to your digital twin to monitor real conditions on the floor, visualized directly in the 3D model of your factory.

Real-time monitoring

Find your bottlenecks before they find you