Bench Press Calculator
This bench press calculator estimates your one-rep max (1RM) from the weight and reps of a recent set, then uses the built-in percentage chart to plan warm-ups, working sets, and training blocks.
Epley — w × (1 + r/30)1RM estimate by formula
| Formula | Estimated 1RM |
|---|---|
| Enter a weight and reps above to compare formulas. | |
Training estimate only. Prediction equations can differ from a measured 1RM, and accuracy varies with exercise, repetition count, training status, technique, and fatigue. Use a recent technically sound set and treat higher-repetition estimates with extra caution. This tool is not medical advice or a substitute for qualified coaching when you need individualized exercise guidance. Values entered into these calculator fields are processed in your browser and are not submitted by this calculator to CalcsDone.
| % of 1RM | Weight | Typical use |
|---|
Why a bench press calculator beats guessing your max
A measured one-repetition maximum requires a maximal effort and appropriate technique, setup, and safety precautions. A repetition-based equation offers a practical alternative when you want a planning estimate from a submaximal set. Epley, Brzycki, and Lombardi use the lifted weight and completed repetitions to produce different estimates; research shows prediction accuracy varies by equation, exercise, population, and repetition range.
This bench press calculator can show Epley, Brzycki, and Lombardi estimates separately or display their simple arithmetic average. The percentage chart then converts the selected estimate into reference loads. These percentages are planning references rather than individualized prescriptions.
How the bench press calculator works
This bench press calculator uses patterns observed across many lifters to estimate your true max from a lighter set taken near failure, rather than measuring it directly.
Epley formula
1RM = w × (1 + r/30). A commonly used repetition-based 1RM prediction equation.
Brzycki formula
1RM = w × 36 / (37 − r). Another commonly used equation for estimating 1RM from a repetition-to-fatigue set.
Lombardi formula
1RM = w × r^0.10. A power-function equation that can produce a different estimate from Epley or Brzycki.
Why formulas disagree
The equations use different mathematical relationships, so their estimates can diverge as repetition count changes. Research on repetition-based prediction also shows that accuracy depends on the exercise, population, and repetition range. Compare the outputs rather than treating any one equation as an exact measurement.
See how the calculator works
These realistic training examples use the same formulas as the calculator. They are illustrative sets, not claims about a particular athlete’s verified performance.
Heavy set (lower reps)
A realistic strength-focused set using the Epley equation.
Moderate set (mid reps)
Compare all three prediction equations from the same set.
Higher-rep set
A higher-repetition example where equation outputs separate more.
Where 1RM estimates go wrong
Using a set that wasn’t close to failure
Repetition-to-fatigue equations are most directly interpreted when the repetition count reflects the number you could actually complete at that load. If you stop well before your repetition limit, the resulting estimate can understate your maximum.
Trusting high-rep estimates as precisely as low-rep ones
Prediction accuracy is not constant across repetition ranges, and different equations can diverge more as repetitions increase. Treat higher-repetition estimates as approximate and compare formulas when useful.
Programming percentages off a stale 1RM
Strength performance changes with training status, fatigue, technique, and other conditions. If you use percentage-based loads, base them on a reasonably current estimate and adjust training to actual performance.
Ignoring technique breakdown at heavier percentages
An estimated 1RM is not a guarantee that a particular load can be lifted safely or successfully. Technique, fatigue, equipment, training experience, and individual circumstances still matter.
Mixing lb and kg inputs without converting
The unit toggle switches the display, but the input weight still needs to match whichever unit is selected. Enter a kg figure while “lb” is active, or vice versa, and every percentage below it will be off.
Common questions
How accurate is an estimated 1RM?+
Which formula should I use?+
How do I use the percentage chart?+
Should I actually test my true 1RM?+
Does this work for other lifts besides bench press?+
Why do my 1RM estimates change slightly between formulas?+
Continue your strength-training calculations
Use these related CalcsDone tools for additional training estimates and reference calculations.
Formula references
- Brzycki M. Strength Testing — Predicting a One-Rep Max from Reps-to-Fatigue. Journal of Physical Education, Recreation & Dance, 64(1), 88–90 (1993).
- LeSuer DA, McCormick JH, Mayhew JL, Wasserstein RL, Arnold MD. The Accuracy of Prediction Equations for Estimating 1-RM Performance in the Bench Press, Squat, and Deadlift. Journal of Strength and Conditioning Research, 11(4), 211–213 (1997). PMID: 9355611.
- Epley B. Poundage Chart. Boyd Epley Workout, Body Enterprises (1985).
- Lombardi VP. Beginning Weight Training: The Safe and Effective Way. Wm. C. Brown Publishers (1989).
- National Strength and Conditioning Association (NSCA). Training Load Chart.
- American College of Sports Medicine (ACSM). Resistance Training Guidelines Update (2026).
- CalcsDone Methodology