b2KIT

Photography Exposure Calculator

Calculate equivalent exposures with aperture, shutter speed, and ISO adjustments.

Tested tool guide Tested browser tools Checked August 16, 2026

What Photography Exposure Calculator does, with a checked example

Photography Exposure Calculator begins with a known aperture, shutter speed, and ISO combination and balances proposed changes to find an equivalent combination. It expresses each adjustment in stops, then supplies the setting needed to cancel the net gain or loss. The common surprise is that f-numbers are not linear: moving from f/4 to f/8 cuts transmitted light to one quarter, which is two stops rather than one. An equivalent result targets the same nominal brightness, not the same depth of field, motion rendering, noise, or highlight capacity.

Worked example

A concrete input and expected output from the current implementation.

Input

Starting exposure: f/4, 1/125 s, ISO 100
Adjusted settings: f/8, ISO 400

Expected output

Equivalent shutter speed: 1/125 s

At f/8, the lens admits one quarter as much light as at f/4, a loss of two stops. ISO 400 is two stops above ISO 100, so those changes cancel and the shutter time stays at 1/125 s.

How the result is produced

1

Balancing stops

Starting from the reference trio, the calculator compares the requested aperture, shutter, and ISO values in stop units. Doubling ISO contributes one positive stop, doubling shutter time contributes one positive stop, and multiplying the f-number by the square root of 2 removes one stop. It solves for the remaining adjustment that brings the combined change back to zero.

2

Exposure equivalence

For equivalent metered brightness under unchanged light, the numeric balance is proportional to ISO multiplied by shutter time and divided by the square of the f-number. Combinations with the same value balance mathematically. The result does not simulate the photograph or determine whether a camera or lens offers the calculated setting.

Good uses

  • Closing a lens from f/2.8 to f/8 for greater depth of field and finding the shutter speed needed at the same ISO.
  • Raising ISO for a handheld concert photograph and calculating the correspondingly shorter shutter time while keeping aperture fixed.
  • Checking whether two manual camera-setting combinations represent the same nominal exposure before recreating a reference shot.

Limits and checks

  • Listed f-numbers, shutter speeds, and ISO values are nominal. Lens transmission, aperture calibration, shutter timing, and ISO calibration can make real captures differ.
  • Equal calculated exposure does not preserve depth of field, diffraction, motion blur, camera shake, noise, or highlight headroom.
  • Changing illumination, flash contribution, neutral-density filters, exposure compensation, bellows extension, and film reciprocity failure require adjustments beyond the basic three-setting balance.

Common questions

Why does changing from f/4 to f/8 count as two stops?

Aperture exposure follows the square of the f-number ratio. A one-stop change multiplies the f-number by about 1.414, giving the familiar f/4, f/5.6, f/8 sequence. Therefore f/4 to f/5.6 is one stop, while f/4 to f/8 is two stops.

Will equivalent settings produce identical photographs?

No. They can produce the same nominal brightness under unchanged lighting, but aperture changes depth of field and diffraction, shutter speed changes motion blur and camera shake, and ISO can affect noise and highlight headroom. Subject movement, flicker, flash duration, and automatic camera processing can create further differences.

References and verification

The example and behavioral notes were checked against the browser implementation. Standards and primary references below define the relevant format, formula, or platform behavior.

Related Tools