Showing posts with label depth of field. Show all posts
Showing posts with label depth of field. Show all posts

Tuesday, March 20, 2007

More on Depth of Field

Background
I've already mentioned Depth of Field briefly, in my tutorial on Apertures and F-Numbers. But it's not just the aperture you are using which determines how much depth of field your pictures have.

Theory
Three factors influence the depth of field of an image. They are:
  • Aperture of lens - the f-number you use at the time of taking the image
  • Focal length of lens - eg, 28mm for a wide angle, 300mm for a telephoto.
  • Distance to subject - how far you are from the main focus of the image.
Again, this might seem complicated, but the important things to remember are these:
smaller aperture = greater DoF than larger aperture
with the same focal length and distance to subject
wide angle lens = greater DoF than telephoto lens
with the same aperture and distance to subject
greater distance to subject = greater DoF than smaller distance
with the same focal length and aperture
Examples
The following show three pairs of pictures, each where two of the three parameters (aperture, focal length, distance to subject) have been kept constant, and the third is varied. Hopefully, this will demonstrate the effect of each. They were taken at a recent rugby match (not specifically for this tutorial, but they illustrate the points well). Whilst I will quote the shutter speeds and ISO setting used, they actually bare no relevence to the depth of field, so are just included for interest.

Changing The Aperture
Same focal length = 400mm
Similar subject distance = about half way across the pitch

[small aperture - f/10, 1/800th @ ISO 400 - most of the image is in adequate focus, giving quite a busy appearance]

[larger aperture - f/6.3, 1/400th @ ISO 400 - background is more blurred, giving better separation from the players]

Changing The Focal Length
Same aperture = f/7.1
Similar subject distance = close to the nearest touchline

[shorter focal length - 130mm, 1/250th @ ISO 400 - everything from touch judge on left (green) to furthest player is pretty sharp]

[longer focal length - 375mm, 1/400th @ ISO 400 - nearest player is blurred (he's about the same distance as the touch judge was in the above) and the background is also very soft]

Changing The Distance To Subject
Same aperture = f/5.6
Similar focal length = about 250mm

[further away - far touchline, 1/4000th @ ISO 400 - most of the image is in sharp, including much of the background. The action was about 70m away]

[closer distance - near touchline, 1/400th @ ISO 400 - background is more blurred, giving better separation. The action was about 10m away]

Checking Depth of Field
Some cameras allow you to check the depth of field you will get before you take the picture. This is usually called Depth of Field Preview. Usually, when you look through the viewfinder, the camera is using the maximum aperture of the lens to show you the image. Pressing the DoF Preview button shuts the lens down to the size of aperture it will use at the time of taking - this often results in a darker view in the viewfinder (the lens is letting in less light) but you can visibly see just what will be sharp.

Maximizing Depth of Field
There is one special point in the image, which if you focus on it, will maximize the depth of field you get with any given combination of focal length of lens and aperture. This is known as the Hyperfocal Distance - and is approximately 1/3rd of the way into the picture, from where you are standing to infinity. There's another complicated formula telling you what will be sharp, but basically, if you set focus at the hyperfocal point, everything between half way to that point and infinity will be in focus. There is more sensible reading on the subject here.

As good practice, why not experiment with apertures, focal lengths and distance to subject, to see how you can go about controlling the depth of field in your pictures.

Tuesday, March 06, 2007

All About Apertures & F-numbers

Background
What is meant when referring to the "aperture" (or f-numbers) of a lens?

Photographic lenses contain an iris, made up of solid vanes, built in a similar pattern to those on the left. The vanes can move in and out, thus making the central hole larger or smaller - and so letting more or less light through the lens. This is what's called the aperture, and is a guide to the speed of the lens.

The f-stop, (f-number) or aperture is not an absolute number, it's also related to the physical diameter of the lens. So we can compare the relative apertures of a small compact camera's lens with that of a large telephoto, and still get a sense of which is better at gathering light.

Theory
The main series of f-numbers goes as follows (a sequence of root 2): f/1.8, f/2, f/2.8, f/4, f/5.6, f/8, f/11, f/16, f/22, f/32

This seems rather complicated and counter-intuitive at first, but the basic thing to remember is this:
lower f/number = larger hole = faster lens = better in low light
higher f/number = smaller hole = slower lens = better in bright light
Most SLR lenses will have their maximum aperture written on the side. This is the largest size of the hole, when the iris is fully retracted.

More expensive lenses will have a lower f-number, such as f/2.8, which means they have a larger maximum aperture - and will be better for taking photos in low-light conditions.

Things get complicated with zoom lenses - which often have a different maximum aperture at each end of the zoom range, eg. 28-105mm, f/4-5.6. This is saying:
at 28mm end, max aperture is f/4
at 105mm end, max aperture is f/5.6 (ie smaller than f/4.5)
How this affects your pictures - Depth of Field
The other thing which needs considering at this point, is something called Depth of Field. This means what proportion of the image is sharp, in front of and behind the actual point where you focus. I will cover depth of field more fully in another post, but for the purposes of apertures, in general, we need to remember the following:
lower f/number = smaller depth of field = less of image in focus
higher f/number = larger depth of field = more of image in focus
Examples
Let's compare the effects of using two extremes of f/number:

f/2.8
  • Large aperture
  • Good in overcast or low-light conditions
  • Will tend to require using faster shutter speeds
  • Smaller depth of field - less of the overall image in focus
  • Better for portaits or closeups, because backgrounds become blurred and do not intrude
[large aperture - in low-light conditions, giving small depth of field (only the first couple of blooms are in focus). The background is unobtrusive]

f/16
  • Small aperture
  • Good in bright, sunny conditions
  • Will tend to require using slower shutter speeds
  • Larger depth of field - more of the overall image in focus
  • Great for landscapes, where you want everything, from a few meters to infinity, to be sharp
[small aperture - in sunny conditions, giving a large depth of field (almost everything is sharp), great for landscape work]

As good practice, why not turn your camera to AP (aperture-priority) mode and take a few pictures of the same subject, but using different aperture settings. This will show you exactly what the effects of controlling the aperture can do for your photographs.